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Vibration isolation strategies using magneto-rheological elastomer for a miniature cryogenic cooler in space application

机译:磁流变弹性体在空间应用中用于小型低温冷却器的隔振策略

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Miniature cryogenic coolers are widely used to cool down sensitive image sensors in observation and surveillance satellites. The linear actuator in the cooler compressor operates at a relatively constant rate and this is the main source of vibration disturbance transmitted to the imaging sensor. Passive vibration isolation with and without an absorber, and a semi-active tuned vibration absorber are studied and compared to make a guidance of choosing the appropriate isolation system. This paper newly proposes the use of magneto-rheological elastomer (MRE) for vibration isolation of a cryogenic cooler. MRE is a smart material that changes its stiffness and damping rapidly and reversely under magnetic field. This tunable property is investigated and experimented to determine the feasibility of MRE application for vibration mitigation of a cryogenic cooler.
机译:微型低温冷却器被广泛用于冷却观测和监视卫星中的敏感图像传感器。冷却压缩机中的线性致动器以相对恒定的速率运行,这是传递到成像传感器的振动干扰的主要来源。研究并比较了带和不带吸收器的被动隔振以及半主动调谐减振器,为选择合适的隔振系统提供了指导。本文最新提出使用磁流变弹性体(MRE)隔离低温冷却器的振动。 MRE是一种智能材料,在磁场下会快速或反向改变其刚度和阻尼。对这种可调特性进行了研究和实验,以确定MRE应用在减轻低温冷却器振动方面的可行性。

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