CN210605546U - Docking station storage device - Google Patents

Docking station storage device Download PDF

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Publication number
CN210605546U
CN210605546U CN201922213513.1U CN201922213513U CN210605546U CN 210605546 U CN210605546 U CN 210605546U CN 201922213513 U CN201922213513 U CN 201922213513U CN 210605546 U CN210605546 U CN 210605546U
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China
Prior art keywords
plate
side plate
adjusting
cover plate
docking station
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CN201922213513.1U
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Chinese (zh)
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彭冬平
张秀金
王柏林
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Dongguan Honglian Electronics Co ltd
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Dongguan Honglian Electronics Co ltd
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Abstract

The utility model discloses a docking station storage device, include: the vertical display support comprises a first surface, a second surface opposite to the first surface, a third surface adjacent to the first surface and a fourth surface opposite to the third surface; the first surface is used for connecting a display; the hanging plate connecting sleeve is sleeved on the vertical display support and comprises a bottom plate corresponding to the second surface, a first side plate corresponding to the third surface and a second side plate corresponding to the fourth surface; the first side plate and the second side plate are respectively and fixedly connected with two opposite sides of the bottom plate; the supporting frame hanging plate is fixedly connected with one surface of the bottom plate, which is far away from the vertical display bracket; the docking station supporting frame is fixedly connected with one side of the supporting frame hanging plate, which is far away from the upright display bracket; and the docking station is embedded in the docking station supporting frame. The device can avoid placing docking station on the table and lead to the desktop wire in disorder.

Description

Docking station storage device
Technical Field
The utility model relates to an electronic equipment field especially relates to a docking station storage device.
Background
The conventional electronic equipment such as a docking station of a computer is generally directly placed on a desktop, so that the desktop is excessively messy, and particularly, power lines, data lines and the like of the docking station are disorderly exposed on the desktop, so that a user feels unattractive. Chinese patent CN110432655A entitled "multifunctional display height increasing storage rack" discloses "fixedly mounting the line concentration circuit board in the second supporting seat", but the height increasing storage rack of this patent is an inverted U-shaped height increasing rack with a fixed height, i.e. this mounting manner of docking station cannot be applied to the upright display support.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a docking station storage device installs the docking station support frame on vertical type display support to solve docking station and put the problem that causes the desktop in disorder on the desktop.
To achieve the purpose, the utility model adopts the following technical proposal:
a docking station storage device comprising:
a vertical display stand including a first face, a second face opposite the first face, a third face adjacent the first face, and a fourth face opposite the third face; wherein the first face is used for connecting a display;
the hanging plate connecting sleeve is sleeved on the vertical display support and comprises a bottom plate corresponding to the second surface, a first side plate corresponding to the third surface and a second side plate corresponding to the fourth surface; the first side plate and the second side plate are respectively and fixedly connected with two opposite sides of the bottom plate;
the supporting frame hanging plate is fixedly connected with one surface of the bottom plate, which is far away from the upright display bracket;
the docking station supporting frame is fixedly connected with one surface of the supporting frame hanging plate, which is far away from the upright display bracket; and the number of the first and second groups,
the docking station is embedded in the docking station supporting frame.
Optionally, the bottom plate is formed by assembling a first sub bottom plate and a second sub bottom plate; the first sub-bottom plate and the second sub-bottom plate are fixedly connected with the support frame hanging plate, the first sub-bottom plate and the first side plate are fixedly connected to form a first L-shaped plate, and the second sub-bottom plate and the second side plate are fixedly connected to form a second L-shaped plate.
Optionally, the link plate connecting sleeve further comprises a cover plate corresponding to the first surface, and the cover plate is formed by assembling a first sliding cover plate and a second sliding cover plate; a first sliding cover plate slot is formed in the first sliding cover plate, a second sliding cover plate A inserting piece is fixedly arranged on the second sliding cover plate, and the second sliding cover plate A inserting piece is inserted into the first sliding cover plate slot;
a first side plate slot is formed in one side of the first side plate, which is far away from the first sub-base plate; a first sliding cover plate inserting piece is fixedly arranged on one surface, facing the first side plate, of the first sliding cover plate and is inserted into the first side plate inserting groove;
a second side plate slot is formed in one surface, away from the first sub-bottom plate, of the second side plate; the second sliding cover plate faces one side of the second side plate, and a second sliding cover plate B inserting piece is fixedly arranged on the second sliding cover plate, and the second sliding cover plate B inserting piece is inserted into the second side plate inserting groove.
