Multifunctional tool cabinet
The design of liftable partitions and snap-on structures solves the problem of low space utilization caused by fixed partitions in traditional tool cabinets, enabling flexible adjustment and efficient storage of tool cabinets, making them suitable for a variety of workplaces.
Patent Information
- Application Number
- CN202422691024.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-05
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-11-05
AI Technical Summary
The height of the partitions in traditional tool cabinets is fixed and cannot be flexibly adjusted according to actual needs, resulting in low space utilization and difficulty in adapting to the storage needs of different tools.
A liftable partition design is adopted, and the first and second clamping parts cooperate with the clamping protrusions to achieve flexible adjustment of the partition height. Combined with the clamping column and push-pull strip structure, the stability and ease of operation of the partition are ensured.
It improves the space utilization and flexibility of the tool cabinet, facilitates the classified storage of tools, improves the efficiency of searching and taking tools, and is suitable for various workplaces.
Smart Images

Figure CN223419522U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of tool cabinets, and in particular to a multifunctional tool cabinet. Background Art
[0002] In traditional tool cabinet designs, the partitions are typically fixed, with their height determined at the time of manufacture and unable to be flexibly adjusted to meet actual needs. This creates numerous inconveniences for users. Different tools come in different sizes and shapes, and traditional tool cabinets cannot accommodate a wide range of tool storage needs. Tool cabinets with fixed partitions cannot optimize space based on the size of the items being stored, resulting in poor space utilization. For example, when storing a large number of small tools, the non-adjustable height of the partitions can result in significant wasted space. Adjusting the internal layout of traditional tool cabinets to accommodate new tasks or tool storage needs is often difficult. Disassembly and reassembly may require specialized tools, which is time-consuming and labor-intensive. Utility Model Content
[0003] The utility model provides a multifunctional tool cabinet, which solves the problem of inconvenience in using tool cabinets in the related art.
[0004] The technical solution of the utility model is as follows:
[0005] A multifunctional tool cabinet comprising:
[0006] The cabinet has a storage space and a plurality of first clamping protrusions located on both sides of the storage space, wherein the plurality of first clamping protrusions are arranged at intervals along the vertical direction;
[0007] There are a plurality of partitions, all of which are arranged in a lifting manner in the containing space;
[0008] a first clamping member, rotatably disposed on the partition;
[0009] The second clamping member is rotatably arranged on the first clamping member. After the first clamping member and the second clamping member rotate, the second clamping member is used to clamp onto the first clamping protrusion.
[0010] Optionally, the second clamping member is a rotating ring.
[0011] Optionally, the receiving space has an opening, the first clamping protrusion is close to the opening, the cabinet further has a plurality of second clamping protrusions located on both sides of the receiving space, the plurality of second clamping protrusions are arranged at intervals in the vertical direction, and the second clamping protrusions are away from the opening, and further comprises:
[0012] There are a plurality of clamping posts, which are arranged on both sides of the partition, and the clamping posts are used to be clamped on the second clamping protrusion.
[0013] Optionally, the partition includes:
[0014] There are two mounting frames, which are arranged in a lifting manner in the containing space and are respectively located on both sides of the containing space, and the first clamping member is rotatably arranged on the mounting frames;
[0015] The load-bearing plate is correspondingly arranged on the two mounting frames on both sides.
[0016] Optionally, the load-bearing plate is slidably arranged on the mounting frame, further comprising:
[0017] A first push-pull bar, provided on the mounting frame, having a slide rail;
[0018] The second push-pull bar is arranged on the load-bearing plate and is slidably arranged in the slide rail.
[0019] Optionally, the second clamping protrusion has a horizontal portion and a vertical portion, the horizontal portion is used to support the clamping column, and the vertical portion is used to clamp the clamping column.
[0020] Optionally, the first push-pull strip and the second push-pull strip have a plurality of slots, and further include:
[0021] There are a plurality of elastic members, which are arranged on the mounting frame and the load-bearing plate;
[0022] There are a plurality of card blocks, which are arranged on the elastic member. The card blocks are used to be inserted into the card slots, and the elastic member is used to provide a force for the card blocks to slide out of the card slots.
