Plug-in mounting type modularized tool room wall
Through plug-in modular design and strengthening structure, the sealing and connection strength problems of tool room wall panels are solved, and a more stable and durable tool room wall structure is achieved.
Patent Information
- Application Number
- CN202422348135.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-26
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-09-26
AI Technical Summary
The splicing seams of existing tool room wall panels have poor sealing and insufficient connection strength, resulting in water seepage, ventilation and unstable structure, especially in strong winds.
It adopts a plug-in modular design, with plug-in strips at both ends of the wall panel, which are connected by splicing strips and fastening bolts. The plug-in strips are inserted into the notch of the splicing strip, and reinforcement protrusions and reinforcement plates are installed on the inside of the wall panel to enhance structural strength and sealing.
It improves the connection strength and sealing effect between wall panels, prevents water seepage and airflow, enhances the stability and durability of the overall structure, is easy to install and easy to process.
Smart Images

Figure CN223074971U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of tool rooms, and particularly refers to an inserted modular tool room wall body. Background Art
[0002] Tool rooms are generally set in outdoor places such as gardens and are mainly used for storing some tools, sundries, etc.
[0003] Patent No. CN220954859U discloses a tool room, whose wall includes an upper beam, a bottom beam and wall panels. A connecting beam is arranged inside the wall panels. In this patent, the upper beam, the connecting beam and the bottom beam are respectively connected and fixed to the upper end, the middle part and the lower end of the wall panels through screws.
[0004] Since the wall panels of this patent are spliced by multiple corrugated steel plates, the splicing seam between adjacent corrugated steel plates of such a structure has very poor sealing performance. Rainwater is easily seeped into the splicing seam, or wind is blown into the interior through the splicing seam, which is not conducive to the preservation of internal items. And the connection method of fixing the middle parts of multiple corrugated steel plates by a connecting beam in this patent has relatively poor connection strength between each corrugated steel plate, making the overall structure of the wall panel unstable. Especially during long-term use and in windy weather, the connection parts of each corrugated steel plate are prone to loosening and deformation, resulting in damage to the wall panel, and the maintenance is time-consuming and laborious. Content of the Utility Model
[0005] Aiming at the deficiencies of the prior art, the utility model provides a wall structure for a tool room. The wall panels are modularly designed, which is convenient for processing. The connection strength between each wall panel is high, and the sealing effect is better. The overall structure of the wall panel is stable and durable, and the installation is convenient.
[0006] The utility model is realized by the following technical solutions. An inserted modular tool room wall body includes several vertically extending wall panels. Vertical inserting strips are arranged at the left and right ends of the wall panels. A vertical splicing strip is arranged between adjacent wall panels. The splicing strip is provided with a vertically extending notch. Two adjacent inserting strips between adjacent wall panels are inserted into the notch and fixedly connected with the splicing strip.
[0007] In this solution, inserting strips are arranged at both ends of the wall panels. The inserting strips of adjacent wall panels are connected and fixed through the splicing strip, thereby enhancing the connection strength between adjacent wall panels and improving the overall structural strength and stability of the wall panels. And the inserting strips are inserted into the notch of the splicing strip, and the notch covers the splicing part of the two inserting strips, effectively preventing water seepage and air leakage at the splicing seam, and improving the sealing effect between adjacent wall panels.
[0008] As an optimization, the splicing strip includes two opposite first vertical plates and a second vertical plate connecting the two first vertical plates. The notch is formed between the two first vertical plates and the second vertical plate.
[0009] As an optimization, vertical slots extending vertically are provided at both the upper and lower ends of the first vertical plate, and the slots of the two first vertical plates face each other. In this optimized solution, the upper and lower ends of the splicing strip are provided with slots, which are convenient for connecting with the top beam and bottom beam of the tool room.
[0010] As an optimization, the plugging strip includes a third vertical plate and a fourth vertical plate. The third vertical plate is perpendicular to the wall panel, one end of the third vertical plate is fixedly connected to the end of the wall panel, the fourth vertical plate is perpendicular to the third vertical plate, one end of the fourth vertical plate is fixedly connected to the other end of the third vertical plate, and the other end of the fourth vertical plate extends away from the wall panel.
