Ultra-high performance concrete spliced storage rack

CN224820002UActive Publication Date: 2026-10-09GUANGDONG PREFABRICATED COMPONENTS CO LTD
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Patent Information

Application Number
CN202522357309.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-06
Publication Date
2026-10-09
Estimated Expiration
2035-11-06

AI Technical Summary

Technical Problem

[0003]传统的置物架材质大多是塑料类、金属类或木制类,在长时间使用后,置物架会产生不同性质的损坏,例如塑料类置物架会产生老化,金属类会产生受潮锈蚀,木制类会受潮发霉等问题,为了延长置物架的使用寿命和便于对置物架进行拼接,因此提出一种超高性能混凝拼接式置物架

Benefits of technology

[0015]采用上述技术方案,通过弹簧本身的弹性拉动圆盘向着第一槽口靠近,致使卡杆可穿过第一槽口进入通槽的内部,通过卡杆与第二卡槽的配合对挡板的一端进行限位,防止挡板的一端脱离第一方槽的内壁。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a super high performance coagulation splicing type commodity shelf relates to furniture display technical field, including L type support, the side of L type support is provided with T type support and cross type support, the side of L type support, T type support and cross type support all are seted up with the placement groove, the both sides inner wall of placement groove all are seted up with semicircle piece, the separation assembly and connecting assembly are arranged between L type support, T type support and cross type support. The utility model discloses through adopt super high performance concrete, make commodity shelf compression resistance and compactness reach very light and thin effect, and the surface is smooth after stripping again plus special connecting piece, can install convenience and ductility to compared with commodity shelf on general market, the commodity shelf of concrete material quality is more durable for damp proofing and rust prevention, prolongs the service life of commodity shelf.
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Description

Technical Field

[0001] This utility model relates to the field of furniture display technology, specifically to an ultra-high performance concrete splicing shelf. Background Technology

[0002] Storage shelves are racks made of a base and support columns for storing miscellaneous items. They are mostly supported by strip-shaped brackets with a base for support. They have a unique shape, ingenious design, are easy to assemble and disassemble, are clean and bright, and the open design makes the stored items visible at a glance. As storage shelves are increasingly used in home life and many households have more and more kinds of household items, the design of storage shelves is very simple and elegant while also being ingenious, so they are very useful for organizing household items.

[0003] Traditional shelving units are mostly made of plastic, metal, or wood. After prolonged use, they will suffer different types of damage. For example, plastic shelving units will age, metal shelving units will rust due to moisture, and wooden shelving units will mold due to moisture. In order to extend the service life of shelving units and facilitate their splicing, a high-performance concrete splicing shelving unit is proposed. Utility Model Content

[0004] The purpose of this invention is to provide an ultra-high performance concrete splicing storage rack to solve the problems mentioned in the background art.

[0005] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: An ultra-high performance concrete modular shelving unit includes an L-shaped bracket, with a T-shaped bracket and a cross-shaped bracket on the side of the L-shaped bracket. Placement slots are provided on the sides of the L-shaped bracket, T-shaped bracket and cross-shaped bracket, and semi-circular blocks are provided on the inner walls of both sides of the placement slots. A partition component and a connecting component are provided between the L-shaped bracket, T-shaped bracket and cross-shaped bracket. The separating component includes a first support plate and a second support plate disposed between an L-shaped bracket, a T-shaped bracket and a cross-shaped bracket, and the first support plate and the second support plate have the same structure.

[0006] A further improvement of the present invention is that: a semi-circular groove is provided on the upper outer side of the second support plate; a first square groove and a second square groove are uniformly provided on the side of the second support plate; a first sliding groove and a second sliding groove are uniformly provided on the outer side of the second support plate; a first slot is provided on the inner wall of the first square groove; a second slot is provided on the inner wall of the first slot; a through groove is provided on the inner wall of the second square groove; and a first slot and a second slot are also provided on the outer wall of the second square groove.

[0007] A further improvement of the present invention is that: the first square groove is located inside the second square groove, the first sliding groove is located inside the first square groove, the second sliding groove is located outside the second square groove, the first sliding groove is connected to the second opening in the first square groove, and the second sliding groove is connected to the second opening in the second square groove.

[0008] Using the above technical solution, one end of a set of baffles is placed through the first square groove, and the other end of the set of baffles is placed through the first square groove in the first support plate. The second square groove is used to place another set of baffles. The first slot is used to limit the disc and prevent the locking rod from dislodging from the inside of the second slot. The connection between the through groove and the first slot facilitates the free passage of the locking rod. The engagement between the semi-circular groove and the semi-circular block is used to form a fixed connection between the second support plate and the cross-shaped bracket.

