Integrated intelligent sound insulation window

By integrating fresh air components and drive components in the window frame, the problems of complex installation and large space occupancy of existing doors and windows are solved, and the effect of fresh air exchange and simplified installation is achieved.

CN120401938APending Publication Date: 2025-08-01ABELOO BUILDING MATERIALS BEIJING
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Patent Information

Application Number
CN202510600276.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-12
Publication Date
2025-08-01

AI Technical Summary

Technical Problem

Existing doors and windows require customized services to achieve good sound insulation when installing, and the overall solution is time-consuming and labor-intensive and takes up a lot of space.

Method used

An integrated intelligent soundproofing window is designed to integrate the fresh air component into the window frame, and the indoor and outdoor air exchange is realized through the driving component, and the opening is sealed with fiber cloth and winding component to support the component to fix the bottom of the fresh air component.

Benefits of technology

It realizes the integration of fresh air exchange functions, simplifies the installation process, reduces cost and space occupation, and improves the convenience of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The integrated intelligent sound insulation window comprises a window frame, and glass and a curtain are installed in a frame body of the window frame; two through grooves are formed in the top end of the window frame, and fresh air assemblies are installed in the through grooves. The fresh air assembly comprises an air inlet assembly and an air outlet assembly which are the same in structure. The air inlet assembly and the air outlet assembly are symmetrically installed in the two through grooves correspondingly. A supporting assembly is further installed at the bottom of the fresh air assembly and fixedly supports the bottom of the fresh air assembly after the fresh air assembly rotates in place. The driving assembly is used for driving the fresh air assembly to rotate; the two driving assemblies are rotationally connected with one end of the air inlet assembly and one end of the air outlet assembly correspondingly. The fresh air assembly is integrated on the window frame, indoor and outdoor fresh air exchange can be achieved, opening blocking during fresh air exchange is achieved in cooperation with the rolling assembly, and integrated direct installation can be achieved.
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Description

Technical Field

[0001] The present invention relates to the technical field of sound insulation windows, and particularly to an integrated intelligent sound insulation window. Background Art

[0002] When the existing doors and windows are designed and installed, they are mostly a single window frame plus a window sash. Customized services need to be added to achieve good sound insulation effects; for example, installing lifting curtains on the wall separately, and drilling holes in the wall at the top of the window to install a fresh air duct, etc. The basic doors and windows have a single function, and the overall solution has the disadvantages of time-consuming installation, high cost, and large indoor space occupation.

[0003] Therefore, there is an urgent need to design an integrated door and window that integrates the fresh air function into the window frame for easy assembly directly on the window opening during installation. Summary of the Invention

[0004] The purpose of the present invention is to provide an integrated intelligent sound insulation window to solve the problems existing in the above-mentioned prior art.

[0005] To achieve the above purpose, the present invention provides the following solution: The present invention provides an integrated intelligent sound insulation window, including:

[0006] A window frame, in which glass and a curtain are installed inside the frame of the window frame;

[0007] Two through grooves are opened at the top end of the window frame, and a fresh air component is installed in the through grooves. The fresh air component is rotatably arranged in the through grooves and can directly exchange indoor air with outdoor fresh air. The fresh air component includes an air inlet component and an air outlet component with the same structure. The air inlet component and the air outlet component are symmetrically installed in the two through grooves respectively. The air inlet component includes a first fresh air pipe body with the same structure. A first air inlet and a first air outlet are opened on the first fresh air pipe body. A winding column is also fixedly installed on one side of the first fresh air pipe body. A fiber cloth is wound around the winding column. The other end of the fiber cloth is wound around a winding component;

[0008] A support component is also installed at the bottom of the fresh air component. The support component fixes and supports the bottom of the fresh air component after the fresh air component rotates to the in-place position;

[0009] A driving component is used to drive the rotation of the fresh air component. Two driving components are provided and are respectively rotationally connected to one end of the air inlet component and the air outlet component.

