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Evaluation and study of formability characteristics of sheet metals through stretch-bend test

机译:通过拉伸弯曲试验的纸张金属成形性特性的评价研究

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Manufacturing is the lifeline of all industrial societies. As manufacturing processes are varied understanding of competitive nature of processes is essential. A necessary requirement in this respect is appropriate measure of performance. Some of the common operations which come under Sheet metal Forming are bending, roll bending, contour forming, stretch forming, creep forming, straight stretch forming, spinning, deep drawing, explosive forming etc. The concept of formability provides us with one such measure. Formability is not easily quantified as it depends on several interacting factors. It is conceivable that a given sheet metal could be formed successfully into a particular component or lead to failure depending upon the process conditions and the tooling used. Stretch-bend formability test a sheet metal is deformed in centre by a wedge shaped punch into the sheet (clamped fully) the test is continued until fracture takes place. Punch to die throat diameter clearance is high. The depth of penetration at the instant when load reaches its maximum is used as the formability Index. The test was conducted dry without use of any lubricant. The features of the test are it measures the capability of sheet materials to be stretched before fracture, It has good consistency, easy to perform, ability to simulate desired forming mode is good. In this test aluminum and steel alloys are used with different thickness and formability index is evaluated. The study on effect of punch nose radius on maximum load and depth of deformation is used for study of formability characteristics.
机译:制造业是所有工业社会的生命线。随着制造过程的变化,理解过程的竞争性质至关重要。在这方面的必要要求是适当的表现衡量标准。在金属板成形下的一些常见操作是弯曲,滚动弯曲,轮廓形成,拉伸成型,蠕变形成,直拉伸成形,纺纱,深拉,爆炸成形等。可成形性的概念为我们提供了一种这样的措施。可成形性不容易量化,因为它取决于几个相互作用因子。可以想到,可以成功地成功形成给定金属金属,或者根据工艺条件和使用的工具导致破坏。拉伸弯曲成形性测试用楔形冲头在中心中的中心变形,在片材(完全夹紧)继续测试直至骨折发生。冲击到模具喉部直径间隙很高。当负载达到最大值时,瞬间渗透深度用作可成形性指标。在不使用任何润滑剂的情况下进行测试干燥。测试的特点是测量骨折前伸展的片材的能力,它具有良好的一致性,易于执行,模拟所需成形模式的能力良好。在该试验中,铝和钢合金用于不同的厚度,并评估可成形性指数。冲头鼻径对最大载荷和变形深度的影响研究用于可成形性特征研究。

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