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采用球-平面接触的模式,对GCr15钢球与5083铝合金在角位移幅值0.1°~10°和法向载荷15,50N时的扭动微动磨损进行实验研究.结果表明:摩擦扭矩-角位移幅值曲线(T-θ曲线)随着循环次数的增加有规律地发生变化,呈现3种基本类型,即直线状、椭圆状和平行四边形状.5083铝合金的扭动微动运行区域分为部分滑移区、混合滑移区、完全滑移区,部分滑移区的摩擦扭矩值持续较低,混合滑移区以及完全滑移区的摩擦扭矩值呈一定规律变化.结合SEM磨斑形貌分析可知部分滑移区损伤轻微,混合滑移区以及完全滑移区损伤较严重.通过研究确定了5083铝合金的运行工况微动图.

Using a ball-on-flat contact mode,the torsional fretting wear of 5083 aluminum alloy flats a-gainst GCr15 steel ball were investigated under normal load(15,50N)and torsional angular displace-ment amplitudes(from 0.1°to 10°).The results reveal that the T-θcurves change with the increasing of cycle numbers.It shows three types,i.e.the linear,elliptic and parallelogram loops.The torsional fretting running behaviors of 5083 aluminum alloy can be defined as three fretting regimes (i.e.par-tial slip regime (PSR),mixed fretting regime (MFR)and slip regime (SR)).The friction torque has a low value in the PSR but changes regularly in the MFR and SR.The wear scars observed by SEM re-veal that the damage in the PSR is slight but serious damage wear is observed in the MFR and SR. The running condition fretting maps of 5083 aluminum alloy are set.

参考文献

[1] M. Vratnica;G. Pluvinage;P. Jodin;Z. Cvijovic;M. Rakin;Z. Burzic;K. Geric.Notch fracture toughness of high-strength Al alloys[J].Materials & design,2013Feb.(Feb.):303-310.
[2] 陈舟 .5083铝合金搅拌摩擦焊接试验研究[D].西南交通大学,2013.
[3] 蔡振兵 .扭动微动磨损机理研究[D].西南交通大学,2009.
[4] CAI Zhen-bing;ZHU Min-hao;LIN Xiu-zhou.Friction and wear of 7075 aluminum alloy induced by torsional fretting[J].中国有色金属学报(英文版),2010(03):371-376.
[5] Zhenbing Cai;Minhao Zhu;Huoming Shen;Zhongrong Zhou;Xuesong Jin.Torsional fretting wear behaviour of 7075 aluminium alloy in various relative humidity environments[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,2009Pt.1(Pt.1):330-339.
[6] 蔡振兵,朱曼昊.不同磨损半径下7075铝合金的扭动微动磨损试验研究[C].2007全国机械工程博士生学术论坛论文集,2007:495-501.
[7] M. H. Zhu;Z. R. Zhou.Dual-motion fretting wear behaviour of 7075 aluminium alloy[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,20031/6(1/6):269-275.
[8] 蔡振兵;杨莎;林修洲;何莉萍;朱旻昊.扭动微动条件下含水气氛对氧化行为的影响[J].摩擦学学报,2010(6):527-531.
[9] 左孔成;蔡振兵;宋川;彭金方;莫继良;沈火明;朱旻昊.纤维取向对炭纤维织物复合材料扭动微动摩擦学性能的影响[J].材料工程,2014(4):79-84.
[10] 朱昊;周仲荣.关于复合式微动的研究[J].摩擦学学报,2001(3):182-186.
[11] 蔡振兵;朱旻昊;俞佳;周仲荣.扭动微动的模拟及其试验研究[J].摩擦学学报,2008(1):18-22.
[12] B. J. Briscoe;A. Chateauminois;T. C. Lindley;D. Parsonage.Contact damage of poly(methylmethacrylate) during complex microdisplacements[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,20001/2(1/2):27-39.
[13] Zhen-bing Cai;Min-hao Zhu;Zhong-rong Zhou.An experimental study torsional fretting behaviors of LZ50 steel[J].Tribology International,20101/2(1/2):361-369.
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