Window sash structure of skylight
Technical Field
The utility model relates to the technical field of window sashes, in particular to a window sash structure of a window.
Background
The window sash structure is typically designed for mounting on a roof or high wall to provide natural light and ventilation. The skylight is used for lighting, and the ventilation efficiency is high. The skylight has various application types in modern buildings, and can be summarized into three types of zenith, convexity and concavity according to the structure, the position and the relation with a roof, while the general skylight window sash structure has single structure and less functions, and is difficult to meet the use requirements of the current life.
In the public number CN201567886U, a building window sash structure, the connection structure of the window sash and the window frame comprises a four-bar sliding block connection structure at the bottom edge of the window sash and a bar sliding block connection structure at the top edge of the window sash. The window has the advantages that the window sash is easy and convenient to operate and light and quick in opening and closing by means of the four-bar sliding block mechanism, and has good sealing performance after being closed, and the window designed by the utility model can clean glass only indoors, so that high-rise buildings do not need to be cleaned in high air by raising a dangerous crane or are cleaned in an auxiliary way by means of robots or large machines, and the problem that the glass of the high-rise buildings is difficult to clean at present is solved.
The window sash structure of the skylight has fewer functions and is more troublesome to use, and is difficult to meet the use requirements of the current life, so that the window sash structure of the skylight is needed in an urgent need for convenience in use and more functions.
Disclosure of utility model
The utility model aims to provide a window sash structure for a skylight, which solves the problems in the background technology.
The sliding skylight window sash structure comprises a sliding skylight, wherein the sliding skylight window is connected to the upper end of a skylight frame in a sliding mode, and a sliding sunshade structure is connected inside the skylight frame in a sliding mode;
The sliding skylight comprises sliding glass, the sliding glass is fixedly inserted into the upper end of the inner side of the skylight frame, and the sliding skylight and the skylight frame are firmly inserted through the sliding glass so as to realize a sealing function;
The sliding sunshade structure comprises a rotary fixing block, the rotary fixing block is connected to the lower end of the inner side of the skylight frame in a sliding mode, the sliding sunshade structure and the skylight frame are connected in a sliding mode through the rotary fixing block, and the device can achieve a sunshade ventilation function.
Preferably, the upper end of the skylight frame is provided with a sliding insertion groove matched with the sliding skylight, so that the skylight frame provides a solid foundation for sliding of the sliding skylight and provides conditions for realizing a sealing function.
Preferably, the sliding connection groove matched with the sliding sunshade structure is formed in the lower end of the skylight frame, so that the skylight frame provides a foundation for sliding of the sliding sunshade structure and provides conditions for realization of sunshade ventilation functions.
Preferably, the sliding glass both sides are connected with the array and remove the pulley, sliding glass right side bottom is provided with the helping hand piece, lets sliding glass pass through the cooperation of removing pulley, helping hand piece and can be quick peg graft the slip, increases the convenience that the device function was used.
Preferably, the upper and lower width of the movable pulley does not exceed the thickness of the sliding glass, the thickness of the power assisting block is matched with the sliding sunshade structure, the power assisting block does not influence the use of the sliding sunshade structure, and the sliding skylight and the sliding sunshade structure can be matched to avoid mutual influence.
Preferably, the rotary fixing block is rotationally connected with a rotary rod sleeve through a rotary rod, and the right side of the rotary rod sleeve is connected with a piece of sun-shading cloth, so that the plurality of groups of rotary fixing blocks can be stored together to be opened and closed, and a user can use the rotary fixing block conveniently, so that the ventilation sun-shading function is realized.
Preferably, the rotary rod sleeve is provided with rotary rod matched rotary grooves, two groups of rotary fixing blocks are connected with one group of rotary rod sleeve on the left side through sun-shading cloth, so that the sliding sun-shading structures of the groups are convenient to combine, a user can flexibly switch the sliding sun-shading structures, and ventilation effects of different degrees and sizes are achieved.
Compared with the prior art, the window frame has the beneficial effects that the device can be switched between different functions by the aid of the window frame, the use convenience of the device is improved, the device can be firmly sealed and light-transmitting by the aid of the sliding skylight, and the window can be ventilated and sun-shading by the aid of the sliding sun-shading structure, so that the functionality of the device is improved.
Drawings
FIG. 1 is a schematic view of a left side structure of a window sash structure of the present utility model;
FIG. 2 is a schematic view of a right side structure of a window sash structure according to the present utility model;
FIG. 3 is a schematic view of a left side expansion structure of a window sash structure according to the present utility model;
FIG. 4 is a schematic view of a sliding window sash structure of a sliding window according to the present utility model;
fig. 5 is a schematic structural view of a sliding sunshade structure of a window sash structure according to the present utility model.
