High-stability cabinet body hoisting structure

The three-layer cabinet hoisting design solves the problems of stability and firmness during cabinet hoisting, achieving a highly stable hoisting effect.

CN223653501UActive Publication Date: 2025-12-12SHANGHAI CHENGYI FURNITURE CO LTD
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Patent Information

Application Number
CN202423197097.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-12-12
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

The existing cabinets are not stable enough during hoisting, and are prone to shaking, tilting or falling. In addition, the structure is not strong and is easily damaged by external forces.

Method used

The cabinet adopts a three-layer structure for hoisting, including a hoisting frame, an inner frame, and an outer frame. Stable connections are achieved through hoisting threaded holes and pulley mounting ports, and the multi-layer frame structure enhances its sturdiness.

Benefits of technology

This improves the stability and structural robustness of the cabinet during hoisting, preventing detachment and damage, and ensuring the safety and overall strength of the hoisting process.

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Abstract

The utility model discloses a high-stability cabinet body hoisting structure which comprises a device body, the device body comprises a hoisting frame, an inner frame, an outer frame and a cabinet door, the inner frame is installed on the inner side of the hoisting frame, and the outer frame is installed on the outer side of the hoisting frame; the cabinet door is installed at the front end of the outer frame through hinges, the hoisting frame is of a rectangular structure and comprises a bottom reinforcing plate, vertical reinforcing plates and a top reinforcing plate, the vertical reinforcing plates are located on the top of the bottom reinforcing plate, the top reinforcing plate is located on the top of the vertical reinforcing plates, and small fixing holes are formed in the four corners of the surfaces of the bottom reinforcing plate, the vertical reinforcing plates and the top reinforcing plate. A plurality of groups of hoisting threaded holes are formed in the surface of the top reinforcing plate; pulley mounting ports are formed in four corners of the bottom of the bottom reinforcing plate. According to the device, hoisting can be effectively facilitated, the overall stability can be guaranteed during hoisting, the structure is firm, and the situation of falling off cannot occur.
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Description

Technical Field

[0001] This utility model relates to the field of cabinet technology, specifically a highly stable cabinet hoisting structure. Background Technology

[0002] The use of cabinets began in the Xia, Shang, and Zhou dynasties, when they were called "du". By the Ming and Qing dynasties, cabinets had become essential furniture in the home, and their forms had become standardized. Ming and Qing cabinets can be categorized by shape into square-corner cabinets, round-corner cabinets, and open-shelf cabinets; different shapes result in different components. Cabinet furniture mainly refers to various types of cabinets made of materials such as wood, engineered wood, or metal, serving different purposes.

[0003] The existing cabinet has the following defects:

[0004] 1. The existing cabinet structure is not stable enough during hoisting, and it will shake during hoisting, which may lead to the cabinet tilting or falling in severe cases;

[0005] 2. The existing cabinet structure is not very sturdy, and the cabinet is easily damaged when subjected to external forces, which affects the user's use.

[0006] Therefore, a solution is needed. Utility Model Content

[0007] (a) Technical problems to be solved

[0008] In view of the shortcomings of the prior art, this utility model provides a highly stable cabinet hoisting structure to solve the problems mentioned in the background art.

[0009] (II) Technical Solution

[0010] To achieve the above objectives, this utility model provides the following technical solution: a highly stable cabinet hoisting structure, comprising a device body, the device body including a hoisting frame, an inner frame, an outer frame, and a cabinet door; the inner frame is installed inside the hoisting frame, and the outer frame is installed outside the hoisting frame; the cabinet door is installed at the front end of the outer frame via a hinge; the hoisting frame has a rectangular structure, and the hoisting frame includes a bottom reinforcing plate, vertical reinforcing plates, and a top reinforcing plate; the bottom reinforcing plate, vertical reinforcing plate, and top reinforcing plate are smoothly transitioned and integrally formed; a set of vertical reinforcing plates is provided, with one set of vertical reinforcing plates located at the top of the bottom reinforcing plate, and the top reinforcing plate located at the top of the set of vertical reinforcing plates; small fixing holes are provided at the four corners of the surfaces of the bottom reinforcing plate, vertical reinforcing plates, and top reinforcing plates; several sets of hoisting threaded holes are provided on the surface of the top reinforcing plate; pulley mounting openings are provided at the four corners of the bottom of the bottom reinforcing plate; and the bottom reinforcing plate, vertical reinforcing plates, and top reinforcing plates all have an H-shaped structure.

