High-strength heat-insulation energy-saving aluminum alloy door and window

By introducing an installation base, guide strips, movable window frames, and closed-loop groove structure into aluminum alloy doors and windows, combined with power output, adjustment, and displacement constraint components, the problems of insufficient safety and energy efficiency of traditional doors and windows are solved, achieving high-strength heat insulation and sealing effects, and improving the safety and energy efficiency of places with high safety requirements.

CN224048995UActive Publication Date: 2026-03-27HUBEI ZHICHEN DOOR & WINDOW TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-09
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Traditional metal doors and windows are not safe and energy-efficient in high-security environments. Electronic access control systems are expensive and prone to failure. Sealing strips are easily worn, making doors and windows easy to open and close and increasing energy consumption.

Method used

It adopts an installation base, guide blocks, movable window frame and closed-loop groove structure, combined with power output component, adjustment component, displacement constraint component and elastic compensation component to achieve high-strength heat insulation and sealing effect.

Benefits of technology

It improves the safety and energy efficiency of doors and windows, reduces maintenance costs, ensures effective control of doors and windows in the event of a power outage or network failure, enhances sealing performance, and reduces energy consumption.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224048995U_ABST
    Figure CN224048995U_ABST
Patent Text Reader

Abstract

The utility model provides a high strength heat insulation energy saving aluminium alloy door and window, including: mounting base, guide bar, mobile window frame, closed loop groove structure, the guide bar is mounted in the mounting base, the mobile window frame with the guide bar is in sliding connection, the closed loop groove structure is arranged in the mounting base, the guide bar is in sliding connection with the mobile window frame, the closed loop groove structure is in sliding connection with the guide bar, and the mobile window frame is in sliding connection with the closed loop groove structure. A power output assembly used for providing driving force is arranged in the closed-loop type groove body structure, and the high-strength heat-insulation energy-saving aluminum alloy door and window comprises the installation base body, the guide strip blocks, the movable window frame, the closed-loop type groove body structure and the like. The installation base body plays a supporting role, and the guide strip block assists the window frame to slide smoothly. In the closed-loop groove body structure, the power output assembly supplies energy to the adjusting assembly, the adjusting assembly sets the moving range of the displacement restraining assembly, and the displacement restraining assembly controls the moving window frame to prevent the moving window frame from moving excessively.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to aluminium alloy door and window technical field especially relates to a high strength heat -proof energy -saving aluminium alloy door and window. BACKGROUND

[0002] Aluminium alloy door and window refers to the door and window made of aluminium alloy extruded section material as frame, vertical and fan material, and is called aluminium alloy door and window for short.

[0003] In military base, secret research institution, financial consignment warehouse and other high security demand places, door and window control is very important for personnel safety, material integrity and information security. The locking and opening mechanism of traditional metal door and window is simple, and lacks effective permission management, which makes the door and window easy to be opened and closed at will, and then leads to a large amount of indoor temperature loss. Some door and window using electronic access control system relies on complex electronic equipment and network, which not only has high construction and maintenance cost, but also is easy to fail when network is disconnected or power is off. In addition, the sealing rubber strip of the door and window is seriously worn after frequent opening and closing, which reduces the sealing performance, reduces the safety of the place, and increases energy consumption.

[0004] Therefore, it is necessary to provide a high strength heat -proof energy -saving aluminium alloy door and window to solve the above technical problems. UTILITY MODEL CONTENTS

[0005] The utility model provides a high strength heat -proof energy -saving aluminium alloy door and window, solves the problem that the door and window control requirement of key place is very high, the safety and energy saving of traditional metal door and window is poor, the construction and maintenance cost of electronic access control door and window is high, and the sealing rubber strip is easy to wear.

