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Multifaced stone and ceramic moulds from Bronze Age Anatolia : building an analytical protocol of mould properties and behavior during the process of metal casting

机译:青铜时代安纳托利亚的多面石材和陶瓷模具:建立金属铸造过程中模具性能和行为的分析协议

摘要

A three phase analytical protocol is developed to systematize the study of multifaceted serpentinite bronze-casting moulds from Bronze Age Anatolia (ca. 3500-1700 B.C.). These moulds represent a class of metal processing tools that reflect material properties and perhaps also social concerns in their development and use. In phase I of the protocol, standard serpentinite tiles are heated to known temperatures and the crack density and ineral changes at each temperature are determined using scanning electron microscopy (SEM) and energy dispersive x-ray (EDX) analysis. These results then serve to calibrate the cracking and mineralogical behaviors of serpentinite replica moulds used in controlled casting experiments during phase II. Metallography on several phase II cast objects provides additional information on heat flow through the stone. In phase III, the protocol is modified appropriately for the non-destructive study of four archaeological moulds using x-ray diffraction (XRD), x-ray fluorescence (XRF), and SEM. The applicability of the protocol to other stone and ceramic materials is discussed.
机译:开发了一个三相分析协议以系统化研究来自青铜器时代安纳托利亚(约公元前3500-1700年)的多面蛇纹岩青铜铸模。这些模具代表了一类金属加工工具,它们反映了材料特性以及在开发和使用过程中的社会问题。在方案的第一阶段,将标准蛇纹石砖加热到已知温度,并使用扫描电子显微镜(SEM)和能量色散X射线(EDX)分析确定每种温度下的裂纹密度和内部变化。然后,这些结果可用于校准第二阶段受控铸造实验中使用的蛇纹岩复制品模具的开裂和矿物学行为。几个II期铸件上的金相学提供了有关流过石材的热流的更多信息。在阶段III中,使用X射线衍射(XRD),X射线荧光(XRF)和SEM对四个考古模型的无损研究进行了适当修改。讨论了该协议对其他石材和陶瓷材料的适用性。

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