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热处理工艺对A356/SiCp性能及干滑动摩擦磨损特性的影响 被引量:6
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作者 金云学 lee jung-moo KANG Suk-bong 《中国有色金属学报》 EI CAS CSCD 北大核心 2008年第8期1458-1465,共8页
研究分析热处理工艺对A356/SiCp复合材料的硬度、导电率及微观组织的影响,在此基础上研究复合材料的干滑动摩擦磨损特性。结果表明:固溶和T6热处理可显著提高复合材料的硬度,但降低导电率,而低温退火却比较显著地提高导电率;导电率高的... 研究分析热处理工艺对A356/SiCp复合材料的硬度、导电率及微观组织的影响,在此基础上研究复合材料的干滑动摩擦磨损特性。结果表明:固溶和T6热处理可显著提高复合材料的硬度,但降低导电率,而低温退火却比较显著地提高导电率;导电率高的低温退火态磨损特性基本与铸态一致,固溶处理及时效处理虽可有效提高硬度,但不提高耐磨性能,这表明T6热处理是否作为制动盘材料时的最佳热处理工艺,有待进一步研究;复合材料的磨损率随载荷的增加而增加,但低载荷时增加缓慢,高载荷时增加迅速;摩擦因数随着热处理工艺而变化,但对载荷变化不敏感,都在较小的范围内波动,基本是稳定的。 展开更多
关键词 AL/SICP 复合材料 干摩擦 热处理 摩擦磨损特性
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Study on wear behavior of plasma electrolytic oxidation coatings on aluminum alloy
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作者 KANG Suk-Bong lee jung-moo 《Rare Metals》 SCIE EI CAS CSCD 2006年第z2期141-145,共5页
Thick and hard ceramic coatings were fabricated on A356 aluminum alloy by using plasma electrolytic oxidation(PEO) technique. The microstructure and phase composition of the PEO coatings were examined by using SEM and... Thick and hard ceramic coatings were fabricated on A356 aluminum alloy by using plasma electrolytic oxidation(PEO) technique. The microstructure and phase composition of the PEO coatings were examined by using SEM and XRD method. It is found that the PEO coatings are mainly composed of crystalline α-Al2O3 and mullite. The dry sliding wear test of PEO coatings were carried out on a ring-on-ring wear machine. Results shows that there is hardly no wear loss of polished PEO coatings while the wear rate of uncoated aluminum alloy is 4.3×10-5 mm3·(N·m)-1 at a speed of 0.52 m·s-1 and a load of 40 N. 展开更多
关键词 ALUMINUM alloy plasma electrolytic OXIDATION CERAMIC coating WEAR
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Effect of CuO addition on microstructure and properties of aluminum composites produced by quick spontaneous infiltration process
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作者 Zhang Jingjing lee jung-moo +2 位作者 Cho Young-Hee Kim Su-Hyeon Yu Huashun 《China Foundry》 SCIE CAS 2014年第3期191-196,共6页
Al matrix composites with a high volume fraction of reinforcements were fabricated with a compact of Al-Ti-B4C powder mixtures by quick spontaneous infiltration(QSI) process in an aluminum melt. Given the exothermal n... Al matrix composites with a high volume fraction of reinforcements were fabricated with a compact of Al-Ti-B4C powder mixtures by quick spontaneous infiltration(QSI) process in an aluminum melt. Given the exothermal nature of the reaction between CuO and Al, a certain amount of CuO addition to the Al-Ti-B4C system dramatically increases the adiabatic temperature and thereby enables the complete combustion reaction in an aluminum melt(about 1,173 K). After the QSI process, the compact fabricated with CuO retains its original shape and the obtained composite exhibits sound microstructure containing reaction products of TiB2, Al3BC and B4C. The formation of such reinforcements when adding CuO contributes to enhancing the properties of the composites that show far superior hardness and elastic modulus of 3.03 GPa and 158.9 GPa, respectively, with lower coefficient of thermal expansion(9.44 ppm?K-1) compared to those with no CuO addition. 展开更多
关键词 Al composite CuO addition Al-Ti-B4C microstructure mechanical properties
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