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Fabrication of High Strength and Ductile Stainless Steel Fiber Felts by Sintering

机译:烧结制备高强度高韧性不锈钢纤维毡

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Stainless steel fiber felts are important porous stainless steel products for a variety of industry applications. A systematic study of the sintering of 28-A mu m stainless steel fibers has been conducted for the first time, assisted with synchrotron radiation experiments to understand the evolution of the sintered joints. The critical sintering conditions for the formation of bamboo-like grain structures in the fiber ligaments were identified. The evolution of the number density of the sintered joints and the average sintered neck radius during sintering was assessed based on synchrotron radiation experiments. The optimum sintering condition for the fabrication of high strength and ductile 28-A mu m-diameter stainless steel fiber felts was determined to be sintering at 1000A degrees C for 900 s. Sintering under this optimum condition increased the tensile strength of the as-sintered stainless steel fiber felts by 50% compared to conventional sintering (1200A degrees C for 7200 s), in addition to much reduced sintering cycle and energy consumption.
机译:不锈钢纤维毡是用于多种工业应用的重要的多孔不锈钢产品。首次对28-μm不锈钢纤维的烧结进行了系统的研究,并借助同步辐射实验了解了烧结接头的演变。确定了在纤维韧带中形成竹样晶粒结构的关键烧结条件。基于同步辐射实验,评估了烧结接头数量密度的变化和烧结过程中平均烧结颈半径。确定用于制造高强度和韧性28-μm直径的不锈钢纤维毡的最佳烧结条件是在1000A的温度下烧结900 s。在这种最佳条件下进行烧结,与传统的烧结工艺(1200A的温度,持续7200 s)相比,烧结后的不锈钢纤维毡的拉伸强度提高了50%,此外还大大缩短了烧结周期并降低了能耗。

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