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U.S.-Australia Cooperative Science: Development of Force-Frequency Shifting for Low Frequency Structural Vibrations Testing

U.S.-Australia Cooperative Science: Development of Force-Frequency Shifting for Low Frequency Structural Vibrations Testing
美国-澳大利亚合作科学:低频结构振动测试力频移的开发
批准号:
0115593
负责人:
Martin Trethewey
金额:
$2.69万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-09-01 至 2005-08-31

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中文摘要
翻译
0115593 Trethewey该奖项支持宾夕法尼亚州立大学的Martin Trethewey教授和澳大利亚维多利亚的莫纳什大学的Leonhard Koss教授之间为期三年的合作研究项目。 本项目将对低频结构振动测试的力频移(FFS)的发展进行研究。 土木和建筑结构的实验振动测试已被证明有助于健康评估和为有问题的设施开发振动吸收器。 这些目标系统的特征在于具有1)低自然频率,2)大质量,和3)高阻尼。 这些条件为实验模态测试或主动控制应用创建了一套苛刻的振动激励规范。 振动激励问题源于在低自然频率下产生高振幅力的固有困难。 研究的目标是开发和评估一种新型的低频振动激励技术,最终适用于民用,建筑和重型机械结构的振动激励。 通过机械调制过程,有效产生的高频激振力的分量被转移到低频。 这是移动的低频激励信号,是本研究的重点。 该项目汇集了两个具有互补专业知识和研究能力的实验室的努力。 大型系统振动测试的价值已经在提供与许多不同问题相关的有价值信息方面建立了良好的记录。 这方面的研究可以帮助评估桥梁结构健康,建筑物居住者的可接受性,风激运动,地震隔离性能和地板振动的敏感装置,如医疗MRI设备。 该项目通过研究生和本科生的参与促进国际人力资源。 通过交流思想和技术,该项目将扩大我们的基础知识,促进国际理解与合作。 研究结果将发表在国际科学期刊上,并将在美国和国外的科学会议上发表。
英文摘要
0115593TretheweyThis award supports a three year collaborative research project between Professor Martin Trethewey of the Pennsylvania State University and Professor Leonhard Koss of Monash University in Victoria, Australia. This project will undertake a study of the development of Force Frequency Shifting (FFS) for low frequency structural vibrations testing. Experimental vibration testing of civil and architectural structures has proven helpful in health assessment and in developing vibration absorbers for troublesome facilities. These target systems are characterized by having 1) low natural frequencies, 2) large mass, and 3) high damping. These conditions create a demanding set of vibration excitation specifications for experimental modal testing or active control applications. The vibration excitation problem stems from the inherently difficulty in creating high amplitude forces at low natural frequencies. The goal of the research is to develop and evaluate a novel low frequency vibration excitation technique ultimately suitable for vibration excitation of civil, architectural, and heavy machinery structures. Through a mechanical modulation process, a component of an efficiently generated high frequency excitation force is shifted to a low frequency. It is this shifted low frequency excitation signal that is the focus of this research. The project brings together the efforts of two laboratories that have complementary expertise and research capabilities. The value of vibration testing of large-scale systems has developed a proven track record of delivering valuable information in relation to a number of varied issues. Research in this are could assist in the assessment of bridge structural health, building occupant acceptability, wind excited motion, earthquake isolation performance and floor vibration for sensitive installations such as medical MRI equipment. The project advances international human resources through the participation of graduate and undergraduate students. Through the exchange of ideas and technology, this project will broaden our base of basic knowledge and promote international understanding and cooperation. Results of the research will be published in international scientific journals and will also be presented at scientific meetings in the U.S. and abroad.
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Development of Force-Frequency Shifting for Low Frequency Structural Vibration Testing
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