An all-purpose system window capable of opening in multiple directions

By designing a multi-directional all-round system window, combining the outer frame, inner frame, sliding components and connecting components, the problem of the all-round system window not being able to combine the outer hanging window is solved, and the flexible conversion of the window sash and ventilation effect is improved.

CN120231468BActive Publication Date: 2025-09-02FOSHAN BOSHI CO LTD
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Patent Information

Application Number
CN202510705515.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-29
Publication Date
2025-09-02
Estimated Expiration
2045-05-29

AI Technical Summary

Technical Problem

The existing all-round system window cannot be combined with the form of an externally opened lower hanging window, which limits its applicability in diverse use scenarios.

Method used

A multi-directional all-round system window is designed. Through the combination of outer frame, inner frame, sliding components and connecting components, the flexible conversion of the window sash from the inward inverted state to the outward-opening and downward-hanging state is achieved, increasing the opening method of the form, improving ventilation effect and flexibility in use.

Benefits of technology

The window sash is smoothly converted from the inward inward state to the outward-opening and downward-hanging state, which enhances ventilation effect and flexibility in use, meets different ventilation needs, and effectively prevents rainwater from entering the room in wind and rainy weather.

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Abstract

This application relates to the technical field of door and window equipment, and specifically discloses a multi-directionally openable all-purpose system window, which includes an outer frame, a window body, and a sliding assembly. The window body includes an inner frame and a window sash hinged to the inner frame. The window sash can rotate relative to the inner frame to open and tilt inward. The sliding assembly is fixedly connected to the outer and inner frames and is used to move the inner frame toward the outside so that the window sash in the tilted state is opened outward and hung downward relative to the outer frame. This application has the effect of improving the problem that existing all-purpose system windows cannot be combined with bottom-hung windows.
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Description

Technical Field

[0001] The present application relates to the technical field of door and window equipment, and in particular to an all-purpose system window that can be opened in multiple directions. Background Art

[0002] All-purpose system windows are suitable for a variety of scenarios such as residential, commercial, public and industrial buildings, and can be customized according to different building types and climatic conditions. Existing all-purpose system windows are usually inward-opening and inward-tilting windows, such as the inward-opening and inward-tilting windows with application number CN202223569725.1, which can be pushed / pulled by turning the handle to form an inward-opening state or an inward-tilting state.

[0003] However, the all-purpose system windows still have many limitations in actual use. For example, the existing all-purpose system windows can only be opened and tilted inwards, and cannot be combined with the outward-opening bottom-hung window form, which limits their applicability in various usage scenarios. Summary of the Invention

[0004] In order to improve the problem that the existing all-purpose system window cannot be combined with the bottom-hung window, the present application provides an all-purpose system window that can be opened in multiple directions.

[0005] The present application provides a multi-directionally openable all-purpose system window that adopts the following technical solutions:

[0006] An all-purpose system window capable of opening in multiple directions, comprising:

[0007] outer frame;

[0008] The window body comprises an inner frame and a window sash hinged to the inner frame, wherein the window sash can be rotated relative to the inner frame to be opened and tilted inward;

[0009] The sliding assembly is fixedly connected to the outer frame and the inner frame, and is used to move the inner frame toward the outside, so that the window sash in the inward tilted state is in the outward open and downward hanging state relative to the outer frame.

[0010] By adopting the above technical solution, the outer frame serves as the supporting structure of the entire window body, providing an installation base for the inner frame and window sash, and at the same time plays a role in fixing the position of the window body in the wall, ensuring the overall stability and safety of the window; the inner frame provides a supporting structure for the window sash to be installed and rotated, and at the same time plays a certain sealing and heat insulation role. The window sash is hinged with the inner frame to realize the functions of opening and closing, and can be rotated relative to the inner frame to achieve an inward-tilted window opening state to meet ventilation and other needs; the sliding component is fixedly connected to the outer frame and the inner frame, and is used to move the inner frame toward the outdoors, so that the window sash in the inward-tilted state is in an outward-opened and down-hung state relative to the outer frame, realizing a flexible conversion of the window sash from the inward-tilted state to the outward-opened and down-hung state, increasing the opening methods of the window, and further improving the ventilation effect and flexibility of use. When a larger ventilation volume or special ventilation needs are required, the outward-opened and down-hung state can allow air to enter the room more smoothly, realizing multiple opening states, and improving the problem that the existing all-purpose system window cannot be combined with the bottom-hung window form.

