Standing tool storage

The standing tool storage device addresses the complexity and space limitations of existing systems with a modular design featuring detachable hooks and shelves, enhancing flexibility and ease of use.

DE202025101563U1Active Publication Date: 2025-06-12LINHAI SHANGLAI LEISURE PROD
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Patent Information

Application Number
DE202025101563
Authority / Receiving Office
DE · DE
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2025-06-12
Estimated Expiration
2035-03-31

AI Technical Summary

Technical Problem

Existing tool storage systems are complex, difficult to disassemble, and limited in space, with fixed structures that hinder flexibility and recycling, and require complicated hook structures for wall mounting.

Method used

A standing tool storage device comprising a ceiling plate, base plate, back plate, side plates, and door plates with detachable hook and shelf arrangements, allowing for flexible installation and adjustment of hanging positions.

Benefits of technology

The device offers a simple, easy-to-install structure with detachable hooks and shelves, providing flexible tool storage that minimizes space occupation and facilitates easy loading and unloading, while being adaptable to various installation positions.

✦ Generated by Eureka AI based on patent content.

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Abstract

A standing tool storage unit, characterized in that it comprises a ceiling panel (1), a floor panel (2), a back panel (3), side panels (4), door panels (5), and columns (6), four of the columns (6) being connected between the floor panel (2) and the ceiling panel (1), the back panel (3) and the side panel (4) being mounted between the rear and side two columns (6), respectively, two of the door panels (5) being located between two of the front columns (6) and forming a folding opening, the door panels (5) being provided with a mounting plate (7) on the inner wall, the mounting plate (7) being provided with a hook arrangement (8), the back panel (3) being provided with a removably connected shelf panel arrangement (9) on the inner wall, and the back panel (3) or side panel (4) being provided with a removably connected hanging arrangement (10) on the inner wall.
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Description

