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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >An experimental approach for blankholder force determination for DP600 with different material flow strain rates in the flange during stamping
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An experimental approach for blankholder force determination for DP600 with different material flow strain rates in the flange during stamping

机译:确定冲压过程中法兰上不同材料流动应变率的DP600的压边力的实验方法

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摘要

Manufacturing efficiency is directly related to the parameters of the process and the material used. In sheet metal industry, the manufacturing process often results in changes in design of the tool to safely stamp the product. These changes in design could occur due to use of a new material with better formability, adjustments to the design of tools and/or the process parameter variation. In order to avoid the trial-and-error procedure, forming limit curve is an effective method for this assessment and is widely used by several authors in recent publications, that is, the use of forming limit curve could be useful to decrease the trial-and-error procedures and tool-developing expenses. Despite being widely used in the industry, a process parameter that has been barely researched is the influence of blankholder force on the drawability of advanced high-strength steels, which contains multiple phases on microstructural level. The main aim of the present study was to analyze the influence of the blankholder force on the formability of DP600 steel. Blankholder forces of 130, 80 and 58 tons were considered. The experimental results led to a detailed understanding of the blankholder force influence during the process. The blankholder force variation promoted different material flow strain rates in the flange during the stamping - higher strain rate increased the bending effect on the die radius. As a result, an experimental approach that allows the blankholder force determination as a function of the different strain rates of the flange flow of the stamped sample was proposed.
机译:制造效率与工艺参数和所用材料直接相关。在钣金行业中,制造过程通常会导致工具设计发生变化,以安全地冲压产品。这些设计更改可能是由于使用具有更好可成型性的新材料,工具设计的调整和/或工艺参数变化而发生的。为了避免反复试验,形成极限曲线是进行此评估的有效方法,并且在最近的出版物中被几位作者广泛使用,也就是说,使用极限曲线可能有助于减少试验次数。错误程序和工具开发费用。尽管在工业中得到了广泛的应用,但很少研究的工艺参数是压边力对高级高强度钢(在微观结构水平上包含多个相)的可拉伸性的影响。本研究的主要目的是分析坯料夹持力对DP600钢成形性的影响。考虑了130、80和58吨的压坯力。实验结果导致了在此过程中对坯料夹持力影响的详细了解。压模夹持器力的变化促进了冲压过程中法兰中不同的材料流动应变率-较高的应变率增加了对模具半径的弯曲效果。结果,提出了一种实验方法,该方法允许根据压印样品的法兰流动的不同应变率来确定毛坯夹持力。

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