[0011] Preferably, the sliding assembly includes a first slide rail, the track of the first slide rail is fixedly connected to the outer frame, and the first slide rail is used to limit the movement direction of the inner frame, so that the inner frame moves toward the outdoors to change the position of the window sash relative to the outer frame.

[0012] By adopting the above technical solution, the track of the first slide rail is fixedly connected to the outer frame, providing a sliding track for the slider, which plays a guiding and supporting role, ensuring that the slider can slide smoothly along a predetermined path, avoiding the inner frame from deflecting or shaking during the sliding process, ensuring the smooth movement of the inner frame, and bearing the weight of the inner frame and the window sash and the force generated during movement; the slider of the first slide rail is slidably connected to the inner frame, and by sliding on the track, drives the inner frame to move toward the outdoors, thereby changing the position of the window sash relative to the outer frame, realizing rapid adjustment of the window sash position, and improving the flexibility of use of the window; through the cooperation of the track and the slider, the movement direction of the inner frame is limited, that is, it moves along the track toward the outdoors, thereby changing the position of the window sash relative to the outer frame, realizing a special opening method of the window, ensuring that the window sash can smoothly transition from the inward-tilted state to the outward-opened and down-hanging state, meeting different ventilation needs. For example, in windy and rainy weather, the outward-opened and down-hanging state can effectively prevent rainwater from entering the room, while achieving good ventilation effect.

[0013] Preferably, the sliding assembly also includes a second slide rail, the track of the second slide rail is fixedly connected to the slider of the first slide rail, the slider of the second slide rail is fixedly connected to the inner frame, and the second slide rail is used to limit the movement direction of the inner frame, so that the inner frame moves toward the outdoors to change the position of the window sash relative to the outer frame.

[0014] By adopting the above technical solution, the track of the second slide rail is fixedly connected to the slider of the first slide rail, and the slider of the second slide rail is fixedly connected to the inner frame, so that the inner frame can achieve further movement through the second slide rail in addition to the basic stroke provided by the first slide rail, thereby significantly increasing the total movement stroke of the inner frame, allowing the window to be completely moved out of the range of the outer frame, achieving a larger opening space, and providing a larger ventilation area.

[0015] Preferably, a connecting assembly is further included, the connecting assembly includes a first connecting member and a second connecting member, the first connecting member is used to limit the maximum distance between the inner frame and the outer frame, and the second connecting member is used for drying clothes.

[0016] By adopting the above technical solution, the first connecting member can limit the maximum distance of the inner frame relative to the outer frame, ensuring that the inner frame will not exceed the predetermined range during the sliding process, and preventing the window from separating from the sliding assembly; the drying function of the second connecting member provides additional convenience for users, and can meet the daily needs of users without taking up too much indoor space, and is especially suitable for living environments with limited space.

[0017] Preferably, the first connecting member is in a strip shape, and two ends of the first connecting member are respectively fixedly connected to the side wall of the track of the first slide rail and the inner frame to limit the maximum distance of the inner frame relative to the outer frame.

[0018] By adopting the above technical solution, the two ends of the first connecting member are respectively fixed on the track side walls and the inner frame of the first sliding rail. The inner frame can be constrained by the first connecting member during the sliding process, thereby limiting its maximum movement distance relative to the outer frame, preventing the inner frame from leaving the track due to external force or improper operation during the sliding process, thereby avoiding the risk of the window sash loosening or falling off, and ensuring the stability and safety of the window during use.

