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Method of Calculating of Relay Type Free-Wheel Mechanism

机译:继电器型自由轮机构计算方法

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摘要

Free-wheel mechanisms transmit rotary motion in only one direction. They are widely used, for example, in hydraulic transformers, pulsed continuous transmissions, inertial automatic torque transformers, electrical starters for motors, and metal- and wood-working drives. Unfortunately, existing free-wheel mechanisms are insufficiently reliable and durable and in many cases limit the reliability of the drive as a whole. Thus, the insufficient life of free-wheel mechanisms delays the use of inertial automatic continuous transmissions, which have many benefits over existing transmissions. In most known free-wheel mechanism, the whole torque is transmitted through locking elements such as balls, rollers, eccentric wheels, pawls, slide blocks, and wedges, whose operation at large loads may limit the life of the mechanism. Therefore, in the present work, we propose a relay-type free-wheel mechanism, in which only a small part of the torque is transmitted through the locking element; the remainder is transmitted through long-lived elements. The relay-type free-wheel mechanism reduces the load on the weak locking elements by one or two orders of magnitude in comparison with existing designs. In this paper a method is proposed for calculating and selecting the main parameters of relay-type free-wheel mechanisms, which are characterized by considerable load capacity, reliability, and durability.
机译:自由轮机构仅在一个方向上传递旋转运动。它们广泛地使用,例如,在液压变压器中,脉冲连续传输,惯性自动扭矩变压器,电动机的电动启动器和金属和木材工作驱动器。不幸的是,现有的自由轮机构不够可靠,耐用,并且在许多情况下,整个驱动器的可靠性限制。因此,自由轮机构的寿命不足延迟了使用惯性自动连续变速器,这对现有传输具有许多益处。在最着名的自由轮机构中,整个扭矩通过锁定元件透过,例如球,辊,偏心轮,棘爪,滑块和楔形,其在大负载下的操作可以限制机构的寿命。因此,在本作工作中,我们提出了一种继电器型自由轮机构,其中仅扭矩的一小部分通过锁定元件传递;其余部分通过长寿元件传输。与现有设计相比,继电器型自由轮机构通过一个或两个数量级减少了弱锁定元件的负荷。本文提出了一种方法,用于计算和选择继电器型自由轮机构的主要参数,其特征在于具有相当大的负载能力,可靠性和耐用性。

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