[0006] In order to solve the above technical problems, the high strength heat -proof energy -saving aluminium alloy door and window provided by the utility model comprises: an installation base body, a guide strip block, a movable window frame, a closed loop type groove structure, the guide strip block is installed in the inside of the installation base body, the movable window frame is connected with the guide strip block in sliding mode, the closed loop type groove structure is arranged in the inside of the installation base body, the inside of the closed loop type groove structure is provided with a power output assembly for providing driving force, the outside of the power output assembly is provided with an adjusting assembly for controlling resistance, the outside of the adjusting assembly is provided with a displacement constraint assembly for limiting the movement of the door and window, and the outside of the movable window frame is provided with an elastic compensation assembly for filling the sealing gap.

[0007] Preferably, the power output assembly comprises a limiting plate, a positioning member, an operation chamber, the limiting plate is installed in the closed loop groove structure, the positioning member is installed on the inner wall of the closed loop groove structure, the inner part of the positioning member is movably connected with a rotating member for rotation, the rotating member penetrates through the positioning member and extends to the outside, the outer part of the rotating member is fixedly connected with a rotary force transmitter for providing power, the end of the rotary force transmitter is fixedly connected with a transmission member, the other end of the transmission member is provided with a cross slot, the transmission member penetrates through the limiting plate and extends to the outside, and the operation chamber is arranged on the front surface of the installation base body, and the outer part of the operation chamber is provided with a lockable member for preventing others from operating arbitrarily and protecting the internal structure of the power output assembly.

[0008] Preferably, the adjusting assembly comprises a straight bevel gear, a circular thread, the straight bevel gear is arranged in the closed loop groove structure, the outer surface of the straight bevel gear is engaged with the outer surface of the rotary force transmitter, the outer part of the straight bevel gear is fixedly connected with a rotary transmission shaft for transmitting the rotation direction, the outer part of the rotary transmission shaft is fixedly connected with a blocking member, the inner wall of the closed loop groove structure is fixedly connected with a limiting member for cooperating with the blocking member to prevent the rotary transmission shaft from falling off, the inner part of the limiting member is movably connected with the outer part of the rotary transmission shaft, and the circular thread is arranged at the end of the rotary transmission shaft.

[0009] Preferably, the displacement constraint assembly comprises a guide structure, a resistance increasing member and a stable displacement member, the guide structure is arranged on the outside of the installation base body, the closed loop groove structure is internally provided with an extrusion plate, and the two ends of the extrusion plate are fixedly connected with displacement members, the stable displacement member is installed in the closed loop groove structure, the displacement members are slidably connected with the stable displacement member respectively and are threadedly connected with the circular thread at the end of the rotary transmission shaft, and the resistance increasing member is installed on the outside of the extrusion plate and is slidably connected with the inner part of the guide structure.

[0010] Preferably, the elastic compensation assembly comprises a containing groove and a sealing groove, the containing groove is arranged on the left and right sides of the movable window frame, the containing groove is internally provided with a pushing element for moving compensation, the outer part of the pushing element is fixedly connected with a pushing plate, the outer part of the pushing plate is fixedly connected with a rubber block, and the sealing groove is arranged on the left and right sides of the installation base body.

[0011] Preferably, the installation base body is internally provided with a pollution discharge mechanism, the pollution discharge mechanism comprises a flow guide structure and a flow discharge structure, the flow guide structure is arranged in the closed loop groove structure, the flow discharge structure is arranged on the back surface of the installation base body, the front surface of the installation base body is provided with an operation groove for cleaning, and the outer part of the operation groove is provided with a sealing member.

[0012] Compared with the related art, the high-strength heat-insulating energy-saving aluminum alloy door and window has the following beneficial effects:

[0013] The utility model provides a kind of high-strength heat-insulating energy-saving aluminum alloy door and window, through installation matrix, guide strip block, mobile window frame, closed loop groove structure component etc..Installation matrix plays the role of support, guide strip block helps mobile window frame to slide smoothly.In closed loop groove structure, power output component supplies energy for adjusting component, adjusting component sets the movement range of displacement constraint component, displacement constraint component controls mobile window frame, prevents its excessive movement.Elastic compensation component outside mobile window frame fills up sealed gap, improves the sealing and heat insulation of door and window. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 The structure diagram of a preferred embodiment of high-strength heat-insulating energy-saving aluminum alloy door and window provided by the utility model is shown in the figure;

