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Exp-ECAP工藝對鈦鋁雙金屬復合棒材界面組織及性能的影響
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作者單位:

1.徐州工程學院 機電工程學院;2.江蘇徐工工程機械研究院有限公司

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中圖分類號:

TG376

基金項目:

國家自然科學基金(51905462);江蘇省自然科學基金(BK20201150;BK20221212);江蘇省高校自然科學研究重大項目(21KJA460007);江蘇省“333高層次人才工程”培養(yǎng)資助項目


Influence of Exp-ECAP process on the interface microstructure and properties of Ti/Al bimetallic composite rods
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School of Mechanical and Electrical Engineering,Xuzhou University of Technology

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    摘要:

    提出一種耦合鐓、剪、擠等多種變形于一體的膨脹-等通道轉角擠壓工藝(Expansion-Equal channel angular Pressing,Exp-ECAP)。450℃下采用單道次Exp-ECAP擠壓結合退火熱處理成功制備鈦鋁雙金屬復合棒材。利用SEM、EDS、XRD、EBSD和剪切試驗研究了鈦鋁雙金屬復合棒材界面微觀組織和結合性能。結果表明,在Exp-ECAP變形劇烈剪切應力和退火高溫條件下,鈦鋁雙金屬復合棒材獲得了良好的界面結合,鈦、鋁兩種基體元素通過相互擴散形成了厚度約為1.27μm的冶金結合層,界面層內生成的新相以金屬間化合物TiAl為主,并含有少量不均勻分布的Ti3Al(靠近鈦側)和TiAl3(靠近鋁側)。Ti/Al界面層金屬通過發(fā)生相變反應和部分再結晶產(chǎn)生了大量等軸、細小的超細晶組織,晶粒隨機生長,無明顯的擇優(yōu)取向。鈦鋁雙金屬復合棒材平均剪切強度為66.29 MPa,剪切破壞主要發(fā)生在TiAl相層,表現(xiàn)出脆性斷裂的特征。

    Abstract:

    A novel process named Expansion Equal Channel Angular Pressing (Exp-ECAP) which couples multiple forms of deformation such as upsetting, shearing, and extrusion into one was proposed. Ti/Al bimetallic composite rod was successfully fabricated by a single pass of Exp-ECAP process at 450 ℃ combined with post annealing heat treatment. The interface microstructure and bonding properties of Ti/Al bimetallic composite rod were investigated using SEM, EDS, XRD, EBSD and shear test. The results show that under the severe shear stress of Exp-ECAP process and the high-temperature annealing conditions, the Ti/Al bimetallic composite rod achieves good interfacial bonding quality, and a metallurgical bonding layer of approximately 1.27μm thickness is appeared through mutual diffusion of the titanium and aluminum matrix elements. New phases generated in the bonding interface layer are mainly intermetallic compound TiAl, and a small amount of inhomogeneous distributed Ti3Al (near the titanium side) and TiAl3 (near the aluminum side) are also contained. Moreover, a large number of equiaxed ultrafine grains are obtained in the Ti/Al interface bonding layer through phase transformation reactions and partial recrystallization, and the grains grow randomly without obvious preferred orientation. The shear strength of Ti/Al bimetallic composite rod is about 66.29 MPa, and shear failure mainly occurs in the TiAl phase layer, exhibiting brittle fracture characteristics.

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王曉溪,張翔,張飛,夏曉雷. Exp-ECAP工藝對鈦鋁雙金屬復合棒材界面組織及性能的影響[J].稀有金屬材料與工程,2024,53(11):3121~3128.[WANG Xiaoxi, ZHANG Xiang, ZHANG Fei, XIA Xiaolei. Influence of Exp-ECAP process on the interface microstructure and properties of Ti/Al bimetallic composite rods[J]. Rare Metal Materials and Engineering,2024,53(11):3121~3128.]
DOI:10.12442/j. issn.1002-185X.20240213

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  • 收稿日期:2024-04-11
  • 最后修改日期:2024-05-22
  • 錄用日期:2024-06-04
  • 在線發(fā)布日期: 2024-11-20
  • 出版日期: 2024-11-08