[0019] Preferably, the first connecting member is a safety rope.

[0020] By adopting the above technical solution, the safety rope limits the maximum movement distance of the inner frame relative to the outer frame through the fixed connection at both ends, preventing the inner frame from sliding excessively, thereby preventing the window sash from exceeding the predetermined range during the opening or closing process, and playing a similar "insurance" role. Even if there is an accident with other connecting parts, the safety rope can prevent the inner frame from falling off, ensuring safe use.

[0021] Preferably, the second connecting member is a polyamide fiber woven mesh, and the second connecting member is fixedly connected to the outer wall of the track of the second slide rail.

[0022] By adopting the above technical solution, the second connecting part is woven with polyamide fiber. The polyamide fiber woven mesh has high strength and high modulus, can withstand large tension and pressure, and has a long service life. Polyamide fiber has good chemical corrosion resistance and can be used for a long time in various environments. The polyamide fiber woven mesh has good load-bearing capacity and air permeability, and can be conveniently used for drying clothes.

[0023] Preferably, an escape portion is provided at one end of the second connecting member close to the second slide rail, and the escape portion is used for allowing the first connecting member to pass through and to escape the first connecting member.

[0024] By adopting the above technical solution, the design of the avoidance portion allows the first connecting member (such as a safety rope) to pass through smoothly, avoiding spatial conflict between the two, ensuring that the first connecting member and the second connecting member are installed in the window structure at the same time without interfering with each other, and realizing the integration of multiple functional components in a limited space to avoid space waste; and can prevent the first connecting member and the second connecting member from rubbing or colliding during the movement of the window (such as sliding of the inner frame), thereby protecting the structural integrity of the first connecting member and the second connecting member and extending their service life.

[0025] Preferably, a shielding piece is further included. The shielding piece is arranged on a side of the outer frame close to the interior of the room. The shielding piece is fixedly connected to the outer frame and is used to block rainwater on the outer frame to prevent rainwater from flowing into the room.

[0026] By adopting the above technical solution, the main function of the shielding sheet is to block rainwater on the outer frame, prevent rainwater from flowing into the room through the gap between the outer frame and the window, improve the waterproof performance of the window, avoid indoor moisture and water accumulation, and optimize the living environment.

[0027] Preferably, the shielding sheet is a metal sheet.

[0028] By adopting the above technical solution, the metal sheet has good waterproof performance, can effectively block rainwater and protect the indoor environment, and has high strength and good mechanical properties, can withstand certain forces and deformations, and can adapt to various severe weather conditions.

[0029] In summary, this application includes at least one of the following beneficial technical effects:

[0030] The outer frame serves as the supporting structure of the entire window, providing an installation base for the inner frame and window sash, and at the same time plays a role in fixing the position of the window in the wall, ensuring the overall stability and safety of the window; inner frame: the inner frame cooperates with the outer frame to provide a supporting structure for the installation and rotation of the window sash, and at the same time plays a certain sealing and heat insulation role. The window sash is hinged with the inner frame to realize the function of opening and closing, and can be rotated relative to the inner frame to achieve an inward-tilted window opening state to meet ventilation and other needs; the sliding assembly is fixedly connected to the outer frame and the inner frame, and is used to move the inner frame toward the outdoors, so that the window sash in the inward-tilted state is in an outward-opened and down-hung state relative to the outer frame, realizing flexible conversion of the window sash from the inward-tilted state to the outward-opened and down-hung state, increasing the opening methods of the window, and further improving the ventilation effect and flexibility of use. When a larger ventilation volume or special ventilation needs are required, the outward-opened and down-hung state can allow air to enter the room more smoothly, realizing multiple opening states, and improving the problem that the existing all-purpose system window cannot be combined with the bottom-hung window form;

