電磁繼電器優(yōu)化設(shè)計(jì)
[Abstract]:Problems such as climate change and fossil fuels make energy conservation and environmental protection more and more important. Magnetic retention relays, which do not consume power for a long time, have gradually become the mainstream products. How to develop low-power, reliable and low-cost magnetic relay is a hot issue. Based on the comparison and analysis of the electromagnetic structure of the existing magnetic holding relay, a new magnetic circuit structure scheme is proposed, which realizes a new type magnetic holding relay with small volume, high sensitivity, simple structure and low cost. In this paper, the typical series type, parallel type, bridge type magnetic circuit structure is analyzed theoretically, and the advantages and disadvantages of each structure are obtained through the three-dimensional electromagnetic field simulation analysis of various magnetic circuit structures by Ansoft Maxwell software. The thin permanent magnet is designed to reduce the magnetoresistance of the magnetic circuit, and the magnetic short-circuit action of the yoke iron is used to reduce the force of the permanent magnet in the releasing position. At the same time, the structure of parallel magnetic circuit is realized by using the two-section structure of "L" armature, which makes the armature work stably. Secondly, this paper analyzes the coordination of the suction reaction force of the relay, through the three-dimensional static simulation module of ANSYS workbench software, the mechanical reaction system of the relay is analyzed, and the match of the suction reaction force of the relay is confirmed. In addition, this paper also studies the heat of relay in various working states, and simulates and analyzes the temperature field of relay by ANSYS workbench software to ensure that the temperature rise of relay meets the design requirements, so as to ensure the reliability of relay work. Based on theoretical analysis and simulation, and considering the manufacturing process, a HF163F-L small power magnetic retention relay is developed. Compared with the simulation results, although there are some errors, the law and trend of change are the same, and the actual product movement and return meet the design requirements. The reference value of simulation calculation to product design is verified. In addition, the error between the measured temperature rise and the simulation results is compared. The simulation model is modified by error analysis, and the modified simulation results are close to the measured values. Several batches of HF163F-L products were trial-produced, and various verification tests were carried out according to international standards. The results showed that the performance of the products reached the level of similar products abroad. The product has the advantages of small size, low power consumption, strong load capacity, simple structure and can realize automatic production. It can be widely used in the field of intelligent home control and has a good market prospect.
【學(xué)位授予單位】:福州大學(xué)
【學(xué)位級(jí)別】:碩士
【學(xué)位授予年份】:2014
【分類號(hào)】:TM581.3
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