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SINTER-HARDENING AND HEAT TREATMENT OF MATERIALS BASED ON ASTALOY CRM

机译:基于Astaloy CRM的材料的烧结硬化和热处理

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Increased mechanical property of sintered steels is the major factor for the introduction of PM components as substitute for wrought steels. Materials based on the newly developed grades prealloyed with chromium, Astaloy CrM and Astaloy CrL, reach, depending on processing conditions, static and dynamic properties comparable to those of conventional fully tee steels. In this paper the influence of the sintering temperature combined with increased post-sintering cooling rate or heat treatments such as low pressure carburizing, on the static and dynamic properties of materials based on Astaloy CrM is presented. If high temperature is followed by rapid cooling a tensile strength of 1400 MPa (200 ksi) is achieved, while by combining high temperature sintering with low pressure carburizing a fatigue limit over 500 MPa (72 ksi) can be obtained. A study of the dimensional stability of Astaloy CrM gears manufactured under production condition is also discussed.
机译:烧结钢的力学性质增加是引入PM组件作为锻炼钢材的主要因素。基于新开发的等级预先利用铬,阿斯洛合金CRM和Astaloy CRL,达到,根据加工条件,静态和动态特性与传统的完全TEE钢相当。本文介绍了烧结温度与增加的烧结后冷却速度或热处理等高压渗碳的影响,基于阿斯洛合金CRM的静态和动态性能的影响。如果高温随后通过快速冷却,实现了1400MPa(200kSI)的拉伸强度,而通过将高温碳渗碳结合低压碳,可以获得超过500MPa(72kSI)的疲劳极限。还讨论了在生产条件下制造的阿塔卢CRM齿轮的尺寸稳定性研究。

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