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The influence of microstructure and texture on the mechanical properties of rock tempered archaeological ceramics

机译:微观结构和质地对岩石回火考古陶瓷力学性能的影响

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摘要

The influence of tempering and firing practices on the fracture strength and fracture energy of traditional pottery is presented, focusing on the mechanical behaviour of low-calcareous ceramics and how it compares to that of comparable calcareous ceramics. Material tests on experimental briquettes show that the measured increase in fracture strength upon firing is linked to the degree of vitrification in the ceramic matrix and to the development of porosity. The addition of aplastic inclusions reduces fracture strength, with platy temper affecting strength levels to a lesser degree. In earthenware, high fracture energy can normally be obtained by adding high amounts of aplastic inclusions as temper. While the fracture energy of granite-tempered ceramics remains approximately constant at high firing temperatures, for phyllite-tempered materials maximum values are found at intermediate temperatures. Regarding archaeological ceramics, the data presented here are anticipated to contribute to our understanding of technological choices in their manufacture. (C) 2014 Elsevier Ltd. All rights reserved.
机译:本文介绍了回火和烧成方式对传统陶器的断裂强度和断裂能的影响,重点是低钙质陶瓷的机械性能及其与可比钙质陶瓷的比较。在试验性团块上进行的材料测试表明,烧成后测得的断裂强度增加与陶瓷基体中的玻璃化程度以及孔隙率的增长有关。再生障壁的加入降低了断裂强度,板状回火对强度水平的影响较小。在陶器中,通常可以通过添加大量的塑性再生夹杂物作为回火来获得高断裂能。在高温烧制下,花岗岩回火陶瓷的断裂能大致保持恒定,而对于千层石回火材料,其断裂能在中等温度下达到最大值。关于考古陶瓷,预计此处提供的数据将有助于我们了解其制造中的技术选择。 (C)2014 Elsevier Ltd.保留所有权利。

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