Technical FieldThe present invention relates to the technical field of movable bearings, in particular to a stationary tool bearing.Prior ArtTool storage is used to place all kinds of tools in a small activity room, it is arranged to facilitate storage of a plurality of tools, use of a wider range of scenes, and is generally assembled with profiles and profiled steel sheet. At present, the tool stocker is on the market having the following defects: the structure is more complex, the profile or profiled steel sheet is fixed by the welded joint, the shape of the tool is not easy to support or transfer space, not conducive to recycling; the area of the tool stocker is limited to facilitate the storage of more tools, a hook structure is usually set on the wall plate to hang the tools on the wall plate, but the hook structure is not easy to disassemble, and the structure is more complicated, improving the difficulty of production.Content of the Present Utility ModelThe purpose of the present invention is to develop a stationary tool bearing to overcome the above technical deficiencies.The present invention provides a standing tool stocker comprising a ceiling plate, a floor plate, a back plate, side plates, door plates and four columns, four of the columns being connected between the floor plate and the ceiling plate, the back plate and the side plates being mounted between the rear and side two columns, respectively, two of the door plates being located between two of the front columns and forming a folding opening, the door plates being provided with a mounting plate on the inner wall, the mounting plate being provided with a hook arrangement, the back plate being provided with a detachably connected shelf plate arrangement on the inner wall, and the back plate or side plate being provided with a detachably connected suspension arrangement on the inner wall.The technical effects of the present invention are as follows: The tool mount is composed of a top plate, side plates, a back plate, pillars, and door plates, and the overall structure is simple and easy to install, and a plurality of hook assemblies for hanging are attached to the inner wall of the side plate, the back plate, and the door plate. These hook arrangements are not only of simple construction, but also removable and can be adapted to the respective mounting position, which is very flexible and practical. Due to the simple structure and the easy loading and unloading of these hook arrangements, the space requirement in the tool store after assembly is very low.Brief Description of the DrawingsFIG. 1 is an illustration of the overall structure of the door panel when in a closed state; FIG. 2 is an illustration of the overall structure of the door panel when in an open state; FIG. 3 is an enlarged view of A in FIG. 2 ; FIG. 4 is an enlarged view of B in FIG. 2 ; FIG. 5 is an enlarged view of C in FIG. 2 ; FIG. 6 is a diagram showing the structure of a positioning plate; FIG. 7 is an illustration of the structure of a suspension assembly; FIG. 8 is an illustration of the structure of a wind hook and a movable pin; FIG. 9 is a longitudinal sectional view of a holding edge at the lower end of a door panel; FIG. 10 is a longitudinal sectional view of a holding edge at the lower end of a side plate; FIG. 11 is a schematic diagram showing the structure of the shelf assembly in a non-bent state; FIG. 12 is a schematic diagram of the structure in which a rotating member and a positioning rod are disposed on the door panel; FIG. 13 is a schematic illustration of the connection between the pillar and the side and back panels; Fig. 14 is a schematic illustration of four shapes of the top plate.DETAILED EMBODIMENTThe technical solutions in the embodiments of the present invention will be clearly and fully described below in connection with the accompanying drawings in the embodiments of the present invention. It should be understood that the described embodiments are only a part of the embodiments of the present invention, but not all of the embodiments. Starting from the embodiments of the present invention, all other embodiments that a person skilled in the art can produce without any creative work fall within the scope of protection of the present invention.As shown in FIGS. 1 and 2, the present invention includes a top plate 1, a bottom plate 2, a back plate 3, a side plate 4, a door plate 5, and four pillars 6, the bottom plate 2 being a rectangular plate, the four pillars 6 being connected to the four corners of the bottom plate 2, the back plate 3 being connected to the side plate 4 through the pillars 6, and two door plates 5 being disposed at the front between the two pillars 6, thereby forming a tool bearing in the form of a rectangular body. The two door panels 5 are foldable door panels 5, the inner wall of the door panels 5 is provided with a mounting plate 7, the mounting plate 7 is an elongated panel structure arranged along the longitudinal direction of the door panels 5, the mounting