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Sub-Scale Testing for Strength and Creep-Rupture of Polymers

机译:聚合物强度和蠕变断裂的子规模测试

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In the present research, a sub-scale specimen geometry was proposed for the determination of the tensile strength of polymers. Tensile strength of an aerospace epoxy (8552) was measured at various temperatures using the proposed testing approach and the measured data were compared to data measured using standard-size specimens. According to the experimental data, greater strengths were obtained using sub-scale specimens. This phenomenon was related to the lower probability of having larger flaws in smaller-size specimens. In addition, a creep-rupture master curve for the polymer was obtained by shifting strengths measured at various temperatures, according to an accelerated testing methodology (ATM) based on the time-temperature superposition principle. Ultimately, the proposed sub-scale testing approach may prove feasible for determining tensile strength and the long-term creep strength of a polymer using standard laboratory dynamic mechanical analysis (DMA) equipment.
机译:在当前的研究中,提出了一种小规模的试样几何形状,用于测定聚合物的拉伸强度。使用建议的测试方法在各种温度下测量了航空环氧树脂(8552)的拉伸强度,并将测量数据与使用标准尺寸样本测量的数据进行了比较。根据实验数据,使用亚标本获得了更大的强度。这种现象与较小尺寸试样中出现较大缺陷的可能性较低有关。此外,根据基于时间-温度叠加原理的加速测试方法(ATM),通过改变在不同温度下测得的强度,可以获得聚合物的蠕变-断裂主曲线。最终,使用标准的实验室动态力学分析(DMA)设备,所提出的小规模测试方法对于确定聚合物的拉伸强度和长期蠕变强度可能是可行的。

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