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Investigation of the effective parameters in tube hydroforming process by using experimental and finite element method for manufacturing of tee joint products

机译:用实验和有限元制造制造TEE联合产品的管液加工过程有效参数研究

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摘要

Hydroforming is a prominent manufacturing process in automotive, aerospace, and aircraft industries. This process has several advantages compared with other conventional production method, such as weight reduction, part consolidation, improved structural strength, better stiffness, welded assembly obviation, dimensional accuracy, low spring back, and increasing in design flexibility. In tube hydroforming (THF) process, product quality mainly depends on some parameters which determine the boundary conditions of forming process. In the present work, the effect of loading path, friction coefficient, strain-hardening exponent, and fillet radius of the die on height of protrusion in expansion zone and thickness distribution in three different cross-sections is perused. In order to investigate the effects of abovementioned parameters on product quality, finite element method (FEM) was used via ABAQUS/Explicit, as well as to perform the THF process experimentally, a tubular blank was placed between two dies, sealed and filled by injecting pressurized water into it and at last, the tubular blank was shaped into die cavity. The FEM results were then compared with experimental results and were found a good compatibility between them. Finally, according to the results, a useful pattern obtained to show the relevance between effective parameters and product quality. Carefully selected combined parameters can be considered as a key factor for successful THF as well as enhance the formability.
机译:液压成形是汽车,航空航天和飞机行业的突出制造过程。与其他传统生产方法相比,该过程具有若干优点,如减轻重量,部分固结,改进的结构强度,更好的刚度,焊接组装避光,尺寸精度,低弹簧回,以及设计灵活性的增加。在管式液压成形(THF)过程中,产品质量主要取决于一些决定形成过程边界条件的参数。在本作的工作中,据仔细扫描了三种不同横截面中的膨胀区中突起高度的负载路径,摩擦系数,应变硬化指数和圆角半径的效果。为了研究上述参数对产品质量的影响,通过ABAQUS /明确使用有限元方法(FEM),以及通过实验执行THF过程,将管状坯料放置在两个模具之间,通过注入密封和填充将加压水进入其并最后,管状坯料成形为模腔。然后将FEM结果与实验结果进行比较,并发现它们之间具有良好的相容性。最后,根据结果,获得了有用的模式以显示有效参数和产品质量之间的相关性。精心选择的组合参数可以被认为是成功THF的关键因素,以及提高可成形性。

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