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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Experimental investigation and material modelling of fresh and UV aged Japanese lacquer (Urushi)
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Experimental investigation and material modelling of fresh and UV aged Japanese lacquer (Urushi)

机译:新鲜和紫外线老化日本漆(乌鲁西)的实验研究和材料建模

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摘要

Urushi is a complex natural polymer that has been used to protect and decorate objects for many hundreds of years. It is an important material as decorated objects can obtain great value and historical worth. These objects are often exposed to environments that are detrimental to both their aesthetic appeal and structural performance and restoration and conservation procedures are needed to preserve these objects over long periods of time. The conservation work requires a detailed understanding of the material properties of the Urushi lacquer film. However, Urushi exhibits complex viscoelastic behaviour under load that has not been fully characterised to date. This paper presents the sample preparation technique and experimental data from a comprehensive mechanical testing programme for Urushi film. The viscoelastic response was investigated by tests at various loading speeds and creep and recovery tests. A number of constitutive models were fitted to the creep and recovery data and a good fit was seen with a number of these, most notably a modified generalized Kelvin fluid (MGKF) model. Some samples of Urushi were artificially aged by laboratory exposure to ultraviolet (UV) irradiation before mechanical testing. The ageing increased strength and reduced the ductility of the Urushi and it was shown that the MGKF model was capable of modelling the ageing behaviour by using ageing-time dependent material parameters. The models were implemented in the commercial FEA software ABAQUS, offering the potential to accurately model the Urushi behaviour in a complex structure.
机译:Urushi是一种复杂的天然聚合物,已被用于保护和装饰物体数百年。它是一种重要的材料,因为装饰物可以获得巨大的价值和历史价值。这些物体经常暴露在不利于其美学吸引力和结构性能的环境中,并且需要恢复和保护程序以长时间保存这些物体。保护工作需要对Urushi漆膜的材料特性有详细的了解。然而,迄今为止,Urushi在载荷下表现出复杂的粘弹性行为,至今尚未完全表征。本文介绍了来自Urushi薄膜的全面机械测试程序的样品制备技术和实验数据。通过在各种加载速度下的测试以及蠕变和恢复测试研究了粘弹性响应。将许多本构模型拟合到蠕变和恢复数据,并且其中许多模型都表现出良好的拟合性,其中最著名的是改良的广义开尔文流体(MGKF)模型。在进行机械测试之前,通过实验室在紫外线(UV)照射下对一些Urushi样品进行了人工时效处理。时效增加了Urushi的强度并降低了其延展性,结果表明MGKF模型能够通过使用时效时间相关的材料参数来模拟时效行为。这些模型在商业FEA软件ABAQUS中实现,为在复杂结构中准确建模Urushi行为提供了潜力。

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