[0015] Figure 2 For Figure 1 The front view schematic diagram shown in the figure;

[0016] Figure 3 For Figure 2 The enlarged schematic diagram of A part shown in the figure;

[0017] Figure 4 For Figure 1 The internal structure schematic diagram shown in the figure;

[0018] Figure 5 For Figure 4 The enlarged schematic diagram of B part shown in the figure;

[0019] Figure 6 For Figure 4 The enlarged schematic diagram of C part shown in the figure;

[0020] Figure 7 For Figure 4 The enlarged schematic diagram of D part shown in the figure;

[0021] Figure 8 For Figure 1 The partial sectional view schematic diagram shown in the figure;

[0022] Figure 9 For Figure 8 The enlarged schematic diagram of E part shown in the figure.

[0023] Reference signs: 1, mounting base, 11, guide block, 12, movable window frame, 13, closed loop groove structure, 2, power output assembly, 21, limiting plate, 22, positioning piece, 23, operation chamber, 24, rotating piece, 25, rotary force transmitter, 26, transmission piece, 27, cross groove, 28, openable and closable locking piece, 3, adjusting assembly, 31, straight bevel gear, 32, circular thread, 34, rotary transmission shaft, 35, blocking piece, 36, limiting piece, 4, displacement constraint assembly, 41, guide structure, 42, resistance increasing piece, 43, stable displacement piece, 44, extrusion plate, 45, displacement piece, 5, elastic compensation assembly, 51, containing groove, 52, sealing groove, 53, pushing element, 54, pushing plate, 55, rubber strip block, 6, pollution discharge mechanism, 61, flow guide structure, 62, flow discharge structure, 63, operation groove, 64, sealing piece. DETAILED DESCRIPTION

[0024] The utility model will be further explained in connection with the drawings and embodiments.

[0025] Please refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 Among them, Figure 1 It is the structure schematic diagram of a preferred embodiment of high-strength heat-insulating energy-saving aluminum alloy door and window provided by the utility model; Figure 2 It is the front view schematic diagram shown in Figure 1 ; Figure 3 It is the A part enlarged schematic diagram shown in Figure 2 ; Figure 4 It is the internal structure schematic diagram shown in Figure 1 ; Figure 5 It is the B part enlarged schematic diagram shown in Figure 4 ; Figure 6 It is the C part enlarged schematic diagram shown in Figure 4 ; Figure 7 It is the D part enlarged schematic diagram shown in Figure 4 ; Figure 8 It is the partial sectional view schematic diagram shown in Figure 1 ; Figure 9 It is the sectional view schematic diagram shown in Figure 8The E part enlarged view is shown. The high-strength heat-insulating energy-saving aluminum alloy door and window comprises a mounting base 1, a guide strip 11, a movable window frame 12, and a closed-loop groove structure 13. The guide strip 11 is mounted in the interior of the mounting base 1, the movable window frame 12 is in sliding connection with the guide strip 11, and the closed-loop groove structure 13 is arranged in the interior of the mounting base 1. The closed-loop groove structure 13 is internally provided with a power output assembly 2 for providing driving force. The power output assembly 2 is externally provided with an adjusting assembly 3 for controlling resistance. The adjusting assembly 3 is externally provided with a displacement constraint assembly 4 for limiting the movement of the door and window. The movable window frame 12 is externally provided with an elastic compensation assembly 5 for filling the sealed gap.

[0026] The power output assembly 2 comprises a limiting plate 21, a positioning piece 22, and an operation chamber 23. The limiting plate 21 is mounted in the interior of the closed-loop groove structure 13. The positioning piece 22 is mounted on the inner wall of the closed-loop groove structure 13. The positioning piece 22 is internally movably connected with a rotating piece 24 for rotation. The rotating piece 24 penetrates through the positioning piece 22 and extends to the outside thereof. The rotating piece 24 is fixedly connected on the outside thereof with a rotary force transmitter 25 for providing kinetic energy. The rotary force transmitter 25 is fixedly connected at the end thereof with a transmission piece 26. The other end of the transmission piece 26 is provided with a cross groove 27. The transmission piece 26 penetrates through the limiting plate 21 and extends to the outside thereof. The operation chamber 23 is arranged on the front face of the mounting base 1. The operation chamber 23 is externally provided with a openable and closable locking piece 28 for preventing others from operating arbitrarily and protecting the internal structure of the power output assembly 2.

