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Experimental and numerical investigation of material failure criterion with high-strength hull steel under biaxial stress

机译:高强度船体钢双轴应力下材料破坏准则的试验与数值研究

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摘要

The loads, stress and strain state of the ship structures are quite complicated under the condition of collision and grounding. The failure criteria which are commonly used in numerical simulations of ship collision have limitations in evaluating the failure characteristics of hull steel under complicated stress. Based on the shell theory, complex stress in plate is simplified as plane stress. In experiments, six different shapes of specimens were designed to study the failure characteristics of high-strength hull steel under biaxial stress. The specimens were pressed with a hemispherical indenter until destruction under quasi-static loading. The displacement of specimens' midpoint and loading force were recorded. The simulation models which considering the mesh size sensitivity and the failure criteria combined with the damage evolution model have been studied. A new reasonable formula is proposed to calculate the average failure strain of different mesh size. With the application of the average failure strain, a bilinear damage evolution model for high strength hull steel in biaxial tension stress is established. Based on a plastic instable criterion, a modified BWH (m-BWH) criterion is proposed. The comparison of Constant strain (CS) criterion combined with linear damage evolution model, the BWH and m-BWH failure criteria which are combined with the bilinear damage evolution model has been performed in the simulations by Abaqus user material subroutine (VUMAT). Although the BWH criterion is more precise than the constant strain criterion in comparison with the experiment results, its errors will increase with rising of strain ratio. The m-BWH criterion improves the accuracy of the simulations when the strain ratio is high.
机译:在碰撞和着陆的情况下,船舶结构的载荷,应力和应变状态相当复杂。船舶碰撞数值模拟中常用的失效准则在评估船体钢在复杂应力下的失效特性时具有局限性。基于壳理论,将板中的复杂应力简化为平面应力。在实验中,设计了六种不同形状的试样以研究高强度船体钢在双轴应力下的破坏特性。用半球形压头压试样,直到在准静态载荷下破坏。记录试样的中点位移和加载力。研究了考虑网格尺寸敏感性和破坏准则的仿真模型,并结合损伤演化模型进行了研究。提出了一个新的合理公式来计算不同网格尺寸的平均破坏应变。利用平均破坏应变,建立了高强度船体钢双轴拉伸应力的双线性损伤演化模型。基于塑性不稳定准则,提出了一种改进的BWH(m-BWH)准则。在Abaqus用户材料子例程(VUMAT)的仿真中,进行了将恒定应变(CS)准则与线性损伤演化模型,BWH和m-BWH失效准则与双线性损伤演化模型相结合的比较。尽管与实验结果相比,BWH准则比恒定应变准则更为精确,但其误差会随着应变比的增加而增加。当应变比高时,m-BWH准则可提高模拟的准确性。

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  • 来源
    《Ocean Engineering》 |2018年第1期|24-41|共18页
  • 作者单位

    Shanghai Jiao Tong Univ, State Key Lab Ocean Engn, 800 Dongchuan Rd, Shanghai 200240, Peoples R China;

    China Ship Dev & Design Ctr, 2931 Huaning Rd, Shanghai 201108, Peoples R China;

    Shanghai Jiao Tong Univ, State Key Lab Ocean Engn, 800 Dongchuan Rd, Shanghai 200240, Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Failure criterion; Ship collision; Biaxial stress; Quasi-static;

    机译:破坏准则;船舶碰撞;双轴应力;准静态;

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