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The effect of machining on surface integrity of titanium alloy Ti-6 percent Al-4 percent V

机译:机加工对钛合金Ti-6%Al-4%V的表面完整性的影响

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This paper gives the investigation on surface integrity of rough machining of titanium alloy Ti-6 percent Al-4 percent V with uncoated carbide cutting tools. The experiments were carried out under dry cutting conditions. The cutting speeds selected in the experiment were 100, 75, 60 and 45 m min~(-1). The depth of cut was kept constant at 2.0 mm. The feed rates used in the experiment were 0.35 and 0.25 mm rev~(-1). Two types of insert were used in the experiments. For a range of cutting speeds, feeds, and depths of cut, measurements of surface roughness of machined surface, microhardness and work hardening backed up with scanning electron microscope were taken. The surface of titanium alloy is easily damaged during machining operations due to their poor machinability. The machined surface experienced microstructure alteration and increment in microhardness on the top white layer (<= 10 mu m) of the machined surface. Severe microstracture alteration was observed when machining with the dull tool. In addition, surface roughness values obtained were within the limit (<6 mu m) stipulated by ISO for rough machining.
机译:本文对用未涂覆的硬质合金切削刀具对钛合金Ti-6%Al-4%V进行粗加工的表面完整性进行了研究。实验在干切削条件下进行。实验中选择的切削速度为100、75、60和45 m min〜(-1)。切割深度保持恒定在2.0毫米。实验中使用的进给速度为0.35和0.25 mm rev〜(-1)。实验中使用了两种类型的插入物。对于一定范围的切削速度,进给量和切削深度,采用扫描电子显微镜对机械加工表面的表面粗糙度,显微硬度和加工硬化进行了测量。钛合金的表面由于其可加工性差而在加工过程中容易损坏。加工表面经历了微观结构的改变,并且在加工表面的顶部白色层(<= 10μm)上的显微硬度增加了。用钝工具加工时观察到严重的微观结构变化。另外,获得的表面粗糙度值在ISO规定的粗加工范围内(<6μm)内。

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