首页> 外文会议>IEEE International Conference on Artificial Intelligence and Computer Applications >Optimal fatigue life design of double row angular contact ball bearings by an adaptive RL-BFGS algorithm
【24h】

Optimal fatigue life design of double row angular contact ball bearings by an adaptive RL-BFGS algorithm

机译:基于自适应RL-BFGS算法的双列角接触球轴承最优疲劳寿命设计

获取原文

摘要

An adaptive RL-BFGS (ARL-BFGS) algorithm was proposed for fatigue life design to speed up the convergence and obtain the global optimal solution under the circumstances of fewer optimization times. Fatigue life is one of the most essential criteria for the optimal design of double row angular contact ball bearings. The contact angle was selected as a design parameter besides the basic geometric parameters. The design constraints considering the manufacturing and mounting situations were processed by a penalty function. Three different constraint non-linear optimization models were established for the optimal dynamic and static load capacity, and their weighted form. The bearing model 3210 was optimized successfully to prove the correctness and effectiveness of the proposed algorithm. The overall performance of the ARL-BFGS algorithm was checked by the comparative experiments of different optimization methods and different bearing models. The result showed that the dynamic load capacity and static load capacity of the optimized bearing series 32 are approximately 60% and 30% higher than the standard value in Rolling Bearing Handbook by using the ARL-BFGS algorithm, respectively. The weighted form of the dynamic and static load capacity was also optimized to provide more selection for designers.
机译:提出了一种自适应RL-BFGS(ARL-BFGS)算法进行疲劳寿命设计,以加快收敛速度​​,并在优化次数较少的情况下获得全局最优解。疲劳寿命是双列角接触球轴承优化设计的最重要标准之一。除了基本几何参数外,还选择了接触角作为设计参数。通过惩罚函数处理考虑了制造和安装情况的设计约束。建立了三种不同的约束非线性优化模型,以求出最佳的动,静载荷能力及其加权形式。成功地优化了轴承模型3210,以证明所提出算法的正确性和有效性。通过不同优化方法和不同轴承模型的对比实验,检验了ARL-BFGS算法的整体性能。结果表明,使用ARL-BFGS算法,优化后的轴承系列32的动载荷能力和静载荷能力分别比《滚动轴承手册》中的标准值高60%和30%。动态和静态负载能力的加权形式也进行了优化,以为设计人员提供更多选择。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号