 二维码(扫一下试试看!) | 湿式铜基摩擦副局部接触对摩擦因数的影响 | The Influence of Local Contact of Cu-Based Friction Pairs on Friction Coefficient | 投稿时间:2017-07-05 | DOI:10.15918/j.tbit1001-0645.2019.01.009 | 中文关键词:湿式离合器铜基摩擦副局部接触边界润滑摩擦因数油膜相对亏量 | English Keywords:wet clutchCu-based friction pairslocal contactboundary lubricationfriction coefficientrelative loss rate of oil film | 基金项目:国家自然科学基金资助项目(51575042);国家部委创新科研项目(VTDP-3203) | | 摘要点击次数:760 | 全文下载次数:380 | 中文摘要: | 考虑金属的热衰退特性及温度、压力和摩滑速度对混合润滑油膜的影响,建立了湿式铜基摩擦副局部接触摩擦因数计算模型,研究了摩滑过程中湿式铜基摩擦副局部接触状态下摩擦因数的变化规律,并通过销-盘摩擦因数测量实验对摩擦因数计算模型进行了验证.研究结果表明:摩擦元件屈曲变形导致摩擦元件间摩擦状态发生变化,在局部接触条件下,接触区摩擦状态随温度升高可分为油膜主导阶段、微凸峰主导阶段、摩擦因数上升阶段和热衰退阶段4个阶段.其中,油膜主导阶段会随摩滑速度的减小而消失.干摩擦状态下,摩滑速度对摩擦因数影响较小.在混合润滑状态下,摩擦因数随摩滑速度增加而下降,且温度越小摩擦因数衰减越显著.局部接触区平均面压较小时,压力对摩擦因数影响较小,当压力超过100 MPa时,接触面压力开始对混合润滑中的油膜主导阶段产生影响,此时摩擦因数随压力升高而增大. | English Summary: | A friction coefficient calculation model was established for heavy pressure local contact of wet Cu-based friction pairs to study the influence of heat fade, temperature, sliding speed and contact pressure on the mixture lubrication oil film and the change rule of friction coefficient. The model was validated by the friction coefficient measuring experiments of pin-plate. The results show that, under the condition of local high pressure the variation of friction coefficient with temperature can be divided into four stages, oil film leading stage of mixed lubrication, asperity domination stage of mixed lubrication, dry friction stage and heat fade stage. Furthermore, the oil film leading stage will be vanished when the sliding speed is low. Under the dry friction condition, sliding speed has little influence on friction coefficient. However, under the mixed lubrication condition, the friction coefficient decreases with the increase of sliding velocity. When the local pressure is not very heavy, the influence on friction coefficient is very little. While the local contact pressure exceeds 100 MPa, pressure begins to affect the friction coefficient. | 查看全文查看/发表评论下载PDF阅读器 | |
江维,王杰,陈伟,余联庆,李红军,吴功平.半结构环境中电力作业机器人机械手鲁棒轨迹跟踪控制[J].北京理工大学学报(自然科学版),2019,39(4):391~398.JIANGWei,WANGJie,CHENWei,YULian-qing,LIHong-jun,WUGong-ping.Manipu ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21江维,周志远,陈伟,余联庆,李红军,吴功平.高压电缆移动作业机器人机械手双闭环自主定位控制[J].北京理工大学学报(自然科学版),2019,39(6):589~596.JIANGWei,ZHOUZhi-yuan,CHENWei,YULian-qing,LIHong-jun,WUGong-Ping.M ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21严保康,周凤星,徐波.基于GST的变速机械故障信号稀疏特征提取方法[J].北京理工大学学报(自然科学版),2019,39(6):603~608.YANBao-kang,ZHOUFeng-xing,XUBo.SparseFeatureExtractionforVariableSpeedMachiner ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21郭智蔷,吴维,刘洋,李博,苑士华.车辆最佳动力性泛函表达及数值解法[J].北京理工大学学报(自然科学版),2019,39(7):688~693.GUOZhi-qiang,WUWei,LIUYang,LIBo,YUANShi-hua.ObjectiveFunctionalandNumericalSol ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21成英,高利,陈雪梅,赵亚男.有人与无人驾驶车辆交叉口驾驶博弈模型[J].北京理工大学学报(自然科学版),2019,39(9):938~943.CHENGYing,GAOLi,CHENXue-mei,ZHAOYa-nan.ADrivingGameModelforMannedandUnmannedVeh ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21刘凯,王威,龚建伟,陈慧岩,陈舒平.越野地形下智能车辆的动力学建模与轨迹跟踪[J].北京理工大学学报(自然科学版),2019,39(9):933~937.LIUKai,WANGWei,GONGJian-wei,CHENHui-yan,CHENShu-ping.DynamicModelingandTr ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21吴鹏,孟祥远,王子晔,高建伟.基于神经动力学的冗余机械臂恒定转速比算法[J].北京理工大学学报(自然科学版),2019,39(10):1081~1085.WUPeng,MENGXiang-yuan,WANGZi-ye,GAOJian-wei.ConstantRotationRatioofRedund ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21张海鸣,龚建伟,陈建松,王羽纯.非结构化环境下无人驾驶车辆跟驰方法[J].北京理工大学学报(自然科学版),2019,39(11):1126~1132.ZHANGHai-ming,GONGJian-wei,CHENJian-song,WANGYu-chun.StudyofAutonomousVehic ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21.北京理工大学学报2019年总目次(第39卷)[J].北京理工大学学报(自然科学版),2019,39(12):1321~1338..[J].TransactionsofBeijingInstituteofTechnology,2019,39(12):1321-1338.二维码(扫一下试试看!)北京理 ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21赵凯,董明明,赵丰,秦也辰,刘锋,顾亮.基于车辆悬架振动响应的地面分类研究[J].北京理工大学学报(自然科学版),2018,38(2):155~159.ZHAOKai,DONGMing-ming,ZHAOFeng,QINYe-chen,LIUFeng,GULiang.StudyonTerrainCl ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21
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