Partition plate buckle structure and safe box
By using the design of limiting steps and spring clips, combined with guide surfaces and detachable connection structures, the problem of inconvenient installation of partition snap-fit structures in existing technologies is solved, enabling the rapid and stable installation of the partition in the safe.
Patent Information
- Application Number
- CN202520798631.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-25
- Publication Date
- 2026-03-03
- Estimated Expiration
- 2035-04-25
AI Technical Summary
The existing partition snap-fit structure is not simple enough for the overall structure of the safe. The installation process requires aligning the partitions with the gaps and adjusting them through the serrated structure, which makes the installation not quick and convenient.
The design incorporates a limiting step, spring clips, and a connecting structure. The spring clips accommodate the partition through deformation and limit the position after resetting. Combined with the guide surface and detachable connecting structure, it enables rapid installation.
It simplifies the partition snap-fit structure and enables quick and convenient installation. The partition can be installed without aligning the gaps, and the connection is firm and reliable.
Smart Images

Figure CN223964711U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of safe technology, specifically to a partition buckle structure and a safe. Background Technology
[0002] Safes typically have partitions inside to organize different items or documents, and these partitions are mainly secured by multiple snap-fit mechanisms inside the safe.
[0003] Chinese utility model patent CN217106628U discloses a partition snap-fit structure, the structure of which is as follows: Figure 1 As shown, the device includes a first main body 1a and a second main body 2a installed within the first main body 1a. The first main body 1a has a mounting structure 3a for installing the first main body 1a inside the safe. The first main body 1a and the second main body 2a each have a first locking surface 4a and a second locking surface 5a for clamping a partition. The first main body 1a and the second main body 2a also each have a first mounting part 6a and a second mounting part 7a. The first mounting part 6a and the second mounting part 7a are respectively provided with an inner serrated structure 8a and an outer serrated structure 9a for adjusting the distance between the first locking surface 4a and the second locking surface 5a. This partition latching structure is installed inside the safe via the mounting structure 3a. The partition to be installed is then placed on the first locking surface 4a. Finally, by cooperating with the outer serrated structure 9a of the second mounting part 7a and the inner serrated structure 8a of the first mounting part 6a, the distance between the second locking surface 5a and the first locking surface 4a is adjusted, allowing the second locking surface 5a to clamp the partition with the first locking surface 4a, thus achieving the installation of the partition.
[0004] However, the existing partition snap-fit structure still has the following technical problems: the overall structure formed by the first main body 1a and the second main body 2a is not simple enough, and during installation, the partition needs to be aligned with the gap formed by the first snap-fit surface 4a and the second snap-fit surface 5a, and the gap needs to be adjusted by the inner serrated structure 8a and the outer serrated structure 9a to complete the final installation. The installation is not quick and convenient enough. Utility Model Content
[0005] The technical problem to be solved by this utility model is to overcome the defects of the prior art and propose a partition snap-fit structure that is simple in structure and quick and convenient to install; it also proposes a safe that has the partition snap-fit structure, so that the partition installation structure is simple and quick and convenient to install.
[0006] Compared with the prior art, this utility model proposes a partition snap-fit structure, including a body and further including...
[0007] A limiting step is provided on one side of the main body to support the partition.
[0008] A spring sheet is disposed on the body and located above the limiting step. The upper end of the spring sheet is connected to the body and the lower end is a free end. A gap is provided between the free end of the spring sheet and the limiting step to accommodate the thickness of the partition.
[0009] A connecting structure, which is disposed on the body and located below the limiting step, is used to connect to the part to be used;
[0010] When the partition is installed onto the body from top to bottom, the spring plate deforms to allow the partition to pass through, and after the spring plate resets, the partition is limited in the gap formed by the spring plate and the limiting step.
[0011] Compared with the prior art, the present invention has the following advantages after adopting the above structure: The partition buckle structure of the present invention only needs to set a limiting step, a spring piece and a connecting structure on the main body. The main body can be installed into the required part by using the connecting structure. The partition is clamped by the spring piece and the limiting step. The overall structure is very simple. During installation, the elasticity of the spring piece allows the partition to be easily placed on the limiting step from top to bottom without aligning any gaps. The automatic reset function of the spring piece can reliably limit the partition between the limiting step and the spring piece. The installation is also very quick and convenient.
