CN217106655U - Aluminum honeycomb composite frame splicing door suitable for high height - Google Patents

Aluminum honeycomb composite frame splicing door suitable for high height Download PDF

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Publication number
CN217106655U
CN217106655U CN202220386637.9U CN202220386637U CN217106655U CN 217106655 U CN217106655 U CN 217106655U CN 202220386637 U CN202220386637 U CN 202220386637U CN 217106655 U CN217106655 U CN 217106655U
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frame
honeycomb panel
aluminum honeycomb
plywood
plastics
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CN202220386637.9U
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Chinese (zh)
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孙通
张晶晶
刘刚
黄伟佳
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Jiangsu Goldenhome Co ltd
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Jiangsu Goldenhome Co ltd
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Abstract

The utility model discloses a frame door is pieced together to compound suitable for high higher aluminium honeycomb, it includes a plurality of plastics frame, aluminium honeycomb panel, above-mentioned plywood and plywood down, a plurality of plastics frame rigid coupling in proper order just in aluminium honeycomb panel's periphery plastics frame top bottom surface flushes with aluminium honeycomb panel's top bottom surface respectively mutually, above-mentioned plywood and below plywood rigid coupling are at aluminium honeycomb panel and plastics frame's top surface and bottom surface respectively. This piece together the frame board and pass through aluminum honeycomb panel as sandwich layer, the plastics frame centers on aluminum honeycomb panel's periphery to through above plywood and plywood respectively the rigid coupling at aluminum honeycomb panel and the bottom surface of the top of plastics frame down, aluminum honeycomb panel can play the effect of preapring for an unfavorable turn of events shape, and the frame adopts the plastics material, not only can reduce cost, also can prevent the frame warpage, therefore the plastics frame has very big advantage on high door plant application.

