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Tribological behavior of an amorphous Zr20Ti20Cu20Ni20Be20 high-entropy alloy studied using a nanoscratch technique

机译:无定形Zr20Ti20Cu20N20N22020Ni20N20Ni20的摩擦学行为使用纳米克拉技术研究的高熵合金

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摘要

In this study, friction and wear behaviors of an amorphous Zr20Ti20Cu20Ni20Be20 high-entropy alloy (a-HEA) were characterized using a nanoscratch method. Scratch tests were carried out under both ramping and constant loading conditions to measure the coefficient of friction (COF) and wear resistance of the amorphous alloy. The morphology of scratched surface and subsurface was further examined using scanning and transmission electron microscopes. It was found that friction behavior of the a-HEA can be divided into two regions: elastic and plastic. In the elastic region, the COF dramatically decreases with increasing normal force, however, it monotonically increases in the plastic region. Morphological observation indicated that brittle fracture dominated in the plastic region, which was consistent with the result that a series of load serrations were accompanied by the formation of brittle cracks along the scratched track. Wear performance of the a-HEA was also evaluated and compared with "conventional" metallic glasses and crystalline high-entropy alloys. As a result of high hardness and large elastic recovery, the current a-HEA exhibited good wear resistance and low COF, behaved more like brittle amorphous alloys rather than ductile high-entropy alloys.
机译:在本研究中,使用纳米克拉方法表征了无定形Zr20Ti2Cu20Ni20Ni20Ni20Ni20 Ne20Ni20 NE20NE20高熵合金(A-HEA)的摩擦和磨损行为。在斜坡和恒定的负载条件下进行划痕试验,以测量无定形合金的摩擦系数(COF)和耐磨性。使用扫描和透射电子显微镜进一步检查刮擦表面和地下的形态。发现A-Hea的摩擦行为可分为两个区域:弹性和塑料。在弹性区域中,COF随着正常力的增加而显着降低,然而,它在塑料区域中单调增加。形态学观察表明,塑料区域中的脆性断裂,这与结果一致的是,一系列载荷锯齿伴随着划痕轨道的脆性裂缝形成。还评估了A-Hea的磨损性能,并与“常规”金属玻璃和结晶高熵合金进行比较。由于高硬度和大的弹性回收,目前的A-HEA表现出良好的耐磨性和低COF,表现得更像脆性非晶合金而不是韧性的高熵合金。

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