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Quantitative evaluation of the adhesion of metallic coatings using cylindrical substrate

机译:用圆柱形基底定量评价金属涂层的附着力

摘要

This paper introduces an effective interfacial fracture toughness test based on interface fracture mechanics theory. This testing method uses a circumferentially notched tensile (CNT) specimen, which is ideally suited for determining the interfacial fracture resistance of coatings. Unlike other interfacial fracture tests, this test is simple to prepare, requires minimum test setup and is easy to model. An interfacial pre-crack was generated between a nickel coating and mild steel cylindrical substrate to evaluate adhesion strength. In situ acoustic and SEM analyses were used to determine the crack initiation or the critical load of failure. The critical energy release rate, critical stress intensity factors and phase angle were determined using the J integral which was determined by applying the critical load to the finite element model. A detailed finite element analysis was carried out to study the effect of different interface pre-crack positions and mode mixity on energy release rate for different notch angles and elastic modulus ratios. The cracking resistance of the interface was characterised by the notch angle of CNT specimens. The analysis showed an increase in interfacial fracture toughness as phase angle increases and was significant when the phase angle was large. The combined results of computational and experimental analysis showed that any defect or stress concentration at the interface could significantly weaken the adhesion of coating.
机译:本文基于界面断裂力学理论,介绍了一种有效的界面断裂韧性试验方法。该测试方法使用周向缺口拉伸(CNT)样品,非常适合确定涂层的界面抗断裂性。与其他界面断裂测试不同,该测试易于准备,所需的测试设置最少且易于建模。在镍涂层和低碳钢圆柱形基材之间产生界面预裂纹,以评估粘合强度。使用原位声学和SEM分析来确定裂纹萌生或破坏的临界载荷。临界能量释放速率,临界应力强度因子和相角使用J积分确定,该积分是通过将临界载荷应用于有限元模型确定的。进行了详细的有限元分析,以研究不同界面开裂位置和模式混合对不同缺口角和弹性模量比对能量释放率的影响。界面的抗裂性由CNT样品的切口角表征。分析表明,随着相角的增加,界面断裂韧性增加,当相角大时,界面断裂韧性显着。计算分析和实验分析的综合结果表明,界面处的任何缺陷或应力集中都会显着削弱涂层的附着力。

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    Elambasseril J; Ibrahim R;

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  • 年度 2012
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