Abstract Investigating the effect of andalusite on mechanical strength and thermal shock resistance of cordierite-spodumene composite ceramics
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Investigating the effect of andalusite on mechanical strength and thermal shock resistance of cordierite-spodumene composite ceramics

机译:堇青石对堇青石 - 跨丁烯复合陶瓷机械强度和热抗冲击性的影响

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AbstractFor increasing working stability of cordierite-spodumene composite ceramics for solar heat transmission pipeline, andalusite was utilized as modified additive to improve mechanical strength and thermal shock resistance of the composite ceramics. The effects of andalusite on densification, mechanical strength, thermal stability, phase composition and microstructure were studied. The experiment results showed that andalusite significantly influenced bending strength and thermal shock resistance of the composite ceramics. Especially, specimen B1 with 5wt% andalusite sintered at 1400°C achieved the best performances. The linear shrinkage, water absorption, apparent porosity, bulk density and bending strength were 5.62%, 0.02%, 0.06%, 2.19gcm?3and 104.94MPa, respectively. After 30 thermal shock cycles (wind cooling from 1100°C to room temperature), the residual strength of the specimen increased to 110.65MPa, accompanying with ?5.44% strength loss rate. The XRD and SEM analysis illustrated that mullite grains with short rod-like shape could prevent crack growth of inter-granular fracture to enhance bending strength of the specimens. Furthermore, the generation of β-spodumene grains with low thermal expansion coefficient after thermal shock improved thermal shock resistance of the composite ceramics. It is considered that the cordierite-spodumene composite ceramics with high densification, good mechanical strength and excellent thermal stability can be a potential material for high temperature thermal transmission pipeline in solar thermal power generation.]]>
机译:<![cdata [ 抽象 用于增加太阳能热传输管道的堇青石 - 跨越复合陶瓷的工作稳定性,并为改性添加剂,以提高机械强度和热抗冲击性复合陶瓷。并研究了安恒星术对致密化,机械强度,热稳定性,相组合物和微观结构的影响。实验结果表明,安恒星术着显着影响复合陶瓷的弯曲强度和热抗震性。特别是,在1400℃下烧结5wt%andalusite的标本B1达到了最佳性能。线性收缩,吸水,表观孔隙率,散装密度和弯曲强度分别为5.62%,0.02%,0.06%,2.19gcm 3 和104.94mpa 。 30次热冲击循环(从1100°C到室温的风冷却)后,样品的剩余强度增加到110.65MPa,随之而来的效力损失5.44%。 XRD和SEM分析说明了具有短杆状形状的莫来石颗粒可以防止颗粒间骨折的裂纹生长以增强样品的弯曲强度。此外,热冲击后热膨胀系数的β-跨越系数的产生改善了复合陶瓷的热抗震性。据认为,具有高致密化,良好的机械强度和优异的热稳定性的堇青石 - 跨化合物复合陶瓷可以是太阳能热发电中高温热传输管道的潜在材料。 ]]>

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