A split-type crystal brick wind chime quick-installation structure
By installing limiting components on the steel rope and using a tightening screw and push rod mechanism, the split-type crystal brick wind chime quick-installation structure solves the problems of poor stability, inconvenient installation, and difficult maintenance of crystal brick wind chime screens, achieving efficient installation and low-cost maintenance.
Patent Information
- Application Number
- CN202210544618.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-05-19
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2042-05-19
AI Technical Summary
Existing crystal brick wind chime screens suffer from poor stability, inconvenient installation, difficult disassembly, and high maintenance costs.
The split-type crystal brick wind chime adopts a quick-installation structure. By installing a limiting component on the steel rope and then installing the crystal brick on the limiting component, the position of the crystal brick can be adjusted by using the sliding and locking functions of the limiting component. The tension of the steel rope can be adjusted by combining the tightening screw and push rod mechanism to achieve stable and convenient installation.
It improved the installation efficiency of crystal bricks, enhanced the stability of the screen, reduced maintenance difficulty and cost, and ensured the safety and non-deformation of the steel rope.
Smart Images

Figure CN114790809B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of architectural decoration, specifically to a split-type crystal brick wind chime quick-installation structure. Background Technology
[0002] Existing technology for controlling the stability of crystal brick wind chime screens: Considering the excessive weight of the overall crystal screen and the safety hazards associated with conventional erection methods, a new adjustable internal frame flexible buffer system is proposed. The bottom of the frame will be pre-embedded in the ground, and the upper part of the frame will be detachably connected to the pre-embedded frame to ensure overall stability. Considering that the crystal chimes will be installed using steel cables, which must ensure safety and prevent deformation, a self-adaptive fixing system for the steel cables will be designed into the screen's steel frame system.
[0003] The existing crystal bricks are inconvenient to install and disassemble. When a crystal brick is damaged, repair is difficult, requiring the entire corresponding steel rope to be disassembled and replaced, which increases the maintenance cost of the crystal brick wind chime. Summary of the Invention
[0004] To address the aforementioned technical problems, this invention proposes a split-type crystal brick wind chime quick-installation structure. By installing a limiting component on a steel rope and then mounting the crystal brick onto the limiting component, it offers the advantage of high installation efficiency. The limiting component is slidably mounted on the steel rope and is finally locked in place by a locking mechanism, thereby allowing adjustment of the crystal brick's position.
[0005] Specifically, this invention proposes a split-type crystal brick wind chime quick-installation structure, comprising:
[0006] A steel rope, the top of which is mounted on the ceiling;
[0007] A limiting component is slidably disposed on the steel rope, and the locking part of the limiting component is used to compress and lock the steel rope.
[0008] A crystal brick, which is mounted on the limiting component.
[0009] Preferably, the limiting component includes:
[0010] A positioning block, wherein a first guide opening is provided in the positioning block, and the steel rope is slidably threaded through the first guide opening;
[0011] An extrusion sheet is fixed to the positioning block, and a plurality of the extrusion sheets surround the outer periphery of the steel rope;
[0012] A tightening block is provided with a frustum-shaped opening. The end of the extrusion plate facing away from the positioning block extends into the frustum-shaped opening, and the tightening block and the positioning block are connected by a tightening screw.
[0013] Preferably, the end of the extrusion sheet facing away from the positioning block is provided with an inclined portion, which is fitted into the frustum-shaped opening.
[0014] Preferably, the lower end face of the crystal brick is provided with a groove for accommodating the limiting component; the upper end face of the crystal brick is provided with a guide hole communicating with the groove for threading the steel rope.
[0015] Preferably, the crystal brick includes a first brick body and a second brick body, and the opposite surfaces of the first brick body and the second brick body are respectively provided with semi-cylindrical guide channels. The guide hole is formed by splicing the semi-cylindrical guide channels of the first brick body and the second brick body. The first brick body and the second brick body are inserted and assembled together.
[0016] Preferably, the first brick portion and the second brick portion are bonded and fixed together.
[0017] Preferably, the first brick portion has an insertion groove on the side facing the second brick portion, and the second brick portion has an insertion block on the side facing the first brick portion, and the insertion block is inserted into the insertion groove.
[0018] Preferably, the crystal brick is provided with multiple through holes horizontally, the through holes communicating with the guide hole, and a sleeve with internal threads is fixed in the through hole. The tightening screw in the sleeve is used to lock the steel rope in the guide hole.
[0019] Preferably, the top of the steel rope is fixed to the ceiling, the bottom of the steel rope is fixed to the floor, and the length of the steel rope is greater than the distance between the ceiling and the floor; the ceiling is provided with a tightening assembly for tightening the steel rope.
