CN210989159U - A section bar structure for aluminum alloy frame - Google Patents

A section bar structure for aluminum alloy frame Download PDF

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Publication number
CN210989159U
CN210989159U CN201921452296.5U CN201921452296U CN210989159U CN 210989159 U CN210989159 U CN 210989159U CN 201921452296 U CN201921452296 U CN 201921452296U CN 210989159 U CN210989159 U CN 210989159U
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frame
limiting
hole
aluminum alloy
section bar
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CN201921452296.5U
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欧泽雄
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Foshan Gute Home Products Co ltd
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Foshan Gute Home Products Co ltd
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Abstract

The utility model discloses a section bar structure for aluminum alloy frame, this section bar are used as frame pillar and connected frame respectively, through connecting the angle sign indicating number and being connected with connected frame on the frame pillar, are equipped with the connection stopper in the side of connecting the angle sign indicating number, have in the section bar as connected frame and insert and establish hole and spacing groove, the main part of connecting the angle sign indicating number inserts and establishes in inserting, and connect the stopper card and go into at the spacing inslot, make connected frame and connection angle sign indicating number combine fixedly, the utility model discloses a it is fixed with connected the angle sign indicating number as connected frame with special construction's section bar to realize that connected frame and frame pillar are stably connected, and reach embedded stealthy assembly structure, inlay the inside by connected frame with the angle sign indicating number completely after the assembly, more pleasing to the eye, bearing capacity is better, cooperation frame system demand, use aluminum alloy section bar frame as the basis, the extensible makes different patterns such as glass layer frame structure section bar, plank layer frame structure lamp strip section bar, area L ED function structure section.

