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40Cr钢量化水淬应用研究 被引量:4

Study on Application of Quantifying Water Quenching of 40Cr Steel
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摘要 研究了量化水淬对40Cr钢淬硬层深度及淬火畸变的影响,将其与普通水淬和油淬进行了比较。结果表明,当量化水淬的工艺参数K=3、Ts=70℃时,主要冷却特性参数分别为Vmax=93℃·s-1、V300=68℃·s-1、t200=20.5s时,40Cr钢量化水淬的冷却能力介于普通水淬和普通油淬之间,其表面硬度为58HRC、硬化层深度为4.60mm、淬火畸变平均值为0.093mm,也介于普通水淬和普通油淬之间。 The effect of quantifying water quenching of 40Cr steel samples on the hardening depth and quenching distortion was investigated,in comparison with the conventional quenching in water and in oil. The results show that the main cooling parameters of quantifying water quenching with K = 3, Ts = 70℃ are Vmax = 93 ℃ · s^-1, V300 = 68 ℃ · s^-1 and t200 =20. 5s. The cooling ability ranges from the conventional water quenching to oil quenching. The results also show that the surface hardness of quantifying water quenching of 40Cr steel samples (Ф75mm × 120mm) is 58HRC ,the hardening depth is 4. 60mm, and the average quenching distortion is 0. 093mm, which is also between the conventional water quenching and oil quenching.
出处 《金属热处理》 EI CAS CSCD 北大核心 2006年第3期96-98,共3页 Heat Treatment of Metals
关键词 40CR钢 量化水淬 淬火畸变 硬化深度 40Cr steel quantifying water quenching quenching distortion hardening depth
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  • 1左永平,权纯逸.淬火冷却介质在航空工业的应用[J].金属加工(热加工),2020(12):73-76. 被引量:2
  • 2张文勇,陈亚维.量化水淬和盐水淬冷却特性及淬火畸变研究[J].金属热处理,2004,29(11):50-53. 被引量:2
  • 3陈亚维,张文勇.45钢量化水淬应用研究[J].热加工工艺,2005,34(8):40-41. 被引量:2
  • 4Dongli SONG Jianfeng GU Jiansheng PAN Xin YAO.Design of Quenching Process for Large-sized AISI P20 Steel Block Used as Plastic Die[J].Journal of Materials Science & Technology,2006,22(1):139-144. 被引量:7
  • 5HANS W, KANG S H, TOTTEN G E, et al. Immersion time quenching [J]. Advanced Material and Processes. 1995, 148(3): 42AA-42DD.
  • 6CHEN Nai-lu, HAN Li-zjan, ZHANG Wei-min, et al.Enhancing mechanical properties and avoiding cracks by simulation of quenching connecting rods [J]. Materials Letters, 2007, 61(14-15): 3021-3024.
  • 7FREBORG A M, FERGUSON B L, ARONOV M A, et al. Intensive quenching theory and application for imparting high residual surface compressive stresses in pressure vessel components [J]. Journal of Pressure Vessel Technology of the ASME, 2003, 125(2): 188-194.
  • 8KOBASKO N I. Basics of intensive quenching [J]. Advanced Materials and Processes, 1995, 148(3): 42W- 42Y.
  • 9SHIMIZU N, TAMURA I. An examination of the relation between quench-hardening behaviour of steel and cooling curve in oil [J]. Transactions ISIJ, 1978, 18(7): 445-450.
  • 10MARTIN T J, DULIKRAVICH CG,S. Inverse determination of steady heat convection coefficient distributions [J]. Journal of Heat Transfer, 1998, 120(2): 328-334.

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