It is convenient to solve the defects of aluminum alloy die castings!

It is convenient to solve the defects of aluminum alloy die castings!

 

Aluminum alloy die castings are now widely used in many industries and fields, such as current electronic products, automobiles, and daily necessities. However, some defects and solutions that often occur in aluminum alloy die castings, let’s take a look below

 

Aluminum alloy die casting

  1. Impurities

 

The impurity problem of jewelry investment-casting is mainly composed of crystal grains containing aluminum, silicon and a large amount of iron, manganese, chromium and other compounds at a certain temperature, as well as some oxides.

 

Solution: The problem can be solved by strictly controlling the composition of the aluminum ingot, regularly cleaning the hearth of the smelting furnace, and regularly slagging.

 

  1. Stomatal problem

 

Porosity refers to the holes of different sizes that appear inside or on the surface of the die-casting part, which will lead to insufficient hardness of the laser-cutting jewelry part and affect the appearance of the surface.

 

Solution: Use appropriate refining agent to deal with pores, adjust the process, appropriately reduce the low speed, and confirm whether the release agent is sprayed too much to deal with the pore problem.

 

  1. Crack problem

 

Cracks refer to that the matrix of aluminum alloy die castings is destroyed, and elongated gaps are formed, which are linear or other lines, which have a tendency to extend under the action of external force.

 

Solution: It can be solved by correctly controlling the alloy composition, increasing the cooling water circuit, changing the structure of the aluminum alloy die casting, and changing or increasing the ejection position.

Selection of Surface Machining Methods for Inner Hole of CNC Lathe Machined Parts

Selection of Surface Machining Methods for Inner Hole of CNC Lathe Machined Parts

 

There are many methods for surface processing of inner holes of CNC lathes. Commonly used are drilling, reaming, reaming, boring, turning, grinding, drawing, grinding, honing, and rolling holes.

 

Applicable method for inner hole machining of CNC lathe machined parts:

 

  1. Drilling:

Drilling holes in the solid part of the workpiece with a drill is called drilling. CNC cutting is a process method for parts processing on CNC machine tools. The process regulations of CNC machine tool processing and traditional machine tool processing are generally the same, but significant changes have also taken place. A machining method that uses digital information to control the displacement of parts and tools. It is an effective way to solve the problems of variable parts, small batches, complex shapes, and high precision, and to achieve high-efficiency and automated processing. The drilling is rough swiss machining, and the dimensional tolerance level that can be reached is IT13~IT11, and the surface roughness value is Ra50~12.5μm. Is it due to the long length of the twist drill, the small core diameter and poor rigidity, as well as the influence of the chisel edge.

 

  1. Reaming:

Reaming is a finishing method for holes on the basis of semi-finishing (reaming or semi-finishing boring). In the numerical control processing, the control system issues instructions to make the tool perform various motions that meet the requirements, and the shape and size of the workpiece are expressed in the form of numbers and letters, and the processing required by the processing technology. It generally refers to the process of processing parts on CNC machine tools. In order to improve the degree of production automation, shorten the programming time and reduce the cost of CNC machining, a series of advanced CNC drilling technologies have been developed and used in the aerospace industry. The size tolerance of the reaming hole can reach IT9~IT6, and the surface roughness value can be Ra3.2~0.2μm. There are two ways of reaming: organic hinge and hand hinge. Reaming on a machine tool is called a machine hinge, and a manual reaming is called a hand hinge.

 

  1. Car hole:

The turning hole on the lathe is the rotation of the workpiece and the movement of the turning tool. The aperture size can be controlled by the cutting depth of the turning tool and the number of passes, which makes the operation more convenient. In the numerical control processing, the control system issues instructions to make the tool perform various motions that meet the requirements, and the shape and size of the workpiece are expressed in the form of numbers and letters, and the processing required by the processing technology. It generally refers to the process of processing parts on CNC machine tools. In order to improve the degree of production automation, shorten the programming time and reduce the cost of CNC mill-turn, a series of advanced CNC machining technologies have been developed and used in the aerospace industry. Lathe turning holes are mostly used to process the holes of disc sleeves and small brackets.

