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首页> 外文期刊>Proceedings of the Society for Experimental Mechanics >Influence of the Flame Straightening Process on Microstructural, Mechanical and Fracture Properties of S235 JR, S460 ML and S690 QL Structural Steels
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Influence of the Flame Straightening Process on Microstructural, Mechanical and Fracture Properties of S235 JR, S460 ML and S690 QL Structural Steels

机译:火焰矫正过程的影响微观结构、机械和骨折S235 JR的性质,S460毫升和S690 QL钢结构

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摘要

The flame straightening of steel components is based on heating a local region of the part by means of a torch in order to induce a permanent deformation through a field of residual stresses. Although this is a very common practice, it is not devoid of serious drawbacks. In this paper, the influence of the flame bending procedure on the microstructure of three very different structural steels (S235 JR, S460 ML and S690 QL, respectively), widely used for the construction of metallic structures, is analysed. The consequences of the heat treatment on the mechanical and fracture properties were characterised through micro-hardness Vickers and Charpy impact tests; in addition, some elastic-plastic fracture tests were performed on precracked Charpy specimens manufactured with the S235 JR steel. The relationship between the microstructural features and the material mechanical and fracture behaviour was studied in depth in all cases, correlating the changes induced by the flame heat treatment on the microstructure with the macroscopic mechanical and fracture response. For a proper understanding of the microstructural consequences of this straightening heat treatment, it was necessary to develop a Finite Element numerical model. Based on the experimental results, this study has revealed that the consequences of the flame straightening on the microstructure, mechanical or fracture behaviour strongly depend on the nature of the material; for this reason, it is not possible to establish general recommendations. Nevertheless, the paper proposes a series of guidelines for good practice for steels similar to those characterised here.
机译:钢组件的火焰矫正基于局部区域加热的部分的火炬,以产生一个永久的通过残余应力的变形。虽然这是很常见的,它是不缺乏严重缺点。火焰弯曲过程的影响三种非常不同的微观结构钢结构(小S235 S460毫升S690 QL,分别),广泛用于建筑金属结构的分析。热处理的后果机械和断裂性能通过硬度维氏和特征夏比冲击试验;弹塑性断裂进行测试precracked夏比标本与制造S235小钢。微观结构特性和材料机械和断裂行为进行了研究深度在所有情况下,相关更改火焰热处理引起的微观结构与宏观的机械和断裂反应。微观结构的影响矫直热处理,它是必要的开发一个有限元数值模型。实验结果,本研究透露,火焰的后果矫直的微观结构、机械或断裂行为强烈依赖材料的性质;不可能建立建议。一系列良好的实践指南钢类似特征。

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