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Stainless steel matrix composites reinforced with AlCr{sub}2

机译:使用ALCR {SUB}增强的不锈钢基质复合材料2

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The effect of AlCr{sub}2 intermetallic addition to austenitic stainless steel powder on the mechanical properties and corrosion resistance of sintered specimens has been investigated. It has been recognised that loss of chromium at the grainboundaries of sintered stainless steel decreases its corrosion resistance. With the objective of decreasing this effect and to keep a stable passivity, the intermetallic AlCr{sub}2 in the form of powder was mixed with AISI 3 16L in different proportions.Samples of these materials were compacted at 700 MPa and sintered at 1120°C for 30 minutes in dissociated ammonia and vacuum. The mechanical properties, the corrosion resistance and the microstructure were studied. Composite materials sintered indissociated ammonia achieve higher mechanical properties than sintered in vacuum. Studies realised by SEM suggest that metal matrix composites present an increase in the content of chromium, but in the grain boundaries exhibit a transient liquid phaseproduced by diffusion of aluminium from AlCr{sub}2,
机译:研究了Alcr {亚} 2金属间质量对奥氏体不锈钢粉末的影响,对烧结标本的机械性能和耐腐蚀性进行了研究。已经认识到,烧结不锈钢粒花园的铬损失降低了其耐腐蚀性。通过降低这种效果并保持稳定的被动性,粉末形式的金属间血液{sub} 2与AISI 3 16L以不同的比例混合。将这些材料的叠层在700MPa压实并在1120°处烧结。 C离解氨和真空中30分钟。研究了机械性能,耐腐蚀性和微观结构。复合材料烧结的氨基铵比真空烧结达到更高的机械性能。 SEM实现的研究表明,金属基质复合材料呈增加铬的含量,但在晶界中表现出通过从Alcr {Sub} 2的扩散而相对相的瞬态液体。

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