plate 7 is provided with a detachable hook arrangement 8, and the inner wall of the rear panel 3 is provided with a detachable shelf arrangement 9. A detachable hanger assembly 10 is provided on the inner wall of the back plate 3 or the side plate 4, and the hook assembly 8, the shelf assembly 9, i.e., the hanger assembly 10, are used for hanging tools.The back plate 3, the side plates 4 and the door plates 5 are corrugated metal or steel plates whose inner wall surfaces form a concave-convex surface structure.The base plate 2 and the cover plate 1 are provided on all sides with a holding edge 12, wherein the holding edge 12 comprises two extended edges 121, wherein the edge 121 of the holding edge 12 located on the base plate 2 is directed upwards, the edge 121 of the holding edge 12 located on the cover plate 1 is directed downwards and a mounting slot 122 is formed between the two edges 121. As shown in FIG. 10, the upper and lower ends of the side plate 4 and the upper and lower ends of the rear plate 3 are inserted into the corresponding mounting slot 122. The base plate 2 is surrounded by a raised edge 11 in the form of a square tube in order to reinforce the edges of the base plate 2. The raised edge 11 is located below the holding edge 12, and the edges of the holding edge 12 are formed into the edges 121 by bending upward, thereby ensuring that the upper and lower ends of the side plate 4 and the rear plate 3 adhere to the holding edge 12, making the connection more stable and thus ensuring the installation strength of the side plate 4 and the rear plate 3. In this embodiment, the four edges of the bottom plate 2 are located between the raised edge 11 and the holding edge 12, and the raised edge 11 is located at the very bottom, and the raised edge 11 may be a square tube or a square tube-like structure formed by bending a type plate.The upper and lower ends of the door panel 5 are located on the outside of the corresponding holding edge 12, and between the bottom panel 2 and the raised edge 11 there is provided an intermediate layer 13, wherein the intermediate layer 13 is also a panel structure, the intermediate layer 13 may be a thin sheet of the same size as the bottom panel 2 or may be a strip of thin sheet of the same width as the raised edge 11. The front end of the intermediate layer 13 extends below the door panel 5 and is then bent twice in sequence, the first bend being an upward bend and the second bend being an inward bend, thereby forming the holding strip 14, as shown in Fig. 9, i.e. the holding strip 14 is formed from the front end of the intermediate layer 13 after the two bends. In this embodiment, the holding strip 14 is formed by bending both sides to form a similar channel steel structure, the end of the holding strip 14 abuts against the outside of the holding edge 12, and the second bending surface of the holding strip 14 abuts against the lower end of the door panel 5, which not only blocks the door panel 5 but also serves as a sill for insulation of the lower surface of the door panel 5 and prevents rainwater from entering the space, and at the same time enhances the strength of the edges of the floor panel 2.The mounting plate 7 is a corrugated metal plate whose surface forms a concave-convex surface structure, the convex surface structure on the back side of the mounting plate 7 is fixed to the convex surface structure of the door plate 5 and is firmly connected by means of fastening elements such as rivets or screws, the mounting plate 7 is a thin sheet metal structure, and the mounting plate 7 is provided with a hook arrangement 8 integrated with the mounting plate 7.In this embodiment, the hook assembly 8 may be in various forms: In a first embodiment, as shown in FIG. 4, the hook assembly 8 is a first hook 81, the front side of the mounting plate 7 is cut with a first U-shaped groove body 82. The part of the mounting plate 7 enclosed by the first groove body 82 serves as a first hook 81, the first hook 81 can be bent at an angle relative to the mounting plate 7, and the first hook 81 is provided with a first hook hole 83. The first hook 81 is bent in a horizontal direction, i.e., the first hook 81 is at an angle of 90 degrees to the mounting plate 7, so that the first hook hole 83 can be used for suspending the hook member inside the first hook 83, and the first hook 81 is provided with a series of small holes in the portion along the bending line to facilitate the bending of the first hook 81. In the second embodiment, as shown in FIG. 3, the hook assembly 8 is a second hook 84, and the front surface of the mounting plate 7 is provided with a second H-shaped groove body 85. The part of the mounting plate 7 enclosed by the second groove body 85 serves as a second hook 84, the second hook 84 is provided with a second hook hole 86, and the mounting plate 7 is provided with mounting holes 87 on both sides of the second hook 84; external hook elements 88 are removably inserted into the mounting holes 87, i.e. the