The present invention relates to an office appliance, and in particular to a foldable height-adjustable desk workstation.
CN106805472A discloses a foldable height-adjustable desk workstation. In the foldable height-adjustable desk workstation, two spanners are respectively arranged on the left side and right side of a workstation desktop, configured to drive fastening bars to release the locking of main sliding ends. When the workstation desktop needs to go up or down, left and right hands are required to respectively control the corresponding spanners and simultaneously turn the spanners to release the main sliding ends locked by the fastening bars, so that the raising or lowering operation of the workstation desktop can be carried out. The defect of the structure is that only when the left and right hands simultaneously turn the spanners can raising or lowering be carried out, and because raising or lowering pressure also has to be applied besides locking release in the process of raising or lowering the workstation desktop, for a user with short stature, short arm span and little strength, it is difficult to apply pressure as both hands are used for turning the spanners. In addition, the probability that unlocking is not synchronous on both sides also exists in the foldable height-adjustable desk workstation with the structure, and if unlocking is not synchronous while raising or lowering pressure is applied, the phenomenon that the workstation desktop is stuck will occur.
The technical problem to be solved by the present invention is to solve the technical defect of the foldable height-adjustable desk workstation in the prior art CN106805472A requiring the spanners of both sides to simultaneously unlock the main sliding ends.
In order to solve the above-mentioned technical problem, the technical solution provided by the present invention is as follows: a foldable height-adjustable desk workstation comprises:
a workstation desktop;
upper workstation support legs, the pair of upper workstation support legs are arranged in parallel on both sides of the lower surface of the workstation desktop;
lower workstation support legs, the pair of lower workstation support legs are respectively arranged under the pair of upper workstation support legs; and
lifters, the pair of lifters are respectively arranged between the upper workstation support leg and lower workstation support leg of the same side, each lifter at least comprises a first slider, and the interior of each upper workstation support leg is provided with a first slide cavity matching the first slider along the length direction;
the foldable height-adjustable desk workstation further comprises locking mechanisms, each locking mechanism comprises a locking bar arranged in the first slide cavity, both ends of the locking bars are respectively articulated with both ends of the upper workstation support legs, and lockup mechanisms are arranged between the locking bars and the first sliders; a synchronous link mechanism is arranged between the locking bars in the first slide cavities of the pair of upper workstation support legs, and a spanner is connected to the locking bar at one side.
In the foldable height-adjustable desk workstation with the above-mentioned structure, the workstation desktop can be controlled by the lifters arranged between the upper workstation support legs and the lower workstation support legs to vertically go up or down, and the workstation desktop can be locked at any height position between an upper limit position and a lower limit position by the locking mechanisms. A synchronous link mechanism is arranged between locking bars of the two sets of locking mechanisms, the two sets of locking mechanisms can be synchronously unlocked by a spanner connected to any one of the locking bars, single-hand operation can ensure the balanced raising and lowering of the workstation desktop, so that the other hand can synchronously conduct other actions such as applying raising or lowering pressure on the workstation desktop, and thereby the convenience and experience of operating the workstation desktop are improved.
In a preferred embodiment, each lifter further comprises a main support rod and an auxiliary support rod, and the main support rod and the auxiliary support rod are arranged crosswise and articulated with each other at the junction; the upper ends of the main support rods are articulated with the first sliders, and the lower ends of the main support rods are articulated with the lower workstation support legs; the interior of each lower workstation support leg is provided with a second slide cavity, a second slider is arranged in the second slide cavity, and the sliding direction of the second sliders in the second slide cavities are parallel to the sliding direction of the first sliders in the first slide cavities, the upper ends of the auxiliary support rods are articulated with the upper workstation support legs, and the lower ends of the auxiliary support rods are articulated with the second sliders. By means of the crossed arrangement of the main support rod and the auxiliary support rod and the mode that one end is articulated and the other end is slidably connected, the lifter with the structure realizes the vertical raising and lowering of the workstation desktop.
In a preferred embodiment, first springs are arranged in the first slide cavities, and each first spring is located between the first slider and one end of the first slide cavity; second springs are arranged in the second slide cavities, and each second spring is located between the second slider and one end of the second slide cavity.
In a preferred embodiment, the first springs and/or the second springs are variable-pitch springs.
In a preferred embodiment, the elastic coefficient of the ends, close to the first sliders and/or the second sliders, of the variable-pitch springs is less than the elastic coefficient of the ends far from the first sliders and/or the second sliders.
