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航天继电器贮存过程吸合时间退化机理研究 总被引:1,自引:0,他引:1
航天继电器作为一种密封的电器元件,其贮存可靠性对于导弹等武器装备至关重要。如何测试评价航天继电器在贮存过程中性能及可靠性的衰退,是继电器用户和厂家非常关心的问题。利用开发的实验系统对某型号航天继电器进行了贮存加速实验,得到了吸合时间的变化规律。分析并验证了贮存过程中吸合时间变化的主要原因是簧片应力松弛所导致的反力变化。通过仿真与实验均证实了吸合时间与簧片初力存在近似的线性关系,进而提出可采用吸合时间来表征簧片的应力松弛退化特性。建立了高温条件下继电器吸合时间的贮存退化模型,为进一步研究继电器贮存可靠性及贮存寿命预测奠定了基础。 相似文献
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Polarized magnetic system has a series of features, such as small volume, light weight, low power consumption, high sensitivity, quick movement and so on, widely used in the products of the military aerospace electromagnetic relay. The typical polarized magnetic system has mainly four structures and its simplified equivalent magnetic circuits model is the base of the design of the electromagnetic relay with permanent magnet. In the past, the analysis method that people used was difficult to build the unified mathematical models, which divided the work gap magnetic flux into "permanent magnet flux" and "electromagnetic flux". Based on the analysis method of the work gap magnetic voltage, this paper founds the unified mathematical model of the polarized magnetic system and divides the attractive torque into permanent magnet torque, polarized torque and electromagnetic torque through the energy balance formula. It analyses the influence of permanent magnet sizes on permanent magnet torque, polarized torque and electromagnetic torque through the energy balance formula and the conclusions can direct the design of aerospace electromagnetic relay with permanent magnet. 相似文献
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