[0023] Optionally, the clamping block has a rounded corner, and the rounded corner is arranged to be inclined upward.
[0024] Optionally, it also includes:
[0025] The rotating plate has a clamping groove, and the rotating plate is rotatably arranged on the mounting frame. The rotating plate is located between the first clamping member and the mounting frame. After the rotating plate rotates to a horizontal state, the first clamping member is clamped into the clamping groove.
[0026] Optionally, after the rotating plate rotates upward, it is used to abut against the load-bearing plate.
[0027] The working principle and beneficial effects of the utility model are as follows:
[0028] In the present invention, the cabinet body is made of high-strength metal material to ensure that it is sturdy and durable and can withstand the weight of heavier tools. The storage space is reasonably designed to facilitate the classified storage of tools. Several first clamping protrusions spaced apart in the vertical direction are evenly distributed on both sides of the storage space, with a moderate spacing, which can not only ensure the clamping stability of the partition at different height positions, but also facilitate operation. The partition is flat and made of high-strength plastic or metal material with a certain load-bearing capacity. Mounting seats for the first clamping part are symmetrically arranged on both sides of the partition, and a rotating shaft is provided on the mounting seat so that the first clamping part can rotate flexibly. The first clamping part and the second clamping part are both made of metal material and have high strength and stability. One end of the first clamping part is connected to the partition through a rotating shaft, and the other end is rotatably connected to the second clamping part. The length of the second clamping part is slightly smaller than the spacing between the first clamping protrusions so that it can be smoothly clamped on the first clamping protrusion.
[0029] When the height of the partition needs to be adjusted, the second clip needs to be disengaged from the first clip protrusion. First, rotate the first clip, then rotate the second clip to disengage the second clip from the first clip protrusion. Then, raise or lower the partition to the desired height, and then rotate the first and second clips to engage the second clip with the corresponding first clip protrusion to complete the height adjustment of the partition.
[0030] By cooperating with the first and second clips and the first clipping protrusion, the height of the partitions can be easily adjusted to meet the storage needs of tools of different sizes. This makes the tool cabinet more flexible to use and improves space utilization. The structural design of the first and second clips makes the partition installation more stable, preventing the upper partition from accidentally lifting up when retrieving tools from the lower layer, causing the upper partition to fall and become unstable. The second clip is clipped onto the first clipping protrusion and can provide stable support. At the same time, the rotating design of the first and second clips makes the clipping and detaching operations more convenient and quick. Since the height of the partitions can be adjusted, users can classify and store tools according to their size and type, making the tool cabinet more neat and orderly. This not only makes it easier to find and access tools, but also improves work efficiency. This multifunctional tool cabinet is suitable for various workplaces. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] The preferred implementation scheme will be described below in a clear and understandable manner with reference to the accompanying drawings to further illustrate the above-mentioned characteristics, technical features, advantages and implementation methods of the present invention.
[0032] Figure 1 This is a schematic diagram of the structure of the utility model;
[0033] Figure 2 for Figure 1 A magnified schematic diagram of point A;
[0034] Figure 3 It is a schematic diagram of the local structure of the utility model;
[0035] Figure 4 for Figure 3 A magnified schematic diagram of point B;
[0036] Figure 5 This is a schematic diagram of the card slot structure of the utility model;
[0037] Figure 6 This is a schematic diagram of the structure of the clamping column of the utility model;
[0038] Figure 7 This is a schematic diagram of the card block structure of the utility model.
[0039] In the figure: 100, cabinet body, 110, storage space, 120, first snap-fitting protrusion, 200, partition, 300, first snap-fitting member, 400, second snap-fitting member, 111, opening, 130, second snap-fitting protrusion, 500, snap-fitting column, 210, mounting frame, 220, load-bearing plate, 600, first push-pull strip, 610, slide rail, 700, second push-pull strip, 131, horizontal part, 132, vertical part, 710, snap-fitting slot, 800, elastic member, 900, clamping block, 1000, rotating plate, 1010, snap-fitting slot. DETAILED DESCRIPTION
[0040] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the specific implementation methods of the present invention will be described below with reference to the accompanying drawings. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings and other implementation methods can be obtained based on these drawings without inventive work.
