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Damage development in titanium metal matrix composites subjected to cyclic loading

机译:循环载荷下钛金属基复合材料的损伤发展

摘要

Several layups of SCS-6/Ti-15-3 composites were investigated. Fatigue tests were conducted and analyzed for both notched and unnotched specimens at room temperature and elevated temperatures. Thermo-mechanical fatigue results were analyzed. Test results indicated that the stress in the 0 degree fibers is the controlling factor in fatigue life. The static and fatigue strength of these materials is shown to be strongly dependent on the level of residual stresses and the fiber/matrix interfacial strength. Fatigue tests of notched specimens showed that cracks can initiate and grow many fiber spacings in the matrix materials without breaking fibers. Fiber bridging models were applied to characterize the crack growth behavior. The matrix cracks are shown to significantly reduce the residual strength of notched composites. The notch strength of these composites was accurately predicted using a micromechanics based methodology.
机译:研究了SCS-6 / Ti-15-3复合材料的几种铺层。在室温和高温下对有缺口和无缺口的样品进行了疲劳测试并进行了分析。分析了热机械疲劳结果。测试结果表明,0度纤维中的应力是疲劳寿命的控制因素。这些材料的静态和疲劳强度显示出极大地取决于残余应力的水平和纤维/基质界面强度。缺口试样的疲劳测试表明,裂纹可以在基质材料中引发并增加许多纤维间距,而不会破坏纤维。应用纤维桥接模型来表征裂纹扩展行为。结果表明,基体裂纹显着降低了缺口复合材料的残余强度。使用基于微力学的方法可以准确预测这些复合材料的缺口强度。

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    Johnson W. S.;

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  • 年度 1992
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