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首页> 外文期刊>Journal of Materials Engineering and Performance >Mechanical Strength and Thermal Conductivity of Modified Expanded Vermiculite/Forsterite Composite Materials
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Mechanical Strength and Thermal Conductivity of Modified Expanded Vermiculite/Forsterite Composite Materials

机译:改性膨胀Ver石/镁橄榄石复合材料的机械强度和导热系数

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摘要

The mechanical and thermal insulation properties of expanded vermiculite (EV)/forsterite composite materials before and after the modification of EV by in situ alumina gel were characterized by three-point bending test, compressive strength test, and the flat-plate method for the determination of the thermal conductivity. The estimation method for the determination of the thermal conductivity of modified EV/forsterite composite materials was put forward, and the thermal conductivity in case of a high content of modified EV (the substitution rate of modified EV is more than 50 wt.%) is forecasted in this paper. The results show that, the mechanical properties and thermal insulation properties of the composite materials were significantly improved by increasing the modified EV content. When the substitution rate of modified EV was 50 wt.%, the flexural and compressive strength were 11.55 and 22.80 MPa, improved by 23.8 and 44.9%, respectively, compared with the unmodified sample; and the thermal conductivity was 0.169 W/m/K (at 1073 K), improved by 30.5%. The estimated thermal conductivities of modified EV/forsterite composite materials show good agreement with that of experiments, and the thermal conductivity of modified EV/forsterite composite materials was 0.157 W/m/K (at 1073 K) in case the substitution rate of modified EV was 100 wt.% through estimation.
机译:通过三点弯曲试验,抗压强度试验和平板法测定膨胀expanded石/镁橄榄石复合材料在原位氧化铝凝胶改性前后的机械和隔热性能。的导热系数。提出了确定改性EV /镁橄榄石复合材料热导率的估算方法,当改性EV含量高(改性EV的取代率大于50 wt。%)时,其热导率为在本文中进行了预测。结果表明,通过提高改性EV含量,复合材料的机械性能和隔热性能得到了显着改善。当改性EV的取代率为50wt。%时,抗弯强度和抗压强度分别为11.55和22.80 MPa,与未改性样品相比分别提高了23.8和44.9%;导热系数为0.169 W / m / K(在1073 K时),提高了30.5%。改性EV /镁橄榄石复合材料的热导率估算值与实验值吻合良好,在改性EV替代率下,改性EV /镁橄榄石复合材料的热导率为0.157 W / m / K(1073 K)。通过估计为100重量%。

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