In a preferred embodiment, the synchronous link mechanism comprises a pair of first links respectively connected to the locking bars and a pair of second links for being connected to the pair of links, one end of each first link is fixedly connected to the locking bar, and both ends of the second links are respectively articulated with the ends, far from the locking bars, of the pair of first links. The synchronous link mechanism with the structure has the characteristics of simple structure and good synchronicity.
In a preferred embodiment, each lockup mechanism comprises a plurality of fastening notches or fastening teeth arranged on the locking bar along the length direction of the locking bar and a lockup portion arranged on the first slider and matching the fastening notches or fastening teeth, and an avoiding area is arranged at a position close to the lockup portion. After the spanner controls the fastening teeth or fastening notches on the locking bars to rotate to the avoiding areas, the locking bars release the locking of the first sliders.
In a preferred embodiment, each lockup mechanism comprises a plurality of fastening notches or fastening teeth arranged on the locking bar along the length direction of the locking bar and a lockup portion arranged on the first slider and matching the fastening notches or fastening teeth, and an avoiding area is arranged at a position close to the lockup portion.
In a preferred embodiment, elastic mechanisms are arranged on the locking bars or between the locking bars and the upper workstation support legs. The elastic mechanisms are configured to make the fastening notches or fastening teeth on the locking bars be in matched connection with the lockup portions on the first sliders by means of elastic force under the natural state of the released spanner, so that the workstation desktop is kept at a corresponding height position.
In a preferred embodiment, the elastic mechanisms are torsional springs arranged on the locking bars, and both ends of the torsional springs are fixed. The torsional spring has the technical advantages of simple structure, low cost and good stability of rotary torque provided for the locking bar.
In a preferred embodiment, a keyboard tray is arranged under the workstation desktop, and brackets are arranged between the keyboard tray and the workstation desktop.
In a preferred embodiment, the keyboard tray is slidably connected to the brackets, and the sliding direction is parallel to the sliding direction of the first sliders. The drawing type keyboard tray is more convenient to use, meeting the individualized requirement of users.
In order to make the objective, technical solution and advantages of the present invention clearer, the present invention is further described in details below in reference to drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention rather than to limit the present invention.
As shown in
In the above-mentioned foldable height-adjustable desk workstation, the keyboard tray 20 is connected under the workstation desktop 10 through brackets 21. In a preferred implementation mode, as shown in
In the foldable height-adjustable desk workstation of the present embodiment, the pair of upper workstation support legs 30 are arranged in parallel to each other on both sides of the lower surface of the workstation desktop 10, and the pair of lower workstation support legs 40 are respectively arranged under the pair of upper workstation support legs 30. In a preferred implementation mode, each lifter 50 arranged between the upper workstation support leg 30 and the lower workstation support leg 40 comprises a main support rod 51 and an auxiliary support rod 52, and as shown in
In the present embodiment, the upper ends of the main support rods 51 are articulated with first sliders 53, and the lower ends are articulated with the lower workstation support legs 40. The interiors of the upper workstation support legs 30 are provided with first slide cavities 31 which extend along the length direction and match the first sliders 53. The upper ends of the auxiliary support rods 52 are articulated with the upper workstation support legs 30, the lower ends are slidably connected to the lower workstation support legs 40, and the sliding direction is parallel to the sliding direction of the first sliders. In a preferred implementation mode of the present embodiment, as shown in
Further, the present embodiment further comprises locking mechanisms, each locking mechanism comprises a locking bar 61 arranged in the first slide cavity 31, as shown in
Further, lockup mechanisms are arranged between the locking bars 61 and the first sliders 53, and each lockup mechanism comprises a plurality of fastening notches or fastening teeth arranged on the locking bar along the length direction of the locking bar 61 and a lockup portion arranged on the first slider 53 and matching the fastening notches or fastening teeth. Preferably, as shown in
In a preferred implementation mode, as shown in
Further, as shown in
In a preferred embodiment, as shown in
It should be pointed out that in the present embodiment, not only variable-pitch springs but also equal-pitch springs can be used as the second springs 80.
In a word, what is described above is merely the preferred embodiment of the present invention, and is not used to limit the present invention, and any modifications, equivalent replacement, improvements and the like which are made within the spirit and principle of the present invention shall fall within the protection scope of the present invention.
Number | Date | Country | Kind |
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201721108164.1 | Aug 2017 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2017/111509 | 11/17/2017 | WO | 00 |