[0031] The track of the first slide rail is fixedly connected to the outer frame, providing a sliding track for the slider, playing a role of guidance and support, ensuring that the slider can slide smoothly along a predetermined path, avoiding deviation or shaking of the inner frame during the sliding process, ensuring the smooth movement of the inner frame and bearing the weight of the inner frame and the window sash and the force generated during movement; the slider of the first slide rail is slidably connected to the inner frame, and drives the inner frame to move toward the outside by sliding on the track, thereby changing the position of the window sash relative to the outer frame, realizing rapid adjustment of the position of the window sash and improving the flexibility of use of the window; through the cooperation of the track and the slider, the movement direction of the inner frame is limited, that is, it moves toward the outside along the track, thereby changing the position of the window sash relative to the outer frame, realizing a special opening method of the window, ensuring that the window sash can smoothly transition from the inward-tilted state to the outward-opened and lowered state, meeting different ventilation needs. For example, in windy and rainy weather, the outward-opened and lowered state can effectively prevent rainwater from entering the room, while achieving good ventilation effect;

[0032] The track of the second slide rail is fixedly connected to the slider of the first slide rail, and the slider of the second slide rail is fixedly connected to the inner frame. The second slide rail is used to limit the movement direction of the inner frame, so that the inner frame moves toward the outside to change the position of the window sash relative to the outer frame. BRIEF DESCRIPTION OF THE DRAWINGS

[0033] Figure 1 1. This is a structural diagram of a multi-directionally openable all-purpose system window in an embodiment of the present application in an inward-tilted state from an outdoor perspective;

[0034] Figure 2 1 is a structural diagram of an all-purpose system window capable of multi-directional opening in an embodiment of the present application, viewed from one side of an interior of the room in an inwardly opened state;

[0035] Figure 3This is a structural diagram of an all-purpose system window capable of multi-directional opening in an embodiment of the present application in an outward-opening, downward-hung state from an indoor side perspective;

[0036] Figure 4 Schematic diagram of the structure of the sliding assembly in the embodiment of the present application;

[0037] Figure 5 yes Figure 1 Schematic diagram of the enlarged structure of A in the figure.

[0038] Explanation of the accompanying drawings: 1. Outer frame; 2. Window body; 21. Inner frame; 22. Window sash; 3. Sliding assembly; 31. First slide rail; 32. Second slide rail; 4. Connecting assembly; 41. First connecting member; 42. Second connecting member; 43. Avoidance portion; 5. Shielding piece. DETAILED DESCRIPTION

[0039] The following is combined with Figure 1-5 This application is described in further detail.

[0040] The embodiment of the present application discloses an all-purpose system window that can be opened in multiple directions. Figure 1 The multi-directionally openable all-purpose system window includes an outer frame 1, a window body 2, a sliding component 3 and a connecting component 4.

[0041] like Figure 1 As shown, the outer frame 1 is a rectangular metal frame; for example, the outer frame 1 can be set in, including but not limited to, holes reserved in the wall or on other metal supports. The outer frame 1 serves as a supporting structure for the entire window 2, providing an installation basis for the inner frame 21 and the window sash 22, and at the same time plays a role in fixing the position of the window 2 in the wall or on other metal supports, thereby ensuring the overall stability and safety of the window 2.

[0042] like Figure 1 As shown, the window body 2 includes an inner frame 21 and a window sash 22 hinged to the inner frame 21. The window sash 22 can be rotated relative to the inner frame 21 to open and tilt inward. The inner frame 21 provides a support structure for the installation and rotation of the window sash 22, and at the same time plays a certain sealing and heat insulation role. The window sash 22 is hinged to the inner frame 21 to realize the function of opening and closing, and can be rotated relative to the inner frame 21 to achieve an inward-tilted window opening state to meet ventilation and other needs.

[0043] It should be noted that the window 2 in the embodiment of the present application is specifically an inward-opening and tilting window. In addition to being able to rotate relative to the inner frame 21 to open and be in an inward-tilted state, it can also be able to rotate relative to the inner frame 21 to open and be in an inward-opening state.

