• By changing heating temperature and holding time, the austenite grain growth behavior of a low carbon steel under different heating conditions was studied.

    通过改变均热温度保温时间,研究低碳钢氏体平均晶粒尺寸与时间的关系,及奥氏体晶粒尺寸范围的分布规律。

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  • The effects of the aging temperature and holding time on the microstructure and hardness of the ultra-low-carbon steel bearing copper were investigated.

    研究时效温度保温时间时效硬化型超低碳显微组织硬度影响。

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  • During isothermal holding at low temperature, the nonequilibrium segregation promotes precipitation of boron constituent and establishment of equilibrium segregation at grain boundaries.

    较低温度等温平衡促进了晶界析出平衡偏聚的建立

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  • With increasing of the holding time at high temperature, wear rate decreasing of low C-hi cr cast iron became more obvious, and wear resistance increased.

    随着高温保温时间延长,碳高铸铁磨损降低幅度较大耐磨性能提高

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  • Deformation and microstructure change of SS400 low carbon steel at middle and high temperature, different holding times after deformation were investigated.

    研究SS400低碳钢高温形变及形变停留时显微组织变化

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  • Deformation and microstructure change of SS400 low carbon steel at middle and high temperature, different holding times after deformation were investigated.

    研究SS400低碳钢高温形变及形变停留时显微组织变化

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