[0011] Preferably, the outer frame has a rectangular structure and includes a bottom outer shell plate, vertical outer shell plates, a top outer shell plate, and a rear outer shell plate. The vertical outer shell plates are arranged in a group and are distributed symmetrically. The bottom outer shell plate is located at the bottom of the group of vertical outer shell plates, the top outer shell plate is located at the top of the group of vertical outer shell plates, and the rear outer shell plate is located at the rear end of the group of vertical outer shell plates. Small fixing holes are provided at the four corners of the bottom outer shell plate, vertical outer shell plate, top outer shell plate, and rear outer shell plate. Several sets of hoisting threaded holes are provided at the top of the top outer shell plate.

[0012] Preferably, the inner frame includes an inner bottom plate, an inner vertical plate, and an inner top plate. The inner vertical plate is provided in a set. The inner bottom plate is located on top of the set of inner vertical plates. The inner top plate is located on top of the set of inner vertical plates. Small fixing holes are provided at the four corners of the inner bottom plate, the inner vertical plate, and the inner top plate.

[0013] Preferably, the inner vertical plate has a rectangular structure, and the surface of the inner vertical plate has several sets of mounting grooves distributed in a row at equal intervals, the mounting grooves having a rectangular structure.

[0014] Preferably, a movable wheel is fixed to the bottom of the pulley mounting port.

[0015] (III) Beneficial Effects

[0016] This utility model provides a highly stable cabinet hoisting structure. It has the following beneficial effects:

[0017] This solution presents a highly stable cabinet hoisting structure that effectively facilitates hoisting, ensuring overall stability and structural robustness during installation, preventing any detachment. Furthermore, this highly stable cabinet hoisting structure, through its three-layer design, effectively enhances the strength of the cabinet structure. Attached Figure Description

[0018] Fig. 1 This is a schematic diagram of the overall structure of this utility model;

[0019] Fig. 2 This is a schematic diagram of the overall internal structure of this utility model;

[0020] Fig. 3 This is a schematic diagram of the hoisting frame of this utility model.

[0021] In the diagram, 1. Device body; 2. Lifting frame; 3. Inner frame; 4. Outer frame; 5. Cabinet door; 6. Bottom reinforcing plate; 7. Vertical reinforcing plate; 8. Top reinforcing plate; 9. Lifting threaded hole; 10. Pulley mounting port; 11. Small fixing hole; 12. Bottom outer shell plate; 13. Vertical outer shell plate; 14. Top outer shell plate; 15. Rear outer shell plate; 16. Inner bottom plate; 17. Inner vertical plate; 18. Inner top plate; 19. Mounting groove; 20. Casters. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] Please see Figs. 1-3 This utility model provides a technical solution:

[0024] Example 1

[0025] Regarding the problem 1 that needs to be solved: the existing cabinet structure is not stable enough during hoisting, and it will shake during hoisting, which may lead to the cabinet tilting or falling in severe cases.

[0026] The solution is as follows: A highly stable cabinet hoisting structure includes a device body 1, which includes a hoisting frame 2, an inner frame 3, an outer frame 4, and a cabinet door 5. The inner frame 3 is installed inside the hoisting frame 2, and the outer frame 4 is installed outside the hoisting frame 2. The cabinet door 5 is installed at the front end of the outer frame 4 via hinges. The hoisting frame 2 has a rectangular structure and includes a bottom reinforcing plate 6, vertical reinforcing plates 7, and a top reinforcing plate 8. The bottom reinforcing plate 6, vertical reinforcing plates 7, and top reinforcing plate 8 are smoothly transitioned and integrally formed. A set of vertical reinforcing plates 7 is provided, with one set of vertical reinforcing plates 7 located at the top of the bottom reinforcing plate 6, and the top reinforcing plate 8 located at the top of the set of vertical reinforcing plates 7. Small fixing holes 11 are provided at the four corners of the surfaces of the bottom reinforcing plate 6, vertical reinforcing plates 7, and top reinforcing plates 8. Several sets of hoisting threaded holes 9 are provided on the surface of the top reinforcing plate 8. Pulley mounting openings 10 are provided at the four corners of the bottom of the bottom reinforcing plate 6. The device has an H-shaped structure. During hoisting, workers insert hoisting rings into the hoisting threaded holes 9 of the top outer shell plate 14. Then, the bolts at the bottom of the hoisting rings are inserted into the hoisting threaded holes 9 of the top reinforcing plate 8. Workers rotate the hoisting rings to lock them into the hoisting frame 2. The top outer shell plate 14 and the top reinforcing plate 8 have several sets of hoisting threaded holes 9, allowing multiple hoisting rings to be installed. Workers can connect hoisting ropes to multiple hoisting rings to improve the stability of hoisting the device body 1. The hoisting rings of this device are directly connected to the hoisting frame 2, which is the main frame of the cabinet, thus preventing the cabinet from falling off.