[0041] To simplify the drawings, only the parts relevant to the utility model are schematically shown in each figure; they do not represent the actual structure of the product. Furthermore, to simplify the drawings and facilitate understanding, in some figures, only one of the components with the same structure or function is schematically shown or labeled. In this document, "one" not only means "only one" but also "more than one," and "several" includes "two" and "more than two."
[0042] It should be noted that, unless otherwise specified or limited, the terms "mounted," "connected," and "connected" should be understood broadly. For example, they can refer to fixed, detachable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediary; and internal communication between two components. Those skilled in the art will understand the specific meanings of these terms in this utility model based on the specific circumstances.
[0043] In addition, in the description of the present application, the terms "first", "second", etc. are only used to distinguish the description and cannot be understood as indicating or implying relative importance.
[0044] Reference Figures 1-7 , which is the first embodiment of the present utility model, proposes a multifunctional tool cabinet, including a cabinet body 100, having a storage space 110 and a plurality of first clamping protrusions 120 located on both sides of the storage space 110 and arranged at intervals in the vertical direction; a plurality of partitions 200, all of which are raised and lowered in the storage space 110; a first clamping member 300, rotatably set on the partition 200; a second clamping member 400, rotatably set on the first clamping member 300, after the first clamping member 300 and the second clamping member 400 are rotated, the second clamping member 400 is used to clamp on the first clamping protrusion 120.
[0045] In this embodiment, the cabinet 100 is made of high-strength metal material to ensure that it is sturdy and durable and can withstand the weight of heavier tools. The storage space 110 is rationally designed to facilitate the classified storage of tools. Several first clamping protrusions 120 arranged at intervals in the vertical direction are evenly distributed on both sides of the storage space 110, with a moderate spacing, which can not only ensure the clamping stability of the partition 200 at different height positions, but also facilitate operation. The partition 200 is flat and made of high-strength plastic or metal material with a certain load-bearing capacity. Mounting seats for the first clamping member 300 are symmetrically arranged on both sides of the partition 200, and a rotating shaft is provided on the mounting seat so that the first clamping member 300 can rotate flexibly. The first clamping member 300 and the second clamping member 400 are both made of metal material and have high strength and stability. One end of the first clamping member 300 is connected to the partition 200 by a rotating shaft, and the other end is rotatably connected to the second clamping member 400. The length of the second clamping member 400 is slightly smaller than the spacing between the first clamping protrusions 120 , so that the second clamping member 400 can be smoothly clamped on the first clamping protrusions 120 .
[0046] When the height of the partition 200 needs to be adjusted, the second clamping piece 400 needs to be detached from the first clamping protrusion 120, the first clamping piece 300 is rotated first, and then the first clamping piece 300 is rotated again to detach the second clamping piece 400 from the first clamping protrusion 120. Then, the partition 200 is raised or lowered to the desired height position, and then the first clamping piece 300 and the second clamping piece 400 are rotated again to clamp the second clamping piece 400 on the corresponding first clamping protrusion 120, and the height adjustment of the partition 200 is completed.
[0047] Through the cooperation of the first clamping piece 300 and the second clamping piece 400 with the first clamping protrusion 120, the height of the partition 200 can be easily adjusted to meet the storage needs of tools of different sizes. This makes the tool cabinet more flexible to use and improves the space utilization. The structural design of the first clamping piece 300 and the second clamping piece 400 makes the installation of the partition 200 more stable, preventing the upper partition 200 from being inadvertently lifted when tools are taken from the lower layer, causing the upper partition 200 to fall unstably. The second clamping piece 400 clamped on the first clamping protrusion 120 can provide stable support. At the same time, the rotating design of the first clamping piece 300 and the second clamping piece 400 makes the clamping and detachment operation more convenient and efficient. Since the height of the partition 200 can be adjusted, users can store tools according to their size and type, making the tool cabinet more tidy and orderly. This not only facilitates the search and use of tools, but also improves work efficiency. The multifunctional tool cabinet is suitable for various workplaces.
