孔破坏对闭孔聚乙烯泡沫塑料压缩模量的影响

H. Adachi, Teruo Hasegawa
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引用次数: 3

摘要

通过压缩模式下的动态粘弹性测量和静态压缩试验,研究了细胞破坏对四种闭孔聚乙烯压缩模量的影响。在动粘弹性测试中,破坏后的动模量小于破坏前的动模量,在破坏后的泡沫中,小弹性模量的泡沫与大弹性模量的泡沫的动模量与初始收缩率的关系不同。在静态压缩试验中,未发泡泡沫的应力-应变曲线在小应变区出现弯曲,膨胀泡沫的应力-应变曲线在小应变区出现弯曲,而低弹性模量泡沫破坏后应力随应变单调增加。另一方面,对于高弹性模量的泡沫,应力-应变曲线在小应变区出现弯曲,这是在原生泡沫破坏后观察到的。考虑到泡沫的弹性模量随孔内压力阻力与总阻力的比值而变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Cell Destruction on Compression Moduli of Closed-Celled Polyethylene Foams
Effects of cell destruction on compression moduli of four closed-cell polyethylene were studied by the dynamic viscoelastic measurements in compression mode and the static compression test. In the dynamic viscoelastic measurements, dynamic modulus after cell destruction was smaller than that before cell destruction, and in foams after cell destruction the relations with the dynamic modulus and the initial shrinkage for foams of small elastic modulus was different from those for foams of large elastic modulus. In the static compression test, stress-strain curves of virgin foams gave a bend in the small strain region as observed for expanded polystyrene foams, whereas after cell destruction the stress monotonically increased with strain for foams having low elastic modulus. On the other hand for foams of high elastic modulus, stress-strain curves gave a bend in the small strain region as observed for virgin foams after cell destruction. It is considered that the ratio of the resistance against the pressure inside the cells to the total resistance varies with the elastic modulus of foams.
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