Intelligent wall-mounted storage system research and application device

By combining the base, connectors, and support rods, the problem of high installation accuracy of shelves in existing technologies is solved, achieving convenient installation and aesthetically pleasing connection between shelves and walls, thus improving overall aesthetics and stability.

CN223900484UActive Publication Date: 2026-02-13博洛尼智能科技(青岛)有限公司
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Patent Information

Application Number
CN202520489777.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-19
Publication Date
2026-02-13
Estimated Expiration
2035-03-19

AI Technical Summary

Technical Problem

In existing technologies, the connection method between the shelf and the wall requires high positional accuracy of the fixing holes, which leads to installation difficulties and insufficient aesthetics.

Method used

The device employs a fixing assembly that includes a base, connectors, and support rods. The base is connected to the wall, the connectors include an L-shaped body and threaded holes, and the support rods are adjustable via threaded connections. The shelf forms an angle of less than 90° with the wall, and the fixing assembly is concealed to enhance aesthetics.

Benefits of technology

It reduces the precision requirements for shelf installation, improves the convenience and aesthetics of installation, and enhances the stability of the connection between the shelf and the wall.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a research and application device for an intelligent wall-hung storage system. The research and application device comprises a laminate and a fixing assembly for connecting the laminate with a wall body, the shelf board comprises a strip-shaped groove and a containing groove. The fixing assembly comprises a base, at least two connecting pieces and a supporting rod. The protrusions of the connecting pieces are clamped with the top groove strips of the base, so that the connecting pieces can slide along the top groove strips, the threaded columns of the supporting rods are in threaded connection with the threaded holes of the connecting pieces, the connecting pieces can drive the supporting rods to move in the left-right direction, and therefore the interval between the supporting rods is adjusted to meet the installation requirement of the laminate. The positions of the supporting rods are adjusted to determine the installation positions of the laminates.
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Description

TECHNICAL FIELD

[0001] The utility model relates to furniture technical field more particularly, relate to a kind of intelligent wall-mounted storage system research and application device. BACKGROUND

[0002] With the improvement of people's material living standard and aesthetics, people's requirements for the firmness and beauty of furniture are also improved, and the connection mode of the furniture panel will affect the firmness and beauty of furniture.

[0003] In the prior art, when installing the panel, the conventional process is to fix a connecting piece on the wall, then punch holes on the back of the panel, and connect the connecting piece into the holes behind the panel. For example, the Chinese patent application file (application number: 202410593340.3, application date: 2024.05.14) discloses a panel with a hidden panel holder. The fixed block includes left, right fixed plates, and a clamping plate connected in sequence along the left-right direction. The left and right fixed plates are provided with fixing holes, and the expansion screws pass through the fixing holes to connect with the wall. The fixed block is detachably connected with the wall. The clamping plate protrudes away from the wall. The connecting buckle includes a rear connecting plate, an upper connecting plate, and a front connecting plate connected in sequence. The front connecting plate is arranged away from the wall. The front connecting plate is provided with a mounting hole. The rear connecting plate is arranged close to the wall. The side of the connecting buckle close to the ground is an opening. The clamping plate is clamped with the connecting buckle through the opening. The width of the rear connecting plate in the left-right direction is less than the width of the clamping plate. The end of the support rod close to the wall is a threaded column. The threaded column abuts with the clamping plate of the fixed block through the mounting hole. The rear connecting plate of the connecting buckle is attached with the clamping plate. The support rod is detachably connected with the connecting buckle. The side of the panel body close to the wall is provided with a rectangular slot and a cylindrical slot extending away from the wall in sequence. The fixed block and the connecting buckle are clamped into the rectangular slot. The support rod is clamped into the cylindrical slot. The panel body is clamped with the panel holder. The panel is fixed on the wall by connecting the fixed block with the wall and using the support rod to connect the fixing hole and the panel. However, this method requires high precision for the position of the fixed block fixed on the wall, i.e. high precision for the position of the fixing hole. Otherwise, slight errors will cause difficulty in installing the panel.

[0004] Therefore, the utility model provides an intelligent wall-mounted storage system research and application device, which can also be referred to as an intelligent wall-mounted panel. UTILITY MODEL CONTENTS

[0005] Therefore, the utility model provides an intelligent wall-mounted storage system research and application device, which can also be referred to as an intelligent wall-mounted panel.

