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- W3143339708 abstract "This paper investigates the stick-slip characteristic of magnetorheological elastomer (MRE) between an aluminum plate and the surface of the MRE. MRE is a smart material and it can change its mechanical behav- ior with the interior iron particles under the influence of an applied magnetic field. Stick-slip is a movement of two surfaces relative to each other that proceeds as a series of jerks caused by alternate sticking from friction and sliding when the friction is overcome by an applied force. This special tribology phenomenon can lead to unnecessary wear, vibration, noise, and reduced service life of work piece. The stick-slip phenomenon is avoided as far as possible in the field of mechanical engineering. As this phenomenon is a function of material property, applied load, and velocity, it can be controlled using the characteristics of MRE. MRE as a soft smart material, whose mechanical properties such as modulus and stiffness can be changed via the strength of an external mag- netic field, has been widely studied as a prospective replacement for general rubber in the mechanical domain. In this study, friction force is measured under different loads, speed, and magnetic field strength. From the test results, it is confirmed that the stick-slip phenomenon can be minimized under optimum conditions and can be applied in various mechanical components. Keywordsstick-slip(스틱 슬립), magneto-rheological elastomer(자기유변탄성체), friction force(마찰력), smart material(지능재료)" @default.
- W3143339708 created "2021-04-13" @default.
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- W3143339708 date "2015-02-28" @default.
- W3143339708 modified "2023-09-23" @default.
- W3143339708 title "Stick-slip Characteristics of Magnetorheological Elastomer under Magnetic Fields" @default.
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- W3143339708 doi "https://doi.org/10.9725/kstle.2015.31.1.6" @default.
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