Supporting device with quick release structure
By setting a quick disassembly structure and a pivoting structure between the display and the carrier plate, the problem of large and inconvenient traditional support devices is solved, and the rapid assembly and disassembly of the display is realized, reducing the complexity of transportation and assembly.
Patent Information
- Application Number
- CN202422301100.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-05-08
- Filing Date
- 2024-09-20
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2034-09-20
AI Technical Summary
Traditional support devices are large and inconvenient when transporting and assembling/disassembling the display, and need to be removed together with the neck components and cannot be replaced quickly.
A quick disassembly structure is set up between the display and the carrier plate, which is unlocked by pushing and abutting the toggle part, and combined with the pivot structure, the display and the neck component are split into two components, and the sliding plate and elastic member provide elastic recovery force, simplifying the sliding plate structure to reduce the number of parts.
It realizes rapid assembly and disassembly of the monitor, reduces transportation volume, reduces costs and simplifies assembly processes.
Smart Images

Figure CN223294554U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a supporting device, in particular to a supporting device with a quick-release structure arranged on a VESA (Video Electronics Standards Association) board. Background Art
[0002] Traditional monitors are usually used with an adjustable support device, which includes a support base, a support rod and a neck piece. One end of the neck piece is locked and connected to the top side of the support rod, and the other end of the neck piece is fixedly connected to the monitor. A lifting structure can be optionally set in the support base. The other end of the neck piece is inserted into the support base to connect to the lifting device, thereby raising or lowering the monitor. There is usually a swing (TILT) structure or a rotation (PIVOT) structure between the neck piece and the monitor to provide users with more pivot adjustment modes.
[0003] However, the traditional support device is too large during transportation, and the monitor is locked to the support base via a neck piece. Therefore, when the user needs to assemble or replace the monitor, it is necessary to remove it together with the neck piece, making it impossible to quickly and conveniently replace the monitor. Utility Model Content
[0004] The purpose of the present utility model is to provide a support device with a quick-release structure, which mainly sets a quick-release structure between the display and the supporting plate, and quickly unlocks the structure by pushing against the toggle part, thereby facilitating the assembly and disassembly of the display. In addition, a pivot structure is provided between the display and the neck member. In addition to allowing the display to pivot (SWIVEL) relative to the support module, the display and the neck member can also be disassembled into two components to reduce the transportation volume.
[0005] In order to achieve the purpose of the above-mentioned utility model, the utility model includes a supporting module, which has a supporting member and a sliding member, the supporting member has an accommodating space, and the sliding member is arranged in the accommodating space; a pivot assembly, one end of which is pivotally connected to one side of the sliding member; a carrying module, one end of which is pivotally connected to the other end of the pivot assembly, and the carrying module further includes: a carrying plate, which has two symmetrically arranged side plates to be pivotally connected to the other end of the pivot assembly, and one side of the carrying plate has a first guide portion; a sliding plate, which is slidably connected to the side of the carrying plate, the sliding plate has a positioning portion, a first guide groove and a snap portion, and the first guide portion slides in the first guide groove; and an elastic member, two ends of which are respectively connected to the first guide portion and the positioning portion to provide elastic restoring force to the sliding plate; and a display, one end of which is clamped at the top end of the carrying plate, and the other end of which is clamped at the snap portion.
[0006] Another object of the present invention is to provide another supporting device with a quick-release structure, which is used to simplify the sliding plate structure, thereby reducing costs and the number of parts.
[0007] In order to achieve the purpose of the above-mentioned utility model, the utility model includes a supporting module, which has a supporting member and a sliding member, the supporting member has an accommodating space, and the sliding member is arranged in the accommodating space; a pivot assembly, one end of which is pivotally connected to one side of the sliding member; a carrying module, which is pivotally connected to the other end of the pivot assembly, and the carrying module includes: a carrying plate, which has two symmetrically arranged side plates to be pivotally connected to the other end of the pivot assembly, and one side of the carrying plate has a first guide portion; a sliding plate, which is slidably connected to the side of the carrying plate, and the sliding plate has a positioning portion and a snap portion; and an elastic member, two ends of which are respectively connected to the first guide portion and the positioning portion to provide elastic restoring force to the sliding plate; and a display, one end of which is clamped at the top end of the carrying plate, and the other end of which is clamped at the snap portion.
