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首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Powder Type and Compaction Pressure on the Density, Hardness and Oxidation Resistance of Sintered and Steam-treated Steels
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Effect of Powder Type and Compaction Pressure on the Density, Hardness and Oxidation Resistance of Sintered and Steam-treated Steels

机译:粉末类型和压实压力对烧结和蒸汽处理钢的密度,硬度和抗氧化性的影响

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摘要

Two types of Hoganas iron powders—sponge (NC), and highly compressible (SC) were investigated. These specimens were compacted with a pressure of 300, 400, 500, 600, and 700 MPa, before sintering in a production belt-type furnace. Steam treatment of the specimens was at 570 °C for 30 min. The sintered density and as-sintered hardness increase with increasing compaction pressure, and are significantly influenced by the powder structural characteristics. During steam treatment the type of powder and compaction pressure have an important influence on the extent of pore closure and weight gain. The maximum hardness was obtained for the components compacted at a pressure of 500 MPa for both groups of iron powders. Surface pore closure and oxidation resistance of the steam-treated components are improved with increasing compaction pressure.
机译:研究了两种Hoganas铁粉-海绵(NC)和高可压缩性(SC)。在生产带式炉中烧结之前,将这些样品在300、400、500、600和700 MPa的压力下压实。样品的蒸汽处理在570°C下进行30分钟。烧结密度和烧结硬度随压制压力的增加而增加,并受粉末结构特性的显着影响。在蒸汽处理过程中,粉末的类型和压实压力对孔的封闭程度和重量增加有重要影响。两组铁粉均在500 MPa的压力下压实的部件获得了最大硬度。随着压实压力的增加,蒸汽处理过的组分的表面孔封闭性和抗氧化性得到改善。

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