Influence of Specimen Configuration and Size On Composite Transverse Tensile Strength and Scatter Measured Through Flexure Testing

T. O'Brien, A. Chawan, Kevin R. DeMarco, I. Paris
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引用次数: 16

Abstract

The influence of specimen configuration and size on the transverse tensile strength of two glass/epoxy materials, and one carbon/epoxy material, loaded in three and four-point bending was evaluated. Transverse tensile strength was typically lower for longer span lengths due to the classical weakest link effect. However, strength was less sensitive to volume changes achieved by increasing specimen width. The Weibull scaling law typically over-predicted changes in transverse tensile strengths in three-point bend tests and under-predicted changes in transverse tensile strengths in four-point bend tests. Furthermore, the Weibull slope varied with specimen configuration, volume, and sample size. Hence, this scaling law was not adequate for predicting transverse tensile strength of heterogeneous, fiber-reinforced, polymer matrix composites.
试件形态和尺寸对弯曲试验测得的复合材料横向抗拉强度和散射的影响
研究了两种玻璃/环氧树脂材料和一种碳/环氧树脂材料在三点和四点弯曲载荷下横向拉伸强度的影响。由于经典的最弱环节效应,横向抗拉强度随跨度的增大而降低。然而,强度是不太敏感的体积变化所取得的增加试样宽度。威布尔标度律通常会高估三点弯曲试验中横向拉伸强度的变化,而低估四点弯曲试验中横向拉伸强度的变化。此外,威布尔斜率随试样形态、体积和样本量的变化而变化。因此,该标度律不适用于预测非均相纤维增强聚合物基复合材料的横向拉伸强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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