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首页> 外文期刊>High temperature materials and processes >Wear Properties of Titanium and Ti6Al4V Titanium Alloy by Mechanical Milling : High Temperature Materials and Processes
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Wear Properties of Titanium and Ti6Al4V Titanium Alloy by Mechanical Milling : High Temperature Materials and Processes

机译:机械铣削钛和Ti6Al4V钛合金的磨损性能:高温材料和工艺

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In this study, wear characteristics of titanium and titanium alloyed materials produced with mechanical alloying/milling (MA/MM) method were studied. In production of titanium and titanium alloyed materials, sponge titanium, gas atomised titanium powder and pre-alloyed Ti6Al4V alloy powder were used. The produced materials were characterised by scanning electron microscope, optical microscope, X-rays diffractometer (XRD) and EDS. The wear tests were carried out on a pin-on-disc type wear device under three different loads (15–30–45 N), four different sliding distances (500–1000–1500–2000 m) and a sliding speed of 1 ms–1. The results showed that no porosity was found on the gas atomised titanium and the Ti6Al4V alloy while very low amounts of micro porosity were formed on the sponge titanium samples. EDS analysis, on the other hand, revealed some Fe contamination on the materials, arising from the milling environment. It was seen that the hardness values of the samples produced from the gas atomised titanium powder were higher either than the samples produced from the sponge titanium, or the samples produced from the Ti6Al4V alloy. The fact that the wear losses obtained for the samples produced from the TiAl4V and gas atomised titanium powders were lower when compared to the sponge titanium. This was considered as the result of porous structure of sponge titanium.
机译:在这项研究中,研究了通过机械合金化/铣削(MA / MM)方法生产的钛和钛合金材料的磨损特性。在钛和钛合金材料的生产中,使用海绵钛,气雾化钛粉和预合金化Ti6Al4V合金粉。通过扫描电子显微镜,光学显微镜,X射线衍射仪(XRD)和EDS对所产生的材料进行表征。磨损测试是在三种不同载荷(15–30–45 N),四种不同滑动距离(500–1000–1500–2000 m)和1 ms滑动速度的情况下在针盘式磨损设备上进行的–1。结果表明,在气体雾化的钛和Ti6Al4V合金上未发现孔隙,而在海绵钛样品上形成的孔隙率非常低。另一方面,EDS分析表明,铣削环境会导致材料中的某些Fe污染。可以看出,由气体雾化的钛粉末制成的样品的硬度值高于由海绵钛制成的样品或由Ti6Al4V合金制成的样品的硬度值。与海绵钛相比,由TiAl4V和气体雾化钛粉生产的样品获得的磨损损失较低。这被认为是海绵钛的多孔结构的结果。

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