 

  1. Boring:

Boring is the further processing of holes that have been drilled, cast or forged with a boring tool. It can be carried out on a lathe, boring machine or milling machine. Boring is one of the commonly used hole processing methods, which can be divided into rough boring, semi-fine boring and fine boring. The dimensional tolerance grade of rough boring is IT13~IT12, and the surface roughness value is Ra12.5~6.3μm; the dimensional tolerance grade of semi-finish boring is IT10~IT9, and the surface roughness value is Ra6.3~3.2μm; The dimensional tolerance grade is IT8~IT7, and the surface roughness value is Ra1.6~0.8μm. here is about our partner.

 

  1. Reaming:

Reaming is to use a reaming drill to further process the drilled hole to enlarge the aperture and improve the accuracy (precision) and reduce the surface roughness value. The dimensional tolerance level that can be achieved by reaming is IT11~IT10, and the surface roughness value is Ra12.5~6.3μm. It belongs to the semi-finishing method of hole processing. It is often used as pre-processing before reaming, and can also be used as precision (precision). The final machining of holes that are not high.

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Plastic guide rail of CNC machining lathe

Plastic guide rail of CNC machining lathe

 

The plastic (structure: synthetic resin, plasticizer, stabilizer, pigment) slide rails (TTW guide) of CNC machining lathes are bonded to the slide rails that match the bed rails. The static and dynamic friction coefficients are basically the same, and they are wear-resistant. , Vibration-absorbing plastic soft belt, or plastic guide rails are made by injection molding between the fixed and moving guide rails. This plastic guide rail has good friction characteristics, wear resistance and vibration absorption, so it is extensively used on CNC machining lathes.

 

Plastic (structure: synthetic resin, plasticizer, stabilizer, pigment) soft tape is based on polytetrafluoroethylene (Polytetrafluoroethylene), adding bronze powder, molybdenum (molybdenum) and graphite (chemical formula C) and other fillers Mixed sintering (the process of transforming powdery materials into dense bodies) and made into a soft belt. There are already TSF guide (TTW guide) soft belt production (Produce) and supporting DJ glue in China.

 

In the numerical control processing, the control system issues instructions to make the tool perform various motions that meet the requirements, and the shape and size of the workpiece are expressed in the form of numbers and letters, and the processing required by the processing technology. It generally refers to the process of processing parts on CNC machine tools. In order to improve the degree of production automation, shorten the programming time and reduce the cost of CNC machining, a series of advanced CNC machining jewelry technologies have been developed and used in the aerospace industry. The process of using the guide rail soft belt is simple, as long as the guide rail sticking surface is semi-finished to the surface roughness Ra1.6~3.2um, after cleaning the sticking surface, glue it with glue, press and cure it, and then finish it. . Because this kind of guide rail soft belt adopts the bonding method, it is habitually called “plasticized guide rail”.

 

The material of the slide rail (TTW guide) injection molding is based on epoxy (Oxygen) resin and molybdenum (molybdenum), added with plasticizer (DOP), mixed into a paste as one component and hardener (hardener). Another component of two-component plastic (structure: synthetic resin, plasticizer, stabilizer, pigment), the domestic brand is HNT.

 

CNC machining General CNC machining usually refers to computer digital control precision machining, CNC machining lathe, 3d-printing jewelry machine, CNC machining boring and milling machine, etc. The feed route of finishing is basically carried out along the part contour sequence. Therefore, the focus of determining the feed route is to determine the feed route of rough machining and idle stroke. In the numerical control processing, the control system issues instructions to make the tool perform various motions that meet the requirements, and the shape and size of the workpiece are expressed in the form of numbers and letters, and the processing required by the processing technology. It generally refers to the process of processing parts on CNC machine tools.

 

In order to improve the degree of production automation, shorten the programming time and reduce the cost of CNC machining, a series of advanced CNC machining technologies have been developed and used in the aerospace industry. The injection molding process of the guide rail is simple. After adjusting the position accuracy (precision) between the fixed guide rail and the moving guide rail, the two-component plastic is injected, and the fixed and moving guide rails are separated after curing to form a plastic guide rail. Plastic rails are customarily called “injection rails”.

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Hydrostatic guideway of CNC machining lathe

The static pressure slide rail (TTW guide) of the CNC machining lathe transfers the oil with a certain pressure through the throttle to the oil cavity between the sliding surfaces of the slide rail (TTW guide) to form a pressure oil film to float the moving parts , Make the sliding rail (TTW guide) surface in a pure liquid friction state.