[0012] Preferably, the connection structure includes a connecting post disposed below the limiting step, wherein both ends of the connecting post form an inner hole and the side has a slot communicating with the inner hole. This connection structure is simple, the slot makes it easy to connect the external connector to the connecting post, and the connection structure is detachable.
[0013] Preferably, the diameter of the inner hole gradually increases from the inside to the outside at the end near the part to be used, forming a guide surface. This arrangement allows the guide surface to guide the external connector to be quickly installed into the inner hole of the connecting post.
[0014] Preferably, the system also includes a vertical plate, which is disposed on the main body and located on one side of the limiting step, and the spring clip is disposed on the vertical plate. This arrangement not only facilitates the installation of the spring clip using the vertical plate, but also allows the vertical plate to cooperate with the limiting step to provide stable support for the partition, restricting not only the vertical position of the partition, but also its horizontal position.
[0015] Preferably, the spring is formed by cutting the vertical plate. This arrangement makes the spring and the vertical plate an integral structure, which is more convenient to process and more reliable in connection.
[0016] Preferably, one side of the upright plate is a flat surface for attaching to the inner wall of the part to be used, and the other side of the upright plate forms an L-shape with the limiting step to support the bottom and sides of the partition. This arrangement utilizes the flat surface of the upright plate to allow the body to fit snugly against the part to be used, making the connection more stable; it also utilizes the L-shaped support structure formed by the upright plate and the limiting step to ensure that the bottom of the partition is flat and the sides are limited.
[0017] Compared with the prior art, the present invention proposes a safe, including a box body and one or more partitions disposed in the box body. Each layer of the partitions is provided with at least one partition buckle structure on its left and right sides. Each partition buckle structure is fixed in the box body by a connecting structure. The left and right sides of each layer of the partitions are respectively sandwiched between the limiting step and the spring piece of the partition buckle structure on the corresponding side.
[0018] Compared with the prior art, the present invention has the following advantages after adopting the above structure: the safe of the present invention has a simple partition buckle structure, which makes the partition installation structure simple and quick and convenient.
[0019] Preferably, each layer of partitions has two spaced-ahead partition clip structures on its left and right sides. Using a reasonable number of these clip structures ensures both the stability of the partition installation and makes insertion easier.
[0020] Preferably, the system also includes connectors, which are fixed inside the housing and correspondingly positioned at the connection points of each of the partition snap-fit structures. The connectors are interference-fitted into the inner holes of the connecting posts, thus securing them together. Combining the interference fit with the slotting design ensures reliable fixation of the connectors and connecting posts while easily achieving their connection.
[0021] Preferably, the connector is a weld stud, which is fixed to the housing by welding. This arrangement allows the weld stud to be welded to the housing first, and then the connecting post to the weld stud, making installation more convenient and ensuring a more stable and reliable connection between the connector and the housing. Attached image description:
[0022] Figure 1 A three-dimensional schematic diagram of the existing partition snap-fit structure;
[0023] Figure 2 This is a three-dimensional schematic diagram of the partition buckle structure in Embodiment 1 from a first-view perspective;
[0024] Figure 3 This is a three-dimensional schematic diagram of the partition buckle structure in Embodiment 1 from a second perspective;
[0025] Figure 4This is a front view of the partition snap-fit structure in Embodiment 1;
[0026] Figure 5 This is a three-dimensional schematic diagram of the safe in Example 2;
[0027] Figure 6 for Figure 5 A magnified view of a portion of point A in the middle;
[0028] Figure 7 This is an assembly diagram of the box body, partition, and partition snap-fit structure in Example 2;
[0029] In the existing technical diagram: 1a-first main body, 2a-second main body, 3a-mounting structure, 4a-first mounting surface, 5a-second mounting surface, 6a-first mounting part, 7a-second mounting part, 8a-inner serrated structure, 9a-outer serrated structure;
[0030] In the figure of this utility model: 1-body, 2-partition, 3-limiting step, 4-spring piece, 5-guide surface, 6-connecting structure, 7-box, 8-connecting column, 9-inner hole, 10-groove, 11-connector, 12-vertical plate, 13-partition buckle structure, D-gap. Detailed Implementation
[0031] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0032] Example 1:
[0033] like Figure 2-4 As shown, and in combination Figure 5-7 This embodiment provides a partition buckle structure, including a body 1 and a limiting step 3, which is disposed on one side of the body 1 for supporting the partition 2;
[0034] The spring piece 4 is set on the body 1 and located above the limiting step 3. The upper end of the spring piece 4 is connected to the body 1 and the lower end is a free end. A gap D is provided between the free end of the spring piece 4 and the limiting step 3 to accommodate the thickness of the partition 2.
