Advanced weapons; Composite materials; Cracks; Cycles; Damage; Degradation; Failure; Fatigue; High temperature; Internal; Jet fighters; Life cycles; Limitations; Loads(Forces); Materials; Sizes(Dimensions); Stabilization; Stiffness; Strain(Mechanics); Structural properties; Tactical aircraft; Thermal properties; Threshold effects; Transverse; Metal matrix composites; Advanced tactical fighters; Thermomechanical fatigue; Thermomechanics; Fiber reinforced composites; SC56/Ti-15-3; Silicone carbides; Titanium; Heat resistant materials; Theses; Aircraft construction materials;
机译:具有基质各向异性损伤的交叉纤维增强陶瓷基复合材料宏观微观力学行为的有限元分析
机译:FRP交叉复合材料层压板钻孔的热力学建模:分层损伤分析
机译:拉伸载荷作用下多层陶瓷基复合材料的热机械疲劳行为
机译:温度和频率对交叉层钛基复合材料TMF机理的影响
机译:经受热机械加工时偏析和析出物对金属基复合材料界面增强机制的作用
机译:室温和空气中800°C循环疲劳载荷下交叉C / SiC陶瓷基复合材料的损伤演变和寿命预测
机译:含中心孔的交叉层钛金属基复合材料的疲劳损伤