首页|基于热加工图技术的10CrNi8MoV钢热加工工艺优化

基于热加工图技术的10CrNi8MoV钢热加工工艺优化

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采用Gleeble-3500热力模拟机对10CrNi8MoV钢进行高温压缩试验,获得其在不同温度、应变速率和应变值下的流变应力值,并建立了 10CrNi8MoV钢的热加工图.结果表明:10CrNi8MoV钢较合适的热变形区域有2个,分别为变形温度在1 020~1 100℃、应变速率为0.001~0.1s-1的中高温、中低应变速率区和变形温度在1 150~1 200℃、应变速率为3~10s-1的高温、高应变速率区;10CrNi8MoV钢在上述2个工艺区域发生变形时均能获得均匀细小的再结晶组织.
Optimization of Hot Working Process for 10CrNi8MoV Steel based on Processing Map Technology
High temperature compression test is carried out on the 10CrNi8MoV steel by using Gleeble-3500 thermo-mechani-cal simulator.The flow stresses of the 10CrNi8MoV steel under different temperatures,strain rates and strains are obtained,and its hot process map is established.The results indicate that the 10CrNi8MoV steel has two suitable hot deformation regions,which are the medium/high temperature and medium/low strain rate(1 020-1 100 ℃ deformation temperature and 0.001-0.1 s-1 strain rate)region,and the high temperature and high strain rate(1 150-1 200 ℃ deformation temperature and 3-10 s-1 strain rate)region.When the 10CrNi8MoV steel deforms in the above two regions,the microstructure is uniform and fine dynamically recrystallized grains are fine.

10CrNi8MoV steelprocessing mapthermo-plasticity

万松林、黄冬、张玉祥、蒋颖

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中国人民解放军海军驻上海江南造船(集团)有限责任公司军事代表室,上海 201913

中国船舶集团有限公司第七二五研究所,河南洛阳 471023

10CrNi8MoV钢 热加工图 热塑性

2024

材料开发与应用
洛阳船舶材料研究所 中国造船工程学会船舶材料学术委员会

材料开发与应用

CSTPCD
影响因子:0.342
ISSN:1003-1545
年,卷(期):2024.39(2)
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