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鈦合金擠壓用含NaCl新型玻璃潤滑劑的黏-溫特性、熱腐蝕及熱障性能

金峰 倪嘉 張志豪 謝建新

金峰, 倪嘉, 張志豪, 謝建新. 鈦合金擠壓用含NaCl新型玻璃潤滑劑的黏-溫特性、熱腐蝕及熱障性能[J]. 工程科學學報, 2018, 40(6): 721-728. doi: 10.13374/j.issn2095-9389.2018.06.010
引用本文: 金峰, 倪嘉, 張志豪, 謝建新. 鈦合金擠壓用含NaCl新型玻璃潤滑劑的黏-溫特性、熱腐蝕及熱障性能[J]. 工程科學學報, 2018, 40(6): 721-728. doi: 10.13374/j.issn2095-9389.2018.06.010
JIN Feng, NI Jia, ZHANG Zhi-hao, XIE Jian-xin. Viscosity-temperature characteristics, hot corrosion, and thermal barrier properties of new glass lubricants containing NaCl for the extrusion of titanium alloys[J]. Chinese Journal of Engineering, 2018, 40(6): 721-728. doi: 10.13374/j.issn2095-9389.2018.06.010
Citation: JIN Feng, NI Jia, ZHANG Zhi-hao, XIE Jian-xin. Viscosity-temperature characteristics, hot corrosion, and thermal barrier properties of new glass lubricants containing NaCl for the extrusion of titanium alloys[J]. Chinese Journal of Engineering, 2018, 40(6): 721-728. doi: 10.13374/j.issn2095-9389.2018.06.010

鈦合金擠壓用含NaCl新型玻璃潤滑劑的黏-溫特性、熱腐蝕及熱障性能

doi: 10.13374/j.issn2095-9389.2018.06.010
基金項目: 

國家重點研發計劃資助項目(2017YFB0306200)

詳細信息
  • 中圖分類號: TG146.2+3

Viscosity-temperature characteristics, hot corrosion, and thermal barrier properties of new glass lubricants containing NaCl for the extrusion of titanium alloys

  • 摘要: 以提高鈦合金熱擠壓潤滑效果為目的,研究了一種以磷酸鹽玻璃、SiO2和NaCl為主要組成的新型玻璃潤滑劑,通過模擬擠壓實驗、掃描電子顯微鏡以及換熱系數測量裝置,重點分析了不同組成比潤滑劑的黏度-溫度曲線、高溫下潤滑劑對鈦合金的腐蝕作用、潤滑條件下鈦合金與模具鋼之間的換熱特征.結果表明,磷酸鹽玻璃、SiO2和NaCl的質量比為70:20:10的潤滑劑,在600~900℃之間的黏度變化幅度較小,為1.3×105~9.4×105 Pa·s,有利于提高鈦合金擠壓潤滑效果.950℃下潤滑劑與鈦合金的接觸時間不超過3 min時,潤滑劑對鈦合金坯料表面的高溫腐蝕作用很小,且具有消除坯料表面原有氧化層的作用;但隨高溫接觸時間的延長,鈦合金表面的高溫腐蝕程度逐漸增大.當TA15鈦合金和H13模具鋼的初始溫度分別為900和400℃、新型潤滑劑最終厚度約0.1 mm時,鈦合金和模具鋼之間的界面換熱系數隨實驗時間的延長由185增加到1714W·m-2·s-1,而傳統鈦合金熱擠壓用硅酸鹽玻璃潤滑劑為286~2025 W·m-2·s-1,表明新型玻璃潤滑劑具有較好的高溫熱障性能.

     

  • [3] Sejournet J, Delcroix J. Glass lubricant in the extrusion of steel. Lubr Eng, 1955, 11(2):382
    [10] Xu M, Ling R, Zhang Z H, et al. Study on interfacial heat transfer behavior of TA15 titanium alloy and die materials. Int J Heat Mass Transfer, 2017, 108:1573
    [11] Mendiguren J, Ortubay R, Argandoña E S D, et al. Experimental characterization of the heat transfer coefficient under different close loop controlled pressures and die temperatures. Appl Therm Eng, 2016, 99:813
    [17] Anuwar M, Jayaganthan R, Tewari V K, et al. A study on the hot corrosion behavior of Ti-6Al-4V alloy. Mater Lett, 2007, 61(7):1483
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出版歷程
  • 收稿日期:  2017-09-22

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