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Recent developments in steel friction stir welding : Project HILDA

机译:钢制搅拌摩擦焊的最新发展:HILDA项目

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摘要

Friction stir welding of steel presents an array of advantages across many industrial sectors compared to conventional fusion welding techniques. Preliminary studies have identified many positive effects on the properties of welded steel components. However, the fundamental knowledge of the process in relation to structural steel remains relatively limited, hence industrial uptake has been essentially non-existent to this date. The European-funded project HILDA, the first of its kind in terms of breadth and depth, is concerned with enhancing the understanding of the process on low alloy steel, establishing its limits in terms of the two more significant parameters which can be directly controlled, tool traverse and rotational speed, thus improving its techno-economic competitiveness to fusion welding. A detailed study investigated the effect of process parameters on the evolved microstructure. In parallel, a full programme of mechanical testing was undertaken to generate data on hardness, impact toughness and fatigue. From this, it has been established that friction stir welding of steel produces high integrity joints that exhibit excellent fatigue properties. From a simulation perspective, a local microstructural numerical model has been developed to predict the microstructural evolution within the weld zone during friction stir welding of low alloy steel. This model concentrates on predicting grain size evolution due to dynamic recrystallization with respect to tool traverse and rotational speed. Furthermore, a computational efficient local-global numerical model capable of predicting the thermal transients, stir and heat affected zone, residual stresses and distortion produced by friction stir welding of DH36 plates is presented.
机译:与传统的熔焊技术相比,钢的搅拌摩擦焊在许多工业领域均具有一系列优势。初步研究已经确定了对焊接钢部件性能的许多积极影响。然而,有关结构钢的工艺的基本知识仍然相对有限,因此迄今为止,工业上基本上不存在工业吸收。由欧洲资助的HILDA项目是广度和深度方面的同类项目中的第一个,它致力于增进对低合金钢工艺的了解,并根据可以直接控制的两个更重要的参数确定其极限,刀具的横向移动和旋转速度,从而提高了其对熔焊的技术经济竞争力。一项详细的研究调查了工艺参数对演化的微观结构的影响。同时,进行了完整的机械测试程序,以生成有关硬度,冲击韧性和疲劳度的数据。由此可以确定,钢的摩擦搅拌焊接产生了具有优良疲劳性能的高完整性接头。从模拟的角度来看,已经开发了局部微结构数值模型来预测低合金钢的摩擦搅拌焊接过程中焊接区内的微结构演变。该模型专注于预测由于刀具移动和旋转速度而引起的动态再结晶引起的晶粒尺寸演变。此外,提出了一种计算有效的局部-全局数值模型,该模型能够预测DH36板的摩擦搅拌焊接产生的热瞬态,搅拌和热影响区,残余应力和变形。

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