首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effect of Interfacial Debonding and Sliding on Matrix Crack Initiation during Isothermal Fatigue of SCS-6/Ti-15-3 Composites
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Effect of Interfacial Debonding and Sliding on Matrix Crack Initiation during Isothermal Fatigue of SCS-6/Ti-15-3 Composites

机译:SCS-6 / Ti-15-3复合材料等温疲劳过程中界面剥离和滑动对基体裂纹萌生的影响

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摘要

Direct observation of initial damage-evolution processes occurring during cyclic testing of an unnotched SCS-6 fiber-reinforced Ti-15-3 composite has been carried out. The aligned fibers break at an early stage, followed by debonding and subsequent sliding along the interface between the reaction layer (RL) and Ti-15-3 alloy matrix. Matrix cracking initiation from the initial broken fiber and RL was avoided. This fracture behavior during cyclic loading is modeled and analyzed by the finite-element method, with plastic deformation of the matrix being considered. The plastic strain in the matrix at the initial crack and at the deflected crack tips, when the interface crack is deflected into the RL after extensive interface debonding propagation, is characterized. The effects of interfacial debond lengths and test temperatures on the matrix cracking mechanism are discussed, based on a fatigue-damage summation rule under low-cycle fatigue conditions. The numerical results provide a rationale for experimental observations regarding the avoidance and occurrence of the matrix cracking found in fiber-reinforced titanium composites.
机译:直接观察了无缺口SCS-6纤维增强的Ti-15-3复合材料的循环测试过程中发生的初始损伤演化过程。对齐的纤维在早期断裂,然后脱粘并随后沿着反应层(RL)和Ti-15-3合金基体之间的界面滑动。避免了由初始断裂的纤维和RL引起的基体开裂。通过有限元方法对循环载荷期间的这种断裂行为进行建模和分析,并考虑了基体的塑性变形。表征了当界面裂纹在广泛的界面剥离扩展后被偏转到RL中时,在初始裂纹和弯曲的裂纹尖端处基体中的塑性应变。基于低周疲劳条件下的疲劳损伤加总规律,讨论了界面脱胶长度和试验温度对基体开裂机理的影响。数值结果为避免和发生纤维增强钛复合材料中基体开裂的实验观察提供了理论依据。

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