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Characteristics of multilayer laser cladding using powder mixture of Co based alloy and vanadium carbide

机译:Co基合金与碳化钒混合粉末的多层激光熔覆特性

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摘要

The powder mixture of Co based alloy (Stellite 6) and vanadium carbide (VC) in the range of 0-56 wt-%VC fraction with a constant chemical composition multilayer cladding (CCCMLC) and functionally gradient material multilayer cladding (FGMMLC) were deposited on stainless steel (SUS304) by a 2·4 kW CW CO2 laser and powder feeder. In the CCCMLC, the VC weight fractions at each layer are constant. In the FGMMLC, the VC weight fractions at each layer are varied by controlling the disc rotation speed of the powder feeder. To decrease crack sensitivity of the clad layer, influence of preheating temperature and VC weight fraction using the CCCMLC and FGMMLC on the crack sensitivity was investigated comparatively. As a result, in the FGMMLC with gradual increase in VC particles, clad at three subsequent layers shifts the critical amount of VC at which cracking appears to be the highest level, or it reduces the required preheating temperature, namely, the crack sensitivity of the clad layer using FGMMLC is lower than that using CCCMLC. On the other hand, the microstructure, Vickers hardness and wear resistance of the clad layer were investigated by an X-ray diffractometer, energy dispersion spectroscopy (EDS), scanning electron microscope (SEM), laser microscope, wear tester and hardness tester. Microstructures of the clad layer were classified into two types, hypoeutectic structure and hypereutectic structure. The wear resistance of clad layer made by CCCMLC and FGMMLC has been almost the same.
机译:沉积钴基合金(Stellite 6)和碳化钒(VC)的粉末混合物,VC含量在0-56 wt%的范围内,具有恒定的化学成分多层覆层(CCCMLC)和功能梯度材料多层覆层(FGMMLC)通过2·4 kW CW CO2激光和送粉器将其安装在不锈钢(SUS304)上。在CCCMLC中,每层的VC重量分数是恒定的。在FGMMLC中,通过控制粉末进料器的盘旋转速度来改变每层的VC重量分数。为了降低覆层的裂纹敏感性,比较研究了使用CCCMLC和FGMMLC预热温度和VC重量分数对裂纹敏感性的影响。结果,在VC颗粒逐渐增加的FGMMLC中,在随后的三个层中包覆的VC的临界量会发生变化,在该临界值下裂纹似乎是最高水平,或者会降低所需的预热温度,即,裂纹的敏感性使用FGMMLC的包层低于使用CCCMLC的包层。另一方面,通过X射线衍射仪,能量色散谱仪(EDS),扫描电子显微镜(SEM),激光显微镜,磨损测试仪和硬度测试仪研究了包覆层的显微组织,维氏硬度和耐磨性。包覆层的微观结构分为亚共晶结构和过共晶结构两种。 CCCMLC和FGMMLC制成的包覆层的耐磨性几乎相同。

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