Size-dependent quasi Brittle-Ductile transition of single crystalline alpha-alumina particles during microcompression tests

被引:23
作者
Kuroyanagi, Shota [1 ,2 ]
Shinoda, Kentaro [1 ]
Yumoto, Atsushi [3 ]
Akedo, Jun [4 ]
机构
[1] Natl Inst Adv Ind Sci & Technol, Adv Coating Technol Res Ctr, 1-2-1 Namiki, Tsukuba, Ibaraki 3058564, Japan
[2] Shibaura Inst Technol, Grad Sch Engn & Sci, Koto Ku, 3-7-5 Toyosu, Tokyo 1358548, Japan
[3] Shibaura Inst Technol, Fac Engn, Koto Ku, 3-7-5 Toyosu, Tokyo 1358548, Japan
[4] Natl Inst Adv Ind Sci & Technol, Adv Coating Technol Res Ctr, 1-1-1 Higashi, Tsukuba, Ibaraki 3058565, Japan
关键词
Brittle-to-ductile transition; alpha-Alumina (alpha-Al2O3); Size effects; Kinetic spraying; Compression test; AEROSOL DEPOSITION METHOD; THICK-FILMS; ROOM-TEMPERATURE; UNIAXIAL COMPRESSION; DEFORMATION; PLASTICITY; STRENGTH; MICROSTRUCTURE; TECHNOLOGY; HARDNESS;
D O I
10.1016/j.actamat.2020.05.065
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Dense ceramic coatings can be fabricated through the kinetic impaction of fine solid particles at room temperature without any heat assistance or binder, and such a coating process is known as aerosol deposition (AD). In this process, solid ceramic particles that are generally fragile exhibit plastic deformation when they are refined; this is the key to the deposition and densification of ceramic coatings in AD. However, previous work has failed to address the transition criteria related to the size of ceramic particles during plastic deformation; the size is significantly associated with their fracture strength and strain. To eliminate the grain boundary effect, single crystalline alpha-alumina particles were selected and their strength and strain before fracture were systematically measured in a quasi-static compression test. The fracture strength of the alumina particles increased when the particle size decreased, and the particles exhibited quasi-plastic deformation when the fracture strength reached the compressive strength of alumina. This size-dependent brittle-ductile transition of ceramic materials in compression implies that the intragrain plastic deformation of ceramic particles can be attributed to the solid particle deposition. Thus, appropriately designing the intra grain architecture in ceramic particles may allow highly efficient deposition and further densification in AD. (C) 2020 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:588 / 596
页数:9
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