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Production of anorthite refractory insulating firebrick from mixtures of clay and recycled paper waste with sawdust addition

机译:由粘土和再生纸废料的混合物加锯末生产耐钙铁矿耐火隔热耐火砖

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摘要

Production of porous anorthite refractory insulating firebricks from mixtures of two different clays (K244 clay and fireclay), recycled paper processing waste and sawdust addition are investigated. Suitability of alkali-containing-clay, low-alkali fireclay, pore-making paper waste and sawdust in the products was evaluated. Prepared slurry mixtures were shaped, dried and fired. Highly porous anorthite ceramics from the mixtures with up to 30% sawdust addition were successfully produced. Physical properties such as bulk density, apparent porosity, percent linear change were investigated as well as the mechanical strengths and thermal conductivity values of the samples. Thermal conductivities of the samples produced from fireclay and recycled paper waste decreased from 0.25 W/mK (1.12 g/cm 3) to 0.13 W/mK (0.64 g/cm 3) with decreasing density. Samples were stable at high temperatures up to 1100 °C, and their cold strength was sufficiently high. The porous anorthite ceramics produced in this study can be used for insulation in high temperature applications. © 2011 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:研究了由两种不同粘土(K244粘土和耐火粘土)的混合物,再生纸加工废料和锯末添加所产生的多孔钙长石耐火隔热耐火砖。评估了产品中含碱粘土,低碱耐火粘土,造孔废纸和锯末的适用性。将制得的浆料混合物成形,干燥并烧制。成功地从混合物中添加了高达30%的木屑,制成了高度多孔的钙长石陶瓷。研究了诸如堆积密度,表观孔隙率,线性变化百分比等物理性质,以及样品的机械强度和导热系数。随着密度的降低,由粘土和回收废纸制成的样品的热导率从0.25 W / mK(1.12 g / cm 3)降低至0.13 W / mK(0.64 g / cm 3)。样品在高达1100°C的高温下稳定,并且其冷强度足够高。本研究中生产的多孔钙长石陶瓷可用于高温应用中的绝缘。 ©2011 Elsevier Ltd和Techna Group S.r.l.版权所有。

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