 

CNC machining General CNC machining usually refers to computer digital control precision machining, CNC machining lathe, CNC machining milling machine, CNC machining c17200 beryllium copper and milling machine, etc. The feed route of finishing is basically carried out along the part contour sequence. Therefore, the focus of determining the feed route is to determine the feed route of rough machining and idle stroke. In the numerical control processing, the control system issues instructions to make the tool perform various motions that meet the requirements, and the shape and size of the workpiece are expressed in the form of numbers and letters, and the processing required by the processing technology. It generally refers to the process of processing parts on CNC machine tools. In order to improve the degree of production automation, shorten the programming time and reduce the cost of CNC machining, a series of advanced CNC machining technologies have been developed and used in the aerospace industry.

 

According to different load requirements, the static pressure guide rails of CNC machining lathes are divided into two types: open type and closed type.

 

The open hydrostatic guide rail can only bear the load in the vertical direction, and the ability to withstand the subversion moment is poor; the closed hydrostatic guide rail has the ability to withstand all aspects of the load and the subversion moment.

The sliding rail (TTW guide) of the hydrostatic slide rail (TTW guide) is in a pure liquid friction state, so there is no wear (a basic type of component failure), precision (precision) retention, and life ( Long lifetime), and the friction coefficient of the slide rail (TTW guide) is small (typically 0.0005 to 0.001), and the mechanical efficiency (efficiency) is high, which can maintain the guiding accuracy (precision) of the slide rail (TTW guide) for a long time.

 

CNC machining General CNC machining usually refers to computer digital control precision machining, CNC machining lathe,  CNC machining c14500 copper machine, CNC machining boring and milling machine, etc. The feed route of finishing is basically carried out along the part contour sequence. Therefore, the focus of determining the feed route is to determine the feed route of rough machining and idle stroke. The pressure oil film has large bearing capacity, good rigidity, and good vibration absorption. The sliding rail (TTW guide) runs smoothly and is not easy to crawl at low speeds. However, the structure of the static pressure guide rail is relatively complicated, and an oil supply system with a good filtering effect is required, and the manufacturing cost is also high. This guide rail is mostly used in heavy-duty CNC machining machine tools.

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Elimination of Gear Backlash in CNC Machining Feed System

The transmission gear in the feed system of the CNC machining machine tool must eliminate the transmission gap between the meshing gears as much as possible, otherwise the motion will lag behind the command signal after each reversal of the feed system, which will affect the machining accuracy (accuracy) ). There are the following two common methods for CNC machining machine tools to eliminate the transmission gear gap.

 

  1. Rigidity adjustment method

 

The rigid adjustment method is an adjustment method that cannot be automatically compensated for the tooth side clearance after adjustment. Therefore, the pitch tolerance and tooth thickness of the gear must be strictly controlled, otherwise the flexibility of the transmission will be affected. This adjustment method has a relatively simple structure and a better transmission rigidity.

 

(1) Eccentric shaft adjustment method

 

As shown in Figure 610, the gear 1 is mounted on the eccentric sleeve 2. Adjusting the eccentric sleeve 2 can change the center distance between the gear 1 and the gear 3, thereby eliminating the gap. In the numerical control processing, the control system issues instructions to make the tool perform various motions that meet the requirements, and the shape and size of the workpiece are expressed in the form of numbers and letters, and the processing required by the processing technology. It generally refers to the process of processing parts on CNC machine tools. In order to improve the degree of production automation, shorten the programming time and reduce the cost of CNC machining, a series of advanced CNC machining c17500 beryllium copper technologies have been developed and used in the aerospace industry.

 

(2) Axial gasket adjustment method

 

For a pair of meshing cylindrical gears, if their pitch circle diameter is made into a smaller taper along the gear axial direction, changing the thickness of the gasket 3 can change the axial relative position of the gear 2 and the gear 1, thereby eliminating the tooth flanks. gap. In the numerical control processing, the control system issues instructions to make the tool perform various motions that meet the requirements, and the shape and size of the workpiece are expressed in the form of numbers and letters, and the processing required by the processing technology. It generally refers to the process of processing parts on CNC machine tools. In order to improve the degree of production automation, shorten the programming time and reduce the cost of CNC machining c11000 copper, a series of advanced CNC machining technologies have been developed and used in the aerospace industry.

