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Mechanical and electro-chemical properties of laser surface alloyed AISI 304 stainless steel with WC+Ni+NiCr

机译:激光表面的机械和电化学性能合金化AISI 304不锈钢与WC + Ni + NiCr

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In the present study, a detailed evaluation of wear and corrosion resistance properties of laser surface alloyed of AISI 304 stainless steel with WC+Ni+NiCr (in the ratio of 70:15:15) has been undertaken. Laser processing has been carried out using a 5 kW continuous wave (CW) Nd:YAG laser (at a beam diameter of 3 mm) by surface melting and simultaneous deposition of precursor powder mixture in the melt zone (at a flow rate of 10 mg/s) and using Ar shroud at a gas flow rate of 5 l/min. Followed by laser processing, a detailed evaluation of fretting wear behavior has been conducted against WC surface. Finally, the corrosion property is measured using a potentiodynamic polarization testing unit in a 3.56 wt.% NaCl solution. The wear resistance property is significantly improved due to laser surface alloying which is attributed to the improvement in surface microhardness to 1350 VHN as compared to 220 VHN of as-received -stainless steel substrate. The mechanism of wear is established. The pitting corrosion resistance property is also improved due to the presence of Ni and Cr in solution and homogenization of microstructure due to laser processing.
机译:在本研究中,已经进行了与WC + Ni + NiCr(比率为70:15:15)的AISI 304不锈钢的激光表面的磨损和耐腐蚀性特性的详细评估。通过表面熔化和熔融区中的前体粉末混合物同时沉积激光加工(CW)Nd:YAG激光(光束直径为3mm),并同时沉积前体粉末混合物(以10毫克的流速同时沉积/ s)和使用Ar护罩以5升/分钟的气体流速。其次是激光加工,对磨损磨损行为的详细评估进行了针对WC表面进行的。最后,使用3.56重量%的溶胀性偏振试验单元测量腐蚀性。%NaCl溶液。由于激光表面合金化,耐磨性具有显着改善,其归因于表面显微硬度至1350VHn的改善,与220 VHN的接收的最高钢基板相比。建立磨损机制。由于在溶液中存在Ni和Cr,并且由于激光加工引起的微观结构的均匀化,也改善了蚀腐蚀性性能。

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