Description

A section bar structure for aluminum alloy frame
Technical Field
The utility model relates to an aluminum alloy section bar technical field, concretely relates to mainly be applied to some aluminum alloy frame's section bar, can be used as the pillar, also can be used as the connection section bar.
Background
The aluminum alloy frame has the advantages of firmness, durability, water resistance, moisture resistance, easy management and the like, so that the aluminum alloy frame is widely applied to places such as families, offices, businesses and the like for placing some articles or carrying cabinets and the like. The traditional aluminum alloy frame is generally directly locked and fixed by screws, and has the defects that a large number of screws are needed for assembly, the appearance of the product is damaged, and once the screws are rusted, the product is not attractive; meanwhile, the structural strength of the frame is not high enough and the bearing capacity is low due to the fact that screws are directly adopted for fixation. The clamping assembly is convenient to operate and more attractive, but has low structural stability and small bearing capacity, and is easy to disperse even under the action of large external force. The angle code is adopted to realize connection, but the traditional angle code is directly exposed outside after the product is assembled, so that the product is not attractive, and the angle code can cause position interference and has adverse effects on the installation of other parts. The existing angle brace design is not scientific and reasonable enough, and simultaneously, the reason that the structure of the section bar is unreasonable is also existed, so that the problem that the connection from the inside is stable is difficult to realize is avoided.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to provide a structural design is more reasonable, the equipment is convenient, connect firm, more for pleasing to the eye, bearing capacity is strong, can with embedded angle sign indicating number perfect fit's a section bar structure for aluminum alloy frame.
In order to solve the technical problem, the utility model adopts the following technical scheme: a profile structure for an aluminum alloy frame, the profiles serving as frame pillars and connection frames, respectively, the connection frames being connected between the frame pillars, characterized in that: a rod-shaped connecting angle code is fixed on the frame strut and inserted into the connecting frame to connect and fix the connecting frame and the frame strut; the connecting angle brace is internally provided with a locking screw hole which longitudinally penetrates through the whole connecting angle brace, and the connecting angle brace is connected and fixed with the frame strut by inserting a locking bolt into the locking screw hole; a connecting limiting block for clamping the connecting frame is arranged on the side surface of the connecting corner connector and protrudes outwards; the section bar used as the connecting frame is provided with an inserting hole and a limiting groove which are matched with the connecting angle code in shape and size, the main body part of the connecting angle code is inserted into the inserting hole, and the connecting limiting block is clamped in the limiting groove, so that the connecting frame and the connecting angle code are combined and fixed.
Furthermore, the inserting hole is a square hole, the limiting grooves extend from the edges of the square hole to the outer side, the limiting grooves respectively extend out of the four edges of the square hole, and each limiting groove and the edge of the square hole form a vertical structure; the connecting corner brace is of a square column structure, four side faces of the connecting corner brace are respectively provided with a connecting limiting block, each connecting limiting block and the side face of the connecting corner brace where the connecting limiting block is located form a vertical structure, and each connecting limiting block corresponds to a limiting groove. When the connecting frame is spliced with the connecting corner brace, the square column part of the connecting corner brace is inserted into the square hole, and each connecting limiting block is inserted into the corresponding limiting groove.
Furthermore, a conical limiting hole is formed in the side face of the connecting corner connector, a limiting screw hole is formed in the side face of the connecting frame, a fastening screw is screwed into the limiting screw hole after the connecting corner connector is inserted into the connecting frame, the fastening screw is clamped into the conical limiting hole to form a locking and positioning structure for the connecting corner connector, and the connecting frame and the connecting corner connector can form a firm and tight connecting structure.
Preferably, the limiting screw hole penetrates through the outer wall of the connecting frame and then is communicated to the square hole through the limiting groove, so that the fastening screw penetrates through the limiting groove after being screwed tightly and is pressed on the conical limiting hole of the connecting corner brace.
Preferably, the connecting corner brace is of a square column structure, four side faces of the connecting corner brace are respectively provided with a conical limiting hole, and each conical limiting hole is located in the middle of the corresponding face.
Preferably, glass plate supporting edges extend from the side surfaces of the connecting frame or the frame support columns near the middle position, glass plates are assembled through the glass plate supporting edges, and the surfaces of the glass plates are flush with one surface of the connecting frame or the frame support columns after the glass plates are fixed, so that the glass storage rack or the glass cabinet can be manufactured.
Or, a wood-laminated-plate supporting edge can also extend from the side surface of the connecting frame or the frame support column near any edge position, the wood laminated plate is assembled through each wood-laminated-plate supporting edge, and the surface of the wood laminated plate is flush with one surface of the connecting frame or the frame support column after the wood laminated plate is fixed, so that the wood-laminated-plate storage rack or the wood cabinet can be manufactured.
Alternatively, a light trough may be provided on at least one side of the connecting frame or the frame support, and an L ED light strip may be provided in the light trough, so that the whole frame (or cabinet) may emit light, which may be used for illumination and may be more beautiful.
Furthermore, the inside of the frame main body is provided with the square hole and the limiting groove structure which are the same as those of the inside of the connecting frame, so that the frame main body can also realize the basic function of the connecting frame, and the universal effect of the sectional materials is achieved.
