Thermal Properties and Thermal Fracture on Clay Bodies of Roofing Tiles during Firing

Minoru Tanaka, S. Sumita
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Abstract

Thermal properties and thermal fracture on the typical two kinds of clays of the roofing tile bodies i.e. chloritic "Awaji" roofing tile clay body and kaolinitic "Akashi" roofing tile clay body were studied at temperatures of 300•‹ to 700•Ž. Thermal properties observed were as follows: exoand endothermal phenomena on heating, heating weight loss, thermal expansion, bulk density, specific heat, thermal diffusivity, thermal conductivity, modulus of rupture and elasticity, and heat transfer coefficient. They were characteristic of dehydration of the clay minerals and quartz transformation. Assuming that a roofing tile body was a infinite slab of 1.6cm thickness, maximum safe heating or cooling rate "ƒÓmax" on the uniform heating or cooling and temperature difference causing fracture "ƒ¢Tf" were calculated from the following equations.
瓦片烧成过程中粘土体的热性能和热断裂
在300℃~ 700℃Ž温度范围内,研究了泥绿质“阿瓦基”瓦泥体和高岭石质“明石”瓦泥体两种典型粘土的热性能和热破裂。观察到的热性能如下:加热时的外热和吸热现象、加热失重、热膨胀、容重、比热、热扩散系数、导热系数、断裂弹性模量和传热系数。它们具有粘土矿物脱水和石英转化的特征。假设屋面瓦体为1.6cm厚度的无限大板,则均匀加热或冷却时的最大安全加热或冷却速率“ƒÓmax”和导致断裂的温差“f¢Tf”由下式计算。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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