Description

Aluminum honeycomb composite frame splicing door suitable for high height
Technical Field
The utility model relates to a be applicable to highly higher aluminium honeycomb complex and piece together frame door.
Background
The solid wood door is processed by full solid wood plates, so that the solid wood door has the characteristics of high density, thick door plate, heavy weight, good sound absorption, no deformation, corrosion resistance, no splicing seam, good heat insulation and the like. The wood grain texture of the solid wood is clear, and the solid wood has very strong sense of unity and three-dimensional sense, so that people feel comfortable when looking at the solid wood, and the solid wood door is widely popular with users. Because the solid wood is processed, the solid wood door has the advantages of obviously higher manufacturing cost, poorer fire resistance and certain potential safety hazard. Meanwhile, the wood door can not be reused after being damaged, thereby causing resource waste and being not beneficial to environmental protection.
Consequently, compound door plant structure has appeared, like the patent of chinese utility model application number 201820991148.X, patent name a compound wood door plant, contains solid wood board, viscose layer, aluminum honeycomb panel, viscose layer and solid wood board, wherein is equipped with the anti-drop nail that can penetrate the solid wood plate body on aluminum honeycomb panel's face, and this compound wood door plant can prevent effectively that the solid wood board from coming off from aluminum honeycomb panel, is showing the steadiness that has promoted composite board. However, the door panel structure of the patent, especially when there is a demand for a door panel with a high height, has a large number of anti-falling nails, and the effect of inserting the anti-falling nails into the solid wood board is not ideal, and the solid wood board is easily warped and deformed when the thickness of the solid wood board is thin. And, the manufacturing cost of this door plant is also high.
SUMMERY OF THE UTILITY MODEL
The utility model provides a be applicable to highly higher aluminium honeycomb complex and piece together frame door, it has overcome the not enough that the background art exists. The utility model provides a technical scheme that its technical problem adopted is:
the utility model provides a be applicable to high higher aluminium honeycomb complex piece frame door, it includes a plurality of plastics frame, aluminium honeycomb panel, above-mentioned plywood and plywood down, a plurality of plastics frame rigid coupling in proper order just in aluminium honeycomb panel's periphery plastics frame top bottom surface flushes with aluminium honeycomb panel's top bottom surface respectively mutually, above-mentioned plywood and plywood rigid coupling respectively the top surface and the bottom surface at aluminium honeycomb panel and plastics frame down.
In a preferred embodiment: still include the bracing piece, the both ends of bracing piece are connected with two plastics frame inboards of upper and lower both sides respectively, aluminium honeycomb panel includes first aluminium honeycomb panel and second aluminium honeycomb panel, first aluminium honeycomb panel and second aluminium honeycomb panel rigid coupling respectively are in the both sides of bracing piece, just the top bottom surface of bracing piece flushes with aluminium honeycomb panel's top bottom surface respectively mutually.
In a preferred embodiment: the support rod is a square steel pipe.
In a preferred embodiment: the aluminum honeycomb panel is square, the plastic frame is provided with four sides which are sequentially connected with the aluminum honeycomb panel.
In a preferred embodiment: the plastic frame is characterized by further comprising four L-shaped connecting pieces, two ends of each plastic frame are provided with corner cutting edges of 45 degrees, and two adjacent plastic frames are connected together in a leaning mode through the respective corner cutting edges and are connected through the L-shaped connecting pieces.
In a preferred embodiment: the upper laminate and the lower laminate are both made of medium density fiberboard or solid wood board.
In a preferred embodiment: and paint surface layers are arranged on the outer sides of the upper laminate and the lower laminate.
In a preferred embodiment: and an edge sealing strip is also arranged on the outer side of the plastic frame.
Compared with the background technology, the technical scheme has the following advantages:
1. this piece together the frame board and pass through aluminum honeycomb panel as sandwich layer, the plastics frame centers on aluminum honeycomb panel's periphery to through above plywood and plywood respectively the rigid coupling at aluminum honeycomb panel and the bottom surface of the top of plastics frame down, aluminum honeycomb panel can play the effect of preapring for an unfavorable turn of events shape, and the frame adopts the plastics material, not only can reduce cost, also can prevent the frame warpage, therefore the plastics frame has very big advantage on high door plant application. The upper layer plate and the lower layer plate can be made of proper materials, colors or patterns according to the requirements of customers.
2. The both ends of bracing piece are connected with two plastics frames inboards of upper and lower both sides respectively, and first aluminum honeycomb panel and second aluminum honeycomb panel rigid coupling respectively are in the both sides of bracing piece, and from this, this bracing piece can play a supporting role to the intensity of plastics frame on the direction of height for whole structure of piecing together the frame board is more stable.
3. The bracing piece is square steel pipe, further strengthens the supporting role of bracing piece.
Drawings
The present invention will be further explained with reference to the drawings and examples.
FIG. 1 is a front view of the sectional door with the upper panel omitted in accordance with a preferred embodiment.
FIG. 2 is a cross-sectional view of the sectional sash door according to a preferred embodiment.
FIG. 3 is a schematic view of the assembly of the plastic frame and the supporting rod according to the preferred embodiment.
FIG. 4 is a schematic view of the upper plate of the preferred embodiment.
FIG. 5 is a schematic structural diagram of an aluminum honeycomb panel according to a preferred embodiment.
FIG. 6 is a schematic view of the edge banding of the preferred embodiment.
FIG. 7 is a front view of a sectional door with an upper panel omitted in accordance with another preferred embodiment.
Detailed Description
In the claims, the description and the drawings of the present application, unless explicitly defined otherwise, the terms "first," "second," or "third," etc. are used to distinguish between different objects and are not used to describe a particular sequence.
