首页|GCr15/35CrMo摩擦副的塑性接触面积对滑动磨损的影响

GCr15/35CrMo摩擦副的塑性接触面积对滑动磨损的影响

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基于分形理论,计算了35CrMo钢试样经过压缩疲劳试验后变形区域以及和GCrl5配副滑动磨损后的实际接触面积Ar、塑性接触面积Arp和塑性接触面积比率Arp/Ar,分析了塑性接触面积Arp和塑性接触面积比率Arp/Ar的变化量δArp和δA rp/Ar与磨损量的关系,采用扫描电子显微镜观察了35 CrMo钢试样磨损表面的形貌.结果表明:35CrMo试块经过压缩疲劳以及和GCrl5配副滑动磨损后,接触面材料的剥落引起了塑性接触面积Arp和塑性接触面积比率Arp/Ar的减少,塑性接触面积比率的变化量δArp/Ar可以描述磨损量的变化,当δArp/Ar<-0.5时,磨损量急剧增加.
Influence of Plastic Contact Area on Sliding Wear of GCr15/35CrMo Steel Tribo-pair
The real contact area,plastic contact area and fraction of plastic contact area of 35CrMo specimen were calculated in two modes,i.e.deformation region after compression fatigue and worn surface in sliding against GCr15 using fractal theory.The relationships between wear and the plastic contact area,as well as the fraction of plastic contact area were analyzed.The worn morphology is observed using scanning electron microscopy.The results show that both the plastic contact area and the fraction of plastic contact area decreased as a result of delamination in contact area after sliding wear.The variation of the fraction of plastic contact area (δArp/Ar) can be used for variation of wear.Once the δArp/Ar was higher than the critical value,the wear increased sharply.

plastic deformationfractalreal contact areawear

党兴武、黄建龙、陈生圣

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兰州理工大学数字制造技术与应用省部共建教育部重点实验室,甘肃兰州730050

兰州理工大学机电工程学院,甘肃兰州730050

中国科学院兰州化学物理研究所,甘肃兰州730000

塑性变形 分形 真实接触面积 磨损

2015

摩擦学学报
中国科学院兰州化学物理研究所

摩擦学学报

CSTPCDCSCD北大核心EI
影响因子:0.815
ISSN:1004-0595
年,卷(期):2015.35(1)
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