[0048] Further, the second clamping piece 400 is a rotating ring.
[0049] In this embodiment, the second clamping piece 400 adopts a rotating ring structure made of high-strength and wear-resistant metal material to ensure that it is not easily damaged during long-term use. The width of the first clamping protrusion 120 near the cabinet body 100 is smaller than the width of the first clamping protrusion 120 away from the cabinet body 100, and the inner diameter of the rotating ring is larger than the inner diameter of the first clamping protrusion 120, so that the rotating ring can be easily fitted on the first clamping protrusion 120 while being clamped on the first clamping protrusion 120. The outer surface of the rotating ring can be treated with anti-slip, such as being engraved with anti-slip lines or being installed with a rubber sleeve, to facilitate more convenient and efficient operation.
[0050] When the height of the partition 200 needs to be adjusted, the first clamping piece 300 is rotated, and then the first clamping piece 300 is rotated again to detach the second clamping piece 400 from the first clamping protrusion 120. Then, the partition 200 is raised or lowered to the desired height position. Then, the rotating ring is aligned with the corresponding first clamping protrusion 120 and rotated inward to fit on the first clamping protrusion 120, and then the first clamping piece 300 is rotated to fix the partition 200, completing the height adjustment of the partition 200. During the operation, the rotating ring can be clamped firmly by slightly shaking the partition 200.
[0051] The design of the rotating ring makes engagement and disengagement simpler and faster. The user simply twists the ring, eliminating the need for complex tools or tedious steps. The ring securely fits the first engaging protrusion 120, providing greater stability. Once engaged, the ring resists loosening or falling off, ensuring that the partition 200 is securely fixed at the desired height.
[0052] Furthermore, the containing space 110 has an opening 111, the first clamping protrusion 120 is close to the opening 111, and the cabinet body 100 also has a plurality of second clamping protrusions 130 located on both sides of the containing space 110 and arranged at intervals in the vertical direction. The second clamping protrusions 130 are away from the opening 111, and also include a plurality of clamping columns 500, which are arranged on both sides of the partition 200, and the clamping columns 500 are used to clamp onto the second clamping protrusions 130.
[0053] In this embodiment, the opening 111 of the storage space 110 of the cabinet 100 is designed to facilitate the removal and placement of tools. The second clamping protrusions 130 located on both sides of the storage space 110 and away from the opening 111 provide support points for the simple clamping column 500 structure. These second clamping protrusions 130 are arranged at intervals to ensure that the partition 200 can be stably supported at different heights. A first clamping protrusion 120 and a second clamping protrusion 130 correspond in height to ensure that the partition 200 is in a horizontal state. The length and diameter of each clamping column 500 are designed according to the size of the second clamping protrusion 130 to ensure that it can be firmly clamped on the second clamping protrusion 130.
[0054] When the height of the partition 200 needs to be adjusted, the second outer clamping piece 400 can be disengaged from the first clamping protrusion 120 first, and then the partition 200 can be lifted upwards, the clamping column 500 can be disengaged from the second clamping protrusion 130, the partition 200 can be adjusted to a suitable height position, and then the reverse operation can be performed to fix it.
[0055] The provision of the first and second latching projections 120, 130, along with the mating first latching member 300 (rotating ring) and latching post 500, provides a dual securing mechanism for the partition 200. The second latching projection 130 utilizes a simple latching post 500 structure, eliminating the need for a complex rotating mechanism, making the tool cabinet structure simpler and more reliable. The latching post 500 is also relatively easy to install and operate, reducing manufacturing and maintenance costs. The latching post 500 securely attaches to the second latching projection 130, preventing the partition 200 from accidentally slipping when storing heavy tools, thereby enhancing the safety of the tool cabinet.