tool is suspended by means of the hook elements from the second hook holes 86, while the external hook elements 88 function as hooks on which the tool can be directly suspended and are therefore suitable for different suspension requirements. In the third embodiment, the mounting plate 7 is provided with a second hook hole 86 serving as a third hook which is a hook hole structure having a larger area, and in this embodiment, the third hook is a rectangular hook hole structure that facilitates the suspension of tools having a larger volume. The three above hook arrangements 8 may be one or more free combinations arranged on the mounting plate 7. In this embodiment, each hook is arranged in a transverse row on the mounting plate 7, wherein the mounting position can be freely selected and combined.The inner wall of the back plate 3 is provided with a positioning plate 15, and the positioning plate 15 has a plurality of bushes 151 in the same straight line uniformly distributed along the height direction. The shelf assembly 9 includes a shelf 91, as shown in FIG. 5, the shelf 91 is provided on both sides with side wings 92 perpendicular to the shelf 91, the side wings 92 being integrally formed with the shelf 91, and an insertion end 93 integrally formed with the side wings 92 is disposed at the rear end of the side wings 92, and the insertion end 93 is barbed. After the insertion end 93 is inserted into the socket 151, the shelf 91 is supported in the lateral direction by the back plate 3, and the upper part of the shelf 91 is secured by the insertion end 93, so that the shelf 91 can be horizontally suspended from the back plate 3. Since the insertion end 93 is detachable from the socket 151, the shelf 91 can be detachably locked to the positioning plate 15, and the position can be adjusted along the height direction, so that the demand for different number and different heights of the shelf 91 is satisfied.Moreover, as shown in FIG. 11, a number of small holes are provided as folds between the side wings 92 and the shelf plate 91, so that the side wings 92 can be bent relative to the shelf plate 91, and the side wings 92 can be bent 90 degrees relative to the shelf plate 91, or can be bent to the same height as the shelf plate 91. When the side wings 92 are level with the shelf 91, i.e., in a non-bent state, it is convenient for stacking and transporting the shelf assembly 9, and when it is necessary to install them, it is sufficient to bend the side wings 92.As shown in FIG. 6, both sides of the positioning plate 15 are bent toward the back plate 3 to form the side edges 152, the side edges 152 are fixed to the back plate 3 with fastening members such as rivets or screws, and slits 153 are provided at the upper and lower ends of the side edges 152; the holding edge 12 located on the top plate 1 and the holding edge 12 located on the bottom plate 2 are inserted into the corresponding insertion slits 153, respectively, whereby not only the positioning plate 15 can be restricted but the positioning plate 15 is also capable of adjusting the position along the longitudinal direction of the holding edge 12, whereby the lateral position of the shelf plate 91 can be adjusted, which is simple in construction, flexible and practical.As shown in FIG. 7, the suspension assembly 10 includes a suspension seat 101. The top surface of the suspension seat 101 is provided with two vertical first cut-out slits 102, and a part of the suspension seat 101 between the two first cut-out slits 102 is bent rearward in the horizontal direction to form an interference fit 103 which is inserted between the top plate 1 and the side plate 4 or between the top plate 1 and the rear plate 3. The portions of the suspension seat 101 of the two first cut-out slits 102 form outwardly vertically oriented insertion plates 104 which are inserted between the holding edges 12 and the side plates 4 or between the holding edges 12 and the rear plates 3, so that the suspension seat 101 can be detachably suspended on the side plates 4 or the rear plates 3, and the lower portion of the suspension seat 101 is bent forward to form the suspension portion 105. That is, the hanging seat 101 is first inserted between the top plate 1 and the side plate 4 or between the top plate 1 and the back plate 3 by means of the press fit 103, and then inserted between the holding edge 12 and the side plate 4 or between the holding edge 12 and the back plate 3 vertically from the bottom to the top by means of the insertion plates 104, so that the hanging seat 101 can be stably hanging on the top surface of the side plate 4 or the back plate 3 and is also easily detachable.As shown in FIG. 8, the top plate 1 or the side plate 4 is provided with a wind hook 16, and the upper surface of the door plate 5 is provided with a first opening 17, and when the door plate 5 is fully opened, the hook end of the wind hook 16 is inserted into the first opening 17 at the upper surface of the door plate 5 to position the door plate 5 