Microstructure Characterization and Mechanical Properties of Polymer-Derived (HfxTa1-x)C/SiC Ceramic Prepared upon Field-Assisted Sintering Technique/Spark Plasma Sintering

被引:0
|
作者
Thor, Nathalie [1 ]
Winkens, Georg [2 ]
Bernauer, Jan [3 ]
Petry, Nils-Christian [4 ]
Beck, Katharina [4 ]
Wang, Jin [5 ]
Schwaiger, Ruth [5 ,6 ]
Riedel, Ralf [3 ]
Kolb, Ute [1 ,7 ]
Lepple, Maren [8 ]
Pundt, Astrid [2 ]
机构
[1] Tech Univ Darmstadt, Inst Appl Geosci, Schnittspahnstr 9, D-64287 Darmstadt, Germany
[2] Karlsruhe Inst Technol KIT, Inst Appl Mat IAM, Engelbert Arnold Str 4, D-76131 Karlsruhe, Germany
[3] Tech Univ Darmstadt, Inst Mat Sci, Otto Berndt Str 3, D-64287 Darmstadt, Germany
[4] DECHEMA Res Inst, Mat & Corros, Theodor Heuss Allee 25, D-60486 Frankfurt, Germany
[5] Forschungszentrum Julich, Inst Energy & Climate Res IEK, Wilhelm Johnen Str, D-52428 Julich, Germany
[6] Rhein Westfal TH Aachen, Chair Energy Engn Mat, D-52056 Aachen, Germany
[7] Johannes Gutenberg Univ Mainz, Ctr High Resolut Electron Microscopy EMC M, Duesbergweg 10-14, D-55128 Mainz, Germany
[8] Justus Liebig Univ Giessen, Dept Inorgan & Analyt Chem, Heinrich Buff-Ring 17, D-35392 Giessen, Germany
关键词
field-assisted sintering technique; microstructures; nanoindentation; polymer-derived ceramics; silicon carbide; transition metal carbides; ultra-high temperature ceramics; SOURCE-PRECURSOR SYNTHESIS; HIGH-TEMPERATURE CERAMICS; SILICON-CARBIDE; OXIDATION RESISTANCE; SIGNIFICANT IMPROVEMENT; SPARK; NANOCOMPOSITES; BEHAVIOR; HAFNIUM; HFC;
D O I
10.1002/adem.202301841
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The high-temperature microstructural evolution and mechanical properties of two SiC-based polymer-derived ceramics with different Hf:Ta molar ratiosare investigated using electron microscopy techniques and manipulated bynanoindentation. The as-pyrolyzed ceramic powder consists of an amorphous (HfxTa1-x)C(N,O) structure (where x=0.2, 0.7) with localized nanocrystallinetransition metal carbides (TMCs). Subsequent application of the field-assisted sintering technique (FAST) for high-temperature consolidation results in acrystalline (HfxTa1-x)C/SiC ultra-high temperature ceramic nanocomposite. Themicrostructure contains powder particle-sized grains and sinter necks betweenthe former powder particles. The powder particles consist of a beta-SiC matrix andsmall TMCs. Large TMCs are observed on the internal surfaces of former powderparticles. This is due to the pulsed direct current and the resulting Joule heatingthat facilitates diffusion as well as oxygen impurities. Sinter necks of large beta-SiCgrains form during the FAST process. The microstructural regions are assessedusing high-throughput nanoindentation. The hardness for SiC/(Hf0.7Ta0.3)C ismeasured on the formed grains and the sinter necks giving mean hardnessvalues of about 27 and 37 GPa, respectively
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页数:17
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