[0044] For example, the window 2 in the present application includes, but is not limited to, the following structures to achieve inward opening and tilting: the window sash 22 is connected to the inner frame 21 via a hinge, and the hinge is installed inside the inner frame 21, so that the window sash 22 can rotate in the horizontal direction to achieve the inward opening function. At the same time, the window sash 22 is also connected to the inner frame 21 via a sliding track and / or a locking device, so that the window sash 22 can slide along the track and tilt to a certain angle to achieve the inward tilting function. By operating the handle of the window sash 22, the corresponding movement of the hardware actuator can be driven, so that the window sash 22 can be opened inward or tilted inward, and opened to a certain angle to achieve the effect of ventilation. Every time the handle is rotated, the hardware inside the window sash 22 will be driven. When the handle is vertically downward, the window sash 22 is in a locked state; when the handle is horizontal to the ground, the window sash 22 opens inward; when the handle is vertically upward, the window sash 22 tilts inward; inward-opening and tilting windows are existing technology, and the window body 2 in this application is an inward-opening and tilting window that can be opened and tilted inward, which will not be described here.

[0045] For details, please refer to Figure 1 and Figure 2 Through the inward opening function and inward tilting function of the window 2 itself, the multi-directionally openable all-purpose system window can realize two-way opening of inward opening and inward tilting.

[0046] like Figure 3 and Figure 4 As shown, the sliding component 3 is fixedly connected to the outer frame 1 and the inner frame 21, and is used to move the inner frame 21 toward the outdoors, so that the window sash 22 in the inward tilted state is in an outward open and hanging state relative to the outer frame 1; the sliding component 3 is fixedly connected to the outer frame 1 and the inner frame 21, and is used to move the inner frame 21 toward the outdoors, so that the window sash 22 in the inward tilted state is in an outward open and hanging state relative to the outer frame 1, realizing the flexible conversion of the window sash 22 from the inward tilted state to the outward open and hanging state, increasing the opening methods of the window body 2, further improving the ventilation effect and flexibility of use, and when a larger ventilation volume or special ventilation needs are required, the outward open and hanging state can allow air to enter the room more smoothly, realizing multiple opening states, and improving the problem that the existing all-purpose system window cannot be combined with the bottom-hung window form.

[0047] Specifically, windows with outward-opening and downward-hanging ventilation allow for greater ventilation. When fully opened, the ventilation area is large and the ventilation effect is significant, opening up the space to the greatest extent possible and allowing fresh air and sunlight to flow into the room, creating a broad field of vision and a sense of transparency. In comparison, tilt-in windows can also provide ventilation when tilted inward, but their opening angle is smaller and the ventilation volume is relatively low. In addition, the outward-opening and downward-hanging state does not take up indoor space, making it particularly suitable for small apartments or compact rooms. However, the tilt-in state will take up a certain amount of indoor space when opened, which may affect the use of indoor facilities such as curtains and curtain rods. Moreover, the outward-opening and downward-hanging state can more effectively prevent rainwater from entering the room compared to the tilt-in and inward-opening states.

[0048] In an embodiment of the present application, the sliding assembly 3 includes a first slide rail 31 and a second slide rail 32. The track of the first slide rail 31 is fixedly connected to the outer frame 1. The first slide rail 31 is used to limit the movement direction of the inner frame 21, so that the inner frame 21 moves toward the outdoors to change the position of the window sash 22 relative to the outer frame 1. The track of the second slide rail 32 is fixedly connected to the slider of the first slide rail 31. The slider of the second slide rail 32 is fixedly connected to the inner frame 21. The second slide rail 32 is used to limit the movement direction of the inner frame 21, so that the inner frame 21 moves toward the outdoors to change the position of the window sash 22 relative to the outer frame 1.