and prevent the door plate 5 from being twisted by wind. One of the door panels 5 is also provided with a second opening 18 at the top of the door panel 5, the door panel 5 is provided with first limiting blocks 19 distributed in a circular arrangement at the edge of the second opening 18, with a gap 20 between adjacent first limiting blocks 19, and a movable pin 21 is inserted into the second opening 18. The movable pin 21 is provided with second restricting blocks 22 distributed in a circular array on a peripheral wall of the movable pin 21, the width of the second restricting blocks 22 being smaller than the width of the gap 20. When the movable pin 21 is rotated until the second limit block 22 is above the first limit block 19, the top of the movable pin 21 is in a protruding state, i.e., the top of the movable pin 21 extends to the side of the holding edge 12, causing the door plate 5 to be locked to the top plate 1, so that the door plate 5 will not open to the outside; when the second limit block 22 rotates with the movable pin 21 to slide into the gap 20, the top of the movable pin 21 changes from the protruding state to the retracted state, causing the door plate 5 to be unlocked with the top plate 1.In another embodiment, in addition to the above method of the pin structure of the movable pin 21, the relationship between the door plate 5 and the top plate 1 or the door plate 5 and the bottom plate 2 can also be achieved by another pin structure. As shown in FIG. 13, the pin structure includes a rotating member 25 and a positioning rod 26. the rotating member 25 is located on the inside of the door plate 5 and is rotatably connected to the door plate 5, the end of the rotating member 25 located on the outside of the door plate 5 serves as a rotating end, and the rotating member 25 is drivingly connected to the positioning rod 26. In this embodiment, two positioning rods 26 are symmetrically disposed on the upper and lower sides of the rotating member 25, the rotating member 25 is located at the center of the height direction of the door panel 5, the two positioning rods 26 are synchronously retracted by rotating the rotating member 25, and the top panel 1 and the bottom panel 2 are respectively provided with positioning holes for inserting the upper and lower positioning rods 26. The positioning rods 26 extend from the rotating member 25 to the vicinity of the positioning holes, and the upper and lower positioning rods 26 are synchronously pushed into the positioning holes by positively and negatively rotating the rotating member 25 to achieve locking or unlocking of the door panel 5.As shown in FIG. 1, the outer wall of the other door panel 5 is provided with a combination lock 24 so that the door panel 5 is first unlocked by the combination lock 24, and after the door panel 5 is opened, the movable pin 21 on the upper surface of the other door panel 5 is manually unlocked so that the two door panels 5 are all opened. The advantage of accepting the combination lock 24 is that one does not need to carry a key with it, so that one does not need to take care of the loss of the key, and it is convenient for multiple persons to use, and the combination lock 24 is a conventional numerical combination lock, and the specific structure will not be described here.Note that, as shown in FIG. 13, the pillar 6 of the two side plates 23 includes at a right angle, the side plates 23 extend along the height direction of the side plate 4, and the side plate 4 and the rear plate 3 are respectively fixed to the respective side plates 23 and then firmly joined by fastening members such as rivets to form front and rear boundaries on the side plate 4 and the rear plate 3, so that the joint of the side plate 4 and the rear plate 3 becomes more stable.The connection between the top of the side plate 4 and the pillar 6 and between the top of the rear plate 3 and the pillar 6 is reinforced by corner connectors. In this embodiment, the corner connecting member has three surfaces forming a triangular cone structure, and the three surfaces are respectively fixed to the top surface of the top plate 1, the upper position of the two side plates 23 along the column 6 and firmly connected by fastening members such as rivets or screws to reinforce the intersections of the top plate 1, the side plate 4, the back plate 3 and the column 6 and make the tool space more stable as a whole.The top plate 1 may have various shapes, such as the four shapes shown in Fig. 14: In a, the top surface of the top plate 1 has the shape of an outwardly convex circular arc; in b, the top plate 1 includes one vertically oriented side and another obliquely oriented side; and in c, the top plate 1 includes a series of vertically oriented sides and an obliquely oriented top surface. In d, the upper surface of the cover plate 1 has a convex triangular shape, and the advantage that the cover plate 1 is formed in these four shapes is that water does not accumulate and the cover plate is easily cleaned.

