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時效處理對冷鍛Co-Cr-W-Ni-Mo合金組織演變及強韌性影響
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作者單位:

1.內(nèi)蒙古科技大學(xué) 材料與冶金學(xué)院;2.鋼鐵研究總院 特殊鋼研究院

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中圖分類號:

TG142.1

基金項目:

內(nèi)蒙古自然科學(xué)基金(項目號2022MS05039),內(nèi)蒙古自治區(qū)高等學(xué)校青年科技英才支持計劃資助(項目號NJYT23115)


Effect of Aging Treatment on Microstructure Evolution and Strength and Ductility of Cold Forged Co-Cr-W-Ni-Mo alloy
Author:
Affiliation:

1.School of Materials and Metallurgy,Inner Mongolia University of Science and Technology;2.Institute of Special Steels,Central Iron and Steel Research Institute

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    摘要:

    對冷鍛Co-Cr-W-Ni-Mo合金進行了400~900 ℃時效處理,結(jié)合掃描電鏡、透射電鏡、XRD及化學(xué)相分析等手段研究了Co-Cr-W-Ni-Mo合金在時效過程中碳化物、亞結(jié)構(gòu)、hcp相及層錯演變,并分析了其變化對強韌性的影響。研究表明:合金經(jīng)600 ℃時效2 h具有高的強度及硬度、同時保持較好的塑性及韌性,時效后析出M23C6及M6C兩種碳化物,M23C6的析出溫度范圍為600~800 ℃,M6C開始明顯析出的溫度為700 ℃,碳化物的析出導(dǎo)致強度硬度升高,但900 ℃大量M6C呈網(wǎng)狀沿晶界和變形帶析出會同時降低強度及塑性。600 ℃時效時fcc相通過形成層錯降低能量保持穩(wěn)定性從而使層錯密度增加而提高強度及塑性。hcp相在800 ℃時效后逆轉(zhuǎn)變?yōu)閒cc相使應(yīng)變誘導(dǎo)馬氏體轉(zhuǎn)變強化效果消失,同時在此溫度下發(fā)生再結(jié)晶導(dǎo)致冷變形組織消失使強度進一步下降,該合金的再結(jié)晶形核機制為凸出機制、亞晶界遷移及亞晶合并三種形核機制共同作用。

    Abstract:

    Cold-forged Co-Cr-W-Ni-Mo alloy was aged at 400 ~ 900 °C. The carbide, substructure, hcp phase and stacking faults evolution of Co-Cr-W-Ni-Mo alloy during aging were studied by means of scanning electron microscopy, transmission electron microscopy, XRD and chemical phase analysis, and the influence of their changes on strength and toughness were analyzed. The results show that the alloy aged at 600 °C for 2 h has high strength and hardness, while maintaining good ductility and toughness. M23C6 and M6C carbides are precipitated after aging. The precipitation temperature range of M23C6 is 600 ~ 800 °C, and the precipitation temperature of M6C is 700 °C. The precipitation of carbides leads to the increase of strength and hardness, but the precipitation of a large number of network M6C along the grain boundaries deformation bands at 900 °C will reduce the strength and ductility at the same time. When aged at 600 °C, the fcc phase reduces the energy stability by forming stacking faults, which increases the density of stacking faults and improves the strength and ductility. The hcp phase reverses to fcc phase after aging at 800 °C, which makes the strengthening effect of strain-induced martensitic transformation disappear. At the same time, recrystallization occurs at this temperature, which leads to the disappearance of cold deformation structure and further decrease of strength. The recrystallization nucleation mechanism of the alloy is a combination of three nucleation mechanisms : protrusion mechanism, subgrain boundary migration and subgrain merging.

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王中琳,龔志華,李權(quán),包漢生.時效處理對冷鍛Co-Cr-W-Ni-Mo合金組織演變及強韌性影響[J].稀有金屬材料與工程,2024,53(8):2223~2231.[Wang Zhonglin, Gong Zhihua, Li Quan, Bao Hansheng. Effect of Aging Treatment on Microstructure Evolution and Strength and Ductility of Cold Forged Co-Cr-W-Ni-Mo alloy[J]. Rare Metal Materials and Engineering,2024,53(8):2223~2231.]
DOI:10.12442/j. issn.1002-185X.20230368

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  • 收稿日期:2023-06-09
  • 最后修改日期:2023-08-08
  • 錄用日期:2023-08-24
  • 在線發(fā)布日期: 2024-08-20
  • 出版日期: 2024-08-08