The utility model discloses a section bar with special construction is fixed as connected frame and connection angle sign indicating number, thereby realize connected frame and frame pillar stable connection, and reach embedded stealthy assembly structure, inlay the angle sign indicating number in the inside completely by connected frame after assembling, both more pleasing to the eye, also can not cause the position to interfere because of the existence of angle sign indicating number, this kind of assembly methods has higher structural strength simultaneously, bearing capacity is better, cooperation frame system demand, use aluminum alloy section bar frame as the basis, glass layer frame structure section bar is made to the extensible, plank layer frame structure section bar, area L ED lamp strip function structure section bar and so on, realize different frame system's various demands.
Drawings
FIG. 1 is a structural diagram of one of the aluminum alloy frames on which the present invention is based;
FIG. 2 is an assembly structure view of the section bar of the present invention passing through the connection corner brace;
FIG. 3 is a first state of application (glazing laminate) of the profile of the invention;
FIG. 4 is a second application state diagram (wood mounting plate) of the section bar of the present invention;
fig. 5 shows a third state of application of the profile according to the invention (L ED lamp installed);
fig. 6 is a connecting angle code structure diagram matched with the section bar of the utility model.
In the figure, 1 is the linking frame, 11 is the quad slit, 12 is the spacing groove, 13 is spacing screw, 14 is glass plywood support limit, 15 is the wood laminate support limit, 16 is the light trough, 2 is the frame pillar, 3 is the connection angle sign indicating number, 31 is the connection stopper, 32 is the locking screw, 33 is the spacing hole of toper, 4 is the locking bolt, 5 is the holding screw, 6 is the glass plywood, 8 is the wood laminate, 9 is L ED lamp.
Detailed Description
In the present embodiment, referring to fig. 1, 2 and 6, the profile structure for an aluminum alloy frame, which is used as the frame posts 2 and the connection frames 1, respectively, the connection frames 1 are connected between the frame posts 2; a rod-shaped connecting angle brace 3 is fixed on the frame strut 2, and the connecting angle brace 3 is inserted into the connecting frame 1 to connect and fix the connecting frame 1 and the frame strut 2; the connecting angle bracket 3 is provided with a locking screw hole 32 which longitudinally penetrates through the whole connecting angle bracket 3, and the connecting angle bracket 1 and the frame support 2 are fixedly connected by inserting a locking bolt 4 from the locking screw hole 32; a connecting limiting block 31 for clamping the connecting frame 1 is arranged on the side surface of the connecting corner brace 3, and the connecting limiting block 31 protrudes outwards; the section bar as the connecting frame 2 is provided with an inserting hole and a limiting groove 12 which are matched with the connecting angle code 3 in shape and size, the main body part of the connecting angle code 3 is inserted into the inserting hole, and the connecting limiting block 31 is clamped in the limiting groove 12, so that the connecting frame 1 and the connecting angle code 3 are combined and fixed.
The inserting hole is a square hole 11, the limiting grooves 12 extend from the edge of the square hole 11 to the outer side, the limiting grooves 12 respectively extend out of the four edges of the square hole 11, and each limiting groove 12 and the edge of the square hole 11 form a vertical structure; the connecting corner brace 3 is of a square column structure, four side faces of the connecting corner brace 3 are respectively provided with a connecting limiting block 31, each connecting limiting block 31 and the side face of the connecting corner brace 3 where the connecting limiting block 31 is located form a vertical structure, and each connecting limiting block 31 corresponds to one limiting groove 12. When the connecting frame 1 is inserted into the connecting corner brace 3, the square column of the connecting corner brace 3 is inserted into the square hole 11, and each connecting limiting block 31 is inserted into the corresponding limiting groove 12.
The side of connecting angle sign indicating number 3 is provided with spacing hole 33 of toper, and the side of connecting frame 1 is equipped with spacing screw 13, inserts connecting frame 1 after connecting angle sign indicating number 3 and through screwing in holding screw 5 toward spacing screw 13 to make holding screw 5 card go into in the spacing hole 33 of toper and form locking location structure to connecting angle sign indicating number 3, make connecting frame 1 can form firm, inseparable connection structure with connecting angle sign indicating number 3.
The limiting screw hole 13 penetrates through the outer wall of the connecting frame 1 and then is communicated to the square hole 11 through the limiting groove 12, so that the fastening screw 5 penetrates through the limiting groove 12 after being screwed tightly and is pressed on the conical limiting hole 33 of the connecting corner brace 3.
The connecting corner brace 3 is of a square column structure, four side faces of the connecting corner brace 3 are respectively provided with a conical limiting hole 33, and each conical limiting hole 33 is respectively located in the middle of the corresponding face.
Referring to fig. 3, as an application mode, a glass plate supporting edge 14 is extended from the side surface of the connecting frame 1 or the frame support 2 near the middle position, the glass plate 6 is assembled through each glass plate supporting edge 14, the surface of the glass plate 6 is flush with one surface of the connecting frame 1 or the frame support 2 after being fixed, and thus, a glass shelf or a glass cabinet can be formed.
Referring to fig. 4, as another application, a wood-plywood supporting edge 15 may be extended from a side surface of the connecting frame 1 or the frame post 2 near any edge, the wood-plywood 8 is assembled through each wood-plywood supporting edge 15, and the surface of the wood-plywood 8 is flush with one surface of the connecting frame 1 or the frame post 2 after being fixed, so that a wood-plywood shelf or a wood cabinet can be manufactured.
Referring to fig. 5, as a third application, a light trough 16 may be provided on at least one side of the connecting frame 1 or the frame support 2, and an L ED light strip 9 is provided in the light trough 16, so that the whole frame (or cabinet) can emit light, and can be used for illumination and is more beautiful.
The inside of frame main part 2 has the same quad slit and spacing groove structure with linking frame 1 inside, makes the frame main part also realize linking frame's basic function, reaches the general effect of section bar.
The above description is only a preferred embodiment of the present invention, and should not be taken as limiting the scope of the invention, i.e. the present invention is intended to cover all equivalent variations and modifications within the scope of the present invention.