[0035] The connecting structure 6 is disposed on the body 1 and located below the limiting step 3, and is used to connect to the part to be used.
[0036] When the partition 2 is installed onto the body 1 from top to bottom, the spring 4 deforms to allow the partition 2 to pass through, and after the spring 4 is reset, the partition 2 is limited in the gap D formed by the spring 4 and the limiting step 3.
[0037] In this embodiment, the partition buckle structure only requires a limiting step 3, a spring piece 4, and a connecting structure 6 on the main body 1. The main body 1 can be installed into the desired component using the connecting structure 6. The spring piece 4 and the limiting step 3 clamp the partition 2, making the overall structure very simple. During installation, the elasticity of the spring piece 4 allows the partition 2 to be easily placed onto the limiting step 3 from top to bottom without needing to align any gaps. The automatic reset function of the spring piece 4 reliably limits the partition 2 between the limiting step 3 and the spring piece 4, making installation very quick and convenient. The up, down, left, right, front, and back directions are all within the range of motion. Figure 2 For reference only; items to be used include, for example, cabinets, etc.
[0038] The connecting structure 6 includes a connecting post 8 disposed below the limiting step 3. The two ends of the connecting post 8 are through to form an inner hole 9, and the side is provided with a slot 10 communicating with the inner hole 9. The connecting structure 6 is simple, the slot 10 makes it easier to connect the external connector 11 to the connecting post 8, and the connecting structure 6 is detachable.
[0039] The diameter of the inner hole 9 gradually increases from the inside to the outside near the end of the part to be used, forming the guide surface 5. This arrangement allows the guide surface 5 to guide the external connector 11 to be quickly installed into the inner hole 9 of the connecting post 8.
[0040] It also includes a vertical plate 12, which is set on the main body 1 and located on one side of the limiting step 3, and a spring piece 4 is set on the vertical plate 12. This arrangement not only facilitates the installation of the spring piece 4 using the vertical plate 12, but also the vertical plate 12 cooperates with the limiting step 3 to provide stable support for the partition 2, limiting not only the vertical position of the partition 2, but also the horizontal position of the partition 2.
[0041] The spring piece 4 is formed by cutting the vertical plate 12. This design makes the spring piece 4 and the vertical plate 12 an integral structure, which is more convenient to process and more reliable in connection.
[0042] One side of the upright plate 12 is flat and is used to attach to the inner wall of the part to be used. The other side of the upright plate 12 is L-shaped with the limiting step 3 and is used to support the bottom and sides of the partition 2. This arrangement utilizes the flat surface of the upright plate 12 to allow the body 1 to fit tightly against the part to be used, making the connection more stable; it also utilizes the L-shaped support structure formed by the upright plate 12 and the limiting step 3 to ensure that the bottom of the partition 2 is flat and the sides are limited.
[0043] Example 2:
[0044] like Figure 5-7 As shown, and in combination Figure 2-4This embodiment provides a safe, including a body 7 and one or more partitions 2 disposed inside the body 7. Each partition 2 has at least one partition buckle structure 13 as described in Embodiment 1 on its left and right sides. Each partition buckle structure 13 is fixed inside the body 7 by a connecting structure 6. The left and right sides of each partition 2 are respectively clamped between the limiting step 3 and the spring piece 4 of the partition buckle structure 13 on the corresponding side. In this embodiment, one partition 2 is provided, and two partition buckle structures 13 with front and rear spacing are provided on the left and right sides of the partition 2, for a total of four partition buckle structures 13.
[0045] It also includes connectors 11, which are fixed inside the housing 7 and are correspondingly installed at the connection structures 6 of each partition snap-fit structure 13. The connectors 11 are interference-fitted into the inner hole 9 of the connecting post 8, thereby fixing the connectors 11 and the connecting post 8 together. Combining the interference fit with the slot 10 ensures that the connectors 11 and the connecting post 8 are reliably fixed together while easily achieving the connection.
