旋风齿轮箱是一种高效减速器

The cycloidal gearbox has a toothed profile that is different from the involute form. For example, it's different from a mechanical clock's involute gear. The cycloidal gear profile is used in many mechanical clocks. In addition, the cycloidal gear has a higher gear ratio than involute gears.

The cycloidal design also allows for a large output shaft span. This provides exceptional overhung load capabilities and eliminates the need for expensive components. Another benefit of a cycloidal design is that it is compact and offers high precision. In addition, it is available in a wide variety of sizes from 65 mm to 220 mm in diameter.

摆线齿轮箱是一种高效减速器,具有高减速比和低摩擦。 该齿轮箱结构紧凑且生产成本低廉。 它还可以承受高冲击载荷并具有低背隙。 由于其卓越的设计,它可用于广泛的应用。

摆线齿轮箱是重型机器和机器人应用的理想选择。 一级减速比突出,背隙小,精度高。 这些好处使摆线齿轮在机器人技术中越来越受欢迎。 它们用于多轴机器人、第一关节和定位器。 然而,摆线齿轮的一个缺点是它们需要大的输入速度。 此外,齿轮工作的一般原理强加了一些与振动相关的问题。

另一个重要的设计考虑是沿齿轮宽度的负载分布。 例如,图 8 显示了 14 号外辊的接触力轮廓。这些轮廓代表了图 6 和图 8 中定义的条件。通过正确的网格细化,这些力可以均匀分布在圆盘宽度上。

There are several different designs of cycloidal gearboxes. Generally, the input shaft is eccentrically mounted to a drive member, which rotates a cycloidal disc. The cycloidal disc has lobes, much like teeth in a stationary . The disc also has roller pins that protrude through it and attach to an output disc. This output disc transfers motion to the output shaft.

另一种类型的摆线齿轮箱是行星齿轮箱。 在这种类型中,摆线盘在大约 5 毫米厚的基圆上滚动。 基圆应足够大以容纳摆线盘中的销,并且足够厚以将驱动轴固定到位。

Cyclic gearboxes are a form of reduction gears. The input and output shaft speeds are different. During an eccentric shaft rotation, the pin disc rotates by about 40 degrees. This enables the output shaft to complete nine revolutions of the input shaft. This reduction results in high efficiency and low friction. So, if you're looking for a reliable gearbox, consider this type of gearbox.

Once you've figured out the dimensions of the cycloidal gears, you're ready to start the design process. First, you'll need to create the holes for the output shaft. The centerline of the cycloid should be the center of mass, while the output holes should be four to six units apart. The center hole will act as the input hole.

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