[0010] The air outlet component includes a second fresh air pipe body. The first fresh air pipe body and the second fresh air pipe body are symmetrically arranged in the two through grooves respectively, and both winding columns are arranged at the ends of the through grooves close to the center of the window frame. The first fresh air pipe body and the second fresh air pipe body rotate in opposite directions and both rotate in the same side direction;

[0011] The second fresh air duct body is provided with a second air inlet and a second air outlet; the second air inlet corresponds to the position of the first air outlet, and the second air outlet corresponds to the position of the first air inlet.

[0012] The driving assembly includes a driving motor, the driving motor is placed in the driving groove, the driving groove is opened at the bottom end of the through groove, and the output end of the driving motor penetrates through the driving groove and is fixedly connected to the rotating shaft; the rotating shaft is vertically installed in the through groove, and a plurality of laterally protruding portions are formed on the axial side wall of the rotating shaft at equal intervals; a fixing groove is opened at the end of the first fresh air duct body, and a receiving groove corresponding to the position and shape of the laterally protruding portion is opened in the fixing groove; the first fresh air duct body is rotatably arranged around the rotating shaft.

[0013] A blocking block is also fixedly installed on the outdoor side of the through groove, and the blocking block is used to limit the rotation trajectories of the first fresh air duct body and the second fresh air duct body.

[0014] An arc-shaped groove is opened in the middle of the indoor side of the first fresh air duct body, a winding column is fixedly installed in the arc-shaped groove, the end of the fiber cloth is wound on the winding column, and the fiber cloth is connected to the winding assembly along the inner wall of the indoor side of the first fresh air duct body and the inner wall of the through groove;

[0015] The winding assembly includes a winding shaft, the winding shaft is opened in the winding bin, and a winding motor is also drivingly connected to the top of the winding shaft.

[0016] A rubber strip is also fixedly installed at the end of the side wall of the through groove close to the indoor side.

[0017] A signal transmitter is fixedly embedded at one end of the side wall of the through groove close to the indoor side, and signal receivers are fixedly installed at one ends of the first fresh air duct body and the second fresh air duct body close to the indoor side.

[0018] Partial arc-shaped areas are opened at the ends of the first fresh air duct body and the second fresh air duct body away from the rotating shaft, and the second air outlet and the first air inlet are arranged in the partial arc-shaped areas; baffles are also fixedly installed on the first fresh air duct body and the second fresh air duct body, the baffles are used to block the openings of the partial arc-shaped areas, and one end of the baffle abuts against the inner wall of the through groove.

[0019] The support assembly includes a telescopic push rod fixedly installed obliquely in the window frame; the fixed end of the telescopic push rod is installed below one end of the through groove; a magnetic suction cup is fixedly installed at the movable end of the telescopic push rod; iron blocks are fixedly embedded at the bottom of the first fresh air duct body and the second fresh air duct body away from the rotating shaft.

[0020] The present invention discloses the following technical effects: The present invention discloses an integrated intelligent sound insulation window, which integrates a fresh air component on the window frame, can realize the fresh air exchange between indoors and outdoors, and cooperates with a winding component to block the opening during the fresh air exchange, and can realize the integrated direct installation. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0022] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0023] Figure 2 It is a schematic diagram of the working state structure of the fresh air component of the present invention;

[0024] Figure 3 It is a schematic diagram of the structure of the fresh air component of the present invention when there is no fresh air exchange;

[0025] Among them, 1. Window frame; 2. Glass; 3. Curtain; 4. First fresh air pipe body; 5. Driving motor; 6. Second fresh air pipe body; 7. Sealing block; 8. Rubber strip; 9. Signal transmitter; 10. Signal receiver; 11. Baffle; 12. Telescopic push rod; 13. Magnetic suction cup; 14. Iron block; 41. First air inlet; 42. First air outlet; 43. Winding column; 44. Fiber cloth; 45. Rotating shaft; 46. Winding shaft; 47. Winding bin; 48. Winding motor; 51. Driving groove; 61. Second air inlet; 62. Second air outlet. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0026] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the drawings in the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.

[0027] In order to make the above objects, features and advantages of the present invention more obvious and understandable, the present invention will be further described in detail below with reference to the drawings and specific embodiments.