Optionally, a plurality of groups of hanging plate adjusting clamping grooves are formed in the hanging plate of the support frame, and each group of hanging plate adjusting clamping grooves comprises at least one hanging plate adjusting clamping groove; one surface of the first sub-bottom plate facing the support frame hanging plate is fixedly provided with a group of bottom plate adjusting hooks, and the group of bottom plate adjusting hooks comprises at least one bottom plate adjusting hook;
the number of the group of hanging plate adjusting clamping grooves is the same as that of the group of bottom plate adjusting clamping hooks, and the group of bottom plate adjusting clamping hooks are clamped in the group of hanging plate adjusting clamping grooves;
a plurality of hanging plate adjusting holes are formed in the supporting frame hanging plate, a bottom plate adjusting hole is formed in the first sub-bottom plate, a bottom plate fixing bolt 0 penetrates through the bottom plate adjusting hole, and the bottom plate fixing bolt 0 is fixedly connected with one of the hanging plate adjusting holes.
Optionally, the hanging plate adjusting clamping groove is an inverted T-shaped groove and comprises a first rectangular clamping groove and a second rectangular clamping groove communicated with the first rectangular clamping groove, and the width of the second rectangular clamping groove is smaller than that of the first rectangular clamping groove;
the bottom plate adjusting clamping hook is a T-shaped clamping hook and comprises a first rectangular clamping hook, one end of the first rectangular clamping hook is fixedly connected with the first sub-bottom plate, and the other end of the first rectangular clamping hook penetrates through the second rectangular clamping groove and is fixedly connected with a second rectangular clamping hook;
the width of the first rectangular hook is smaller than that of the second rectangular hook; the width of the second rectangular clamping hook is greater than that of the second rectangular clamping groove and smaller than that of the first rectangular clamping groove.
Optionally, a plurality of intercommunications have been seted up on the first curb plate the curb plate slot regulation hole of first curb plate slot, a sliding closure board inserted sheet regulation hole has been seted up on the first sliding closure board inserted sheet, wear to be equipped with sliding closure board fixing bolt in the sliding closure board inserted sheet regulation hole, sliding closure board fixing bolt fixed connection is one curb plate slot regulation hole.
Optionally, a first side plate barb is arranged on one side of the first side plate away from the bottom plate, and a second side plate barb is arranged on one side of the second side plate away from the bottom plate;
the hanging plate connecting sleeve further comprises a cover plate corresponding to the first surface, and a first cover plate barb and a second cover plate barb are respectively arranged on two opposite sides of the cover plate; the first cover plate barb is connected with the first side plate barb in a clamping mode, and the second cover plate barb is connected with the second side plate barb in a clamping mode.
Optionally, one surface of the first side plate facing the second side plate and one surface of the second side plate facing the first side plate are both provided with an adjusting mechanism, and the two adjusting mechanisms are mirror-symmetrical with respect to a central line of the two adjusting mechanisms;
the adjusting mechanism comprises a fixed frame, a movable frame, a spring, a pull rod and an adjusting bolt;
the fixing frame is fixedly connected with the first side plate or the second side plate; one end of the spring is fixedly connected with the first side plate or the second side plate, and the other end of the spring penetrates through the fixed frame to be connected with the movable frame;
the pull rod is slidably arranged in the fixed frame in a penetrating way, one end of the pull rod is fixedly connected with the movable frame, and the other end of the pull rod extends out of the first side plate or the second side plate;
a plurality of movable frame adjusting holes are formed in the movable frame, and the adjusting bolt sequentially penetrates through the first side plate or the second side plate and the fixed frame and is fixedly connected with one movable frame adjusting hole;
the pull rod slides to drive the two movable frames to approach or separate from each other, and the upright display bracket is positioned between the two movable frames; the spring is compressed when the two movable frames are away from each other, and the spring is reset when the two movable frames are away from each other.
Optionally, the pull rod comprises a pull rod cap, a pull rod body and a pull rod tail which are fixedly connected in sequence, the diameter of the pull rod cap is larger than that of the pull rod body, and the diameter of the pull rod body is larger than that of the pull rod tail;
a side plate pull rod hole for the pull rod body to penetrate through is formed in the first side plate or the second side plate, and the diameter of the side plate pull rod hole is smaller than that of the pull rod cap;
the fixing frame is provided with a fixing frame pull rod hole for the pull rod tail to penetrate through, and the diameter of the fixing frame pull rod hole is smaller than that of the pull rod body.
Optionally, the hanging plate connecting sleeve is arranged obliquely to the hanging plate of the support frame;
at least one guide way has been seted up on the mount, sliding connection has the guide in the guide way, guide fixed connection the adjustable shelf.
