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Effect of the BN content on the thermal shock resistance and properties of BN/SiO2 composites fabricated from mechanically alloyed SiBON powders

机译:BN含量对机械合金化SiBON粉体制备的BN / SiO 2 复合材料耐热冲击性能的影响

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Wave-transparent composites of BN/SiO2 were prepared via hot pressure sintering at 1650 °C of mechanically alloyed amorphous SiBON powders. The mechanical, dielectric and thermal properties and thermal shock resistance of the composites were carefully investigated with different BN contents. With increasing BN content, the flexural strength and fracture toughness of the composites increased first and then decreased. The sample with the composition of SiO2–5BN exhibited the highest flexural strength of 256.3 MPa and a fracture toughness of 3.15 MPa m1/2. The relative density decreased with the increase of BN content, which would influence the thermal properties and the thermal shock resistance of the composites. The formation of borosilicate glass and crystallization of fused silica in the surface at the high temperature greatly improved thermal shock resistance of the samples. The SiO2–6BN sample, possessing low relative density, exhibited the best thermal shock resistance, and the retained strength after a thermal shock of 1100 °C was 98.6% of the original strength. Besides excellent mechanical and thermal properties and thermal shock resistance, the as-sintered composites exhibited low dielectric constant (ε < 4.62) and loss tangent (tan?δ < 0.002), meeting the required values for high temperature wave-transparent materials.
机译:通过在1650°C下对机械合金化的非晶SiBON粉末进行热压烧结,制备了BN / SiO 2 的波透明复合材料。仔细研究了不同BN含量的复合材料的机械,介电和热性能以及耐热冲击性。随着BN含量的增加,复合材料的抗弯强度和断裂韧性先升高后降低。 SiO 2 –5BN组成的样品的最高弯曲强度为256.3 MPa,断裂韧性为3.15 MPa。m 1/2 < / sup> 。随着BN含量的增加,相对密度降低,这将影响复合材料的热性能和抗热震性。高温下硼硅酸盐玻璃的形成和熔融二氧化硅的结晶在表面上大大提高了样品的耐热冲击性。相对密度低的SiO 2 -6BN样品具有最佳的抗热震性,在1100°C的热冲击后保留强度为材料的98.6%。原始力量。烧结后的复合材料除了具有优异的机械和热性能以及耐热冲击性外,还具有较低的介电常数(ε <4.62)和损耗角正切(tan?δ <0.002),符合高温波透明材料的要求值。

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