 

Add a shim 2 between the two thin helical gears 3 and 4, change the thickness t of the shim, and the helix of the thin gears 3 and 4 will be misaligned, so that the thin gears 3 and 4 are respectively aligned with the teeth of the wide helical gear 1. The left and right sides of the groove are tightly attached to each other, thereby eliminating the tooth side clearance.

 

  1. Flexible adjustment method

 

The flexible adjustment method is an adjustment method in which the tooth flank gap can still be automatically compensated after adjustment. This method generally adopts adjusting the pressure of the pressure spring (Spring) to eliminate the tooth side clearance, and in the case of changes in the tooth thickness and circumferential section of the gear, it can also maintain a gapless meshing, but the structure of this adjustment method is relatively more. Complex, large axial size, low transmission rigidity, and poor transmission stability.

 

(1) Axial compression spring adjustment method

 

The two thin helical gears 1 and 2 are sleeved on the shaft 6 with the key 4, and the nut 5 is used to adjust the axial pressure of the pressure spring 3. The left and right tooth surfaces of the groove are tightly attached to each other, thereby eliminating the tooth side clearance. The spring force needs to be adjusted properly, too loose can not eliminate the gap, too tight will accelerate the wear of the gear (a basic type of component failure).

 

(2) Circumferential spring adjustment method

 

Two thin gears 1 and 2 with the same number of teeth mesh with another wide gear, and the gear 1 is idler on the gear 2 and can rotate relatively. CNC machining General CNC machining c17300 beryllium copper usually refers to computer digital control precision machining, CNC machining lathe, CNC machining milling machine, CNC machining boring and milling machine, etc. The feed route of finishing is basically carried out along the part contour sequence. Therefore, the focus of determining the feed route is to determine the feed route of rough machining and idle stroke. The end face of each gear is evenly equipped with four threaded lugs 3 and 8 respectively. There are four through holes on the end face of the gear 1 through which the lug 8 can pass. The spring 4 is hooked on the adjusting screw 7 and 9 lug 3 respectively. . Turning the nuts 5 and 6 can adjust the tension of the spring 4. The tension of the spring displaces the sheet gears 1 and 2 with each other, and respectively adhere to the left and right tooth surfaces of the wide gear grooves to eliminate the tooth side clearance.

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Classification of CNC Machining Occupation Levels

 

  1. Blue-collar layer:

 

That is, CNC machining operation technicians, proficient in machining and CNC machining process knowledge, proficient in the operation and manual programming of CNC machine tools (attributes: automated machine tools), understand automatic programming and simple maintenance of CNC machine tools (attributes: automated machine tools), such There is a large market demand for personnel, and they are suitable for operating workers of CNC machine tools (attributes: automated machine tools) in the workshop, but due to their single knowledge, their wages will not be much higher.

 

  1. Gray collar layer:

 

One, CNC machining programmer:

 

Master the knowledge of 5 Axis CNC machining Aluminum technology and the operation of CNC machine tools (attributes: automated machine tools), be familiar with the design and manufacturing expertise of complex molds (title: mother of industry), and be proficient in 3D CAD/CAM software, such as UG, GOOGLE PRO/E, etc. ; Familiar with CNC automatic programming and manual programming technology. CNC machining is a process method for parts processing on CNC machine tools. The process regulations of CNC machine tool processing and traditional machine tool processing are generally the same, but significant changes have also taken place. A machining method that uses digital information to control the displacement of parts and tools. It is an effective way to solve the problems of variable parts, small batches, complex shapes, and high precision, and to achieve high-efficiency and automated processing. In the numerical control processing, the control system issues instructions to make the tool perform various motions that meet the requirements, and the shape and size of the workpiece are expressed in the form of numbers and letters, and the processing required by the processing technology. It generally refers to the process of processing parts on CNC machine tools. In order to improve the degree of production automation, shorten the programming time and reduce the cost of CNC machining, a series of advanced CNC machining technologies have been developed and used in the aerospace industry. This kind of personnel is in high demand, especially in the mold (title: mother of industry) industry is very popular, and the treatment is also very high.

 

Second, the maintenance and repair personnel of CNC machine tools (attribute: automated machine tools):

 

Master the mechanical structure and electromechanical joint adjustment of CNC machine tools, master the operation and programming of CNC machine tools, and be familiar with the characteristics of various CNC systems, software and hardware structures, PLC and parameter settings. Proficient in the mechanical and electrical debugging and maintenance of CNC machine tools. The demand for such personnel is relatively small, but it is very difficult to train such personnel and requires a large amount of practical experience (experience) accumulation, which is currently very scarce, and their remuneration is also high.

