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低碳钢表面激光熔覆纳米TiAl合金涂层的显微组织 被引量:4
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作者 沈以赴 黄因慧 +3 位作者 余承业 刘方军 段爱琴 谭永生 《激光杂志》 CAS CSCD 北大核心 2005年第2期70-71,共2页
本文研究了在低碳钢表面激光熔覆纳米TiAl合金涂层的显微组织,以探索纳米材料在表面工程领域中的应用。研究结果表明低碳钢表面激光熔覆纳米TiAl合金涂层熔区组织仍为钢基组织,但熔区的晶粒大小仅为0 .8μm~1.2 μm ,比不用纳米TiAl合... 本文研究了在低碳钢表面激光熔覆纳米TiAl合金涂层的显微组织,以探索纳米材料在表面工程领域中的应用。研究结果表明低碳钢表面激光熔覆纳米TiAl合金涂层熔区组织仍为钢基组织,但熔区的晶粒大小仅为0 .8μm~1.2 μm ,比不用纳米TiAl合金的熔区晶粒约小一个数量级;在熔区的最表层形成了一新的致密的薄层组织(约为1μm)。低碳钢表面激光熔覆纳米TiAl合金涂层中形成细小的晶粒组织和致密的氧化物可以显著地提高其力学性能(硬度)和耐腐蚀性能。 展开更多
关键词 激光熔覆 纳米tial 显微组织
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Effect of brazing temperature on microstructure and tensile strength ofγ-TiAl joint vacuum brazed with micro-nano Ti−Cu−Ni−Nb−Al−Hf filler
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作者 Li LI Yu-tong CHEN +3 位作者 Lei-xin YUAN Fen LUO Zhi-xue FENG Xiao-qiang LI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第8期2563-2574,共12页
A novel micro-nano Ti−10Cu−10Ni−8Al−8Nb−4Zr−1.5Hf filler was used to vacuum braze Ti−47Al−2Nb−2Cr−0.15B alloy at 1160−1220℃ for 30 min.The interfacial microstructure and formation mechanism of TiAl joints and the rel... A novel micro-nano Ti−10Cu−10Ni−8Al−8Nb−4Zr−1.5Hf filler was used to vacuum braze Ti−47Al−2Nb−2Cr−0.15B alloy at 1160−1220℃ for 30 min.The interfacial microstructure and formation mechanism of TiAl joints and the relationships among brazing temperature,interfacial microstructure and joint strength were emphatically investigated.Results show that the TiAl joints brazed at 1160 and 1180℃ possess three interfacial layers and mainly consist of α_(2)-Ti_(3)Al,τ_(3)-Al_(3)NiTi_(2) and Ti_(2)Ni,but the brazing seams are no longer layered and Ti_(2)Ni is completely replaced by the uniformly distributed τ_(3)-Al_(3)NiTi_(2) at 1200 and 1220℃ due to the destruction of α_(2)-Ti_(3)Al barrier layer.This transformation at 1200℃ obviously improves the tensile strength of the joint and obtains a maximum of 343 MPa.Notably,the outward diffusion of Al atoms from the dissolution of TiAl substrate dominates the microstructure evolution and tensile strength of the TiAl joint at different brazing temperatures. 展开更多
关键词 γ-tial alloy micro-nano filler vacuum brazing interfacial microstructure tensile strength
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