[0020] Preferably, the tightening component includes:
[0021] A first mounting plate, which is fixed to the ceiling by a first fixing rod;
[0022] The second mounting plate is fixed to the lower end face of the first mounting plate by a second fixing rod;
[0023] A hinge base, which is fixed to the upper end face of the second mounting plate;
[0024] A rotating fork is hinged to the hinge seat and connected to the second mounting plate via a spring. The spring is used to lock the steel rope with the rotating fork.
[0025] A push rod mechanism, the output end of which is connected to the rotating fork and used to adjust the rotation angle of the rotating fork.
[0026] Preferably, the steel rope can be slidably threaded through the clearance openings of the first mounting plate and the second mounting plate in a vertical direction.
[0027] Beneficial effects:
[0028] 1. This invention proposes a split-type crystal brick wind chime quick-installation structure. By installing a limiting component on a steel rope and then mounting the crystal brick onto the limiting component, it has the advantage of high installation efficiency. The limiting component is slidably mounted on the steel rope and is finally locked in place by a locking part, thereby allowing adjustment of the crystal brick's position.
[0029] 2. In this solution, the position of the positioning block is adjusted. Since the extrusion plate and the tightening block are connected to the positioning block, their positions are also determined. The tightening screw is adjusted so that the frustum-shaped opening of the tightening block presses against the extrusion plate, thereby causing the extrusion plate to clamp the steel rope.
[0030] 3. In this scheme, the steel rope is pulled appropriately, and the rotation angle of the rotating fork is adjusted through the push rod mechanism to prevent the rotating fork from contacting the steel rope. Then, the tension of the steel rope is adjusted. Finally, the push rod mechanism is reset, and the rotating fork clamps the steel rope under the action of the spring. At this time, the upper end of the rotating fork is set towards the steel rope in the tilt direction. Under the action of the steel rope's own weight, the engagement between the rotating fork and the steel rope will gradually strengthen as the steel rope moves downward, effectively preventing the steel rope from sagging. Attached Figure Description
[0031] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0032] Figure 1 This is a schematic diagram of a split-type crystal brick wind chime quick-installation structure proposed in this embodiment;
[0033] Figure 2 This is a schematic diagram of the assembly relationship between the limiting component and the crystal brick in this embodiment;
[0034] Figure 3 This is a schematic diagram showing the connection relationship between the tightening component and the steel rope in this embodiment;
[0035] Figure 4 This is a three-dimensional structural diagram of the crystal brick in this embodiment;
[0036] Figure 5 This is an exploded view of the crystal brick in this embodiment.
[0037] The reference numerals used in the attached figures are as follows:
[0038] 11-Steel rope; 12-Limiting component; 13-Crystal brick; 14-Positioning block; 15-First guide opening; 16-Extrusion plate; 17-Tightening block; 18-Frustoconical opening; 19-Tightening screw; 20-Inclined part; 21-Groove; 22-Guide hole; 23-First brick body; 24-Second brick body; 25-Interlocking groove; 26-Interlocking block; 27-Sleeve; 28-Tightening screw; 29-First mounting plate; 30-First fixing rod; 31-Second mounting plate; 32-Second fixing rod; 33-Hinge seat; 34-Rotating fork; 35-Push rod mechanism; 36-Allowing opening; 37-Push rod; 38-Pressing plate. Detailed Implementation
[0039] The present invention will now be described in further detail with reference to the accompanying drawings.
[0040] like Figure 1 and Figure 2 As shown, this embodiment proposes a split-type crystal brick wind chime quick-installation structure, including:
[0041] Steel rope 11, the top of steel rope 11 is installed on the ceiling;
[0042] The limiting component 12 is slidably disposed on the steel rope 11, and the locking part of the limiting component 12 is used to compress and lock the steel rope 11.
[0043] Crystal brick 13 is installed on limit assembly 12.
[0044] The technical advantage of this solution is that by installing the limiting component 12 on the steel rope 11 and then mounting the crystal brick 13 on the limiting component 12, the installation efficiency is high. The limiting component 12 is slidably mounted on the steel rope 11, and is finally locked in place by a locking part, thereby allowing the position of the crystal brick 13 to be adjusted.
[0045] As one implementation method of this embodiment, such as Figure 2 As shown, the limiting component 12 includes:
[0046] The positioning block 14 has a first guide opening 15, and the steel rope 11 is slidably threaded through the first guide opening 15.
[0047] Extrusion sheet 16, extrusion sheet 16 is fixed on positioning block 14, and multiple extrusion sheets 16 surround the outer periphery of steel rope 11;
[0048] The tightening block 17 has a frustum-shaped opening 18 through it. The end of the extrusion piece 16 facing away from the positioning block 14 extends into the frustum-shaped opening 18, and the tightening block 17 and the positioning block 14 are connected by a tightening screw 19.
