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Multi Response Optimization and Experimental Investigations into the Impact of Wire EDM on the Tribological Properties of Ti-6Al-4V

机译:电线EDM对TI-6AL-4V摩擦学特性影响的多响应优化及实验研究

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摘要

Titanium (Ti) alloy, Ti-6Al-4V (commonly known as Ti64), is employed in numerous applications due to their superior strength to weight ratio, low cost to performance ratio, tensile strength, and corrosion resistance properties. However, due to its poor tribological (friction and wear) properties and difficult-to-machine material, its implementation in the intended applications is limited. Nevertheless, Ti64 can be accurately machined using wire electrical discharge machining (WEDM) and further, this process develops a recast layer on the surface of Ti64, which posses larger percentage of oxygen. Therefore, in the present work, it is hypothesized that, the presence of the recast layer on the surface of Ti64 may enhance its tribological properties. To validate the proposed hypothesis, pins of (1) pure Ti64 and (2) WEDMed Ti64 were slided against EN32 steel disc on a pin on disc experimental setup for load of 50 N, rotational speed of 200 rpm and sliding distance of 500 m. In-situ analysis (scanning electron microscope and energy dispersive spectroscopy) and mechanical properties (nano-hardness and elastic modulus) were performed on the pin's surface, to identify the change in properties. Obtained results indicated significant increase in the oxide layer formation, consequently enhanced the tribological properties of WEDMed Ti64 compared to pure Ti64. To understand the tribological behavior of WEDMed Ti64 at other rotational speed and load, second set of experiments was performed by varying load (50, 70 and 90 N) and rotational speed of (200, 400 and 600 rpm). It was observed that wear values were not proportional to increase in load and speed. To identify the condition favoring the tribological behavior, multi-response optimization technique was performed and the identified load and speed values for the optimum tribological behavior were estimated.
机译:钛(Ti)合金,Ti-6Al-4V(通常称为Ti64),在许多应用中采用,其具有优异的重量比,性能比,抗拉强度和耐腐蚀性能低。然而,由于其摩擦差(摩擦和磨损)性能和难以对机材料,其在预期应用中的实现是有限的。然而,可以使用导线电气放电加工(WEDM)来精确加工TI64,并且该过程在Ti64的表面上显影重量层,其含有较大的氧气。因此,在本作工作中,假设,Ti64表面上的重量层的存在可以增强其摩擦学特性。为了验证所提出的假设,(1)纯TI64和(2)型WedMed Ti64的引脚在盘实验设置上的销钉上以50 n,载荷为200rpm的载荷和500μm滑动速度的销钉。原位分析(扫描电子显微镜和能量分散光谱)和机械性能(纳米硬度和弹性模量)在销的表面上进行,以识别性质的变化。得到的结果表明,与纯Ti64相比,氧化物层形成的显着增加,因此增强了WedMed Ti64的摩擦学特性。为了了解WedMed Ti64以其他转速和负载的摩擦学行为,通过改变负载(50,70和90n)和(200,400和600rpm)的转速进行第二组实验。观察到磨损值与负载和速度的增加没有成比例。为了确定有利于摩擦学行为的条件,进行了多响应优化技术,估计了最佳摩擦学行为的鉴定的负载和速度值。

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