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首页> 外文期刊>Journal of Materials Science >Tensile properties of iron-based P/M steels with ferrite plus martensite microstructure
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Tensile properties of iron-based P/M steels with ferrite plus martensite microstructure

机译:具有铁素体和马氏体组织的铁基粉末冶金材料的拉伸性能

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The effect of intercritical heat treatments on the tensile properties of iron-based P/M steels was investigated. For this purpose, atomized iron powder (Ancorsteel 1000) was admixed with 0.3 wt.% graphite powder. Tensile test specimens were cold pressed at 700 MPa and sintered at 1120 degrees C for 30 min under pure argon gas atmosphere. After sintering, similar to 20% pearlite volume fraction in a ferrite matrix was obtained. To produce coarse ferrite + martensite microstructures, the sintered specimens were intercritically annealed at 724 and 760 degrees C and quenched in water. To obtain fine ferrite + martensite microstructures, the sintered specimens were first austenitized at 890 degrees C and water-quenched to produce a fully martensitic structure. These specimens were then intercritically annealed at 724 and 760 degrees C and re-quenched. After the intercritical annealing at 724 and 760 degrees C and quenching, martensite volume fractions were similar to 18% and 43%, respectively, in both the coarse- and fine-grained specimens. Although the intercritically annealed specimens exhibited higher yield and tensile strength than the as-sintered specimens, their elongation values were lower. Specimens with a fine ferrite + martensite microstructure showed high yield and tensile strength and ductility in comparison to specimens with a coarse ferrite + martensite microstructure. The strength values of specimens increased with increasing martensite volume fraction.
机译:研究了临界热处理对铁基P / M钢拉伸性能的影响。为此,将雾化的铁粉(Ancorsteel 1000)与0.3 wt。%的石墨粉混合。将拉伸的试样在700 MPa下冷压,并在纯氩气气氛下在1120摄氏度下烧结30分钟。烧结后,在铁素体基体中获得类似于20%的珠光体体积分数。为了产生粗大的铁素体+马氏体微结构,将烧结后的试样在724和760摄氏度下进行临界退火,然后在水中淬火。为了获得良好的铁素体+马氏体组织,首先在890℃下对奥氏体进行了奥氏体化,并对水进行了淬火处理,从而形成了完全的马氏体组织。然后将这些样品在724和760摄氏度下进行临界退火,然后重新淬火。在724和760℃进行临界退火并淬火后,粗晶粒和细晶粒试样的马氏体体积分数分别接近18%和43%。尽管临界退火后的样品比烧结后的样品具有更高的屈服强度和拉伸强度,但其伸长率值却较低。与具有粗铁素体+马氏体显微组织的试样相比,具有细铁素体+马氏体显微组织的试样具有较高的屈服强度,拉伸强度和延展性。试样的强度值随马氏体体积分数的增加而增加。

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