[0008] During implementation, the sliding plate further includes at least one side sliding portion, and the first guide portion slides along the at least one side sliding portion.
[0009] In practice, the sliding plate further includes a stop portion, which is disposed adjacent to the at least one side sliding portion, and when the first guide portion abuts against the stop portion, the buckle portion is separated from the other end of the display.
[0010] During implementation, the sliding plate further includes at least one third guide groove, the supporting plate protrudes a third guide portion toward one side of the sliding plate, one end of the third guide portion penetrates into the third guide groove and slides along the third guide groove, the inner side surface of the end of the third guide portion is slidably connected to a side surface of the sliding plate, and when the elastic member is subjected to force and accumulates elastic force, one side of the third guide portion presses against one side of the third guide groove.
[0011] During implementation, the sliding member further includes a neck member, a convex neck portion at one end of which is connected to the first positioning groove on that side of the sliding member, and a locking member locks and connects the top of the sliding member and the top of the convex neck portion.
[0012] During implementation, the other end of the neck piece has a concave neck portion, which has a pivot hole running longitudinally through it. This end of the pivot assembly has a second pivot portion, and the pivot rod is provided in the pivot hole and the second pivot portion so that the pivot assembly can be rotated to connect the neck piece.
[0013] During implementation, the concave neck portion further has an arc-shaped segment, and the second pivoting portion has a limiting protrusion, which is stopped at both ends of the arc-shaped segment.
[0014] During implementation, the pivot assembly also includes an adapter, a torsion spring and two end fixing members. The two ends of the adapter have a first pivot part and a second pivot part. The torsion spring is sleeved on the first pivot part. The two ends of the first pivot part are respectively inserted into the two side plates. The two end fixing members are respectively locked at the two ends of the first pivot part and rest against one side of the two side plates.
[0015] During implementation, the support module also includes a slide rail group, which is respectively arranged on both sides of the accommodating space. The slide rail group further includes a first slide rail and a second slide rail. The two sides of the sliding member are respectively assembled and connected to the first slide rail and the second slide rail to slideably connect the support component.
[0016] During implementation, the other side of the sliding member has a second positioning groove, and the elastic module is engaged with the second positioning groove. The elastic module further includes a spring seat and a constant-force spring. The constant-force spring is positioned in the spring seat. The top end of the supporting member has an upper hook, and the free end of the constant-force spring is fixed to the upper hook. One side of the spring seat has a side limit portion, and the second positioning groove has an engaging portion on a side corresponding to the side limit portion. The engaging portion is engaged with the side limit portion to position the spring seat in the second positioning groove.
[0017] During implementation, the sliding member is further provided with a friction block, which is arranged at one end of the sliding member away from the top and abuts against the rear plate of the supporting member to generate lateral friction force.
[0018] During implementation, the supporting plate is further provided with a second guide portion, and the sliding plate is further provided with a second guide groove. The inner side surface of one end of the second guide portion is slidably connected to a side surface of the sliding plate. The second guide portion slides in the second guide groove, and when the elastic member is not extended, the second guide portion rests against one end of the second guide groove.
[0019] During implementation, the positioning portion is a rod-shaped structure, and the two ends of the elastic member are respectively a first ring portion and a second ring portion, the first ring portion is sleeved on the positioning portion, and the second ring portion is sleeved on the first guide portion. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] In order to facilitate a deeper understanding of the present invention, the following is a detailed description:
[0021] Figure 1 is a perspective exploded view of the pivot assembly and the carrying module of the first embodiment of the present invention;
[0022] Figure 2 This is a perspective exploded view of the first embodiment of the present utility model;
[0023] Figure 3 This is a three-dimensional exploded view of a portion of the support module and the neck member of the present invention;
[0024] Figure 4 It is a three-dimensional combination diagram of the first embodiment of the utility model;
[0025] Figure 5 yes Figure 4 A-A' cross-sectional diagram;
[0026] Figure 6 yes Figure 4 BB' cross-sectional view;
[0027] Figure 7 yes Figure 4 BB' section diagram of the continuous action of display disassembly;
[0028] Figure 8 is a perspective exploded view of the pivot assembly and the carrying module of the second embodiment of the present invention;
[0029] Figure 9 is a perspective exploded view of the pivot assembly and the carrying module of the third embodiment of the present invention;
[0030] Figure 10 It is a three-dimensional exploded view of the pivot assembly and the carrying module of the fourth embodiment of the present invention.
