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大高宽比浮放馆藏文物运动状态影响因素研究

Research on influencing factors of freestanding cultural relics in a museum with high aspect ratio

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【作者】 杨维国葛家琪张家铭王萌刘佩邹晓光

【Author】 YANG Weiguo;GE Jiaqi;ZHANG Jiaming;WANG Meng;LIU Pei;ZOU Xiaoguang;School of Civil Engineering, Beijing Jiaotong University;China Aviation Planning and Design Institute (Group) Company;

【通讯作者】 张家铭;

【机构】 北京交通大学土木建筑工程学院中国航空规划设计研究总院有限公司

【摘要】 为更有效地探究浮放馆藏文物运动状态的影响因素,采用振动台试验和数值试验探究了单向水平激励下浮放文物运动状态的基本规律。选取质心高宽比为3.7的陶瓷花瓶分别在单向的简谐波和地震波下进行了振动台试验;根据实际尺寸建立了精细化的有限元模型并与试验结果进行对比,并利用验证后的有限元模型,对激励加速度、接触面的摩擦因数及展台面的倾斜度进行参数化分析。结果表明:试件的高宽比、形状,接触面的粗糙度和倾斜度以及激励的频率、幅值特性均是浮放系统运动状态的影响因素,其中运动状态对摩擦因数十分敏感;圆形底面的花瓶在单向激励下容易出现扭转现象,为保证浮放文物的安全,应尽量保持展台面水平。

【Abstract】 In order to explore the factors affecting the motion state of cultural relics in freestanding collection more effectively, a shaking table test and a numerical test were used to explore the basic law of the motion state of freestanding cultural relics under unidirectional horizontal excitation. The ceramic vase with a centroid aspect ratio of 3.7 was selected to carry out shaking table tests under unidirectional harmonic and seismic waves, respectively. According to the actual size, a fine finite element model was established and compared with experimental results, and the excitation acceleration, the friction coefficient of the contact surface and the inclination of the booth surface were parameterized by using the verified finite element model. Results show that the aspect ratio and shape of the specimen, the roughness and inclination of the contact surface, and the frequency and amplitude characteristics of the excitation are all factors affecting the motion state of the freestanding system. The motion state is very sensitive to the friction coefficient. The vase with circular bottom is easy to twist under one-way excitation. In order to ensure the safety of freestanding cultural relics, the level of the exhibition surface should be kept as far as possible.

【基金】 科技部国家重点研发计划(2019YFC1521000);中央高校基本科研业务费重点项目(2020JBZ110)
  • 【文献出处】 振动与冲击 ,Journal of Vibration and Shock , 编辑部邮箱 ,2022年24期
  • 【分类号】P315.9;G264
  • 【下载频次】16
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