[0006] The intelligent wall-mounted storage system research and application device provided by the utility model comprises a panel and a fixed assembly connecting the panel and the wall.

[0007] The fixing assembly comprises a base, at least two connecting pieces and a support rod, the support rod is arranged correspondingly with the connecting pieces; the base is connected with the wall body, the base comprises a side groove strip on the side away from the wall body, the side groove strip extends along the left-right direction, the left-right direction is parallel to the plane where the wall body is located and the left-right direction is perpendicular to the direction perpendicular to the ground; the base comprises a top groove strip on the side away from the ground, the top groove strip extends along the left-right direction; the connecting piece comprises an L-shaped main body, the L-shaped main body comprises a top plate and a side plate connected with each other, the top plate is in contact with the side of the base away from the ground; the side plate is in contact with the side of the base away from the wall body, the side plate comprises a threaded hole penetrating through the side plate along the front-back direction, the front-back direction is perpendicular to the left-right direction and the direction perpendicular to the ground; the connecting piece further comprises a protrusion arranged on the side of the top plate close to the ground, the protrusion is engaged with the top groove strip; the support rod extends along the front-back direction and comprises a cylinder and a threaded column connected with each other, the threaded column is threadedly connected with the threaded hole;

[0008] The layer plate comprises a strip-shaped groove on the side close to the wall body, the base and the top plate are engaged into the strip-shaped groove; the layer plate is provided with a receiving groove, the receiving groove is arranged correspondingly with the connecting piece, the receiving groove comprises a rectangular groove and a cylindrical groove connected with each other, one end of the rectangular groove away from the cylindrical groove is communicated with the strip-shaped groove, the side plate is engaged into the rectangular groove, the cylinder is engaged into the cylindrical groove, and the angle between the layer plate and the plane where the wall body is located is less than or equal to 90°.

[0009] Optionally, the cylinder comprises a hollow area extending along the direction perpendicular to the ground, the hollow area is provided with a thread; the receiving groove further comprises a limiting groove extending along the direction perpendicular to the ground, the limiting groove is communicated with the cylindrical groove; along the direction perpendicular to the ground, the hollow area is coincided with the limiting groove;

[0010] The limiting groove is correspondingly threadedly connected with an anti-loosening screw, the anti-loosening screw is threadedly connected with the hollow area.

[0011] Optionally, the cylinder comprises a column body and an end cap, one end of the column body is connected with the threaded column, the end of the column body away from the threaded column is rotationally connected with the end cap, and the end cap comprises the hollow area.

[0012] Optionally, a section is taken through the base, the left-right direction is perpendicular to the section, and the shape of the side groove strip in the section is trapezoidal;

[0013] The end of the threaded column away from the cylinder is a circular truncated cone, and the circular truncated cone is engaged with the side groove strip.

[0014] Optionally, the base comprises at least two fixing holes, which are communicated with one side of the base close to the wall and the side recessed groove strip;

[0015] The base further comprises expansion bolts, which are arranged correspondingly with the fixing holes and connected with the wall through the fixing holes.

[0016] Optionally, along the front-rear direction, the rectangular slot coincides with the connecting piece, and the cylindrical slot coincides with the cylinder.

[0017] Optionally, along the front-rear direction, the width of the layer plate ranges from 160 mm to 250 mm, and the maximum length of the accommodating slot is 150 mm.

[0018] Optionally, along the front-rear direction, the width of the layer plate is A, and the length of the supporting rod is B, and 2 / 3A≤B

[0019] Optionally, along the left-right direction, the interval between adjacent connecting pieces ranges from 500 mm to 1000 mm.

[0020] Optionally, the material of the base is metal.