Claims (9)

1. A profile structure for an aluminum alloy frame, the profiles serving as frame pillars and connection frames, respectively, the connection frames being connected between the frame pillars, characterized in that: a rod-shaped connecting angle code is fixed on the frame strut and inserted into the connecting frame to connect and fix the connecting frame and the frame strut; the connecting angle brace is internally provided with a locking screw hole which longitudinally penetrates through the whole connecting angle brace, and the connecting angle brace is connected and fixed with the frame strut by inserting a locking bolt into the locking screw hole; a connecting limiting block for clamping the connecting frame is arranged on the side surface of the connecting corner connector and protrudes outwards; the section bar used as the connecting frame is provided with an inserting hole and a limiting groove which are matched with the connecting angle code in shape and size, the main body part of the connecting angle code is inserted into the inserting hole, and the connecting limiting block is clamped in the limiting groove, so that the connecting frame and the connecting angle code are combined and fixed.
2. The profile structure for an aluminum alloy frame according to claim 1, wherein: the inserting hole is a square hole, the limiting grooves extend from the edge of the square hole to the outer side, the limiting grooves respectively extend out of the four edges of the square hole, and each limiting groove and the edge of the square hole form a vertical structure; the connecting corner brace is of a square column structure, four side faces of the connecting corner brace are respectively provided with a connecting limiting block, each connecting limiting block and the side face of the connecting corner brace where the connecting limiting block is located form a vertical structure, and each connecting limiting block corresponds to a limiting groove.
3. The profile structure for an aluminum alloy frame according to claim 2, wherein: the side face of the connecting angle code is provided with a conical limiting hole, the side face of the connecting frame is provided with a limiting screw hole, a fastening screw is screwed into the limiting screw hole after the connecting angle code is inserted into the connecting frame, and the fastening screw is clamped into the conical limiting hole to form a locking and positioning structure for the connecting angle code.
4. The profile structure for an aluminum alloy frame according to claim 3, wherein: the limiting screw hole penetrates through the outer wall of the connecting frame and then is communicated to the square hole through the limiting groove, so that the fastening screw penetrates through the limiting groove after being screwed down and is pressed on the conical limiting hole of the connecting corner connector.
5. The profile structure for an aluminum alloy frame according to claim 3, wherein: the connecting angle code is of a square column structure, four side faces of the connecting angle code are respectively provided with a conical limiting hole, and each conical limiting hole is respectively positioned in the middle of the corresponding plane.
6. The profile structure for an aluminum alloy frame according to claim 1, wherein: glass plate supporting edges extend from the side surfaces of the connecting frame or the frame support columns near the middle position, glass plates are assembled through the glass plate layer supporting edges, and the surfaces of the glass plates are flush with one surface of the connecting frame or the frame support columns after being fixed.
7. The profile structure for an aluminum alloy frame according to claim 1, wherein: and wood veneer supporting edges extend from the side surfaces of the connecting frame or the frame strut near any edge position, wood veneers are assembled through the wood veneer supporting edges, and the surface of the wood veneers is flush with one surface of the connecting frame or the frame strut after the wood veneers are fixed.
8. A profile structure for aluminium alloy frames according to claim 1, wherein at least one side of the connecting frame or the frame strut is provided with a light trough, in which L ED light strips are arranged.
9. The profile structure for an aluminum alloy frame according to claim 2, wherein: the inside of frame main part has the same quad slit and spacing groove structure with the connection frame is inside.
CN201921452296.5U 2019-09-02 2019-09-02 A section bar structure for aluminum alloy frame Active CN210989159U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921452296.5U CN210989159U (en) 2019-09-02 2019-09-02 A section bar structure for aluminum alloy frame

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921452296.5U CN210989159U (en) 2019-09-02 2019-09-02 A section bar structure for aluminum alloy frame

Publications (1)

Publication Number Publication Date
CN210989159U true CN210989159U (en) 2020-07-14

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ID=71495345

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921452296.5U Active CN210989159U (en) 2019-09-02 2019-09-02 A section bar structure for aluminum alloy frame

Country Status (1)

Country Link
CN (1) CN210989159U (en)

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