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Assessment of damage model and strain rate effects on the fragile stress/strain response of ice material

机译:评估损伤模型和应变率对冰材料易碎应力/应变响应的影响

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摘要

The present study concerns the modelling of fragile high velocity ice impactors with the aim of better representing the dynamic load (including impulse) applied to impacted structures. This is achieved by taking into account well-known differences between the tension and compression behaviours of ice, and the influence of the strain rate on its fragile material response. The proposed model is then based on an asymmetric tension-compression elastic damage law, which includes delay effects to prevent numerical mesh sensitivity and control the damage growth rate. This model still needed to be improved to obtain numerical results in better agreement with the dynamic tests. This was achieved by adding an explicit effect of the strain rate on the impact peak force through the damage model (initiation threshold and evolution law). The behaviour law has been implemented and assessed in the explicit EUROPLEXUS code (using a solid smooth particle hydrodynamics formulation), after having been identified from dynamic mechanical tests on ice performed with ONERA hydraulic jacks.
机译:本研究涉及脆弱的高速冰撞击器的建模,目的是更好地表示施加到撞击结构上的动态载荷(包括脉冲)。这是通过考虑到冰的拉伸和压缩行为之间众所周知的差异以及应变率对其易碎材料响应的影响来实现的。然后,所提出的模型基于不对称的拉伸-压缩弹性损伤定律,该定律包括延迟效应,以防止数值网格敏感性并控制损伤的增长率。仍需要改进该模型以获得与动态测试更好地吻合的数值结果。通过在损伤模型(初始阈值和演化定律)中增加应变速率对冲击峰值力的显式效果来实现。在使用ONERA液压千斤顶在冰上进行动态力学测试确定其行为规律后,已在明确的EUROPLEXUS法规(使用固体光滑颗粒流体动力学公式)中实施并评估了行为规律。

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