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Simulation of concrete structures under highly dynamic loadings

机译:高动态载荷下混凝土结构的模拟

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摘要

More and more, building owners ask engieners to design their structures also for hazard loadings. These loadings are caused by explosion or impact, for example, and produce high pressures in the kilobar region within mircoseconds. In that topic, design tasks are a great challenge for engineers in practice as well as for researchers. Structural dynamics methods are well known but insufficient for such highly dynamic loadings. Thus, Hydrocodes are being applied. Reliability investigations show the capability of the numerical tool used. Appropriate constitutive laws enable the non-linear rate-dependent behaviour and the local damage behaviour. A recently developed material model for concrete based on macromechanics has been implemented in the Hydrocode via a couple of user defined subroutines. The features of the model are presented in this article in detail. Damage and fracture caused by a contact detonation on a concrete plate are numerically predicted. Nevertheless, experimental investigations are still needed. The numerical results are evaluated and compared qualitatively as well as quantitatively with full-scale tests. Finally, a penetration of a projectile into a concrete wall is simulated. It shows the capability of the new material model also for impact and penetration phenomena.
机译:越来越多的建筑物所有者要求工程师也为危险荷载设计结构。这些负载是由例如爆炸或冲击引起的,并在毫秒级的千伏区域内产生高压。在该主题中,设计任务对实践中的工程师和研究人员都是巨大的挑战。结构动力学方法是众所周知的,但是对于这种高动态载荷是不够的。因此,正在应用液压代码。可靠性调查显示了所使用数值工具的能力。适当的本构关系可以实现非线性的速率依赖行为和局部破坏行为。在Hydrocode中,通过几个用户定义的子例程,已实现了基于宏观力学的混凝土最新材料模型。本文将详细介绍该模型的功能。通过数值预测混凝土板上的接触爆轰引起的损坏和断裂。尽管如此,仍然需要进行实验研究。将对数值结果进行评估,并与全面测试进行定性和定量比较。最后,模拟了弹丸向混凝土墙的渗透。它显示了新材料模型还具有冲击和渗透现象的功能。

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