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A novel squeeze mode based magnetorheological valve: design, test and evaluation

机译:基于新型挤压模式的磁流变阀:设计,测试和评估

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Magnetorheological (MR) devices have been investigated intensively nowadays, of which MR valve is an important and hot application with the challenges of acquiring high pressure drop within compact configurations. Hence, a novel squeeze mode based MR valve (SMRV) is proposed in this paper, with highlights of high pressure drop and low power consumption within a compact and transplantable structure. SMRV's characteristics are studied and its core parts are designed including the initial gaps, magnetic circuit and returning spring. The uniform-saturation magnetic intensity principle is proposed and a co-simulation optimal platform is developed to optimize magnetic intensity of the SMRV dimensions. Then, a prototype is developed and its steady-state performance is evaluated. The test results demonstrate that a pressure drop of 10.8 MPa and a controllable ratio of 5 at 1.0 A applied current are achieved within a transplantable configuration. Meanwhile, SMRV only consumes 1/400W control power to dissipate 1W fluid power and its power-volume consumption rate, P-C.V/P-D, is 3.3 x 10(2) mm(3), which has a brilliant application prospect in hydraulic or mechatronic systems.
机译:如今,磁流变(MR)装置已经得到了广泛的研究,其中MR阀是重要且热门的应用,其挑战是在紧凑的结构中获得高压降。因此,本文提出了一种基于挤压模式的新型MR阀(SMRV),其特点是在紧凑且可移植的结构中具有高压降和低功耗的特点。研究了SMRV的特性,设计了SMRV的核心部件,包括初始间隙,磁路和复位弹簧。提出了均匀饱和磁强度原理,并开发了一个联合仿真的最佳平台,以优化SMRV尺寸的磁强度。然后,开发原型并评估其稳态性能。测试结果表明,在可移植配置中,在施加1.0 A电流时,压降为10.8 MPa,可控比率为5。同时,SMRV仅消耗1 / 400W的控制功率来耗散1W的流体功率,其功率体积消耗率PC.V / PD为3.3 x 10(2)mm(3),在液压或液压方面具有广阔的应用前景。机电系统。

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