Page 138 - 《摩擦学学报》2021年第1期
P. 138
第 1 期 袁新璐, 等: 位移幅值对铜镁合金微动磨损行为的影响 135
部分滑移区与完全滑移区存在明显的分界. 2003.04.015.
b. 在弹性变形协调的部分滑移状态下,摩擦系数 [ 8 ] Rustamov I A, Sabirova O S, Wang Z X, et al. Fretting wear
behavior and damage mechanisms of inconel X-750 alloy in dry
一直保持在低水平;而塑性变形协调的部分滑移状态
contacts[J]. Advances in Materials Science and Engineering, 2019:
下,摩擦系数经历迅速上升阶段后达到稳定状态且没
1–15. doi: 10.1155/2019/7079819.
有明显波动,稳态摩擦系数随着位移幅值增加而增加.
[ 9 ] Zheng J F, Luo J, Mo J L, et al. Fretting wear behaviors of a railway
完全滑移状态下,摩擦系数呈现较复杂的演化过程, axle steel[J]. Tribology International, 2010, 43(5): 906–911. doi:
主要经历4个变化过程:急剧上升阶段-迅速下降阶段- 10.1016/j.triboint.2009.12.031.
缓慢上升阶段-动态稳定阶段. [10] Chen L M, Peng P H, He F. Advances in mechanical fatigue life
c. 在部分滑移区中,黏着区的塑性流动使接触表 analysis of dropper used in pantograph-catenary system of high-
面切应力急剧增高,应力集中导致疲劳裂纹萌生并迅 speed railway OSAGE[J]. Advances in Mechanical Engineering,
2018, 10(5): 1–10. doi: 10.1177/1687814018776135.
速扩展至接触表面,对接触区造成严重损伤.
[11] Chen Shiguang. Research on fracture mechanism of the integrated
d. 在弹性变形协调的部分滑移状态下,接触表面
droppers body used in high speed railway[D]. Shandong: Shandong
损伤轻微,而由塑性变形协调的部分滑移状态下,接
University, 2019(in Chinese) [陈时光. 高铁用整体吊弦线体断裂
触中心发生强烈塑性流动并在循环应力作用下导致 机理研究[D]. 山东: 山东大学, 2019].
材料剥落,接触边缘的滑移区内发生磨粒磨损和氧化 [12] Liu X Y, Peng J F, Tan D Q, et al. Failure analysis and optimization
磨损. 在完全滑移状态下,接触表面在往复滑移过程 of integral droppers used in high speed railway catenary system[J].
中伴随强烈的氧化作用,损伤机制主要为疲劳剥层、 Engineering Failure Analysis, 2018, 91: 496–506. doi: 10.1016/
j.engfailanal.2018.02.003.
磨粒磨损和氧化磨损.
[13] Gao Y, Jie J C, Zhang P C, et al. Wear behavior of high strength and
参 考 文 献 high conductivity Cu alloys under dry sliding[J]. Transactions of
Nonferrous Metals Society of China, 2015, 25(7): 2293–2300. doi:
[ 1 ] Waterhouse R B. Fretting wear[J]. Wear, 1984, 100(1): 107–118.
10.1016/S1003-6326(15)63844-4.
doi: 10.1016/0043-1648(84)90008-5.
[14] Tong Y X, Li S Y, Zhang D T, et al. High strength and high
[ 2 ] Waterhouse R B. Fretting fatigue[J]. International Materials
electrical conductivity CuMg alloy prepared by cryorolling[J].
Reviews, 1992, 37(2): 77–97. doi: 10.1179/imr.1992.37.1.77.
Transactions of Nonferrous Metals Society of China, 2019, 29(3):
[ 3 ] Fan Na, Wang Yunxia, Wang Qiufeng, et al. Effects of load on
595–600. doi: 10.1016/s1003-6326(19)64968-x.
fretting wear behaviors of 304 stainless steels[J]. Tribology, 2016,
36(5): 555–561 (in Chinese) [范娜, 王云霞, 王秋凤, 等. 载荷对 [15] Pei Jiuyang, Liu Yan, Fan Zhixin. Effect of wheel angular velocity
304不锈钢微动磨损性能的影响[J]. 摩擦学学报, 2016, 36(5): on continuous extrusion copper magnesium alloy[J]. Special Casting
555–561]. doi: 10.16078/j.tribology.2016.05.004. & Nonferrous Alloys, 2016, 36(9): 900–903 (in Chinese) [裴久杨,
[ 4 ] Wang Mengjie, Peng Jinfang, Zhuang Wenhua, et al. Fretting wear 刘炎, 樊志新. 挤压轮转速对铜镁合金连续挤压成形过程的影响
damage characteristics of carbon fiber[J]. Tribology, 2019, 39(3): [J]. 特种铸造及有色合金, 2016, 36(9): 900–903]. doi: 10.15980/
330–339 (in Chinese) [王梦婕, 彭金方, 庄文华, 等. 碳纤维切向微 j.tzzz.2016.09.002.
动磨损特性研究[J]. 摩擦学学报, 2019, 39(3): 330–339]. doi: [16] Guan Guisheng, Lu Dehong. Effect of magnesium on the strength
10.16078/j.tribology.2018168. and resistance of copper-magnesium alloy contact wires[J].
[ 5 ] Xin Long, Li Jie, Lu Yonghao. Fretting wear properties of Inconel Technology Outlook, 2014, (5): 24–26 (in Chinese) [管桂生, 卢德
690 alloy at elevated temperature[J]. Tribology, 2015, 35(4): 宏. 镁对铜镁合金接触导线材料强度及电阻的影响[J]. 科技展望,
470–476 (in Chinese) [辛龙, 李杰, 陆永浩. Inconel 690合金高温微 2014, (5): 24–26].
动磨损特性研究[J]. 摩擦学学报, 2015, 35(4): 470–476]. doi: [17] He Yu, Li Xuebin, Yuan Yuan. Establishment of contact stresses
10.16078/j.tribology.2015.04.016. distribution for Cu-Mg alloy contact wire condinuous extrusion[J].
[ 6 ] Zhu M H, Zhou Z R. On the mechanisms of various fretting wear Material Reports, 2017, 31(S1): 139–144 (in Chinese) [何宇, 李学
modes[J]. Tribology International, 2011, 44(11): 1378–1388. doi: 斌, 袁远. Cu-Mg合金连续挤压成形过程的数值模拟和试验对比
10.1016/j.triboint.2011.02.010. 分析[J]. 材料导报, 2017, 31(S1): 139–144].
[ 7 ] Ren Pingdi, Chen Guangxiong, Zhou Zhongrong. Fretting wear [18] Sun Yaqin, Pan Jiaqi, Chen Jianbin, et al. Influence of process
behavior of GCr15 steel under lubrication of various aqueous parameters on microstructure of upward continuous casting Cu-Mg
mediums[J]. Tribology, 2003, 23(4): 331–335 (in Chinese) [任平弟, alloy rod[J]. Nonferrous Metals Engineering, 2017, 7(5): 16–19
陈光雄, 周仲荣. 不同水介质润滑下GCr15钢的微动磨损特性[J]. (in Chinese) [孙亚琴, 潘嘉祺, 陈建斌, 等. 工艺参数对上引连铸铜
摩擦学学报, 2003, 23(4): 331–335]. doi: 10.3321/j.issn:1004-0595. 镁合金杆微观组织的影响[J]. 有色金属工程, 2017, 7(5): 16–19].