[0021] Compared with the prior art, the intelligent wall-hanging storage system research and application device provided by the utility model at least has the following beneficial effects:

[0022] The intelligent wall-hanging storage system research and application device comprises: a layer plate and a fixing assembly connecting the layer plate and a wall body; the fixing assembly comprises a base, at least two connecting pieces and a supporting rod, the supporting rod is arranged correspondingly with the connecting piece; the base is connected with the wall body, the base comprises a side recessed groove strip located on a side far away from the wall body, the side recessed groove strip extends along a left-right direction, the left-right direction is parallel to a plane where the wall body is located and the left-right direction is perpendicular to a direction perpendicular to the ground; the base comprises a top recessed groove strip located on a side far away from the ground, the top recessed groove strip extends along the left-right direction; the connecting piece comprises an L-shaped main body, the L-shaped main body comprises a top plate and a side plate connected with each other, the top plate is in contact with the side far away from the ground of the base; the side plate is in contact with the side far away from the wall body of the base, the side plate comprises a threaded hole penetrating through the side plate along a front-rear direction, the front-rear direction is perpendicular to the left-right direction and the direction perpendicular to the ground; the connecting piece further comprises a protrusion arranged on a side close to the ground of the top plate, the protrusion is clamped with the top recessed groove strip; the supporting rod extends along the front-rear direction and comprises a cylinder and a threaded column connected with each other, the threaded column is threadedly connected with the threaded hole; the layer plate comprises a strip-shaped groove located on a side close to the wall body, the base and the top plate are clamped into the strip-shaped groove; a containing groove is arranged in the layer plate, the containing groove is arranged correspondingly with the connecting piece, the containing groove comprises a rectangular groove and a columnar groove connected with each other, one end of the rectangular groove far away from the columnar groove is communicated with the strip-shaped groove, the side plate is clamped into the rectangular groove, the cylinder is clamped into the columnar groove, and an included angle between the layer plate and the plane where the wall body is located is less than or equal to 90°. The protrusion is clamped with the top recessed groove strip, so that the connecting piece can slide along the top recessed groove strip, the threaded column of the supporting rod is threadedly connected with the threaded hole of the connecting piece, therefore, the connecting piece can drive the supporting rod to move along the left-right direction, so that the interval between the supporting rods is adjusted to match the installation requirement of the layer plate, and the position of the supporting rod is adjusted to determine the installation position of the layer plate.

[0023] Of course, any product implementing the present application does not necessarily need to achieve all the technical effects mentioned above.

[0024] Other features and advantages of the present application will become apparent from the following detailed description of exemplary embodiments thereof, taken in conjunction with the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS

[0025] The accompanying drawings incorporated in and forming a part of the specification, illustrate embodiments of the present application and, together with the description, serve to explain the principles of the application.

[0026] Figure 1 is a connection diagram of the intelligent wall-hanging storage system research and application device provided by the present application and a wall body.

[0027] Figure 2 is Figure 1 is a sectional view of A-A' direction in

[0028] Figure 3 is Figure 2Enlarged view of the middle A.

[0029] Figure 4 is an explosion view of the intelligent wall-mounted storage system research and application device provided by the utility model.

[0030] Figure 5 is another explosion view of the intelligent wall-mounted storage system research and application device provided by the utility model.

[0031] Figure 6 is Figure 5 Enlarged view of the middle B.

[0032] Figure 7 is a structural schematic view of the support rod.

[0033] Figure 8 is a structural schematic view of the wall body and the base.

[0034] Figure 9 is Figure 8 Enlarged view of the middle C.

[0035] Figure 10 is a structural schematic view of the wall body and the fixing assembly.

[0036] Figure 11 is Figure 10 Enlarged view of the middle D.

[0037] Figure 12 is a local connection relationship schematic view of the fixing assembly.

[0038] Figure 13 is Figure 9 Enlarged view of the middle E.

[0039] In the figure: 1, layer plate; 2, wall body; 3, fixing assembly; 4, base; 5, connecting piece; 6, support rod; 7, side recessed groove strip; 8, top recessed groove strip; 9, L-shaped main body; 10, top plate; 11, side plate; 12, threaded hole; 13, protrusion; 14, cylinder; 15, threaded column; 16, strip-shaped groove; 17, containing groove; 18, rectangular groove; 19, cylindrical groove; 20, fixing hole; 21, expansion bolt; 22, circular table; 23, hollow area; 24, limiting groove; 25, anti-loosening screw; 26, column body; 27, end cap; X, left-right direction; Y, front-rear direction; Z, direction perpendicular to the ground. DETAILED DESCRIPTION

[0040] Various exemplary embodiments of the utility model will now be described in detail with reference to the accompanying drawings. It should be noted that: the relative arrangement, numerical expression and numerical value of the components and steps set forth in these embodiments do not limit the scope of the utility model, unless otherwise specified.

