Developing the mesoscale stress-strain curve to failure

N. Iwamoto
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引用次数: 8

Abstract

Developing the stress response using the molecular and mesoscale levels is fairly reliable during the initial strain. For instance, modulus is a property that can be established using these techniques and the continuity of scale suggests that both may be used to establish modulus for parameterizing a macroscale model when measured properties are unavailable. However, the latter part of the stress/strain response that helps to establish ties to crack propagation still needs attention. One problem that was previously found was questionable lack of void formation in crosslinked systems due to superficially clean adhesive separation in the simulations. One way to overcome this lack of voiding was to determine how to develop bond breakage criterion that would allow surfaces to develop. This paper discusses development and application of bond breakage, and the impact on the simulated stress/strain curves using mesoscale models.
建立破坏的中尺度应力-应变曲线
在初始应变过程中,利用分子和中尺度水平发展应力响应是相当可靠的。例如,模数是可以使用这些技术建立的属性,尺度的连续性表明,当测量的属性不可用时,这两种技术都可以用来建立参数化宏观尺度模型的模数。然而,有助于建立裂纹扩展联系的应力/应变响应的后一部分仍然需要注意。先前发现的一个问题是,在模拟中,由于表面清洁的粘合剂分离,交联系统中缺乏空隙形成。克服这种缺乏空隙的一种方法是确定如何制定允许表面发展的键断标准。本文讨论了粘结断裂的发展和应用,以及中尺度模型对模拟应力/应变曲线的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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