[0049] Exemplarily, the first slide rail 31 and the second slide rail 32 are both unpowered metal linear guides or ball linear guides. The track of the first slide rail 31 is fixedly connected to the outer frame 1 to provide a sliding track for the slider, which plays a guiding and supporting role, ensuring that the slider can slide smoothly along a predetermined path, avoiding deviation or shaking of the inner frame 21 during the sliding process, ensuring the smooth movement of the inner frame 21, and bearing the weight of the inner frame 21 and the window sash 22 and the force generated during movement; the slider of the first slide rail 31 is slidably connected to the inner frame 21, and drives the inner frame 21 to move toward the outdoors by sliding on the track, thereby changing the position of the window sash 22 relative to the outer frame 1, realizing rapid adjustment of the position of the window sash 22, and improving the flexibility of use of the window 2; through the cooperation of the track and the slider, the movement direction of the inner frame 21 is limited, that is, along The track moves toward the outdoors, thereby changing the position of the window sash 22 relative to the outer frame 1, realizing a special opening method of the window 2, and ensuring that the window sash 22 can smoothly transition from the inward-tilted state to the outward-opened and downward-hanging state to meet different ventilation needs. For example, in windy and rainy weather, the outward-opened and downward-hanging state can more effectively prevent rainwater from entering the room than the inward-tilted state, while achieving a good ventilation effect; the track of the second slide rail 32 is fixedly connected to the slider of the first slide rail 31, and the slider of the second slide rail 32 is fixedly connected to the inner frame 21, so that the inner frame 21 can achieve further movement through the second slide rail 32 in addition to the basic stroke provided by the first slide rail 31, thereby significantly increasing the total movement stroke of the inner frame 21, so that the window 2 can be completely moved out of the range of the outer frame 1, achieving a larger opening space and providing a larger ventilation area.

[0050] In the embodiment of the present application, four sliding components 3 are provided, of which two groups of sliding components 3 are provided at the top of the inner frame 21, and the other two groups of sliding components 3 are provided at the bottom of the inner frame 21. The four groups of sliding components 3 are evenly distributed at the top and bottom of the inner frame 21, which can disperse the resultant force acting on the inner frame 21 to multiple support points, reduce single-point force, improve the stability of the overall structure, and ensure that the inner frame 21 will not shake or deflect during the sliding process, thereby ensuring the smooth movement of the window 2.

[0051] For details, please refer to Figure 3 By moving the window body 2 toward the outdoors, the window sash 22 can be converted from an inward-tilted state relative to the inner frame 21 to an outward-opened and downward-hung state relative to the outer frame 1, that is, the multi-directionally openable all-purpose system window can be converted from an inward-tilted state to an outward-opened and downward-hung state, so that the multi-directionally openable all-purpose system window can realize three-way opening of inward opening, inward tilting and outward opening and downward hanging, thereby improving the problem that the existing all-purpose system window cannot be combined with the form of a downward-hung window.

[0052] It should be noted that there is a certain friction between the track and the slider of the first slide rail 31 to avoid relative sliding of the track and the slider of the first slide rail 31 under the action of wind, and there is a certain friction between the track and the slider of the second slide rail 32 to avoid relative sliding of the track and the slider of the second slide rail 32 under the action of wind, thereby preventing the multi-directionally openable all-purpose system window from changing from an inward-tilted state to an outward-opened, downward-hanged state under the action of wind, or preventing the multi-directionally openable all-purpose system window from changing from an outward-opened, downward-hanged state to an inward-tilted state under the action of wind.

[0053] like Figure 4 and Figure 5 As shown, the connecting component 4 includes a first connecting member 41 and a second connecting member 42. The first connecting member 41 is used to limit the maximum distance of the inner frame 21 relative to the outer frame 1, and the second connecting member 42 is used for drying clothes. The first connecting member 41 can limit the maximum distance of the inner frame 21 relative to the outer frame 1, ensuring that the inner frame 21 does not exceed a predetermined range during the sliding process, thereby preventing the window 2 from separating from the sliding component 3. The drying function of the second connecting member 42 provides additional convenience for users, and can meet the daily needs of users without taking up too much indoor space. It is particularly suitable for living environments with limited space.

