جوشکاری پرتو الکترونی آلیاژ Ti-۶Al-۴V به فولاد زنگ نزن PH۴-۱۷ با استفاده از لایه میانی مس

Publish Year: 1402
نوع سند: مقاله ژورنالی
زبان: Persian
View: 111

This Paper With 15 Page And PDF Format Ready To Download

  • Certificate
  • من نویسنده این مقاله هستم

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این Paper:

شناسه ملی سند علمی:

JR_JWSTI-9-1_001

تاریخ نمایه سازی: 10 مرداد 1402

Abstract:

This study aimed to investigate the effect of electron beam welding parameters on the microstructural characteristics and mechanical properties of the dissimilar joint between ۱۷-۴PH stainless steel and Ti۶Al۴V alloy. For this purpose, the welding of these two alloys was performed with an copper interlayer with a thickness of ۱ mm. Two different welding speeds of ۰.۷ and ۰.۹ m/min with four levels of beam offset  (۰, ۰.۲, ۰.۴ and ۰.۶ mm) from the center of the interlayer towards the steel were used to accomplish the experiments. The results show that by using the copper interlayer with thickness of ۱ mm, the cracks caused by the formation of intermetallic compounds are removed from the weld pool. At the interface between the titanium and the weld pool, at the beam offset  of ۰ and ۰.۲ mm, a solid solution of copper and TiCu۲ intermetallic compounds is formed, while at the beam offset  of ۰.۴ and ۰.۶ mm, a solid solution of copper and TiCu intermetallic compounds is formed. The weld pool, at the beam offset  of ۰ and ۰.۲ mm, consists of TiCr۲+TiFe۲ intermetallic compounds while at the beam offset  of ۰.۴ and ۰.۶ mm, solid solution of iron (α-Fe), solid solution of copper and TiCu intermetallic compounds are formed. The highest value of hardness is observed at the interface between the weld pool and the titanium alloy, as well as at the interface between the weld pool and the steel, which is due to the presence of intermetallic compounds with high hardness in these regions. By increasing the welding speed and the beam offset, the hardness value decreases, which is due to the reduction of brittle intermetallic compounds in the joint structure. By increasing the beam offset from ۰.۴ mm to ۰.۶ mm at the speed of ۰.۷ m/min, the shear strength increases from ۱۸۰ MPa to ۲۱۰ MPa and at the speed of ۰.۹ m/min, the shear strength raises from ۲۳۰ MPa to ۲۵۰ MPa. The welded sample with the welding speed of ۰.۹ m/min and the beam offset of ۰.۶ mm has the highest shear strength equal to ۲۵۰ MPa. The failure in all samples happened at the interface between the weld pool and the titanium alloy, which shows that the weakest region in the joint is this interface.

Authors

علی مهدوی شاکر

Faculty of Materials & Manufacturing Technologies, Malek Ashtar University of Technology, Tehran, Iran.

حسین مومنی

Faculty of Materials & Manufacturing Technologies, Malek Ashtar University of Technology, Tehran, Iran.

علیرضا یزدی پور

Faculty of Materials & Manufacturing Technologies, Malek Ashtar University of Technology, Tehran, Iran.

مراجع و منابع این Paper:

لیست زیر مراجع و منابع استفاده شده در این Paper را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود Paper لینک شده اند :
  • AWS Technical Activities Committee, "Recommended practices for electron beam welding ...
  • Carreon, H., Carreon, M., Duenas, A., "Assessment of precipitates of ...
  • Lippold, J.C., Kotecki, D.J., "Welding metallurgy and weldability of stainless ...
  • Jenney, C..L., Brien, A.O., "Welding Handbook: Electron Beam Welding", ۸rd ...
  • Powers, D.E., "Electron Beam Welding-An Overview", Proc. Int. Power. Beam. ...
  • Ting, W., Zhang, B., Feng, J., "Influences of different filler ...
  • Adomako, N.k., Kim, J.O., Lee, S.H., Noh, K.H.,Kim, J.H., "Dissimilar ...
  • Ting, W., Binggang, Z., Jicai, F., Qi, T., "Effect of ...
  • Wang, T., Zhang, B., Chen, G., Feng, J., "High strength ...
  • Tomashchuk, I., Sallamand, P., Belyavina, N., Pilloz, M., "Evolution of ...
  • Tomashchuk, I., Sallamand, P., Belyavina, N., Pilloz, M., "Evolution of ...
  • مهدوی شاکر ع.، مومنی ح.، خرم ع. و یزدی پور ...
  • American Welding Society, Welding Handbook )Vol. ۲(:Welding Processes, ۸rd. ed., ...
  • Kundu, S. "Interface microstructure and strength properties of Ti۶۴ and ...
  • Murray, J.L., "The Cu–Ti(copper–titanium) system". J Phase Equilib. vol.۴, pp. ...
  • Chen, Q., Jin, Z.P., "The Fe–Cu system: a thermodynamic evaluation". ...
  • Beek, J.A., Kodentsov, A.A., Loo, F.J.J., "Phase equilibria in the ...
  • AWS Technical Activities Committee, "Recommended practices for electron beam welding ...
  • Carreon, H., Carreon, M., Duenas, A., "Assessment of precipitates of ...
  • Lippold, J.C., Kotecki, D.J., "Welding metallurgy and weldability of stainless ...
  • Jenney, C..L., Brien, A.O., "Welding Handbook: Electron Beam Welding", ۸rd ...
  • Powers, D.E., "Electron Beam Welding-An Overview", Proc. Int. Power. Beam. ...
  • Ting, W., Zhang, B., Feng, J., "Influences of different filler ...
  • Adomako, N.k., Kim, J.O., Lee, S.H., Noh, K.H., Kim, J.H., ...
  • Ting, W., Binggang, Z., Jicai, F., Qi, T., "Effect of ...
  • Wang, T., Zhang, B., Chen, G., Feng, J., "High strength ...
  • Tomashchuk, I., Sallamand, P., Belyavina, N., Pilloz, M., "Evolution of ...
  • Tomashchuk, I., Sallamand, P., Belyavina, N., Pilloz, M., "Evolution of ...
  • مهدوی شاکر ع.، مومنی ح.، خرم ع. و یزدی پور ...
  • American Welding Society, Welding Handbook )Vol. ۲(:Welding Processes, ۸rd. ed., ...
  • Murray, J.L., "The Cu–Ti(copper–titanium) system". J Phase Equilib. vol.۴, pp. ...
  • Chen, Q., Jin, Z.P., "The Fe–Cu system: a thermodynamic evaluation". ...
  • Beek, J.A., Kodentsov, A.A., Loo, F.J.J., "Phase equilibria in the ...
  • نمایش کامل مراجع