Kukla Mateusz, Warguła Łukasz, Talaśka Krzysztof, Wojtkowiak Dominik
Institute of Machine Design, Faculty of Mechanical Engineering, Poznan University of Technology, Piotrowo 3, PL-60965 Poznan, Poland.
Materials (Basel). 2020 Oct 27;13(21):4795. doi: 10.3390/ma13214795.
Materials characterized by magnetorheological properties are non-classic engineering materials. A significant increase in the interest of the scientific community about this group of materials could be observed over the recent years. The results of research presented in this article are oriented on the examination of the said materials' mechanical properties. Stress relaxation tests were carried out on cylindrical samples of magnetorheological elastomers loaded with compressive stress, for various values of magnetic induction (B1 = 0 mT, B2 = 32 mT, B3 = 48 mT, and B4 = 64 mT) and temperature (T1 = 25 °C, T2 = 30 °C, and T3 = 40 °C). The results of these tests indicate that the stiffness of the examined samples increased along with the increase of magnetic field induction, and decreased along with the increase of temperature. On this basis, it has been determined that: the biggest stress amplitude change, caused by the influence of magnetic field, was σ0ΔB = 12.7%, and the biggest stress amplitude change, caused by the influence of temperature, was σ0ΔT = 11.3%. As a result of applying a mathematical model, it was indicated that the stress relaxation in the examined magnetorheological elastomer, for the adopted time range (t = 3600 s), had a hyperbolic decline nature. The collected test results point to the examined materials being characterized by extensive rheological properties, which leads to the conclusion that it is necessary to conduct further tests in this area.
具有磁流变特性的材料属于非传统工程材料。近年来,可以观察到科学界对这类材料的兴趣显著增加。本文所展示的研究结果旨在考察上述材料的力学性能。对承受压缩应力的磁流变弹性体圆柱形样品进行了应力松弛测试,测试了不同磁感应强度(B1 = 0 mT、B2 = 32 mT、B3 = 48 mT和B4 = 64 mT)以及不同温度(T1 = 25 °C、T2 = 30 °C和T3 = 40 °C)下的情况。这些测试结果表明,所测试样品的刚度随磁场感应强度的增加而增大,随温度的升高而降低。基于此,已确定:由磁场影响引起的最大应力幅值变化为σ0ΔB = 12.7%,由温度影响引起的最大应力幅值变化为σ0ΔT = 11.3%。应用数学模型的结果表明,在所采用的时间范围内(t = 3600 s),所测试的磁流变弹性体中的应力松弛具有双曲线下降的性质。收集到的测试结果表明所测试材料具有广泛的流变特性,由此得出结论,有必要在该领域进行进一步的测试。