[0027] The openable and closable locking piece 28 is mounted on the outside of the operation chamber 23, which prevents others from operating arbitrarily. When the openable and closable locking piece 28 is opened by the staff, the operation chamber 23 can be accessed, and a cross-shaped tool is inserted into the cross groove 27 at the end of the transmission piece 26. By rotating the tool, the transmission piece 26 is rotated. Since the transmission piece 26 is fixedly connected with the rotary force transmitter 25, the rotation of the transmission piece 26 drives the rotary force transmitter 25 to rotate synchronously. The positioning piece 22 is mounted on the inner wall of the closed-loop groove structure 13. The rotating piece 24 is movably connected in the positioning piece 22, and the rotating piece 24 penetrates through the positioning piece 22 and is fixed with the rotary force transmitter 25, which together guarantees the stable rotation of the rotary force transmitter 25. At the same time, the limiting plate 21 is mounted in the interior of the closed-loop groove structure 13, which provides support for the rotation of the transmission piece 26, prevents the transmission piece 26 from deviating during rotation, and ensures the stable operation of the power output assembly 2.

[0028] The rotary force transmitter 25 comprises, but is not limited to, a straight-tooth cylindrical gear, a worm gear, a planetary gear, and a bevel gear.

[0029] In this embodiment, the rotating force transmitter 25 is preferably a bevel gear. The bevel gear can achieve power transmission between two intersecting shafts, and can flexibly adjust the transmission direction according to the layout of the closed-loop groove structure 13, effectively saving space.

[0030] The adjusting assembly 3 includes a straight bevel gear 31 and a circular thread 32. The straight bevel gear 31 is arranged inside the closed-loop groove structure 13, and the outer surface thereof is engaged with the outer surface of the rotating force transmitter 25. The straight bevel gear 31 is fixedly connected with a rotating transmission shaft 34 for transmitting the rotating direction. The rotating transmission shaft 34 is fixedly connected with a blocking piece 35. The inner wall of the closed-loop groove structure 13 is fixedly connected with a limiting piece 36 for cooperating with the blocking piece 35 to prevent the rotating transmission shaft 34 from falling off. The limiting piece 36 is movably connected with the outer surface of the rotating transmission shaft 34. The circular thread 32 is arranged at the end of the rotating transmission shaft 34.

[0031] The straight bevel gear 31 is arranged inside the closed-loop groove structure 13, and the outer surface thereof is engaged with the outer surface of the rotating force transmitter 25. When a person rotates the rotating force transmitter 25 by opening the openable and closable locking piece 28 and using a cross-shaped tool to rotate the transmission piece 26, the straight bevel gear 31 is rotated, and the direction of power transmission is changed. The straight bevel gear 31 is fixedly connected with the rotating transmission shaft 34 for transmitting the rotating direction. The power is transmitted to the circular thread 32 at the end, and the circular thread 32 is used for adjusting the moving range of the displacement constraint assembly 4. At the same time, the blocking piece 35 fixedly connected with the outer surface of the rotating transmission shaft 34 cooperates with the limiting piece 36 fixedly connected with the inner wall of the closed-loop groove structure 13. The limiting piece 36 is movably connected with the outer surface of the rotating transmission shaft 34. The two together prevent the rotating transmission shaft 34 from falling off, and ensure stable rotation thereof.

[0032] The rotating transmission shaft 34 includes but is not limited to a solid steel transmission shaft, a spline transmission shaft, and a hollow aluminum alloy transmission shaft.