 

  1. Gold collar layer:

 

A generalist in CNC machining, possesses and is proficient in the comprehensive knowledge required by CNC machining operators, CNC programmers, and CNC maintenance and repair personnel, and has accumulated a lot of practical experience in actual work, and has a wide range of knowledge. CNC machining CNC is also called computer gong, CNCCH or numerical control machine tool. It is actually a kind of name in Hong Kong, which greatly reduces the number of tooling. CNC machining beryllium copperwith complex shapes does not require complex tooling. CNC machining is a new type of processing technology, the main work It is to compile the processing program, that is, to convert the original manual work to computer programming. If you want to change the shape and size of the part, you only need to modify the part processing program, which is suitable for new product development and modification. Proficient in the mechanical structure design of CNC machine tools (attribute: automated machine tool) and electrical design of CNC system, master the electromechanical joint debugging of CNC machine tools (attribute: automated machine tool). Can complete the selection of CNC system, the design, installation, debugging and maintenance of the electrical system of CNC machine tools. Can independently complete the CNC transformation of machine tools. They are the sought-after talents of enterprises (especially private enterprises), and their remuneration is very high.

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Which is harder, brass or copper?

Which one is harder, brass or copper?

 

Copper has good electrical conductivity, thermal conductivity and ductility. It is widely used in cables and electrical and electronic components. Because of its low melting point, it is easy to remelt and re-smelt. It is also a relatively environmentally friendly material. Among them, brass and red copper are widely used. Many companies do not know which brass or red copper has high hardness, which leads to errors in the production. The following technicians will introduce to you which hardness of brass parts or red copper is high?

 

brass

 

What is copper?

 

Purple copper is named for its purple-red color. It is a relatively pure copper. It is not necessarily pure copper. Generally, it can be approximated as pure copper. It has good electrical conductivity and plasticity, but its strength and hardness are worse.

 

What is brass?

 

Brass is an alloy composed of copper and zinc. Brass composed of copper and zinc is called ordinary brass. If it is a variety of alloys composed of more than two elements, it is called special brass. Brass is Copper-zinc alloy has excellent plasticity, high strength and good corrosion resistance.

 

Which is harder, brass or copper?

 

1. The general feature of metal materials is that the hardness of pure metal is lower than that of its alloy, which has high hardness and low melting point. Oxygen-free copper and red copper partsare both pure copper, but the purity is different. The purity of oxygen-free copper is higher, and the purity of red copper can also reach 99.9%~99.99% (different grades have some differences). Red copper contains very few impurities, so there is no Oxygen copper has high purity, soft, red copper is slightly hard (close to oxygen-free copper), and brass is hard.

 

  1. There is another feature of copper material. The hardness will become soft after heat treatment, and it will become hard after cold working (cold work hardening). Due to the influence of the hardness, composition, brand and impurities of non-ferrous metals and alloys, it is also affected by the state, crystal The lattice structure has a lot to do with it, so there are generally few specific hardness data, which can only be described qualitatively.

 

  1. What is the hardness of red copper? Red copper has a density (7.83g/cm3), a melting point of 1083 degrees, and a copper content of 99.9%. It is non-magnetic. It has good electrical conductivity, thermal conductivity and corrosion resistance, and the copper is purple due to Named for the red color. The electrical conductivity and thermal conductivity of copper is second only to silver, and it is widely used in the production of electrical and thermal conductivity equipment. Copper is used in the atmosphere, seawater, and some non-oxidizing acids, alkalis, salt solutions and various organic acids. , Has good corrosion resistance, used in the chemical industry.

 

  1. The density of brass (8.93g/cm3) is used for mechanical bearing lining, wear-resistant, brass “density is greater than copper” copper-based alloy with zinc as the main alloying element, copper is about 60%; zinc is about 40% ; Individual grades contain about 1% of lead, which is impurity. Named because it is often present, brass is beautiful in color, has good craftsmanship and mechanical properties, has a certain degree of corrosion resistance, and has lower electrical conductivity than copper.

