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Microstructural Analysis of Multilayered Titanium Aluminide Sheets Fabricated by Hot Rolling and Heat Treatment

机译:热轧和热处理制备的多层铝化钛薄板的显微组织分析

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This study is concerned with the microstructural analysis of multilayered or bulk Ti aluminide sheets fabricated by the self-propagating high-temperature synthesis (SHS) reaction using hot rolling and heat treatment. Multilayered Ti/Al sheets were prepared by stacking thin Ti and Al sheets alternately, and a good Ti/Al interfacial bonding was achieved after rolling at 500 deg C. When these sheets were held at 1000 deg C, spheroidal TiAl_3 phases were formed by the SHS reaction at Ti/Al interfaces and inside Al layers. Microstructural analysis on the hot-rolled, multilayered Ti/TiAl_3 sheets revealed that intermetallic phases such as TiAl_2, TiAl, and Ti_3Al were formed at Ti/TiAl_3 interfaces due to interaction between Ti and TiAl_3 and that pores formed in the TiAl_3 layer were significantly reduced during hot rolling. When multilayered Ti/Ti aluminide sheets were heat treated at 1000 deg C, Ti_3Al, TiAl, and TiAl_2 were grown as Ti and TiAl_3 were consumed. As the heat treatment proceeded, TiAl grew further, eventually leading to the fabrication of multilayered sheets composed of Ti_3Al and TiAl. Bulk Ti aluminide sheets, having a lamellar structure of Ti_3Al and TiAl, instead of multilayered sheets, were also fabricated successfully by heat treatment at 1400 deg C. This fabrication method of the bulk sheets had several advantages over the method by hot forging or rolling of conventional cast Ti aluminides. From these findings, an idea to fabricate multilayered or bulk Ti aluminide sheets by hot rolling and heat treatment is suggested as an economical and continuous fabrication method, and the formation and growth mechanisms of interfacial phases are elucidated in this study.
机译:这项研究涉及通过使用热轧和热处理的自蔓延高温合成(SHS)反应制造的多层或块状铝化钛薄板的微观结构分析。通过交替堆叠薄的Ti和Al板来制备多层Ti / Al板,并在500℃轧制后获得良好的Ti / Al界面结合。当这些板在1000℃下保持时,球状TiAl_3相形成了。 Ti / Al界面和铝层内部的SHS反应。对热轧多层Ti / TiAl_3板的显微组织分析表明,由于Ti和TiAl_3之间的相互作用,在Ti / TiAl_3界面形成了金属间相,例如TiAl_2,TiAl和Ti_3Al,并且显着减少了在TiAl_3层中形成的孔在热轧过程中。当在1000摄氏度下对多层Ti / Ti铝化物薄片进行热处理时,随着Ti和TiAl_3的消耗,Ti_3Al,TiAl和TiAl_2得以生长。随着热处理的进行,TiAl进一步生长,最终导致了由Ti_3Al和TiAl组成的多层板的制造。还通过在1400℃下的热处理成功地制造了具有Ti_3Al和TiAl的层状结构的块状Ti铝化物片材,而不是多层片材。该块状片材的制造方法与通过热锻造或轧制的方法相比具有若干优点。传统的铸造钛铝化物。根据这些发现,提出了一种通过热轧和热处理来制造多层或块状铝化钛片的想法,认为是一种经济,连续的制造方法,并且在本研究中阐明了界面相的形成和生长机理。

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