Mosquito net framework and mosquito net
By introducing load-bearing rods and connecting components into the mosquito net frame, a stable triangular or arched structure is formed, which solves the problems of sagging top of the mosquito net and deformation of the columns, improves the comfort and structural stability of the mosquito net, and extends its service life.
Patent Information
- Application Number
- CN202422858393.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2034-11-22
AI Technical Summary
The top of traditional mosquito nets tends to sag, taking up internal space and affecting user comfort. In addition, the columns are easily deformed or broken, resulting in a short service life.
A load-bearing rod and a connecting assembly, including sleeve one and sleeve two, are introduced into the mosquito net frame to form a stable triangular or arched structure, evenly disperse gravity, and improve structural stability and wind resistance.
Significantly improve the top space of the mosquito net, enhance user comfort, extend service life, structural stability and wind resistance, and facilitate disassembly, assembly and maintenance.
Smart Images

Figure CN223310950U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of daily necessities, and particularly relates to a mosquito net frame and a mosquito net. Background Art
[0002] As people's living standards improve, their demands for daily necessities are becoming increasingly demanding. Using mosquito nets to prevent mosquito bites has become a popular choice for many families, especially in the summer. Traditional mosquito nets often utilize simple support structures, such as four columns directly supporting the four corners. While this design is simple and easy to use, it suffers from numerous shortcomings in actual use. For example, the lack of top support causes the top of the net to sag, occupying interior space and impacting user comfort. Furthermore, since all weight is concentrated on the four columns, they are prone to deformation or breakage after prolonged use, reducing the product's lifespan. To address these issues, a number of improved mosquito net frame designs have emerged on the market. However, these designs are often complex, costly, and inconvenient for users to assemble and disassemble. Furthermore, to a certain extent, they still fail to effectively address the top load-bearing issue.
[0003] Chinese patent publication number CN219661323U discloses a connecting frame for household mosquito nets. The frame comprises a first fixing member, a second fixing member, and a rod. The first fixing member includes two hinged connection ports. The second fixing member includes three connection ports and a second base, at least one of which is rotatable about the second base and restrained by a stopper. Multiple groups of rods can be detachably connected to the first and second fixing members to form a polygonal structure. The mosquito net on top of this device tends to sag, occupying internal space. Therefore, a solution to this technical problem is urgently needed by those skilled in the art. Utility Model Content
[0004] The technical problem to be solved by the present invention is that in the above-mentioned prior art, the top mosquito net is supported by a horizontal rod, which easily causes the top mosquito net to sag, occupying the internal space of the mosquito net and affecting the user experience.
[0005] In order to solve the above technical problems, the technical solution adopted by the present invention is:
[0006] A mosquito net frame comprises a cross bar, a vertical bar, a load-bearing bar and a connecting assembly; the load-bearing bar is located at the top of the mosquito net frame, the vertical bar connects the cross bar and the load-bearing bar together through the connecting assembly, and the connecting assembly comprises a first sleeve and a second sleeve, the first sleeve connects the cross bar and the vertical bar at the bottom of the mosquito net frame, and the second sleeve connects the cross bar, the vertical bar and the load-bearing bar at the top of the device.
[0007] By adopting the above technical solution, a load-bearing rod is set at the top, which can effectively increase the space at the top of the mosquito net, making the interior of the mosquito net more spacious. The user will not feel depressed when moving in the mosquito net, which improves the comfort of use. The design of the load-bearing rod evenly distributes the gravity of the mosquito net to each support point, reduces the pressure on a single vertical rod, enhances the structural stability of the entire skeleton, and avoids deformation or damage caused by excessive local force. Since the gravity is better distributed, the wear and tear on key components such as the vertical rod is reduced, thereby extending the service life of the mosquito net skeleton. The connecting component adopts the design of sleeve one and sleeve two to achieve rapid connection and separation between the horizontal rod, vertical rod and load-bearing rod, which is convenient for users to disassemble and assemble the mosquito net at any time according to their needs. It is suitable for daily use in the family and is also easy to carry when traveling. The arched load-bearing rod design not only increases functionality, but also improves the overall aesthetics, making the mosquito net look more refined and in line with the needs of modern home decoration.
[0008] Furthermore, the sleeve 1 is a three-way pipe including two horizontal mounting holes and one vertical mounting hole. A total of four sleeves are installed at the bottom of the mosquito net frame, the cross bar is installed in the horizontal mounting hole, and the vertical bar is installed in the vertical mounting hole.
