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Shock and release of polycarbonate under one-dimensional strain

机译:一维应变下聚碳酸酯的冲击和释放

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The behaviour of the thermoplastic polycarbonate has been investigated using manganin stress gauges in both longitudinal and lateral orientations. These have been used to determine the shock stress, shock velocity, particle velocity, release velocity and shear strength. The relationship between shock velocity and particle velocity has been shown to be linear, with the value of c(0) (the zero particle velocity intercept of shock velocity) equating to the measured bulk sound speed. This behaviour is more commonly observed in metals. Shear strength has been observed to increase behind the shock front, a feature observed in other polymers such as PMMA or PEEK. It also increases with stress amplitude, although the projected intercept with the calculated elastic response indicates that the Hugoniot elastic limit (HEL) is lower than in other polymers, for example PMMA (ca. 0.75 GPa) or PEEK (ca. 1.0 GPa). This further suggests that the yield strength of polycarbonate does not obey a Mohr-Coloumb criterion, and hence is not as strongly pressure dependent as other polymers. (c) 2006 Springer Science + Business Media, Inc.
机译:已经使用锰酸应力计在纵向和横向方向上研究了热塑性聚碳酸酯的性能。这些已用于确定冲击应力,冲击速度,粒子速度,释放速度和剪切强度。激波速度与粒子速度之间的关系已显示为线性关系,c(0)(激波速度的零粒子速度截距)的值等于测得的体积声速。这种行为在金属中更常见。已经观察到在冲击前沿后面的剪切强度会增加,这是在其他聚合物(例如PMMA或PEEK)中观察到的特征。它也随应力幅度而增加,尽管具有计算出的弹性响应的投影截距表明Hugoniot弹性极限(HEL)低于其他聚合物,例如PMMA(约0.75 GPa)或PEEK(约1.0 GPa)。这进一步表明,聚碳酸酯的屈服强度不符合Mohr-Coloumb标准,因此与其他聚合物的压力依赖性不强。 (c)2006年Springer Science + Business Media,Inc.

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