首页> 外文会议>ESAFORM 2012 >ANALYTIC PREDICTION OF THE PROCESS PARAMETERS FOR FORM-FIT JOINING BY DIE-LESS HYDROFORMING
【24h】

ANALYTIC PREDICTION OF THE PROCESS PARAMETERS FOR FORM-FIT JOINING BY DIE-LESS HYDROFORMING

机译:少于液压成形的形式配合加入的工艺参数的分析预测

获取原文

摘要

The Commission of the European Communities aims for a reduction of new car CO_2 emissions of 120 grams per kilometer in 2012. As a result of the omnipresent efforts of the automotive industry to hit these tighter emission standards innovative lightweight strategies, e.g. the use of lightweight materials are developed. This entails new joining techniques that are appropriated to the new lightweight materials. The die-less hydroforming process is a joining method for tubular joints that meets the new demands of lightweight strategies. Since there is no need for any additional connection elements or filling material, it is an interesting alternative to conventional welding and riveting processes. The present paper describes the basic principle of the die-less hydroforming joining technology with a special focus on form-fit connections. An analytical model, based on the membrane theory with an additional local consideration of bending stresses is developed. This analytic approach can be used to calculate the working fluid pressure, required to bulge the tube material into the groove of the outer joining partner. Taking into account the material parameters as well as the groove and tube geometry, this model allows a reliable process design. Additionally, validation of the model by experimental investigations will be provided.
机译:欧洲社区的委员会旨在减少2012年每公里120克的新车CO_2排放量。由于汽车工业的全能努力,达到这些更严格的排放标准,例如创新的轻量级策略,例如,开发了轻质材料的使用。这需要新的加入技术,这些技术将拨入新的轻质材料。凹入的液压成形过程是用于管状关节的加入方法,符合轻质策略的新需求。由于不需要任何额外的连接元件或填充材料,因此传统焊接和铆接过程是一种有趣的替代方法。本文介绍了少于液压成型加入技术的基本原理,具有特殊关注形状配合连接。开发了一种基于膜理论的分析模型,具有额外的弯曲应力考虑弯曲应力。该分析方法可用于计算工作流体压力,要求将管材料凸出到外连接伴侣的凹槽中。考虑到材料参数以及凹槽和管几何形状,该模型允许可靠的工艺设计。此外,将提供通过实验调查验证模型。

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