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防盗门板用热镀锌钢带GFDX-M的开发 被引量:2
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作者 郑涛 《河北冶金》 2015年第5期16-21,共6页
在现有生产设备和技术条件下,在原有品种SGCC钢的基础上,对其生产工艺进行了优化。在冷轧工艺研究及控制上,重点优化提升了冷轧压下率、退火工艺、光整拉矫工艺等。试生产后对产品实物从力学性能、组织性能上进行了质量分析,并对比了不... 在现有生产设备和技术条件下,在原有品种SGCC钢的基础上,对其生产工艺进行了优化。在冷轧工艺研究及控制上,重点优化提升了冷轧压下率、退火工艺、光整拉矫工艺等。试生产后对产品实物从力学性能、组织性能上进行了质量分析,并对比了不同退火工艺下的成品组织。产品发往客户后,对下游客户的使用情况进行了跟踪,针对发现的质量问题,从优化热轧卷取温度、提升镀锌机组速度改进热轧原料等方面做了后期工艺质量改进。优化后的GFDX-M在下游多家用户进行了冲压试验,冲压性能和表面质量均达到了其使用要求。 展开更多
关键词 防盗门板 gfdx-m 冲压性能 表面质量 开发
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Effect of cooling time t8/5 on microstructure and toughness of Nb-Ti- Mo microalloyed C-Mn steel 被引量:2
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作者 Xiao-nan Wang Xia-ming Chen +4 位作者 Feng Wen Peng-fei Guo Lei Yang Qian Yan Hong-shuang Di 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2018年第10期1078-1085,共8页
In order to further optimize welding process of Nb-Ti-Mo microalloyed steel, welding thermal cycles on coarse-grained heat-affected zone (CGHAZ) of welded joints were simulated using Gleeble 1500. The microstructure... In order to further optimize welding process of Nb-Ti-Mo microalloyed steel, welding thermal cycles on coarse-grained heat-affected zone (CGHAZ) of welded joints were simulated using Gleeble 1500. The microstructure and low-temperature impact fracture were investigated using a scanning electron microscope and a pendulum impact machine, respectively. Moreover, the relationship between cooling time ts/5 and the microstructure of CGHAZ was discussed, and the effect of microstructure on impact toughness was also studied. As cooling time increased, martensite fraction decreased from 97.8% (3 s) to 3.0% (60 s). The fraction of martensite/austenite (M/A) constituent increased from 2.2% (3 s) to 39.0% (60 s), its shape changed from granular to strip, and the maximum length increased from 2.4 μm (3 s) to 7.0 μm (60 s). As cooling time increased, the prior austenite grain size increased from 34.0 μm (3 s) to 49.0 gm (60 s), the impact absorption energy reduced from 101.8 J (5 s) to 7.2 J (60 s), and the fracture mechanism changed from quasi-cleavage fracture to cleavage fracture. The decreased toughness of CGHAZ was due to the reduction of lath martensite-content, coarsening of original austenite grain, and increase and coarsening of M/A constituent. The heat input was controlled under 7 kJ cm-1 during actual welding for these steels. 展开更多
关键词 microalloyed C-mn steel Cooling time - Impact absorption energy m/A constituent Coarse-grained heataffected zone Heat input
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