[0027] The inner frame 3 includes an inner bottom plate 16, an inner vertical plate 17, and an inner top plate 18. The inner vertical plate 17 is provided in a set. The inner bottom plate 16 is located on top of the set of inner vertical plates 17, and the inner top plate 18 is located on top of the set of inner vertical plates 17. Small fixing holes 11 are provided at the four corners of the inner bottom plate 16, inner vertical plate 17, and inner top plate 18. The inner bottom plate 16, inner vertical plate 17, and inner top plate 18 on the inner frame 3 are all attached to the hanging frame device 2. Then, screws are inserted into the small fixing holes 11 of the inner bottom plate 16, inner vertical plate 17, and inner top plate 18 to fix the inner bottom plate 16, inner vertical plate 17, and inner top plate 18 to the inside of the hanging frame 2.

[0028] The inner vertical plate 17 has a rectangular structure, and the surface of the inner vertical plate 17 has several sets of mounting grooves 19 distributed in a row at equal intervals. The mounting grooves 19 have a rectangular structure and are designed to facilitate the installation of load-bearing plates by the user. By using multiple sets of mounting grooves 19, the space inside the cabinet can be divided by the load-bearing plates.

[0029] The bottom of the pulley mounting port 10 is fixed with a movable wheel 20. The operator can install the bolt on the top of the movable wheel 20 into the pulley mounting port 10 to install the movable wheel 20. The operator can then move the cabinet using the movable wheel 20.

[0030] Example 2

[0031] Regarding the second problem to be solved above: the existing cabinet structure is not very sturdy, and the cabinet is easily damaged when subjected to external forces, which affects the user's use.

[0032] The solution is as follows: The outer frame 4 has a rectangular structure and includes a bottom outer shell 12, vertical outer shell 13, top outer shell 14, and rear outer shell 15. The vertical outer shell 13 is arranged in a group and is distributed symmetrically. The bottom outer shell 12 is located at the bottom of the group of vertical outer shell 13, the top outer shell 14 is located at the top of the group of vertical outer shell 13, and the rear outer shell 15 is located at the rear end of the group of vertical outer shell 13. Small fixing holes 11 are provided at the four corners of the bottom outer shell 12, vertical outer shell 13, top outer shell 14, and rear outer shell 15. Several sets of lifting threaded holes 9 are provided at the top of the top outer shell 14. The outer frame 4 can effectively protect the entire cabinet and prevent external forces from directly damaging the inside of the cabinet. The triple protection of the lifting frame 2, inner frame 3, and outer frame 4 further improves the overall stability.

[0033] Working principle: During operation, the operator inserts a lifting ring into the lifting threaded hole 9 of the top outer shell plate 14, and then the bolt at the bottom of the lifting ring is inserted into the lifting threaded hole 9 of the top reinforcing plate 8. The operator rotates the lifting ring, thereby locking the lifting ring in the lifting frame 2. The top outer shell plate 14 and the top reinforcing plate 8 have several sets of lifting threaded holes 9, so that multiple lifting rings can be installed. The operator can connect the lifting rope to multiple lifting rings to improve the stability of the lifting of the device body 1. The lifting ring of this device is directly connected to the lifting frame 2, which is the main frame of the cabinet, thus preventing the cabinet from falling off.

