首页> 外文期刊>Journal of Materials Processing Technology >Effect of interlayer thickness on the microstructure and strength of WC-Co/Invar/316L steel joints prepared by fibre laser welding
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Effect of interlayer thickness on the microstructure and strength of WC-Co/Invar/316L steel joints prepared by fibre laser welding

机译:层间厚度对纤维激光焊接制备的WC-CO / INVAR / 316L钢结构微观结构和强度的影响

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摘要

Increasing the thickness of the Invar (Ni42Fe50.9C0.6Mn3.5Nb3) interlayer from 1 to 1.5 mm resulted in a continuous metallurgical bonding, free of voids and oxide films. Invar as a pre-placed buffer also led to higher bending strength because of the stress relaxation. When the thickness was increased to 2 mm, the porosity in the fusion zone increased and cracks developed near the fusion boundary on the WC-Co side, lowering the strength. The fusion boundary, heat affected zone and the fusion zone on the WC-Co side were susceptible to cracking. Transmission electron microscopy revealed high densities of dislocations. Energy dispersive spectroscopy suggested that long-range solute diffusion occurred inside the WC grains and at the WC/Fe (Ni)/WC interfaces.
机译:增加Invar(Ni42Fe50.9c0.6mn3.5nb3)中间层的厚度为1-1.5mm,导致连续冶金键合,不含空隙和氧化膜。 由于压力松弛,作为预先放置的缓冲器也导致更高的弯曲强度。 当厚度增加到2mm时,融合区中的孔隙率增加和裂缝在WC-CO侧的融合边界附近产生,降低强度。 WC-Co侧的熔融边界,热影响区域和融合区易于破裂。 透射电子显微镜显示出高密度的脱位。 能量分散光谱表明,在WC颗粒和WC / Fe(Ni)/ WC接口中发生远程溶质扩散。

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