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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Investigation into reciprocating dry sliding friction and wear properties of bulk CoCrFeNiMo high entropy alloys fabricated by spark plasma sintering and subsequent cold rolling processes: Role of Mo element concentration
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Investigation into reciprocating dry sliding friction and wear properties of bulk CoCrFeNiMo high entropy alloys fabricated by spark plasma sintering and subsequent cold rolling processes: Role of Mo element concentration

机译:火花等离子烧结制造的散装干滑动摩擦和磨损性能及随后的冷轧工艺进行调查:Mo元素浓度的作用

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摘要

For the first time, a systematic investigation into effect of Mo element concentration on the crystal lattice constant, microhardness, and reciprocating dry sliding friction and wear properties of face-centered cubic (FCC) single phase based CoCrFeNiMo high entropy alloys (HEAs) were specifically conducted in the present study. Both the lattice constant and microhardness were found to increase with the amount of Mo element. Moreover, increasing Mo element concentration in the CoCrFeNiMo HEA was beneficial into reductions of friction coefficient and its specific wear rate when sliding wear against the GCr15 steel balls in a dry condition at room temperature. Interestingly, all studied CoCrFeNiMo HEAs exhibited almost the same wear mechanisms, which strongly depended on the applied normal load during sliding wear tests. Mo element addition had a remarkable influence on the cross-sectional microstructures after sliding wear, and grain coarsening in the middle transition region was effectively retarded by increasing the amount of Mo element in the CoCrFeNiMo HEA.
机译:首次进行系统调查Mo元素浓度对晶格恒定,微硬度和往复式的立方(FCC)单相Cocrfenimo高熵合金(HEAS)的晶体晶格常数,微硬度和往复干燥滑动摩擦和磨损性能在本研究中进行。发现晶格常数和微硬度随Mo元素的量而增加。此外,当CoCrfenimo Hea中的Mo元素浓度增加有利于在室温下在干燥条件下滑动对GCR15钢球的磨损时减少摩擦系数及其特定磨损率。有趣的是,所有研究的COCRFENIMO HEAS都表现出几乎是相同的磨损机制,它强烈依赖于滑动磨损试验期间施加的正常负载。通过增加CoCrfenimo Hea中的Mo元素的量,MO元素添加对滑动磨损后的横截面微结构对横截面微观结构的影响显着影响。

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