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Effect of Adjusted Gas Nitriding Parameters on Microstructure and Wear Resistance of HVOF-Sprayed AISI 316L Coatings

机译:调整气体渗氮参数对HVOF喷涂AISI 316L涂层的组织和耐磨性的影响

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摘要

Gas nitriding is known as a convenient process to improve the wear resistance of steel components. A precipitation-free hardening by low-temperature processes is established to retain the good corrosion resistance of stainless steel. In cases of thermal spray coatings, the interstitial solvation is achieved without an additional surface activation step. The open porosity permits the penetration of the donator media and leads to a structural diffusion. An inhomogeneous diffusion enrichment occurs at the single spray particle edges within the coating’s microstructure. A decreasing diffusion depth is found with increasing surface distance. The present study investigates an adjusted process management for low-temperature gas nitriding of high velocity oxy-fuel-sprayed AISI 316L coatings. To maintain a homogeneous diffusion depth within the coating, a pressure modulation during the process is studied. Additionally, the use of cracked gas as donator is examined. The process management is designed without an additional surface activation step. Regardless of surface distance, microstructural investigations reveal a homogeneous diffusion depth by a reduced processing time. The constant hardening depth allows a reliable prediction of the coatings’ properties. An enhanced hardness and improved wear resistance is found in comparison with the as-sprayed coating condition.
机译:气体氮化被认为是提高钢部件耐磨性的便捷方法。建立了通过低温工艺的无沉淀硬化,以保持不锈钢的良好耐腐蚀性。在热喷涂的情况下,不需要额外的表面活化步骤就可以实现间隙溶剂化。敞开的孔隙度允许供体介质渗透并导致结构扩散。涂层微结构内的单个喷涂颗粒边缘发生不均匀的扩散富集。随着表面距离的增加,扩散深度减小。本研究调查了高速氧气喷涂的AISI 316L涂层的低温气体氮化处理的调整工艺管理。为了保持涂层内均匀的扩散深度,研究了该过程中的压力调节。另外,研究了使用裂解气作为供体的情况。设计过程管理时无需额外的表面激活步骤。无论表面距离如何,微结构研究都显示出减少的处理时间可实现均匀的扩散深度。恒定的硬化深度可以可靠地预测涂层的性能。与喷涂状态相比,发现硬度提高,耐磨性提高。

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