design calculations for gearless transmission
#1

Please make calculations of shaft hub l pin etc
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#2
Transmitting the rotational motion around an axis usually involves gears, which can become quickly complicated, inflexible and awkward, often ugly. Thus, instead of using gears, this technology elegantly converts rotary motion using a system of cylindrical bars, bent at 90 °, in a ready, simple and smooth process that translates strong rotary force even in restricted spaces. Speed from one input connected to three curved links. Both the input shaft and the housing have rotational axes. The axis of rotation of the input shaft is disposed at an angle of 90 degrees with respect to the axis of rotation of the housing. As a result, rotation of the input shaft results in a processional movement of the axis of the curved link. The rotational and reciprocating motion of the folded link transmits the rotation of the primary motor to 90 degrees without any gear system to an output shaft.


An essential requirement of today's world is to achieve the objectives with the maximum efficiency at a minimum cost. This requires the lowest manufacturing cost of replacement when any instrument fails. And it also performs the intended function with greater efficiency. To convey the movement and power from one axis to another that are non-parallel or intersecting and coplanar, conical gears are generally employed. But there are some inherent disadvantages associated with bevel and worm gear declared as complex in manufacturing, high cost of replacement.

Transmission Mechanism ". As a reference we have designed the mechanism to transmit the movement at right angles. However, it may also be used to transmit motion at any angle to the driven shaft by using the curved pin to conform to the angle between the axis (sharp, obtuse or right angle).
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