 

Which one of brass or copper has higher hardness, I believe everyone will understand from the above introduction. When manufacturing wires and cables, of course, red copper is more preferable. Its conductive resistance is small, and it is more suitable for conductors. The hardness is less than brass, making the wires and cables more flexible. It is easier to operate during use, and at the same time there are fewer impurities, which increases the conductivity of copper.

 

Products that be-cu.com can process include: titanium-parts,stainless-steel-parts,magnesium-parts,zinc-parts,steel-parts,metal-parts,superalloy-parts,plastic-parts,car-parts,industrial-product,medical,anime-model,sla-3d-printing.

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The Principle Of LED Chip Flip-Chip Process

The reason why the chip mounted is called “flip chip” is relative to the traditional wire bonding connection method (WireBonding) and the post-balling process. The electrical side of the traditional chip connected to the substrate by wire bonding faces up, while the electrical side of the flip chip faces down, which is equivalent to turning the former over, so it is called “flip chip”.

 

The essence of flip chip is that on the basis of the traditional process, explosion proof lighting area and the electrode area of the chip are not designed on the same plane. At this time, the electrode area is mounted toward the bottom of the lamp cup, which can save the process of wire bonding. , but the precision of this process of solid crystal is relatively high, and it is generally difficult to achieve a high yield.

 

Requirements for flip chip:

 

The base material is silicon;

The electrical surface and solder bumps are on the lower surface of the component;

Underfill is required after assembling on the substrate.

The Advantages Of Flip Chip Compared With Traditional Process

The GaN-based LED structure layer is grown on the sapphire substrate by MOCVD technology, and the light emitted from the light-emitting region of the P/N junction is emitted through the upper P-type region. Due to the poor conductivity of P-type GaN, in order to obtain good current spreading, a metal electrode layer composed of Ni-Au needs to be formed on the surface of the P region by evaporation technology. The lead of the P region is drawn out through this layer of metal film. For good current spreading, the Ni-Au metal electrode layer should not be too thin. Therefore, the luminous efficiency of the device will be greatly affected, and two factors, current expansion and light extraction efficiency, are usually taken into account at the same time. But no matter under what circumstances, the existence of metal film will always make the light transmission performance worse. In addition, the presence of lead solder joints also affects the light extraction efficiency of the device. Using a GaNLED flip-chip structure can fundamentally eliminate the above problems.

 

The Application Analysis Of Flip-chip LED Chip Technology Industry

In recent years, various countries in the world, such as European countries, the United States, Japan, South Korea and China, have implemented LED lighting related projects. Among them, the “Ten Cities, Ten Thousand Lights” plan promoted by my country is the most eye-catching. Street lights are an indispensable part of urban lighting. Traditional street lights usually use high-pressure sodium lamps or metal halide lamps. The biggest feature of these two light sources is that the size of the light-emitting arc tube is small, which can produce a large light output and has a high light efficiency. . However, when this type of light source is used in road lamps, only about 40% of the light reaches the road directly through the glass cover, and 60% of the light is reflected by the lamp reflector and then emitted from the lamp.

 

Therefore, there are basically two deficiencies in traditional lamps at present. First, the illuminance in the direction where the lamps are directly illuminated is very high, which can reach more than 50Lx in the secondary road. This area is obviously over-illuminated, and the illuminance at the intersection of the two lamps is only It is 20%-40% of the illuminance at the center of the lamp, and the light distribution uniformity is low; second, the reflector efficiency of such lamps is generally only 50%-60%, so there is a lot of light loss in the reflection process, so The overall efficiency of traditional high-pressure sodium lamps or metal halide street lamps is 70-80%, with low uniformity and excessive waste of illumination. In addition, the service life of high-pressure sodium lamps and metal halide lamps is usually less than 6000 hours, and the color rendering index is less than 30; LED has significant advantages such as high efficiency, energy saving, long life (50,000 hours), environmental protection, and high color rendering index (>75). How to effectively apply LEDs to road lighting has become the hottest topic for LED and street lamp manufacturers. Generally speaking, according to the use environment of the street lamp, there are strict requirements on the optical design, life guarantee, dustproof and waterproof ability, heat dissipation treatment, light efficiency and so on of the LED. As the core of LED street lights, the manufacturing technology of LED chips and the corresponding packaging technology jointly determine the future application prospects of LEDs in the field of lighting.