[0041] The following description of at least one exemplary embodiment is merely exemplary in nature and is in no way intended to limit the present application or its application or uses.

[0042] Techniques, methods, and apparatus known to those of ordinary skill in the relevant art can not be discussed in any detail in order to avoid obscuring the present application.

[0043] In all of the examples shown and discussed herein, any specific values should be interpreted as merely exemplary and not as a limitation. Thus, other examples of the exemplary embodiments can have different values.

[0044] It should be noted that like reference numerals and letters refer to like items throughout the several views, and thus a discussion of the same in one view is typically done away with in a discussion of subsequent views.

[0045] Embodiment 1

[0046] Referring to Figures 1 to 13 , Figure 1 is a connection schematic diagram of the intelligent wall-hung storage system research and application device provided by the present application and a wall body, Figure 2 is Figure 1 A-A' direction of the cross-sectional view, Figure 3 is Figure 2 the enlarged view of A in the, Figure 4 is an exploded view of the intelligent wall-hung storage system research and application device provided by the present application, Figure 5 is another exploded view of the intelligent wall-hung storage system research and application device provided by the present application, Figure 6 is Figure 5 the enlarged view of B in the, Figure 7 is a structural schematic diagram of a support rod, Figure 8 is a structural schematic diagram of the connection between the wall body and the base, Figure 9 is Figure 8 the enlarged view of C in the, Figure 10 is a structural schematic diagram of the connection between the wall body and the fixing assembly, Figure 11 is Figure 10 the enlarged view of D in the, Figure 12 is a local connection relationship schematic diagram of the fixing assembly, Figure 13 is Figure 9 the enlarged view of E in the, to illustrate a specific embodiment of the intelligent wall-hung storage system research and application device provided by the present application, comprising: a layer plate 1 and a fixing assembly 3 connecting the layer plate 1 and a wall body 2;

[0047] The fixing assembly 3 comprises a base 4, at least two connecting pieces 5 and a support rod 6, the support rod 6 is correspondingly arranged with the connecting piece 5; the base 4 is connected with the wall 2, the base 4 comprises a side groove strip 7 located on the side away from the wall 2, the side groove strip 7 extends along the left-right direction X, the left-right direction X is parallel to the plane where the wall 2 is located and the left-right direction X is perpendicular to the direction Z perpendicular to the ground; the base 4 comprises a top groove strip 8 provided on the side away from the ground, the top groove strip 8 extends along the left-right direction X; the connecting piece 5 comprises an L-shaped main body 9, the L-shaped main body 9 comprises a top plate 10 and a side plate 11 connected with each other, the top plate 10 is in contact with the side of the base 4 away from the ground; the side plate 11 is in contact with the side of the base 4 away from the wall 2, the side plate 11 comprises a threaded hole 12 penetrating through the side plate 11 along the front-rear direction Y, the front-rear direction Y is perpendicular to the left-right direction X and the direction Z perpendicular to the ground; the connecting piece 5 further comprises a protrusion 13 arranged on the side of the top plate 10 close to the ground, the protrusion 13 is clamped with the top groove strip 8; the support rod 6 extends along the front-rear direction Y and comprises a cylinder 14 and a threaded column 15 connected with each other, the threaded column 15 is threadedly connected with the threaded hole 12.

[0048] The layer plate 1 comprises a strip-shaped groove 16 located on the side close to the wall 2, the base 4 and the top plate 10 are clamped into the strip-shaped groove 16; the layer plate 1 is provided with a containing groove 17, the containing groove 17 is correspondingly arranged with the connecting piece 5, the containing groove 17 comprises a rectangular groove 18 and a cylindrical groove 19 connected with each other, one end of the rectangular groove 18 away from the cylindrical groove 19 is communicated with the strip-shaped groove 16, the side plate 11 is clamped into the rectangular groove 18, the cylinder 14 is clamped into the cylindrical groove 19, and the angle between the layer plate 1 and the plane where the wall 2 is located is less than or equal to 90°.

