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Thermal conductivity and compressive strength anisotropy in vermiculite–ceramic composites with layered structure

机译:层状structure石-陶瓷复合材料的导热系数和抗压强度各向异性

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High strength vermiculite–ceramic composites with a layered structure were fabricated by adding cellulose fibers as a pore former and by simple uniaxial pressing and subsequent sintering. During uniaxial pressing, the cellulose fibers were aligned perpendicular to the pressing direction and formed an aligned pore structure during sintering. The thermal conductivity (0.81 W/m·K) and compressive strength (39 MPa) of the composite fabricated from 35 mass % vermiculate, 30 mass % SiO2, 10 mass % Al2O3 and 25 mass % cellulose fibers, measured perpendicular to the pressing direction, were higher than those (0.52 W/m·K and 28 MPa) measured parallel to the pressing direction. The anisotropy in both thermal conductivity and compressive strength was attributed to the microstructural anisotropy.
机译:通过添加纤维素纤维作为成孔剂,并通过简单的单轴压制和随后的烧结,制造出具有层状结构的高强度ver石-陶瓷复合材料。在单轴压制过程中,纤维素纤维垂直于压制方向排列,并且在烧结期间形成排列的孔结构。由35质量%的,石,30质量%的SiO 2,10质量%的Al 2制成的复合材料的导热率(0.81 W / m·K)和抗压强度(39 MPa)。垂直于加压方向测得的/ sub> O 3 和25质量%的纤维素纤维高于平行于加压方向测得的(0.52 W / m·K和28 MPa)。导热率和抗压强度的各向异性都归因于微观结构的各向异性。

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