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Force Analysis in Design of High Power Linear Permanent Magnet Actuator with Gas Springs in Drilling Applications

机译:大功率线性气弹簧线性致动器在钻井应用中的受力分析

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This paper mainly describes the force analysis in the design optimization of a reciprocating linear permanent magnet actuator with interior magnet and slotless stator. This paper predicts the force characteristics according to design parameters such as pole pitch, magnet width and stator inner diameter on the basis of numerical calculations. The design is unique because of the combination of a heavy piston and gas springs. The gas springs allow the piston to oscillate at high frequency and with a long stroke length, in spite of pistons large weight. A large electromagnetic force, due to the use of permanent magnets makes a high power linear electric actuator available. The heavy piston causes a considerable vibration in the housing which is utilized in the drilling application. The load can then be attached directly to the housing and the machine can be made hermitically sealed, which eliminate leakage problems. These features make the actuator suitable as a hammer in oil drilling applications.
机译:本文主要介绍带有内部磁体和无槽定子的往复式线性永磁致动器设计优化中的力分析。本文根据数值计算,根据极距,磁体宽度和定子内径等设计参数来预测力特性。由于沉重的活塞和气体弹簧的组合,因此设计独特。尽管活塞重量很大,但气体弹簧仍使活塞能够以较高的频率振动并具有较长的冲程长度。由于使用了永磁体,因此电磁力大,因此可以使用大功率线性电动执行器。笨重的活塞会在外壳中引起相当大的振动,这在钻井应用中会得到利用。然后可以将负载直接连接到外壳上,并且可以对机器进行气密密封,从而消除了泄漏问题。这些特性使执行器适合用作石油钻探应用中的锤子。

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