首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effect of Thermal Spray on the Microstructure and Adhesive Strength of High-Velocity Oxy-Fuel-S prayed Ni-Cr Coatings on 9Cr-lMo Steel
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Effect of Thermal Spray on the Microstructure and Adhesive Strength of High-Velocity Oxy-Fuel-S prayed Ni-Cr Coatings on 9Cr-lMo Steel

机译:热喷涂对9Cr-1Mo钢上高速氧-燃料-S祈祷Ni-Cr涂层的组织和粘合强度的影响

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Coatings of 80Ni-20Cr and 50Ni-50Cr on a 9Cr-lMo steel substrate were produced by high-velocity oxy-fuel (HVOF) spraying to protect the steel against steam oxidation in ultrasupercritical (USC) boilers. The oxidation studies on the coated specimens showed good protection against the scale growth on the steel substrate. Both the 80Ni-20Cr and 50Ni-50Cr coatings formed a thin protective oxide film on the coating surface. The 80Ni-20Cr coating showed Fe diffusion from the substrate to the coating and nickel diffusion from the coating to the substrate during the oxidation process. In the case of 50Ni-50Cr coatings, the diffusion process was reduced, but a continuous layer of chromium carbide was observed at the coating/substrate interface during the oxidation. The adhesive/cohesive strength of these coatings was evaluated on aged specimens at 750 deg C by using a simple tensile test. The results of the as-coated 80Ni-20Cr specimens showed an adhesive-strength value of 68 MPa. On extended aging, the strength of the coating increased beyond the detection limit of the resin. The nickel diffusion from the coating to the substrate and the iron diffusion from the substrate to the coating caused the increased adhesive strength. In the case of 50Ni-50Cr, the as-coated specimens showed an average adhesive strength of 76 MPa and showed a decreasing trend on the aged specimens. The formation of chromium carbide at the interface caused inferior values in the adhesive/cohesive strength of the 50Ni-50Cr coatings. The chromium carbide formed on the coating/substrate interface was identified as M_(23)C_6-type carbide.
机译:通过高速氧燃料(HVOF)喷涂在9Cr-1Mo钢基材上制备80Ni-20Cr和50Ni-50Cr涂层,以保护钢免于超超临界(USC)锅炉的蒸汽氧化。对涂层样品的氧化研究显示出良好的保护作用,以防止在钢基材上结垢。 80Ni-20Cr和50Ni-50Cr涂层均在涂层表面形成了一层保护氧化膜。 80Ni-20Cr涂层在氧化过程中显示出Fe从基体扩散到涂层以及Ni从涂层扩散到基体。在50Ni-50Cr涂层的情况下,扩散过程减少了,但是在氧化过程中在涂层/基体界面处观察到了连续的碳化铬层。通过使用简单的拉伸试验,在750℃的老化试样上评估了这些涂层的粘合/内聚强度。涂层后的80Ni-20Cr试样的结果显示出68 MPa的粘合强度值。随着时间的延长,涂层的强度增加到超过树脂的检测极限。镍从涂层向基材的扩散以及铁从基材向涂层的扩散引起增加的粘合强度。在50Ni-50Cr的情况下,镀层试样的平均粘合强度为76 MPa,并且在时效试样上呈下降趋势。界面处碳化铬的形成导致50Ni-50Cr涂层的粘合/内聚强度值降低。在涂层/基底界面上形成的碳化铬被鉴定为M_(23)C-6型碳化物。

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