首页> 外文会议>SAE World Congress and Exhibition >Fatigue Evaluation Procedure Development for Self-Piercing Riveted Joints Using the Battelle Structural Stress Method
【24h】

Fatigue Evaluation Procedure Development for Self-Piercing Riveted Joints Using the Battelle Structural Stress Method

机译:使用Battelle结构应力法对自刺穿铆接接头的疲劳评价程序开发

获取原文
获取外文期刊封面目录资料

摘要

Lightweight, optimized vehicle designs are paramount in helping the automotive industry meet reduced emissions standards. Self-piercing rivets are a promising new technology that may play a role in optimizing vehicle designs, due to their superior fatigue resistance compared with spot welds and ability to join dissimilar materials. This paper presents a procedure for applying the mesh-insensitive Battelle Structural Stress Method to self-piercing riveted joints for fatigue life prediction. Additionally, this paper also examines the development of an interim fatigue design master S-N curve for self-piercing rivets. The interim fatigue design master S-N curve accounts for factors such as various combinations of similar and dissimilar metal sheets, various sheet thicknesses, stacking sequence, and load ratios. A large amount of published data was collapsed into a single interim S-N curve with reasonable data scattering. Using the Battelle Structural Stress Method and the interim S-N curve approach, fatigue lives of riveted locations can be reliably predicted.This method is mesh-insensitive and employs a simplified modeling procedure which uses shell and beam elements to represent sheet metal and self-piercing rivets. Therefore a full vehicle body finite element analysis containing a large number of self-piercing rivets can be analyzed efficiently.
机译:轻量级,优化的车辆设计至关重要帮助汽车行业达到减少排放标准。自刺穿铆钉是一个有前途的新技术,可能在优化车辆设计方面发挥作用,这是由于它们具有优异的疲劳性,而与点焊和加入不同材料的能力相比。本文介绍了将网眼不敏感的堡垒结构应力法施加到自刺穿铆接接头的过程,用于疲劳寿命预测。此外,本文还研究了用于自刺穿铆钉的临时疲劳设计主S-N曲线的开发。临时疲劳设计主S-N曲线占类似和不同金属板的各种组合,各种纸张厚度,堆叠序列和负载比例的因素。具有合理数据散射的单个临时S-N曲线折叠大量已发布的数据。使用巴特尔结构应力的方法和临时SN曲线的方法,铆接位置的疲劳寿命可以可靠predicted.This方法是网孔不敏感的,并采用其使用壳和梁的元素表示的金属板和自冲铆钉的简化建模过程。因此,可以有效地分析包含大量自刺穿铆钉的全车身有限元分析。

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