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Investigation of Wear Behaviour for NiTi Alloys with Yttrium and Tantalum Additions

机译:钇和钽加合金磨损行为调查

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A study of the effects of added Yttrium and Tantalum on the wear behaviours of NiTi shape memory alloys was completed to examine the effects of compacting pressure levels between 400 and 650 MPa and to investigate wear parameters such as load, sliding distance, and time to determine the wear rate for the prepared alloys. Several alloys were prepared using a powder metallurgical technique; the powder mixture had a basic chemical composition of 55% Nickel and 45% Titanium, and alloying elements of Yttrium and Tantalum were then added at weight percentages 1,2, and 3 wt% of each element (at the expense of nickel) before the powders were mixed then compacted under a range of compacting pressures (400, 500, 600, and 650 MPa) to form cylindrical samples, Sintering was completed in two steps. The first step was done at a temperature of 500 °C for two hours, while the second step was done at 850 °C for six hours, both under vacuum conditions (6.7 E -02 Pa). The generated specimens were then left to cool. The wear behavior was then studied using pin-on-disk tests at variable loads and times (2, 5,10, and 15 N and 5, 10, 15, and 20 min, respectively). XRD testing, apparent density and porosity, hardness, and surface roughness tests were also completed in this study. From the results, it is clear that the wear volume loss decreases with the addition of Tantalum by 0.52% with 3% Tantalum addition at 650 MPa compacting stress for a 15 N load; it also decreases by 0.48% with 2% Yttrium addition at 650 MPa for a 10 N load. The wear volume loss further decreases as the compacting stresses increase. In addition, the wear rate increased as the load and time increased for all tested specimens.
机译:完成了对NITI形状记忆合金的磨损行为对NITI形状记忆合金的磨损行为的影响,以检查400和650MPa之间的压力水平的影响,并研究诸如负载,滑动距离和时间以确定的磨损参数制备合金的磨损率。使用粉末冶金技术制备几种合金;粉末混合物的碱性化学组合物为55%镍和45%钛,然后在重量百分比1,2和3wt%的每种元素(镍)之前加入钇和钽的合金元素混合粉末然后在压实压力(400,500,600和650MPa)的范围内压实以形成圆柱形样品,烧结分两步完成。第一步在500℃的温度下进行2小时,而第二步在真空条件下在850℃下在850℃下完成六小时(6.7E -02Pa)。然后将产生的样品冷却。然后使用可变载荷和时间(2,5,10和15 n和5,10,15和20min)使用引脚盘测试磨损行为进行研究。本研究还完成了XRD测试,表观密度和孔隙率,硬度和表面粗糙度测试。从结果中,显然耐磨体积损失随着钽的添加减少0.52%,在650MPa压缩应力下加入3%的钽加入15 n负载;它还减少0.48%,在650MPa下加入2%的钇加入10 n负荷。随着压实的应力增加,磨损体积损失进一步降低。另外,对于所有测试样品的负载和时间增加,磨损率增加。

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