-6降至0.26×10-6,24mm與12mm壁厚焊縫區(qū)域氣泡數(shù)量各降低71.4%與60%,氣泡直徑由2.3mm與1.8mm降至1.4mm與1.2mm,面密度各降低77.7%與81.8%。沿晶界均勻分布的初生與共晶Si相經(jīng)Sr元素變質(zhì)處理,形貌由針狀轉(zhuǎn)變?yōu)榍驙?顆粒尺寸由106μm降至12μm,12mm壁厚焊縫區(qū)域平均抗拉強(qiáng)度、屈服強(qiáng)度、延伸率與斷面收縮率分別為364MPa、332MPa、9.8%與14.2%。焊縫區(qū)域T6態(tài)微觀組織主要由初生α-Al、初生與共晶Si相及Mg2Si時(shí)效相組成,斷口表面晶界處硬脆Si相顆粒直徑約為4μm,Mg2Si時(shí)效相呈長(zhǎng)棒狀,長(zhǎng)寬比約為15.2,經(jīng)真空脫氫處理,斷口韌窩形貌由橢圓狀過渡為球狀,斷裂機(jī)制由沿晶斷裂演變?yōu)轫g窩斷裂。"/>

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真空脫氫對(duì)Sr變質(zhì)ZL114A焊縫組織性能影響研究
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1.中國航空工業(yè)集團(tuán)公司北京航空材料研究院;2.北京宇航系統(tǒng)工程研究所

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中國航空工業(yè)集團(tuán)公司北京航空材料研究院基金資助(基金號(hào)KJSC160206)


Effect of Vacuum Dehydrogenation on Welding Mechanical Properties and Microstructure of ZL114A alloy Modified by Strontium
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Beijing Institute of Aeronautical Materials

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    摘要:

    通過選用不同厚度與狀態(tài)的焊接副與焊絲,完成了Al-Sr中間合金硅相變質(zhì)ZL114A合金的氬弧焊堆焊處理,利用電感耦合法(ICP)測(cè)定了材料的化學(xué)成分,分別采用電子測(cè)氫儀、萬能試驗(yàn)機(jī)、金相顯微鏡(OM)、掃描電鏡(SEM)、能譜分析(EDS)與透射電鏡(TEM)全面分析了真空脫氫對(duì)Sr變質(zhì)ZL114A焊縫區(qū)域微觀組織與力學(xué)性能的影響。結(jié)果表明:焊接副與焊絲經(jīng)真空脫氫處理,氫含量由0.64×10-6降至0.26×10-6,24mm與12mm壁厚焊縫區(qū)域氣泡數(shù)量各降低71.4%與60%,氣泡直徑由2.3mm與1.8mm降至1.4mm與1.2mm,面密度各降低77.7%與81.8%。沿晶界均勻分布的初生與共晶Si相經(jīng)Sr元素變質(zhì)處理,形貌由針狀轉(zhuǎn)變?yōu)榍驙?顆粒尺寸由106μm降至12μm,12mm壁厚焊縫區(qū)域平均抗拉強(qiáng)度、屈服強(qiáng)度、延伸率與斷面收縮率分別為364MPa、332MPa、9.8%與14.2%。焊縫區(qū)域T6態(tài)微觀組織主要由初生α-Al、初生與共晶Si相及Mg2Si時(shí)效相組成,斷口表面晶界處硬脆Si相顆粒直徑約為4μm,Mg2Si時(shí)效相呈長(zhǎng)棒狀,長(zhǎng)寬比約為15.2,經(jīng)真空脫氫處理,斷口韌窩形貌由橢圓狀過渡為球狀,斷裂機(jī)制由沿晶斷裂演變?yōu)轫g窩斷裂。

    Abstract:

    The TIG welding process of ZL114A aluminum alloy that modified by Al-Sr master alloy was obtained by selecting welding vice and wire with different states and thicknesses. The chemical composition of the material was determined by inductively coupled method, and the effect of vacuum dehydrogenation on microstructure and mechanical properties nearby welding region were analyzed by Electronic hydrogen measuring instrument, OM, SEM, EDS, TEM and Universal testing machine. The results show that the hydrogen content decreases from 0.64×10-6 to 0.26×10-6, accompanying with the number of bubbles within 24mm and 12mm thickness reduce 71.4% and 60% individually, the diameter decrease from 2.3mm and 1.8mm to 1.4mm and 1.2mm, together with a reduced surface density by 77.7% and 81.8% after the vacuum dehydrogenation process. The morphology of silicon phase that distribute nearby grain boundaries transforms from needle-like to spherical, the particle size reduces from 106μm to 12μm, the average tensile strength, yield strength, elongation and reduction of area of 12mm thickness are 364MPa, 332MPa, 9.8% and 14.2%. The microstructure under T6 state mainly contains primary α-Al, primary and eutectic Si phase and Mg2Si aging phase, the diameter of brittle Si particle is 4μm, Mg2Si aging phase shows a rod-like morphology and the aspect ratio is 15.2, the shape of dimple changes from elliptical to spherical and the fracture mechanism evolves from intergranular frcture to dimple rupture after vacuum dehydrogenation.

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樊振中,熊艷才,陸政,鄭衛(wèi)東,王端志,孟德浩.真空脫氫對(duì)Sr變質(zhì)ZL114A焊縫組織性能影響研究[J].稀有金屬材料與工程,2019,48(1):227~234.[fanzhenzhong, Xiong Yancai, Lu Zheng, Zheng Weidong, Wang Duanzhi, Meng Dehao. Effect of Vacuum Dehydrogenation on Welding Mechanical Properties and Microstructure of ZL114A alloy Modified by Strontium[J]. Rare Metal Materials and Engineering,2019,48(1):227~234.]
DOI:10.12442/j. issn.1002-185X.20170091

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  • 收稿日期:2017-02-14
  • 最后修改日期:2018-05-30
  • 錄用日期:2018-06-15
  • 在線發(fā)布日期: 2019-02-18
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