[0028] The present invention provides an integrated intelligent sound insulation window, including:

[0029] A window frame 1, in which a glass 2 and a curtain 3 are installed in the frame body of the window frame 1;

[0030] Two through grooves are provided at the top of the window frame 1. A fresh air component is installed in the through grooves. The fresh air component is rotatably arranged in the through grooves and can directly exchange indoor air with outdoor fresh air. The fresh air component includes an air inlet component and an air outlet component with the same structure. The air inlet component and the air outlet component are symmetrically installed in the two through grooves respectively. The air inlet component includes a first fresh air pipe body 4 with the same structure. A first air inlet 41 and a first air outlet 42 are provided on the first fresh air pipe body 4. A winding column 43 is also fixedly installed on one side of the first fresh air pipe body 4. A fiber cloth 44 is wound around the winding column 43. The other end of the fiber cloth 44 is wound on the winding component.

[0031] A support component is also installed at the bottom of the fresh air component. The support component fixedly supports the bottom of the fresh air component after the fresh air component rotates in place.

[0032] A driving component is used to drive the rotation of the fresh air component. Two driving components are provided and are respectively rotationally connected to one end of the air inlet component and the air outlet component.

[0033] The air outlet component includes a second fresh air pipe body 6. The first fresh air pipe body 4 and the second fresh air pipe body 6 are symmetrically arranged in the two through grooves respectively, and both winding columns 43 are arranged at the ends of the through grooves close to the center of the window frame 1. The rotation directions of the first fresh air pipe body 4 and the second fresh air pipe body 6 are opposite, and both rotate in the same direction.

[0034] A second air inlet 61 and a second air outlet 62 are provided on the second fresh air pipe body 6. The second air inlet 61 corresponds to the position of the first air outlet 42, and the second air outlet 62 corresponds to the position of the first air inlet 41.

[0035] The driving component includes a driving motor 5. The driving motor 5 is placed in a driving groove 51. The driving groove 51 is opened at the bottom of one end of the through groove. The output end of the driving motor 5 penetrates the driving groove 51 and is fixedly connected to a rotating shaft 45. The rotating shaft 45 is vertically installed in the through groove. A plurality of equally spaced lateral protrusions are formed on the axial side wall of the rotating shaft 45. A fixing groove is opened at the end of the first fresh air pipe body 4. A receiving groove corresponding to the position and shape of the lateral protrusions is opened in the fixing groove. The first fresh air pipe body 4 is rotatably arranged around the rotating shaft 45.

[0036] A blocking block 7 is also fixedly installed on the outdoor side of the through groove. The blocking block 7 is used to limit the rotation trajectories of the first fresh air pipe body 4 and the second fresh air pipe body 6.

[0037] An arc-shaped groove is opened in the middle of the indoor side of the first fresh air pipe body 4. A winding column 43 is fixedly installed in the arc-shaped groove. The end of the fiber cloth 44 is wound around the winding column 43. The fiber cloth 44 is connected to the winding component along the outer wall of the indoor side of the first fresh air pipe body 4 and the inner wall of the through groove.

[0038] The rewinding assembly includes a rewinding shaft 46 which is arranged in a rewinding bin 47, and a rewinding motor 48 is also drivingly connected to the top of the rewinding shaft 46.

[0039] A rubber strip 8 is also fixedly installed at the end of the side wall of the through groove close to the indoor side.

[0040] A signal transmitter 9 is fixedly embedded at one end of the side wall of the through groove close to the indoor side, and signal receivers 10 are also fixedly installed at one ends of the first fresh air duct body 4 and the second fresh air duct body 6 close to the indoor side.

[0041] Partial arc-shaped areas are provided at the end parts of the first fresh air duct body 4 and the second fresh air duct body 6 away from the rotating shaft 45, and a second air outlet 62 and a first air inlet 41 are arranged in the partial arc-shaped areas; baffle plates 11 are also fixedly installed on the first fresh air duct body 4 and the second fresh air duct body 6, and the baffle plates 11 are used for blocking the openings of the partial arc-shaped areas, and one end part of each baffle plate 11 abuts against the inner wall of the through groove.