Products that led lamp can processinclude:indoor,led-light-assembly,high-bay-led-lights,led-grow-lights,food-safe-led-lights,factory-lighting,factory-lighting,led-paint-booth-lights,led-warehouse-lightingled-canopy-lights,outdoor,led-flood-lights,led-street-lights,led-corn-bulbs,led-stage-lighting,led-solar-lights,led-solar-lights,led-horse-arena-lights,led-parking-lot-lights,led-stadium-lights,led-wall-pack-lights

For more information about us, please contact us directly.

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Influence of 3D printing on mechanical manufacturing and automation

3D printing technology is widely used because of its flexibility and convenience. Printing technology involves different molding processes and material classification.

There is no uniform standard now. According to the volume of the equipment, it can be divided into desktop, medium and large 3D printers; It can be divided into: aerospace, military, industrial, civil 3D printers, etc. 3D printing propsis a comprehensive technology combining mechanical engineering technology, computer software technology, 3D model technology, data processing technology and other disciplines. To a certain extent, it meets the needs of the development of mechanical manufacturing, and brings ultra-fast molding speed, unparalleled printing speed, high material utilization rate and short production cycle in industrial production, greatly improving the degree of automation and digitalization.

At present, XYZPrinting partpro150_ XP, mechanical manufacturing and automation are mainly based on computers, combined with mechanical equipment and automation, and through a series of manufacturing technologies, such as computer-aided design and manufacturing, flexible manufacturing system, and then constitute a computer integrated manufacturing system. Its applications mainly include CNC machines and machining centers.

The impact of printing on mechanical manufacturing and automation mainly has two aspects: positive and negative.

It has two impacts on the development of mechanical manufacturing and automation. 3D printing medical uses a variety of materials, but the material itself has limitations and hazards. Especially, the more difficult it is to degrade materials, which directly threatens human health and safety. The promotion of 3D printing and laser scanning technology may also lead to a large number of imitation products, which will bring some challenges to the development of the design industry and commodity costs, such as furniture products, tools, and even intellectual property issues.

In the information age, printing in chip manufacturing still has some limitations. Because the relevant parts of different materials are difficult, it is necessary to improve and improve between energy consumption, high cost and low efficiency. 3D Printing jewellery is an important embodiment and component of the development of mechanical manufacturing automation.

Compared with traditional printers, the liquid or powder emitted by 3D printers are different printing materials, such as light curing, rapid direct manufacturing and molding, layer-by-layer control computer superposition, and finally the physical object can be obtained. The workflow of 3D printer is to create a project, use CAD software, copy the model to 3 printers, print by setting various adjustable parameters, and specifically compose control elements, mechanical elements, print heads, consumables and media If all processes and parts are automated, 3D printing technology and mechanical manufacturing automation will be more closely linked.

Products that 3-di.com can process include: 3d printing applianc, 3d printing sand table

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Saving labor cost by printing 3d hand model

With the maturity of SLA light-curing 3D printing technology, some smart tablet manufacturers have begun to use 3D printers to include in their enterprise plans. The 3D printing tablet model is completely proofed according to the original shape of the plan, with low error. Compared with the traditional prototype, it saves the cost of proofing, shortens the manufacturing cycle of the prototype model, ensures the confidentiality of the product development planning scheme, and greatly improves the work efficiency and product development. According to the feedback from the manufacturer using the SLA 3D printing prototype of Harbin Industry, the business volume has increased rapidly and the labor cost has been saved by 40% since the use of the D printer prototype for about a year since March. Let’s see how 3D can help hand board manufacturers save 40% of labor costs!

The hand board is also called “model” and also called “first board” many years ago “. It is not only an important link to verify the feasibility of the product, but also an important link to find out the shortcomings of the product. Shortcomings. A more direct and effective method of shortcomings is to refer to the handboard to improve the shortcomings and deficiencies in the planning. The handboard can solve the above problems well. The handboard processing method has also evolved from manual to milling machines, engraving machines and CNC processing to today’s 3D printing manual models. Although many handboard manufacturers still Although they are used for CNC processing, the disadvantage of CNC has become a headache for the owners of many handicraft factories.

What are the problems of traditional hand board manufacturer CNC CNC machine tools in making hand board models?

