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NUMERICAL ANALYSIS OF THE EFFECT OF NONMETALLIC INCLUSIONS LOCATION IN CARBURIZED LAYER OF 16MnCr5 STEEL ON INITIATION OF FATIGUE CRACKING

机译:16MnCr5钢渗碳层中非金属夹杂物定位效果的数值分析对疲劳开裂的启动

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摘要

This paper presents the results of a numerical analysis of the effect of the position of non-metallic inclusions in a hardened top layer in 16MnCr5 steel on the mechanism of fatigue destruction. An analysis of a hardened layer formed by thermo-chemical treatment using FineCarb® technology was conducted. Non-metallic inclusions formed by deoxidation of steel were studied; they are usually made of calcium and aluminum. Four positions of inclusions in the hardened layer were tested: under the layer, in the middle part of the layer, under the surface and on the border of two sublayers. The results of the FEM analysis were treated as a qualitative analysis. A map of plastic strains around the inclusion under study was observed. The appearance of plastic strains in the area under analysis signaled the initiation of a fatigue crack. It was observed that the mechanism of destruction depends largely on the distribution of stress in the top layer and on the place where the inclusion is anchored in the layer. Inclusions under the layer were found to be the main cause of the loss of the structural continuity, which explains the most frequent cases of the initiation of fatigue cracks.
机译:本文介绍了在16MnCr5钢中淬火顶层在疲劳破坏机制中的淬火顶层中的非金属夹杂物位置的数值分析的结果。进行了使用FineCarb®技术进行的热化学处理形成的硬化层的分析。研究了通过钢脱氧形成的非金属夹杂物;它们通常由钙和铝制成。测试硬化层中夹杂物的四个位置:在层的中间部分下方,在表面和两个子层的边界下。有组织分析的结果被视为定性分析。观察到纳入研究周围的塑料株的地图。在分析区域中的塑性菌株的外观表示疲劳裂纹的启动。观察到破坏机制在很大程度上取决于顶层中应力的分布以及夹杂物锚固在层中的地方。发现层下的夹杂物是结构连续性丧失的主要原因,这解释了疲劳裂缝引发的最常见情况。

著录项

  • 作者

    Sebastian Lipa;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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