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余圣甫, 张远钦, 谢明立, 李志远. Al2O3陶瓷/不锈钢自蔓延高温原位合成连接[J]. 焊接学报, 2004, (2): 119-122.
引用本文: 余圣甫, 张远钦, 谢明立, 李志远. Al2O3陶瓷/不锈钢自蔓延高温原位合成连接[J]. 焊接学报, 2004, (2): 119-122.
YU Sheng-fu, ZHANG Yuan-qin, XIE Ming-li, LI Zhi-yuan. Al2O3 ceramics/stainless steel joining with self-propagating high-temperature in-situ synthesis[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2004, (2): 119-122.
Citation: YU Sheng-fu, ZHANG Yuan-qin, XIE Ming-li, LI Zhi-yuan. Al2O3 ceramics/stainless steel joining with self-propagating high-temperature in-situ synthesis[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2004, (2): 119-122.

Al2O3陶瓷/不锈钢自蔓延高温原位合成连接

Al2O3 ceramics/stainless steel joining with self-propagating high-temperature in-situ synthesis

  • 摘要: 以分析纯三氧化二铁和粒度小于10μm的铝粉为反应原料,采用强电流加热的方法点燃,在马氏体不锈钢上原位合成Al2O3陶瓷,形成Al2O3陶瓷/马氏体不锈钢复合材料。利用光学显微镜和扫描显微镜对自蔓延高温合成的Al2O3陶瓷相及其与马氏体不锈钢形成的过渡区进行了显微组织分析;利用电子探针对合成的陶瓷相的成分进行了测定。研究结果表明,在Al/Fe2O3自蔓延高温合成体系中,合成的Al2O3陶瓷的显微组织主要为Al2O3陶瓷相和少量的铁素体与尖晶石相Al2O3·FeO;反应合成原料中过量的Al有利于Al2O3陶瓷相的致密化;反应合成原料坯块的厚度大于2.00mm时,能获得结合界面状况良好的Al2O3/马氏体不锈钢复合材料。

     

    Abstract: Al2O3 ceramics is in-situ synthesized on the.surface of martensitic stainless steel, ignited by strong current. The synthesizing material are analytically pure Fe2O3, powder and Al powder which graininess is less than 10 μm. The microscopic structure of the synthesized Al2O3, ceramics and the transition region between Al2O3, and martensitic stainless steel is investigated with optical microscope and scanning electron microscope. The constituent of corresponded parts is taken with electron probe microanalyzer. The results show that the microscopic structure of synthesized Al2O3, ceramics layer is mainly composed by ceramic phase Al2O3 and a little of α-ferrite and spinel phase Al2O3·FeO in Al/Fe2O3, self-propagating high-temperature synthesis system. Excessive Al powder in the material is advantageous to synthesize ceramic phase; the thickness of synthesizing material body is not less than 2.0 mm in order to get well-synthesized Al2O3 martensitic stainless steel composite material.

     

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