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Study on the Electron Beam Welding Process of ZTC4 Titanium Alloy
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Study on the Electron Beam Welding Process of ZTC4 Titanium Alloy
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National Natural Science Foundation of China (50935008); China-EU Cooperation Projects “COLTS”

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    摘要:

    主要探討鑄造TC4合金電子束焊接工藝。為了獲得良好的鑄造TC4合金電子束焊接接頭,作者對焊縫形貌,微觀組織和接頭拉伸性能進行研究。結(jié)果表明:通過調(diào)節(jié)焊接電流和焊接速度可以獲得電子束焊雙面成型工藝,但是對于厚板卻很難獲得雙面成形的焊縫形狀,經(jīng)X射線檢測焊縫內(nèi)部質(zhì)量,能滿足檢驗標準;鑄造鈦合金電子束焊接接頭微觀組織構(gòu)成的母材由板條狀α相和β相組成,焊縫區(qū)域由針狀馬氏體組成,熱影響區(qū)由細針狀馬氏體、板條狀α相和β相組成;鑄造TC4電子束焊接接頭拉伸性能與母材相當,因此可以通過改善母材的組織成分和顯微組織來提高其焊接接頭的拉伸強度。沖擊試驗表明應力集中系數(shù)對吸收功有很大的影響。

    Abstract:

    The electron beam (EB) welding process of Ti casting plates was investigated. For achieving the welds with an acceptable quality, the cross-sectional shape, the microstructure and the tensile properties of the electron beam joint of casting TC4 (ZTC4) alloy were studied. The results show that the double-side molding in electron beam welding of ZTC4 can be achieved by adjusting the welding speed and welding current, but it is difficult to achieve double-sided weld shape in welding the thick plates, and its internal quality meets the standard requirement. The microstructure of electron beam weldment of casting TC4 alloy in the base metal is composed of α laths and β phase, the weld consists of acicular martensites, and the heat affected zone (HAZ) consists of thin acicular martensites, α laths and β phase. The tensile strength of ZTC4 EB-joints is higher than that of the base metal, so the tensile strength of ZTC4 EB-weld can be improved by optimizing the composition and the microstructure of base metal. Impact test shows that stress concentration factor has a great effect on absorbed energy.

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吳 冰,李晉煒,唐振云. Study on the Electron Beam Welding Process of ZTC4 Titanium Alloy[J].稀有金屬材料與工程,2014,43(4):786~790.[Wu Bing, Li Jinwei, Tang Zhenyun. Study on the Electron Beam Welding Process of ZTC4 Titanium Alloy[J]. Rare Metal Materials and Engineering,2014,43(4):786~790.]
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  • 收稿日期:2013-04-25
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  • 在線發(fā)布日期: 2014-07-30
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