[0009] A further improvement of the present invention is that the connecting component includes a first snap-fit ​​component slidably connected in the first slide groove, a second snap-fit ​​component slidably connected in the second slide groove, a baffle is provided between the first support plate and the second support plate, a first snap-fit ​​groove is provided through the upper side of the baffle, and a second snap-fit ​​groove is provided through the lower side of the baffle.

[0010] A further improvement of this utility model is that the second slot is connected to the through slot in the second support plate, and the first slot is connected to the through slot in the first support plate.

[0011] Using the above technical solution, the upper part of the baffle is limited by the first slot and the lower part of the baffle is limited by the second slot. The baffle is used to limit the furniture placed on the upper part of the second support plate to prevent the furniture from falling off the upper part of the second support plate.

[0012] A further improvement of the present invention is that the structures of the first snap-fit ​​component and the second snap-fit ​​component are symmetrical. The first snap-fit ​​component includes a disc that is slidably connected to the inner wall of the second slot. One end of the disc is fixedly connected to a locking rod and a spring. The outer wall of the disc is fixedly connected to a sliding plate. The outer end of the sliding plate is fixedly connected to a pull rod.

[0013] A further improvement of this utility model is that the slide plate is slidably connected to the first slide groove, and the pull rod is located on the outside of the second support plate.

[0014] A further improvement of this utility model is that one end of the spring is fixedly connected to the outer wall of the first sliding groove, and the locking rod passes through the inside of the first slot and the second locking groove and is slidably connected to the through groove.

[0015] Using the above technical solution, the spring itself pulls the disc closer to the first slot, allowing the locking rod to pass through the first slot and enter the interior of the through groove. The locking rod, in cooperation with the second locking groove, limits one end of the baffle, preventing one end of the baffle from detaching from the inner wall of the first square groove.

[0016] Due to the adoption of the above technical solution, the technological progress achieved by this utility model compared to the prior art is as follows: 1. This utility model provides an ultra-high performance concrete splicing shelf. It uses ultra-high performance concrete, which makes the shelf very thin and light in terms of compressive strength and density. After demolding, the surface is smooth and the special connectors make it easy to install and flexible. Compared with ordinary shelves on the market, the concrete shelf is more durable, moisture-proof and rust-proof, and extends the service life of the shelf.

[0017] 2. This utility model provides an ultra-high performance concrete splicing storage rack, which adopts the cooperation of a partition component, a first support plate, a second support plate, a first square groove, a second square groove, a semi-circular groove, a second sliding groove, a through groove, a first slot, a second slot, and a first sliding groove. The first square groove facilitates the placement of one set of baffles, and the second square groove facilitates the placement of another set of baffles. Thus, under the action of the first square groove and the second square groove, the baffles can be placed in a staggered manner.

[0018] 3. This utility model provides an ultra-high performance concrete splicing storage rack, which adopts the cooperation of connecting components, a first snap-fit ​​component, a snap-fit ​​rod, a disc, a spring, a sliding plate, a pull rod, a second snap-fit ​​component, a baffle, a first snap-fit ​​groove, and a second snap-fit ​​groove. The elasticity of the spring itself pulls the disc closer to the first groove, so that the snap-fit ​​rod can pass through the first groove and enter the interior of the through groove. The cooperation between the snap-fit ​​rod and the second snap-fit ​​groove limits one end of the baffle, so that the baffle can be fixed between the first support plate and the second support plate. Attached Figure Description

[0019] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a schematic diagram of the overall structure of this utility model; Figure 3 This is a schematic diagram of the separator component structure of this utility model; Figure 4 This utility model Figure 3 Enlarged view of point A in the middle; Figure 5 This is a schematic diagram of the connection component structure of this utility model; Figure 6 This is a schematic diagram of the baffle structure of this utility model.

[0020] In the diagram: 1. L-shaped bracket; 2. T-shaped bracket; 3. Cross-shaped bracket; 31. Placement slot; 32. Semicircular block; 4. Dividing component; 41. First support plate; 42. Second support plate; 421. First square groove; 422. Second square groove; 423. Semicircular groove; 424. Second sliding groove; 425. Through groove; 426. First slot opening; 427. Second slot opening; 428. First sliding groove; 5. Connecting component; 51. First snap-fit ​​component; 511. Locking rod; 512. Disc; 513. Spring; 514. Slide plate; 515. Pull rod; 52. Second snap-fit ​​component; 53. Baffle; 54. First slot; 55. Second slot. Detailed Implementation

