首页> 外文会议>Symposium on Composite Structures: Theory and Practice, May 17-18, 1999, Seattle, Washington >Environmental Effects on Bonded Graphite/Bismaleimide Structural Joints
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Environmental Effects on Bonded Graphite/Bismaleimide Structural Joints

机译:石墨/铋对苯二酰亚胺键合结构的环境影响

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There are many advantages to using adhesively bonded joints for aerospace applications, but their potential is not yet realized because not enough is known about the long-term durability of the polymeric adhesives. This paper focuses on the long-term durability of a toughened epoxy used to bond graphite/bismaleimide composites. Double cantilever beam (DCB), end-notched flexure (ENF), and cracked lap shear (CLS) tests were conducted to determine the fracture toughness of the adhesive system before and after environmental exposure. These specimens were exposed to either a hot/dry environment or thermal cycles between -54℃ (-65℉) and 104℃ (220℉). Unex-posed and exposed specimens were tested at room temperature and it was found that the hot/dry environment lowered the fracture toughness of the joints. For the DCB and CLS geometry, unexposed specimens were tested at reduced and elevated temperatures. For some of the DCB and all of the CLS specimens, it was found that the cold temperature reduced the fracture toughness. In order to determine if the environment and temperature combined affect the toughness, the environmentally exposed DCB and CLS specimens were tested at the cold temperature. This combination of cold temperature and environmental exposure significantly lowered the fracture toughness of the material in all adhesive joints tested.
机译:在航空航天应用中使用胶粘接头具有许多优点,但由于对聚合物胶粘剂的长期耐久性了解不足,因此尚未实现其潜力。本文重点研究用于粘合石墨/双马来酰亚胺复合材料的增韧环氧树脂的长期耐久性。进行了双悬臂梁(DCB),端部弯曲挠度(ENF)和开裂搭接剪切(CLS)测试,以确定环境暴露前后粘合剂体系的断裂韧性。这些样品暴露于热/干燥环境或-54℃(-65℉)至104℃(220℉)的热循环中。未暴露和暴露的样品在室温下进行测试,发现热/干燥的环境会降低接头的断裂韧性。对于DCB和CLS几何形状,未暴露的样品在降低和升高的温度下进行了测试。对于某些DCB和所有CLS标本,发现冷温度降低了断裂韧性。为了确定环境和温度是否共同影响韧性,在低温下对暴露于环境的DCB和CLS样品进行了测试。低温和环境暴露的这种结合显着降低了所有测试粘合接头中材料的断裂韧性。

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