[0033] In this embodiment, the rotating transmission shaft 34 is preferably a solid steel transmission shaft. Considering that the adjusting assembly 3 is installed in the closed-loop groove structure 13, and the straight bevel gear 31 continuously engages with the rotating force transmitter 25 during the working process, a large torque and external force are brought to the rotating transmission shaft 34. The solid steel transmission shaft has the characteristics of high strength and high rigidity, can stably transmit the rotating direction, effectively resist deformation and damage caused by stress, and ensure long-term stable operation of the system.

[0034] The displacement constraint component 4 comprises a guide structure 41, a resistance increasing piece 42, and a stable displacement piece 43. The guide structure 41 is arranged outside the mounting base 1. The closed loop groove structure 13 is internally provided with an extrusion plate 44, and the two ends of the extrusion plate 44 are fixedly connected with displacement pieces 45. The stable displacement piece 43 is arranged inside the closed loop groove structure 13. The displacement pieces 45 are respectively in sliding connection with the stable displacement piece 43 and in threaded connection with the circular thread 32 at the end of the rotary transmission shaft 34. The resistance increasing piece 42 is arranged outside the extrusion plate 44, and the outside of the resistance increasing piece 42 is in sliding connection with the inside of the guide structure 41.

[0035] The displacement constraint component 4 comprises a guide structure 41, a resistance increasing piece 42, and a stable displacement piece 43. The guide structure 41 is arranged outside the mounting base 1. The closed loop groove structure 13 is internally provided with an extrusion plate 44, and the two ends of the extrusion plate 44 are fixedly connected with displacement pieces 45. The stable displacement piece 43 is arranged inside the closed loop groove structure 13. The displacement pieces 45 are respectively in sliding connection with the stable displacement piece 43 and in threaded connection with the circular thread 32 at the end of the rotary transmission shaft 34. The resistance increasing piece 42 is arranged outside the extrusion plate 44, and the outside of the resistance increasing piece 42 is in sliding connection with the inside of the guide structure 41.

[0036] The resistance increasing piece 42 comprises, but is not limited to, a rubber damping piece, a magnetorheological damper, and a friction plate type resistance increasing piece.

[0037] In this embodiment, the resistance increasing piece 42 is preferably a rubber damping piece. Since the displacement constraint component 4 is arranged inside the closed loop groove structure 13, the space is relatively compact. The rubber damping piece is soft in texture and convenient to install, and can easily adapt to complex spatial layout.

[0038] The elastic compensation component 5 comprises a containing groove 51 and a sealing groove 52. The containing groove 51 is arranged on the left and right sides of the movable window frame 12. The containing groove 51 is internally provided with a pushing element 53 for movement compensation. The pushing element 53 is externally fixedly connected with a pushing plate 54, and the pushing plate 54 is externally fixedly connected with a rubber block 55. The sealing groove 52 is arranged on the left and right sides of the mounting base 1.

[0039] The pushing element 53 is placed in the accommodating groove 51 as a core driving component, and can generate a pushing force to move the pushing plate 54 to the sealing groove 52 during the closing process of the door and window, so as to compensate for the gap of the door and window. The pushing plate 54 is fixedly connected with the pushing element 53, and is responsible for transmitting the pushing force of the pushing element 53 to the rubber strip block 55, while ensuring the stable movement of the rubber strip block 55. The rubber strip block 55 is fixed outside the pushing plate 54 and is made of rubber material with good sealing performance. Under the pushing of the pushing plate 54, the rubber strip block 55 is embedded in the sealing groove 52 on the left and right sides of the installation base body 1, tightly fits the gap of the door and window, effectively blocks the conduction of heat and the invasion of dust, rainwater and other pollutants, and realizes good heat insulation and sealing effect. The sealing grooves 52 are distributed on the left and right sides of the installation base body 1, and mainly serve to accommodate the rubber strip block 55 and provide structural support for realizing the sealing of the door and window, and form a sealing space in cooperation with the rubber strip block 55.

[0040] Preferably, the pushing element 53 includes but is not limited to a rubber elastic telescopic tube and an external spring type elastic telescopic tube.

[0041] In this embodiment, the pushing element 53 is preferably an external spring type elastic telescopic tube. The spring of the external spring type elastic telescopic tube is located outside, so that the staff can conveniently check the spring, and quickly repair and replace the spring when the spring is tired, damaged or the like.

