CN218922117U - Hook component - Google Patents

Hook component Download PDF

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Publication number
CN218922117U
CN218922117U CN202223348162.3U CN202223348162U CN218922117U CN 218922117 U CN218922117 U CN 218922117U CN 202223348162 U CN202223348162 U CN 202223348162U CN 218922117 U CN218922117 U CN 218922117U
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China
Prior art keywords
abutting
plate
protruding
hanger assembly
plane
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CN202223348162.3U
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Chinese (zh)
Inventor
苏振洪
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Quzhou Tianneng Trade Co ltd
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Quzhou Tianneng Trade Co ltd
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Priority to CN202223348162.3U priority Critical patent/CN218922117U/en
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Abstract

The utility model discloses a hook component, which comprises a body used for hanging and a hook, wherein the body used for hanging is provided with a thin plate and at least one pair of strip holes are arranged on the thin plate; the length direction of the strip hole is vertically arranged; the hook comprises: an abutting plate, wherein an abutting plane is formed at one end of the abutting plate; one end of the connecting piece is connected with the end surface of the abutting plate far away from the abutting plane, and the other end of the connecting piece is provided with an upward bent hanging part; the abutting plate protrudes outwards on the abutting plane to form a protruding part with the height higher than the end face of the abutting plate; at least two protruding parts are arranged; one end of the protruding part extends outwards along the direction parallel to the abutting plane to form an inserting part; the insertion part and the abutting plane form an insertion gap matched with the thickness of the thin plate; a hanger assembly is provided that improves hanger assembly stability by supporting the hanger assembly at multiple points.

