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Effect of high-velocity oxygen-fuel thermal spraying on the physical and mechanical properties of type 316 stainless steel

机译:高速氧气-燃料热喷涂对316不锈钢的物理和机械性能的影响

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摘要

Data on the microstructural, physical, and mechanical characteristics of high-velocity oxygen-fuel (HVOF)-sprayed type 316 stainless steel coatings are presented and compared with properties of wrought 316 stainless steel. Coatings were prepared at three different spray particle velocities; coating characteristics are presented as a function of velocity. The coatings had relatively low porosity and oxide contents and were significantly harder than annealed, wrought 316 stainless steel. The hardness difference is primarily attributed to high dislocation densities resulting from peening imparted by high-velocity spray particles. The coating hardness increased with increasing spray particle velocity, reflecting increased peening effects. The elastic modulus of the coatings was essentially identical to wrought material. The mean coefficient of thermal expansion of as-sprayed coatings was lower than wrought material, but the expansion of annealed coatings matched the wrought behavior.
机译:给出了喷涂高速氧气-燃料(HVOF)的316不锈钢涂层的微观结构,物理和机械特性的数据,并将其与锻制316不锈钢的性能进行了比较。以三种不同的喷雾颗粒速度制备涂料;涂层特性表示为速度的函数。该涂层的孔隙率和氧化物含量相对较低,并且比经过退火的锻制316不锈钢坚硬得多。硬度差异主要归因于由高速喷雾颗粒赋予的喷丸作用而导致的高位错密度。涂层硬度随着喷涂颗粒速度的增加而增加,反映出喷丸效果的增强。涂层的弹性模量与锻造材料基本相同。喷涂后涂层的平均热膨胀系数低于锻造材料,但退火涂层的膨胀与锻造行为相符。

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