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Characterization of fracture toughness (G _c) of PVC and PES foams

机译:PVC和PES泡沫的断裂韧性(G _c)的表征

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摘要

The fracture behavior of polyvinyl chloride (PVC) and polyethersulfone (PES) foams has been examined using the single-edge notch bend and the double cantilever beam (DCB) tests. PVC foam densities ranging from 45 to 100 kg/m ~3 and PES foam densities ranging from 60 to 130 kg/m~3 were examined. The PVC foams failed in a linear elastic brittle manner, whereas the PES foams displayed much more ductility and substantially larger toughness at a comparable foam density. The cell wall thickness of the PES foams was almost twice the thickness of the PVC foams which may have contributed to the high fracture toughness here defined as critical energy release rate (G _c). The PES foam, further displayed low initiation toughness, due to the sharp artificial crack tip and large toughness corresponding to propagation from a natural crack. The results show that the ductile PES foams have toughness close to its solid counterpart whereas the toughness of the PVC foams falls substantially below its solid counterpart.
机译:聚氯乙烯(PVC)和聚醚砜(PES)泡沫的断裂行为已使用单边切口弯头和双悬臂梁(DCB)测试进行了检查。检验了PVC泡沫密度为45至100 kg / m〜3,PES泡沫密度为60至130 kg / m〜3。 PVC泡沫以线性弹性脆性方式破坏,而PES泡沫在相当的泡沫密度下显示出更大的延展性和明显更大的韧性。 PES泡沫的孔壁厚度几乎是PVC泡沫厚度的两倍,这可能有助于提高高断裂韧性,此处定义为临界能量释放速率(G _c)。由于尖锐的人工裂纹尖端和与自然裂纹扩展相对应的大韧性,PES泡沫还显示出较低的起始韧性。结果表明,易延展的PES泡沫具有接近其固体对应物的韧性,而PVC泡沫的韧性基本上低于其固体对应物。

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