 二维码(扫一下试试看!) | 基于局部摩擦因数模型的切削力预测建模 | Predictive Modeling of Cutting Force Based on Local Friction Coefficient Model | 投稿时间:2016-11-26 | DOI:10.15918/j.tbit1001-0645.2018.01.002 | 中文关键词:局部摩擦因数切削力预测直角切削 | English Keywords:local-friction coefficientcutting force predictionorthogonal cutting | 基金项目: | | 摘要点击次数:869 | 全文下载次数:774 | 中文摘要: | 基于局部摩擦因数模型分别建立前刀面摩擦区、切削刃钝圆区、后刀面摩擦区的受力预测模型,进而获得切削力预测值.以钨钼系高速钢(W6Mo5Cr4V2Al)刀具和20Cr2Ni4合金钢为研究对象建立直角切削实验,通过三向测力仪测量直角切削主切削力和切深抗力,并与预测切削力进行对比,数值基本吻合.分析了切削参数以及刀具前角对切削力大小的影响规律.结果表明切削力随切削速度和刀具前角的增加有减小的趋势,随着切削深度的增加明显增大. | English Summary: | Considering the friction of dull radius and the flank face at cutting edge, a new cutting force prediction model was established based on local friction coefficient model of steady-state orthogonal cutting. Mathematical stress analysis models were set up respectively for friction zones on rake surface, flank surface and cutting edge surface. A series of orthogonal cutting experiments were conducted with high-speed steel tool (W6Mo5Cr4V2Al) and 20Cr2Ni4 alloy steel. Primary cutting force and radial thrust force were detected by three-dimensional dynamometer. In the end, the effect of cutting speed, cutting depth and tool rake angle on the magnitude of cutting forces were analyzed. Results show that, the predicted cutting forces calculated from the prediction model are consistent with the test data. It turned out that cutting force has a slightly tendency to decrease with the increase of cutting speed and tool rake angle, significantly increased with the increase of cutting depth. | 查看全文查看/发表评论下载PDF阅读器 | |
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王震坡,薛雪,王亚超.基于自适应无迹卡尔曼滤波的分布式驱动电动汽车车辆状态参数估计[J].北京理工大学学报(自然科学版),2018,38(7):698~702.WANGZhen-po,XUEXue,WANGYa-chao.StateParameterEstimationofDistributedDr ... 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2018年总目次(第38卷)[J].北京理工大学学报(自然科学版),2018,38(12):1321~1338..[J].TransactionsofBeijingInstituteofTechnology,2018,38(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刘静,侯宇,苏婷慧,张庆,邵毅敏.基于模块化设计的特种车辆减振降噪技术研究[J].北京理工大学学报(自然科学版),2018,38(S1):38~43.LIUJing,HOUYu,SUTing-hui,ZHANGQing,SHAOYi-min.StudyonVibrationControlandNoi ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21黄文彬,丁晓喜,杜明刚,邵毅敏.机械传动系统的智能感知技术[J].北京理工大学学报(自然科学版),2018,38(S1):33~37.HUANGWen-bin,DINGXiao-xi,DUMing-gang,SHAOYi-min.IntelligentSensingTechnologyforMech ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21刘勇.轮毂电机驱动多轴越野车辆总体技术探讨[J].北京理工大学学报(自然科学版),2018,38(S1):55~58.LIUYong.TheStudyonGeneralTechnologyofIn-WheelMotorDriveMultiaxisOff-RoadVehicle[J].Transact ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21郭志强,门日秀,闫柯,孙钰杰.特种车辆涡轮增压器内部流动特性分析[J].北京理工大学学报(自然科学版),2018,38(S1):59~62.GUOZhi-qiang,MENRi-xiu,YANKe,SUNYu-jie.AnalysisonInternalFlowCharacteristicsofSp ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21谢霞,张学玲,段秀兵,徐柳.轮履变体式车辆底盘越障性能研究[J].北京理工大学学报(自然科学版),2018,38(S1):107~111.XIEXia,ZHANGXue-ling,DUANXiu-bing,XULiu.ResearchonObstacle-SurmountingPerformance ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21江燕华,马忠民,徐达,李中好,骆振兴.某越野车辆平顺性仿真分析及综合评价[J].北京理工大学学报(自然科学版),2018,38(S1):103~106.JIANGYan-hua,MAZhong-min,XUDa,LIZhong-hao,LUOZhen-Xing.RideComfortSimulati ... 北京理工大学科研学术 本站小编 Free考研考试 2021-12-21刘辉,张聪,韩立金,曹福辉,王伟达,侯旭朝.带耦合机构的串联式履带车辆直驶稳定性控制[J].北京理工大学学报(自然科学版),2018,38(S1):112~116.LIUHui,ZHANGCong,HANLi-jin,CAOFu-hui,WANGWei-da,HOUXu-chao.StraightD ... 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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