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CuCrW(Al2O3) nanocomposite: mechanical alloying, microstructure, and tribological properties 被引量:1
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作者 Mohammad Baghani Mahmood Aliofkhazraei 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2017年第11期1321-1334,共14页
The effect of alumina nanoparticle addition on the microstructure and tribological properties of a CuCrW alloy was investigated in this work. Mechanical alloying was carried out in a satellite ball mill. The tribologi... The effect of alumina nanoparticle addition on the microstructure and tribological properties of a CuCrW alloy was investigated in this work. Mechanical alloying was carried out in a satellite ball mill. The tribological properties of the samples were evaluated using pin-on-disk wear tests with different pins(alumina, tungsten carbide, and steel pins). The results indicated that the tungsten carbide pin had a lower coefficient of friction than the alumina and steel pins because of its high hardness and low surface roughness. In addition, when the sliding rate was decreased, the weight-loss rate increased. The existence of alumina nanoparticles in the nanocomposite led to a lower weight-loss rate and to a change in the wear mechanism from adhesive to abrasive. 展开更多
关键词 WEAR MECHANICALALLOYING NANOCOMPOSITE tribologicalproperties metalmatrix
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Enhanced micro-vibration sensitive high-damping capacity and mechanical strength achieved in AI matrix composites reinforced with garnet-like lithium electrolyte
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作者 Xian-Ping WANG YiZHANG +6 位作者 Yu XIA Wei-Bing JIANG Hui LIU Wang LIU Yun-Xia GAO Tao ZHANG Qian-Feng FANG 《Frontiers of Materials Science》 SCIE CSCD 2017年第1期75-81,共7页
A novel micro-vibration sensitive-type high-damping AI matrix composites reinforced with Li7-xLa3Zr2-xNbxO12 (LLZNO, x = 0.25) was designed and prepared using an advanced spark plasma sintering (SPS) technique. Th... A novel micro-vibration sensitive-type high-damping AI matrix composites reinforced with Li7-xLa3Zr2-xNbxO12 (LLZNO, x = 0.25) was designed and prepared using an advanced spark plasma sintering (SPS) technique. The damping capacity and mechanical properties of LLZNO/AI composites (LLZNO content: 0-40 wt.%) were found to be greatly improved by the LLZNO addition. The maximum damping capacity and the ultimate tensile strength (UTS) of LLZNO/AI composite can be respectively up to 0.033 and 101.2 MPa in the case of 20 wt.% LLZNO addition. The enhancement of damping and mechanical properties of the composites was ascribed to the intrinsic high-damping capacity and strengthening effects of hard LLZNO particulate. This investigation provides a new insight to sensitively suppress micro-vibration of payloads in the aerospace environment. 展开更多
关键词 high-damping materials micro-vibration sensitivity LLZNO/AI metalmatrix composites mechanical property
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