[0009] By adopting the above technical solution, each tee pipe fixes two horizontal rods through two horizontal mounting holes and fixes one vertical rod through one vertical mounting hole, forming a stable triangular structure, which greatly enhances the supporting force of the bottom of the mosquito net. The connection points of the horizontal rods and the vertical rods are fixed through the tee pipe, so that the pressure is evenly distributed on multiple points, avoiding excessive pressure on a single connection point and improving the stability of the overall structure. The design of the tee pipe allows the horizontal rods and vertical rods to be quickly inserted and removed without the need for complicated tools, and users can easily complete assembly and disassembly. The unified mounting hole design allows horizontal rods and vertical rods of different lengths to be used interchangeably, improving the versatility and flexibility of the components. The tee pipe has a compact structure and takes up little space. Even after disassembly, the various components can be easily stored without taking up too much storage space. Due to its easy disassembly and assembly, this design is particularly suitable for travel or outdoor use, and users can easily carry and install the mosquito net.
[0010] Furthermore, two bearing rods are provided, each bearing rod is an arched structure, and a connecting rod is provided between the two bearing rods.
[0011] By adopting the above technical solution, the arch design can effectively increase the space at the top of the mosquito net, making the interior of the mosquito net more spacious. The user will not feel oppressed when moving in the mosquito net, which improves the comfort of use. The arch structure can better disperse the gravity of the mosquito net cloth, avoiding the concentration of gravity on a certain point, thereby reducing the pressure on the vertical rod and improving the stability of the overall structure. The provision of two bearing rods can provide stronger support force, ensure the stability of the top structure of the mosquito net, and avoid deformation or damage caused by uneven force on a single bearing rod. A connecting rod is provided between the two bearing rods to further enhance the rigidity of the entire top structure and prevent the bearing rod from being bent during use. Lateral displacement or bending occurs in the mosquito net, which improves the overall wind resistance and stability. The design of the arch structure and connecting rod makes the gravity and external force evenly distributed, reduces local stress concentration, and thus extends the service life of the mosquito net frame. Usually, the load-bearing rod and the connecting rod are made of high-strength materials, which further improves the durability of the structure and makes the mosquito net frame more sturdy and durable. The combined design of the load-bearing rod and the connecting rod allows each component to be disassembled and assembled independently. The user can easily adjust or replace components as needed, which facilitates maintenance and cleaning. The connection between the connecting rod and the load-bearing rod is simply designed, and the user can quickly complete the installation without complicated tools or steps.
[0012] Furthermore, a connecting piece is provided between the connecting rod and the load-bearing rod, two sides of the connecting piece are sleeved on the load-bearing rod, and one end of the connecting piece is fixed to one end of the connecting rod.
[0013] By adopting the above technical solution, both sides of the connector are sleeved on the load-bearing rod, making the connection between the connecting rod and the load-bearing rod more secure and avoiding loosening or falling off caused by single-point fixing. The design of the connector increases the rigidity of the structure and improves the wind resistance of the mosquito net frame. It can remain stable even in windy weather. The connector evenly distributes the gravity of the connecting rod to the two load-bearing rods, avoiding local excessive force, thereby reducing the pressure on the load-bearing rods and extending the service life. Through multi-point fixing, the connector can effectively prevent the connecting rod and the load-bearing rod from bending or deformation during use, maintaining the integrity of the overall structure. The design of the connector makes the connection and disassembly of the connecting rod and the load-bearing rod easier, and users can quickly complete assembly without complicated tools or steps. The connecting rod and the connecting rod can be disassembled independently, making it convenient for users to adjust or replace parts as needed, improving the convenience of maintenance and cleaning. The design of the connector makes the connection between the connecting rod and the load-bearing rod more natural and harmonious, without redundant connecting parts exposed, and the overall appearance is more simple and beautiful. The streamlined design of the connector is integrated with the load-bearing rod and the connecting rod, enhancing the overall visual effect of the mosquito net.
[0014] Furthermore, the sleeve 2 is a four-way tube including a horizontal rod mounting hole, a vertical rod mounting hole and a load-bearing rod mounting hole. The horizontal rod mounting hole is located in the horizontal direction, the vertical rod mounting hole is located in the vertical direction, and the load-bearing rod mounting hole is an inclined structure adapted to the load-bearing rod.
