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Design of metrology laboratory and microfab center against vibration from shakers laboratory of the new Hong Kong University of Science and Technology

机译:新香港理工大学振动器实验室振动测量研究中心设计

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The design of vibration-sensitive laboratories normally requires the protection of these areas from incoming vibration generated by plant, road traffic and footfall impacts. The compact nature of the new HKUST campus requires a more exact design than one would find for a spacious campus with laboratory buildings nicely separated. The HKUST user required a centralized laboratory service with easy access to the major testing facilities. This resulted in the location of vibration sensitive areas (micro- fabrication center and metrology laboratory) close to a Structural Laboratory housing large shakers. These were to be used for seismic and modal testing of structural elements and prototypes. The design of the support structure for the shakers, known as the reaction floor, was critical to the success of the building. Particular attention was paid to the design and construction of the foundations for the reaction floor. For controlling the vibration generated by 10-ton-force rated shakers, a massive structure with caisson supports was designed for the reaction floor and reaction wall. Finite element models were employed to calculate the response of the laboratory floors located above the reaction floor in other parts of the building. The metrology laboratory structure and the foundation design of the reaction floor and a wafer fab built in the U.K. will be presented.
机译:振动敏感实验室的设计通常需要保护这些区域免受植物,道路交通和脚步影响产生的入口振动。新的香港电士校园的紧凑性质需要一个更精确的设计,而不是一个人会找到一个宽敞的校园,与实验室建筑很好。 HKUST用户需要一个集中式实验室服务,方便地访问主要的测试设施。这导致振动敏感区域(微制造中心和计量实验室)的位置接近结构实验室大型振动器。这些用于对结构元素和原型的地震和模态测试。作为反应楼层的振动器的支撑结构的设计对于建筑的成功至关重要。特别注意的是反应地板基础的设计和建设。为了控制10吨力额定振动器产生的振动,设计了具有沉箱支架的大规模结构,用于反应地板和反应壁。采用有限元模型来计算位于建筑物其他地区的反应地板上方的实验室地板的响应。将呈现Metrology实验室结构和反应地板的基础设计和U.K的晶圆厂。

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