[0049] It should be noted that, in order to facilitate the illustration, the structure in the wall 2 is not shown in Figure 2 and Figure 3 , and the layer plate 1 and the base 4 are not color-filled in Figure 12 . In the embodiment, the wall 2 is a load-bearing wall, i.e. a brick-concrete wall, a reinforced concrete wall or a large core board base wall, and the plane where the wall 2 is located is perpendicular to the ground. In the embodiment, the base 4 is a cubic column, comprising the side groove strip 7 located on the side away from the wall 2 and the top groove strip 8 provided on the side away from the ground, and the extension direction of the base 4 is the horizontal reference of installation, in the embodiment, the base 4 extends along the left-right direction X, which can make the installed layer plate 1 extend along the left-right direction X, and provide the best object carrying effect, of course, the extension direction of the base 4 can also be adjusted according to actual needs.

[0050] Understandably, by engaging the protrusion 13 with the top groove 8, the connector 5 can slide along the top groove 8. The threaded post 15 of the support rod 6 is threadedly connected to the threaded hole 12 of the connector 5. Therefore, the connector 5 can drive the support rod 6 to move in the left-right direction X, thereby adjusting the interval between the support rods 6 to match the installation requirements of the shelf 1. Adjusting the position of the support rods 6 determines the installation position of the shelf 1, reducing the installation accuracy requirements of the shelf 1. The base 4 and the top plate 10 engage in the strip groove 16, the side plate 11 engages in the rectangular groove 18, and the cylinder 14 engages in the column groove 19, which allows the installed shelf 1 to fit tightly against the wall 2, concealing the fixing component 3 and improving the overall aesthetics.

[0051] Example 2

[0052] Continue to refer to Figures 1 to 13 To illustrate another specific embodiment of the intelligent wall-mounted storage system research and application device provided by this utility model, it includes: a shelf 1 and a fixing component 3 that connects the shelf 1 and the wall 2;

[0053] The fixing component 3 includes a base 4, at least two connectors 5, and a support rod 6, with the support rod 6 corresponding to the connectors 5. The base 4 is connected to the wall 2 and includes a side groove 7 located on the side away from the wall 2. The side groove 7 extends in the left-right direction X, which is parallel to the plane of the wall 2 and perpendicular to the direction Z perpendicular to the ground. The base 4 includes at least two fixing holes 20, which connect the side of the base 4 closest to the wall 2 and the side groove 7. The base 4 also includes expansion bolts 21, which are corresponding to the fixing holes 20 and pass through the fixing holes 20 to connect to the wall 2. The base 4 includes a top groove 8 located on the side away from the ground, which extends in the left-right direction X. The connector 5 includes an L-shaped body 9. The main body 9 includes a top plate 10 and a side plate 11 connected together. The top plate 10 contacts the side of the base 4 away from the ground. The side plate 11 contacts the side of the base 4 away from the wall 2. The side plate 11 includes a threaded hole 12 that passes through the side plate 11 in the front-back direction Y. The front-back direction Y is perpendicular to the left-right direction X and the direction Z perpendicular to the ground. The connector 5 also includes a protrusion 13 set on the side of the top plate 10 near the ground. The protrusion 13 engages with the top groove strip 8. The support rod 6 extends in the front-back direction Y and includes a cylinder 14 and a threaded column 15 connected together. The threaded column 15 is threadedly connected to the threaded hole 12. A cross section is taken through the base 4. The left-right direction X is perpendicular to the cross section. The side groove strip 7 is trapezoidal in shape in the cross section. The end of the threaded column 15 away from the cylinder 14 is a frustum 22. The frustum 22 engages with the side groove strip 7.

[0054] The layer plate 1 comprises a strip-shaped slot 16 located on the side close to the wall 2, and the base 4 and the top plate 10 are clamped into the strip-shaped slot 16; the layer plate 1 is provided with a receiving slot 17 corresponding to the connecting piece 5, the receiving slot 17 comprises a rectangular slot 18 and a cylindrical slot 19 connected to each other, one end of the rectangular slot 18 away from the cylindrical slot 19 is communicated with the strip-shaped slot 16, the side plate 11 is clamped into the rectangular slot 18, and the cylindrical column 14 is clamped into the cylindrical slot 19; the angle between the layer plate 1 and the plane where the wall 2 is located is less than or equal to 90°.

