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Micro-Indentation based study on steel sheet degradation through forming and flattening : toward a predictive model to assess cold recyclability

机译:基于微压痕的钢板成形和压扁降解研究:建立评估冷再生能力的预测模型

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摘要

Sheet metal forming has always been an important sector of the metal industry thanks to work hardening, however complex set of deformation entails evolution of damage in the material through the forming stages. With an outlook to cold recycling of sheet metals, this paper focuses on experimental quantification of damage and degradation in load carrying capacity due to forming process. Assuming that cold recycling of sheet metals involves an intermediate flattening prior to secondary forming process, the adverse effects of flattening on material was also investigated. An industrial cold roll forming process was taken as case study. Experimental investigation using microhardness mapping on the cross-section of fold zones, in conjunction with 3D global-local FE modelling were the basis of through-thickness damage analysis. Taking advantage of strain-hardness correlation a new method was established to extrapolate hardness for ductile damage characterization. Investigation on sensitivity of the measured microhardness to crystallographic texture and sample surface preparation backed the experimental results. The results particularly outlined the progressive decrease in load carrying capacity of material after forming and after flattening. The possibility of a secondary manufacturing process is discussed.
机译:由于加工硬化,钣金成形一直是金属工业中的重要部门,但是复杂的变形集会导致整个成形阶段的材料损伤演变。展望钣金的冷再生,本文着重于对由于成形过程造成的破坏和承载能力降低进行实验量化。假设钣金的冷再生在二次成型工艺之前涉及中间压扁,则还研究了压扁对材料的不利影响。以工业冷轧成型工艺为例。在折叠区域的横截面上使用显微硬度映射进行的实验研究以及3D全局局部有限元建模是整个厚度损伤分析的基础。利用应变-硬度相关性,建立了一种新方法来推断硬度以进行延性损伤表征。对测得的显微硬度对晶体织构和样品表面制备的敏感性的研究支持了实验结果。结果特别概述了成型后和展平后材料的承载能力逐渐下降。讨论了二次制造过程的可能性。

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