Structural support azimuth rotation device
Abstract
Structural support azimuth rotation mechanism ( 2 ) comprising the following: a rotating structure ( 1 ) with respect to a fixed vertical rotation shaft ( 3 ), connected to the structural support ( 2 ) by connecting means, which includes: a flat base ( 10 ) in the center of which is located the fixed vertical rotation shaft ( 3 ), and a side wall ( 11 ) along the entire length of the perimeter of the flat circular base, at least one fixed azimuth rotation device ( 4 ) of the rotating structure ( 1 ), that includes rotation means ( 5, 6, 15, 16 ) that are supported by the side wall ( 11 ) of the rotating structure ( 1 ), and a fixed system of support on the ground, that includes the fixed vertical rotation shaft ( 3 ) and a plurality of feet ( 7, 7′, 7″ ), on which is fixed at least one fixed azimuth rotation device ( 4 ).
Claims
exact text as granted — not AI-modified1 . Structural support azimuth rotation mechanism, comprising:
a rotating structure with respect to a fixed vertical rotation shaft, connected to the structural support by connecting means, which includes:
a flat base in the center of which is located the fixed vertical rotation shaft, and
a side wall along the entire length of the perimeter of the flat circular base,
at least one fixed azimuth rotation device of the rotating structure, that includes rotation means that are supported by the side wall of the rotating structure, a fixed system of support on the ground, that includes the fixed vertical rotation shaft and a plurality of peripheral feet, on which is fixed at least one fixed azimuth rotation device, and a leveling device affixed to the system of support by means of connecting means.
2 . Structural support azimuth rotation mechanism according to claim 1 , wherein the rotating means of the fixed azimuth rotation device are a motor friction roller, supported on a face of the side wall of the rotating structure, connected to a electric motor providing movement by means of a shaft.
3 . Structural support azimuth rotation mechanism according to claim 1 , wherein the rotating means of the fixed azimuth rotation device are a motor pinion-flexible traction element set, comprising a motor pinion connected, by means of a shaft, to an electric motor providing movement, which is engaged to a flexible traction element affixed to the side wall of the rotating structure means of tensioning elements.
4 . Structural support azimuth rotation mechanism according to claim 3 , wherein the flexible traction element is located between the motor pinion and the side wall of the rotating structure.
5 . Structural support azimuth rotation mechanism according to claim 3 , wherein the motor pinion is located between the flexible traction element and the side wall of the rotating structure.
6 . Structural support azimuth rotation mechanism according to claim 3 , wherein the flexible traction element is a belt.
7 . Structural support azimuth rotation mechanism according to claim 3 , wherein the flexible traction element is a toothed chain.
8 . Structural support azimuth rotation mechanism according to claim 2 , wherein the fixed azimuth rotation device of the rotating structure comprises an idler friction roller supported on the face of the side wall of the rotating structure opposite the face on which the motor friction roller is supported.
9 . Structural support azimuth rotation mechanism according to claim 4 , wherein the fixed azimuth rotation device of the rotating structure comprises an idler friction roller supported on the face of the side wall of the rotating structure opposite the face on which a belt, as the flexible traction element, is supported.
10 . Structural support azimuth rotation mechanism according to claim 1 , wherein the leveling device is affixed by means of connecting means to at least one of the peripheral feet of the system of support.
11 . Structural support azimuth rotation mechanism according to claim 1 , wherein the leveling device comprises at least one load ball partially enveloped by a sleeve, such that the ball is supported by the lower face of the flat base of the rotating structure.
12 . Structural support azimuth rotation mechanism according to claim 1 , wherein the rotating structure has a circular shape.
13 . Structural support azimuth rotation mechanism according to claim 1 , wherein the system of support comprises at least three peripheral feet and one central foot.
14 . Structural support azimuth rotation mechanism according to claim 1 , wherein the peripheral feet and central foot are adjustable in height.Join the waitlist — get patent alerts
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