Compared with the prior art, the utility model discloses following beneficial effect has:
this embodiment sets up the docking station support frame in the one side that vertical type display support deviates from the display, accomodates docking station through the docking station support frame, avoids putting docking station and leads to the desktop wire rod in disorder on the table, effectively keeps the desktop clean and tidy. Furthermore, the height of the hanging plate connecting sleeve on the vertical display support is arranged through the adjusting sleeve, so that the height of the docking station can be adjusted, and different requirements can be met.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without inventive exercise.
The structure, ratio, size and the like shown in the drawings of the present specification are only used for matching with the content disclosed in the specification, so as to be known and read by people familiar with the technology, and are not used for limiting the limit conditions which can be implemented by the present invention, so that the present invention does not have the substantial significance in the technology, and any structure modification, ratio relationship change or size adjustment should still fall within the scope which can be covered by the technical content disclosed by the present invention without affecting the efficacy which can be produced by the present invention and the achievable purpose.
Fig. 1 is a schematic structural diagram of a docking station receiving device according to an embodiment of the present invention;
fig. 2 is a schematic partial structural view of a docking station receiving device according to a second embodiment of the present invention;
fig. 3 is a schematic structural diagram of another part of the docking station receiving device according to the second embodiment of the present invention;
fig. 4 is a schematic partial structural view of a docking station receiving device according to a third embodiment of the present invention;
fig. 5 is a schematic structural diagram of another part of the docking station receiving device according to the third embodiment of the present invention;
fig. 6 is a schematic structural diagram of a first sliding cover plate according to a third embodiment of the present invention;
fig. 7 is a schematic structural view of a first L-shaped plate according to a third embodiment of the present invention;
fig. 8 is a schematic partial structural view of a docking station receiving device according to a fourth embodiment of the present invention;
fig. 9 is a schematic structural diagram of another part of the docking station receiving device according to the fourth embodiment of the present invention;
fig. 10 is a schematic structural diagram of another part of a docking station receiving device according to a fourth embodiment of the present invention;
fig. 11 is a schematic structural view of a pull rod according to a fourth embodiment of the present invention.
Illustration of the drawings: 1. a vertical display stand; 11. a first side; 2. hanging a plate connecting sleeve; 21. a first side plate; 211. a first side plate barb; 212. a first side plate slot; 213. a side plate slot adjusting hole; 214. a side plate adjusting hole; 215. a side plate spring cylinder; 22. a second side plate; 221. a second side panel barb; 222. a second side panel slot; 23. a base plate; 230. a bottom plate fixing bolt; 231. a first sub-chassis; 232. a second sub-chassis; 233. a bottom plate adjusting hook; 2331. a first rectangular hook; 2332. a second rectangular hook; 24. a cover plate; 241. a first cover plate barb; 242. a second cover plate barb; 243. a first sliding cover plate; 2431. a first sliding cover plate slot; 2432. a first sliding cover plate insert; 2433. a sliding cover plate insert adjusting hole; 244. a second sliding cover plate; 2441. a second sliding cover plate A is inserted; 2442. a second sliding cover plate B inserting sheet; 245. a sliding cover plate fixing bolt; 251. a fixed mount; 2511. a fixing frame adjusting hole; 2512. a guide groove; 2513. a guide member; 2514. a fixed frame spring cylinder; 252. a movable frame; 2521. a movable frame adjustment hole); 253. a pull rod; 2531. a pull rod cap; 2532. pulling the rod body; 2533. a pull rod tail; 254. a spring; 3. a support frame hanging plate; 31. the hanging plate adjusts the clamping groove; 311. a first rectangular card slot; 312. a second rectangular slot; 4. a docking station support frame; 5. a docking station.
Detailed Description
In order to make the objects, features and advantages of the present invention more obvious and understandable, the drawings in the embodiments of the present invention are combined below to clearly and completely describe the technical solutions in the embodiments of the present invention, and obviously, the embodiments described below are only some embodiments of the present invention, but not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience of description and simplicity of description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be construed as limiting the present invention. It should be noted that when one component is referred to as being "connected" to another component, it can be directly connected to the other component or intervening components may also be present.
The technical solution of the present invention is further explained by the following embodiments with reference to the accompanying drawings.
Example one
Referring to fig. 1-2, a docking station receiving apparatus according to a first embodiment includes:
the vertical display bracket 1 comprises a first surface 11, a second surface opposite to the first surface 11, a third surface adjacent to the first surface 11 and a fourth surface opposite to the third surface; wherein the first side 11 is used for connecting a display;
the hanging plate connecting sleeve 2 is sleeved on the vertical display support 1 and comprises a bottom plate 23 corresponding to the second surface, a first side plate 21 corresponding to the third surface and a second side plate 22 corresponding to the fourth surface; the first side plate 21 and the second side plate 22 are respectively fixedly connected with two opposite sides of the bottom plate 23;
the supporting frame hanging plate 3 is fixedly connected with one side, away from the vertical display support 1, of the bottom plate 23;
the docking station support frame 4 is fixedly connected with one side, away from the vertical display support 1, of the support frame hanging plate 3; and the number of the first and second groups,
and the docking station 5 is embedded in the docking station support frame 4, and the docking station 5 is embedded in the docking station support frame 4.
