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Optimization of an eddy current type magnetic floor hinge

机译:涡流式磁性地板铰链的优化

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Floor hinge is a kind of building construction materials. A floor hinge is used to absorb undesirable mechanical impact in the case of opening and closing the door. Consequently, the door can be operated smoothly. The problem of a conventional hydraulic floor hinge is that damping torque varies so much for seasons due to the large temperature dependency of the viscous coefficient of oil. Hence, the hydraulic floor hinge is particularly designed to allow users to adjust the damping force. However, most of users such as building managers feel annoyed about adjusting it. In this paper, a magnetic floor hinge is suggested to overcome the problem. The magnetic floor hinge uses a magnetic damper which absorbs magnetically undesirable mechanical impact. Compared with the hydraulic floor hinge the magnetic floor hinge has some advantages: One is there exists no wear in the magnetic damper since the disk rotates between the magnets without contact. Another is the deviation of damping torque is very small for seasons due to the low temperature dependency of the conductivity of the disk to which the magnetic damping torque is proportional. To begin with, the analytical models are obtained for the damping torque and the recovering torque. By using the analytical models, the cost optimal design is carried out so that its results should satisfy the Standard requirements with the lowest cost. Finally, the results of the analysis and the design are compared with those of experiments and validated.
机译:地板铰链是一种建筑建筑材料。地板铰链用于在打开和关闭门的情况下吸收不良的机械冲击。因此,门可以被平稳地操作。常规液压地板铰链的问题在于,由于油的粘性系数对温度的依赖性大,所以阻尼扭矩在季节中变化很大。因此,液压地板铰链特别设计成允许用户调节阻尼力。但是,大多数用户(例如建筑经理)都对调整它感到恼火。在本文中,建议使用磁性地板铰链来解决该问题。磁性地板铰链使用一个磁性阻尼器,该阻尼器吸收了不希望的磁性机械冲击。与液压地板铰链相比,磁性地板铰链具有一些优点:一个是在电磁阻尼器中不存在磨损,因为磁盘在磁体之间旋转而没有接触。另一个原因是,由于磁盘的电导率对温度的依赖性较低,因此阻尼转矩的偏差在各个季节都非常小,而磁阻尼转矩与磁导率成比例。首先,获得阻尼扭矩和恢复扭矩的分析模型。通过使用分析模型,进行了成本优化设计,以便其结果应以最低的成本满足标准要求。最后,将分析和设计的结果与实验结果进行比较并进行验证。

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