THRUST FORCE OF TFLM AS A DIRECTION OF FRICTIONAL RESISTANCE
Byung‐Chul Woo, Do‐Kwan Hong, Do-Hyun Kang
Abstract
Byung‐Chul Woo, Do‐Kwan Hong, Do-Hyun Kang
Abstract
This paper presents an integrated linear actuator combined with a Traverse Flux Linear Motor (TFLM) for household electric applications. They both use the same primary magnetic circuit, but they have different secondary movers. The paper presents a new design of linear motor for a new electromagnetic linear actuator, an integrated TFLM. The calculated thrust force (250[N]) is in good agreement with experiments. This result reveals that TFLM has a great potential to utilize the linear actuator for household electric applications as the weight of a linear actuator is reduced by two thirds. The thrust force was measured with the direction of applied current for the frictional resistance of linear motor. The simulation results will be compared with measured results.
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This paper presents an integrated linear actuator combined with a Traverse Flux Linear Motor (TFLM) for household electric applications. They both use the same primary magnetic circuit, but they have different secondary movers. The paper presents a new design of linear motor for a new electromagnetic linear actuator, an integrated TFLM. The calculated thrust force (250[N]) is in good agreement with experiments. This result reveals that TFLM has a great potential to utilize the linear actuator for household electric applications as the weight of a linear actuator is reduced by two thirds. The thrust force was measured with the direction of applied current for the frictional resistance of linear motor. The simulation results will be compared with measured results.
Key concepts: Thrust, Linear induction motor, Linear motor, Traverse, Linear actuator, Actuator, Control theory (sociology), Magnetic flux