[0031] Description of reference numerals:
[0032] 1: Support device with quick-release structure
[0033] 2: Support module
[0034] 21: Supporting members
[0035] 211: Accommodation space
[0036] 212: Top slot
[0037] 213: Base plate
[0038] 214: Back plate
[0039] 215: Upper hook
[0040] 216: Groove
[0041] 22: Sliding parts
[0042] 221: First positioning groove
[0043] 222: Second positioning groove
[0044] 223, 223': locking part
[0045] 224: Adjustment hole
[0046] 225: Perforation
[0047] 23: Neck piece
[0048] 231: Convex neck
[0049] 232: Concave neck
[0050] 233: Pivot hole
[0051] 234: Arc segment
[0052] 24: Pivot
[0053] 25: Slide rail assembly
[0054] 251: First slide rail
[0055] 252: Second slide rail
[0056] 26: Friction block
[0057] 3: Pivot assembly
[0058] 31: Adapter
[0059] 311: First pivot
[0060] 312: Second pivoting portion
[0061] 313, 313': Limiting recess
[0062] 314: Limiting bump
[0063] 32: Torsion spring
[0064] 33: End fixings
[0065] 4: Carrier module
[0066] 41: Loading plate
[0067] 411: Side panels
[0068] 412: First guide part
[0069] 413: Second guide part
[0070] 414: Notch
[0071] 415: Raised plate
[0072] 416, 416': Third guide part
[0073] 42: Sliding plate
[0074] 420, 420': Side sliding part
[0075] 4201, 4201': Stop
[0076] 421, 421': Positioning part
[0077] 422, 422': first guide groove
[0078] 423, 423': Second guide groove
[0079] 4231, 4231': Annular rib
[0080] 424: Toggle
[0081] 425: Buckle
[0082] 426, 426': Third guide groove
[0083] 43: Elastic parts
[0084] 431: First Ring
[0085] 432: Second ring
[0086] 44: Crossbar
[0087] 5: Display
[0088] 6: Elastic module
[0089] 61: Spring seat
[0090] 611: Upper positioning groove
[0091] 612: Lower positioning slot
[0092] 613, 613': Side limiter
[0093] 62, 62': Constant force spring
[0094] 621, 621': free end
[0095] 7: Locking firmware
[0096] 8: Wire guide DETAILED DESCRIPTION
[0097] See also Figure 1 、 Figure 5 As shown, the support device 1 with a quick-release structure in the present invention mainly includes a support module 2, a pivot assembly 3, a carrier module 4 and a display 5. During implementation, the support module 2 is connected to one end of the pivot assembly 3, and the other end of the pivot assembly 3 is pivotally connected to the carrier module 4 to connect the display 5; the carrier module 4 includes a carrier plate 41, a sliding plate 42 and two elastic members 43, the sliding plate 42 is slidably connected to one side of the carrier plate 41, the carrier plate 41 has a guide portion 412, the sliding plate 42 has positioning portions 421, 421', and the two ends of the elastic member 43 are respectively connected to the first guide portion 412 and the positioning portions 421, 421' to provide elastic restoring force for the sliding plate 42, one end of the display 5 is clamped on the top of the carrier plate 41, and the other end is clamped on the buckle portion 425 of the sliding plate 42.