[0056] Furthermore, the partition 200 includes two mounting frames 210, which are arranged in a lifting manner within the receiving space 110 and are located on both sides of the receiving space 110. The first clamping member 300 is rotatably mounted on the mounting frames 210; a load-bearing plate 220 is correspondingly mounted on the two mounting frames 210 on both sides. The load-bearing plate 220 is slidably mounted on the mounting frames 210 and further includes a first push-pull bar 600, which is mounted on the mounting frames 210 and has a slide rail 610; and a second push-pull bar 700, which is mounted on the load-bearing plate 220 and slides within the slide rail 610.
[0057] In this embodiment, the mounting frame 210 is also provided with a rotating shaft seat for mounting the first clamping member 300, so that the first clamping member 300 can rotate flexibly. The load-bearing plate 220 is made of a sturdy alloy material and has a high load-bearing capacity. It is provided with connecting parts corresponding to the mounting frame 210 on both sides for mounting the second push-pull bar 700. The first push-pull bar 600 is fixed to the mounting frame 210 and has a slide rail 610. The slide rail 610 is made of high-strength aluminum alloy, has a smooth surface, and has low friction, which can ensure that the second push-pull bar 700 slides smoothly therein. The second push-pull bar 700 is installed on the load-bearing plate 220, and its shape matches the slide rail 610 of the first push-pull bar 600.
[0058] To pull the bearing plate 220 out of or push it into the mounting frame 210, the second push-pull bar 700 can be pulled outward along the slide rail 610 on the first push-pull bar 600, allowing the bearing plate 220 to slide smoothly onto the mounting frame 210. This allows for convenient access to tools placed on the bearing plate 220. Convenient Tool Access: The bearing plate 220 is slidably mounted on the mounting frame 210. The cooperation of the first push-pull bar 600 and the second push-pull bar 700 allows the bearing plate 220 to be easily pulled out of or pushed into the mounting frame 210. This greatly facilitates access to tools placed on the bearing plate 220 and improves work efficiency. If the bearing plate 220 or the mounting frame 210 requires maintenance or cleaning, the bearing plate 220 can be easily pulled out of the mounting frame 210 for separate handling. This makes maintenance and cleaning more convenient and efficient, reducing maintenance costs.
[0059] Furthermore, the second engaging protrusion 130 has a horizontal portion 131 and a vertical portion 132 . The horizontal portion 131 is used to support the engaging post 500 , and the vertical portion 132 is used to engage with the engaging post 500 .
[0060] In this embodiment, the storage space 110 of the cabinet 100 is rationally designed to accommodate a variety of tools. A first engaging protrusion 120 and a second engaging protrusion 130 are evenly distributed on both sides of the storage space 110. The horizontal portion 131 and vertical portion 132 of the second engaging protrusion 130 are integrally formed. The vertical portion 132 is perpendicular to the horizontal portion 131 and has an appropriate height, effectively engaging the engaging post 500. The engaging post 500 may be cylindrical, with its diameter matching the width of the horizontal portion 131 of the second engaging protrusion 130, ensuring smooth engagement with the second engaging protrusion 130. The horizontal portion 131 and vertical portion 132 of the second engaging protrusion 130 provide stable support and engagement for the engaging post 500. The horizontal portion 131 can bear the weight of the partition 200 and tools, while the vertical portion 132 prevents the engaging post 500 from accidentally falling off, ensuring the partition 200 remains stable and reliable during use.
[0061] Furthermore, the first push-pull bar 600 and the second push-pull bar 700 have a plurality of slots 710, and also include a plurality of elastic members 800 disposed on the mounting frame 210 and the support plate 220; a plurality of clamping blocks 900 disposed on the elastic members 800, the clamping blocks 900 being configured to engage with the slots 710, and the elastic members 800 being configured to provide a force for the clamping blocks 900 to slide out of the slots 710. The clamping blocks 900 have rounded corners, which are arranged to tilt upward.
