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首页> 外文期刊>Journal of intelligent material systems and structures >Integrated semi-active seat suspension for both longitudinal and vertical vibration isolation
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Integrated semi-active seat suspension for both longitudinal and vertical vibration isolation

机译:集成式半主动式座椅悬架,可纵向和纵向隔振

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"Functional integration" is to integrate two or multiple systems or mechanisms that are independent with each other and to realize the two or multiple functions using only one actuation system. Maximization of engineering applications of actuation systems could be achieved through the use of the "functional integration" concept-based structural design. In this article, an integrated semi-active seat suspension, mainly composed of a switching mechanism, a transmission amplification mechanism, and a damping force- or torque-controllable rotary magnetorheological (MR) damper working in pure shear mode, for both longitudinal and vertical vibration attenuation, is proposed, designed, and fabricated. The switching mechanism employs the parallelogram frames as a motion guide which keeps the seat moving longitudinally and vertically. Both longitudinal and vertical motions are transformed into a reciprocating rotary motion that is transmitted to the rotary MR damper after an amplification by a gear mechanism. The torque generated by the MR damper can be tuned by adapting the applied current in real time, and hence, effective two-dimensional vibration control of the seat could be realized. The mathematical model of the semi-active seat suspension system is established, and vibration isolation performance of the system is simulated and analyzed. Based on the established experimental test rig, the prototype of the semi-active seat suspension system is tested, and the results of the mathematical model and the experimental test are compared.
机译:“功能集成”是将彼此独立的两个或多个系统或机制集成在一起,并仅使用一个致动系统来实现两个或多个功能。通过使用基于“功能集成”概念的结构设计,可以实现执行系统的工程应用最大化。在本文中,一种集成式半主动式座椅悬架,主要由开关机构,变速器放大机构和在纯剪切模式下工作的纵向或垂直方向上的阻尼力或扭矩可控制的旋转磁流变(MR)阻尼器组成。提出,设计和制造振动衰减。切换机构采用平行四边形框架作为运动导向,可保持座椅纵向和纵向移动。纵向运动和垂直运动都转换为往复旋转运动,在通过齿轮机构放大后,传递到旋转MR阻尼器。 MR阻尼器产生的扭矩可以通过实时调整所施加的电流来调节,因此,可以实现座椅的有效二维振动控制。建立了半主动式座椅悬架系统的数学模型,并对系统的隔振性能进行了仿真分析。在已建立的试验台架的基础上,对半主动式座椅悬架系统的原型进行了试验,并比较了数学模型和试验结果。

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