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Influence of oxygen partial pressure in sintering atmosphere on properties of Cr-Mo prealloyed powder metallurgy steel

机译:烧结气氛中氧分压对Cr-Mo预合金粉末冶金钢性能的影响

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摘要

Chromium is an attractive alloying element in low alloyed steels since it gives good hardenability at low cost. The drawback with using chromium in powder metallurgy (PM) grades is its high affinity for oxygen. Thermodynamic calculations show that the oxygen partial pressure should be <4 x 10{sup}(-18) atm at 1120℃ in order to have reducing conditions for a powder grade prealloyed with 3 wt-%Cr and 0-5 wt-%Mo, which is supported by sintering experiments. With graphite added to the powder grade, conditions are reducing during sintering at higher partial pressures of oxygen (up to 10{sup}(-16) atm) due to favourable conditions locally in the material. Sintering of the powder grade with 0.35 wt-% graphite added at 1120℃ for 30 min at reducing conditions leads to high mechanical properties, although kinetics is insufficient for complete reduction of chromium oxides. At 1250℃, kinetics is faster and practically all oxides are reduced after sintering for 30 min, with enhanced mechanical performance as result.
机译:铬是低合金钢中有吸引力的合金元素,因为它以低成本提供了良好的淬透性。在粉末冶金(PM)级中使用铬的缺点是对氧气的亲和力高。热力学计算表明,氧分压应在1120℃下为<4 x 10 {sup}(-18)atm,以便为预混合了3 wt%Cr和0-5 wt%Mo的粉末等级提供还原条件,这是由烧结实验支持的。将石墨添加到粉末级中时,由于材料中的局部有利条件,在较高的氧气分压(最高10 {sup}(-16)atm)下烧结过程中的条件会降低。尽管动力学不足以完全还原氧化铬,但在还原条件下于1120℃下添加0.35 wt%石墨的粉末级烧结30分钟可产生较高的机械性能。在1250℃时,动力学更快,并且在烧结30分钟后几乎所有氧化物都被还原,从而提高了机械性能。

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