Description

Hook component
Technical Field
The utility model relates to the field of shelves, in particular to a hook assembly.
Background
The heavy goods shelf is composed of supporting legs and supporting plates, wherein the supporting plates are mainly used for placing heavy objects, and the supporting legs are used for fixing the supporting plates. In actual use, a plurality of rows of hooks are arranged on the supporting legs and used for hanging heavy objects, so that the portability of the heavy goods shelf is improved.
The common structure is that a row of holes are formed in the supporting leg along the height direction, the holes are gourd-shaped holes or common holes, and a structure which can be hung in the holes or installed in the holes is arranged on the hook, so that the hook is hung on the supporting leg, and the supporting force is mainly provided by the gourd holes or the common holes, but the mode of hanging the hook on the gourd holes can cause unstable hanging weight due to too few supporting points, and the hook is easy to shake.
The utility model provides a heavy goods shelf capable of hanging heavy objects and a hook assembly thereof, wherein the heavy goods shelf can support hooks at multiple points to improve the stability of the hooks.
Disclosure of Invention
The summary of the utility model is provided to introduce a selection of concepts in a simplified form that are further described below in the detailed description. The summary of the utility model is not intended to identify key features or essential features of the claimed subject matter, nor is it intended to be used to limit the scope of the claimed subject matter.
To solve the technical problems mentioned in the background section above, some embodiments of the present utility model provide a hook assembly, including a body for hanging and a hook, where the body for hanging is a body having a thin plate and at least one pair of strip holes on the thin plate; the length direction of the strip hole is vertically arranged; the hook comprises: an abutting plate, wherein an abutting plane is formed at one end of the abutting plate; one end of the connecting piece is connected with the end surface of the abutting plate far away from the abutting plane, and the other end of the connecting piece is provided with an upward bent hanging part; the abutting plate protrudes outwards on the abutting plane to form a protruding part with the height higher than the end face of the abutting plate; at least two protruding parts are arranged; one end of the protruding part extends outwards along the direction parallel to the abutting plane to form an inserting part; the insertion part and the abutting plane form an insertion gap matched with the thickness of the thin plate; the number and the positions of the protruding parts are matched with the strip holes; the shape of the protruding part is matched with the shape of part of the lower part of the strip hole or the shape of the whole lower part of the strip hole; the strip holes can enable the protruding parts and the inserting parts to be installed in the hole sites; the protruding part and the inserting part can move downwards to a fixed position and upwards to a detachable position in the strip hole; the projection and the insertion site are positioned so that the insertion gap snaps into the sheet below the strip aperture.
Further, the openings of the strip holes become gradually smaller in the length direction.
Further, a limiting surface is formed on the protruding part; and the limiting surface is attached to the inner wall of the strip hole when the protruding part and the inserting part are positioned in a fixed mode.
Further, the projection of the projection and the insert on the abutment plane when in the removal position is located inside the strip hole.
Further, a clamping surface is formed on the insertion part; and when the protruding part and the insertion part are positioned fixedly, the clamping surface and the abutting plane are respectively contacted with the two side surfaces of the thin plate from the two sides of the thin plate.
Further, a connecting part is formed at one end of the connecting piece, which is connected with the abutting plate; the connecting part is fixed with the abutting plate.
Further, the connecting portion extends vertically to increase the contact area between the abutting plate and the connecting portion; the connecting part forms a structure which protrudes outwards and is convenient to grasp relative to the abutting plate.
Further, the hanging body can be any one of a wall body, a glass body, a cabinet body and a frame body.
Further, the hanging body is a goods shelf; the thin plate is a supporting leg of the goods shelf.
Further, a plurality of pairs of holes are vertically formed in the thin plate; the strip holes can be used for installing a storage layer of a goods shelf; the hooks are arranged in the strip holes on the supporting legs, on which the object placing layers are not arranged.
The utility model has the beneficial effects that: a hanger assembly is provided that improves hanger assembly stability by supporting the hanger assembly at multiple points.
Drawings
The accompanying drawings, which are included to provide a further understanding of the utility model, are incorporated in and constitute a part of this specification. The drawings and their description are illustrative of the utility model and are not to be construed as unduly limiting the utility model.
In addition, the same or similar reference numerals denote the same or similar elements throughout the drawings. It should be understood that the figures are schematic and that elements and components are not necessarily drawn to scale.
In the drawings:
FIG. 1 is an overall schematic of an embodiment according to the present utility model;
FIG. 2 is a schematic diagram of the structure of an embodiment of the present utility model as viewed from another perspective;
FIG. 3 is a schematic structural view of a portion of an embodiment, mainly showing the position of insertion into a gap;
FIG. 4 is an overall schematic of another implementation according to an embodiment of the present utility model;
FIG. 5 is a schematic view of the structure of another embodiment of the present utility model viewed from another perspective;
FIG. 6 is an enlarged view of A in FIG. 5;
FIG. 7 is a partial schematic view of another implementation of an embodiment of the utility model, mainly illustrating the structure of a connector;
FIG. 8 is a schematic structural view of a portion of an embodiment, mainly showing the structure of the support leg as seen from one perspective;
FIG. 9 is a schematic structural view of a portion of an embodiment, mainly showing the structure of the support leg from another perspective;
FIG. 10 is a schematic view of a portion of the embodiment, mainly showing the structure of the hanger mounted on the support leg;
FIG. 11 is a schematic structural view of a portion of the embodiment, mainly showing one configuration of the projection and insertion site in a fixed position;
FIG. 12 is a schematic view of a portion of the embodiment, mainly showing another configuration of the projection and insertion site at the time of fixing the position;
fig. 13 is a schematic structural view of a portion of the embodiment, mainly showing a structure in which the protruding portion and the insertion portion are located at the detached position.
Reference numerals:
the support leg comprises an abutting plate 1, a connecting piece 2, a protruding part 3, a bending part 4, an inserting part 5, an inserting gap 6, an abutting plane 7, a support leg 8, a through groove 12, a hanging part 21, a connecting part 22, a strip hole 81 and a thin plate 82.
Detailed Description
The present disclosure will be described in detail below with reference to the accompanying drawings in conjunction with embodiments.
