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兵工学报 ›› 2013, Vol. 34 ›› Issue (3): 324-331.doi: 10. 3969/ j. issn. 1000-1093. 2013. 03. 011

• 研究论文 • 上一篇    下一篇

电弧喷涂修复曲轴多轴疲劳寿命计算

张国庆1, 李广伟1, 王成焘2, 徐滨士3   

  1. 1. 陕西科技大学机电工程学院, 陕西西安710021; 2. 上海交通大学机械与动力工程学院, 上海200030; 3. 装甲兵工程学院材料科学与工程系, 北京100072
  • 上线日期:2013-07-23
  • 通讯作者: 张国庆 E-mail:eddiezgq@ sina. com
  • 作者简介:张国庆(1966—),男,教授,博士后
  • 基金资助:

    国家自然科学基金项目(50235030)

Fatigue Life Prediction of Crankshaft Repaired by Arc Spraying

ZHANG Guo-qing1, LI Guang-wei1, WANG Cheng-tao2, XU Bin-shi3   

  1. 1. College of Mechanical & Electrical Engineering, Shaanxi University of Science & Technology, Xi'an 710021, Shaanxi, China; 2. School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai 200030, China; 3. Department of Material Science and Engineering, Academy of Armored Forces Engineering, Beijing 100072, China
  • Online:2013-07-23
  • Contact: ZHANG Guo-qing E-mail:eddiezgq@ sina. com

摘要:

为了定量研究电弧喷涂修复后曲轴的疲劳寿命,对具有3Cr13 涂层的48MnV 材料进行 了拉伸实验,利用Baumel Jr. 和Seeger 提出的方法估算了该材料的循环疲劳特性参数,并将其应用 到电弧喷涂后修复曲轴的疲劳寿命评估计算中。通过动态仿真获取各连杆颈上的载荷,将其作为 曲轴的载荷,同时利用弹簧单元对主轴颈处的弹性支撑实际状况进行了模拟,相邻拐影响作为边界 条件,进行了有限元分析模拟。利用多轴损伤模型并分别采用正应变法、SWT-Bannantine、剪应变 法、Fatemi-Socie 法对曲轴的寿命进行了计算。对新的曲轴分别进行500 h、1 000 h、3 000 h 发动机 台架强化实验,然后将强化实验后的曲轴截成单拐并进行了单拐疲劳实验。实验结果与计算结果 吻合。

关键词: 机械设计, 曲轴, 电弧喷涂, 动态仿真, 有限元, 多轴疲劳寿命

Abstract:

In order to quantitatively study crankshaft fatigue life repaired by arc spraying, the tensile test of the 48MnV with 3Cr13 coatings is conducted, the method proposed by Baumel Jr. and Seeger is used to estimate fatigue parameters of the material. And the fatigue life of crankshaft repaired arc spraying is calculated and assessed. The loads in each link neck are obtained through dynamic simulation, among which spring units are used to simulate the actual elastic support status in the spindle neck and the boundary conditions are adjacent cranks interaction. Then, the Crankshaft fatigue life is calculated using multiaxial damage model, respectively using the normal strain law, the SWT-Bannantine approaches, shear strain method and Fatemi-Socie method. Finally, the engine bench strengthen tests of the new axis, respectively 500 h, 1 000 h and 3 000 h are conducted. And the crankshaft after the engine bench strengthen test is cut into cranks on which the fatigue tests are carried out. The test results match the cal- culation results.

Key words: mechanical design, crankshaft, arc spraying, dynamic simulation, Finite Element, multiax- ial fatigue life

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