Spring-back deformation in tube bending

来源 :International Journal of Minerals Metallurgy and Materials | 被引量 : 0次 | 上传用户:zhchbetty
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
The spring-back of a bending metal tube was studied through extensive experiments and finite element method (FEM) analysis. An approximate equation for the spring-back angle of bending was deduced. It is noted that the mechanical properties of the material (in a tubular form) are quite different from those found in the standard tensile tests (when the materials are in bar forms). This is one of the major reasons that result in the discrepancies in the outcomes of experimental study,FEM calculations,and spring-back analysis. It is therefore of crucial importance to study the mechanical properties of the materials in their tubular forms. The experiments and FEM simulations prove that the spring-back angle is significantly affected by the mechanical properties of the materials. The angle decreases accordingly with plastic modulus,but changes inversely with the hardening index and elastic modulus. The spring-back angle is also affected by the conditions of tube deformation:it increases accordingly with the relative bending radius but changes inversely with the relative wall thickness. In addition,the spring-back angle increases nonlinearly with the bending angle. The spring-back of a bending metal tube was studied through extensive experiments and finite element method (FEM) analysis. An approximate equation for the spring-back angle of bending was wasted. It is noted that the mechanical properties of the material (in a tubular form) are quite different from those found in the standard tensile tests (when the materials are in bar forms). This is one of the major reasons that result in the discrepancies in the outcomes of experimental study, FEM calculations, and spring-back analysis. It is therefore of crucial importance to study the mechanical properties of the materials in their tubular forms. The experiments and FEM simulations prove that the spring-back angle is significantly affected by the mechanical properties of the materials. The angle decreases accordingly with plastic modulus, but changes inversely with the hardening index and elastic modulus. The spring-back angle is also affected by the conditions of tube deformation: it increases acc或dingly with the relative bending radius but changes inversely with the relative wall thickness. In addition, the spring-back angle increases nonlinearly with the bending angle.
其他文献
对EQ491飞轮螺栓松动原因进行了试验分析,提出了改进措施,通过改进前后螺栓的摩擦性能的试验,对改进后涂胶螺栓的装配工艺进行了调整,有效地防止了飞轮螺栓松动现象. The re
请下载后查看,本文暂不支持在线获取查看简介。 Please download to view, this article does not support online access to view profile.
经营型管理是相对生产型管理而言。我国1978年经济体制改革以前的企业管理基本上属于生产型管理,它以生产为中心的企业管理方式(形态),是一种较初级的工业企业管理类型,又称
本文介绍了南京市历史空间格局演变地理信息系统建设的背景、目标和意义,并对城市规划新技术在该系统的作用进行分析,为研究城市空间格局开拓了新的领域。 This paper intro
成功是每个人的追求目标,可人生如何才能成就一番事业呢?聪明的人往往不务实,务实的人往往不聪明;有悟性的人工作没有耐性,有耐性的人工作却没有悟性。获取成功既需要悟性,又
我长得不起眼,也不是什么很重要的器官,但是从各位出生开始,我就陪伴在大家身边了。  我是谁?哈哈,我就是你们手指上的指甲。  其实,在我的身上也藏着很多不为人知的秘密,快来见识一下吧。  不睡觉的劳碌  作为指甲,我们可跟别的器官不一样。一天24小时,我们是无时无刻不睁着眼睛,不在生长的。  为什么会这样呢?那是因为我们生长的速度太慢了,就拿手指甲为例,一天如此卖力地生长成绩也只有0.1毫米。简单
采用杨树浦水厂新建的组合工艺(预臭氧氧化→高密度澄清池→砂滤→后臭氧氧化→生物活性炭)处理有机物和氨氮含量较高的黄浦江原水,研究水力负荷对该工艺处理黄浦江原水效果
从纸糊窗到玻璃窗,再到百叶窗,人类的"窗户文明"走过了不知多少年历史。智能窗的出现更是让人们确切感受到科技带来的便利。如今,智能窗越来越智能,智能窗技术再次给低碳环保
最近一本美国的时尚杂志做了一个有趣的调查,针对的人群正是已经结婚多年的男性,令人惊讶的是,他们在10多年后依然记得与伴侣头次见面时的种种细节场景,而其中的一些片段正是
本文从幼儿教育的特点出发,探讨了幼儿教师与幼儿之间的相互关系。幼儿教师在教育教学实践中应该与幼儿取平等地位,并尽量做到与幼儿心理同步,充分发挥教师和幼儿的积极性,让