[0049] The technical advantages of this solution are as follows: After adjusting the position of the positioning block 14, one person holds the positioning block 14 while another person adjusts the tightening screw 19; or, the steel rope 11 is clamped below the positioning block 14 using a clamp to support it. Since the extrusion plate 16 and the tightening block 17 are connected to the positioning block 14, their positions are also determined. Adjusting the tightening screw 19 causes the frustum-shaped opening 18 of the tightening block 17 to press against the extrusion plate 16, thereby clamping the steel rope 11.
[0050] As one embodiment of this example, the end of the extrusion sheet 16 facing away from the positioning block 14 is provided with an inclined portion 20, which is fitted into the frustum-shaped opening 18.
[0051] The technical advantage of this solution is that it facilitates the sliding of the inclined part 20 within the frustum-shaped opening 18.
[0052] As one implementation method of this embodiment, such as Figure 1 and Figure 2 As shown, a groove 21 is provided on the lower end face of the crystal brick 13, which is used to accommodate the limiting component 12; a guide hole 22 is provided on the upper end face of the crystal brick 13, which is connected to the groove 21, and the guide hole 22 is used to thread the steel rope 11 through.
[0053] The technical advantage of this solution is that it facilitates the engagement of the crystal brick 13 with the limiting component 12.
[0054] As one implementation method of this embodiment, such as Figure 4 and Figure 5 As shown, the crystal brick 13 includes a first brick body 23 and a second brick body 24. The opposite surfaces of the first brick body 23 and the second brick body 24 are respectively provided with semi-cylindrical guide channels. The guide hole 22 is formed by splicing the semi-cylindrical guide channels of the first brick body 23 and the second brick body 24. The first brick body 23 and the second brick body 24 are inserted and assembled together.
[0055] The crystal brick 13 in this solution can be formed using a corresponding mold. After the raw material liquid cools in the mold and is demolded, the corresponding first brick part 23 and second brick part 24 are formed.
[0056] In one embodiment of this invention, the first brick portion 23 and the second brick portion 24 are bonded together. Construction adhesive can be applied to the corresponding insertion points of the first brick portion 23 and the second brick portion 24, and after the adhesive solidifies, the first brick portion 23 and the second brick portion are fixed together.
[0057] Furthermore, such as Figure 5 As shown, the first brick part 23 has a groove 25 on the side facing the second brick part 24, and the second brick part 24 has a block 26 on the side facing the first brick part 23. The block 26 and the groove 25 are connected and assembled.
[0058] As one implementation method of this embodiment, such as Figure 4 and Figure 5 As shown, the crystal brick 13 has multiple horizontal through holes that communicate with the guide hole 22. A sleeve 27 with internal threads is fixed in the through hole, and a tightening screw 28 screwed into the sleeve 27 is used to lock the steel rope 11 in the guide hole 22.
[0059] The technical effect of this solution is that, in order to prevent the crystal brick 13 from moving, the steel rope 11 is tightened by the tightening screw 28, thereby fully limiting the crystal brick 13.
[0060] As one implementation method of this embodiment, such as Figure 3 As shown, the top of the steel rope 11 is fixed to the ceiling, the bottom of the steel rope 11 is fixed to the floor, and the length of the steel rope 11 is greater than the distance between the ceiling and the floor; a tightening assembly for tightening the steel rope 11 is provided on the ceiling.
[0061] The technical effect of this solution is that the tension of the steel rope 11 can be adjusted according to the actual working scenario. When the steel rope 11 is slack, it can drive the crystal brick 13 to swing slightly.
[0062] Furthermore, the tightening components include:
[0063] The first mounting plate 29 is fixed to the ceiling by the first fixing rod 30;
[0064] The second mounting plate 31 is fixed to the lower end face of the first mounting plate 29 by the second fixing rod 32;
[0065] Hinged base 33, the hinged base 33 is fixed to the upper end surface of the second mounting plate 31;
[0066] Rotating fork 34 is hinged on hinge seat 33. Rotating fork 34 is connected to the second mounting plate 31 by spring. Spring is used to lock steel rope 11 by rotating fork 34.
[0067] The push rod mechanism 35 has its output end connected to the rotating fork 34 and is used to adjust the rotation angle of the rotating fork 34.
[0068] In this scheme, the steel rope 11 is pulled appropriately, and the rotation angle of the rotating fork 34 is adjusted by the push rod mechanism 35 to prevent the rotating fork 34 from contacting the steel rope 11. Then, the tension of the steel rope 11 is adjusted. Finally, the push rod mechanism 35 is reset, and the rotating fork 34 clamps the steel rope 11 under the action of the spring. At this time, the upper end of the rotating fork 34 is set towards the steel rope 11 in the tilt direction. Under the action of the steel rope 11's own weight, the engagement between the rotating fork 34 and the steel rope 11 will gradually strengthen when the steel rope 11 moves downward, which can effectively prevent the steel rope 11 from sagging.
