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Fracture Characterization of PVC Foam Core Sandwich Specimen Using the DCB-UBM Test Method

机译:用DCB-UBm试验方法研究pVC泡沫芯夹芯试样的断裂特征

摘要

Face/core debond failure in sandwich composites is a critical failure mode. Lack of cohesion between face and core will lead to loss of structural integrity. The estimation of interface fracture toughness especially at the face/core interface is extremely challenging, provided the dissimilarity of material properties across the interface. The crack path and fracture also depend on the loading configuration at the crack tip. Depending on the type of loading applied, a measure of shear deformation at the crack tip is expressed by the mode-mixity phase angle (ψ). A suitable fracture mechanics approach coupled with experimental validation is paramount to determine the fracture resistance of the face/core interface. In this paper, the test-rig exploiting the double cantilever beam with uneven bending moments (DCB-UBM) concept is used to determine the fracture toughness of PVC foam core sandwich composites. The DCB-UBM test enables fracture testing over a large range of mode-mixities as expressed by a phase angle (ψ) which is a measure of the amount of shear loading at the crack tip. A desired phase angle may be achieved by changing the moment-ratio (MR = M/M).
机译:夹芯复合材料的面/芯剥离粘结失效是关键的失效模式。面与芯之间缺乏内聚力会导致结构完整性丧失。假设在整个界面上材料特性不相同,则对界面断裂韧性(尤其是在面/芯界面处)的断裂韧性的估计将极具挑战性。裂纹路径和断裂还取决于裂纹尖端处的载荷配置。取决于所施加的载荷类型,裂纹尖端处的剪切变形的量度由模式混合相角(ψ)表示。合适的断裂力学方法与实验验证相结合,对于确定面/芯界面的断裂阻力至关重要。本文采用具有不均匀弯矩的双悬臂梁的试验台(DCB-UBM)来确定PVC泡沫芯夹芯复合材料的断裂韧性。 DCB-UBM测试可在大范围的模式混合下进行断裂测试,如相角(ψ)所示,该相角是裂纹尖端处剪切载荷量的量度。可以通过改变力矩比(MR = M / M)来获得所需的相位角。

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