Specifically, link plate adapter sleeve 2 inclines to support frame link plate 3 and sets up.
This embodiment sets up docking station support frame 4 in the one side that vertical type display support 1 deviates from the display, accomodates docking station 5 through docking station support frame 4, avoids putting docking station 5 and leads to the desktop wire rod in disorder on the table, effectively keeps the desktop clean and tidy. Further, the height of the hanging plate connecting sleeve 2 sleeved on the vertical display support 1 can be adjusted, so that the height of the docking station 5 can be adjusted, and different requirements can be met.
Example two
This embodiment has changed link plate adapter sleeve 2 on the basis of embodiment one.
Referring to fig. 2-3, in the present embodiment, a first side plate barb 211 is disposed on a side of the first side plate 21 away from the bottom plate 23, and a second side plate barb 221 is disposed on a side of the second side plate 22 away from the bottom plate 23. The hanging plate connecting sleeve 2 further comprises a cover plate 24 corresponding to the first surface 11, and two opposite sides of the cover plate 24 are respectively provided with a first cover plate barb 241 and a second cover plate barb 242. The first cover plate barb 241 is connected with the first side plate barb 211 in a clamping mode, and the second cover plate barb 242 is connected with the second side plate barb 221 in a clamping mode.
The connection stability between the hanging plate connecting sleeve 2 and the upright display bracket 1 can be further ensured by the arrangement of the cover plate 24.
It can be understood that the positions of the first side plate 21 and the second side plate 22 can be kept unchanged, and the thickness of the first side plate 21 can be adjusted, so as to change the distance between the first side plate 21 and the second side plate 22, thereby satisfying the upright display supports 1 with different widths. In order to accommodate first side plates 21 of different thicknesses, a plurality of first cover plate barbs 241 may be provided on one side of the cover plate 24, such that for different thicknesses of the first side plates 21, the cover plate 24 does not need to be replaced.
In this embodiment, the first side plate 21, the first side plate barb 211, the second side plate 22, the second side plate barb 221, and the bottom plate 23 are integrally formed. The first cover plate barb 241, the second cover plate barb 242, and the cover plate 24 are integrally formed.
This embodiment makes vertical type display support 1 and link plate adapter sleeve 2 connect more firmly through the setting of apron 24.
EXAMPLE III
This embodiment has changed link plate adapter sleeve 2 on the basis of embodiment one.
Referring to fig. 4-7, in the present embodiment, the bottom plate 23 is formed by assembling a first sub-bottom plate 231 and a second sub-bottom plate 232. First sub-bottom plate 231 and second sub-bottom plate 232 all fixed connection support frame link plate 3, first sub-bottom plate 231 and first curb plate 21 fixed connection form first L shaped plate, and second sub-bottom plate 232 and second curb plate 22 fixed connection form second L shaped plate.
The link plate connecting sleeve 2 further comprises a cover plate 24 corresponding to the first surface 11, and the cover plate 24 is formed by assembling a first sliding cover plate 243 and a second sliding cover plate 244. The first sliding cover plate 243 is provided with a first sliding cover plate slot 2431, the second sliding cover plate 244 is fixedly provided with a second sliding cover plate a inserting piece 2441, and the second sliding cover plate a inserting piece 2441 is inserted into the first sliding cover plate slot 2431.
A first side plate slot 212 is formed on a side of the first side plate 21 away from the first sub-base plate 231. A first sliding cover plate insertion piece 2432 is fixedly arranged on one surface of the first sliding cover plate 243 facing the first side plate 21, and the first sliding cover plate insertion piece 2432 is inserted into the first side plate insertion slot 212.
The second side plate 22 has a second side plate slot 222 on a side thereof away from the first sub-base plate 231. A second sliding cover plate B insertion piece 2442 is fixedly arranged on one surface, facing the second side plate 22, of the second sliding cover plate 244, and the second sliding cover plate B insertion piece 2442 is inserted into the second side plate insertion groove 222.
Specifically, the centers of the first sliding cover plate insert piece 2432, the second sliding cover plate a insert piece 2441 and the second sliding cover plate B insert piece 2442 are respectively provided with a corresponding dividing groove, so that each insert piece is divided into an upper part and a lower part. The center of the slot corresponding to each insert is also provided with a separation plate, so that each slot is divided into an upper part and a lower part.