[0062] In this embodiment, the first push-pull bar 600 is fixed to the mounting frame 210 and has a length that matches the mounting frame 210. Several slots 710 are evenly distributed along its surface along its length. The depth and width of the slots 710 are precisely designed to ensure a tight and stable fit with the block 900, without affecting sliding. The second push-pull bar 700 is mounted on the bearing plate 220. Its shape matches that of the first push-pull bar 600, allowing it to slide smoothly within the slide rails 610 of the first push-pull bar 600. The second push-pull bar 700 is also provided with several slots 710 corresponding to those of the first push-pull bar 600. Several elastic members 800 are provided on the mounting frame 210 and the bearing plate 220, respectively. The elastic members 800 can be springs. One end of the spring is fixed to the mounting frame 210 or the bearing plate 220, and the other end is connected to the block 900. The shape of the block 900 matches the slot 710, allowing it to easily snap into place. The top of the clamping block 900 is provided with a rounded corner that is tilted upward to facilitate smooth compression when mated with the guiding slope of the second engaging protrusion 130. Mounting brackets 210 are provided on either side of the storage space 110 of the cabinet 100. These mounting brackets 210 engage with the first engaging protrusion 120 and the second engaging protrusion 130 on the cabinet 100 via a first engaging member 300 and a second engaging member 400 (rotating ring) to achieve the lifting and securing of the partition 200. The load-bearing plate 220 is provided on either side of the two mounting brackets 210. The load-bearing plate 220 slides on the mounting brackets 210 through the engagement of the first push-pull bar 600 and the second push-pull bar 700.
[0063] When the load-bearing plate 220 needs to be disassembled, the load-bearing plate 220 is held by hand and pulled obliquely upward. During the pulling process, the block 900 on the load-bearing plate 220 and the slot 710 on the second push-pull bar 700 gradually disengage.
[0064] When the load-bearing plate 220 needs to be removed for cleaning, repair or replacement, the load-bearing plate 220 can be easily removed by simply pulling the load-bearing plate 220 diagonally upward. This design facilitates the user's operation and improves the ease of use of the tool cabinet. When removing the load-bearing plate 220, the rounded corners cause the elastic member 800 to contract, and the load-bearing plate 220 can be removed without the need for additional tools or complicated operations. This structural design is both simple and practical, and improves the overall performance of the tool cabinet. During the process of removing the load-bearing plate 220, the cooperation of the guiding slope and the rounded corners, as well as the buffering effect of the elastic member 800, prevents the load-bearing plate 220 from accidentally falling off.
[0065] Furthermore, the rotating plate 1000 is provided with a snap-fitting slot 1010. The rotating plate 1000 is rotatably mounted on the mounting frame 210 and is positioned between the first snap-fitting member 300 and the mounting frame 210. When the rotating plate 1000 is rotated to a horizontal position, the first snap-fitting member 300 snaps into the snap-fitting slot 1010. When the rotating plate 1000 is rotated upward, it is used to abut the load-bearing plate 220.
[0066] In this embodiment, the rotating plate 1000 is provided with a snap-in groove 1010 to ensure that the first snap-in member 300 can be securely snapped into place. The rotating plate 1000 is connected to the mounting frame 210 via a rotating shaft mounted on the side of the mounting frame 210, enabling the rotating plate 1000 to rotate. After adjusting the height of the partition 200 or installing the load-bearing plate 220, the rotating plate 1000 is rotated downward to a horizontal position, allowing the first snap-in member 300 to snap into the snap-in groove 1010 on the rotating plate 1000. At this point, the rotating plate 1000 secures the load-bearing plate 220, preventing it from accidentally falling off. When the rotating plate 1000 is tilted, it prevents the load-bearing plate 220 from sliding, thereby securing it. To adjust the load-bearing plate 220's position, the rotating plate 1000 simply needs to be rotated horizontally.
