Influence of short-term fluidised bed nitriding upon mechanical proprieties and pitting corrosion resistance of 41CrAlMo structural steel

Tadeusz Żółciak, Z. Łataś
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Abstract

The study investigated the influence of short-term nitriding conditions upon the strength properties and pitting corrosion resistance of 41CrAlMo structural steel. The steel was fluidised bed nitrided in ammonia at temperatures of 480 and 570oC. The increase in layer thickness and/or nitrogen concentration was accompanied by the increase in compressive rest stresses up to a maximum of approx. -660MPa. The decrease of tensile strength Rm and the offset yield point R0,2 in all nitriding variants did not exceed10% in relation to the quenched and tempered sample. The decrease of the relative elongation A10 reached a maximum of 37%. In the bend test, with the increase of layer thickness and nitrogen concentration the offset yield point R0,2 increased by a maximum of approx 12%. Impact strength decreased with increasing layer thickness and nitrogen concentration up to 14%. After optimum nitriding, pitting corrosion resistance Rp9 = 500 h was achieved.
短期流化床渗氮对41CrAlMo结构钢力学性能和抗点蚀性能的影响
研究了短期渗氮条件对41CrAlMo结构钢强度性能和抗点蚀性能的影响。在480℃和570℃的温度下,用氨对钢进行流化床氮化处理。随着层厚和/或氮浓度的增加,压缩静应力的增加最大可达约。-660 mpa。与调质和淬火试样相比,所有渗氮变体的抗拉强度Rm和偏移屈服点r0,2的下降幅度均不超过10%。相对伸长率A10最大降低37%。在弯曲试验中,随着层厚和氮浓度的增加,偏置屈服点R0,2最大增大约12%。冲击强度随层厚和氮浓度的增加而降低,氮浓度最高可达14%。经最佳渗氮处理后,耐点蚀Rp9 = 500 h。
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