A plurality of hanging plate adjusting clamping grooves 31 are formed in the supporting frame hanging plate 3, and each hanging plate adjusting clamping groove 31 comprises at least one hanging plate adjusting clamping groove 31. One side of the first sub-base plate 231 facing the support frame hanging plate 3 is fixedly provided with a group of base plate adjusting hooks 233, and the group of base plate adjusting hooks 233 comprises at least one base plate adjusting hook 233. The number of the hanging plate adjusting clamping grooves 31 is the same as that of the bottom plate adjusting clamping hooks 233, and the bottom plate adjusting clamping hooks 233 are clamped in the hanging plate adjusting clamping grooves 31.
Specifically, the plurality of groups of hanging plates adjust the clamping grooves 31 to be distributed at equal intervals along the horizontal direction. When a plurality of hanging plate adjusting clamping grooves 31 are formed in the hanging plate adjusting clamping grooves 31, the hanging plate adjusting clamping grooves 31 are distributed at equal intervals in the vertical direction. Correspondingly, when there are a plurality of bottom plate adjusting hooks 233 in the set of bottom plate adjusting hooks 233, the plurality of bottom plate adjusting hooks 233 are distributed at equal intervals along the vertical direction.
A plurality of hanging plate adjusting holes are formed in the supporting frame hanging plate 3, a bottom plate adjusting hole is formed in the first sub-bottom plate 231, a bottom plate fixing bolt 230 penetrates through the bottom plate adjusting hole, and the hanging plate adjusting hole is fixedly connected with the bottom plate fixing bolt 230.
The hanging plate adjusting clamping groove 31 is an inverted T-shaped groove and comprises a first rectangular clamping groove 311 and a second rectangular clamping groove 312 communicated with the first rectangular clamping groove 311, and the width of the second rectangular clamping groove 312 is smaller than that of the first rectangular clamping groove 311. The second rectangular card slot 312 is located above the first rectangular card slot 311.
The bottom plate adjusting hook 233 is a T-shaped hook, and includes a first rectangular hook 2331, one end of the first rectangular hook 2331 is fixedly connected to the first sub-bottom plate 231, and the other end passes through the second rectangular slot 312 and is fixedly connected to a second rectangular hook 2332.
The width of the first rectangular hook 2331 is less than the width of the second rectangular hook 2332. The width of the second rectangular hook 2332 is greater than the width of the second rectangular slot 312 and less than the width of the first rectangular slot 311.
A plurality of side plate slot adjusting holes 213 communicated with the first side plate slots 212 are formed in the first side plate 21, a sliding cover plate insert adjusting hole 2433 is formed in the first sliding cover plate insert 2432, a sliding cover plate fixing bolt 245 penetrates through the sliding cover plate insert adjusting hole 2433, and the sliding cover plate fixing bolt 245 is fixedly connected with one side plate slot adjusting hole 213.
The link plate adapter sleeve 2 assembly process of this embodiment is as follows:
1. according to the width of the upright display bracket 1, a proper group of hanging plate adjusting clamping grooves 31 is selected, and a group of bottom plate adjusting clamping hooks 233 are clamped into the selected group of hanging plate adjusting clamping grooves 31. When the card is locked, the bottom plate adjusting hook 233 firstly extends into the first rectangular slot 311 and then slides into the second rectangular slot 312, so as to complete the locking. Then, a proper hanging plate adjusting hole is selected, and the bottom plate adjusting hole and the hanging plate adjusting hole are fixed through the bottom plate fixing bolt 230, so that the first sub-bottom plate 231 is fixed on the supporting frame hanging plate 3.
2. First, the second sliding cover plate a insertion piece 2441 is inserted into the first sliding cover plate slot 2431, then the first sliding cover plate insertion piece 2432 is inserted into the first side plate slot 212, and the second sliding cover plate B insertion piece 2442 is inserted into the second side plate slot 222. And selecting a proper side plate slot adjusting hole 213, fixing the side plate slot adjusting hole 213 and the sliding cover plate insert adjusting hole 2433 through the sliding cover plate fixing bolt 245, so that the first sliding cover plate 243 is fixed on the first side plate 21, and finishing the assembly.
In this embodiment, the distance between the first side plate 21 and the second side plate 22 can be adjusted by adjusting the mounting position of the first sub-bottom plate 231 on the support frame hanging plate 3, so as to satisfy the upright display supports 1 with different widths.
Example four
This embodiment has changed link plate adapter sleeve 2 on the basis of embodiment one.