[0098] See also Figures 1 to 5 As shown, it is a first embodiment of the support device 1 with a quick-release structure of the present invention, which mainly includes a support module 2, a pivot assembly 3, a carrier module 4 and a display 5. In implementation, the support module 2 mainly includes a support member 21, a sliding member 22, a neck member 23, a pivot rod 24, a slide rail assembly 25 and a friction block 26. In this embodiment, the support member 21 is formed by metal die casting (die casting The support member 21 is made by a process of molding. The support member 21 has an elongated concave accommodating space 211 to accommodate the sliding member 22 and the slide rail assembly 25. The accommodating space 211 has two bottom plates 213 and a rear plate 214 symmetrically arranged on both sides, and the top of the support member 21 has a top groove 212 passing through. The slide rail assembly 25 has a first slide rail 251 and a second slide rail 252, which are respectively fixed to the left and right sides of the accommodating space 211, and the bottoms of the first slide rail 251 and the second slide rail 252 are respectively in contact with the bottom plate 213; the two sides of the sliding member 22 are respectively fixed to the first slide rail 25 1 and the second slide rail 252, so that the sliding member 22 can move up and down relative to the support member 21; the front and rear sides of the sliding member 22 are concave to form a first positioning groove 221 and a second positioning groove 222. The top of the sliding member 22 is also provided with a through hole 225, and the bottom is provided with an adjustment hole 224 running through the front and rear directions. The friction block 26 is locked in the adjustment hole 224 and pressed backward against the inner side surface of the rear plate 214, thereby generating lateral friction torque when the sliding member 22 slides up and down; during implementation, the friction block 26 can also be connected to the sliding member 22 in a forward and backward moving manner to adjust the magnitude of the friction torque.
[0099] A convex neck portion 231 is provided at one end of the neck member 23. After the convex neck portion 231 is connected to the first positioning groove 221, the locking member 7 passes through the top groove 212 and penetrates into the through-hole 225 and the top of the convex neck portion 231 to connect the sliding member 22 and the neck member 23; the first positioning groove 221 has transversely spaced convex ribs on both sides to guide the convex neck portion 231 to penetrate into the first positioning groove 221, and the spaced convex ribs make the convex neck portion 231 and the first positioning groove 221 in a non-tight state, avoiding the formation of a damping effect during the assembly process and affecting the assembly feel; the other end of the neck member 23 has a laterally inwardly concave concave neck portion 232, and its upper and lower parallel plates longitudinally penetrate the pivot hole 233, so that the pivot rod 24 penetrates and is pivotally connected to one end of the pivot assembly 3.
[0100] The pivot assembly 3 includes an adapter 31, two torsion springs 32, and two end fixing members 33. The shaft is laterally fixed to one end of the adapter 31 by insert injection molding to form a first pivot portion 311. The two torsion springs 32 and the two end fixing members 33 are respectively assembled and fixed to the left and right ends of the first pivot portion 311. The upper and lower sides of the first pivot portion 311 are further provided with protrusions. The front end of the first pivot portion 311 and the protrusions form limiting recesses 313 and 313' respectively. The first pivot portion 311 is pivotally connected to the carrier module 4, so that the carrier module 4 can be tilted up and down and stopped at any limiting recess 313 and 313'. The two torsion springs 32 provide the pivot assembly. 3 to prevent any stagnation during vertical tilting. The other end of the adapter member 31 extends laterally to form an elongated second pivot portion 312. The second pivot portion 312 has a longitudinally extending slot. The second pivot portion 312 is disposed within the concave neck portion 232, with the slot corresponding to the pivot hole 233. The second pivot portion 312 is then pivotally connected via the pivot rod 24, thereby enabling the pivot assembly 3 to pivot laterally (swivel) to connect to the neck member 23. Furthermore, an arcuate segment 234 is formed on the bottom side of the concave neck portion 232. Limiting protrusions 314 are formed on the bottom side of the second pivot portion 312. The limiting protrusions 314 rotate about the arcuate segment 234 and stop at both ends of the arcuate segment 234, thereby limiting the pivoting angle of the display 5.
[0101] The carrying module 4 includes a carrying plate 41, a sliding plate 42, an elastic member 43 and two cross bars 44. The carrying plate 41 is a stamped plate with an opening in the middle. Two bent side plates 411 are provided parallel to the left and right sides of the opening. The left and right ends of the first pivot portion 311 are respectively pivotally connected to the side plates 411, so that the display 5 can be tilted relative to the support member 21 with the help of the carrying module 4; the two ends of the cross bar 44 are respectively locked and connected to the side plates 411. The cross bar 44 is parallel to the axis of the first pivot portion 311 and is respectively provided on the upper and lower sides thereof. When the carrying module 4 is tilted to When the angle is maximum, any cross bar 44 stops at one of its limiting recesses 313, 313' to limit the tilt angle of the display 5; further explained, in this embodiment, the opening of the carrier plate 41 is a circular hole, and is clamped by two stamping plates corresponding to the front and rear sides of the opening of the carrier plate 41. The side plate 411 and the carrier plate 41 are independent components and are respectively fixed to the rear stamping plate to be connected to one end of the pivot assembly 3. In this way, in addition to being able to tilt and adjust relative to the support module 2, the carrier plate 41 also has the function of rotation (PIVOT).
