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Improvement of lightweight floating ceiling design with optimum stiffener and isolator locations

机译:改进了轻型浮顶设计,具有最佳的加强筋和隔离物位置

摘要

In this paper, a new design concept of a lightweight floating ceiling with a special arrangement of stiffener beams and isolators is proposed to enhance vibration isolation performance. The key design parameters of resonant frequency of bending and mode shape factor on vibration transmission are determined with some simple formulae. Structural vibrations and noise radiation are evaluated with finite element models (FEM) for various designs. The optimum ceiling designs are applied in a studio, and field measurements with reliable frequency range of 30-400 Hz are conducted to confirm the theoretical results. The analyses ascertain that four design features ensure the optimum vibration isolation performance: the stiffener beams must be installed at the nodal line of fundamental bending resonance of the plate; smaller panels should be applied instead of a large panel covering the whole area of the ceiling, and joints should be free; the isolators should be placed at the nodal point of the bending mode of the plate; and the fundamental bending resonance frequency must not match the modal critical frequency. The proposed stiffened wooden panel design achieved a noise and vibration reduction of 20 dB in the frequency range of 40-100 Hz, and was better than the performance of a concrete floating floor.
机译:在本文中,提出了一种新的设计概念,即一种轻型的浮动天花板,其中特别设计了加强梁和隔离器,以提高隔振性能。通过一些简单的公式确定了弯曲共振频率和振型系数对振动传递的关键设计参数。使用各种设计的有限元模型(FEM)评估结构振动和噪声辐射。最佳的天花板设计已在工作室中应用,并进行了30-400 Hz可靠频率范围的现场测量,以确认理论结果。分析确定了四个设计特征可确保最佳的隔振性能:加劲肋必须安装在板基本弯曲共振的节点线上;应该使用较小的面板,而不是覆盖天花板整个区域的大型面板,并且接缝应该是自由的;隔离器应放置在板弯曲模式的节点处;并且基本弯曲共振频率必须与模态临界频率不匹配。所提出的加劲木板设计在40-100 Hz的频率范围内实现了20 dB的噪声和振动降低,并且比混凝土浮地地板的性能更好。

著录项

  • 作者

    Hui CK; Ng CF;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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