In this embodiment, a surface of the first side plate 21 facing the second side plate 22 and a surface of the second side plate 22 facing the first side plate 21 are both provided with an adjusting mechanism, and the two adjusting mechanisms are mirror-symmetric about a center line of the two adjusting mechanisms.
The adjusting mechanism comprises a fixed frame 251, a movable frame 252, a spring 254, a pull rod 253 and an adjusting bolt.
The fixing frame 251 is fixedly connected to the first side plate 21 or the second side plate 22. One end of the spring 254 is fixedly connected to the first side plate 21 or the second side plate 22, and the other end passes through the fixed frame 251 and is connected to the movable frame 252.
The pull rod 253 is slidably disposed through the fixed frame 251, one end of the pull rod is fixedly connected to the movable frame 252, and the other end of the pull rod extends out of the first side plate 21 or the second side plate 22.
A plurality of adjustable frame adjusting holes 2521 are formed in the adjustable frame 252, fixed frame adjusting holes 2511 corresponding to the adjustable frame adjusting holes 2521 are formed in the fixed frame 251, side plate adjusting holes 214 corresponding to the adjustable frame adjusting holes 2521 are formed in the first side plate 21 and the second side plate 22, and adjusting bolts sequentially penetrate through the side plate adjusting holes 214 and the fixed frame adjusting holes 2511 and are fixedly connected with the adjustable frame adjusting holes 2521.
The pull rod 253 slides outwards to drive the two movable frames 252 to move away from each other, the pull rod 253 slides inwards to drive the two movable frames 252 to move close to each other, the spring 254 is compressed when the two movable frames 252 move away from each other, and the spring 254 is reset when the two movable frames 252 move away from each other.
The pull rod 253 pulls the movable frames 252 to change the distance between the two movable frames 252, and the upright display bracket 1 is specifically disposed between the two movable frames 252. When the distance between the two movable frames 252 meets the requirement, the adjusting bolt is fixedly connected with the movable frame adjusting hole 2521, so that the two movable frames 252 are fixed and do not move any more.
In the present embodiment, the movable frame 252 moves in a direction approaching the bottom plate 23 or moving away from the bottom plate 23 while moving in the inward and outward directions. At least one guide groove 2512 is formed in the fixing frame 251, a guide piece 2513 is connected in the guide groove 2512 in a sliding mode, and the guide piece 2513 is fixedly connected with the movable frame 252. The moving direction of the movable frame 252 is limited by the cooperation of the guide 2513 and the guide groove 2512.
Specifically, the adjusting mechanism further includes a side plate spring cylinder 215 disposed on the first side plate 21 or the second side plate 22, a fixed frame spring cylinder 2514 is further disposed on a side of the fixed frame 251, which is away from the movable frame 252, and one end of the fixed frame spring cylinder 2514, which faces the side plate spring cylinder 215, is sleeved on the side plate spring cylinder 215. The spring 254 is disposed in the side plate spring cartridge 215 and the mount spring cartridge 2514. The adjustment mechanism preferably includes a plurality of springs 254 and correspondingly a plurality of side plate spring cartridges 215 and a plurality of mount spring cartridges 2514.
In this embodiment, the pull rod 253 includes a pull rod cap 2531, a pull rod body 2532 and a pull rod tail 2533 which are fixedly connected in sequence, the diameter of the pull rod cap 2531 is larger than that of the pull rod body 2532, and the diameter of the pull rod body 2532 is larger than that of the pull rod tail 2533. The first side plate 21 or the second side plate 22 is provided with a side plate pull rod hole for the pull rod body 2532 to pass through, and the aperture of the side plate pull rod hole is smaller than the diameter of the pull rod cap 2531. The fixing frame 251 is provided with a fixing frame pull rod hole for the pull rod tail 2533 to pass through, and the diameter of the fixing frame pull rod hole is smaller than that of the pull rod body 2532.
Through the diameter difference of the pull rod cap 2531 and the pull rod hole of the side plate and the diameter difference of the pull rod tail 2533 and the pull rod hole of the fixed frame, when the spring 254 resets and drives the pull rod 253 to move inwards, the maximum distance of the inward movement of the pull rod 253 can be limited, so that the minimum distance between the two movable frames 252 is limited, and the two movable frames 252 are prevented from being tightly attached.
The adjusting process of the link plate connecting sleeve 2 provided by the embodiment is as follows:
the adjusting bolt is loosened, the movable frames 252 are pulled to move outwards or inwards through the pull rod 253, and when the distance between the two movable frames 252 is proper, the adjusting bolt is inserted into the corresponding movable frame adjusting hole 2521 at the moment and is tightened.
