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Effects of activating fluxes on the weld penetration and corrosion resistant property of laser welded joint of ferritic stainless steel

机译:活化剂对铁素体不锈钢激光焊接接头熔深和耐蚀性能的影响

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This study was based on the ferritic stainless steel SUS430. Under the parallel welding conditions, the critical penetration power values (CPPV) of 3mm steel plates with different surface-coating activating fluxes were tested. Results showed that, after coating with activating fluxes, such as ZrO_2, CaCO_3, CaF_2 and CaO, the CPPV could reduce 100~250 W, which indicating the increases of the weld penetrations (WP). Nevertheless, the variation range of WP with or without activating fluxes was less than 16.7%. Compared with single-component ones, a multi-component activating flux composed of 50% ZrO_2, 12.09% CaCO_3, 10.43% CaO, and 27.49% MgO was testified to be much more efficient, the WP of which was about 2.3-fold of that without any activating fluxes. Furthermore, a FeCl_3 spot corrosion experiment was carried out with samples cut from weld zone to test the effects of different activating fluxes on the corrosion resistant (CR) property of the laser welded joints. It was found that all kinds of activating fluxes could improve the CR of the welded joints. And, it was interesting to find that the effect of the mixed activating fluxes was inferior to those single-component ones. Among all the activating fluxes, the single-component of CaCO_3 seemed to be the best in resisting corrosion. By means of Energy Dispersive Spectrometer (EDS) testing, it was found that the use of activating fluxes could effectively restrain the loss of Cr element of weld zone in the process of laser welding, thus greatly improving the CR of welded joints.
机译:这项研究基于铁素体不锈钢SUS430。在平行焊接条件下,测试了具有不同表面涂层活化通量的3mm钢板的临界穿透功率值(CPPV)。结果表明,用ZrO_2,CaCO_3,CaF_2和CaO等活化剂涂覆后,CPPV可降低100〜250 W,表明焊缝熔深(WP)增加。然而,有或没有活化通量的WP的变化范围小于16.7%。与单组分相比,由50%ZrO_2、12.09%CaCO_3、10.43%CaO和27.49%MgO组成的多组分活化通量被证明效率更高,其WP约为其的2.3倍。没有任何活化剂。此外,还对FeCl_3点腐蚀实验进行了试验,该实验是从焊接区切下的,以测试不同活化通量对激光焊接接头的耐腐蚀性(CR)的影响。发现各种活化剂都可以改善焊接接头的CR。并且,有趣的是发现混合活化通量的效果不如那些单组分通量的效果。在所有的活化剂中,CaCO_3的单组分似乎是最好的抗腐蚀剂。通过能量色散谱仪(EDS)测试发现,使用活化剂可以有效地抑制激光焊接过程中焊接区Cr元素的损失,从而大大提高了焊接接头的CR。

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