[0011] As an optimization, the fourth vertical plate and the second vertical plate are fixedly connected by fastening bolts, and screw holes for the fastening bolts to pass through are provided on the fourth vertical plate and the second vertical plate. In this optimized solution, the splicing strip and the plugging strip are fixedly connected by fastening bolts, which is convenient for installation.
[0012] As an optimization, the screw hole of the fourth vertical plate is a rectangular hole, and the screw hole of the second vertical plate is a circular hole. The aperture of the rectangular hole is larger than that of the circular hole. In this optimized solution, the rectangular hole is convenient for the penetration of the fastening bolt, the circular hole keeps the fastening bolt stable, and the larger aperture of the rectangular hole than that of the circular hole is convenient for aligning the screw holes of the fourth vertical plate and the second vertical plate during installation.
[0013] As an optimization, a protruding strengthening protrusion is provided on the inner side of the wall panel, and the strengthening protrusion extends vertically. In this optimized solution, the structural strength of the wall panel is improved by the vertically extending strengthening protrusion.
[0014] As an optimization, a plurality of reinforcing rib plates extending horizontally are fixedly connected to the inner wall of the wall panel, and the plurality of reinforcing rib plates are distributed vertically. In this optimized solution, the structural strength of the wall panel is further improved by the plurality of reinforcing rib plates.
[0015] As an optimization, a clamping groove that is clamped and matched with the strengthening protrusion is provided on the reinforcing rib plate, and the strengthening protrusion is clamped in the clamping groove. In this optimized solution, the reinforcing rib plate and the strengthening protrusion form an integral body, the overall structure of the reinforcing rib plate and the strengthening protrusion is more stable, and thus the overall strength of the wall panel is improved.
[0016] The beneficial effects of the present utility model are as follows: Plugging strips are provided at both ends of the wall panel, and the plugging strips of adjacent wall panels are fixedly connected by screwing with the splicing strip, thereby enhancing the connection strength between adjacent wall panels, improving the structural strength and stability of the wall body. The wall panel adopts a modular design, which is convenient for processing and the installation between wall panels is convenient. Moreover, the plugging strip is inserted into the notch of the splicing strip, and the notch covers the splicing part of the two plugging strips, effectively preventing water seepage and air leakage at the splicing seam, and improving the sealing effect between adjacent wall panels. The inner side of the wall panel is strengthened by the overall connection of the strengthening protrusion and the reinforcing rib plate, greatly improving the overall structure of the wall panel, not easily deformed, and the structure is more stable. Description of the Drawings
[0017] Figure 1 Schematic diagram of wall panel installation structure;
[0018] Figure 2 Schematic diagram of splicing strip and insertion strip installation structure;
[0019] Figure 3 Schematic diagram of wall panel structure;
[0020] As shown in the figure:
[0021] 1. Wall panel, 2. Insertion strip, 21. Third vertical plate, 22. Fourth vertical plate, 3. Splicing strip, 31. First vertical plate, 32. Second vertical plate, 33. Slot, 34. Notch, 4. Reinforcing protrusion, 5. Reinforcing rib plate, 51. Card slot. Specific implementation mode
[0022] To clearly illustrate the technical features of this solution, the following will elaborate on this solution through specific implementation modes.
[0023] As Figures 1 to 3 shown, an inserted modular tool room wall includes several vertically extending wall panels 1. The left and right ends of the wall panel 1 are provided with vertically extending insertion strips 2. A vertically extending splicing strip 3 is provided between adjacent wall panels 1. The splicing strip 3 is provided with a vertically extending notch 34. Two adjacent insertion strips 2 between adjacent wall panels 1 are inserted into the notch 34 and fixedly connected to the splicing strip 3.
