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Combined use of surface and micro-analytical techniques for the study of ancient coins

机译:表面和微观分析技术的结合用于研究古钱币

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By means of the combined use of surface and micro-analytical techniques the surface chemical composition of ancient coins and some aspects of their manufacturing techniques and of degradation mechanisms have been elucidated. Two case histories are described concerning silver Roman Republican coins and some coins plated with thin films of silver and gold. In particular, the coinage methods, the silvering and gilding techniques and the origin of the embrit-tlement of these selected Roman coins have been studied by means of the combined use of selected-area X-ray photoelectron spectroscopy (SA-XPS) and scanning electron microscopy and energy-dispersive spectrometry (SEM+EDS). This innovative approach has been utilised in order to gain further insight into the microchemical structure of the external regions of the coins as well as of the bulk features. The results show the use of mercury to coat a copper or silver core with a thin film of precious metals that could be considered the most important advance in the technology of gilding to be made in antiquity. Furthermore, the microchemical investigation of brittle Roman silver coins has allowed us to identify the origin of this troublesome problem. The microchemical results indicate that brittleness is induced by the presence of a low amount of lead that is retained in supersaturated solution when the cast blank was produced. This latter element segregates at the grain boundaries during the coin production and the subsequent long-term ageing at room temperature, thus inducing the alloy fracturing along the weakened grain boundaries.
机译:通过表面和微观分析技术的结合使用,已经阐明了古钱币的表面化学成分及其制造技术和降解机理的某些方面。描述了两种有关银罗马共和党硬币和一些镀有银和金薄膜的硬币的历史记录。特别是,通过结合使用选定区域的X射线光电子能谱(SA-XPS)和扫描技术,研究了这些选定的罗马硬币的造币方法,镀银和烫金技术以及装饰的起源。电子显微镜和能量色散光谱(SEM + EDS)。为了获得对硬币外部区域的微观化学结构以及整体特征的进一步了解,已经利用了这种创新方法。结果表明,使用汞在铜芯或银芯上涂上一层贵金属薄膜,可以认为这是古代镀金技术中最重要的进步。此外,对脆性罗马银币的微化学研究使我们能够确定这个麻烦问题的根源。微观化学结果表明,当生产铸坯时,过低的铅保留在过饱和溶液中会导致脆性。后一元素在硬币生产过程中以及随后在室温下的长期时效过程中在晶界处偏析,从而导致合金沿着弱化的晶界破裂。

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