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The Influence of Two Natural Reinforcement Fibers on the Hygrothermal Properties of Earthen Plasters in Mogao Grottoes of China
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作者 Wenbei Bi Zengfeng Yan +3 位作者 Huan Zhao Lixin Sun Xudong Wang Zhengmo Zhang 《Journal of Renewable Materials》 SCIE EI 2020年第12期1691-1710,共20页
Murals in Mogao Grottoes consist of three parts:support layer,earthen plasters and paint layer.The earthen plasters play a key role in the preservation of murals.It is a mixture of Dengban soil,sand,and plant fiber.Tw... Murals in Mogao Grottoes consist of three parts:support layer,earthen plasters and paint layer.The earthen plasters play a key role in the preservation of murals.It is a mixture of Dengban soil,sand,and plant fiber.Two different natural fibers,hemp fiber and cotton fiber,were reinforced to earthen plasters in the same percentage to evaluate the influence on hygrothermal performance.The two types of earthen plasters were studied:one containing hemp fiber in the fine plaster(HFP)and the other containing cotton fiber in the fine plaster(CFP).Specific heat capacity,dry thermal conductivity,water vapor permeability,and sorption isotherms were investigated.The results showed that the difference between two natural fibers has much more impact on the hygric properties(water vapor permeability and sorption isotherms)of earthen plasters than on their thermal performance(specific heat capacity and dry thermal conductivity).The CFP with higher density has higher thermal conductivity than the HFP with lower density.But no significant differences of specific heat capacity were observed.Compared with HFP,CFP used in murals can reduce the rate of water transfer and prevent salt from transferring water to the mural surface.The overall findings highlight that all these features of CFP are beneficial to the long-term preservation of murals.The study of the earthen plasters in Mogao Grottoes is of general significance,and the measured properties can be used to obtain coupled heat and moisture analysis of the earthen plasters and to dissect the degradation mechanism of murals. 展开更多
关键词 earthen plasters natural reinforced fibers hygrothermal properties dry thermal conductivity water vapor permeability sorption isotherms
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莫高窟壁画地仗层水汽吸附特征及其影响因素 被引量:2
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作者 李凤洁 王旭东 郭青林 《西北大学学报(自然科学版)》 CAS CSCD 北大核心 2020年第4期606-614,共9页
敦煌莫高窟是我国乃至世界上最重要的佛教遗址之一。洞窟壁画产生的病害大多与水盐运移有关,而作为导致病害的水汽来源之一,洞窟空气中水分主要通过吸附作用进入地仗层孔隙结构中。该文利用试验方法探究莫高窟地仗层土体的吸湿机理,并... 敦煌莫高窟是我国乃至世界上最重要的佛教遗址之一。洞窟壁画产生的病害大多与水盐运移有关,而作为导致病害的水汽来源之一,洞窟空气中水分主要通过吸附作用进入地仗层孔隙结构中。该文利用试验方法探究莫高窟地仗层土体的吸湿机理,并分析吸湿过程的影响因素。结果表明,在较低与较高的相对湿度下,地仗层土体吸湿的主要驱动力分别为短程吸附作用与毛细凝聚作用。对于莫高窟地仗层来说,由土颗粒比表面积与黏土矿物含量等因素影响的短程吸附作用较弱,因此低湿度条件下吸湿量较小。但在较高湿度条件下,地仗层中由土体中孔径分布影响的毛细凝聚作用明显增强,吸湿量显著增大。莫高窟地仗层平衡吸湿量开始明显增大的临界湿度大约在80%。此外,地仗层中澄板土与砂的比例是影响地仗层吸湿量的主要因素。试验结果为莫高窟壁画病害机理研究及预防性保护提供理论依据。 展开更多
关键词 地仗层 水汽吸附 等温吸附曲线 比表面积 毛细凝聚 孔径分布
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