[0021] The present invention will be further described in detail below with reference to embodiments: Example 1 like Figure 1-6 As shown, this utility model provides an ultra-high performance concrete splicing storage rack, including an L-shaped bracket 1, a T-shaped bracket 2 and a cross-shaped bracket 3 on the side of the L-shaped bracket 1, a placement groove 31 on the side of the L-shaped bracket 1, the T-shaped bracket 2 and the cross-shaped bracket 3, and semi-circular blocks 32 on the inner walls of both sides of the placement groove 31. A partition component 4 and a connecting component 5 are provided between the L-shaped bracket 1, the T-shaped bracket 2 and the cross-shaped bracket 3. The partition component 4 includes a first support plate 41 and a second support plate 42 disposed between the L-shaped bracket 1, the T-shaped bracket 2 and the cross-shaped bracket 3. The first support plate 41 and the second support plate 42 have the same structure. The upper outer side of the second support plate 42 is provided with a semi-circular groove 423. The side of the second support plate 42 is provided with a first square groove 421 and a second square groove 422. The outer side of the second support plate 42 is provided with a first sliding groove 428 and a second sliding groove 424. The inner side wall of the first square groove 421 is provided with a first slot 426. The inner side wall of the first slot 426 is provided with a second slot 427. The inner side wall of the second square groove 422 is provided with a through groove 425. The outer side wall of the second square groove 422 is also provided with a first slot 426 and a second slot 427. The first square groove 421 is located inside the second square groove 422, the first sliding groove 428 is located inside the first square groove 421, and the second sliding groove 424 is located outside the second square groove 422. The first sliding groove 428 is connected to the second opening 427 in the first square groove 421, and the second sliding groove 424 is connected to the second opening 427 in the second square groove 422.

[0022] In this embodiment, one end of a set of baffles 53 is placed through the first square groove 421, and the other end of the set of baffles 53 is placed through the first square groove 421 in the first support plate 41. The second square groove 422 is used to place another set of baffles 53. The first slot 426 is used to limit the disc 512 and prevent the locking rod 511 from disengaging from the interior of the second slot 427. The connection between the through groove 425 and the first slot 426 facilitates the free passage of the locking rod 511. The engagement between the semicircular groove 423 and the semicircular block 32 is used to form a fixed connection between the second support plate 42 and the cross-shaped bracket 3.

[0023] Example 2 like Figure 1-6 As shown, based on Embodiment 1, this utility model provides a technical solution: preferably, the connecting component 5 includes a first snap-fit ​​component 51 slidably connected in the first slide groove 428, a second snap-fit ​​component 52 slidably connected in the second slide groove 424, a baffle 53 is provided between the first support plate 41 and the second support plate 42, a first snap-fit ​​groove 54 is provided through one side of the upper end of the baffle 53, and a second snap-fit ​​groove 55 is provided through one side of the lower end of the baffle 53; The second slot 55 is connected to the through slot 425 in the second support plate 42, and the first slot 54 is connected to the through slot 425 in the first support plate 41. The first snap-fit ​​component 51 and the second snap-fit ​​component 52 have symmetrical structures. The first snap-fit ​​component 51 includes a disc 512 slidably connected to the inner wall of the second slot 427. One end of the disc 512 is fixedly connected to a locking rod 511 and a spring 513. The outer wall of the disc 512 is fixedly connected to a sliding plate 514. The outer end of the sliding plate 514 is fixedly connected to a pull rod 515. The sliding plate 514 is slidably connected to the first slide groove 428. The pull rod 515 is located on the outer side of the second support plate 42. One end of the spring 513 is fixedly connected to the outer wall of the first slide groove 428. The locking rod 511 passes through the interior of the first slot 426 and the second snap-fit ​​groove 55 and is slidably connected to the through groove 425.

[0024] In this embodiment, the upper part of the baffle 53 is limited by the first slot 54, and the lower part of the baffle 53 is limited by the second slot 55. The baffle 53 is used to limit the furniture placed on the upper part of the second support plate 42 to prevent the furniture from falling off the upper part of the second support plate 42. The spring 513 itself pulls the disc 512 closer to the first slot 426, so that the locking rod 511 can pass through the first slot 426 and enter the interior of the through groove 425. The locking rod 511 and the second slot 55 cooperate to limit one end of the baffle 53 to prevent one end of the baffle 53 from detaching from the inner wall of the first square groove 421.

[0025] The working principle of this ultra-high performance concrete modular shelving unit will be explained in detail below.

