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Numerical analysis of dynamic buckling of rectangular plates subjected to intermediate-velocity impact

机译:中速冲击矩形板动力屈曲的数值分析

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This paper numerically investigates the dynamic buckling of thin imperfect rectangular plates subjected to intermediate-velocity impact loads. From numerical results obtained, a dynamic buckling and a dynamic yielding critical condition are defined, and the corresponding critical dynamic loads are estimated. Numer- ical model employed in the present study is validated by experimental data reported earlier. Results from parametric study indicate that initial imperfection and load duration have significant influence on the dynamic buckling of the plates. The smaller the initial imperfection and the load duration, the higher the dynamic buckling critical loads of the plates. Moreover, different hardening ratios of plate material also affect the elastic--plastic dynamic buckling properties of the plates. If the plate buckles plastically, the dynamic buckling load increases as the hardening ratio of plate material increases. Unlike thin plates under high-velocity impact that buckling always occur after load application, plates under intermediate-velocity impact analyzed in the present study all buckle during the loading phase.
机译:本文数值研究了不中等矩形薄板在中等速度冲击载荷作用下的动态屈曲。根据获得的数值结果,定义了动态屈曲和动态屈服临界条件,并估算了相应的临界动态载荷。本研究中采用的数值模型已通过较早报道的实验数据进行了验证。参数研究的结果表明,初始缺陷和载荷持续时间对板的动态屈曲有重要影响。初始缺陷和载荷持续时间越短,板的动态屈曲临界载荷就越高。此外,板材的不同硬化率也会影响板材的弹塑性动态屈曲特性。如果板塑性弯曲,则随着板材料的硬化率增加,动态屈曲载荷也会增加。不同于在高速冲击下薄板总是在施加载荷后发生屈曲,本研究中分析的在中等速度冲击下的板在加载阶段都会发生弯曲。

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