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Modelling of the ductile-brittle fracture transition in steel structures with large shell elements: A numerical study

机译:大壳单元钢结构延性-脆性断裂转变的数值研究

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In this paper, the strain energy density (SED) criterion is proposed for predicting the ductile brittle fracture transition (DBFT) in ships and offshore structures. In finite element simulations, these structures are discretized by relatively large shell elements which precludes the modelling of the local stress and strain states in the vicinity of a crack. Critical values of the SED are determined based on local simulations of fracture for a range of temperatures and plane stress states. The local simulations of fracture are based on combined use of the Gurson model for ductile damage and fracture and the Richie-Knott-Rice (RKR) criterion for brittle fracture. After calibrating the Gurson model and the RKR criterion to existing experiments on offshore steel, critical values of the SED are found by analysing a representative plate element with a generic through-thickness crack using a refined solid element mesh. The proposed failure model is evaluated by simulating drop tests on steel-plated structures found in the literature. The present study indicates that the SED criterion is a useful concept for practical design of ships and offshore structures at sub-zero temperatures, but further assessment against experimental data is necessary to fully establish its credibility.
机译:本文提出了应变能密度(SED)准则,用于预测船舶和海上结构的韧性脆性断裂转变(DBFT)。在有限元模拟中,这些结构由相对较大的壳单元离散化,从而无法对裂缝附近的局部应力和应变状态进行建模。 SED的临界值是基于针对一定温度和平面应力状态的局部断裂模拟确定的。断裂的局部模拟是基于将Gurson模型用于延性破坏和断裂,以及将Richie-Knott-Rice(RKR)准则用于脆性断裂。在将Gurson模型和RKR标准校准到现有的海上钢上实验之后,通过使用精制的实体单元网格分析具有一般厚度贯穿裂纹的代表性板单元,可以找到SED的临界值。通过模拟文献中发现的镀钢结构的跌落试验,评估了建议的失效模型。本研究表明,SED标准对于低于零温度的船舶和近海结构的实际设计是一个有用的概念,但要完全建立其可信度,有必要对实验数据进行进一步评估。

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