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High Strain Rate Tensile and Compressive Testing of Braided Composite Materials

机译:编织复合材料的高应变率拉伸和压缩试验

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Data from tension and compression tests at quasi-static and impact strain rates of up to 50s~(-1) (corresponding to impact speeds of up to 7ms~(-1)) are presented to characterise the effect of strain rate on mechanical properties of triaxially braided carbon/vinyl ester. Three braid architectures were studied; 0°±30°, 0°±45° and 0°±60° where the 0° was an 80k tow and the ±30° to ±60° braid tow was 12k. The methodologies and apparatus used were developed for testing composite materials with a large unit cell size at a range of strain rates and are based on novel tensile and compressive loading rigs in conjunction with a modified instrumented falling weight machine (drop tower). In the paper, the effects of increase in strain rate on fibre and matrix dominated material properties are presented. The ultimate tensile and compressive strengths were found to vary with rate. The axial properties of the braided carbon/vinyl ester, dominated by the 80K carbon fibre tow, were relatively insensitive to rate, but strong rate dependency was seen in the transverse directions where the effects of the polymer resin were more significant.
机译:从张力和压缩试验处的数据,静态和冲击应变率高达50〜(-1)(对应于高达7ms〜(-1)的冲击速度),以表征应变率对机械性能的影响三轴编织碳/乙烯基酯。研究了三个编织架构; 0°±30°,0°±45°和0°±60°,其中0°为80k丝束,±30°至±60°辫子丝束为12k。使用的方法和装置用于测试具有大单位电池尺寸的复合材料,在一系列应变速率下,与改进的仪表落的重量机(滴塔)结合使用新型拉伸和压缩负载钻井件。本文介绍了应变率升高对纤维和基质主导材料特性的影响。最终的拉伸和抗压强度被发现随着速率而变化。由80k碳纤维丝束支配的编织碳/乙烯基酯的轴向性能对速率相对不敏感,但在横向方向上观察到强速率依赖性,其中聚合物树脂的效果更显着。

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