Novel energy-saving environment-friendly heat-preservation sealing type aluminum-clad wood door and window
Technical Field
The utility model belongs to the field of aluminum-clad wood doors and windows, and particularly relates to a novel energy-saving environment-friendly heat-preservation sealing type aluminum-clad wood door and window.
Background
The aluminum-clad wood door and window is a frame body formed by compounding a heat-insulating bridge-cut-off aluminum alloy section bar and solid wood by a mechanical method on the premise of retaining the characteristics and functions of the pure solid wood door and window. The two materials are connected through the high polymer nylon piece, so that the properties of different shrinkage coefficients of wood and metal are fully taken care of. But the adoption of a large amount of pure solid wood is unfavorable for energy conservation and environmental protection.
Disclosure of Invention
In view of the above, the utility model aims to provide a novel energy-saving and environment-friendly heat-preservation sealed aluminum-clad wood door and window so as to provide an energy-saving and environment-friendly aluminum-clad wood door and window, which adopts a splicing structure, reduces the use of large-area pine, improves the sealing effect and the noise reducing effect, improves the heat preservation and heat insulation effects, ensures that the indoor temperature can keep a constant temperature state for a long time, and reduces the heat energy loss.
In order to achieve the above purpose, the technical scheme of the utility model is realized as follows:
The utility model provides a novel energy-concerving and environment-protective heat preservation sealed aluminium package timber window, includes flat-open casement and flat-open window frame, the flat-open casement includes casement frame and the glass board of joining in marriage in the casement frame, the casement frame includes first splice plate, second splice plate, third splice plate, casement section bar, first sealing strip and second sealing strip, and second splice plate top is connected to first splice plate, and third splice plate rear side is connected the casement section bar, first splice plate is located the indoor side of glass board, the casement section bar is located the outdoor side of glass board, second splice plate bottom is provided with the casement butt joint portion with the window frame butt, and the interval sets up first sealing strip and second sealing strip on the casement butt joint portion;
The flat-open window frame comprises a bearing plate, a heat insulation plate and a window frame aluminum profile, wherein the heat insulation plate is arranged between the bearing plate and the window frame aluminum profile, a window frame butt joint part is arranged on the bearing plate, and the window frame butt joint part and the window sash butt joint part are correspondingly arranged.
Further, the heat insulating plate is provided with a mounting groove, the bearing plate is provided with a mounting table, and the mounting table is assembled in the mounting groove.
Further, sealing elements and positioning grooves are formed in the top surface of the bearing plate, the sealing elements comprise round sealing strips, sealing plugs and sealing gaskets, the round sealing strips are protruded on the top surface of the bearing plate, the sealing plugs are connected to the lower portions of the round sealing strips, the sealing gaskets are connected to the rear sides of the round sealing strips, and the sealing gaskets extend to the heat insulation plates.
Furthermore, the window frame butt joint part and the window sash butt joint part are integrally stepped.
Further, the window frame aluminum profile is provided with two die cavities, the two die cavities are respectively provided with a mounting nail and a positioning pin, and the heat insulation plate is connected with the window frame aluminum profile through the mounting nail and the positioning pin.
Further, the first splice plate, the second splice plate and the third splice plate are made of pine wood.
Furthermore, the bearing plate is made of pine wood.
Furthermore, a warm edge spacing bar is arranged between the window sash section bar and the glass plate, the warm edge spacing bar adopts a TPE adhesive tape, a sealing strip is arranged between the first splice plate and the glass plate, and the sealing strip adopts an ethylene propylene diene monomer foam material sealing adhesive tape.
Furthermore, the glass plate adopts three-glass two-cavity single-silver off-line LOW-emissivity glass.
Compared with the prior art, the novel energy-saving environment-friendly heat-preservation sealing aluminum-clad wood door and window has the following advantages:
According to the energy-saving and environment-friendly heat-preservation sealed aluminum-clad wood door and window, the first splice plate, the second splice plate, the third splice plate, the bearing plate, the heat insulation plate and the window frame aluminum profile form a splice structure, so that the utilization rate of wood is improved, the use of large-area wood is reduced, and the sealing effect and the noise reducing effect are improved. Solves the problem that the adoption of a large amount of pure solid wood is unfavorable for energy conservation and environmental protection.
Drawings
The accompanying drawings, which are included to provide a further understanding of the utility model and are incorporated in and constitute a part of this specification, illustrate embodiments of the utility model and together with the description serve to explain the utility model. In the drawings:
FIG. 1 is a schematic diagram of the overall structure of an aluminum-clad wood door and window according to an embodiment of the utility model;
fig. 2 is a schematic view of a sectional structure of a casement window according to an embodiment of the present utility model;
FIG. 3 is a schematic cross-sectional view of a casement window frame according to an embodiment of the present utility model;
FIG. 4 is a schematic view of the sectional structure of the position A-A in FIG. 1.
Reference numerals illustrate:
1-first splice plate, 2-second splice plate, 3-third splice plate, 4-second seal strip, 5-spacer bar, 6-window sash fastener, 7-first seal strip, 8-seal strip, 9-glass, 10-warm edge spacer bar, 11-window sash profile, 12-window sash mounting nail, 15-window frame seal strip, 16-window frame aluminum profile, 17-mounting nail, 18-insulation layer, 19-locating pin, 20-bearing plate, 21-mounting table, 22-mounting groove, 23-insulation plate, 24-window frame fixing fastener, 25-locating groove, 26-sealing plug, 27-circular seal strip, 28-sealing gasket, 30-window sash butt joint portion, 31-window frame butt joint portion, 101-window sash frame, 102-flat-open window frame and 103-glass plate.
