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EFFECT OF POROSITY OM MECHANICAL PROPERTIES OF RUBBER

机译:孔隙率对橡胶力学性能的影响

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Cylindrical samples, with different shape factors and levels of porosity, were prepared from a model EPDM compound and tested in compression. The modulus was reduced considerably with the introduction of porosity, especially when the shape factor was high. The stress-strain curves showed nonlinearity which depends on the shape factor and porosity level, and is related to bubble closure. The apparent modulus of bonded blocks was found to consist of two components: homogeneous compression modulus and a hydrostatic contribution. The first was obtained by compression of blocks between lubricated compression plates. It can be predicted from analytical expressions adapted from composite theories for high density foams in tension. The second arises from the pressure buildup inside the bonded blocks and depends on the shape factor and the porosity level. These moduli, after correcting for compressibility, were used to develop approximate relations describing the stress-strain curves of porous bonded blocks. The stress-strain curves of samples with different shape factors and levels of porosity could be predicted from experimental data or FEA estimates. [References: 17]
机译:由模型EPDM化合物制备具有不同形状因子和孔隙率水平的圆柱样品,并进行压缩测试。随着孔隙率的引入,模量大大降低,特别是在形状因数较高时。应力-应变曲线显示出非线性,该非线性取决于形状因子和孔隙度水平,并且与气泡的闭合有关。发现粘结嵌段的表观模量由两个部分组成:均质压缩模量和静水作用。第一个通过压缩润滑的压缩板之间的块获得。可以根据适用于拉伸中高密度泡沫的复合理论的解析表达式进行预测。第二个原因是粘结块内部的压力积累,并取决于形状因数和孔隙率水平。在校正可压缩性之后,这些模量用于建立近似关系,以描述多孔粘结块的应力-应变曲线。可以从实验数据或FEA估计中预测具有不同形状因子和孔隙率水平的样品的应力-应变曲线。 [参考:17]

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