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敦煌莫高窟壁画起甲机理研究

Study on flaking mechanism of Mogao Grottoes murals at Dunhuang

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【作者】 倪勇葛承滨汪万福武发思张国彬吉爱红

【Author】 NI Yong;GE Chengbin;WANG Wanfu;WU Fasi;ZHANG Guobin;JI Aihong;College of Mechanical and Electrical Engineering,Nanjing University of Aeronautics and Astronautics;Institute of Bio-inspired Structure and Material Protection,Nanjing University of Aeronautics and Astronautics;Conservation Institute of Dunhuang Academy;National Research Center for Conservation of Ancient Wall Paintings and Earthen Sites;Key Scientific Research Base of Conservation for Ancient Mural,State Administration for Cultural Heritage;

【机构】 南京航空航天大学机电学院南京航空航天大学仿生结构与材料防护研究所敦煌研究院保护研究所国家古代壁画与土遗址保护工程技术研究中心古代壁画保护国家文物局重点科研基地

【摘要】 研究敦煌莫高窟壁画的起甲机理,为壁画的起甲成因及其修复保护提供理论依据。通过ANSYS有限元建立温度场下壁画的内力作用模型,分析起甲壁画的临界受力状态。推断壁画温度场和应力场的产生及其分布规律,并观察壁画受热膨胀的结果。随着时间的变化,壁画与空气接触的表面的热量逐渐向内部均匀扩散,引起有一定厚度的壁画的温度梯度升高。壁画在温度场中受温差影响出现了明显的膨胀起甲现象,当起甲达到一定程度时,在外力作用下壁画就会出现脱落。

【Abstract】 The flaking mechanism of Mogao Grottoes murals at Dunhuang is studied to provide the theoretical foundation for flaking contributing factor of murals and its repair and conservation. The endogenetic action model of the murals under temperature field was established by ANSYS finite element analysis software to analyze the critical stress state of the flaking murals. The generation and distribution law of the murals temperature field and stress field are deduced,and the thermal expansion results of the murals are observed. As time goes on,the heat from the contact surface of the murals and air is evenly diffused to the internal layer of the murals gradually,which causes temperature increase with gradient of the murals with a certain thickness. The murals under the temperature field influenced by the temperature difference appears significant expansion and flaking phenomenon. When the flaking phenomenon reaches to a certain degree,the murals will fall off under exogenic action.

【关键词】 壁画起甲文物保护温度场
【Key words】 muralflakingheritage conservationtemperature field
【基金】 国家自然科学基金项目资助(51375232,31440031和31260136);江苏省自然科学基金面上项目资助(BK20141410)
  • 【文献出处】 现代电子技术 ,Modern Electronics Technique , 编辑部邮箱 ,2016年03期
  • 【分类号】K879.41
  • 【被引频次】11
  • 【下载频次】323
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