Detailed Description
It should be noted that, without conflict, the embodiments of the present utility model and features of the embodiments may be combined with each other.
The utility model will be described in detail below with reference to the drawings in connection with embodiments.
The novel energy-saving environment-friendly heat-insulating sealed aluminum-clad wood door window comprises a casement window sash and a casement window frame, wherein the casement window sash comprises a window sash frame 101 and a glass plate 103 assembled in the window sash frame 101, the window sash frame 101 comprises a first splice plate 1, a second splice plate 2, a third splice plate 3, a window sash profile 11, a first sealing strip 7 and a second sealing strip 4, the first splice plate 1 is connected with the top of the second splice plate 2, the rear side of the second splice plate 2 is connected with the third splice plate 3, the rear side of the third splice plate 3 is connected with the window sash profile 11, the first splice plate 1 is positioned on the indoor side of the glass plate 103, the window sash profile 11 is positioned on the outdoor side of the glass plate 103, a window sash butt joint part 30 abutted with the window frame is arranged at intervals, the window sash butt joint part 30 is provided with the first sealing strip 7 and the second sealing strip 4, as shown in fig. 3, the casement window frame 102 comprises a heat insulation plate 20, a heat insulation plate 23 and a window frame aluminum profile 16, the heat insulation plate 23 is arranged between the heat insulation plate 20 and the window frame profile 16, the heat insulation plate 20 is arranged on the rear side of the heat insulation plate 3, the first splice plate 1 is positioned on the indoor side of the glass plate, the window sash profile 11 is positioned on the indoor side of the window frame, the window frame profile 11 is positioned on the outdoor side, and is positioned on the outdoor side of the window frame, and is in butt joint part 31, and is in butt joint with a bearing part is arranged.
The novel energy-saving environment-friendly heat-insulating sealed aluminum-clad wood door and window has the advantages that the window sash frame 101 adopts the first splice plate 1, the second splice plate 2 and the third splice plate 3, the whole block of wood is replaced, the using amount of pure solid wood is reduced, the novel energy-saving environment-friendly heat-insulating sealed aluminum-clad wood door and window is more energy-saving and environment-friendly, the sealing effect and the noise reducing effect are improved through the first sealing strip 7 and the second sealing strip 4, and the heat insulating effect is further improved through the heat insulating plate. The casement window sash and the casement window frame are more energy-saving and environment-friendly, and improve the effects of heat preservation and heat insulation, so that the temperature in a room can be kept in a constant temperature state for a long time, and the heat energy loss is reduced.
The heat insulating plate 23 is provided with a mounting groove 22, the bearing plate 20 is provided with a mounting table 21, and the mounting table 21 is assembled in the mounting groove 22. The installation table 21 is assembled in the installation groove 22, and the heat insulation plate 23 is connected with the bearing plate 20 more conveniently and rapidly.
As shown in fig. 3, the top surface of the bearing plate 20 is provided with a sealing member and a positioning groove 25, the sealing member comprises a circular sealing strip 27, a sealing plug 26 and a sealing gasket 28, the circular sealing strip 27 protrudes from the top surface of the bearing plate 20, the lower part of the circular sealing strip 27 is connected with the sealing plug 26, the rear side of the circular sealing strip 27 is connected with the sealing gasket 28, and the sealing gasket 28 extends to the heat insulation plate 23. Through the sealing member, sealing effect and noise reduction's effect are further improved.
As shown in fig. 4, the window frame abutting portion 31 and the window sash abutting portion 30 are integrally stepped. The stepped window frame butt joint 31 and window sash butt joint 30 can improve the sealing effect.
As shown in fig. 3, the aluminum profile 16 for window frame is provided with two cavities, which are respectively provided with a mounting nail 17 and a positioning pin 19, and the heat insulation plate 23 is connected with the aluminum profile 16 for window frame through the mounting nail 17 and the positioning pin 19. The mounting nails 17 and the positioning pins 19 in the two cavities play a role in positioning and fixing.
In this embodiment, the first splice plate 1, the second splice plate 2 and the third splice plate 3 are preferably made of pine. The bearing plate 20 is made of pine wood. The pine wood has the characteristics of high mechanical strength, high corrosion resistance, high strength, moisture resistance, difficult deformation, good painting coloring performance and the like.
As shown in FIG. 2, a warm edge spacer bar 10 is arranged between the window sash section bar 11 and the glass plate 103, the warm edge spacer bar 10 adopts a TPE adhesive tape, a sealing strip 8 is arranged between the first splice plate 1 and the glass plate 103, and the sealing strip 8 adopts an ethylene propylene diene monomer foam material sealing adhesive tape. A warm-edge spacer 10 is provided between the sash profile 11 and the glass plate 103, so that indoor condensation caused by the aluminum glass spacer is avoided.
In this embodiment, the glass plate 103 is preferably a three-glass two-cavity single-silver offline LOW-emissivity glass. The three-glass two-cavity single-silver off-line LOW-emissivity glass is configured, so that the occurrence of the phenomenon of condensation is greatly reduced.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, alternatives, and improvements that fall within the spirit and scope of the utility model.