线性开关磁阻电机机械结构的改进

Antares San-Chin Kwok, W. Gan, N. Cheung, Kwai Chung
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引用次数: 7

摘要

在半导体制造中,芯片的线键合和表面贴装技术过程需要精确的机器人线性运动。传统上采用的是由永磁旋转电机、滚珠丝杠和皮带驱动的X-Y滑动台。但由于滚珠丝杠侧隙的存在,存在定位精度问题。由于电机和高精度滚珠丝杠价格昂贵,制造成本高是另一个缺点。可靠性低的原因是复杂的机械对中和滚珠丝杠寿命低。本文介绍了用于制造自动化中高性能运动的线性开关磁阻电机的基本结构。不使用磁铁,移动距离不受限制。因此,这种电机是广泛的鲁棒性和适用于恶劣环境。采用二维电机代替传统的X-Y表。该驱动器基于开关磁阻驱动方法,结构简单、坚固,机械部件少,易于制造。对三种设计方案的机械结构和效率进行了比较。给出了电机的详细结构描述和相应的数学模型。应用控制理论将被提及。
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Improvements in the Mechanical Structure of the Linear Switched Reluctance Motor
In semiconductor manufacturing, wire bonding of chips and surface mount technology process require precise robotic linear motion. Traditionally, X-Y sliding tables driven by permanent magnet rotary motors, ball-screw and belt are used. However, they have position accuracy problem due to ball-screw backlash. Since motors and high precision grade ball-screws are expensive, high manufacturing cost is another disadvantage. Low reliability results from complex mechanical alignment and low ball-screw lifetime. This paper presents the basic structure of linear switched reluctance motor for high performance motions in manufacturing automation. No magnet is used and the traveling distance has no limitation. Consequently, this motor is extensively robust and applicable in hostile environment. A two-dimensional motor is introduced to replace the conventional X-Y table. Based on switched reluctance driving method, the proposed actuator has a very simple and robust structure with very few mechanical parts for easier manufacturing. 3 designs are compared on their mechanical structure and efficiency. Detailed motor framework description and corresponding mathematical model are shown. Applied control theory would be mentioned.
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