Comprehensive screen door and window based on lifting push-pull system
Technical Field
The utility model relates to the technical field of sliding doors and windows, in particular to a comprehensive screen door and window based on a lifting sliding system.
Background
In modern architectural design, door and window are as the important element in connecting indoor and outdoor, and its design not only needs to satisfy basic ventilation, daylighting and safety demand, but also compromise aesthetic property and space sense. The whole body of the traditional sliding door and window frame is wide, which not only affects the whole aesthetic property of the window, but also occupies a large amount of vision space, so that the vision seen from the window becomes narrow. In addition, conventional sliding doors often do not have the function of a hidden leaf, i.e., the door leaf can only push and pull one position of the width of the door leaf in the door frame, and the width of the door frame is often twice the width of the door leaf. Although the design can realize the basic push-pull function, when the door is closed, the door leaf still occupies a part of space and cannot be completely hidden, so that the overall attractiveness and the spatial sense of the door and the window are affected.
The hidden sliding door is a more advanced design and is characterized in that the door leaf can be completely hidden in the wall body when being closed, thereby greatly improving the aesthetic property and the spatial sense of the door and the window. However, the existing hidden sliding door still has some defects in structure and function, such as complex operation, poor sealing performance, large occupied space and the like. Therefore, there is an urgent need in the market for a sliding door and window that can achieve both the hidden-leaf function and the aesthetic, practical and spatial feel.
Disclosure of utility model
The utility model aims to provide a comprehensive screen door and window based on a lifting push-pull system, which solves the problems of poor tightness and large occupied space of the existing hidden sash push-pull door in structure and function.
The aim of the utility model can be achieved by the following technical scheme:
The ultra-large glass panel is adopted to realize near non-shielding visual field and enhance the space permeability and lighting effect. Weakening the existence sense of doors and windows, and adapting modern and light luxury decoration styles.
The utility model provides a comprehensive screen door and window based on promote push-and-pull system, includes the frame body of fixed mounting in wall body department, the middle part fixed mounting of frame body has fixed glass fan, equal slidable mounting has the hidden fan of opening between the both sides frame of fixed glass fan and frame body, open hidden fan and be located the one side that is close to indoor, fixed glass fan is located the one side that is close to outdoor, the frame body is close to outdoor one side and is provided with two sets of and opens hidden fan matched with protection gauze fan.
Preferably, a guide rail supporting frame is fixedly arranged at the lower part of the outer frame body, which is positioned at the position of opening the hidden fan, and a push-pull guide rail for opening the push-pull sliding guide of the hidden fan is fixedly arranged on the guide rail supporting frame.
Preferably, the fixed glass fan comprises a fixed fan frame fixedly arranged at the middle part of the inner side of the outer frame body, daylighting glass is fixedly arranged at the inner side of the fixed fan frame, and a glass adhesive tape is arranged at the contact part of the daylighting glass and the fixed fan frame.
Preferably, a fan frame cushion block is arranged at the bottom of the fixed fan frame, and a clamping groove matched with the fan frame cushion block is arranged on the outer frame body.
Preferably, the opening hidden sash comprises a limit frame which is arranged on the guide rail supporting frame in a sliding manner, a pulley seat is fixedly arranged at the upper end of the limit frame, a push-pull pulley matched with the push-pull guide rail is rotatably arranged on the pulley seat, a push-pull sash frame is fixedly arranged at the upper end of the pulley seat, and hidden sash glass is fixedly arranged at the inner periphery of the push-pull sash frame.
Preferably, a sealing wool top is arranged at the joint of the sliding sash frame and the outer frame body, and a sealing rubber strip is fixedly arranged at the periphery of the sliding sash frame.
Preferably, the protective screen window comprises a screen window supporting frame fixedly arranged on one side of the outer frame body close to the outside, a supporting guide rail is fixedly arranged on the screen window supporting frame, a screen window sliding frame is connected to the supporting guide rail in a sliding mode, and a screen body is fixedly arranged on the screen window sliding frame through an installation pressing block.
Preferably, the connection yarn frame is fixedly arranged at the upper end of the sliding frame of the screen window, the connection yarn frame is slidably connected to the upper portion of the outer frame body, the yarn net wool tops are arranged at the connection position of the connection yarn frame and the outer frame body, and the connection cushion block for supporting the connection yarn frame is arranged on the outer frame body.
