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化学成分及热处理工艺对高铬铸铁 力学性能的影响
Effect of the Chemical Composition and Heat Treatment Process on the Mechanical Properties of High Chromium Cast Iron
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- DOI:
- 作者:
- 张 松,车广东,韩翔宇,郑显伟,李进福
ZHANG Song, CHE Guangdong, HAN Xiangyu, ZHENG Xianwei, LI Jinfu
- 作者单位:
- 内蒙古工业大学 材料科学与工程学院
School of Materials Science and Engineering, Inner Mongolia University of Technology
- 关键词:
- 高铬铸铁;力学性能;正交实验;热处理
high chromium cast iron; mechanical properties; orthogonal experiment; heat treatment
- 摘要:
- 为了得到综合性能优秀的双金属耐磨锤头耐磨端材料,利用正交实验法研究了成分 ( 碳含量和铬含量 ) 和热处理工艺 ( 淬火温度和回火温度 ) 对高铬铸铁力学性能的影响,具有一定的工程应用价值。 实验结果表明,各因素对热处理后高铬铸铁力学性能影响关系为 w(Cr)/%> 回火温度 > 淬火温度 >w(C)/% ,优化后的高铬铸铁成分及热处理工艺为 2.8%C , 20%Cr( 质量分数 ) ,淬火温度 1040℃ ,保温 2h ,空冷,回火温度 250℃ ,保温 2h ,空冷。 硬度为 60.17HRC ,冲击韧性 α k 为 9.88 J/cm 2 。To obtain the wear-resistant end material of a bimetallic wear-resistant hammer with excellent comprehensive performance, the effects of the composition (carbon content and chromium content) and heat treatment process (quenching temperature and tempering temperature) on the mechanical properties of high chromium cast iron were studied by the orthogonal experimental method. The results show that the effects of four factors on the mechanical properties of heat-treated high chromium cast iron are as follows: w(Cr)/%>tempering temperature>quenching temperature>w(C)/%. With the optimized composition (w(C)=2.8%, w(Cr)=20%) and heat treatment process in which the quenching temperature is 1 040 ℃ with heating for 2 h and air cooling and the tempering temperature is 250 ℃ with heating for 2 h and then air cooling, the hardness and the impact toughness α k reach 60.17 HRC and 9.88 J/cm 2 , respectively.