The disclosure relates to a height adjustable table technology, particularly to a foldable height adjustable table stand.
Tables are indispensable household and office items. The height of traditional tables is fixed and cannot be adjusted according to a user's personal situation and actual needs. The comfort level is low, and long-time usage with the traditional table may cause damage to the spine, waist and back, or other diseases. A height-adjustable desk can be adjusted in height according to a user's different body shape and height, etc., to improve comfort level and relieve pain.
Related art shows a foldable height adjustable table stand, which includes two support frames arranged adjustably, a crossbar and a linked rod disposed on the support frames. The linked rod is provided with a movable joint connected to the support frame. The crossbar is connected with a support cover connected with the support frame. The crossbar is disposed with a movable bolt which is movably installed on a side of the support cover. A side of the support frame is disposed with a fixed bolt. The crossbar is formed with a folding trough corresponding to the fixed bolt. Its drawback is that the support cover is of a half-covering shape and is connected to the crossbar with two sides, it is easy to cause vibration to result in structural instability. Also, the half-covering structure reduces the using strength to be disadvantageous for usage.
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 invention which is reasonable and effective to overcome the above drawbacks is provided.
To accomplish the above technological problem, the disclosure provides a foldable height adjustable table stand with great stability and high using strength.
The foldable height adjustable table stand of the disclosure includes a first pivoting stabilizer, a second pivoting stabilizer, a first height adjustable pole, a second height adjustable pole, a folding transmission mechanism and a support crossbar. The first height adjustable pole is connected to the first pivoting stabilizer. The second height adjustable pole is connected to the second pivoting stabilizer. The folding transmission mechanism is connected to the first height adjustable pole and the second height adjustable pole. The support crossbar is connected to the folding transmission mechanism. The first pivoting stabilizer and the second pivoting stabilizer are movably connected to two ends of the support crossbar separately. Each of the first pivoting stabilizer and the second pivoting stabilizer includes a first blocking edge, a second blocking edge and a first shaft. The second blocking edge is arranged parallelly with the first blocking edge. The support crossbar is disposed between the first blocking edge and the second blocking edge. The first shaft passes through the first blocking edge, the support crossbar and the second blocking edge in order.
In an embodiment, the folding transmission mechanism includes a transmission rod, a driving motor connected to the transmission rod, and a first connecting rod and a second connecting rod movably connected with two ends of the transmission rod separately, one end of the transmission rod is connected to the first connecting rod through a movable joint, and another end of the transmission rod is connected to the second connecting rod through another movable joint.
In an embodiment, the movable joint includes two connectors and a second shaft movably connected with the two connectors, a central axis line of the second shaft and a central axis line of the first shaft are parallel or coinciding to each other.
In an embodiment, the first connecting rod is movably connected to the first height adjustable pole, and the second connecting rod is movably connected to the second height adjustable pole.
In an embodiment, an end of the first blocking edge further includes a first extending sheet, and an end of the second blocking edge further includes a second extending sheet.
In an embodiment, the first shaft passes through the first extending sheet, and the support crossbar and the second extending sheet in order.
In an embodiment, each of the first pivoting stabilizer and the second pivoting stabilizer includes a receiving portion perpendicularly connected with the first extending sheet and the second extending sheet separately, and a restraint trough is defined among the receiving portion, the first extending sheet and the second extending sheet to stop the support crossbar.
In an embodiment, the receiving portion is provided with multiple connecting holes.
In an embodiment, a cross-section of each of the first pivoting stabilizer and the second pivoting stabilizer is a U-shaped structure.
In an embodiment, a side of the first blocking edge is outward extended to be connected to an installing plate with an installing hole, and a side of the second blocking edge is formed with an arcuate trough.
The advantage of the disclosure is that each pivoting stabilizer has a U-shaped cross-section to contact the support crossbar with three surfaces to avoid shake, and improve the overall stability and enhance the using strength of the foldable height adjustable table stand.
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.
In the description of the disclosure, as used herein, words such as “central”, “inner” and “outer,” “interior” and “exterior,” “upper” and “lower,” “outside” and “inside,” “top” and “bottom,” “left” and “right,” “vertical” and “horizontal” and words of similar import are intended to assist in understanding embodiments of the disclosure with reference to the accompanying drawings with respect to the orientation as shown in the figures, and are not intended to be limiting to the scope of the disclosure or to limit the disclosure scope to the embodiments shown in the figures. In addition, the terms “first”, “second” and “third” are used for descriptive object only, should not be understood to be as expressing or implying relative importance.
In the description of the disclosure, it is noted that phrases “install”, “link” and “connect” should be broadly understood, for example, they may be fixed connection, detachable connection or integrated connection; may be mechanic connection or electric connection; may be direct linkage or indirect linkage through an intermediate, may be interior communication between two elements. Further, words in the claims and specification hereof are intended to have their ordinary meaning to one skilled in the art as amplified or clarified by any further application-specific information, in the absence of an express, applicant-provided definition.
Please refer to
In an embodiment, the first pivoting stabilizer 10 has the same structure as the second pivoting stabilizer 20. Each pivoting stabilizer 10, 20 has a U-shaped cross-section to contact the support crossbar 40 with three surfaces to avoid shake, and improve the overall stability and enhance the using strength of the foldable height adjustable table stand.
As shown in
When operating, the driving motor 32 drives the transmission rod 31 to rotate, the transmission rod 31 separately drives the first connecting rod 33 and the second connecting rod 34 to rotate, the gears (not shown in figures) of the first connecting rod 33 and the second connecting rod 34 are separately engaged with the gears (not shown in figures) of the lead screws of the first height adjustable pole 11 and the second height adjustable pole 21 to drive the lead screws of the first height adjustable pole 11 and the second height adjustable pole 21 to implement electric ascending or descending.
As shown in
As shown in
As shown in
When a folding is needed, the first pivoting stabilizer 10 downward moves along the first shaft 70 first, and the first height adjustable pole 11 rotates therewith. The first folding is finished when the restraint trough 81 of the first pivoting stabilizer 10 touches the support crossbar 40. The second pivoting stabilizer 20 downward moves along the first shaft 70 first, and the second height adjustable pole 21 rotates therewith. The second folding is finished when the restraint trough 81 of the second pivoting stabilizer 20 touches the support crossbar 40.
As shown in
As shown in
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.
Number | Date | Country | Kind |
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202222483893.2 | Sep 2022 | CN | national |
Number | Name | Date | Kind |
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4615279 | de la Haye | Oct 1986 | A |
9848696 | Tseng | Dec 2017 | B2 |
10349737 | Keller | Jul 2019 | B2 |
10568418 | Applegate | Feb 2020 | B2 |
10842258 | Applegate | Nov 2020 | B2 |
11382414 | Zhang | Jul 2022 | B1 |
11490726 | Zhang | Nov 2022 | B1 |
11596221 | Lin | Mar 2023 | B2 |
11696637 | Lin | Jul 2023 | B2 |
20210015250 | Chu | Jan 2021 | A1 |
20210100356 | Huang | Apr 2021 | A1 |
20230270246 | Lin | Aug 2023 | A1 |
20230363526 | Li | Nov 2023 | A1 |
Number | Date | Country |
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103126303 | Jun 2013 | CN |
M586563 | Nov 2019 | TW |
M637825 | Feb 2023 | TW |
Entry |
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Office Action dated Jun. 20, 2023 of the corresponding Taiwan patent application No. 111144822. |
Number | Date | Country | |
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20240090659 A1 | Mar 2024 | US |