[0102] A first guide portion 412 and two second guide portions 413 are provided on the side of the supporting plate 41 facing the pivot assembly 3. The first guide portion 412 and the second guide portion 413 are both symmetrically arranged on the supporting plate 41. The first guide portion 412 and the second guide portion 413 are both fixing members with a large head at one end, such as screws, rivets, etc.; the sliding plate 42 is respectively provided with two first guide grooves 422, 422' and two second guide grooves 423, 423' passing through at positions corresponding to the first guide portion 412 and the second guide portion 413. The first guide portion 412 penetrates the first guide grooves 422, 422', and the second guide portion 413 penetrates the second guide grooves 423, 423'. The inner side surface of the second guide portion 413 is slidably connected to the outer side surface of the sliding plate 42 to guide the sliding plate 42 to move up and down; the two ends of the elastic member 43 are respectively The first ring portion 431 and the second ring portion 432, the upper end of the first guide groove 422, 422' has a rod-shaped structure, which is the positioning portion 421, 421', the first ring portion 431 is respectively sleeved on the positioning portion 421, 421', and the second ring portion 432 is respectively sleeved on the first guide portion 412, by means of which the elastic member 43 provides elastic restoring force for the sliding plate 42, and the positioning portion 421, 421' serves as a cross bar structure on the sliding plate 42, which is convenient for personnel to directly sleeve the elastic member 43 onto the sliding plate 42, and no additional fixing parts are required to reduce the number of parts; it should be noted that in other embodiments, the number of the first guide portion 412, the second guide portion 413, the first guide groove 422, 422', the second guide groove 423, 423' and the elastic member 43 can be one or more, and is not limited to this.
[0103] See next Figure 6 and Figure 7The top of the carrier plate 41 has three bent convex plates 415 and two notches 414 at the bottom. The sliding plate 42 has a snap-fit portion 425 on the side corresponding to the notch 414 facing the carrier plate 41. The snap-fit portion 425 slides in and out of the notch 414. When the display 5 is assembled to the carrier module 4, the upper and lower ends of the back side of the display 5 are respectively engaged with the convex plates 415 and the snap-fit portion 425 to fix and support the display 5. During implementation, the sliding plate 42 is further provided with a toggle portion 424. When an external force is applied to the toggle portion 424 to drive the sliding plate 42 to move upward, the first guide grooves 422 and 422' slide relative to the first guide portion 412, and the second guide grooves 423 and 424' slide in and out of the first guide portion 412. 3' also slides relative to the second guide portion 413 until the lower ends of the second guide grooves 423, 423' abut against the second guide portion 413. At this time, the latch portion 425 enters the recess 414 and disengages from the lower end of the back side of the display 5. The display 5 can be tilted upward with one end adjacent to the protruding plate 415 as the rotation center, and then lifted upward to disengage the upper end of the display 5 from the protruding plate 415, thereby completely separating the display 5 from the supporting module 4. Subsequently, when the external force stops applying to the toggle portion 424, the elastic member 43 releases the elastic force to drive the sliding plate 42 to move downward. The upper ends of the second guide grooves 423, 423' abut against the second guide portion 413, and the sliding plate 42 moves to its original position.
