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Multi-scale hot working tool damage (X40CrMoV5-1) analysis in relation to the forging process

机译:与锻造过程有关的多尺度热作工具损坏(X40CrMoV5-1)分析

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摘要

During hot forming process, tools are exposed to severe and complex loads. As result, damages by oxidation and thermal and mechanical fatigue are generated which cause tool failure. The aim of this work is a multi-scale analysis of damaged hot forging tools. An expertise of main failures on industrial hot-forging die, made of hot-working die steel X40CrMoV5-1 is presented. Die was previously sectioned and examined after its service life. The measurements of micro-hardness depth profiles, SEM and optical observations of oxidized surfaces were achieved on the most loaded sections of the die. An analysis of residual stresses in damaged die was also performed in order to estimate and then predict the most solicited zones on the die, a simplified numerical approach was investigated. The cracks on the observed areas are caused by local elasto-plastic stress due to mechanical load. A good correlation between expertise and numerical results was established. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在热成型过程中,工具承受着巨大而复杂的载荷。结果,由于氧化而产生的损坏以及热和机械疲劳会导致工具故障。这项工作的目的是对损坏的热锻工具进行多尺度分析。介绍了由热加工模具钢X40CrMoV5-1制成的工业热锻模具主要故障的专业知识。模具在使用后已进行过切片和检查。显微硬度深度分布图的测量,SEM和氧化表面的光学观察是在模具的最大负载部分进行的。为了估计然后预测模具上最常拉拔的区域,还对受损模具中的残余应力进行了分析,研究了一种简化的数值方法。观察区域的裂纹是由于机械载荷引起的局部弹塑性应力引起的。建立了专业知识和数值结果之间的良好关联。 (C)2015 Elsevier Ltd.保留所有权利。

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