In the claims, the specification and the drawings, unless otherwise expressly limited, to the extent that directional terms such as "center", "lateral", "longitudinal", "horizontal", "vertical", "top", "bottom", "inner", "outer", "upper", "lower", "front", "rear", "left", "right", "clockwise", "counterclockwise" and the like are used, the positional or orientational relationships illustrated in the drawings are based on the positional and orientational relationships illustrated in the drawings and are merely for convenience of describing the present invention and simplifying the description, but do not indicate or imply that the device or element so referred to must have a particular orientation or be constructed and operated in a particular orientation, and therefore should not be construed as limiting the scope of the present invention in any way.
In the claims, the description and the drawings of the present application, unless otherwise expressly limited, the terms "fixedly connected" and "fixedly connected" should be understood in a broad sense, i.e., any connection without displacement relationship or relative rotation relationship between the two, i.e., including non-detachable fixed connection, integrated connection and fixed connection by other devices or elements.
In the claims, the specification and drawings of the present invention, the terms "including", "having" and their variants, if used, are intended to be inclusive and not limiting.
Referring to fig. 1 to 6, a preferred embodiment of an aluminum honeycomb composite sectional door for a high height includes a plurality of plastic frames 10, aluminum honeycomb panels 20, upper surface plates 30 and lower surface plates 40.
The plastic frames 10 are sequentially and fixedly connected to the periphery of the aluminum honeycomb panel 20, the top and bottom surfaces of the plastic frames 10 are respectively flush with the top and bottom surfaces of the aluminum honeycomb panel 20, and the upper laminate 30 and the lower laminate 40 are respectively and fixedly connected to the top and bottom surfaces of the aluminum honeycomb panel 20 and the plastic frames 10.
In the present embodiment, as shown in fig. 5, the aluminum honeycomb panel 20 is square; as shown in fig. 3, the plastic frame 10 is provided with four sides, which are connected with four sides of the aluminum honeycomb panel 20 in sequence.
In this embodiment, this piece together frame door still includes bracing piece 50, the both ends of bracing piece 50 are connected with two plastics frames 10 inboards of upper and lower both sides respectively, aluminium honeycomb panel 20 includes first aluminium honeycomb panel 21 and second aluminium honeycomb panel 22, first aluminium honeycomb panel 21 and second aluminium honeycomb panel 22 rigid coupling respectively in the both sides of bracing piece 50, just the top bottom surface of bracing piece 50 flushes with the top bottom surface of aluminium honeycomb panel 20 mutually respectively.
In this embodiment, the support rod 50 is a square steel tube to ensure sufficient strength and support force.
In this embodiment, as shown in fig. 3, the frame-split door further includes four L-shaped connecting members 60, two ends of each plastic frame 10 are provided with corner edges at 45 degrees, and two adjacent plastic frames 10 are connected together by the respective corner edges and connected by the L-shaped connecting members 60.
In this embodiment, the upper and lower laminate sheets 30 and 40 are made of medium density fiberboard or solid wood board. And the outer sides of the upper surface plate 30 and the lower surface plate 40 are also provided with paint surface layers. If the upper and lower laminates 30 and 40 are wood veneered medium density fiberboard or solid wood veneer, the varnish may be used as the finish. If the upper and lower laminates 30 and 40 are plain medium density fiberboard, the finish may be baked with paint.
In this embodiment, an edge sealing strip 70 is further disposed on the outer side of the plastic frame 10. That is, the edge sealing strips 70 are disposed on the outer sides of the four plastic frames 10.
The manufacturing process of the frame splicing door comprises the following steps:
firstly, manufacturing a first aluminum honeycomb plate 21 and a second aluminum honeycomb plate 22, and cutting to a proper size;
selecting plastic frames 110 with the same thickness according to the thickness of the aluminum honeycomb panel 20, performing 45-degree corner cutting treatment, and connecting the two plastic frames 10 through an L-shaped connecting piece 60 to form a closed plastic frame;
then, a lower laminate 40 is placed on a cold press, glue is applied to the top surface of the lower laminate 40, such as double-component AB glue, then the closed plastic frame 10 is placed on the top surface of the lower laminate 40, the support rod 50 is placed in the closed plastic frame 10, and the two ends of the support rod lean against the upper inner side surface and the lower inner side surface of the closed plastic frame 10; then, respectively placing the first aluminum honeycomb plate 21 and the second aluminum honeycomb plate 22 on the lower layer plate 40, locating at two sides of the support rod 50 and attaching to the inner side of the plastic frame 10; then, gluing the top surfaces of the plastic frame 10, the aluminum honeycomb panel 20 and the support rod 50, covering the upper layer plate 30, waiting for 4-6 hours after reaching a certain pressure, and finishing cold pressing compounding;
then, performing edge sealing treatment, trimming the cold-pressed composite board, and performing edge sealing treatment by using edge sealing strips 70 matched with colors of the upper layer board 30 or the lower layer board 40 after the edge sealing treatment is finished;
and finally, performing painting treatment, and performing varnish painting or paint baking processes on the surface and the periphery of the edge-sealed composite board to finish the manufacturing.
This piece together the frame board and pass through aluminium honeycomb panel as sandwich layer, plastics frame 10 centers on aluminium honeycomb panel 20's periphery to through last plywood 30 and plywood 40 rigid coupling respectively at aluminium honeycomb panel 20 and plastics frame 10's top bottom surface down, aluminium honeycomb panel 20 can play the effect of preapring for an unfavorable turn of events shape, the frame adopts the plastics material, not only can reduce cost, also can prevent the frame warpage, consequently plastics frame 10 has very big advantage in high higher door plant application. The upper and lower laminates 30, 40 may be of any suitable material, color or pattern depending on the needs of the customer.
Another preferred embodiment suitable for use with higher height aluminum honeycomb composite sectional doors is shown in fig. 7.
In this embodiment, the aluminum honeycomb panel 20 is a large panel, and no support rod is disposed in the middle.
The above description is only a preferred embodiment of the present invention, and therefore the scope of the present invention should not be limited by this description, and all equivalent changes and modifications made within the scope and the specification of the present invention should be covered by the present invention.

