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冲压温度对镀锌22MnB5钢板镀层中裂纹的影响 被引量:7
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作者 邱肖盼 张杰 +4 位作者 江社明 张启富 孙世清 滕华湘 李学涛 《腐蚀与防护》 CAS 北大核心 2018年第4期302-306,322,共6页
利用扫描电子显微镜(SEM)及附带能谱仪系统(EDS),对在不同冲压温度下热成形后镀锌22MnB5钢板镀层中产生的裂纹进行了研究。结果表明:对钢板进行900℃保温5min的均匀奥氏体化能够有效提高镀层中的Fe含量,使镀层中的液态Zn在热冲压后转变... 利用扫描电子显微镜(SEM)及附带能谱仪系统(EDS),对在不同冲压温度下热成形后镀锌22MnB5钢板镀层中产生的裂纹进行了研究。结果表明:对钢板进行900℃保温5min的均匀奥氏体化能够有效提高镀层中的Fe含量,使镀层中的液态Zn在热冲压后转变为固态的α-Fe(Zn)相,避免高温冲压时出现由液态金属导致的脆性(LMIE)裂纹;冲压后镀层中Zn含量为25%~30%(原子分数),能够为基体提供良好的阴极保护作用;冲压温度在Γ相熔点(782℃)以下时有利于减少镀层中的LMIE裂纹。 展开更多
关键词 热成形钢 冲压温度 锌镀层 液态金属导致脆性(LMIE)
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热冲压温度对SAF2507钢微观组织和力学性能的影响 被引量:1
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作者 武时会 王晓阳 强华 《热加工工艺》 北大核心 2022年第13期97-102,共6页
对SAF2507超级双相不锈钢板进行了1050~1250℃热冲压,利用SEM、EDS和力学测试方法研究不同热冲压温度的试样微观组织和力学性能变化规律。微观组织结果表明:1050~1250℃时,微观组织由铁素体相和奥氏体相组成,随着温度的升高,两相的条状... 对SAF2507超级双相不锈钢板进行了1050~1250℃热冲压,利用SEM、EDS和力学测试方法研究不同热冲压温度的试样微观组织和力学性能变化规律。微观组织结果表明:1050~1250℃时,微观组织由铁素体相和奥氏体相组成,随着温度的升高,两相的条状特征快速减弱,铁素体相体积分数上升,奥氏体相体积分数下降,奥氏体相持续转变为铁素体相。力学性能测试结果表明:铁素体相提高抗拉强度和洛氏硬度,降低伸长率、截面收缩率和冲击功。综合微观组织和力学性能测试结果表明,在1050℃热冲压时,钢的微观组织中铁素体相和奥氏体相体积含量相等,此时材料强塑积最高,力学性能最佳。 展开更多
关键词 SAF2507钢 超级双相不锈钢 冲压温度 力学性能
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Effects of thermal treatment on physical and mechanical characteristics of coal rock 被引量:16
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作者 YIN Tu-bing WANG Pin +2 位作者 LI Xi-bing SHU Rong-hua YE Zhou-yuan 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第9期2336-2345,共10页
To study the physical and mechanical properties of coal rock after treatment at different temperatures under impact loading, dynamic compression experiments were conducted by using a split Hopkinson pressure bar(SHPB)... To study the physical and mechanical properties of coal rock after treatment at different temperatures under impact loading, dynamic compression experiments were conducted by using a split Hopkinson pressure bar(SHPB). The stress–strain curves of specimens under impact loading were obtained, and then four indexes affected by temperature were analyzed in the experiment: the longitudinal wave velocity, elastic modulus, peak stress and peak strain. Among these indexes, the elastic modulus was utilized to express the specimens' damage characteristics. The results show that the stress–strain curves under impact loading lack the stage of micro-fissure closure and the slope of the elastic deformation stage is higher than that under static loading. Due to the dynamic loading effect, the peak stress increases while peak strain decreases. The dynamic mechanical properties of coal rock show obvious temperature effects. The longitudinal wave velocity, elastic modulus and peak stress all decrease to different extents with increasing temperature, while the peak strain increases continuously. During the whole heating process, the thermal damage value continues to increase linearly, which indicates that the internal structure of coal rock is gradually damaged by high temperature. 展开更多
关键词 rock mechanical property split Hopkinson pressure bar (SHPB) high temperature coal rock dynamic mechanical property
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