青海大学 水利电力学院,西宁,810016
[ "李若冰, 硕士研究生," ]
[ "马山刚, 教授, 硕士生导师, 博士," ]
纸质出版:2025
移动端阅览
李若冰, 马山刚, 金福宝, 等. 预结构装置对磁流变弹性体力磁性能影响[J]. 机械科学与技术, 2025,44(7):1272-1280.
李若冰, 马山刚, 金福宝, et al. Effect of Pre-structure Device on Magneto-rheological Elastomer Force Magnetic Properties[J]. Mechanical Science and Technology for Aerospace Engineering, 2025, 44(7): 1272-1280.
李若冰, 马山刚, 金福宝, 等. 预结构装置对磁流变弹性体力磁性能影响[J]. 机械科学与技术, 2025,44(7):1272-1280. DOI: 10.13433/j.cnki.1003-8728.20230290.
李若冰, 马山刚, 金福宝, et al. Effect of Pre-structure Device on Magneto-rheological Elastomer Force Magnetic Properties[J]. Mechanical Science and Technology for Aerospace Engineering, 2025, 44(7): 1272-1280. DOI: 10.13433/j.cnki.1003-8728.20230290.
磁流变弹性体(Magnetorheological elastomer
MRE)是一种由弹性体基体和磁性颗粒构成的新型智能磁控材料。经预结构化处理可以提高MRE力磁性能,但目前针对MRE预结构化研究较少,工程上现常采用大磁场进行预结构化处理,不仅成本高而且利用率低。为此,该文设计了一款MRE预结构装置并探究其对MRE力磁性能的影响。首先采用SOLIDWORKS建立仿真模型,其次进行理论分析与ANSYS电磁仿真,然后通过实验对理论模型进行修正,并探究装置对MRE力磁性能的影响,最后通过观察MRE微观结构检验装置有效性。结果表明:本装置可为MRE提供0~1.5 T的可调磁场,满足MRE预结构要求且成本较低,磁场利用率可达到83.33%;通过引入漏磁磁阻对装置理论模型进行修正,修正模型可以准确表征MRE区域磁场强度,平均误差仅为0.88%;本装置可以有效提高MRE力磁性能,提升效果受磁性颗粒含量的影响。当颗粒含量为80%时,磁流变效应提升了54.68%,含量降至40%,提升效果明显增强,磁流变效应提升了91.79%;借助SEM电镜从微观结构的角度检验了装置的有效性,并探究了预结构装置对于MRE的作用机理。
Magnetorheological elastomer is a new type of intelligent magnetic control material composed of elastomer matrix and magnetic particles. Pre-structured processing can improve the magnetic properties of MRE
but there are few studies on pre-structured MRE. In engineering
large magnetic field is often used for pre-structured processing
which is not only costly but also inefficient. Therefore
a MRE pre-structure device and explores its influence on the magnetic properties of MRE force is designed. Firstly
the simulation model is established by using SOLIDWORKS. Secondly
theoretical analysis and ANSYS electromagnetic simulation are carried out. Then
the theoretical model is modified via experiments
and the influence of the device on the magnetic properties of MRE force is explored. Finally
the effectiveness of the device is tested by observing the microstructure of MRE. The results show that the device can provide an adjustable magnetic field of 0-1.5 T for MRE
which meets the requirements of MRE pre-structure and has low cost
and the utilization rate of magnetic field can reach 83.33%. The theoretical model of the device is modified by introducing magnetic flux leakage reluctance. The modified model can accurately characterize the magnetic field strength in the MRE region
and the average error is only 0.88%. This device can effectively improve the magnetic properties of MRE force
and the improvement effect is affected by the content of magnetic particles. When the particle content is 80%
the magnetorheological effect is increased by 54.68%
the content is reduced to 40%
the improvement effect is obviously enhanced
and the magnetorheological effect is increased by 91.79%. The effectiveness of the device was tested from the perspective of microstructure by using SEM electron microscopy. The particles in MRE formed an obvious chain structure
and the pre-structure effect was better.
0
浏览量
0
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010602201714号