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Fracture in Layered Plates having Property Mismatch across the Crack Front

机译:层状板的骨折,在裂缝前面的物质不匹配

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Layered structures are used in protection systems such as personal and heavy armor, windshields and also in thermal barriers. Such materials have mismatch in the properties, both elastic and fracture, from layer to layer. The focus of this study is to understand the behavior of cracks in such systems, especially when the crack orientation is such that there are property changes along the crack front. Plates comprising of layers of epoxy and PMMA were prepared by bonding together sheets of 6 mm nominal thickness with an epoxy adhesive. Single edge notched (SEN) specimens were loaded in bending. The thickness averaged stress intensity factor (SIF) was obtained through photoelasticity. Subsequently the behavior of crack-propagation in these materials was also investigated by loading SEN specimen dynamically. The crack tip fields were recorded using high-speed imaging coupled with dynamic photoelasticity, from which the thickness averaged fracture parameters are extracted.
机译:分层结构用于保护系统,如个人和重型装甲,挡风玻璃以及热障碍。这些材料在性质中具有不匹配的,弹性和裂缝,从层到层。本研究的重点是了解这种系统中裂缝的行为,特别是当裂缝取向使得沿着裂缝前面有财产发生变化。通过用环氧粘合剂键合6mm标称厚度的片材来制备包含环氧树脂和PMMA层的平板。单边缘缺口(SEN)标本弯曲。通过光弹性获得厚度平均应力强度因子(SIF)。随后通过动态装载森样本,还研究了这些材料中裂缝繁殖的行为。使用高速成像与动态光弹性耦合的高速成像进行记录裂缝尖端字段,从中提取厚度平均裂缝参数。

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