Claims (8)

1. The utility model provides a frame door is pieced together to aluminium honeycomb complex suitable for highly higher, its characterized in that: it includes a plurality of plastics frame, aluminum honeycomb panel, above-mentioned plywood and plywood down, a plurality of plastics frame rigid coupling in proper order just at aluminum honeycomb panel's periphery plastics frame top bottom surface flushes with aluminum honeycomb panel's top bottom surface respectively mutually, above-mentioned plywood and plywood rigid coupling respectively are at aluminum honeycomb panel and plastic honeycomb panel's top surface and bottom surface down.
2. The aluminum honeycomb composite frame-split door suitable for the higher height according to claim 1, wherein: still include the bracing piece, the both ends of bracing piece are connected with two plastics frame inboards of upper and lower both sides respectively, aluminium honeycomb panel includes first aluminium honeycomb panel and second aluminium honeycomb panel, first aluminium honeycomb panel and second aluminium honeycomb panel rigid coupling respectively are in the both sides of bracing piece, just the top bottom surface of bracing piece flushes with aluminium honeycomb panel's top bottom surface respectively mutually.
3. An aluminum honeycomb composite sash door suitable for use in tall buildings according to claim 2 wherein: the support rod is a square steel pipe.
4. An aluminum honeycomb composite split-frame door suitable for use in high heights according to claim 1 or 2, wherein: the aluminum honeycomb panel is square, the plastic frame is provided with four sides which are sequentially connected with the aluminum honeycomb panel.
5. An aluminum honeycomb composite sash door suitable for use in tall buildings according to claim 4 wherein: the plastic frame is characterized by further comprising four L-shaped connecting pieces, two ends of each plastic frame are provided with corner cutting edges of 45 degrees, and two adjacent plastic frames are connected together in a leaning mode through the respective corner cutting edges and are connected through the L-shaped connecting pieces.
6. The aluminum honeycomb composite frame-split door suitable for the higher height according to claim 1, wherein: the upper laminate and the lower laminate are both made of medium density fiberboard or solid wood board.
7. An aluminum honeycomb composite sash door suitable for use in tall buildings according to claim 6 wherein: and paint surface layers are arranged on the outer sides of the upper laminate and the lower laminate.
8. The aluminum honeycomb composite frame-split door suitable for the higher height according to claim 1, wherein: and an edge sealing strip is also arranged on the outer side of the plastic frame.
CN202220386637.9U 2022-02-24 2022-02-24 Aluminum honeycomb composite frame splicing door suitable for high height Active CN217106655U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220386637.9U CN217106655U (en) 2022-02-24 2022-02-24 Aluminum honeycomb composite frame splicing door suitable for high height

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220386637.9U CN217106655U (en) 2022-02-24 2022-02-24 Aluminum honeycomb composite frame splicing door suitable for high height

Publications (1)

Publication Number Publication Date
CN217106655U true CN217106655U (en) 2022-08-02

Family

ID=82599090

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220386637.9U Active CN217106655U (en) 2022-02-24 2022-02-24 Aluminum honeycomb composite frame splicing door suitable for high height

Country Status (1)

Country Link
CN (1) CN217106655U (en)

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