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首页> 外文期刊>Modern Mechanical Engineering >Design, Development and Testing of an Air Damper to Control the Resonant Response of a SDOF Quarter-Car Suspension System
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Design, Development and Testing of an Air Damper to Control the Resonant Response of a SDOF Quarter-Car Suspension System

机译:用于控制SDOF四分之一汽车悬架系统共振响应的空气阻尼器的设计,开发和测试

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An air damper possesses the advantages that there are no long term changes in the damping properties, there is no dependence on working temperature and additionally, it has less manufacturing and maintenance costs. As such, an air damper has been designed and developed based on the Maxwell type model concept in the approach of Nishihara and Asami [1]. The cylinder-piston and air-tank type damper characteristics such as air damping ratio and air spring rate have been studied by changing the length and diameter of the capillary pipe between the air cylinder and the air tank, operating air pressure and the air tank volume. A SDOF quarter-car vehicle suspension system using the developed air enclosed cylinder-piston and air-tank type damper has been analyzed for its motion transmissibility characteristics. Optimal values of the air damping ratio at various values of air spring rate have been determined for minimum motion transmissibility of the sprung mass. An experimental setup has been developed for SDOF quarter-car suspension system model using the developed air enclosed cylinder-piston and air-tank type damper to determine the motion transmissibility characteristics of the sprung mass. An attendant air pressure control system has been designed to vary air damping in the developed air damper. The results of the theoretical analysis have been compared with the experimental analysis.
机译:空气阻尼器具有的优点是,阻尼特性没有长期变化,不依赖于工作温度,另外,它的制造和维护成本较低。因此,在Nishihara和Asami [1]的方法基础上,根据Maxwell型模型概念设计和开发了空气挡板。通过改变气缸和储气罐之间的毛细管长度和直径,工作气压和储气罐容积,研究了气缸活塞和储气罐式减震器的特性,例如空气阻尼比和空气弹簧刚度。 。使用已开发的封闭式气缸活塞和空气罐式减震器的SDOF四分之一车辆悬架系统的运动传递特性已得到分析。为了使簧载质量的最小运动传递性,已经确定了在各种空气弹簧刚度值下的空气阻尼比的最佳值。已为SDOF四分之一车悬架系统模型开发了实验装置,该模型使用已开发的气密式气缸活塞和气罐式减震器来确定簧载质量的运动传递特性。附带的气压控制系统已被设计为改变已开发的空气阻尼器中的空气阻尼。将理论分析的结果与实验分析进行了比较。

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