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Parameterization and Process Influence of Graphite Morphology in the Laser Cladding of Grey Cast Iron

机译:石墨形态在灰铸铁激光熔覆中的参数化和过程影响

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摘要

The existence of graphite affects the clad quality of cast iron; therefore, the thorough study of the graphite phase during the laser cladding of grey cast iron has important significance. Based on the analysis of the thermo-mechanical coupling characteristics and behavior rule of the graphite phase, the morphological parameters of graphite were extracted and depicted in this paper. Subsequently, the relationship between the process and graphite morphological parameters in the laser cladding procedure was analysed by double lap cladding experiment. Results indicated that four parameters were established to characterize the morphology of graphite: area percentage, A; average aspect ratio, (R) over bar, and tip characteristics, alpha((= 90 degrees)) and beta((90 degrees)). The A and the (R) over bar decreased with the increase of the specific energy, while the beta((90 degrees)) increased. The beta((90 degrees)) in the binding zone is greatly improved compared with that in the heat affected zone (HAZ), the A of graphite in the binding zone is much lower than that in the HAZ. Limited by the diffusion distance, the alloy elements only had effects on the residual graphite morphology in the bonding zone. The A of graphite increased with the increase of Si element, while the beta((90 degrees)) decreased. Meanwhile, the augmented contents of Ti and Cr elements promoted the formation of carbide; consequently, the A decreased while the beta((90 degrees)) increased. The (R) over bar of graphite in the binding region are ignored.
机译:石墨的存在影响铸铁的包层;因此,在灰铸铁的激光包层期间对石墨相的彻底研究具有重要意义。基于石墨阶段热机械耦合特性和行为规律的分析,本文提取并描绘了石墨的形态参数。随后,通过双圈包层实验分析了激光包层过程中的过程和石墨形态参数之间的关系。结果表明,建立了四个参数,以表征石墨的形态:面积百分比,a;平均纵横比,(r)和杆,尖端特征,α((& = 90度))和beta((& 90度))。随着特定能量的增加,A和(r)减小,而β((& 90度))增加。与热影响区(HAZ)中的结合区相比,结合区中的β((& 90度))大大提高,结合区中的石墨远低于HAZ中的石墨。由扩散距离限制,合金元素仅对粘合区中的残余石墨形态产生影响。随着Si元素的增加,石墨的A增加,而β((& 90度))降低。同时,Ti和Cr元素的增强含量促进了碳化物的形成;因此,在β((& 90度))增加时降低。忽略结合区域中石墨中石墨的(R)。

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