[0042] The installation base body 1 is internally provided with a pollution discharge mechanism 6, which includes a flow guide structure 61 and a flow discharge structure 62. The flow guide structure 61 is arranged inside the closed loop groove structure 13, and the flow discharge structure 62 is arranged on the back surface of the installation base body 1. The front surface of the installation base body 1 is provided with an operation groove 63 for cleaning, and the outside of the operation groove 63 is provided with a sealing element 64.

[0043] The flow discharge structure 62 is arranged on the back surface of the installation base body 1 to receive the sewage and sundries delivered by the flow guide structure 61, and discharge them to the outside through a flow discharge port, so as to avoid the accumulation of pollutants in the door and window and the corrosion of the door and window components. The operation groove 63 is arranged on the front surface of the installation base body 1 to provide a space for the staff to operate, so as to facilitate the cleaning of the dirt in the pollution discharge mechanism 6 which is difficult to be automatically discharged. The sealing element 64 is arranged outside the operation groove 63 to prevent dust, rainwater and the like from entering the room through the operation groove 63 when no cleaning operation is performed.

[0044] Preferably, the sealing element 64 includes but is not limited to a hinge type cover plate and a sliding type cover plate.

[0045] In this embodiment, the sealing member 64 is preferably a hinged cover plate. By being connected to one side of the operation groove 63 through a hinge, it can be opened and closed like a door. In use, the cover plate can be easily opened to facilitate cleaning and maintenance of the interior of the operation groove 63 by the staff; after use, the cover plate is closed to achieve good sealing effect by the sealing member 64 to prevent leakage of foreign matter and odor.

[0046] The working principle of the high-strength heat-insulating energy-saving aluminum alloy door and window provided by the utility model is as follows: first, when the user has a window opening requirement, the power output assembly 2 is manually rotated reversely. In this process, the power output assembly 2 transmits the rotary motion to the adjusting assembly 3, and drives the adjusting assembly 3 to rotate synchronously. The rotation of the adjusting assembly 3 promotes the increase of the distance between the displacement constraint assemblies 4, and weakens the restriction on the moving window frame 12. Then, the user can push the moving window frame 12 to slide along the guide strip block 11 installed in the installation base body 1, so as to realize the smooth opening of the door and window. Then, when the door and window need to be closed or the window position needs to be fixed, the power output assembly 2 is manually rotated forwardly. The power output assembly 2 drives the adjusting assembly 3 to rotate, the adjusting assembly 3 controls the distance between the displacement constraint assemblies 4 to be shortened, a strong restriction force is formed on the moving window frame 12, the moving window frame 12 is fixed at the specified position, the effect of closing or positioning the door and window is achieved, and finally, at the moment when the door and window are closed to the position, the elastic compensation assembly 5 installed outside the moving window frame 12 is extruded, the elastic compensation assembly 5 is tightly attached to the door and window gap, and the sealing gap is effectively filled.

[0047] Compared with the related art, the high-strength heat-insulating energy-saving aluminum alloy door and window provided by the utility model has the following beneficial effects:

[0048] The utility model provides a kind of high-strength heat-insulating energy-saving aluminum alloy door and window, through installation base body 1, guide strip block 11, moving window frame 12, closed loop type groove structure 13 etc.assemblies.Installation base body 1 plays the role of support, guide strip block 11 helps moving window frame 12 to slide smoothly.In closed loop type groove structure 13, power output assembly 2 is the energy supply for adjusting assembly 3, adjusting assembly 3 sets the movement range of displacement constraint assembly 4, displacement constraint assembly 4 controls moving window frame 12, prevents it from moving excessively.Elastic compensation assembly 5 outside moving window frame 12 fills sealing gap, improves the sealing and heat insulation of door and window.

[0049] The above-mentioned is only the embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent structure or equivalent process conversion using the contents of the utility model specification and drawings, or direct or indirect application in other related technical fields, are also included in the patent protection range of the utility model.