[0069] Furthermore, the push rod mechanism includes a push rod 37 and a pressing plate 38. The pressing plate 38 is located between the first mounting plate 29 and the second mounting plate 31. The upper end of the push rod 37 is fixed to the lower surface of the mounting plate, and the lower end of the push rod 37 slidably passes through the through hole of the second mounting plate 31 and abuts against or is connected to the rotating fork.
[0070] Furthermore, the steel rope 11 can be slidably threaded through the clearance opening 36 of the first mounting plate 29 and the second mounting plate 31 in a vertical direction.
[0071] For those skilled in the art, various modifications and improvements can be made without departing from the inventive concept of this invention, and these all fall within the protection scope of this invention.
Claims
1. A split-type crystal brick wind chime quick-installation structure, characterized in that, include: A steel rope (11), the top of which is mounted on the ceiling; A limiting component (12) is slidably disposed on the steel rope (11), and the locking part of the limiting component (12) is used to squeeze and lock the steel rope (11); A crystal brick (13) is mounted on the limiting component (12); The top of the steel rope (11) is fixed to the ceiling, the bottom of the steel rope (11) is fixed to the floor, and the length of the steel rope (11) is greater than the distance between the ceiling and the floor; the ceiling is provided with a tightening assembly for tightening the steel rope (11); The tightening component includes: The first mounting plate (29) is fixed to the ceiling by a first fixing rod (30); The second mounting plate (31) is fixed to the lower end face of the first mounting plate (29) by the second fixing rod (32); Hinged base (33), the hinged base (33) is fixed to the upper end face of the second mounting plate (31); Rotating fork (34), the rotating fork (34) is hinged on the hinge seat (33), the rotating fork (34) is connected to the second mounting plate (31) by a spring, the spring is used for the rotating fork (34) to lock the steel rope (11); A push rod mechanism (35) is provided, the output end of which is connected to the rotating fork (34) and is used to adjust the rotation angle of the rotating fork (34). The limiting component (12) includes: The positioning block (14) is provided with a first guide opening (15), and the steel rope (11) is slidably threaded through the first guide opening (15); Extrusion piece (16), extrusion piece (16) is fixed on the positioning block (14), and a plurality of extrusion pieces (16) surround the outer periphery of the steel rope (11); A tightening block (17) is provided with a frustum-shaped opening (18) through it. One end of the extrusion piece (16) facing away from the positioning block (14) extends into the frustum-shaped opening (18), and the tightening block (17) and the positioning block (14) are connected by a tightening screw (19).
2. The split-type crystal brick wind chime quick-installation structure according to claim 1, characterized in that, The extrusion sheet (16) has an inclined portion (20) at one end facing away from the positioning block (14), and the inclined portion (20) is fitted into the frustum-shaped opening (18).
3. The split-type crystal brick wind chime quick-installation structure according to claim 2, characterized in that, The lower end face of the crystal brick (13) is provided with a groove (21) for accommodating the limiting component (12); the upper end face of the crystal brick (13) is provided with a guide hole (22) that communicates with the groove (21) for threading the steel rope (11).
4. The split-type crystal brick wind chime quick-installation structure according to claim 3, characterized in that, The crystal brick (13) includes a first brick body (23) and a second brick body (24). The opposite surfaces of the first brick body (23) and the second brick body (24) are respectively provided with semi-cylindrical guide channels. The guide hole (22) is formed by splicing the semi-cylindrical guide channels of the first brick body (23) and the second brick body (24). The first brick body (23) and the second brick body (24) are inserted and assembled together.
5. The split-type crystal brick wind chime quick-installation structure according to claim 4, characterized in that, The first brick part (23) and the second brick part (24) are bonded and fixed together.
6. The split-type crystal brick wind chime quick-installation structure according to claim 4 or 5, characterized in that, The first brick part (23) has a insertion groove (25) on the side facing the second brick part (24), and the second brick part (24) has an insertion block (26) on the side facing the first brick part (23). The insertion block (26) and the insertion groove (25) are inserted and assembled together.
7. The split-type crystal brick wind chime quick-installation structure according to claim 6, characterized in that, The crystal brick (13) has multiple horizontal through holes, which are connected to the guide hole (22). A sleeve (27) with internal threads is fixed in the through hole. The tightening screw (28) screwed in the sleeve (27) is used to lock the steel rope (11) in the guide hole (22).
Citation Information
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