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Experimental and numerical analysis of residual stresses and strains induced during cold bending of thick steel plates

机译:厚钢板冷弯过程中残余应力和应变的实验和数值分析

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The paper presents an experimental and numerical analysis of the residual stresses and strains induced during the cold bending of thick steel plates. Cold bending technique is widely used in the shipbuilding and offshore industry, and thus it is important to know about the changes in the material characteristics induced during the metal fabrication process. For this purpose, firstly, three-point cold bending experiments are conducted with a relatively small indenter on the specimens cut from a thick steel plate (54 mm), and afterwards, tension tests are carried out on tensile coupons cut from the already bent specimens. Thus, the mechanical properties (engineering stress-strain curve) of the tensile coupons cut from the loaded and unloaded locations are compared so that to determine the residual stresses and strains resulting from the bending process. A numerical simulation is performed with the explicit LS-DYNA finite element solver to replicate the experimentally determined residual stresses and strains. The simulation provides information of the distribution of the residual stresses and strains along the span and through the thickness of the specimens. It is found that the local deformation underneath the indenter harms severely the structural integrity, producing large residual stresses and strains during the bending process. This work illustrates the potential use of finite element analysis to evaluate the residual stresses and strains in metal fabrication processes.
机译:本文对厚钢板冷弯过程中产生的残余应力和应变进行了实验和数值分析。冷弯技术已广泛应用于造船和海上工业,因此了解金属制造过程中引起的材料特性变化非常重要。为此,首先,用一个相对较小的压头对从厚钢板(54毫米)上切下的试样进行三点冷弯试验,然后对从已弯曲的试样上切下的拉伸试样进行拉伸试验。 。因此,比较了从加载位置和卸载位置切下的拉伸试样的机械性能(工程应力-应变曲线),以便确定弯曲过程中产生的残余应力和应变。使用显式LS-DYNA有限元求解器进行数值模拟,以复制实验确定的残余应力和应变。模拟提供了沿跨度和整个试样厚度的残余应力和应变分布的信息。发现压头下方的局部变形严重损害了结构的完整性,在弯曲过程中产生了很大的残余应力和应变。这项工作说明了有限元分析在评估金属制造过程中残余应力和应变方面的潜在用途。

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