[0055] It should be noted that in the embodiment, the layer plate 1 is a wooden layer plate, and the material of the base 4 is metal, which can be aluminum, iron or steel, and the base 4 made of metal is more solid and not easy to deform, and the fixing effect is better, of course, and is not limited to this, the materials of the layer plate 1 and the base 4 can be adjusted according to actual needs, and the embodiment does not make specific limitations on this. In the embodiment, the base 4 is connected with the wall 2 by the expansion bolt 21, including: at least two φ8x60 holes are drilled on the wall 2 by impact drilling, an expansion sleeve is buried in the hole, and the expansion bolt 21 is inserted into each expansion sleeve through the fixing hole 20 of the base 4, so that the base 4 is connected with the wall 2, of course, and is not limited to this, the base 4 and the wall 2 can also be connected by other ways, and the embodiment does not make specific limitations on this. The circular truncated cone 22 is clamped with the side recessed slot 7, which helps to fix the position of the connecting piece 5 on the base 4, and prevents the connecting piece 5 from sliding along the top recessed slot 8 when the support rod 6 supports the layer plate 1. When the threaded column 15 is inserted into the cylindrical slot 19 to fix the layer plate 1 on the wall 2, in order to improve the appearance, the base 4 and the connecting piece 5 need to be hidden in the layer plate 1, so the size of the base 4, the connecting piece 5 and the support rod 6 can be determined before installation, and the layer plate 1 is milled according to the size of the base 4, the connecting piece 5 and the support rod 6. In the embodiment, the rectangular slot is a cubic body, the cylindrical slot is a cylindrical body, and along the front and rear direction Y, the rectangular slot 18 coincides with the connecting piece 5, and the cylindrical slot 19 coincides with the cylindrical column 14, for example, the clamping effect is good, and the support column 6 has too much activity space in the receiving slot 14, which causes the stability of the installed layer plate 1 to be poor.

[0056] In order to further improve the stability of the installation of the layer plate 1, the cylinder 14 comprises a hollow area 23 extending in the direction Z perpendicular to the ground, and the hollow area 23 is provided with a thread; the accommodating groove 17 also comprises a limiting groove 24 extending in the direction Z perpendicular to the ground, and the limiting groove 24 is communicated with the cylindrical groove 19; in this embodiment, the hollow area 23 and the fiber groove 24 are both threaded in the cylinder, and in the direction Z perpendicular to the ground, the hollow area 23 coincides with the limiting groove 24; the limiting groove 24 is connected with an anti-loose screw 25 corresponding to the thread, and the anti-loose screw 25 is connected with the hollow area 23 by the thread. The layer plate 1 is detachably connected with the supporting rod 6 through the anti-loose screw 25, which can effectively prevent the layer plate 1 from falling off and avoid the safety hazard of the layer plate 1 falling off. Specifically, the cylinder 14 comprises a cylinder body 26 and an end cap 27, one end of the cylinder body 26 is connected with the threaded column 15, the other end of the cylinder body 26 away from the threaded column 15 is rotatably connected with the end cap 27, the end cap 27 comprises the hollow area 23, and in the front-back direction Y, the projection of the end cap 27 on the wall body 2 is located within the projection of the main body 26 on the wall body 2. When the supporting rod 6 is installed, the extension direction of the hollow area 23 may not be perpendicular to the ground, which causes the anti-loose screw 25 to be unable to be connected with the hollow area 23 by the thread. Therefore, the end cap 27 comprising the hollow area 23 is rotatably connected with one end of the cylinder body 26, and the extension direction of the hollow area 23 can be directly adjusted by rotating the end cap 27, which facilitates the connection between the hollow area 23 and the anti-loose screw 25.

