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首页> 外文期刊>Journal of Composites Technology & Research >Mechanical Behavior of a Woven Graphite/PMR-15 Composite at Room and Elevated Temperatures Determined from the +-45 deg Tensile and Iosipescu Shear Tests
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Mechanical Behavior of a Woven Graphite/PMR-15 Composite at Room and Elevated Temperatures Determined from the +-45 deg Tensile and Iosipescu Shear Tests

机译:通过+ -45度拉伸和Iosipescu剪切试验确定的机织石墨/ PMR-15复合材料在室温和高温下的机械性能

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摘要

Failure and stiffness properties of a woven 8 harness satin (8HS) graphite/PMR-15 composite have been investigated at room temperature and at 315 deg C by performing the +-45 deg tensile and Iosipescu tests. Acoustic emission has been monitored during testing. The critical loads for the initiation of damage in the composite have been determined. In particular, the specimen width effect has been investigated in the case of the +-45 deg specimens by testing the specimens with their width ranging from 12.7-50.8 mm. The results from the high temperature tests have been compared with the room temperature data presented in Refs. 1 and 2. Similar to the room temperature +-45 deg tests, the shear stresses at the onset of intralaminar damage in the specimens and the shear stresses at the maximum loads at 315 deg C are significantly affected by the specimen width effect. The trends in the damage initiation stresses and the maximum stresses as a function of specimen width at 315 deg C have been found to be very similar to the room temperature data with the stresses increasing almost linearly with the specimen width. It has also been shown in this project that the shear stresses at the onset of intralaminar damage and at the maximum load at 315 deg C depend very strongly on the specimen type. The shear stresses determined at the onset of damage and maximum loads from the Iosipescu tests at 315 deg C are noticeably higher than the stresses from the +-45 deg tests. The +-45 deg tensile test significantly underestimates the room and elevated temperature shear strength properties of the 8HS graphite/PMR-15 composite in comparison with the Iosipescu shear test.
机译:通过执行+ -45度拉伸和Iosipescu测试,已在室温和315摄氏度下研究了8线编织缎(8HS)石墨/ PMR-15机织复合材料的破坏和刚度性能。在测试过程中已经监测了声发射。已经确定了复合材料中引发破坏的临界载荷。尤其是,在+ -45度的样本中,通过测试宽度在12.7-50.8毫米范围内的样本来研究样本宽度效应。将高温测试的结果与参考文献中提供的室温数据进行了比较。参见图1和2。类似于室温+ -45度测试,样品的层内损伤开始时的剪应力和315℃时最大载荷下的剪应力受样品宽度效应的影响很大。发现在315摄氏度时,损伤起始应力和最大应力随样品宽度变化的趋势与室温数据非常相似,其中应力几乎随样品宽度线性增加。在该项目中还显示出,层内损伤开始时和315℃时的最大载荷下的剪应力在很大程度上取决于样品的类型。在315摄氏度下的Iosipescu测试中,在破损和最大载荷开始时确定的剪切应力明显高于+ -45摄氏度测试的应力。与Iosipescu剪切测试相比,+-45度拉伸测试显着低估了8HS石墨/ PMR-15复合材料的室温和高温剪切强度特性。

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