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首页> 外文期刊>Materialpruefung: Werkstoffe und Bauteile, Forschung Prufung Anwendung >Influence of variation of energy per unit length on mechanical-technological properties of ultra-high-strength steel 22MnB5 in the laser beam welding process
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Influence of variation of energy per unit length on mechanical-technological properties of ultra-high-strength steel 22MnB5 in the laser beam welding process

机译:每单位长度的变化对激光束焊接过程超高强度钢22MnB5机械技术性能的影响

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摘要

Ultra-high strength steel 22MnB5 with 1.5 mm thickness was laser beam butt welded under varied welding parameters such as focal diameter, welding speed and beam power. The ultra-high strength material is softened by the laser beam welding process due to tempering in the heat-affected zone, which causes a loss in tensile strength and hardness compared to the base material. The influence of softening on the mechanical-technological properties was investigated. Hardness profiles of welded specimens were examined and tensile tests with digital image correlation were carried out. The digital image correlation showed the area in which the strain was concentrated as well as the location of fraction initiation. The microstructure was examined using micrographs and scanning electron microscopy images; the composition of the structure was subjected to X-ray diffraction. Dilatometry was used to map the individual areas of the heat-affected zone with respect to temperature and hardness. An increase in the energy per unit length influenced the width of the heat-affected zone and thus, the width of the softened zone. It was not possible to exert influence on the depth of hardness drop. The tensile strength, however, increased due to the narrower width of the softened zone.
机译:超高强度钢22MnB5,厚度为1.5毫米,在各种焊接参数下焊接焊接圆弧直径,焊接速度和梁功率。由于热影响区域中的回火,通过激光束焊接过程软化超高强度材料,这导致与基材相比的拉伸强度和硬度的损失。研究了软化对机械技术性质的影响。检查了焊接标本的硬度谱,并进行了具有数字图像相关的拉伸试验。数字图像相关显示菌株浓缩的区域以及馏分开始的位置。使用显微照片和扫描电子显微镜图像检查微观结构;对结构的组成进行X射线衍射。膨胀测定用于映射热影响区的各个区域相对于温度和硬度。每单位长度的能量的增加影响了热影响区域的宽度,从而影响了软化区的宽度。不可能对硬度下降的深度施加影响。然而,由于软化区的宽度较窄,拉伸强度增加。

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