[0042] The support assembly includes a telescopic push rod 12 which is obliquely and fixedly installed in the window frame 1; the fixed end of the telescopic push rod 12 is installed below one end part of the through groove; a magnetic suction cup 13 is fixedly installed at the movable end of the telescopic push rod 12; iron blocks 14 are fixedly embedded at the bottom of the first fresh air duct body 4 and the second fresh air duct body 6 away from the rotating shaft 45.

[0043] In an embodiment of the present invention, the glass is an electrochromic glass, and can be instantaneously switched between a transparent state and a frosted state by controlling the current. This high-tech glass product perfectly combines the dual requirements of privacy protection and space openness.

[0044] Furthermore, the glass adopts a standard laminated glass production process and is composed of two pieces of glass (usually tempered glass) with a liquid crystal dimming film (PDLC film) and a PVB or EVA film sandwiched in the middle. The optical change of the electrochromic glass depends on the electro-optical effect of the PDLC (polymer dispersed liquid crystal) film; in the non-powered state, the liquid crystal molecules are disorderly arranged, the light is scattered, and the glass presents a frosted and atomized effect; when an alternating voltage (usually 60-100VAC) is applied, the liquid crystal molecules are instantaneously arranged in an orderly manner, and the light can pass straight through, and the glass becomes transparent state 49. This transition is extremely rapid, only 100 milliseconds from frosted to transparent, and about 400 milliseconds from transparent to frosted.

[0045] Furthermore, the intelligent electrochromic glass supports multiple control methods, greatly improving the convenience of use. In addition to the traditional wall switch, it can also be controlled by a remote control, a smartphone APP, voice control, light control, temperature control or even a smart home system.

[0046] In an embodiment of the present invention, the curtain 3 is arranged on the indoor side of the window frame. The curtain 3 is a curtain that can be automatically lifted and lowered. The curtain can be a sound-absorbing curtain, an ordinary curtain fabric, with customizable colors and patterns. The bottom of the curtain is designed with a fixed metal rod, which can straighten the curtain by relying on the weight of the metal rod itself, ensuring the verticality and aesthetic appearance of the curtain.

[0047] In an embodiment of the present invention, the window frame 1 adopts an integral structure design and can be directly installed on the wall cavity, which is convenient to operate, saving time and effort.

[0048] In an embodiment of the present invention, two through grooves are opened at the inner top of the window frame 1. A first fresh air pipe body 4 and a second fresh air pipe body 6 are respectively installed in the two through grooves. The first fresh air pipe body 4 and the second fresh air pipe body 6 are both started by rotating the rotating shaft 45 of the driving motor 5. The rotating shaft is fixedly embedded through the fixing grooves of the first fresh air pipe body 4 and the second fresh air pipe body 6 to achieve rotation. And during the rotation process, the driving motor 5 is controlled to stop through the signal induction of the signal transmitter 9 and the signal receiver 10.

[0049] Furthermore, when it is necessary to retract the first fresh air pipe body 4 and the second fresh air pipe body 6, directly control the driving motor 5 to reverse, and retract the first fresh air pipe body 4 and the second fresh air pipe body 6 into the through grooves.

[0050] In an embodiment of the present invention, the inner side wall of the through groove is of an arc structure, which is adapted to the moving arc tracks of the first fresh air pipe body 4 and the second fresh air pipe body 6. The outer side wall of the through groove is of an arc surface structure, and the inner side wall of the through groove is of an arc surface structure design. And a blocking block 7 is further arranged inside the through groove. The blocking block 7 is used to limit the maximum moving tracks of the first fresh air pipe body 4 and the second fresh air pipe body 6.

[0051] Furthermore, when the first fresh air pipe body 4 and the second fresh air pipe body 6 are in contact with the side wall of the blocking block 7, the signal transmitter 9 and the signal receiver 10 just achieve signal induction, bypass the limit blockages of the first air outlet 42 and the second air inlet 61, and then control the driving motor 5 to stop working.

