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Dugdale cohesive zone modeling to evaluate J integral at the interface of strength mismatched steels: A simplified numerical approach

机译:Dugdale粘性区建模,用于评估强度不匹配的钢界面处的J积分:一种简化的数值方法

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When the crack tip in ductile parent body reaches near the interface of another elastically matched but strength mismatched ductile body, the plasticity or yield zone at the tip spreads to interface body which triggers the effect of strength mismatch between the bodies over the tip by way of plasticity induced load transfer. The interface effect is best quantified by the value of J integral, J_(interface), obtained over a path around the interface of the bodies in the yield zone. The paper presents finite element analysis of minute yield zone, formed at Mode I crack tip in linear elastic regime, across a strength mismatched interface to determine J_(interface). The yield zone, treated as Dugdale's cohesive zone, is isolated from the bimetallic body domain and modeled alone under the action of cohesive stresses. Effect of far field load at the interface is obtained separately. Such an uncomplicated approach is first tested successfully over theoretical results of cohesive zone across a thin interface of weak ASTM 4340 alloy and strong MDN 250 maraging steels under monotonic load. Subsequently, it is verified vis-a-vis experimental results of cyclic cohesive zone developed across the weld interface in bimetallic compact tension specimen by subjecting the crack in alloy steel near the interface of ultra strong weld between the stated steels to high cycle fatigue.
机译:当延性母体中的裂纹尖端到达另一个弹性匹配但强度不匹配的延性体的界面附近时,尖端处的可塑性或屈服区会扩展到界面体,从而通过以下方式触发尖端之间的强度失配效应:可塑性引起的载荷传递。界面效果最好通过J积分的值J_(interface)来量化,该值是通过屈服区中的主体界面周围的路径获得的。本文介绍了在强度不匹配的界面上通过强度不匹配界面在线性弹性状态下在模式I裂纹尖端处形成的微小屈服区的有限元分析。屈服区被视为Dugdale的内聚区,与双金属体域隔离,并在内聚应力的作用下单独建模。接口处远场负载的影响是单独获得的。这种简单的方法首先在单调载荷下,通过弱ASTM 4340合金和强MDN 250马氏体时效钢的薄界面上的粘结带理论结果成功进行了测试。随后,通过使所述钢之间的超强焊接界面附近的合金钢裂纹经受高循环疲劳,来验证双金属紧凑拉伸试样中跨焊接界面形成的循环粘结区的实验结果。

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