1、 High dependence on labor: The complexity of CNC machine tool processing in traditional hand board manufacturers requires the proficiency of workers, while the labor cost in China has increased year by year in the past decade. In 1997, the salary of CNC CNC machine tool workers was 1000 yuan, and now the per capita salary is 6000-8000 yuan. Artificial masters have the right to speak. The younger generation of workers are unwilling to do this kind of work, and there is no successor to the technology. The workshop is noisy, the environment is poor, and there is a serious loss of automotive parts in the hand board industry.

2、 It is impossible to make a hand board with complex structure: some hand boards with very high accuracy, circuitous or hollow, and complex pure curved surface structures, CNC CNC machine tools are often unable to make them, even if they are reluctantly made, it will take a long time, and the cost is also very high. CNC machine tools with internal structure need to be separated and then assembled together. Many hand board manufacturers have actually lost their orders.

3、 Error prone: The accuracy standard of CNC machine tool itself causes some errors, especially when the operator is not skilled enough. This means that design defects will not be found before production, resulting in costly rework and time loss.

3D hand board model

What are the advantages of using printers in 3D prototype factory?

  1. Short production cycle, without cutting tools and molds: CAD digital model is directly processed and formed, with fast processing speed and short production cycle, without cutting tools and molds. CNC CNC machine tools usually need one week to deliver, while CNC machine tools usually need one week to print and one day to deliver. CNC CNC machine tools need to be on duty manually, while 3D printing does not need manual intervention. Basically, unattended production can be realized in the daytime or at night. The production efficiency is significantly improved and the cycle is shortened.
  2. Reduce the cost of complex hand models: 3D printing technology can handle prototypes and molds with complex structures, or use traditional and mold. Industrial 3D uses printer SLA light curing technology to illuminate the surface of light curing materials (mainly photosensitive resin) with a specific intensity of laser focus, so as to make point to line and line to surface layer by layer. Ordinary hand boards or hand boards are relatively complex, and printing time and materials are not difficult. Resin 3D printing can be used to make some CNC machine tools that cannot manufacture precision structures, such as hollow-out, barb, hollow hand board model, etc.
  3. There is no need for high education or senior experience. Simple and easy to use: Although 3D printing technology is very new, it is very simple to operate because most 3D printing processes are completed by computer intelligence. Users who use industrial 3D printers can start operation as long as they have received 3D training. It does not require high education or senior experience, and is easy to operate.
  4. Environmental protection and health, high material utilization: traditional CNC machine tool workshop will produce a lot of dust and noise. In such a working environment, it is easy to cause anxiety and fatigue, which many people cannot bear. 3D printing technology, these problems do not exist. The sound produced by the industrial 3D printer when running is less than 10 decibels, which is smaller than the sound people usually communicate with. Its matching 3D printing material is also environmentally friendly and harmless. Unlike CNC CNC lathes, 3D printing hand boards are made by carving. Most of the materials are wasted, and the utilization rate is less than 35%. The utilization rate of 35% nylon 3D printing hand boards is more than 75%, which greatly reduces the waste cost of materials.
  5. Customization accelerates product design innovation: 3D printers can quickly create a tangible physical model. The reduction of costs will inevitably lead to many industries being more willing to innovate in design, which in fact brings better experience to consumers of products. The demand for personalized customization will also be the continuous improvement of 3D with the popularization of printing technology.

Why do many tablet manufacturers choose 3D 3D printers?

Leading technology, efficient and stable

Considering the particularity of the hand board industry, industrial 3DR&D3D printers are compatible with many software hand board manufacturers at home and abroad. You can select appropriate software according to your needs, such as one-key support and graphic file repair function software, to achieve a perfect connection between metal 3D printing technology and the hand board field. The high-speed galvanometer scanner is used as the core hardware to ensure the high efficiency and stability of the machine.

Material performance advantages:

Industrial three-dimensional light-cured resin has the characteristics of high temperature resistance, high toughness, high strength, softness and transparency, which can meet the requirements of different hand boards, so as to achieve the perfect presentation of products.

Supply chain advantages:

3D has the R&D capability of the overall 3D printing sculptural and statues, which can comprehensively improve the quality of products and services. Industrial 3D is not only a manufacturer and seller of equipment, but also a comprehensive solution provider of 3D printing industry and technical services. The company focuses on the research and development of printing equipment, manufacturing and industrial application solutions of three D companies; Focus on the construction of 3D printing modernization, intelligence and digital industrial manufacturing scenes; Focus on 3D R&D and process development and printing related technical equipment.

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