Integrated sunshade structure of aluminum alloy door and window
Technical Field
The utility model relates to the technical field of aluminum alloy doors and windows, in particular to an integrated sunshade structure of an aluminum alloy door and window.
Background
The application discloses an aluminum alloy door and window, which is characterized in that an aluminum alloy extrusion profile is used as a door and window made of frames, stiles and sash materials, namely the aluminum alloy door and window, which is called as an aluminum alloy door and window for short, the aluminum alloy door and window comprises a door and window which is made of aluminum alloy as a stress rod piece (a rod piece for bearing and transmitting dead weight and load) and is compounded with wood and plastic, and the prior art (bulletin number: CN 202220571733.0) is a corrosion-resistant aluminum alloy door and window with a sunshade function.
Disclosure of utility model
In order to overcome the defects existing in the prior art, an integrated sunshade structure of an aluminum alloy door and window is provided at present, so that the problem that a sunshade mechanism at a door and window frame body is difficult to effectively adjust the sunshade area in the prior art is solved.
In order to achieve the aim, the integrated sunshade structure of the aluminum alloy door and window comprises an aluminum alloy window body and an outer window frame, wherein the outer window frame is arranged at the outer side end of the aluminum alloy window body,
The aluminum alloy window body is characterized in that a locating plate is adsorbed on the front surface of the aluminum alloy window body, a first adjusting plate and a second adjusting plate are respectively connected to the front end surface of the aluminum alloy window body through connecting grooves, a sunshade rolling film is connected between the first adjusting plate and the second adjusting plate through fixing rods, limiting blocks are welded at the side ends of the first adjusting plate and the side ends of the second adjusting plate, and the locating plate is connected with the limiting blocks in a penetrating mode through locating columns.
Furthermore, two groups of connecting grooves are formed in the front surface of the aluminum alloy window body, adjusting holes are correspondingly formed in the side ends of the connecting grooves, and the adjusting holes are vertically distributed in rows.
Furthermore, a positioning column is inserted into the adjusting hole, a positioning plate is fixed at the front end of the positioning column, and an anti-slip rubber sleeve is sleeved on the cylindrical surface of the positioning column.
Furthermore, the back end surface of the positioning plate is provided with the suckers which are symmetrically distributed at the upper end and the lower end of the positioning column, and the positioning plate is adsorbed with the surface of the aluminum alloy window body through the suckers.
Furthermore, the lower end of the sunshade rolling film is adhered with a counterweight bar, the counterweight bar is adhered with the inner side surface of the aluminum alloy window, and the sunshade rolling film is wound and rolled on the surface of the fixing rod.
Further, a worm is arranged in the first adjusting plate groove, the left end of the worm is connected with a column head, and the rear side of the worm is meshed and connected with the fixing rod through a worm wheel.
Furthermore, a handle is arranged on the front surface of the aluminum alloy window body, a glass panel is arranged in the middle of the inside of the aluminum alloy window body, and the sunshade rolling film is positioned on the front surface of the glass panel.
The integrated sunshade structure for the aluminum alloy doors and windows has the beneficial effects that the sunshade rolling film, the positioning plate, the positioning column, the first adjusting plate and the second adjusting plate are utilized to form the adjustable sunshade structure, so that the adjusting plate drives the sunshade rolling film to be positioned on the surface of the aluminum alloy window body to move up and down to adjust the sunshade area of the window body, the sunshade height of the integrated aluminum alloy doors and windows can be flexibly adjusted according to sunshade requirements, the local sunshade of the aluminum alloy doors and windows is facilitated, the indoor illumination brightness is ensured, and the practicability of the integrated sunshade structure for the aluminum alloy doors and windows is improved.
Drawings
Fig. 1 is a schematic front view of an integrated sunshade structure for aluminum alloy doors and windows according to an embodiment of the present utility model.
Fig. 2 is a schematic front view of a partial structure of an integrated sunshade structure for aluminum alloy doors and windows according to an embodiment of the present utility model.
Fig. 3 is a schematic top sectional view of an integrated sunshade structure for aluminum alloy doors and windows according to an embodiment of the present utility model.
Fig. 4 is a schematic side view of a positioning plate according to an embodiment of the utility model.