[0067] The provision of the rotating plate 1000 effectively prevents the load-bearing plate 220 from accidentally falling off, thus enhancing the safety of the tool cabinet. Especially when the tool cabinet is subjected to vibration or external impact, the rotating plate 1000 can firmly secure the load-bearing plate 220, ensuring safe storage of tools. The rotating plate 1000 is easy to operate, allowing users to easily turn it up or down to achieve different functional requirements.
[0068] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention, and all of these should be included in the scope of the claims of the present invention.
Claims
1. A multifunctional tool cabinet, characterized in that: include: A cabinet (100) has a storage space (110) and a plurality of first clamping protrusions (120) located on both sides of the storage space (110), wherein the plurality of first clamping protrusions (120) are arranged at intervals in a vertical direction; There are a plurality of partitions (200), all of which are arranged in a lifting manner in the containing space (110); A first clamping member (300) is rotatably disposed on the partition (200); The second clamping member (400) is rotatably arranged on the first clamping member (300); after the first clamping member (300) and the second clamping member (400) are rotated, the second clamping member (400) is used to be clamped on the first clamping protrusion (120).
2. A multifunctional tool cabinet according to claim 1, characterized in that: The second clamping member (400) is a rotating ring.
3. The multifunctional tool cabinet according to claim 1, characterized in that: The receiving space (110) has an opening (111), the first clamping protrusion (120) is close to the opening (111), the cabinet (100) further has a plurality of second clamping protrusions (130) located on both sides of the receiving space (110), the plurality of second clamping protrusions (130) are arranged at intervals in a vertical direction, and the second clamping protrusions (130) are away from the opening (111), and further comprises: There are a plurality of clamping columns (500) provided on both sides of the partition (200), and the clamping columns (500) are used to be clamped on the second clamping protrusion (130).
4. A multifunctional tool cabinet according to claim 3, characterized in that: The partition (200) includes: The mounting frames (210) are provided with two mounting frames (210), which are arranged in a lifting manner in the containing space (110) and are respectively located on both sides of the containing space (110); the first clamping member (300) is rotatably arranged on the mounting frames (210); The load-bearing plate (220) is correspondingly arranged on the two mounting frames (210) on both sides.
5. The multifunctional tool cabinet according to claim 4, characterized in that: The load-bearing plate (220) is slidably disposed on the mounting frame (210), and further comprises: A first push-pull bar (600) is provided on the mounting frame (210) and has a slide rail (610); The second push-pull strip (700) is arranged on the load-bearing plate (220) and is slidably arranged in the slide rail (610).
6. The multifunctional tool cabinet according to claim 5, characterized in that: The second clamping protrusion (130) has a horizontal portion (131) and a vertical portion (132), the horizontal portion (131) is used to support the clamping column (500), and the vertical portion (132) is used to clamp the clamping column (500).
7. The multifunctional tool cabinet according to claim 6, characterized in that: The first push-pull strip (600) and the second push-pull strip (700) have a plurality of slots (710) and further include: There are a plurality of elastic members (800) disposed on the mounting frame (210) and the load-bearing plate (220); There are a plurality of card blocks (900) arranged on the elastic member (800), the card blocks (900) being used to be inserted into the card slot (710), and the elastic member (800) being used to provide a force for the card blocks (900) to slide out of the card slot (710).
8. The multifunctional tool cabinet according to claim 7, characterized in that: The clamping block (900) has a rounded corner, and the rounded corner is arranged to be inclined upward.
9. The multifunctional tool cabinet according to claim 4, characterized in that: Also includes: A rotating plate (1000) has a snap-fitting groove (1010). The rotating plate (1000) is rotatably arranged on the mounting frame (210). The rotating plate (1000) is located between the first snap-fitting member (300) and the mounting frame (210). After the rotating plate (1000) is rotated to a horizontal state, the first snap-fitting member (300) is snapped into the snap-fitting groove (1010).
10. The multifunctional tool cabinet according to claim 9, characterized in that: After the rotating plate (1000) rotates upward, it is used to abut against the load-bearing plate (220).