[0057] Specifically, in the front-back direction Y, the width of the layer plate 1 ranges from 160 mm to 250 mm. If the width of the layer plate 1 in the front-back direction Y is less than 160 mm, the bearing surface area of the layer plate 1 is too small, which is not easy to meet the storage and use. If the width of the layer plate 1 in the front-back direction Y is greater than 250 mm, the layer plate 1 is greatly affected by gravity, which is easy to cause the layer plate 1 to sag. In the front-back direction Y, the maximum length of the accommodating groove 17 is 150 mm, which avoids the accommodating groove 17 communicating with the surface of the layer plate 1 and affecting the aesthetics of the layer plate 1. In the front-back direction Y, the width of the layer plate 1 is A, and the length of the supporting rod 6 is B, 2 / 3A≤B<A, so that the supporting rod 6 supports the layer plate 1 for a longer length, thereby increasing the stability of the supporting rod 6 supporting the layer plate 1. In the left-right direction X, the interval between adjacent connecting pieces 5 ranges from 500 mm to 1000 mm, which can not only avoid the deformation of the layer plate 1 due to gravity, but also make the support of the connecting pieces 5 to the layer plate 1 more uniform. For example, in the left-right direction X, if the length of the wood plate is ≤1000 mm, 2 connecting pieces 5 are arranged at intervals; if 1000 mm<length of the wood plate≤1500 mm, 3 connecting pieces 5 are arranged at intervals; if 1500 mm<length of the wood plate≤2000 mm, 4 connecting pieces 5 are arranged at intervals. Of course, it is not limited to this, and can be adjusted according to actual needs.

[0058] It can be understood that, by the convex 13 and the top groove strip 8 clamping, the connecting piece 5 can slide along the top groove strip 8, the threaded column 15 of the support rod 6 is screwed with the threaded hole 12 of the connecting piece 5, so the connecting piece 5 can drive the support rod 6 to move along the left-right direction X, thereby adjusting the interval between the support rods 6 to match the installation requirement of the layer plate 1, adjusting the position of the support rod 6 to determine the installation position of the layer plate 1, reducing the installation precision requirement of the layer plate 1, and being more convenient to use.

[0059] It can be understood that, by the convex 13 and the top groove strip 8 clamping, the connecting piece 5 can slide along the top groove strip 8, the threaded column 15 of the support rod 6 is screwed with the threaded hole 12 of the connecting piece 5, so the connecting piece 5 can drive the support rod 6 to move along the left-right direction X, thereby adjusting the interval between the support rods 6 to match the installation requirement of the layer plate 1, adjusting the position of the support rod 6 to determine the installation position of the layer plate 1, reducing the installation precision requirement of the layer plate 1, and being more convenient to use.

[0060] The intelligent wall-hanging storage system research and application device provided by the utility model includes: a layer plate and a fixed assembly connecting the layer plate and a wall; the fixed assembly includes a base, at least two connecting pieces and support rods, and the support rods are correspondingly arranged with the connecting pieces; the base is connected with the wall, and the base includes a side groove strip on a side away from the wall, the side groove strip extends along a left-right direction, the left-right direction is parallel to the plane where the wall is located and perpendicular to the direction perpendicular to the ground; the base includes a top groove strip on a side away from the ground, and the top groove strip extends along the left-right direction; the connecting piece includes an L-shaped main body, the L-shaped main body includes a top plate and a side plate connected with each other, the top plate is in contact with the side of the base away from the ground; the side plate is in contact with the side of the base away from the wall, the side plate includes a threaded hole penetrating through the side plate along a front-rear direction, and the front-rear direction is perpendicular to the left-right direction and the direction perpendicular to the ground; the connecting piece further includes a convex on the side of the top plate close to the ground, and the convex is clamped with the top groove strip; the support rod extends along the front-rear direction and includes a cylinder and a threaded column connected with each other, and the threaded column is screwed with the threaded hole; the layer plate includes a strip-shaped groove on a side close to the wall, and the base and the top plate are clamped into the strip-shaped groove; a receiving groove is arranged in the layer plate and correspondingly arranged with the connecting piece, the receiving groove includes a rectangular groove and a cylindrical groove connected with each other, one end of the rectangular groove away from the cylindrical groove is communicated with the strip-shaped groove, the side plate is clamped into the rectangular groove, the cylinder is clamped into the cylindrical groove, and the angle between the layer plate and the plane where the wall is located is less than or equal to 90°. By clamping the convex and the top groove strip, the connecting piece can slide along the top groove strip, the threaded column of the support rod is screwed with the threaded hole of the connecting piece, so the connecting piece can drive the support rod to move along the left-right direction, thereby adjusting the interval between the support rods to match the installation requirement of the layer plate and adjusting the position of the support rod to determine the installation position of the layer plate.

[0061] Although some specific embodiments of the utility model have been described in detail through examples, those skilled in the art should understand that the above examples are only for illustration, and are not intended to limit the scope of the utility model. Those skilled in the art should understand that the above embodiments can be modified without departing from the scope and spirit of the utility model. The scope of the utility model is defined by the appended claims.