Preferably, the gauze body is a diamond gauze or a light-transmitting nylon gauze.
The horizontal sliding door has the beneficial effects that the horizontal sliding is realized by opening the hidden fan through the sliding guide rail in the lower guide rail supporting frame. The push-pull pulley on the pulley seat rolls along the guide rail to drive the push-pull sash frame to move, so that the hidden sash glass and the outer frame body form an opening and closing structure. The joint of the push-pull sash frame and the outer frame body is provided with a sealing wool top and a sealing rubber strip, so that the air tightness and the sound insulation performance during closing are ensured. The protective screen fan slides independently through the support guide rail, and the screen fan sliding frame drives the screen body to expand or retract, and is matched with the opening hidden fan for use, so that mosquitoes are prevented from entering and ventilation is kept. The fixed glass fan adopts oversized daylighting glass, is fixed in the middle part of the outer frame body through fixed fan frame and glass adhesive tape, provides the unobstructed visual field. The fan frame cushion block is matched with the clamping groove, so that stability is enhanced.
Drawings
The utility model is further described below with reference to the accompanying drawings.
FIG. 1 is a schematic diagram of the overall structure of a full screen door and window based on a lift push-pull system of the present utility model;
Fig. 2 is a schematic cross-sectional view of a full-screen door and window based on a lifting push-pull system according to the present utility model.
100 Parts of outer frame body, 11 parts of guide rail supporting frame, 12 parts of push-pull guide rail, 200 parts of fixed glass fan, 21 parts of fixed glass fan frame, 22 parts of lighting glass, 23 parts of glass adhesive tape, 24 parts of fan frame cushion blocks, 300 parts of opening hidden fan, 31 parts of limiting frame, 32 parts of push-pull pulley, 33 parts of pulley seat, 34 parts of push-pull fan frame, 35 parts of sealing wool top, 36 parts of sealing adhesive tape, 37 parts of hidden fan glass, 400 parts of protective screen fan, 41 parts of screen fan supporting frame, 42 parts of supporting guide rail, 43 parts of screen fan sliding frame, 44 parts of installation pressing block, 45 parts of screen net body, 46 parts of connecting screen frame, 47 parts of screen net top, 48 parts of connecting cushion blocks.
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.
In the description of the present utility model, it should be understood that the terms "upper," "lower," "left," "right," and the like indicate an orientation or a positional relationship based on that shown in the drawings, and are merely for convenience of description and for simplifying the description, and do not indicate or imply that the apparatus or element in question must have a specific orientation, as well as a specific orientation configuration and operation, and thus should not be construed as limiting the present utility model. Furthermore, the terms "first," "second," and the like, are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defining "a first" or "a second" may explicitly or implicitly include one or more such feature. In the description of the present utility model, unless otherwise indicated, the meaning of "a plurality" is two or more.
In the description of the present utility model, unless explicitly specified and limited otherwise, the terms "mounted," "connected," and the like are to be construed broadly, and may be, for example, fixedly connected, detachably connected, integrally connected, mechanically connected, electrically connected, directly connected, indirectly connected via an intermediate medium, or in communication between two elements. The specific meaning of the above terms in the present utility model will be understood in specific cases by those of ordinary skill in the art.
Referring to fig. 1-2, the present utility model is a full-screen door and window based on a lifting push-pull system, which includes an outer frame 100 fixedly installed on a wall, a fixed glass fan 200 is fixedly installed in the middle of the outer frame 100, an opening hidden fan 300 is slidably installed between the fixed glass fan 200 and two side frames of the outer frame 100, the opening hidden fan 300 is located at a side close to an indoor space, the fixed glass fan 200 is located at a side close to an outdoor space, and two groups of protective gauze fans 400 matched with the opening hidden fan 300 are provided at a side of the outer frame 100 close to the outdoor space.
In an alternative embodiment, a rail supporting frame 11 is fixedly arranged at the lower part of the outer frame 100 at the position of opening the hidden fan 300, and a push-pull rail 12 for guiding the sliding movement of the hidden fan 300 is fixedly arranged on the rail supporting frame 11.
It should be noted that the guide rail supporting frame 11 is fixed to the lower portion of the outer frame 100 to provide a sliding track for opening the hidden fan 300, and the push-pull guide rail 12 ensures accurate guiding of the horizontal movement.