[0024] Specifically, the splicing strip 3 includes two opposite first vertical plates 31 and a second vertical plate 32 connecting the two first vertical plates. The notch is formed between the two first vertical plates 31 and the second vertical plate 32. As Figure 2 shown, the splicing strip 3 in this embodiment is an integrally formed structure. The left and right ends of the second vertical plate 32 are bent and extended 90 degrees to the same side to form the two first vertical plates 31, which has higher structural strength and is easy to process.
[0025] Specifically, the insertion strip 2 includes a third vertical plate 21 and a fourth vertical plate 22. The third vertical plate 21 is perpendicular to the wall panel 1. One end of the third vertical plate 21 is fixedly connected to the end of the wall panel 1. The fourth vertical plate 22 is perpendicular to the third vertical plate 21. One end of the fourth vertical plate 22 is fixedly connected to the other end of the third vertical plate 21, and the other end of the fourth vertical plate extends away from the wall panel 1.
[0026] In this embodiment, the insertion strips 2 at both ends of the wall panel 1 are both located inside the wall panel 1, and the insertion strip 2 and the wall panel 1 are an integrally formed structure. The end of the wall panel 1 is bent and extended 90 degrees inward to form the third vertical plate 21, and the end of the third vertical plate 21 is bent and extended 90 degrees away from the wall panel to form the fourth vertical plate 22, which has higher structural strength and is easy to process.
[0027] The fourth vertical plate 22 and the second vertical plate 32 are fixedly connected by fastening bolts, and screw holes for the fastening bolts to pass through are formed on the fourth vertical plate 22 and the second vertical plate 32. Preferably, the screw hole on the fourth vertical plate 22 is a rectangular hole, and the screw hole on the second vertical plate 32 is a circular hole. The aperture of the rectangular hole is larger than that of the circular hole, which is convenient for aligning the screw holes of the fourth vertical plate and the second vertical plate, so as to facilitate the insertion of the fastening bolts. In this embodiment, the fourth vertical plate 22 and the second vertical plate 32 are fixedly connected by a plurality of the fastening bolts along the height direction, so that the splicing strip and the connecting strip are firmly connected.
[0028] Preferably, vertical slots 33 extending vertically are provided at both the upper and lower ends of the first vertical plate 31 of the splicing strip 3. The slots 33 of the two first vertical plates 31 face each other, and an insertion cavity is formed between the two slots 33 at the same end of the two first vertical plates. In this embodiment, the slot 33 is arranged at one end of the first vertical plate 31 close to the second vertical plate 32, and fastening bolts are inserted through the upper and lower two insertion cavities of the splicing strip 3. The splicing strip 3 can be respectively inserted and fixed with the top beam plate and the bottom beam plate of the tool room through the upper and lower two insertion cavities, so as to realize the connection between the wall panel and the top beam and the bottom beam of the tool room, and improve the connection strength and installation stability of the wall panel.
[0029] To improve the structural strength of the wall panel 1, a protruding reinforcing protrusion 4 is provided inside the wall panel 1. The reinforcing protrusion 4 extends vertically and is located in the middle of the wall body 1. A plurality of reinforcing rib plates 5 extending horizontally are fixedly connected to the inner wall of the wall panel 1, and the plurality of reinforcing rib plates 5 are distributed vertically along the wall panel 1. A clamping groove 51 that is clamped and matched with the reinforcing protrusion 4 is provided on the reinforcing rib plate 5, and the reinforcing protrusion 4 is clamped in the clamping groove 51.