Referring to fig. 1-13, in order to solve the technical problems noted in the background section above, some embodiments of the present utility model provide a hanger assembly comprising a body for hanging and a hanger, the body for hanging being a body having a sheet 82 and at least one pair of strip holes 81 provided in the sheet 82; the strip hole 81 is vertically arranged along the length direction.
The hanging body is a goods shelf; the sheet 82 is the support leg 8 of the pallet. The strip holes 81 are vertically formed in the thin plate 82 in a plurality of pairs; the strip hole 81 can be used for installing a storage layer of a goods shelf; the hooks are mounted in the strip holes 81 of the support legs 8 where the object layer is not mounted.
The hook comprises: an abutting plate 1, wherein an abutting plane 7 is formed at one end of the abutting plate 1; the abutting plate 1 is provided with a connecting piece 2, one end of the connecting piece 2 is connected with the end face of the abutting plate 1 far away from the abutting plane 7, and the other end is provided with a hanging part 21; a connecting portion 22 is formed at the end of the connecting member 2 connected to the abutting plate 1; the connecting portion 22 is fixed to the abutting plate 1.
Further, the connecting portion 22 extends vertically so that the contact area of the abutting plate 1 and the connecting portion 22 increases; the connecting portion 22 forms an outwardly projecting and grasping-facilitating structure with respect to the abutment plate. In this embodiment, the connecting member 2 has a rod-like structure, and the hanging portion 21 and the connecting portion 22 each have a rod-like structure. The abutting plate 1 protrudes outwards on the abutting plane 7 to form a protruding part 3 with a height higher than the end face of the abutting plate 1; the number and the positions of the protruding parts 3 are matched with the strip holes 81; one end of the protruding portion 3 extends outward in a direction parallel to the abutment plane 7 to form an insertion portion 5; the insertion portion 5 and the abutment plane 7 form an insertion gap 6 matching the thickness of the thin plate 82; the shape of the protruding part 3 is matched with the shape of part of the lower part of the bar hole 81 or the shape of the whole lower part of the bar hole 81; and the strip hole 81 allows the protruding portion 3 and the insertion portion 5 to be fitted into the hole sites thereof; the projection 3 and the insertion part 5 can be moved down in the slot 81 to the fixed position and up to the removed position; the projection 3 and the insertion 5 are positioned in such a way that they snap the insertion gap 6 into the sheet 82 below the strip hole 81. The projection 3 and the insertion 5 are positioned in a fixed position with reference to figures 11-12; when the protruding portion 3 and the insertion portion 5 are in the detached position, refer to fig. 13. The above mentioned strip hole 81 allows the protrusion 3 and the insertion part 5 to be fitted into their hole sites when the protrusion 3 and the insertion part 5 are in the removed position, which is the same as the position when they are mounted.
Further, the opening of the bar hole 81 becomes gradually smaller in the length direction.
Further, the protruding part 3 is formed with a limit surface; and when the protruding part 3 and the inserting part 5 are positioned at the fixed position, the limiting surface is attached to the inner wall of the strip hole 81.
When the shape of the protruding part 3 is matched with the shape of the lower part of the bar hole 81, referring to fig. 11, a gap is formed between the lower end of the protruding part 3 and the bottom end of the inner wall of the bar hole 81, and at this time, the side surface of the protruding part 3 is attached to the inner wall of the bar hole 81 to limit the position; the limiting surfaces on the protruding part 3 are two side surfaces of the protruding part 3 attached to the inner wall of the strip hole 81.
When the shape of the protruding portion 3 matches with the whole shape of the lower portion of the bar hole 81, referring to fig. 12, the lower end of the protruding portion 3 is attached to the bottom end of the inner wall of the bar hole 81, and at this time, the side face and the bottom face of the protruding portion 3 are attached to the inner wall of the bar hole 81 to limit, and at this time, the limit faces on the protruding portion are two side faces and one bottom face of the protruding portion 3 attached to the inner wall of the bar hole 81.
Further, the projection of the projection 3 and the insert 5 onto the abutment plane 7 when in the detached position is located inside the strip hole 81. The inserting part 5 is provided with a clamping surface; when the protruding portion 3 and the insertion portion 5 are positioned in the fixed position, the engagement surface and the abutment plane 7 are in contact with the two side surfaces of the thin plate 82 from the two sides of the thin plate 82, respectively.
Further, a bending portion 4 is disposed between the protruding portion 3 and the abutment plane 7, the bending portion 4 is used for fixing the protruding portion 3 and the abutment plate 1, and the bending portion 4 bends the bent plate-shaped structure by a bending machine. Two through grooves 12 are formed in the abutting plate 1. One end of the bending part 4 is abutted against the inner wall of the through groove 12, and the other end is abutted against and fixed with the protruding part 3. The end surface of the bending part 4 abutting against the protruding part 3 is overlapped with the abutting plane 7.
There are two embodiments of the projections and inserts of the present utility model,
two embodiments of the projection 3 will be provided in sequence, in particular as follows:
in a first embodiment, with reference to figures 1-4, the projections of the projections 3 and inserts 5 on the abutment plane 7 are located inside the profile of the through slot 12; the projection shape of the convex part 3 and the insertion part 5 on the abutting plane 7 is similar to the shape of the through groove 12; the insertion gap 6 is formed between the insertion portion 5, an abutment plane 7 on the abutment plate 1, and a limit plane. Wherein, the bending part 4 is abutted with the inner walls of the three edges of the through groove 12, and the protruding part 3 is a cover-shaped structure and covers the bending part 4. The end of the projection 3 adjacent to the insertion portion 5 is open. The shape of the combination of the protruding portion 3 and the insertion portion 5 is the same as the shape of the through groove 12.
In a second embodiment, referring to fig. 5-8, two groups of bending parts 4 are formed on one through groove 12; the number of the protruding parts 3 is the same as that of the bending parts 4. The bent portion 4 is in contact with one inner wall of the through groove 12, and the protruding portion 3 has a long plate shape. The insertion portion 5 extends outwardly from the projection 3. The length of the bending part 4 abutting against the inner wall of the through groove 12 is longer than the length of the bending part 4 abutting against the protruding part 3.
In other embodiments, the hanging body may be any one of a wall, a glass body, a cabinet body, and a frame body.
The foregoing description is only of the preferred embodiments of the present disclosure and description of the principles of the technology being employed. It will be appreciated by those skilled in the art that the scope of the utility model in the embodiments of the present disclosure is not limited to the specific combination of the above technical features, but encompasses other technical features formed by any combination of the above technical features or their equivalents without departing from the spirit of the utility model. Such as the above-described features, are mutually substituted with (but not limited to) the features having similar functions disclosed in the embodiments of the present disclosure.

