首页> 外文会议>3rd Pacific international conference on applications of lasers and optics 2008 (PICALO 2008) >STUDIES ON THE LASER SPOT WELDING OF STEEL/MAGNET DISSIMILIAR MATERIALS
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STUDIES ON THE LASER SPOT WELDING OF STEEL/MAGNET DISSIMILIAR MATERIALS

机译:钢/磁铁异种材料激光点焊研究

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摘要

The paper studies the laser spot welding of SPCC steel and NdFeB permanent magnet. Results show that during welding process the two metals quickly melt, mix and then solidify to form a weld that joins two specimens together. The hardness in the joint is not uniform: the heat affected zone (HAZ) has a lower hardness than NdFeB base metal; within the nugget, the region adjacent to the fusion line has the highest hardness while the middle part of nugget has the lowest hardness in the joint. Hot cracks are apt to occur at the interface between nugget and magnet base metal, whereat the cracks propagate and lead to joint failure during shear tests. The fracture is intergrannular and is a typical brittle fracture. To increase the joint strength and prolong the service life of welded components, it is necessary to take some metallurgical and technological measures to improve the bonding quality between nugget and magnet base metal.
机译:本文研究了SPCC钢和NdFeB永磁体的激光点焊。结果表明,在焊接过程中,两种金属迅速熔化,混合然后凝固,形成将两个试样连接在一起的焊缝。接头的硬度不均匀:热影响区(HAZ)的硬度低于NdFeB母材;在熔核中,与熔合线相邻的区域具有最高的硬度,而熔核的中部在接头中具有最低的硬度。熔核和磁体贱金属之间的界面容易发生热裂纹,裂纹在裂纹处扩展并在剪切测试过程中导致接头失效。骨折是粒间骨折,是典型的脆性骨折。为了提高接合强度并延长焊接部件的使用寿命,有必要采取一些冶金和技术措施来提高熔核与磁体母材之间的结合质量。

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