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Machinability of cast titanium alloy Ti-6Al-4V with addition of boron

机译:添加硼铸钛合金Ti-6Al-4V的可加工性

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摘要

Cast titanium products generally have coarser microstructures compared to wrought, which explains their limited mechanical properties. However, instead of additional thermo-mechanical processing steps, as in the case of wrought components, the microstructure of castings can be refined by additions of boron. This enhances yield strength, tensile strength and ductility. In order to investigate the influence on machining of this microstructural refinement, cutting tests were performed in three different Ti-6Al-4V castings, having 0, 0.06 and 0.11 wt.% boron. Five machinability criteria were studied; cutting force, chip breakability, burr formation, surface roughness and tool wear. The results show anisotropic deformation behavior in chips when alpha colony size is on the same order of magnitude as the primary deformation zone, or larger. There was little or no influence on cutting forces and burr formation, however chip breakability and tool life was reduced when boron was added. Surface roughness showed a more complex behavior where 0.06 wt.% boron resulted in rougher surfaces compared to the other compositions at low feed rate.
机译:与锻造相比,铸钛产品通常具有较粗糙的微观结构,这解释了它们有限的机械性能。然而,除了锻造部件的情况下,代替额外的热机械加工步骤,可以通过添加硼改进铸件的微观结构。这提高了屈服强度,拉伸强度和延展性。为了研究对这种微观结构细化的加工的影响,在三种不同的Ti-6Al-4V铸件中进行切削测试,具有0,0.06和0.11重量%。%硼。研究了五种可加工标准;切割力,屑耐磨性,毛刺形成,表面粗糙度和工具磨损。当α菌落尺寸与主要变形区的数量级相同时,结果显示了芯片中各向异性变形行为,或者是主要变形区的阶数,或者更大。对切​​割力和毛刺形成几乎没有影响,但是当加入硼时,屑耐磨性和刀具寿命都会降低。表面粗糙度显示出更复杂的行为,其中0.06重量%。%硼导致与其他组合物以低进料速率相比的粗糙表面。

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