Can titanium alloy be used as precision parts in precision machining
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Can titanium alloy be used as precision parts in precision machining
Titanium alloy can be used to make precision parts in precision machining. This material can be processed in many ways, such as milling, turning, grinding, drilling, electrical discharge machining, etc. Firstly, we must understand the characteristics of titanium alloy materials, which are high hardness, low plasticity, and low thermal conductivity. Based on these characteristics, during the processing of titanium alloy precision mechanical parts, high cutting temperatures and strong cutting forces may occur. So it is necessary to choose cutting tools with high wear resistance and strong hardness. Common cutting tool materials include high-speed steel, hard alloy, coated cutting tools, and polycrystalline diamond cutting tools.
In the process of precision machining titanium alloy parts, it is necessary to use cutting fluid reasonably, which can not only reduce the heat of the blade, but also wash away the chips, thereby reducing the cutting force and improving the machining quality of precision mechanical parts. When rough machining precision parts made of alloy materials, it is advisable to use tools with small front/back angles and high rigidity. For precision machining, it is recommended to use tools with sharp edges, dense teeth, large front/back angles and helix angles, small negative chamfers or no chamfers. During the drilling process of titanium alloy, there are often occurrences of drill breakage and tool burning, which are caused by poor grinding of the drill bit, poor cooling, untimely chip removal, and poor rigidity of the process system. To avoid the above situation, strict control must be carried out from the following aspects: firstly, frequent tool return and timely removal of chips; The second is to add sufficient chip solution; The third is to fix the drill die and worktable, and at the same time, the guide of the drill die and the machining surface should be as close as possible to shorten the drill bit; The fourth is the manual feed process, and the drill bit inside the hole should move back and forth to avoid dulling the drill bit due to friction between the drilling edge and the machined surface. Control the cutting process of titanium alloy materials to improve the overall efficiency of titanium alloy material processing.

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