[0052] In an embodiment of the present invention, iron blocks 14 are further arranged at the bottoms of the first fresh air pipe body 4 and the second fresh air pipe body 6. After the first fresh air pipe body 4 and the second fresh air pipe body 6 move out of the through grooves, the iron blocks 14 at their bottoms are adsorbed by the magnetic suction cups 13 of the support assembly, and the telescopic push rod 12 cooperates with the movement of the first fresh air pipe body 4 and the second fresh air pipe body 6 to extend out, ensuring the external support of the extended parts of the first fresh air pipe body 4 and the second fresh air pipe body 6.

[0053] In an embodiment of the present invention, filter meshes are installed at the openings of the first air inlet 41 and the second air outlet 62; and the first air inlet 41 and the second air outlet 62 are placed in a partial arc area. Instead of setting the first air inlet 41 and the second air outlet as a completely embedded design, it is easy to cause dust accumulation at the side wall and block the opening. In this application, a baffle 11 is provided to block the partial arc area when fresh air is not exchanged, leaving a space for convenient later maintenance and cleaning.

[0054] Further, the fixed end of the telescopic push rod 12 is rotatably installed in the groove to achieve small-angle rotation, preventing its movement trajectory from being limited by the movement trajectory of the fresh air pipe body; and due to the setting of the blocking block 7, its movement angle can be determined to be between 5 degrees and 10 degrees.

[0055] In an embodiment of the present invention, the rubber strip 8 is used to form end limits when the first fresh air pipe body 4 and the second fresh air pipe body 6 are retracted, and can fix the first fresh air pipe body 4 and the second fresh air pipe body 6 to prevent them from moving out of position.

[0056] In an embodiment of the present invention, during the air intake process of the air intake component of this sound insulation window, the first air inlet 41 of the first fresh air pipe body 4 sucks in external fresh air and discharges it into the room through the first air outlet 42. The indoor air is inhaled through the second air outlet 62 of the second fresh air pipe body 6 and discharged through the second air outlet 62 to complete the fresh air exchange.

[0057] In an embodiment of the present invention, during the fresh air exchange process, the opening is blocked by the fiber cloth 44. When the first fresh air pipe body 4 and the second fresh air pipe body 6 are closed, the fiber cloth 44 seals the gap along the side wall of the fresh air pipe body and the side wall of the through groove to prevent external dust from entering, and strengthens the sealing effect; during the fresh air exchange process, the fiber cloth 44 is kept taut by the winding motor 48 to block the opening of the through groove, effectively completing the fresh air exchange.

[0058] In an embodiment of the present invention, the fiber cloth 44 is preferably an ultra-thin carbon fiber cloth, which has high tensile strength, low thickness and strong heat resistance.

[0059] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention. The above-described embodiments are only descriptions of the preferred embodiments of the present invention, and do not limit the scope of the present invention. Without departing from the design spirit of the present invention, various deformations and improvements made by those of ordinary skill in the art to the technical solutions of the present invention should fall within the protection scope determined by the claims of the present invention.

Claims

1. An integrated intelligent sound insulation window, characterized in that, Comprising: A window frame (1), in which a glass (2) and a curtain (3) are installed inside the frame body of the window frame (1); Two through slots are opened at the top of the window frame (1), and a fresh air component is installed in the through slots. The fresh air component is rotatably arranged in the through slots and can directly exchange indoor air with outdoor fresh air. The fresh air component includes an air inlet component and an air outlet component with the same structure. The air inlet component and the air outlet component are symmetrically installed in the two through slots respectively. The air inlet component includes a first fresh air pipe body (4) with the same structure. A first air inlet (41) and a first air outlet (42) are opened on the first fresh air pipe body (4). A winding column (43) is also fixedly installed on one side of the first fresh air pipe body (4). A fiber cloth (44) is wound around the winding column (43). The other end of the fiber cloth (44) is wound on a winding component; A support component is also installed at the bottom of the fresh air component. The support component fixedly supports the bottom of the fresh air component after the fresh air component rotates into place; A driving component, which is used to drive the rotation of the fresh air component. Two driving components are provided and are respectively rotationally connected to one ends of the air inlet component and the air outlet component.