[0054] In the embodiment of the present application, the first connecting member 41 is a strip-shaped safety rope, and the two ends of the first connecting member 41 are fixedly connected to the side walls of the track of the first slide rail 31 and the inner frame 21 through structures or devices such as anchor points, rope fixers or rope seats to limit the maximum distance of the inner frame 21 relative to the outer frame 1; the two ends of the first connecting member 41 are respectively fixed on the side walls of the track of the first slide rail 31 and the inner frame 21, and the inner frame 21 can be constrained by the first connecting member 41 during the sliding process, thereby limiting its maximum movement distance relative to the outer frame 1, preventing the inner frame 21 from leaving the track due to external force or improper operation during the sliding process, thereby avoiding the risk of the window sash 22 loosening or falling off, and ensuring the stability and safety of the window 2 during use; and the first connecting member 41 can also play a role similar to "insurance". Even if there is an accident with other connecting components, the safety rope can prevent the inner frame 21 from falling off, ensuring safe use.

[0055] In an embodiment of the present application, the second connecting member 42 is a polyamide fiber woven mesh. The second connecting member 42 is horizontally arranged. The two ends of the second connecting member 42 are respectively fixedly connected to the two sliding components 3 at the bottom of the inner frame 21. The second connecting member 42 and the bottom of the inner frame 21 are provided with a gap for clothes or hangers to pass through.

[0056] Specifically, the two sides of the second connecting member 42 are fixedly connected to the outer walls of the track of the second slide rail 32 located on both sides of the bottom of the inner frame 21. The second connecting member 42 is woven with polyamide fiber. The polyamide fiber woven mesh has high strength and high modulus, can withstand large tension and pressure, and has a long service life. Polyamide fiber has good chemical corrosion resistance and can be used for a long time in various environments. The polyamide fiber woven mesh has good load-bearing capacity and air permeability, and can be conveniently used for drying clothes.

[0057] In the embodiment of the present application, the second connecting member 42 is provided with an avoidance portion 43 at both ends near the two second slide rails 32. The avoidance portion 43 is used for allowing the first connecting member 41 to pass through and avoid the first connecting member 41; specifically, the avoidance portion 43 is not provided with a polyamide fiber woven mesh, thereby allowing the first connecting member 41 to pass through smoothly, avoiding spatial conflict between the two, ensuring that the first connecting member 41 and the second connecting member 42 are installed in the window 2 structure at the same time without interfering with each other, realizing the integration of multiple functional components in a limited space, and avoiding space waste; and can prevent the first connecting member 41 and the second connecting member 42 from friction or collision during the movement of the window 2, protecting the structural integrity of the first connecting member 41 and the second connecting member 42, and extending their service life.

[0058] Specifically, the user can stuff the clothes into the gap between the second connecting piece 42 and the inner frame 21, and then unfold the clothes. Some of the clothes that are too long can hang down naturally, and the position of the clothes is restricted by the abutment between the second connecting piece 42 and the inner frame 21. At this time, the second connecting piece 42 acts as a clothes hanger; or, the user can place the clothes on the hanger and then hang the hanger on the second connecting piece 42, so that the clothes can hang down naturally. At this time, the second connecting piece 42 acts as a clothes drying rod.

[0059] like Figure 3 As shown, the shielding piece 5 is arranged on the side of the outer frame 1 close to the interior, and the shielding piece 5 is fixedly connected to the outer frame 1. The shielding piece 5 is used to block rainwater on the outer frame 1, preventing rainwater from flowing into the interior through the gap between the outer frame 1 and the window 2, thereby improving the waterproof performance of the window 2, avoiding indoor moisture and water accumulation, and optimizing the living environment.

[0060] Exemplarily, the shielding sheet 5 is a metal sheet, a polyester film or a wood sheet; in the embodiment of the present application, the shielding sheet 5 is a metal sheet, which has good waterproof performance, can effectively block rainwater, protect the indoor environment, and has high strength and good mechanical properties, can withstand certain forces and deformations, and can adapt to various severe weather conditions.

