EMU of machining metal parts
Brand: CNC Machining parts for EMU
Standard: national standard, international standard
Material: 3CR13
Tolerance: plus or minus 0.01mm high precision; smooth surface; no burrs
Specifications: According to the requirements, drawings and samples are customized in batches
Introduction: Professional hardware accessories processing factory
(Commonly used are German standard and American standard) GB
(National standard) ISO
(International Standard) DIN
(German system) JIS
(Japanese standard) ANSI /ASME (American National Standards Institute-ANSI; American Society Of Mechanical Engineers-ASME)
(American Standard) BS
(English) IFI =Industrial Fastener Institute is the standard of the American Industrial Fastener Association
BA (English system)
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Related Posts
The characteristics of turning copper parts
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Copper alloy machining (turning, milling) has excellent performance and low resistivity. Good ductility, high thermal and electrical conductivity, so it is the most commonly used material in cables, connectors, and electrical and electronic components. It can also be used as a building material and can be composed of many kinds of alloys. The most important of these are: beryllium copper, phosphor bronze, bronze and brass. In addition, copper is also a durable metal that can be recycled many times without compromising its mechanical turning and milling performance.
CNC Milling Technology of Micro Parts
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The machining of micro parts is also called micro electromechanical system or micro system. It is a micro device or system that can be produced in batches, integrating micro mechanisms, micro sensors, micro actuators, and signal processing and control circuits, even peripheral interfaces, communication circuits and power supplies.
Development of micro-turning and milling parts
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In recent years, civil defense and other fields demand for a variety of CNC machining miniaturization of products continues to increase, the function of the tiny devices, the complexity of the structure, reliability requirements are also increasing. Therefore, it is of great significance to research and develop micro-machining technologies that are economically feasible, capable of processing three-dimensional geometric shapes and diversified materials, and feature sizes ranging from micrometers to millimeters. At present, micro-cutting has become an important technology to overcome the limitations of MEMS technology.
Super finishing of turning and milling micro parts
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The micro CNC machining technology adopts a fully automatic method to super-finish the surface of metal parts. Through a kind of mechanochemical action, the material of 1-40μm on the surface of the metal parts is removed, and the surface quality of the processed surface reaches or is better than the N1 level of the ISO standard. Micro CNC machining technology is mainly used in the two fields of ultra-precision polishing and ultra-precision brightening.
Design the correct CNC machining part program
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The ideal CNC machining program should not only ensure that qualified workpieces conforming to the drawings are processed, but also should enable the functions of the CNC machine tool to be reasonably applied and fully utilized. The CNC machine tool is a highly efficient automation equipment. Its efficiency is 2 to 3 times higher than that of ordinary machine tools. Therefore, to give full play to this feature of CNC machine tools, one must master its performance, characteristics, and operating methods. At the same time, the machining plan must be correctly determined before programming.
CNC machining with CAXA wire cutting
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CAXA wire cutting is a software system for CNC programming of wire cutting machine tools, which has a wide range of applications in the field of wire cutting processing in my country. It can provide fast, efficient, and high-quality CNC programming codes for various wire-cutting machine tools, greatly simplifying the work of CNC programmers. CAXA wire cutting can quickly and accurately complete tasks that are difficult to complete under traditional programming methods.
Machining of large and thin-walled aluminum parts
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For CNC machining of aluminum parts with a large margin (large, thin-walled, aluminum cavity parts), in order to have better heat dissipation conditions during the machining process and avoid heat concentration, symmetric machining should be used during machining. If there is a 90mm thick aluminum sheet that needs to be machined to 60mm, if one side is milled, the other side should be milled immediately, and the flatness can only reach 5mm after processing to the final size at a time;
How to solve the deformation of thin parts in CNC machining?
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Turning and milling thin parts (aluminum, aluminum alloy, pure titanium, copper, magnesium alloy) are always prone to deformation during machining. Oval or “waist shape” with a small middle and large ends, which makes it difficult to ensure the quality of parts. Its clamping design is often the most discussed point. Let’s take a look at two design examples of thin-walled fixtures on turning and milling parts, and how they solve the deformation problem.
CNC Turning of Titanium Alloy Parts
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The special properties of titanium alloys make it more and more widely used. High strength/weight ratio, excellent toughness and excellent corrosion resistance. The titanium alloy can be used to make medical human implants, racing parts, ship parts, aircraft parts, underwater breathing devices, golf club heads, and military armor.
Manufacturer of Machined Medical Titanium Components
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The medical application of titanium as a material is constantly expanding, new application possibilities in the human body are constantly being opened up. Parts made of titanium are used for pins, screws, wires and rods, plates, grids and cages to moving parts with joints such as replacements for fingers or toes. Replacing bones and joints from milled titanium parts and titanium assemblies is a complex task, but surgery, orthopedics and dentistry are indispensable without implants made of titanium.
Surface treatment for rapid prototyping
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5G base station’s heat sink cavity prototype
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The project of aluminum alloy heat sink prototype. Its processing method is CNC processing, and the surface treatments used include sanding, laser engraving and sandblasting.
CNC machining: cnc tool apparatus above, according to the programmed path, the motion in the above material, the excess material is removed portion, whereby the prototype of the prototype model.