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Torque Limit for Bolted Joint for Composites - Part A - TTTC Properties of Laminated Composites. 2002 NASA Faculty Fellowship Program

机译:复合材料螺栓连接的扭矩极限 - a部分 - 层压复合材料的TTTC性能。 2002年美国宇航局教师奖学金计划

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The existing design code for torque limit of bolted joints for composites at Marshall Space Flight Center is MSFC-STD-486B, which was originally developed in 1960s for metallic materials. The theoretical basis for this code was a simplified mechanics analysis, which takes into account only the bolt, nut and washers, but not the structural members to be connected. The assumption was that metallic materials would not fail due to the bearing stress at the contact area between washer and the mechanical member. This is true for metallic materials; but for composite materials the results could be completely different. Unlike most metallic materials, laminated composite materials have superior mechanical properties (such as modulus and strength) in the in-plane direction, but not in the out-of-plane, or through-the-thickness (TTT) direction. During the torquing, TTT properties (particularly compressive modulus and compressive strength) play a dominant role in composite failure. Because of this concern, structural design engineers at Marshall are currently using a compromised empirical approach: using 50 of the torque value for composite members. Companies like Boeing are using a similar approach. An initial study was conducted last summer on this topic to develop theoretical model(s) that takes into consideration composite members. Two simplified models were developed based on stress failure criterion and strain failure criterion, respectively. However,these models could not be used to predict the torque limit because of the unavailability of material data, specifically, through-the-thickness compression (TTTC) modulus and strength. Therefore, the task for this summer is to experimentally determine the TTTC properties. Due to the time limitation, only one material has been tested: IM7/8552 with (0 degrees,plus or minus 45 degrees, 90 degree) configuration. This report focuses the test results and their significance, while the experimentation will be described in a separate report by Mr. Kris Kostreva.

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