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Design and analysis of magnetic matrix screw based on green manufacturing concept

机译:基于绿色制造概念的磁矩阵螺钉的设计与分析

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Lead screws are the most commonly used transmission components in tool machinery and precision machinery, and are widely used in various industrial equipment and precision instruments. However, the screw tooth profile squeezes and friction causes the gear to break, tooth surface wear, tooth surface pitting and other damage, which reduces the service life of the screw; the use of a large amount of lubricants can not ignore the environmental impact. The design and research of this subject are based on the traditional ball screw mechanism, and based on the magnetic field force, the force transmission and state transformation can be realized without contact. It has significant advantages in terms of improving product service life and reducing pollution caused by lubricating fluid, which is in line with the trend of green and sustainable development. This paper analyzes the principle of non-contact magnetic matrix structure and transmission principle, and conducts finite element analysis on the parameters of screw thrust and torque. Finally, a non-contact screw experimental platform is designed to verify the screw thrust.
机译:铅螺钉是工具机械和精密机械中最常用的传动部件,广泛应用于各种工业设备和精密仪器。然而,螺杆齿形挤压和摩擦导致齿轮破裂,齿面磨损,齿面点和其他损坏,从而降低了螺钉的使用寿命;使用大量润滑剂不能忽视环境影响。该主题的设计和研究基于传统的滚珠丝杠机构,并且基于磁场力,可以在不接触的情况下实现力传递和状态变换。在提高产品使用寿命和减少由润滑液引起的污染方面具有显着的优势,这符合绿色和可持续发展的趋势。本文分析了非接触磁性矩阵结构和传动原理的原理,对螺杆推力和扭矩的参数进行有限元分析。最后,设计了一个非接触式螺杆实验平台,用于验证螺杆推力。

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