In an alternative embodiment, the fixed glass fan 200 includes a fixed fan frame 21 fixedly disposed at the middle of the inner side of the outer frame 100, a daylighting glass 22 is fixedly disposed at the inner side of the fixed fan frame 21, and a glass adhesive tape 23 is disposed at a contact position between the daylighting glass 22 and the fixed fan frame 21.
The fixing fan frame 21 is supported by the main body, and the glass rubber strip 23 buffers stress between the glass and the frame body to prevent chipping.
In an alternative embodiment, the bottom of the fixed fan frame 21 is provided with a fan frame cushion 24, and the outer frame 100 is provided with a clamping groove matched with the fan frame cushion 24.
The fan frame pad 24 is inserted into the clamping groove of the outer frame 100 to disperse the weight of glass and prevent the frame from being deformed.
In an alternative embodiment, the opening hidden fan 300 includes a limiting frame 31 slidably disposed on the rail supporting frame 11, a pulley seat 33 is fixedly disposed at an upper end of the limiting frame 31, a push-pull pulley 32 matched with the push-pull rail 12 is rotatably mounted on the pulley seat 33, a push-pull fan frame 34 is fixedly disposed at an upper end of the pulley seat 33, and a hidden fan glass 37 is fixedly mounted on an inner periphery of the push-pull fan frame 34.
The pulley seat 33 and the push-pull pulley 32 form a rolling pair, friction is reduced, and the push-pull sash frame 34 carries the hidden sash glass 37, so that light-weight sliding is realized.
In an alternative embodiment, a sealing wool top 35 is arranged at the connection part of the sliding sash 34 and the outer frame 100, and a sealing rubber strip 36 is fixedly arranged at the periphery of the sliding sash 34.
In an alternative embodiment, the protective screen 400 includes a screen support frame 41 fixedly disposed on a side of the outer frame 100 near the outside, a support rail 42 is fixedly disposed on the screen support frame 41, a screen sliding frame 43 is slidably connected to the support rail 42, and a screen body 45 is fixedly mounted on the screen sliding frame 43 through a mounting press block 44.
The screen window supporting frame 41 is fixed to the outer frame 100, and the supporting rail 42 guides the screen window sliding frame 43 to slide independently, so as not to interfere with the opening hidden window 300.
In an alternative embodiment, the upper end of the sliding frame 43 of the screen window is fixedly provided with a connecting yarn frame 46, the connecting yarn frame 46 is slidably connected to the upper portion of the outer frame 100, the connection portion between the connecting yarn frame 46 and the outer frame 100 is provided with a yarn net wool top 47, and the outer frame 100 is provided with a connecting cushion block 48 for supporting the connecting yarn frame 46.
In an alternative embodiment, the gauze body 45 is a diamond gauze or a light transmissive nylon gauze.
The diamond gauze has strong impact resistance, and the light-transmitting nylon net is light and light-transmitting, so that a user can select the nylon net according to the needs.
The working principle of the utility model is that the hidden fan 300 is opened to realize horizontal push-pull sliding through the push-pull guide rail 12 in the lower guide rail supporting frame 11. The push-pull pulley 32 on the pulley seat 33 rolls along the guide rail to drive the push-pull sash frame 34 to move, so that the hidden sash glass 37 and the outer frame 100 form opening and closing. The sealing wool 35 and the sealing rubber strip 36 are arranged at the joint of the sliding sash 34 and the outer frame 100, so that the air tightness and the sound insulation performance during closing are ensured. The protective screen window 400 slides independently through the supporting guide rail 42, and the screen window sliding frame 43 drives the screen window body 45 to be unfolded or folded, so that the protective screen window is matched with the opening hidden window 300 to prevent mosquitoes from entering and keep ventilation. The fixed glass fan 200 adopts oversized daylighting glass 22, and is fixed in the middle of the outer frame 100 through a fixed fan frame 21 and a glass adhesive tape 23, so as to provide an unobstructed view. The fan frame cushion block 24 is matched with the clamping groove, so that stability is enhanced.
The foregoing describes one embodiment of the present utility model in detail, but the description is only a preferred embodiment of the present utility model and should not be construed as limiting the scope of the utility model. All equivalent changes and modifications within the scope of the present utility model are intended to be covered by the present utility model.