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Influence of Assembly Gap Size on the Structure and Properties of SUS301L Stainless Steel Laser Welded Lap Joint

机译:组装间隙尺寸对SUS301L不锈钢激光焊接圈关节结构和性能的影响

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摘要

The microstructure and properties of laser welding lap joints with different assembly gap sizes are experimentally investigated. The laser weld joint is composed of γ-austenite and δ-ferrite, and the strip ferrite phase is mainly distributed at the austenite grain boundary. The weld metal presents the austenitic-ferritic (AF) solidification mode. When there is a gap between the two plates, a triangular region composed of similar equiaxed crystals can be found, and the size of the cellular crystals in this region decreases significantly. When the assembly gap size increases from 0.1 mm to 0.4 mm, the weld penetration state of the joint changes from full penetration to semi-penetration, and the surface collapse increases. The excessive size of the gap leads to a decrease in the tensile-shear force and fatigue strength of laser welded joints. In order to ensure that the surface morphology and properties of the welded joint meet the quality standard and requirement, the assembly gap should be less than 0.1mm.
机译:采用不同装配间隙尺寸的激光焊接圈接头的微观结构和性能进行了实验研究。激光焊接接头由γ-奥氏体和δ-铁素体组成,条形铁氧体相主要分布在奥氏体晶界处。焊接金属呈现奥氏体 - 铁素体(AF)凝固模式。当两个板之间存在间隙时,可以找到由类似等轴晶体组成的三角形区域,并且该区域中的细胞晶体的尺寸显着降低。当组装间隙尺寸从0.1mm增加到0.4mm时,关节的焊接穿透状态从完全渗透到半渗透,并且表面塌陷增加。间隙的过度尺寸导致激光焊接接头的拉伸剪切力和疲劳强度的减小。为了确保焊接接头的表面形态和性质符合质量标准和要求,组装间隙应小于0.1mm。

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