Claims

1. A smart wall-mounted storage system research and application device, characterized in that, The utility model relates to a wallboard fixing device, including: a layer board and a fixing assembly connecting the layer board and a wall body; the fixing assembly includes a base, at least two connecting pieces and a support rod, the support rod is correspondingly arranged with the connecting piece; the base is connected with the wall body, the base includes a side groove strip on the side far away from the wall body, the side groove strip extends along the left and right direction, the left and right direction is parallel with the plane where the wall body is and the left and right direction is perpendicular with the direction perpendicular to the ground; the base includes a top groove strip on the side far away from the ground, and the top groove strip extends along the left and right direction; the connecting piece includes an L-shaped main body, the L-shaped main body includes a top plate and a side plate connected with each other, the top plate is in contact with the side of the base far away from the ground; the side plate is in contact with the side of the base far away from the wall body, and the side plate includes a threaded hole penetrating through the side plate along the front and back direction, and the front and back direction is perpendicular with the left and right direction and the direction perpendicular to the ground; the connecting piece further includes a protrusion arranged on the side of the top plate close to the ground, and the protrusion is clamped with the top groove strip; the support rod extends along the front and back direction and includes a cylinder and a threaded column connected with each other, and the threaded column is threadedly connected with the threaded hole; the layer board includes a strip-shaped groove on the side close to the wall body, and the base and the top plate are clamped into the strip-shaped groove; the layer board is provided with a containing groove, and the containing groove is correspondingly arranged with the connecting piece; the containing groove includes a rectangular groove and a cylindrical groove connected with each other, one end of the rectangular groove far away from the cylindrical groove is communicated with the strip-shaped groove, the side plate is clamped into the rectangular groove, and the cylinder is clamped into the cylindrical groove; the angle between the layer board and the plane where the wall body is is less than or equal to 90 DEG.

2. The smart wall-hanging storage system research and application apparatus of claim 1, wherein, the cylinder includes a hollow area extending along the direction perpendicular to the ground, and the hollow area is provided with threads; the containing groove further includes a limiting groove extending along the direction perpendicular to the ground, and the limiting groove is communicated with the cylindrical groove; along the direction perpendicular to the ground, the hollow area is coincided with the limiting groove; the limiting groove is correspondingly threadedly connected with an anti-loosening screw, and the anti-loosening screw is threadedly connected with the hollow area.

3. The smart wall-hanging storage system research and application device of claim 2, wherein, the cylinder includes a column body and an end cap, one end of the column body is connected with the threaded column, the end of the column body far away from the threaded column is rotationally connected with the end cap, and the end cap includes the hollow area.

4. The smart wall-hanging storage system research and application apparatus of claim 1, wherein, a section is taken through the base, the left and right direction is perpendicular to the section, and the shape of the side groove strip in the section is trapezoidal; the end of the threaded column far away from the cylinder is a circular truncated cone, and the circular truncated cone is clamped with the side groove strip.

5. The smart wall-hanging storage system research and application apparatus of claim 1, wherein, the base includes at least two fixing holes, and the fixing holes are communicated with the side of the base close to the wall body and the side groove strip; the base further includes an expansion bolt, the expansion bolt is correspondingly arranged with the fixing hole, and the expansion bolt is connected with the wall body through the fixing hole.

6. The smart wall-hanging storage system research and application apparatus of claim 1, wherein, along the front and back direction, the rectangular groove is coincided with the connecting piece, and the cylindrical groove is coincided with the cylinder.

7. The smart wall-hanging storage system research and application apparatus of claim 1, wherein, along the front and back direction, the width range of the layer board is 160mm to 250mm, and the maximum length of the containing groove is 150mm.

8. The smart wall-hanging storage system research and application apparatus of claim 1, wherein, In the front-rear direction, the width of the layer plate is A, the length of the support rod is B, and 2 / 3A≤B<A.

9. The smart wall-hanging storage system research and application apparatus of claim 1, wherein, In the left-right direction, the interval between adjacent connecting members is 500-1000 mm.

10. The smart wall-hanging storage system research and application apparatus of claim 1, wherein, The base is made of metal.

Citation Information

Patent Citations

  • Laminate with hidden laminate support

    CN118383612A