Claims

1. A high-strength, heat-insulating, energy-saving aluminum alloy door and window, characterized in that, Include: The installation base, guide block, moving window frame, closed loop groove structure, the guide block is installed in the inside of the installation base, the moving window frame is connected with the guide block slidingly, the closed loop groove structure is arranged in the inside of the installation base, the inside of the closed loop groove structure is provided with a power output assembly for providing driving force, the outside of the power output assembly is provided with an adjusting assembly for controlling resistance, the outside of the adjusting assembly is provided with a displacement constraint assembly for limiting the movement of the door and window, the outside of the moving window frame is provided with an elastic compensation assembly for filling the sealing gap.

2. The high-strength, thermally insulated, energy-saving aluminum alloy door and window according to claim 1, characterized in that, The power output assembly includes a limiting plate, a positioning piece, an operating chamber, the limiting plate is installed in the inside of the closed loop groove structure, the positioning piece is installed on the inner wall of the closed loop groove structure, the inside of the positioning piece is movably connected with a rotating piece for rotation, the rotating piece penetrates through the positioning piece and extends to the outside thereof, the outside of the rotating piece is fixedly connected with a rotary force transmitter for providing kinetic energy, the end of the rotary force transmitter is fixedly connected with a transmission piece, the other end of the transmission piece is provided with a cross slot, the transmission piece penetrates through the limiting plate and extends to the outside thereof, the operating chamber is arranged on the front face of the installation base, the outside of the operating chamber is provided with a openable and closable locking piece for preventing others from operating arbitrarily and protecting the internal structure of the power output assembly.

3. The high-strength, thermally insulated, energy-saving aluminum alloy door and window according to claim 1, characterized in that, The adjusting assembly includes a straight bevel gear and a circular thread, the straight bevel gear is arranged in the inside of the closed loop groove structure, the outer surface of the straight bevel gear is engaged with the outer surface of the rotary force transmitter, the outside of the straight bevel gear is fixedly connected with a rotary transmission shaft for transmitting the rotation direction, the outside of the rotary transmission shaft is fixedly connected with a blocking piece, the inner wall of the closed loop groove structure is fixedly connected with a limiting piece for cooperating with the blocking piece to prevent the rotary transmission shaft from falling off, the inside of the limiting piece is movably connected with the outside of the rotary transmission shaft, the circular thread is arranged at the end of the rotary transmission shaft.

4. The high-strength, thermally insulated, energy-saving aluminum alloy door and window according to claim 1, characterized in that, The displacement constraint assembly includes a guide structure, a resistance increasing piece and a stable displacement piece, the guide structure is arranged on the outside of the installation base, the inside of the closed loop groove structure is provided with an extrusion plate, and the two ends of the extrusion plate are fixedly connected with displacement pieces, the stable displacement piece is installed in the inside of the closed loop groove structure, the displacement pieces are respectively connected with the stable displacement piece slidingly, and are threadedly connected with the circular thread at the end of the rotary transmission shaft, the resistance increasing piece is installed on the outside of the extrusion plate, the outside of the resistance increasing piece is slidingly connected with the inside of the guide structure.

5. The high-strength, thermally insulated, energy-saving aluminum alloy door and window according to claim 1, characterized in that, The elastic compensation assembly includes a containing groove and a sealing groove, the containing groove is arranged on the left and right sides of the moving window frame, the inside of the containing groove is provided with a pushing element for moving compensation, the outside of the pushing element is fixedly connected with a pushing plate, the outside of the pushing plate is fixedly connected with a rubber block, and the sealing groove is arranged on the left and right sides of the installation base.

6. The high-strength, thermally insulated, energy-saving aluminum alloy door and window according to claim 1, characterized in that, The installation base body is internally provided with a pollution discharge mechanism, which comprises a flow guide structure and a flow discharge structure, the flow guide structure is arranged in the inside of the closed loop type groove structure, the flow discharge structure is arranged on the back of the installation base body, the front of the installation base body is provided with an operation groove for cleaning, and the outside of the operation groove is provided with a sealing piece.