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Mechanical and electrochemical properties of multiple-layer diode laser cladding of 316L stainless steel

机译:316L不锈钢多层二极管激光熔覆的力学和电化学性能

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摘要

In the present investigation, a detailed mechanical and electrochemical properties of multiple-layer laser clad 316L stainless steel (from the powders produced by gas atomized route) has been carried out. Multiple-layer laser cladding of 316L stainless steel has been conducted using a diode laser. The mechanical property (rmcrohardness) of the fabricated product has been evaluated using a microhardness testing machine and correlated with the process parameters. The electrochemical property, mainly pitting corrosion resistance of the fabricated layer corresponding to maximum microhardness (in a 3.56% NaCl solution) has been evaluated using standard potentiodynamic polarization testing. The microhardness of the laser assisted fabricated layers was found to vary from 170 to 278 VHN, increased with decrease in applied power density and increase in scan speed and was higher than that of conventionally processed 316L (155 VHN). The superior microhardness value is attributed to grain refinement associated with laser melting and rapid solidification. The critical potential to pit formation (E-PP1) was measured to be 550 mV saturated calomel electrode (SCE) and superior to the conventionally processed 316L stainless steel (445 mV (SCE)). (c) 2005 Elsevier B.V. All rights reserved.
机译:在本研究中,已经对多层激光熔覆316L不锈钢进行了详细的机械和电化学性能研究(从通过气体雾化途径产生的粉末中得出)。已经使用二极管激光器进行了316L不锈钢的多层激光熔覆。已使用显微硬度测试机评估了制成品的机械性能(显微硬度),并将其与工艺参数相关联。电化学性能,主要是加工层对应于最大显微硬度(在3.56%NaCl溶液中)的抗点蚀性能,已使用标准的电位极化测试进行了评估。发现激光辅助加工层的显微硬度在170至278 VHN之间变化,随施加功率密度的降低和扫描速度的增加而提高,并且高于常规加工的316L(155 VHN)。优异的显微硬度值归因于与激光熔化和快速凝固相关的晶粒细化。经测量,形成凹坑的临界电势(E-PP1)为550 mV饱和甘汞电极(SCE),优于常规加工的316L不锈钢(445 mV(SCE))。 (c)2005 Elsevier B.V.保留所有权利。

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