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POWDER METALLURGY PROCESS FOR PRODUCING PARTS HAVING HIGH STRENGTH AND HARDNESS FROM SI-MN OR SI-MN-C ALLOYED STEEL
POWDER METALLURGY PROCESS FOR PRODUCING PARTS HAVING HIGH STRENGTH AND HARDNESS FROM SI-MN OR SI-MN-C ALLOYED STEEL
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机译:用SI-MN或SI-MN-C合金钢生产具有高强度和高硬度零件的粉末冶金工艺
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摘要
1. Process for the powder metallurgical production of true to size structural parts of high strength and hardness made of silicon manganese or silicon manganese carbon alloyed steels, comprising mixing, in powdered form, the alloying elements silicon and manganese or silicon, manganese and carbon by way of the alloy carriers ferrosilicon, ferromanganese or a silicon-manganese-iron master alloy having silicon and manganese contents in the ranges from 10 to 30 wt.% Si, 20 to 70 wt.% Mn, remainder Fe and graphite, with an iron powder in such quantities that they correspond to the weight proportions in the powder mixture of 0.3 to 3 wt.% Si, of 0.3 to 4 wt.% Mn, of 0 to 0.5 wt.% C and a mass proportion of manganese to silicon between 1.5 and 3, and compressing the powder mixture in the familiar way and sintering it in a protective gas atmosphere in a temperature range from 1150 degrees C to 1250 degrees C, and then cooling it.
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