期刊文献+

注射机导柱断裂成因分析及疲劳寿命预测 被引量:1

Analyze the reason of fracture and predict fatigue life for guide pillar of injection machine
在线阅读 下载PDF
导出
摘要 橡胶注射机合模机构中的导柱在承受复杂载荷工况下,使用1.5年半左右发生疲劳断裂。因此采用数值模拟技术对合模机构进行力学性能分析,寻找断裂原因。根据合模机构的结构和载荷的对称性,取模型的四分之一作为几何求解域,以面-面接触方式定义多区域非线性接触关系,采用粘接模型简化螺纹连接,模拟结果表明导柱颈部的应力集中是其断裂的主要成因,且模具的接触面积越小,导柱颈部的应力越大。采用电测法对合模机构正常工作下的应力水平进行实测,实测结果与数值模拟结果相吻合。在此基础上,对合模机构进行了结构改进,分别计算结构改进前后的疲劳寿命,对比发现改进后的导柱寿命明显提高。 Under the complex loads,the injector guide pillar(IGP)is fracture after it used 1.5 years.In order to determine the cause of the fracture,the numerical simulation technology is applied to analyze the mechanical properties of the IGP.Because of the symmetry structure and loads,it is easy to obtain 1/4 geometry model as input model of FEA.For modeling contact between mating surface of the clamping mechanism,nonlinear multi-region contact of surface-surface is applied to establish contact model of FEA.The constraint of tie is used for modeling thread joint.Some conclusive results have been drawn from the simulation including the location and maximum stress concentration factor in the IGP,and the smaller area of die contact surface,the bigger value of stress in the neck of IGP.Electronic measurement is used to test the value of stress in IGP,the experimental results agreed well with simulation data.Finally,based on the problem of fracture,the structure of IGP is improved and the fatigue life is calculated,compared with the original,the service life of IGP is evidently enhanced.
出处 《机械设计与制造》 北大核心 2011年第1期213-215,共3页 Machinery Design & Manufacture
基金 科技部关于科技人员服务企业行动项目(2009GJC20031)
关键词 注射机导柱 数值模拟 实验研究 寿命预测 Injection machine guiding pole Numerical simulation Experimental study Life prediction
  • 相关文献

参考文献5

二级参考文献10

  • 1邢耀国,李高春,王玉峰,沈伟.固体火箭发动机状态监测和失效判定技术的发展和展望[J].海军航空工程学院学报,2006,21(5):552-556. 被引量:18
  • 2[前苏联]博耶.罗晋别尔格著,诚祥元译..压铸机..北京:国防工业出版社,,1978....
  • 3Sopwith,D G. The Distribution of Load in Screw Threads. Proceedings of Institution of Mechanical Engineers, 1948,159:373-383
  • 4Yamatoto,A. The theory and computation of threads connection. Youkendo, Tokyo, 1980:39-54
  • 5Hetenyi,M. A Photoelastic Study of Bolt and Nut Fastenings. Transactions of ASME, 1943,65:93-100
  • 6Kenny,B,and Patterson,E A. Load and Stress Distributions in Screw Threads. Experimental Mechanics, 1985(25) :208-213
  • 7Maruyama,K. Stress analysis of a blot-nut joint by the finite elements and copper-electroplating technique. Bullet of JSME, 1974,106:442-450
  • 8Bretl,J L,and Cook,R D. Modelling the Load Transfer in Threaded Connections by the Finite-Element Method. Int. J. Numer. Methods Eng., 1979,14 (9): 1359-1377
  • 9赵光辉,强洪夫,张永敬.推进剂/衬层脱粘J积分判据实验研究[J].上海航天,2000,17(5):23-27. 被引量:5
  • 10李元元,张卫文,刘英,陈维平,倪东惠.镁合金的发展动态和前景展望[J].特种铸造及有色合金,2004,24(1):14-17. 被引量:85

共引文献5

同被引文献4

  • 1LI Jinguo, WANG Xiaogui, GAO Zenghang. Study on the Fracture Reason And Fatigue Life for Guide Pillar of Injec- tion Machine [ J]. Int J Fatigue,2010(12) :1 -8.
  • 2李金国.立式合模机构力学性能分析[D].杭州:浙江工业大学,2006.
  • 3SANAT Wagle, HIROSHI Kato. Ultrasonic Detection of Fretting Fatigue Damage at Bolt Joints of Aluminum Alloy Plates [ J ]. Int J Fatigue,2009,31 (8/9) : 1378 - 1385.
  • 4GAO Z, CHEN J, CAI G, et al. Analysis and Assessment of Stress in Two Typical Drawing Tube Headers[ C]//ASME 2006 Pressure Vessels and Pipingc'ICPVT-11 Conference ( PVP2006-ICPVT-11 ) ,2006:321 - 327.

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部