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Fabrication of textured Ti2AlC lamellar composites with improved mechanical properties 被引量:2

Fabrication of textured Ti2AlC lamellar composites with improved mechanical properties
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摘要 Textured Ti2AlC lamellar composites have been successfully fabricated by a new method in the present work.The composites exhibit high compressive strength of ca 2 GPa,fracture toughness of 8.5 MPa m1/2(//c-axis),flexural strength of 735 MPa(//c-axis)and high hardness of 7.9 GPa(//c-axis).The strengthening mechanisms were discussed.The sintering and densification process was investigated and crystal orientation and microstructure were studied by electron backscattered diffraction techniques.The synthesis temperature is reduced to 1200?C by using high surface-to-volume ratio Ti2AlC nano flakes.The Lotgering orientation factor of Ti2 AlC and Ti3 AlC2{00 l}planes in the textured top surface reaches 0.74 and 0.49,respectively.This new route may shed light on resolving the difficulties encountered in large scale fabrication of textured MAX phases. Textured Ti2AlC lamellar composites have been successfully fabricated by a new method in the present work. The composites exhibit high compressive strength of ca 2 GPa, fracture toughness of 8.5 MPa m1/2(//c-axis), flexural strength of 735 MPa(//c-axis) and high hardness of 7.9 GPa(//c-axis). The strengthening mechanisms were discussed. The sintering and densification process was investigated and crystal orientation and microstructure were studied by electron backscattered diffraction techniques. The synthesis temperature is reduced to 1200?C by using high surface-to-volume ratio Ti2AlC nano flakes. The Lotgering orientation factor of Ti2 AlC and Ti3 AlC2{00 l} planes in the textured top surface reaches 0.74 and 0.49, respectively. This new route may shed light on resolving the difficulties encountered in large scale fabrication of textured MAX phases.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2020年第3期86-92,共7页 材料科学技术(英文版)
基金 financially supported by the National Key R&D Program of China(Nos.2017YFB0306201 and 2016YFB0701303).
关键词 MAXphase TI2ALC MACHINABLE ceramics Ceramic-matrix composites Reactive MILLING In-situ synthesis Nanocomposites Texture LAMELLAR microstructure MAXphase Ti2AlC Machinable ceramics Ceramic-matrix composites Reactive milling In-situ synthesis Nanocomposites Texture Lamellar microstructure
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