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EFFECT OF CARBON CONTENT ON THE PROPERTIES OF SINTERED STEELS DOPED WITH MANGANESE AND COPPER

机译:碳含量对掺锰铜复合烧结钢性能的影响

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摘要

The properties of sintered steels doped with manganese and copper and produced using copper-bearing ferromanganese master alloys are examined with respect to temperature and concentrations of the master alloy (3-10%) and graphite (0-1.0%) in the charge. It is shown that increase in the concentration of the master alloy and graphite leads to the relevant increase in steel strength. The hardness of steel with the minimum content of the master alloy (3%) becomes substantially higher when carbon is introduced and weakly depends on sintering temperature. If the concentration of the master alloy is higher (7 and 10%), the effect of sintering temperature on hardness noticeably increases, while the effect of graphite content substantially decreases. With increasing concentration of the master alloy, the hardness of the sintered steel becomes higher regardless of sintering temperature and graphite content of the charge.
机译:对于温度和装料中的母合金(3-10%)和石墨(0-1.0%)的浓度,研究了使用锰和铜掺杂并使用含铜铁锰中间合金生产的烧结钢的性能。结果表明,母合金和石墨浓度的增加导致钢强度的相应增加。引入碳时,母合金含量最少(3%)的钢的硬度会大大提高,并且几乎不依赖于烧结温度。如果中间合金的浓度较高(7%和10%),则烧结温度对硬度的影响显着增加,而石墨含量的影响则显着降低。随着母合金浓度的增加,烧结钢的硬度变得更高,而与烧结温度和炉料中的石墨含量无关。

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