The link plate adapter sleeve 2 that this embodiment provided sets up the position of adjustable activity frame 252 through pull rod 253, adjusting bolt, activity frame regulation hole 2521 etc to adjust the distance between two activity frames 252, satisfy the vertical type display support 1 of different widths.
The above embodiments are only used to illustrate the technical solution of the present invention, and not to limit the same. Although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: modifications of the technical solutions described in the embodiments or equivalent replacements of some technical features may still be made. Such modifications and substitutions do not depart from the spirit and scope of the present invention in its corresponding aspects.

Claims (10)

1. A docking station storage device, comprising:
a vertical display stand (1), the vertical display stand (1) comprising a first face (11), a second face opposite to the first face (11), a third face adjacent to the first face (11), and a fourth face opposite to the third face; wherein the first face (11) is used for connecting a display;
the hanging plate connecting sleeve (2) is sleeved on the upright display support (1) and comprises a bottom plate (23) corresponding to the second surface, a first side plate (21) corresponding to the third surface and a second side plate (22) corresponding to the fourth surface; the first side plate (21) and the second side plate (22) are respectively fixedly connected with two opposite sides of the bottom plate (23);
the supporting frame hanging plate (3) is fixedly connected with one surface, deviating from the vertical display support (1), of the bottom plate (23);
the docking station supporting frame (4) is fixedly connected with one surface, deviating from the upright display bracket (1), of the supporting frame hanging plate (3); and the number of the first and second groups,
the docking station (5) is embedded in the docking station support frame (4).
2. A docking station receiving arrangement according to claim 1, wherein the base plate (23) is formed by assembling a first sub base plate (231) and a second sub base plate (232); first sub-bottom plate (231) with the equal fixed connection of second sub-bottom plate (232) support frame link plate (3), first sub-bottom plate (231) with first curb plate (21) fixed connection forms first L shaped plate, second sub-bottom plate (232) with second curb plate (22) fixed connection forms second L shaped plate.
3. Docking station receiving arrangement according to claim 2, characterised in that the peg board connector housing (2) further comprises a cover plate (24) corresponding to the first face (11), the cover plate (24) being assembled from a first sliding cover plate (243) and a second sliding cover plate (244); a first sliding cover plate slot (2431) is formed in the first sliding cover plate (243), a second sliding cover plate A inserting piece (2441) is fixedly arranged on the second sliding cover plate (244), and the second sliding cover plate A inserting piece (2441) is inserted into the first sliding cover plate slot (2431);
a first side plate slot (212) is formed in one surface, away from the first sub-base plate (231), of the first side plate (21); one surface, facing the first side plate (21), of the first sliding cover plate (243) is fixedly provided with a first sliding cover plate insertion piece (2432), and the first sliding cover plate insertion piece (2432) is inserted into the first side plate insertion groove (212);
one surface of the second side plate (22) departing from the first sub-base plate (231) is provided with a second side plate slot (222); one surface, facing the second side plate (22), of the second sliding cover plate (244) is fixedly provided with a second sliding cover plate B inserting piece (2442), and the second sliding cover plate B inserting piece (2442) is inserted into the second side plate inserting groove (222).
4. A docking station accommodating device according to claim 3, wherein a plurality of groups of link plate adjusting slots (31) are formed on the support frame link plate (3), and a group of link plate adjusting slots (31) comprises at least one link plate adjusting slot (31); one surface of the first sub-bottom plate (231) facing the support frame hanging plate (3) is fixedly provided with a group of bottom plate adjusting hooks (233), and the group of bottom plate adjusting hooks (233) comprises at least one bottom plate adjusting hook (233);
the number of the hanging plate adjusting clamping grooves (31) is the same as that of the bottom plate adjusting clamping hooks (233), and the bottom plate adjusting clamping hooks (233) are clamped in the hanging plate adjusting clamping grooves (31);
a plurality of hanging plate adjusting holes are formed in the supporting frame hanging plate (3), a bottom plate adjusting hole is formed in the first sub-bottom plate (231), a bottom plate fixing bolt (230) penetrates through the bottom plate adjusting hole, and the hanging plate adjusting hole is fixedly connected with the bottom plate fixing bolt (230).
5. A docking station receiving device according to claim 4, wherein the hanging plate adjusting slot (31) is an inverted T-shaped slot, comprising a first rectangular slot (311) and a second rectangular slot (312) communicating with the first rectangular slot (311), the width of the second rectangular slot (312) being smaller than the width of the first rectangular slot (311);
the bottom plate adjusting clamping hook (233) is a T-shaped clamping hook and comprises a first rectangular clamping hook (2331), one end of the first rectangular clamping hook (2331) is fixedly connected with the first sub-bottom plate (231), and the other end of the first rectangular clamping hook (2331) penetrates through the second rectangular clamping groove (312) to be fixedly connected with a second rectangular clamping hook (2332);
the width of the first rectangular hook (2331) is smaller than that of the second rectangular hook (2332); the width of the second rectangular hook (2332) is greater than that of the second rectangular clamping groove (312) and less than that of the first rectangular clamping groove (311).
