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首页> 外文期刊>International Journal of Fracture >Failure mode transitions in polymers under high strain rate loading
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Failure mode transitions in polymers under high strain rate loading

机译:高应变速率载荷下聚合物的失效模式转变

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A rather unusual failure mode transition from brittle to ductile at high strain rates occurs under a combined pressure and shear loading. This transition also represents a change in the failure mode from a normal stress dominated fracture mode at low loading rates to a shear stress dominated shear banding failure at high strain rates. While most such observations have been in metallic materials, where such transitions are attributed to thermal softening caused by adiabatic heating, in this paper we present evidence of such mode transitions in a polymer. Experimental observations of the pressure-shear loading experiments are reported in two polymers; polycarbonate (PC) and polymethylmethacrylate (PMMA). Dynamic photomechanics techniques were used in obtaining information regarding the crack tip state in these experiments. While PC exhibits a failure mode transition to shear banding, PMMA changes to a shear mode of fracture; dynamic shear fracture has been observed in real-time using high speed photography for the first time. A numerical simulation of the experiment using a simple constitutive description of the material is performed in order to gain an understanding of the evolution of the crack tip fields that generate the observed mode transitions. The results of the simulation suggest that thermal softening may not play a significant role in the failure mode transitions in polymers. On the other hand, it is shown that the competition between shear yielding and normal stress dominated fracture mechanisms is the key to the failure mode transitions in these polymers.
机译:在压力和剪切载荷共同作用下,会发生高应变率下从脆性到延性的不寻常的破坏模式转变。这种转变也代表了破坏模式的变化,从低负荷率的以正应力为主的断裂模式到高应变率的以剪切应力为主的剪切带破坏。尽管大多数此类观察是在金属材料中进行的,其中这些转变归因于绝热加热引起的热软化,但在本文中,我们提供了聚合物中这种模式转变的证据。在两种聚合物中报道了压力-剪切载荷实验的实验观察结果。聚碳酸酯(PC)和聚甲基丙烯酸甲酯(PMMA)。在这些实验中,动态光力学技术用于获得有关裂纹尖端状态的信息。当PC表现出从破坏模式到剪切带的过渡时,PMMA转变为断裂的剪切模式。动态剪切断裂首次使用高速摄影进行实时观察。为了获得对产生观察到的模式转变的裂纹尖端场的演化的理解,使用材料的简单组成描述对实验进行了数值模拟。仿真结果表明,热软化可能不会在聚合物的失效模式转变中发挥重要作用。另一方面,结果表明,剪切屈服与以正应力为主的断裂机制之间的竞争是这些聚合物破坏模式转变的关键。

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