The aluminum alloy window body is shown as a specification, wherein the specification comprises a specification body 1, an aluminum alloy window body, a specification body 11, a connecting groove, a specification body 12, an adjusting hole, a specification body 13, a handle, a specification body 14, a glass panel, a specification body 2, an external window frame, a specification body 3, a sunshade rolling film, a specification body 31, a counterweight bar, a specification body 32, a fixing rod, a specification body 4, a locating plate, a specification column 41, a specification sucker 42, a suction cup 43, an anti-skid rubber sleeve 5, a first adjusting plate 51, a second adjusting plate 52, a column cap 53, a worm, a specification body 54, a worm wheel 55 and a limiting block.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1 to 4, the utility model provides an integrated sunshade structure of an aluminum alloy door and window, which comprises an aluminum alloy window body 1 and an outer window frame 2, wherein the outer side end of the aluminum alloy window body 1 is provided with the outer window frame 2,
The front surface of the aluminum alloy window body 1 is adsorbed with a positioning plate 4, the front end surface of the aluminum alloy window body 1 is respectively connected with a first adjusting plate 5 and a second adjusting plate 51 through a connecting groove 11, a sunshade rolling film 3 is connected between the first adjusting plate 5 and the second adjusting plate 51 through a fixing rod 32, limiting blocks 55 are welded at the side ends of the first adjusting plate 5 and the second adjusting plate 51, and the positioning plate 4 is connected with the limiting blocks 55 in a penetrating manner through positioning columns 41.
When light rays injected from the lower side of the aluminum alloy window body 1 affect indoor personnel, the column head 52 is rotated, the sunshade rolling film 3 is put down, the positioning plate 4 is taken out, the sunshade rolling film 3 is moved down to a proper position, the first adjusting plate 5 and the second adjusting plate 51 are adjusted to be corresponding to the proper adjusting holes 12, the positioning plate 4 is adsorbed and positioned at the positions of the first adjusting plate 5 and the second adjusting plate 51, the overlong sunshade rolling film 3 is rolled, and the lower side of the aluminum alloy window body 1 can be subjected to sunshade without affecting the injection of light rays of the upper side of the window body.
In the embodiment, two groups of connecting grooves 11 are formed in the front surface of the aluminum alloy window body 1, adjusting holes 12 are correspondingly formed in the side ends of the connecting grooves 11, and the adjusting holes 12 are vertically distributed in a row. A positioning column 41 is inserted into the adjusting hole 12, a positioning plate 4 is fixed at the front end of the positioning column 41, and an anti-slip rubber sleeve 43 is sleeved on the cylindrical surface of the positioning column 41. The back end surface of the positioning plate 4 is provided with a sucker 42, the sucker 42 is symmetrically distributed at the upper end and the lower end of the positioning column 41, and the positioning plate 4 is adsorbed with the surface of the aluminum alloy window body 1 through the sucker 42.
As a preferred embodiment, the adjusting holes 12 are convenient for positioning the up-and-down moving positions of the first adjusting plate 5 and the second adjusting plate 51, so that the first adjusting plate 5 and the second adjusting plate 51 adjust the sunshade rolling film 3 to a proper sunshade height, thereby facilitating the local sunshade of the aluminum alloy window body 1 and simultaneously ensuring the indoor illumination brightness. The positioning plate 4 is adsorbed and fixed on the surface of the aluminum alloy window body 1 through the sucking disc 42, so that the positioning column 41 is used for plugging and positioning the positions of the first adjusting plate 5 and the second adjusting plate 51.
In the embodiment, the lower end of the sunshade roll film 3 is adhered with a counterweight bar 31, the counterweight bar 31 is attached to the inner side surface of the aluminum alloy window body 1, and the sunshade roll film is wound and rolled on the surface of a fixing rod 32. A worm 53 is arranged in the groove of the first adjusting plate 5, the left end of the worm 53 is connected with a column head 52, and the rear side of the worm 53 is meshed with the fixed rod 32 through a worm wheel 54.
As a preferred embodiment, the counterweight bar 31 facilitates the smooth shielding of the sunshade rolling film 3 at the front side of the glass panel 14 of the aluminum alloy window body 1, and prevents the sunlight from entering. The column head 52 drives the worm 53 to rotate, so that the worm 53 drives the worm wheel 54 to rotate in a meshed manner, and the fixed rod 32 rotates in the forward and reverse directions, thereby facilitating the retraction and the release of the sunshade rolling film 3.
In the embodiment, a handle 13 is arranged on the front surface of the aluminum alloy window body 1, a glass panel 14 is arranged in the middle of the inside of the aluminum alloy window body 1, and the sunshade rolling film 3 is positioned at the front surface of the glass panel 14.
As a preferred embodiment, the handle 13 facilitates locking or unlocking of the aluminum alloy window body 1 with the outer window frame 2. The glass panel 14 facilitates the outdoor sunlight to shine into the room, provides illumination brightness for the room, saves the power consumption of turning on the lamp.
The integrated sunshade structure for the aluminum alloy doors and windows can effectively solve the problem that a sunshade mechanism at a door and window frame body is difficult to effectively adjust the sunshade area in the prior art, is convenient for flexibly adjusting the sunshade height of the integrated aluminum alloy doors and windows according to sunshade requirements, is convenient for local sunshade of the aluminum alloy doors and windows, ensures indoor illumination brightness, improves the practicability of the integrated sunshade structure for the aluminum alloy doors and windows, and is suitable for the integrated sunshade structure for the aluminum alloy doors and windows.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.