[0034] The present invention comprises: 1. Device body; 2. Lifting frame; 3. Inner frame; 4. Outer frame; 5. Cabinet door; 6. Bottom reinforcing plate; 7. Vertical reinforcing plate; 8. Top reinforcing plate; 9. Lifting threaded hole; 10. Pulley mounting port; 11. Small fixing hole; 12. Bottom outer shell plate; 13. Vertical outer shell plate; 14. Top outer shell plate; 15. Rear outer shell plate; 16. Inner bottom plate; 17. Inner vertical plate; 18. Inner top plate; 19. Mounting groove; 20. Moving wheel. All components are general standard parts or parts known to those skilled in the art, and their structure and principle are... As can be learned by those skilled in the art through technical manuals or conventional experimental methods, the problem solved by this utility model is that existing engine sets vibrate during use. When the vibration amplitude is too large, it will affect the normal operation of the engine, and excessive vibration will also cause engine displacement, unstable output, and damage, thus making it inconvenient for operators to use. This utility model, through the combination of the above-mentioned components, can effectively facilitate hoisting, and can ensure the overall stability and structural firmness during hoisting, preventing the possibility of falling off.

[0035] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. It will be apparent to those skilled in the art that this utility model is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or basic characteristics of this utility model. Therefore, the embodiments should be considered exemplary and non-limiting in all respects. The scope of this utility model is defined by the appended claims rather than the foregoing description, and thus all variations falling within the meaning and scope of equivalents of the claims are intended to be included within this utility model. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0036] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A highly stable cabinet hoisting structure, characterized in that: The device includes a main body (1), which includes a hoisting frame (2), an inner frame (3), an outer frame (4) and a cabinet door (5). The inner frame (3) is installed inside the hoisting frame (2), the outer frame (4) is installed outside the hoisting frame (2), and the cabinet door (5) is installed at the front end of the outer frame (4) by a hinge. The hoisting frame (2) has a rectangular structure. The hoisting frame (2) includes a bottom reinforcing plate (6), a vertical reinforcing plate (7), and a top reinforcing plate (8). The bottom reinforcing plate (6), the vertical reinforcing plate (7), and the top reinforcing plate (8) are smoothly transitioned and integrally formed. There is a set of vertical reinforcing plates (7). The set of vertical reinforcing plates (7) is located on top of the bottom reinforcing plate (6). The top reinforcing plate (8) is located on top of the set of vertical reinforcing plates (7). Small fixing holes (11) are opened at the four corners of the surface of the bottom reinforcing plate (6), the vertical reinforcing plate (7), and the top reinforcing plate (8). Several sets of hoisting threaded holes (9) are opened on the surface of the top reinforcing plate (8). Pulley mounting ports (10) are opened at the four corners of the bottom of the bottom reinforcing plate (6). The bottom reinforcing plate (6), the vertical reinforcing plate (7), and the top reinforcing plate (8) all have an H-shaped structure.

2. The highly stable cabinet hoisting structure according to claim 1, characterized in that: The outer frame (4) has a rectangular structure. The outer frame (4) includes a bottom outer shell plate (12), a vertical outer shell plate (13), a top outer shell plate (14), and a rear outer shell plate (15). The vertical outer shell plates (13) are arranged in a group and are distributed symmetrically. The bottom outer shell plate (12) is located at the bottom of the group of vertical outer shell plates (13). The top outer shell plate (14) is located at the top of the group of vertical outer shell plates (13). The rear outer shell plate (15) is located at the rear end of the group of vertical outer shell plates (13). Small fixing holes (11) are opened at the four corners of the bottom outer shell plate (12), the vertical outer shell plate (13), the top outer shell plate (14), and the rear outer shell plate (15). Several sets of hoisting threaded holes (9) are opened at the top of the top outer shell plate (14).

3. The highly stable cabinet hoisting structure according to claim 1, characterized in that: The inner frame (3) includes an inner bottom plate (16), an inner vertical plate (17), and an inner top plate (18). The inner vertical plate (17) is provided in a set. The inner bottom plate (16) is located on top of the set of inner vertical plates (17). The inner top plate (18) is located on top of the set of inner vertical plates (17). Small fixing holes (11) are provided at the four corners of the inner bottom plate (16), the inner vertical plate (17), and the inner top plate (18).

4. The highly stable cabinet hoisting structure according to claim 3, characterized in that: The inner vertical plate (17) has a rectangular structure, and the surface of the inner vertical plate (17) is provided with a number of sets of mounting grooves (19) distributed in a row at equal intervals. The mounting grooves (19) have a rectangular structure.

5. The highly stable cabinet hoisting structure according to claim 1, characterized in that: A movable wheel (20) is fixed to the bottom of the pulley mounting port (10).