[0061] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. An all-purpose system window that can be opened in multiple directions, characterized in that: include: outer frame (1); The window body (2) comprises an inner frame (21) and a window sash (22) hinged to the inner frame (21), wherein the window sash (22) can be rotated relative to the inner frame (21) to be opened and tilted inward; A sliding assembly (3) is fixedly connected to the outer frame (1) and the inner frame (21), and is used to move the inner frame (21) toward the outside, so that the window sash (22) in the inward tilted state is in an outward open and downward hanging state relative to the outer frame (1); The sliding assembly (3) includes a first slide rail (31), the track of the first slide rail (31) is fixedly connected to the outer frame (1), and the first slide rail (31) is used to limit the movement direction of the inner frame (21), so that the inner frame (21) moves toward the outside of the room, thereby changing the position of the window sash (22) relative to the outer frame (1); The sliding assembly (3) further comprises a second slide rail (32), the track of the second slide rail (32) being fixedly connected to the slider of the first slide rail (31), the slider of the second slide rail (32) being fixedly connected to the inner frame (21), and the second slide rail (32) being used to limit the movement direction of the inner frame (21) so as to move the inner frame (21) toward the outside of the room, thereby changing the position of the window sash (22) relative to the outer frame (1); By cooperating with the track and the slider, the movement direction of the inner frame (21) is limited, that is, it moves toward the outside along the track, thereby changing the position of the window sash (22) relative to the outer frame (1), realizing a special opening mode of the window body (2), ensuring that the window sash (22) can smoothly transition from the inward tilted state to the outward open and hanging state, meeting different ventilation requirements. For example, in windy and rainy weather, the outward open and hanging state can more effectively prevent rainwater from entering the room compared to the inward tilted state, while achieving a good ventilation effect. In addition to the basic travel provided by the first slide rail (31), the inner frame (21) can also achieve further movement through the second slide rail (32), thereby increasing the total movement travel of the inner frame (21) and enabling the window (2) to completely move out of the range of the outer frame (1); The shielding piece (5) is also included. The shielding piece (5) is arranged on a side of the outer frame (1) close to the interior. The shielding piece (5) is fixedly connected to the outer frame (1). The shielding piece (5) is used to shield rainwater on the outer frame (1) to prevent rainwater from flowing into the interior. The shielding sheet (5) is a metal sheet.

2. The multi-directionally openable all-purpose system window according to claim 1, characterized in that: The invention also includes a connecting assembly (4), which includes a first connecting member (41) and a second connecting member (42). The first connecting member (41) is used to limit the maximum distance between the inner frame (21) and the outer frame (1), and the second connecting member (42) is used for hanging clothes.

3. The multi-directionally openable all-purpose system window according to claim 2, characterized in that: The first connecting member (41) is strip-shaped, and both ends of the first connecting member (41) are fixedly connected to the side wall of the track of the first slide rail (31) and the inner frame (21) respectively to limit the maximum distance of the inner frame (21) relative to the outer frame (1).

4. The multi-directionally openable all-purpose system window according to claim 2, characterized in that: The first connecting member (41) is a safety rope.

5. The multi-directionally openable all-purpose system window according to claim 2, characterized in that: The second connecting member (42) is a polyamide fiber braided mesh, and the second connecting member (42) is fixedly connected to the outer wall of the track of the second slide rail (32).

6. The multi-directionally openable all-purpose system window according to claim 5, characterized in that: An avoidance portion (43) is provided at one end of the second connecting member (42) close to the second slide rail (32). The avoidance portion (43) is used for allowing the first connecting member (41) to pass through and avoid the first connecting member (41).

Citation Information

Patent Citations

  • Inward tilt-turn window

    CN219711341U

  • Inward opening and inward reversing window

    CN108825071A

  • Ultra-low energy consumption system window with changeable heat gain coefficient

    CN214303489U

  • Opening and closing structure of aluminum alloy window

    CN220726096U