Seismic vibration control of suspended ceilings in electronics factories

Author:

Chen Yung-Tsang1,Lee Chien-Liang2,Soo Lon Wah William3,Chen Mei-Yu4,Wang Yen-Po5,Chen Jui-Kun6,Yu Hsing-Chih7

Affiliation:

1. Associate Professor, Department of Civil Engineering, University of Nottingham Ningbo China, Ningbo, China (corresponding author: )

2. Associate Professor, School of Civil Engineering and Architecture, Xiamen University of Technology, Xiamen, China

3. Lecturer, Department of Civil Engineering, Waikato Institute of Technology, Hamilton, New Zealand

4. Master student, Department of Civil Engineering, National Yang Ming Chiao Tung University, Hsinchu, Taiwan

5. Professor, Department of Civil Engineering, National Yang Ming Chiao Tung University, Hsinchu, Taiwan

6. Deputy General Manager, Macronix International Co., Ltd, Hsinchu, Taiwan

7. Manager, Macronix International Co., Ltd, Hsinchu, Taiwan

Abstract

In the semiconductor and liquid crystal display (LCD) industries, suspended ceilings are widely used in wafer and LCD panel fabrication plants (fabs). Despite several preventive measures having been taken, substantial financial losses have been incurred in past earthquakes, with one of the main causes attributed to damage or collapse of ceilings due to excessive ceiling sway during earthquakes. A practical approach of incorporating customised viscous dampers into suspended ceilings to mitigate their seismic response is described in this article. Unlike the convention in most fabs, where diagonal bracing rods are added between suspended ceilings and the structural floor slab to mitigate ceiling vibration, this new approach installs customised viscous dampers in between the ceiling and the column/wall. An analytical model to simulate the vibration of a suspended ceiling was developed. Shake table tests of the ceiling–structure model were then conducted to verify the effectiveness and feasibility of the proposed approach. The results indicated that, when equipped with viscous dampers, the displacement responses of a suspended ceiling can be significantly reduced. Incorporating the dampers into the ceiling with added bracing rods was found to give the best seismic performance.

Publisher

Thomas Telford Ltd.

Subject

Building and Construction,Civil and Structural Engineering

Reference21 articles.

1. Chen SW (2017) A Study on Seismic Vibration Control of Automated Stocker System Using Customized Fluid Dampers for Semiconductor Industry. Master's thesis, National Chiao-Tung University, Hsinchu, Taiwan.

2. Experimental study on seismic vibration control of stockers in wafer and LCD panel fabs

3. Shake table tests of a full-scale two-story sheathing-braced cold-formed steel building

4. Evaluation of seismic dynamic behaviour of drywall partitions, façades and ceilings through shake table testing

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