2. The integrated intelligent sound insulation window according to claim 1, wherein: The air outlet component includes a second fresh air pipe body (6). The first fresh air pipe body (4) and the second fresh air pipe body (6) are symmetrically arranged in the two through slots respectively, and the two winding columns (43) are both arranged at the ends of the through slots close to the center of the window frame (1). The first fresh air pipe body (4) and the second fresh air pipe body (6) rotate in opposite directions and both rotate towards the same side; A second air inlet (61) and a second air outlet (62) are opened on the second fresh air pipe body (6). The second air inlet (61) corresponds to the position of the first air outlet (42), and the second air outlet (62) corresponds to the position of the first air inlet (41).

3. The one-piece intelligent sound insulation window according to claim 2, characterized in that: The driving component includes a driving motor (5). The driving motor (5) is placed in a driving slot (51). The driving slot (51) is opened at the bottom of one end of the through slot. The output end of the driving motor (5) penetrates through the driving slot (51) and is fixedly connected to a rotating shaft (45). The rotating shaft (45) is vertically installed in the through slot. A plurality of laterally protruding portions are formed on the axial side wall of the rotating shaft (45) at equal intervals. A fixing slot is opened at the end of the first fresh air pipe body (4), and a receiving slot corresponding to the position and shape of the laterally protruding portion is opened in the fixing slot. The first fresh air pipe body (4) is rotatably arranged around the rotating shaft (45).

4. The integrated intelligent sound insulation window according to claim 1, wherein: A blocking block (7) is also fixedly installed on the outdoor side of the through slot. The blocking block (7) is used to limit the rotation trajectories of the first fresh air pipe body (4) and the second fresh air pipe body (6).

5. The integrated intelligent sound insulation window according to claim 1, characterized in that: An arc-shaped slot is opened in the middle of the indoor side of the first fresh air pipe body (4). The winding column (43) is fixedly installed in the arc-shaped slot. The end of the fiber cloth (44) is wound around the winding column (43). The fiber cloth (44) is connected to the winding component along the outer wall of the indoor side of the first fresh air pipe body (4) and the inner wall of the through slot; The winding component includes a winding shaft (46) which is arranged in a winding bin (47), and a winding motor (48) is also drivingly connected to the top of the winding shaft (46).

6. The one-piece intelligent sound insulation window according to claim 1, characterized in that: A rubber strip (8) is further fixedly installed at the end of the side wall of the through groove close to the indoor side.

7. The one-piece intelligent sound insulation window according to claim 1, characterized in that: A signal transmitter (9) is further fixedly embedded at one end of the side wall of the through groove close to the indoor side, and signal receivers (10) are further fixedly installed at one ends of the first fresh air duct body (4) and the second fresh air duct body (6) close to the indoor side.

8. The one-piece intelligent sound insulation window according to claim 3, characterized in that: Partial arc-shaped areas are formed at one ends of the first fresh air duct body (4) and the second fresh air duct body (6) away from the rotating shaft (45), and a second air outlet (62) and a first air inlet (41) are arranged in the partial arc-shaped areas; baffles (11) are further fixedly installed on the first fresh air duct body (4) and the second fresh air duct body (6), the baffles (11) are used for blocking the openings of the partial arc-shaped areas, and one end of the side of the baffles (11) abuts against the inner wall of the through groove.

9. The integrated intelligent sound insulation window according to claim 3, characterized in that: The support component includes a telescopic push rod (12) which is obliquely and fixedly installed in the window frame (1); the fixed end of the telescopic push rod (12) is installed below one end of the through groove; a magnetic suction cup (13) is fixedly installed at the movable end of the telescopic push rod (12); iron blocks (14) are fixedly embedded at the bottom of one side of the first fresh air duct body (4) and the second fresh air duct body (6) away from the rotating shaft (45).