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Transversely isotropic mechanical properties of PVC foam under cyclic loading

机译:循环载荷下PVC泡沫塑料的横观各向同性力学性能

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摘要

Cyclic material tests were done on Divinycell PVC H100 foam to obtain out-of-plane and in-plane compression and shear material properties after foam yielding. The compression and shear stress-strain behaviors were very similar to each other except that a plateau (flow) stress occurred after yielding in compression, while the foam underwent mild strain hardening after shear yielding. The ratio of out-of-plane to in-plane stiffness and yield strength for the PVC H100 was found to be approximately 3/2 in both the compression and shear modes. After viscoplastic yielding, the foam underwent permanent damage and exhibited hysteresis, mainly in the form of viscoelasticity. Damage that occurred in the foam after it yields followed the pattern of Mullins damage, i.e., the damage was essentially fixed at a given strain amplitude, and more damage occurred with increasing the strain amplitude. Hysteresis was much more pronounced as the damage grew, suggesting that viscoelastic properties of the foam could be changing with the amount of damage.
机译:在Divinycell PVC H100泡沫上进行循环材料测试,以获得泡沫屈服后的平面外和平面内压缩和剪切材料性能。压缩和剪切应力-应变行为彼此非常相似,除了在压缩屈服后出现平台(流动)应力,而泡沫在剪切屈服后经历了轻微的应变硬化。发现在压缩和剪切模式下,PVC H100的面外与面内刚度之比和屈服强度均约为3/2。粘塑性屈服后,泡沫遭受永久性破坏并表现出滞后性,主要表现为粘弹性形式。泡沫屈服之后在泡沫中发生的破坏遵循穆林斯破坏的模式,即,破坏在给定的应变幅度下基本固定,并且随着应变幅度的增加发生更多的破坏。随损伤的增加,磁滞现象更加明显,这表明泡沫的粘弹性可能随损伤的程度而变化。

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