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Test and Analysis of Steel Cable Isolator for Medical Equipments in Field Vehicle

机译:现场医疗设备钢缆隔离器的试验与分析

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摘要

Medical equipment systems are precision system. There are some vibrations and impact in field vehicles from road or field environments. Therefore, shock absorber is significant in protection of medical equipment in moving vehicles. The objective of this paper is to provide a systematic investigation to design or evaluation of a shock absorber for protection of medical equipment system in harsh vibration-impact environment. A novel wireless damping shock absorber is designed and manufactured through coupling friction and spring. The physical mechanism of a prototype shock absorber is systematically investigated by dynamic test. A nonlinear dynamic model for the shock absorber is presented by analyzing the internal frictional dynamic phenomenon with respect to the prototype. Comparisons between experimental data confirm the validity of the model. In the meantime, evaluation of the importance of some key factors by using the mathematical model for designing is discussed. It shows amplitude and frequency of excitation, as well as ratio of damping area are the key factors to ensure the performances of the shock absorber. The change of these factors will change the working characteristics and performances of the shock absorber.
机译:医疗设备系统是精密系统。来自道路或现场环境的现场车辆存在一些振动和影响。因此,减震器在移动车辆中保护医疗设备方面是显着的。本文的目的是提供对设计或评估防震器的系统调查,以保护医疗设备系统在苛刻的振动冲击环境中。通过联接摩擦和弹簧设计和制造新型无线阻尼减震器。通过动态测试系统地研究了原型减震器的物理机制。通过分析与原型的内部摩擦动态现象分析内部摩擦动态现象来提出减震器的非线性动态模型。实验数据之间的比较证实了模型的有效性。与此同时,讨论了通过使用使用用于设计的数学模型来评估一些关键因素的重要性。它显示了激发的幅度和频率,以及阻尼区域的比率是确保减震器的性能的关键因素。这些因素的变化将改变减震器的工作特征和性能。

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