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Microstructural characterization of intercritically annealed low alloy PM steels

机译:临界退火低合金粉末冶金钢的显微组织表征

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In this study, the applicability of intercritical annealing heat treatment, which is usually practiced to high strength low alloy ingot steels (HSLA), to low alloy powder metallurgy (PM) processed steels was investigated. With this heat treatment, it was intended to produce a dual-phase steel structure (ferrite + martensite) in PM steel. The effect of various amount of graphite addition on microstructure was also examined. For these purposes, atomized iron powder (Ancorsteel 1000) was mixed with 0.3 and 0.5 wt percent graphite powder. The mixed powders were cold pressed at 700 MPa with single action and sintered at 1120 deg C for 30 min under pure argon gas atmosphere. Some of the sintered specimens were directly annealed at intercritical heat treatment temperatures of 724, 735 and 760 deg C and rapidly water quenched. Through these heat treatments, ferrite + martensite microstructure with coarse grain size were produced. The other sintered specimens were first austenitized at 890 deg C for 12 min before intercritically annealing and then rapidly water quenched to produce fully martensitic structure. These specimens with fully martensitic microstructure were subsequently annealed at intercritical annealing temperatures of 724, 735 and 760 deg C and rapidly water quenched. Ferrite + martensite microstructure with fine grain size was obtained by this route. The experimental results showed that martensite volume fraction increased with increasing intercritical annealing temperature as well as increasing graphite content. It is thought that mechanical properties of PM steels can be controlled by these heat treatments which are an alternative to traditional heat treatments of quenching + tempering applied usually to PM steels.
机译:在这项研究中,研究了通常用于高强度低合金锭钢(HSLA)的临界退火退火处理技术对低合金粉末冶金(PM)处理钢的适用性。通过这种热处理,可以在PM钢中生产双相钢结构(铁素体+马氏体)。还检查了各种数量的石墨添加对微观结构的影响。为此,将雾化的铁粉(Ancorsteel 1000)与0.3和0.5 wt%的石墨粉混合。将混合的粉末以单一作用在700 MPa下冷压,并在纯氩气气氛下于1120℃烧结30分钟。将一些烧结后的试样在724、735和760℃的临界热处理温度下直接退火,并迅速用水淬火。通过这些热处理,获得了具有粗大晶粒尺寸的铁素体+马氏体组织。其他烧结试样首先在890℃下奥氏体化12分钟,然后进行临界退火,然后迅速水淬以产生完全马氏体结构。这些具有完全马氏体组织的试样随后在724、735和760℃的临界退火温度下退火,并迅速用水淬火。通过这种途径获得了具有细晶粒尺寸的铁素体+马氏体组织。实验结果表明,马氏体体积分数随临界退火温度的升高以及石墨含量的增加而增加。据认为,可以通过这些热处理来控制PM钢的机械性能,这些热处理是通常应用于PM钢的淬火+回火的传统热处理的替代方案。

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