[0104] Please refer again Figure 2 and Figure 3The support device 1 with a quick-release structure also includes an elastic module 6 and a wire groove 8. The elastic module 6 is arranged in the second positioning groove 222 of the sliding member 22. The elastic module 6 includes a spring seat 61 and two constant-force springs 62, 62'. The spring seat 61 has an upper positioning groove 611 and a lower positioning groove 612 arranged longitudinally. The two constant-force springs 62, 62' are respectively arranged in the upper positioning groove 611 and the lower positioning groove 612; In addition, in this embodiment, notches are respectively provided on both sides of the spring seat 61, and the notches are two side limit portions 613, 613'. Two obliquely protruding engaging portions 223, 223' are respectively provided on both sides of the second positioning groove 222. When the spring seat 61 is assembled When reaching the second positioning groove 222, the locking portions 223, 223' correspond to and lock the side limiting portions 613, 613' respectively, so that the elastic module 6 is fixed to the rear side of the sliding member 22. In other embodiments, the side limiting portions 613, 613' and the locking portions 223, 223' can be implemented as a single group; an upper hook 215 is provided at the top of the rear plate 214, and one end of the two constant force springs 62, 62' respectively has a free end 621, 621', which is fixed on the upper hook 215. When the sliding member 22 is subjected to external force and moves up and down in the accommodating space 211, the elastic module 6 provides elastic force so that the sliding member 22 can stop arbitrarily relative to the supporting member 21. The wire trough 8 is a hollow square plastic kit. The bottom end of the support member 21 forms an oblique groove 216, and the wire trough 8 is fixed in the groove 216. This wire trough 8 is set obliquely. Compared with the background technology in which the slots are formed on the front and back sides of the support frame in a straight line, this structure is more convenient for users to organize the lines, and the wire trough 8 can cover the lines to maintain the appearance. In other embodiments, the guiding direction of the wire trough 8 can also be set from the left front to the right rear, and is not limited to this.
[0105] Among them, the support device with quick-release structure can also be adjusted and designed for various simple replacements according to the required specifications, such as Figures 8 to 10 As shown, they are the second to fourth embodiments of the support device with a quick-release structure of the present invention, and their overall structure and operation method are roughly the same as the first embodiment, except that the difference lies in the limiting structure and guiding structure between the supporting plate and the sliding plate.
[0106] like Figure 8As shown, it is a second embodiment of the support device with a quick-release structure of the present invention, wherein the two side edges of the sliding plate 42 can respectively form side sliding parts 420, 420', and the bottom ends of the side sliding parts 420, 420' also have abutment parts 4201, 4201', respectively. The first guide part 412 can slide and abut the side sliding parts 420, 420', respectively, to assist the sliding plate 42 to slide relative to the supporting plate 41; when the sliding plate 42 is pushed upward, the second guide part 413 slides along the second guide groove 423, 423' and abuts against one end of the second guide groove 423, 423', and the first guide part 412 stops at the abutment parts 4201, 4201', respectively, to assist in limiting the sliding plate 42 and enhance the stopping effect. The second guiding grooves 423 and 423 ′ further have annular ribs 4231 and 4231 ′ inside, respectively. One end of the second guiding portion 413 abuts against the annular ribs 4231 and 4231 ′, so that the sliding plate 42 is limitedly connected to the supporting plate 41 .
[0107] Please see Figure 9 , which is the third embodiment of the support device with a quick-release structure of the utility model. In this embodiment, the side of the supporting plate 41 facing the sliding plate 42 has a first guide portion 412 protruding toward the side, and the first guide portion 412 is a stamped convex column. The first guide portion 412 can be fixedly connected to the second ring portion 432 of the elastic member 43, and the first guide portion 412 is correspondingly provided on the side sliding portions 420, 420'. When the sliding plate 42 slides up and down, the first guide portion 412 can slide along the side sliding portions 420, 420' respectively, to achieve the effect of auxiliary guided sliding; it should be noted that the number of the second guide portion 413 in the second guide grooves 423, 423' is at least one. Figure 9 The number is one, and the second guide portion 413 can be respectively stopped at both ends of the second guide grooves 423 and 423 ′ in the unlocked state and the locked state, which is not limited in the present invention.
