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金属学报  1998, Vol. 34 Issue (4): 393-399    
  论文 本期目录 | 过刊浏览 |
1.25Cr-0.5Mo中温抗氢钢的回火析出相及其对抗氢蚀能力的影响
苏铁健;罗兴宏;范存淦;李依依;陈晓;郭爱民
中国科学院金属研究所;沈阳;110015;中国科学院金属研究所;沈阳;110015;中国科学院金属研究所;沈阳;110015;中国科学院金属研究所;沈阳;110015;武汉钢铁公司;武汉;430080;武汉钢铁公司;武汉;430080
TEMPERING PRECIPITATES OF STEEL 1.25Cr-0.5Mo AND THEIR EFFECTS ON ITS HYDROGEN ATTACK RESISTANCE
SU Tiejian; LUO Xinghong; FAN Cungan; LI Yiyi (Institute of Metal Research; The Chinese Academy of Sciences; Shenyang 110015)CHEN Xiao; GUO Aimin (Wuhan Iron and Steel Company; Wuhan 430080)Correspondent: SU Tiejian; Fax: 024-3891320; Tel. 024-3843531-55445)(Manuscript received 1997-04-30; in revised form 1997-07-08)
引用本文:

苏铁健;罗兴宏;范存淦;李依依;陈晓;郭爱民. 1.25Cr-0.5Mo中温抗氢钢的回火析出相及其对抗氢蚀能力的影响[J]. 金属学报, 1998, 34(4): 393-399.
, , , , , . TEMPERING PRECIPITATES OF STEEL 1.25Cr-0.5Mo AND THEIR EFFECTS ON ITS HYDROGEN ATTACK RESISTANCE[J]. Acta Metall Sin, 1998, 34(4): 393-399.

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摘要: 研究了中温抗氢钢125Cr—05Mo的回火析出相及其对抗氢蚀能力的影响.碳萃取复型的透射电镜观察显示,随回火温度升高,碳化物析出量增加,颗粒粗化.520和620℃回火析出物几乎全部为M3C;670℃回火析出物以M3C为主并含有少量M23C6;710℃回火主要析出M23C6,包含少量的M3C.扫描电镜观察表明,充氢之后,经620℃回火的试样发生了严重的氢腐蚀,并导致强度和硬度的大幅度下降;经520℃回火的试样在充氢后抗拉强度值下降较多;670和710℃回火试样的各项力学性能变化不大,表现了良好的抗氢蚀能力.620℃回火时沿晶界析出大量不稳定的M3C,以及在碳化物转化过程中出现的富C贫Cr区域,导致材料的氢蚀破坏.
关键词 1.25Cr—0.5Mo中温抗氢钢回火氢蚀力学性能碳化物    
Abstract:Studies were made on the tempering precipitates and their effects on hydrogen attack (HA) resistance of the medium-temperature HA-resistant Steel 1.25Cr-0.5Mo. It was shown by TEM of carbon extraction replicas that, with increasing tempering temperature, more carbides were precipitated and coarsened. When tempered at 520℃ and 620℃, almost only M3C was precipitated. When tempered at 670℃, M3C was the main precipitate with a small amount of M23C6. While tempered at 710℃, M23C6 was the main precipitate with a small amount of M3C. It was observed by SEM that,after charging hydrogen, samples tempered at 620℃ were seriously attacked by hydrogen, which resulted in great drop of strength and hardness.While no apparent HA phenomenon was observed for samples tempered at 520℃, 670℃ and710℃, but rupture strength of samples tempered at 520℃ was greatly decreased. It is related that large quantity of unstable M3C precipitated along grain boundaries, and the C-rich and Cr-poor regions for the sample tempered at 620℃ appeared, resulted in the HA degradation of the material.
Key words1.25Cr-0.5Mo steel    tempering    hydrogen attack    mechanical property    carbide
收稿日期: 1998-04-18     
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