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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Mechanical characterization of materials for bulk forming using a drop weight testing machine
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Mechanical characterization of materials for bulk forming using a drop weight testing machine

机译:使用落锤测试机对用于批量成型的材料进行机械表征

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摘要

The main limitation of mechanical testing equipments is nowadays centred in the characterization of materials at medium loading rates. This is particularly important in bulk forming because strain rate can easily reach values within the aforesaid range. The aim of this article is twofold: (a) to present the development of a low-cost, flexible drop weight testing equipment that can easily and effectively replicate the kinematic behaviour of presses and hammers and (b) to provide a new level of understanding about the mechanical characterization of materials for bulk forming at medium rates of loading. Special emphasis is placed on the adequacy of test operating conditions to the functional characteristics of the presses and hammers where bulk forming takes place and to its influence on the flow stress. This is needed because non-proportional loading paths during bulk forming are found to have significant influence on material response in terms of flow stress. The quality of the flow curves that were experimentally determined is evaluated through its implementation in a finite-element computer program and assessment is performed by means of axisymmetric upset compression with friction. Results show that mechanical characterization of materials under test operating conditions that are similar to real bulk forming conditions is capable of meeting the increasing demand of accurate and reliable flow stress data for the benefit of those who apply numerical modelling of process design in daily practice.
机译:如今,机械测试设备的主要局限性在于中等负载速率下材料的表征。这对于块成形特别重要,因为应变率可以容易地达到上述范围内的值。本文的目的是双重的:(a)介绍一种低成本,灵活的落锤测试设备的开发,该设备可以轻松有效地复制压力机和锤子的运动特性,并且(b)提供新的理解水平关于中等加载速率下块状成形材料的机械特性特别强调的是测试操作条件是否适合发生批量成形的压力机和锤子的功能特性及其对流动应力的影响。之所以需要这样做,是因为在整体成型过程中,非比例加载路径对材料响应的流动应力影响很大。通过实验确定的流量曲线的质量通过在有限元计算机程序中的实现方式进行评估,并通过带有摩擦的轴对称up粗压缩进行评估。结果表明,在类似于实际整体成型条件的测试操作条件下,材料的机械特性能够满足对精确而可靠的流应力数据不断增长的需求,从而使那些在日常实践中采用过程设计数值模型的人员受益。

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