In the figure, 1, a skylight frame, 2, a sliding skylight, 21, sliding glass, 22, a movable pulley, 23, a power assisting block, 3, a sliding sunshade structure, 31, a rotating fixed block, 32, a rotating rod, 33, a rotating rod sleeve, 34 and sunshade cloth.
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 3, a sliding skylight 2 is slidably connected to an upper end of a skylight frame 1, and a sliding sunshade structure 3 is slidably connected to an inside of the skylight frame 1;
The sliding skylight 2 comprises sliding glass 21, the sliding glass 21 is fixedly inserted into the upper end of the inner side of the skylight frame 1, and the sliding skylight 2 and the skylight frame 1 are firmly inserted into each other through the sliding glass 21 so as to realize a sealing function;
The sliding sunshade structure 3 comprises a rotary fixing block 31, the rotary fixing block 31 is connected to the lower end of the inner side of the skylight frame 1 in a sliding mode, the sliding sunshade structure 3 and the skylight frame 1 are connected in a sliding mode through the rotary fixing block 31, and the device can achieve sunshade ventilation functions.
Referring to fig. 3 and 4, in order to enable the device to conveniently realize sliding sealing and light transmission, a sliding insertion groove matched with a sliding skylight 2 is formed in the upper end of a skylight frame 1, a solid foundation is provided for sliding of the sliding skylight 2 for the sliding skylight 1, conditions are provided for realizing a sealing function, two sides of a sliding glass 21 are connected with a plurality of groups of movable pulleys 22, a power assisting block 23 is arranged at the bottom of the right side of the sliding glass 21, the sliding glass 21 can be quickly inserted and slid through the matching of the movable pulleys 22 and the power assisting block 23, the convenience of functional use of the device is improved, the upper width and lower width of the movable pulleys 22 do not exceed the thickness of the sliding glass 21, the thickness of the power assisting block 23 is matched with the sliding sunshade structure 3, the power assisting block 23 does not influence the use of the sliding sunshade structure 3, and the sliding skylight 2 and the sliding sunshade structure 3 can be matched and realized so as not to influence each other.
Referring to fig. 3 and 5, a sliding connection groove matched with the sliding sunshade structure 3 is formed at the lower end of the window and solar frame 1, so that the window and solar frame 1 provides a foundation for sliding of the sliding sunshade structure 3, a condition is provided for realization of sunshade ventilation function, a rotating rod sleeve 33 is rotatably connected to a rotating fixing block 31 through a rotating rod 32, sunshade cloth 34 is connected to the right side of the rotating rod sleeve 33, a plurality of groups of rotating fixing blocks 31 can be stored together for opening and closing, a user can use conveniently, ventilation sunshade function is realized, the rotating rod sleeve 33 is provided with a rotating groove matched with the rotating rod 32, two groups of rotating fixing blocks 31 are connected with the left group of rotating rod sleeve 33 through the sunshade cloth 34, and convenience is brought to combination of the sliding sunshade structures 3, so that the user can flexibly switch the sliding sunshade structure 3, and ventilation effects of different degrees and sizes are realized.
The sliding skylight 2 and the sliding sunshade structure 3 are matched to achieve an effect, the sliding skylight 2 and the sliding sunshade structure 3 are opened together to achieve ventilation and light transmission effects, the sliding skylight 2 is closed in a sliding mode, the sliding sunshade structure 3 is opened, the light transmission sealing effect can be achieved, the sliding skylight 2 is opened, the sliding sunshade structure 3 is closed, the sunshade ventilation effect can be achieved, the sliding skylight 2 and the sliding sunshade structure 3 are closed together to achieve the sealing sunshade effect, the skylight frame 1 is made of an aluminum alloy section bar, a supporting structure of a window sash is made of a 6063 aluminum alloy section bar, the characteristics of high strength, corrosion resistance and light weight are achieved, stability and durability of the window sash can be guaranteed, and the sunshade cloth 34 is made of polyester fibers, which are common sunshade cloth materials, have excellent durability and stretch resistance, and can resist sun and wind and rain erosion.
The working principle is that the sliding switch can be carried out through the power-assisted block 23 when the sliding skylight 2 needs to be opened, the rotating rod sleeve 33 can be pulled to realize quick switch when the sliding sunshade structure 3 needs to be opened, and the sliding skylight 2 and the sliding sunshade structure 3 are matched to realize different functional effects so as to meet daily needs.
The standard components used in the present embodiment may be purchased directly from the market, but the nonstandard structural components according to the descriptions of the specification and the drawings may also be obtained by unambiguous processing according to the conventional technical knowledge, and meanwhile, the connection manner of each component adopts the conventional means mature in the prior art, and the machinery, the components and the equipment all adopt the conventional types in the prior art, so that the specific description will not be made here.
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.