首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Effects of space environment temperature on the mechanical properties of carbon fiber/bismaleimide composites laminates
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Effects of space environment temperature on the mechanical properties of carbon fiber/bismaleimide composites laminates

机译:空间环境温度对碳纤维/双马来酰亚胺复合材料层压板力学性能的影响

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摘要

The effects of space environment temperatures on specific carbon fiber/bismaleimide composite laminates were evaluated using the simulated environment test method. The tests were performed at -120?, room temperature, 150?, 170?, and 200?. The material responses were characterized through an assessment of mechanical properties including tensile, compressive, and in-plane shear properties. The experimental results showed that transverse tensile/compressive and in-plane shear responses, which are strongly related to matrix properties, were sensitive to temperature especially high temperature above the glass transition temperature. Failure morphologies on both the microscopic and macroscopic scales were discussed. It was found that matrix fracture and delamination was more likely at high temperatures, while the interface strength was higher at low temperatures. The effects of extreme temperatures on mechanical responses of composites, as well as dynamic thermomechanical analysis results, are shown. Failure envelopes for these carbon fiber / bismaleimide composites at different temperatures based on Hashin criteria are depicted to help designers to avoid drawbacks introduced by temperature.
机译:使用模拟环境测试方法评估了空间环境温度对特定碳纤维/双马来酰亚胺复合层压板的影响。试验是在-120℃,室温,150℃,170℃和200℃下进行的。通过评估机械性能(包括拉伸,压缩和面内剪切性能)来表征材料的响应。实验结果表明,与基体性能密切相关的横向拉伸/压缩和面内剪切响应对温度特别是高于玻璃化转变温度的高温敏感。讨论了微观和宏观尺度上的失效形态。发现在高温下基体破裂和分层的可能性更大,而在低温下界面强度更高。显示了极端温度对复合材料机械响应的影响,以及动态热力学分析结果。根据Hashin准则绘制了这些碳纤维/双马来酰亚胺复合材料在不同温度下的失效包络图,以帮助设计人员避免温度带来的缺陷。

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