[0030] When the adjacent insertion strips 2 of adjacent wall panels of the present utility model are assembled, the fourth vertical plate 22 of one insertion strip 2 overlaps the fourth vertical plate 22 of the other insertion strip 2, and the fourth vertical plates 22 of the two insertion strips 2 coincide, so that the screw holes of the two fourth vertical plates are aligned. The two insertion strips 2 are inserted into the notch 34 of the splicing strip 3, the third vertical plates 21 of the two insertion strips 2 are respectively opposite to the two first vertical plates 31 of the splicing strip 3, and the fourth vertical plate 22 is opposite to the second vertical plate 32, so as to realize the covering of the splicing strip 3 on the two insertion strips 2, and further improve the closing effect of the splicing part of the insertion strips. Align the screw hole of the second vertical plate 32 with the screw hole of the fourth vertical plate 22, and the upper and lower two insertion cavities of the splicing strip are respectively inserted into the top beam plate and the bottom beam plate of the tool room, so that the top beam plate and the bottom beam plate are both located between the second vertical plate 32 and the fourth vertical plate 22. Screw holes are also formed on the top beam plate and the bottom beam plate and are aligned with the screw holes of the second vertical plate and the fourth vertical plate. The splicing strip 3 and the insertion strip 2 are connected and fixed by fastening bolts, so as to realize the sequential assembly and fixation of several wall panels to form a wall body, which is convenient for installation.
[0031] Certainly, the above description is not limited to the above examples. The technical features not described in this utility model can be achieved by or adopted from the prior art, which will not be elaborated here. The above embodiments and drawings are only used to illustrate the technical solutions of this utility model and are not a limitation to this utility model. The detailed description of this utility model is made with reference to the preferred embodiments. Those of ordinary skill in the art should understand that any changes, modifications, additions or substitutions made by those of ordinary skill in this technical field within the substantial scope of this utility model do not depart from the purpose of this utility model and should also fall within the scope of protection of the claims of this utility model.
Claims
1. An insert-type modular tool room wall, comprising a plurality of horizontally arranged wall panels (1), characterized in that: The left and right ends of the wall panel (1) are provided with vertically extending insertion strips (2), and a vertically extending splicing strip (3) is provided between adjacent wall panels (1). The splicing strip (3) is provided with a vertically extending notch (34). Two adjacent insertion strips (2) between adjacent wall panels are inserted into the notch (34) and fixedly connected to the splicing strip.
2. The wall of the plug-in modular tool house according to claim 1, characterized in that: The splicing strip (3) includes two opposite first vertical plates (31) and a second vertical plate (32) connecting the two first vertical plates. The notch (34) is formed between the two first vertical plates and the second vertical plate.
3. The plug-in modular tool house wall according to claim 2, characterized in that: Vertical slots (33) extending vertically are provided at both the upper and lower ends of the first vertical plate (31), and the slots of the two first vertical plates face each other.
4. The wall of the plug-in modular tool house according to claim 2, characterized in that: The insertion strip (2) includes a third vertical plate (21) and a fourth vertical plate (22). The third vertical plate is perpendicular to the wall panel, one end of the third vertical plate is fixedly connected to the end of the wall panel (1), the fourth vertical plate is perpendicular to the third vertical plate, one end of the fourth vertical plate is fixedly connected to the other end of the third vertical plate, and the other end of the fourth vertical plate extends away from the wall panel.
5. The wall of the plug-in modular tool house according to claim 4, characterized in that: The fourth vertical plate (22) and the second vertical plate (32) are fixedly connected by a fastening bolt, and screw holes for the fastening bolt to pass through are provided on the fourth vertical plate and the second vertical plate.
6. The plug-in modular tool house wall according to claim 5, characterized in that: The screw hole of the fourth vertical plate (22) is a rectangular hole, and the screw hole of the second vertical plate (32) is a circular hole. The aperture of the rectangular hole is larger than the aperture of the circular hole.
7. The wall body of an inserted modular tool house according to claim 1, characterized in that: A protruding reinforcing protrusion (4) is provided inside the wall panel (1), and the reinforcing protrusion extends vertically.
8. The wall of the plug-in modular tool house according to claim 7, characterized in that: A plurality of horizontally extending reinforcing rib plates (5) are fixedly connected to the inner wall of the wall panel (1), and the plurality of reinforcing rib plates are distributed vertically.
9. The wall of the plug-in modular tool house according to claim 8, wherein: The reinforcing rib plate (5) is provided with a card slot (51) that is fitted and matched with the reinforcing protrusion (4), and the reinforcing protrusion is engaged in the card slot.