[0026] like Figure 1-6 As shown, when assembling the ultra-high performance concrete modular shelving unit, first align the semi-circular groove 423 in the second support plate 42 with the semi-circular block 32 on the cross-shaped bracket 3 to form a firm connection between the two. Then, splice multiple sets of second support plates 42 and first support plates 41 with L-shaped bracket 1, T-shaped bracket 2, and cross-shaped bracket 3 respectively to complete the assembly of the ultra-high performance concrete modular shelving unit. The lower end of the baffle 53 is engaged in the first square groove 421 in the lower second support plate 42, and the lower end of another set of baffle 53 is engaged in the second square groove 422 in the upper second support plate 42, thereby forming a staggered distribution of the second support plates 42 in each set. Next, with the upper ends of each set of second support plates 42 not fixed, that is, with the second support plates 42 able to rotate freely around the second slot 55, the second support plates 42 can be freely moved to facilitate placing the furniture to be displayed on the upper end of the second support plates 42. Then, pulling the pull rod 515 inward causes the disc 512 to move inward, stretching the spring 513, thereby pulling the exposed end of the locking rod 511 into the interior of the first slot 426. At this time, the second support plates 42 can be moved to allow the second support plates 42 to... The upper end is placed in the first square groove 421 in the first support plate 41. Then, the pull rod 515 is released. Under the elastic action of the spring 513 itself, the disc 512 can be pulled closer to the first groove 426, so that the locking rod 511 can pass through the first groove 426 and the first locking groove 54 and enter the through groove 425. At this time, under the mutual cooperation of the locking rod 511 and the first locking groove 54, the upper end of the baffle 53 can be limited and fixed. At this time, under the action of the baffle 53, the furniture on the upper end of the second support plate 42 can be prevented from falling accidentally.

[0027] The present invention has been described in detail above. However, modifications or improvements can be made to it, which will be obvious to those skilled in the art. Therefore, any modifications or improvements that do not depart from the spirit of the present invention are within the protection scope of the present invention.

Claims

1. A high-performance concrete modular shelving unit, comprising an L-shaped support (1), wherein a T-shaped support (2) and a cross-shaped support (3) are provided on the side of the L-shaped support (1), characterized in that: The L-shaped bracket (1), T-shaped bracket (2) and cross-shaped bracket (3) are provided with placement grooves (31) on their sides. The inner walls of the two sides of the placement grooves (31) are provided with semi-circular blocks (32). A partition component (4) and a connecting component (5) are provided between the L-shaped bracket (1), T-shaped bracket (2) and cross-shaped bracket (3). The partition assembly (4) includes a first support plate (41) and a second support plate (42) disposed between an L-shaped bracket (1), a T-shaped bracket (2) and a cross-shaped bracket (3), and the first support plate (41) and the second support plate (42) have the same structure.

2. The ultra-high performance concrete modular shelving unit according to claim 1, characterized in that: The upper outer side of the second support plate (42) is provided with a semi-circular groove (423). The side of the second support plate (42) is provided with a first square groove (421) and a second square groove (422). The outer side of the second support plate (42) is provided with a first sliding groove (428) and a second sliding groove (424). The inner side wall of the first square groove (421) is provided with a first slot (426). The inner side wall of the first slot (426) is provided with a second slot (427). The inner side wall of the second square groove (422) is provided with a through groove (425). The outer side wall of the second square groove (422) is also provided with a first slot (426) and a second slot (427).

3. The ultra-high performance concrete modular shelving unit according to claim 2, characterized in that: The first square groove (421) is located inside the second square groove (422), the first sliding groove (428) is located inside the first square groove (421), the second sliding groove (424) is located outside the second square groove (422), the first sliding groove (428) is connected to the second opening (427) in the first square groove (421), and the second sliding groove (424) is connected to the second opening (427) in the second square groove (422).

4. The ultra-high performance concrete modular shelving unit according to claim 3, characterized in that: The connecting component (5) includes a first snap-fit ​​component (51) slidably connected in the first slide groove (428), a second snap-fit ​​component (52) slidably connected in the second slide groove (424), a baffle (53) is provided between the first support plate (41) and the second support plate (42), a first snap-fit ​​groove (54) is provided through the upper side of the baffle (53), and a second snap-fit ​​groove (55) is provided through the lower side of the baffle (53).

5. The ultra-high performance concrete modular shelving unit according to claim 4, characterized in that: The second slot (55) is connected to the through slot (425) in the second support plate (42), and the first slot (54) is connected to the through slot (425) in the first support plate (41).

6. The ultra-high performance concrete modular shelving unit according to claim 4, characterized in that: The first snap-fit ​​component (51) and the second snap-fit ​​component (52) are symmetrical in structure. The first snap-fit ​​component (51) includes a disc (512) that is slidably connected to the inner wall of the second slot (427). One end of the disc (512) is fixedly connected to a locking rod (511) and a spring (513). The outer wall of the disc (512) is fixedly connected to a sliding plate (514). The outer end of the sliding plate (514) is fixedly connected to a pull rod (515).

7. The ultra-high performance concrete modular shelving unit according to claim 6, characterized in that: The slide plate (514) is slidably connected to the first slide groove (428), and the pull rod (515) is located on the outside of the second support plate (42).

8. The ultra-high performance concrete modular shelving unit according to claim 6, characterized in that: One end of the spring (513) is fixedly connected to the outer wall of the first groove (428), and the locking rod (511) passes through the inside of the first slot (426) and the second slot (55) and is slidably connected to the through groove (425).