Claims (10)

1. A hook assembly, characterized by comprising a body for hanging and a hook, wherein the body for hanging is provided with a thin plate (82) and at least one pair of strip holes are arranged on the thin plate (82); the length direction of the strip hole (81) is vertically arranged;
the hook comprises:
an abutting plate (1), wherein an abutting plane (7) is formed at one end of the abutting plate (1);
a connecting piece (2), one end of which is connected with the end surface of the abutting plate (1) far away from the abutting plane (7), and the other end of which is provided with a hanging part (21);
the abutting plate (1) protrudes outwards on the abutting plane (7) to form a protruding part (3) with the height higher than the end face of the abutting plate (1);
at least two protruding parts (3) are arranged;
one end of the protruding part (3) extends outwards along a direction parallel to the abutting plane (7) to form an inserting part (5); the insertion part (5) and the abutting plane (7) form an insertion gap (6) matched with the thickness of the thin plate (82);
the number and the positions of the protruding parts (3) are matched with the strip holes (81);
the shape of the protruding part (3) is matched with the shape of part of the lower part of the strip hole (81) or the shape of the whole lower part of the strip hole (81);
the strip holes can enable the protruding parts (3) and the inserting parts (5) to be installed in the hole sites;
the protruding part (3) and the inserting part (5) can move downwards to a fixed position and upwards to a detachable position in the strip hole;
the projection (3) and the insertion part (5) are positioned in a fixed position such that the insertion gap (6) snaps into the sheet (82) below the strip hole (81).
2. The hanger assembly of claim 1, wherein:
the opening of the strip hole (81) is gradually smaller along the length direction.
3. The hanger assembly of claim 1, wherein:
a limiting surface is formed on the protruding part (3);
and when the protruding part (3) and the inserting part (5) are positioned at the fixed position, the limiting surface is attached to the inner wall of the strip hole.
4. The hanger assembly of claim 1, wherein:
the projection of the projection (3) and the insertion (5) onto the abutment plane (7) is located inside the strip hole when in the removal position.
5. The hanger assembly of claim 1, wherein:
a clamping surface is formed on the insertion part (5);
when the protruding part (3) and the inserting part (5) are positioned at the fixed position, the clamping surface and the abutting plane (7) are respectively contacted with the two side surfaces of the thin plate (82) from the two sides of the thin plate (82).
6. The hanger assembly of any of claims 1-5, wherein:
a connecting part (22) is formed at one end of the connecting piece (2) connected with the abutting plate (1);
the connecting part (22) is fixed with the abutting plate (1).
7. The hanger assembly of claim 6, wherein:
the connecting part (22) extends vertically so as to increase the contact area between the abutting plate (1) and the connecting part (22);
the connecting portion (22) forms an outwardly projecting and grasping-facilitating structure relative to the abutment plate.
8. The hanger assembly of claim 1, wherein:
the hanging body can be any one of a wall body, a glass body, a cabinet body and a frame body.
9. The hanger assembly of claim 1, wherein:
the hanging body is a goods shelf;
the sheet (82) is a support leg of a shelf.
10. The hanger assembly of claim 9, wherein:
the strip holes (81) are vertically formed in the thin plate (82) in a plurality of pairs;
the strip hole (81) can be used for installing a storage layer of a goods shelf;
the hooks are arranged in strip holes (81) on the supporting legs, and the strip holes are not provided with the object placing layers.
CN202223348162.3U 2022-12-13 2022-12-13 Hook component Active CN218922117U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223348162.3U CN218922117U (en) 2022-12-13 2022-12-13 Hook component

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223348162.3U CN218922117U (en) 2022-12-13 2022-12-13 Hook component

Publications (1)

Publication Number Publication Date
CN218922117U true CN218922117U (en) 2023-04-28

Family

ID=86063965

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223348162.3U Active CN218922117U (en) 2022-12-13 2022-12-13 Hook component

Country Status (1)

Country Link
CN (1) CN218922117U (en)

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