[0108] Please see Figure 10, which is the fourth embodiment of the support device with a quick-release structure of the present invention. In this embodiment, the supporting plate 41 has a third guide portion 416, 416', which is an L-shaped hook structure bent toward the sliding plate 42. The sliding plate 42 is provided with a third guide groove 426, 426', which is a linear through groove. After the third guide portion 416, 416' is inserted into the third guide groove 426, 426', the sliding plate 42 is pushed parallel to the first guide portion 412 in the shape of a convex column, so that the L-shaped end portion of the third guide portion 416, 416' can abut against the plane of the sliding plate 42 facing the supporting plate 41 in the opposite direction, and then the first guide portion 412 on the other side is locked. The sliding plate 42 is limitedly connected to the supporting plate 41; when the sliding plate 42 slides up and down relative to the supporting plate 41, the two ends of the third guide parts 416, 416' can be respectively stopped at the two ends of the third guide grooves 426, 426' in the unlocked state and the locked state; it should be noted that the structure of the first guide parts 412 on both sides of the supporting plate can be any replacement of the fixed structure such as stamped bosses, screws, rivets, etc., as long as the side sliding parts 420, 420' on either side of the sliding plate 42 can be pressed against the corresponding first guide parts 412, and the first guide parts 412 on the other side can fix the sliding plate 42, as long as the sliding plate 42 can be prevented from separating from the supporting plate 41, it is all within the scope of the rights of the present invention.
[0109] In addition, during the die-casting process, in order to prevent localized thick thickness from causing shrinkage during the cooling stage after molding, at least one trapezoidal concave groove is provided on the rear side of the support member 21, the sliding member 22, the neck member 23, and both sides of the adapter 31. The main purpose of this is to make the thickness of each part of the part nearly uniform, while also reducing the use of raw materials and thus reducing costs.
[0110] Based on the above structure, the support device with a quick-release structure in the utility model is provided with a sliding plate in a sliding connection on the carrier plate, and the sliding plate is provided with a buckle portion protruding toward the side of the display to fix the display; when the sliding plate is pushed against the toggle portion to move the sliding plate upward, the buckle portion is separated from the display to make it detachable from the support module, and the carrier module, the neck part and the support member can be further disassembled into three parts; an elastic part is also provided between the sliding plate and the carrier plate, and the elastic part provides elastic restoring force after the sliding plate moves upward, and can reset itself when the external force pushing the sliding plate disappears; the carrier plate slides on the sliding plate correspondingly through the stamped guide part The two components are interlocked by utilizing their shapes to reduce the use of locking parts and simplify the manufacturing and assembly procedures. Outwardly protruding locking portions are provided on both sides of the second positioning slot at the rear of the support member. Side limiting portions are provided on both sides of the spring seat corresponding to the locking portions. The spring seat is fixed in the second positioning slot by means of the side limiting portions, which lock against the locking portions. The snap-fit structure eliminates the need for fasteners such as screws and rivets, reducing assembly time and costs. An obliquely opened wire duct is provided at the bottom of the support member. Compared with the straight slots in the traditional structure, this makes it easier for users to view and organize wires while viewing, and can effectively shield the wires when using the display.
[0111] Although the present invention discloses preferred specific embodiments to achieve the above-mentioned objectives, it is not intended to limit the structural features of the present invention. Any technician in this technical field should understand that under the technical spirit of the present invention, any easily conceivable changes or modifications are possible and are all covered by the scope of the patent application of the present invention.
Claims
1. A support device with a quick-release structure, characterized in that: include: A supporting module comprising a supporting member and a sliding member, wherein the supporting member has an accommodating space and the sliding member is disposed in the accommodating space; a pivot assembly, one end of which is pivotally connected to one side of the sliding member; A carrying module is pivotally connected to the other end of the pivot assembly, and the carrying module includes: A supporting plate having two symmetrically arranged side plates pivotally connected to the other end of the pivot assembly, and a first guide portion on one side of the supporting plate; a sliding plate slidably connected to the side of the supporting plate, the sliding plate comprising a positioning portion, a first guide groove, and a buckle portion, the first guide portion sliding in the first guide groove; and an elastic member, two ends of which are respectively connected to the first guide portion and the positioning portion to provide elastic restoring force to the sliding plate; and One end of the display is clamped on the top of the carrying plate, and the other end is clamped on the buckle portion.
