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INFLUENCE OF PREHEATING TEMPERATURE ON MECHANICAL PROPERTIES OF LASER CLADDING LAYER

机译:预热温度对激光熔覆层力学性能的影响

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Physical and chemical changes always occur in the process of laser cladding, and the cladding quality is directly affected by processing parameters. This paper mainly focused on effects of temperature field of preheating substrate on the cladding quality. Laser cladding process has the following experimental parameters: laser power, powder feeding rate and rotational speed. Three types of cladding powders were used: Ni60A, Cr12MoV and WC-Co. Experiments were conducted by using different substrate preheating temperatures and cladding materials, which affect the quality of cladding layers. Comparison and analysis of the three types of powders showed that under different preheating temperatures, the cladding layer is mainly affected by tensile stress. Besides that, the residual stress of cladding layer is always higher than that of heat affected zone and substrates. The best preheating temperature to test the residual stress for three types of powders are: 600°C, 400°C and 300°C. For all three types of powders under different preheating temperatures, cladding layer and substrate have compact and uniform structures. However, when substrate is overheated the cracking will occur in the substrate. Under different preheating temperatures, the Vickers hardness is higher than that of heat affected zone and the substrate for all three materials. The preheating temperatures for getting the maximum hardness are respectively 300°C, 600°C and 400°C.
机译:物理和化学变化始终发生在激光包层的过程中,并且包层质量通过处理参数直接影响。本文主要集中于预热基材温度场对包层质量的影响。激光熔覆工艺具有以下实验参数:激光功率,粉末进给速率和转速。使用了三种类型的包层粉末:Ni60a,Cr12mov和Wc-Co。通过使用不同的基材预热温度和包层材料进行实验,影响覆层层的质量。对三种类型的粉末的比较和分析表明,在不同的预热温度下,包层主要受拉应力的影响。除此之外,包层层的残余应力总是高于热影响区域和基材的残余应力。测试三种粉末残留应力的最佳预热温度是:600℃,400℃和300℃。对于不同预热温度下的所有三种粉末,包层和基材具有紧凑且均匀的结构。然而,当衬底过热时,裂缝将发生在基材中。在不同的预热温度下,维氏硬度高于所有三种材料的热影响区和基材的维氏硬度。用于获得最大硬度的预热温度分别为300°C,600°C和400°C。

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