6. The docking station accommodating device as claimed in claim 4, wherein the first side plate (21) has a plurality of side plate slot adjusting holes (213) communicating with the first side plate slot (212), the first sliding cover plate insert (2432) has a sliding cover plate insert adjusting hole (2433), a sliding cover plate fixing bolt (245) penetrates through the sliding cover plate insert adjusting hole (2433), and the sliding cover plate fixing bolt (245) is fixedly connected to one of the side plate slot adjusting holes (213).
7. A docking station receiving arrangement according to claim 1, wherein the side of the first side plate (21) remote from the base plate (23) is provided with a first side plate barb (211), and the side of the second side plate (22) remote from the base plate (23) is provided with a second side plate barb (221);
the hanging plate connecting sleeve (2) further comprises a cover plate (24) corresponding to the first surface (11), and a first cover plate barb (241) and a second cover plate barb (242) are respectively arranged on two opposite sides of the cover plate (24); the first cover plate barb (241) is connected with the first side plate barb (211) in a clamping mode, and the second cover plate barb (242) is connected with the second side plate barb (221) in a clamping mode.
8. A docking station receiving device according to claim 2, wherein the side of the first side plate (21) facing the second side plate (22) and the side of the second side plate (22) facing the first side plate (21) are provided with an adjustment mechanism, and the two adjustment mechanisms are mirror symmetric about the center line of the two adjustment mechanisms;
the adjusting mechanism comprises a fixed frame (251), a movable frame (252), a spring (254), a pull rod (253) and an adjusting bolt;
the fixed frame (251) is fixedly connected with the first side plate (21) or the second side plate (22); one end of the spring (254) is fixedly connected with the first side plate (21) or the second side plate (22), and the other end of the spring penetrates through the fixed frame (251) to be connected with the movable frame (252);
the pull rod (253) is arranged in the fixed frame (251) in a sliding mode, one end of the pull rod is fixedly connected with the movable frame (252), and the other end of the pull rod extends out of the first side plate (21) or the second side plate (22);
a plurality of movable frame adjusting holes (2521) are formed in the movable frame (252), and the adjusting bolt sequentially penetrates through the first side plate (21) or the second side plate (22) and the fixed frame (251) and is fixedly connected with one movable frame adjusting hole (2521);
the pull rod (253) slides to drive the two movable frames (252) to approach or separate from each other, and the upright display bracket (1) is positioned between the two movable frames (252); the spring (254) is compressed when the two movable frames (252) move away from each other, and the spring (254) is reset when the two movable frames (252) move away from each other.
9. The docking station receiving device as claimed in claim 8, wherein the drawbar (253) comprises a drawbar cap (2531), a drawbar body (2532) and a drawbar tail (2533) which are fixedly connected in sequence, the diameter of the drawbar cap (2531) is greater than that of the drawbar body (2532), the diameter of the drawbar body (2532) is greater than that of the drawbar tail (2533);
a side plate pull rod hole for the pull rod body (2532) to penetrate through is formed in the first side plate (21) or the second side plate (22), and the diameter of the side plate pull rod hole is smaller than that of the pull rod cap (2531);
a fixed frame pull rod hole for the pull rod tail (2533) to penetrate through is formed in the fixed frame (251), and the aperture of the fixed frame pull rod hole is smaller than the diameter of the pull rod body (2532).
10. Docking station receiving arrangement according to claim 8, characterised in that the peg board connection sleeves (2) are arranged obliquely to the support frame pegs (3);
at least one guide groove (2512) is formed in the fixing frame (251), a guide piece (2513) is connected in the guide groove (2512) in a sliding mode, and the guide piece (2513) is fixedly connected with the movable frame (252).
CN201922213513.1U 2019-12-11 2019-12-11 Docking station storage device Active CN210605546U (en)

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CN201922213513.1U CN210605546U (en) 2019-12-11 2019-12-11 Docking station storage device

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Application Number Priority Date Filing Date Title
CN201922213513.1U CN210605546U (en) 2019-12-11 2019-12-11 Docking station storage device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021243917A1 (en) * 2020-06-05 2021-12-09 北京旷视科技有限公司 Adjustable support, terminal assembly and gate machine

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021243917A1 (en) * 2020-06-05 2021-12-09 北京旷视科技有限公司 Adjustable support, terminal assembly and gate machine

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