2. A support device with a quick-release structure, characterized in that: include: A supporting module comprising a supporting member and a sliding member, wherein the supporting member has an accommodating space and the sliding member is disposed in the accommodating space; a pivot assembly, one end of which is pivotally connected to one side of the sliding member; A carrying module is pivotally connected to the other end of the pivot assembly, and the carrying module includes: A supporting plate having two symmetrically arranged side plates pivotally connected to the other end of the pivot assembly, and a first guide portion on one side of the supporting plate; a sliding plate slidably connected to the side of the supporting plate, the sliding plate having a positioning portion and a locking portion; and an elastic member, two ends of which are respectively connected to the first guide portion and the positioning portion to provide elastic restoring force to the sliding plate; and One end of the display is clamped on the top of the carrying plate, and the other end is clamped on the buckle portion. 3 . The support device with a quick-release structure according to claim 2 , wherein the sliding plate further comprises at least one side sliding portion, and the first guide portion slides along the at least one side sliding portion.
4. The support device with a quick-release structure according to claim 3, wherein the sliding plate further includes a stop portion, the stop portion is disposed adjacent to the at least one side sliding portion, and when the first guide portion abuts the stop portion, the latch portion detaches from the other end of the display.
5. A support device with a quick-release structure according to any one of claims 2 to 4, wherein the sliding plate further includes at least one third guide groove, the supporting plate protrudes a third guide portion toward one side of the sliding plate, one end of the third guide portion penetrates into the third guide groove and slides along the third guide groove, the inner side surface of the end of the third guide portion is slidably connected to a side surface of the sliding plate, and when the elastic member is subjected to force and accumulates elastic force, one side of the third guide portion presses against one side of the third guide groove.
6. The support device with a quick-release structure according to claim 1 or 2, wherein the sliding member further includes a neck member, a convex neck portion at one end of which is connected to the first positioning groove on the side of the sliding member, and a locking member is locked to connect the top of the sliding member and the top of the convex neck portion.
7. A support device with a quick-release structure according to claim 6, wherein the other end of the neck piece has a concave neck portion, the concave neck portion has a pivot hole extending longitudinally therethrough, the end of the pivot assembly has a second pivot portion, and a pivot rod is provided in the pivot hole and the second pivot portion so that the pivot assembly is rotatably connected to the neck piece.
8. The support device with a quick-release structure according to claim 7, wherein the concave neck portion further has an arc-shaped segment, and the second pivot portion has a limiting protrusion, and the limiting protrusion is stopped at both ends of the arc-shaped segment.
9. A support device with a quick-release structure according to claim 1 or 2, wherein the pivot assembly further includes an adapter, a torsion spring and two end fixing members, the two ends of the adapter have a first pivot part and a second pivot part, the torsion spring is sleeved onto the first pivot part, the two ends of the first pivot part respectively penetrate into the two side plates, and the two end fixing members are respectively locked to the two ends of the first pivot part and abut against one side of the two side plates.
10. The support device with a quick-release structure according to claim 1 or 2, wherein the support module further includes a slide rail group, which is respectively arranged on both sides of the accommodating space, and the slide rail group further includes a first slide rail and a second slide rail, and the two sides of the sliding member are respectively assembled and connected to the first slide rail and the second slide rail to slideably connect the support component.
11. The support device with a quick-release structure according to claim 10, wherein the other side of the sliding member has a second positioning groove, the elastic module is engaged with the second positioning groove, the elastic module further includes a spring seat and a constant-force spring, the constant-force spring is positioned in the spring seat, the top end of the support member has an upper hook, the free end of the constant-force spring is fixed to the upper hook; wherein the spring seat has a side limit portion on one side, and the second positioning groove has an engaging portion on a side corresponding to the side limit portion, the engaging portion engaging with the side limit portion to position the spring seat in the second positioning groove.
12. The support device with a quick-release structure according to claim 1 or 2, wherein the sliding member is further provided with a friction block, which is arranged at an end of the sliding member away from its top and abuts against the rear plate of the support member to generate lateral friction force.
13. A support device with a quick-release structure according to any one of claims 1 to 4, wherein the supporting plate is further provided with a second guide portion, the sliding plate is further provided with a second guide groove, the inner side surface of one end of the second guide portion is slidably connected to a side surface of the sliding plate, the second guide portion slides in the second guide groove, and when the elastic member is not extended, the second guide portion abuts against one end of the second guide groove.
14. The support device with a quick-release structure according to claim 1 or 2, wherein the positioning portion is a rod-shaped structure, and the two ends of the elastic member are respectively a first ring portion and a second ring portion, the first ring portion is sleeved on the positioning portion, and the second ring portion is sleeved on the first guide portion.