The disclosure relates to an electric table, particularly to a leg structure of an electric table.
To satisfy different circumferences and demands, tables with different heights are required. Thus, many electric lift tables appear in the market. The desktop can be lifted or lowered by driving the lead screw structures in the legs to generate height variations.
However, an electric lift table includes a desktop, four telescopic posts and four support rods for supporting the desktop. Thus, when assembling, each telescopic post has to be individually connected to each support rod. That is time-consuming. In addition, production tolerance exists between each telescopic post and each support rod, and a margin also exists between a screw and a threaded hole when screwing. That makes the assembled table unstable. How to make a table easy to be assembled and stable after assembling is an issue to be solved.
In view of this, the inventors have devoted themselves to the above-mentioned related art, researched intensively and cooperated with the application of science to try to solve the above-mentioned problems. Finally, the disclosure which is reasonable and effective to overcome the above drawbacks is provided.
An object of the disclosure is to make legs of an electric table easy to be assembled and make the whole structure be stable.
To accomplish the above object, the disclosure provides a leg structure of an electric table, which includes a pair of support assemblies, multiple horizontal rods and a pair of drive assemblies. The support assemblies are arranged spacedly and parallelly to each other. Each support assembly includes a connecting rod and a pair of telescopic posts. Each telescopic post is connected and fixed to the connecting rod. Each horizontal rod is separately connected to each support assembly and is parallel to each other. Each drive assembly is separately received in each support assembly for driving each telescopic post to ascend or descend.
The disclosure further has the following functions. In comparison with the structure of four main bodies and two control boxes, the structure of two main bodies and one control box of the disclosure may save the cost. By the locking block and connecting portion, the support assembly and horizontal rod may be rapidly assembled without shaking. By the pivot and the pivot hole, it is easy for the maintenance personnel to repair and organize wiring in the wiring tray. The plastic slant worm gear may effectively reduce noise and vibration when operating. The silencing pad disposed between the box and the main body may effectively reduce noise when the main body is in operation.
The technical contents of this disclosure will become apparent with the detailed description of embodiments accompanied with the illustration of related drawings as follows. It is intended that the embodiments and drawings disclosed herein are to be considered illustrative rather than restrictive.
The disclosure provides a leg structure of an electric table for supporting a desktop A. Please refer to
In the embodiment, each support assembly 10 is formed by, but not limited to, a hollow square tube of carbon steel or alloy steel. For example, each support assembly 10 may also be a metal hollow tube or an alloy hollow tube with desired strength. An outline of the hollow tube may also be angular, circular or polygonal. The support assemblies 10 are arranged spacedly and parallelly to each other. Each support assembly 10 includes a connecting rod 11 and a pair of telescopic posts 12. The two telescopic post 12 are connected and fixed to two ends of the connecting rod 11, respectively. Each telescopic post 12 is perpendicular to the connecting rod 11 to configure the support assembly 10 in a U-shape. In the embodiment, the connecting rod 11 and each telescopic post 12 are connected by welding to make the connecting rod 11 and each telescopic post 12 be unremovable and unbendable. That improves the structural strength of the support assembly 10 and additional assembling process is not required for the user.
In the embodiment, each horizontal rod 20 is formed by, but not limited to, a hollow square tube of carbon steel or alloy steel. For example, each horizontal rod 20 may also be a metal hollow tube or an alloy hollow tube with desired strength. The horizontal rods 20 are separately connected to each support assembly 10 and are parallel to each other. In the embodiment, each horizontal rod 20 and each connecting rod 11 jointly constitute a loading surface for loading the desktop A. But the disclosure is not limited to this, for example, top of each horizontal rod 20 and top of each connecting rod 11 may be not identical in height or a rubber pad or a plastic pad is disposed on each horizontal rod 20 or each connecting rod 11 to load the desktop A, depending on requirements of designs or uses. In addition, the disclosure does not limit the length relationship between the connecting rod 11 and the horizontal rod 20, for example, the connecting rod 11 may be longer than, shorter than or equal to the horizontal rod 20 in length, depending on various requirements.
Please refer to
Please refer to
In the embodiment, the drive assembly 30 further includes a drive rod 33. One of the transmission shafts 321 in the drive assembly 30 passes through the main body 312. An end of the transmission shaft 321 is sheathed by the drive rod 33 to be connected with the other transmission shaft 321. Two ends of the drive rod 33, which is adapted to sheathe the transmission shafts 321, may be separately tightened by a set screw B so that the main body 312 may simultaneously drive the two transmission shafts 321 to rotate. In some embodiments, a cross section of each transmission shaft 321 is, but not limited to, hexagonal. For example, a cross section of the transmission shaft 321 may also be quadrilateral or pentagonal. Also, other ends of the two transmission shafts 321 are separately connected to each first gear 322. Each first gear 322 separately engages with the second gears 3231 of corresponding two lead screw gear sets 323. In the embodiment, each of the first gear 322 and the second gear 3231 is a slant worm gear. When the main body 312 is rotated, the first gear 322 is driven to rotate though each transmission shaft 321 and the second gear 3231 of the lead screw gear set 323 rotates, so that the lead screw 3232 rotates to lift or lower the telescopic post 12. In the embodiment, the first gear 322 and the second gear 3231 are plastic members so as to reduce noise and vibration caused by the operation to improve the performance.
In detail, the junction of each telescopic post 12 and the horizontal rod 20 is protruded with a locking block 121. In detail, the locking block 121 is a polygonal block made of carbon steel or alloy steel. In some embodiments, the locking block is welded on each telescopic post 12, but not limited to this, for example, each locking block 121 may also be fixed on the telescopic post 12 by fastening or engaging. Two ends of each horizontal rod 20 are separately formed with a connecting portion 21 corresponding to each locking block 121 in shape so that each horizontal rod 20 may be positioned to the corresponding telescopic post 12 to avoid vibration. In some embodiments, each connecting portion 21 is formed with multiple fixing holes 211 and each locking block 121 is formed with multiple threaded holes 1211 so that each horizontal rod 20 may be fastened to each telescopic rod 12 by a screwing element C. Also, two ends of the top of each horizontal rod 20 are separately formed with an opening 22 corresponding to each connecting portion 21 in position, so that the opening 22 allows the screwing element C and a tool to be placed when each horizontal rod 20 is being fastened on each telescopic post 12.
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Furthermore, please refer to
While this disclosure has been described by means of specific embodiments, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of this disclosure set forth in the claims.
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110207219 | Jun 2021 | TW | national |
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