[0046] The connector 11 is a weld stud, which is fixed inside the housing 7 by welding. This design allows the weld stud to be welded into the housing 7 first, and then the connecting post 8 to the weld stud, making installation more convenient and ensuring a more stable and reliable connection between the connector 11 and the housing 7.
[0047] The installation steps for the partition 2 of the safe in this embodiment are as follows:
[0048] (1) Weld four welding studs symmetrically on the left and right sides of the box 7, with two welding studs on the same side spaced apart.
[0049] (2) Align the connecting post 8 on each partition snap-fit structure 13 with the corresponding welding nail and press it in. The inner hole 9 of the connecting post 8 is interference-fitted with the welding nail, so that the four partition snap-fit structures 13 are fixed in the box 7.
[0050] (3) When the partition 2 is installed from top to bottom onto the partition buckle structure 13, the partition 2 presses the spring pieces 4 on the left and right sides. The spring pieces 4 deform to allow the partition 2 to pass through. When the partition 2 is inserted under the spring piece 4, the spring piece 4 automatically resets and limits the partition 2 in the gap D formed by the spring piece 4 and the limiting step 3.
Claims
1. A partition snap-fit structure, comprising a body (1), characterized in that: Also includes A limiting step (3) is provided on one side of the main body (1) to support the partition (2); A spring piece (4) is disposed on the body (1) and located above the limiting step (3). The upper end of the spring piece (4) is connected to the body (1) and the lower end is a free end. A gap D is provided between the free end of the spring piece (4) and the limiting step (3) to accommodate the thickness of the partition plate (2). A connecting structure (6) is disposed on the body (1) and located below the limiting step (3) for connecting to the part to be used; When the partition (2) is installed on the body (1) from top to bottom, the spring piece (4) deforms to allow the partition (2) to pass through, and after the spring piece (4) is reset, the partition (2) is limited in the gap D formed by the spring piece (4) and the limiting step (3).
2. The partition snap-fit structure according to claim 1, characterized in that: The connecting structure (6) includes a connecting post (8) disposed below the limiting step (3), the two ends of the connecting post (8) forming an inner hole (9) and the side is provided with a slot (10) communicating with the inner hole (9).
3. The partition snap-fit structure according to claim 2, characterized in that: The diameter of the inner hole (9) gradually increases from the inside to the outside near the end of the part to be used, in order to form a guide surface (5).
4. The partition snap-fit structure according to claim 1, characterized in that: It also includes a vertical plate (12), which is disposed on the body (1) and located on one side of the limiting step (3), and the spring piece (4) is disposed on the vertical plate (12).
5. The partition snap-fit structure according to claim 4, characterized in that: The spring piece (4) is formed by cutting the vertical plate (12).
6. The partition snap-fit structure according to claim 4, characterized in that: One side of the upright plate (12) is a flat surface for attaching to the inner wall of the part to be used. The other side of the upright plate (12) is L-shaped with the limiting step (3) and is used to support the bottom and side of the partition plate (2).
7. A safe, comprising a body (7) and one or more partitions (2) disposed within the body (7), characterized in that: Each layer of partition (2) has at least one partition buckle structure as described in any one of claims 1 to 6 on its left and right sides. Each partition buckle structure (13) is fixed inside the box body (7) by a connecting structure (6). The left and right sides of each layer of partition (2) are respectively sandwiched between the limiting step (3) and the spring piece (4) of the partition buckle structure (13) on the corresponding side.
8. A safe according to claim 7, characterized in that: Two spaced-out snap-fit structures (13) are provided on the left and right sides of each layer of the partition (2).
9. A safe according to claim 7, characterized in that: It also includes a connector (11), which is fixed inside the housing (7) and is correspondingly provided at the connection structure (6) of each of the partition buckle structures (13). The connector (11) is interference-fitted into the inner hole (9) of the connecting post (8) so that the connector (11) and the connecting post (8) are fixed together.
10. A safe according to claim 9, characterized in that: The connector (11) is a welding stud, which is fixed inside the box (7) by welding.
Citation Information
Patent Citations
Buckle structure and safe box
CN217106628U