Claims

Standing tool store, characterized in that it comprises a ceiling panel (1), a floor panel (2), a back panel (3), side panels (4), door panels (5) and columns (6), four of the columns (6) being connected between the floor panel (2) and the ceiling panel (1), the back panel (3) and the side panel (4) being mounted between the rear and side two columns (6), respectively, two of the door panels (5) being located between two of the front columns (6) and forming a folding opening, the door panels (5) being provided with a mounting panel (7) on the inner wall, the mounting panel (7) being provided with a hook arrangement (8), the back panel (3) being provided with a detachably connected shelf panel arrangement (9) on the inner wall, and wherein the rear plate (3) or side plate (4) is provided with a detachably connected suspension arrangement (10) on the inner wall.The standing tool bearing according to claim 1, wherein the back plate (3), the side plate (4) and the door plate (5) are corrugated metal plates, the inner wall surfaces of which have a concave-convex surface structure.Standing tool bearing according to claim 2, wherein the edges of the bottom plate (2) and the top plate (1) are provided with holding edges (12), the holding edges (12) comprising two elongated edges (121), wherein a mounting slot (122) is formed between the edges (121), in which the end portion of the side plate (4) or the back plate (3) can be inserted.The standing tool store according to claim 3, wherein the edge of the bottom plate (2) is further provided with a raised edge (11), wherein the retaining edge (12) is arranged on the outside of the raised edge (11), and wherein the height of the edge (121) is higher than the raised edge (11), wherein the door plate (5) is arranged on the outside of the corresponding retaining edge (12), wherein an intermediate layer (13) is arranged between the bottom plate (2) and the raised edge (11), wherein the intermediate layer (13) extends under the bottom plate (5) and then undergoes in succession an upwardly directed first bend and an inwardly directed second bend to form retaining strips (14), wherein an end portion of the retaining strip (14) abuts the outside of the retaining edge (12), and wherein a lower end of the door panel (5) abuts the holding strip (14).The standing tool bearing according to claim 2, wherein the mounting plate (7) is a corrugated metal plate, and wherein the surface forms a concave-convex surface structure, and wherein the hook arrangement (8) is integrally formed on the mounting plate (7).The standing tool rest according to claim 5, wherein the hook assembly (8) is formed by one or more of a first hook (81), a second hook (84) and a third hook, which are arranged in free combination on the mounting plate (7); wherein the mounting plate (7) is cut with a first U-shaped groove body (82) on the front side, wherein the first groove body (82) is provided with a first hook (81) on the inner side, wherein the first hook (81) can be bent and tilted relative to the mounting plate (7), and wherein the first hook (81) is provided with a first hook hole (83); wherein the mounting plate (7) is cut with a second H-shaped groove body (85) on the front side, the second groove body (85) being provided with a second hook (84) on one side, the second hook (84) being provided with a second hook hole (86); the mounting plate (7) being provided with mounting holes (87), the mounting holes (87) being detachably provided with external hook members (88); the hook assembly (8) serving as the third hook.The standing tool stocker according to claim 3, wherein the back plate (3) is provided with a positioning plate (15), the positioning plate (15) is provided with a plurality of bushes (151) in the same straight line uniformly distributed along the height direction, and the shelf plate assembly (9) comprises shelves (91), the shelves (91) are provided with side wings (92) perpendicular to the shelves (91) on both sides, the rear end of the side wings (92) is provided with an insertion end (93) for insertion into the bush (151), so that the shelf (91) is detachably snapped to the positioning plate (15) and can be repositioned along the height direction of the positioning plate (15).The standing tool stocker according to claim 7, wherein both sides of the positioning plate (15) are bent to form side edges (152), the side edges (152) being provided with insertion slits (153), the holding edge (12) located on the top plate (1) and the holding edge (12) located on the bottom plate (2) are each inserted into a corresponding insertion slit (153), so that the positioning plate (15) can be repositioned along the length direction of the holding edge (12).The standing tool mount of claim 3, wherein the suspension assembly (10) comprises a suspension seat (101), wherein the suspension seat (101) is provided with two first cut-out slots (102), and wherein the suspension seat (101) located between two of the first cut-out slots (102) is bent rearward to form a press fit (103); wherein the press-fit (103) is inserted between the top plate (1) and the side plate (4) or between the top plate (1) and the rear plate (3), wherein a plug-in sheet (104) is formed on the outside of the first cut-out slot (102), wherein the plug-in sheet (104) is inserted between the retaining edge (12) and the side plate (4) or between the retaining edge (12) and the rear plate (3) to allow the suspension seat (101) to be detachably suspended from the side plate (4) or the rear plate (3), wherein the end portion of the suspension seat (101) facing away from the press-fit (103) is bent forward to form a suspension portion (105).Standing tool store according to claim 2, wherein the cover plate (1) or the side plate (4) is provided with wind hooks (16), and wherein the door plate (5) is provided with a first opening (17) on the upper side of the door plate (5) for hooking the wind hooks (16).The standing tool support according to claim 2, wherein the door plate (5) is further provided with a second opening (18) on the top side, the door plate (5) being provided with first limiting blocks (19) distributed in a circular arrangement at the edge of the second opening (18), leaving a gap (20) between adjacent first limiting blocks (19), the second opening (18) being provided with a movable pin (21), the movable pin (21) being provided with second limiting blocks (22) distributed in a circular arrangement at the circumferential wall of the movable pin (21), the second limiting block (22) having a width smaller than the width of the gap (20); wherein, when the movable pin (21) is rotated such that the second limiting block (22) is positioned above the first limiting block (19), the top surface of the movable pin (21) is in a protruding state such that the door panel (5) forms a lock with the top panel (1); and wherein, when the second limiting block (22) is rotated with the movable pin (21) until sliding into the gap (20), the top surface of the movable pin (21) then changes from a protruding state to a retracted state, causing the door panel (5) to form an unlock with the top panel (1).The standing tool bearing according to claim 2, wherein the top plate (1) and the bottom plate (2) are provided with positioning holes, the door plate (5) is provided with a rotating member (25) and a positioning rod (26), the rotating member (25) is disposed on the inside of the door plate (5) and rotatably connected to the door plate (5), the rotating member (25) is disposed on the outside of the door plate (5) at one end as a rotating member, the number of the positioning rods (26) is two and symmetrically disposed on both sides of the rotating member (25), and the two positioning rods (26) are drivingly connected to the rotating member (25).The standing tool support according to claim 1, wherein the column (6) comprises two side panels (23) perpendicular to each other, and wherein the side panel (4) and the rear panel (3) are connected to the side panels (23), respectively.