[0015] By adopting the above technical solution, the design of the four-way tube enables the horizontal bar, vertical bar and load-bearing bar to form a stable triangular structure at the top, which greatly enhances the supporting force of the top of the mosquito net. The inclined design of the load-bearing bar mounting hole makes the angle between the load-bearing bar and the vertical bar and horizontal bar more reasonable, thereby improving the stability and wind resistance of the overall structure. The four-way tube distributes gravity evenly to each support point through the mounting holes in three directions (horizontal, vertical and inclined), avoiding excessive pressure on a single connection point, thereby reducing the pressure on the vertical bar and horizontal bar and extending the service life. The inclined load-bearing bar mounting hole design enables the gravity of the load-bearing bar to be better dispersed, reduces the vertical pressure on the vertical bar, and prevents the vertical bar from bending or deformation. The design of the four-way tube enables the various components to be quickly inserted and removed, and users can easily complete assembly and disassembly without complicated tools or steps. The unified mounting hole design enables horizontal bars, vertical bars and load-bearing bars of different lengths to be used interchangeably, thereby improving the versatility and flexibility of the components.
[0016] The utility model also includes a mosquito net, a mosquito net frame, and the mosquito net cloth is sleeved on the mosquito net frame. The mosquito net frame is detachably connected through the first sleeve, the second sleeve and the connecting piece.
[0017] The utility model has the following beneficial effects:
[0018] 1. This utility model significantly increases the space at the top of the mosquito net by arranging an arched load-bearing rod at the top, making the interior of the mosquito net more spacious. Users will not feel oppressed when moving inside the mosquito net, which greatly improves the user comfort. The design of the load-bearing rod not only increases the height, but also makes the entire top structure more stable through the cooperation of the connecting rod and the connecting piece, avoiding the sagging phenomenon of the mosquito net top and ensuring the maximum utilization of the internal space.
[0019] 2. The present invention provides multiple fixation points at the bottom and top through the design of sleeves 1 and 2, respectively, forming a stable triangular structure, which greatly enhances the overall stability of the mosquito net frame. The arched load-bearing rods and inclined load-bearing rod mounting holes evenly distribute gravity and external forces, reducing local pressure on the vertical and horizontal rods, improving wind resistance and structural durability, and avoiding deformation or damage caused by excessive force at a single point.
[0020] 3. The utility model adopts a modular design. Sleeve 1 and sleeve 2 allow the horizontal bar, vertical bar and load-bearing bar to be quickly inserted and removed. Users can easily complete assembly and disassembly without complicated tools or steps, which facilitates daily use and maintenance. The use of high-strength materials and reasonable structural design reduce direct friction between components, reduce wear, extend the service life of the mosquito net frame, and ensure stability and reliability in long-term use. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0022] Figure 2 This is a schematic structural diagram of a sleeve 1 of the utility model;
[0023] Figure 3 This is a structural diagram of the sleeve 2 of the utility model;
[0024] Figure 4 yes Figure 1 Enlarged schematic diagram of part A in the middle.
[0025] Among them, 1- horizontal bar; 2- vertical bar; 3- load-bearing bar; 4- connecting assembly; 41- sleeve one; 411- horizontal mounting hole; 412- vertical mounting hole; 42- sleeve two; 421- horizontal bar mounting hole; 422- vertical bar mounting hole; 423- load-bearing bar mounting hole; 5- fixing piece; 6- connecting rod. DETAILED DESCRIPTION
[0026] The present invention will be further described in detail below with reference to the accompanying drawings and specific preferred embodiments.
[0027] In the description of the present invention, it should be understood that the terms "left side," "right side," "upper," "lower," etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely to facilitate the description of the present invention and simplify the description. They do not indicate or imply that the devices or components referred to must have a specific orientation, be constructed, or operate in a specific orientation. Terms such as "first" and "second" do not indicate the importance of a component and therefore should not be construed as limiting the present invention. The specific dimensions used in this embodiment are merely for illustrative purposes and do not limit the scope of protection of the present invention.
[0028] like Figure 1 、 Figure 2 、 Figure 3 and Figure 4, it can be seen that a mosquito net frame has eight cross bars 1. The four cross bars 1 at the bottom are installed at the bottom of the mosquito net frame through sleeve 1 41, and the four cross bars 1 at the top are installed at the top of the mosquito net frame through sleeve 2 42. There are four vertical bars 2, located between the top cross bar 1 and the bottom cross bar 1, the vertical bar 2 is connected to the cross bar 1 through sleeve 1 41, and is connected to the bearing bar 3 through sleeve 2 42, and is installed at the top of the mosquito net frame. There are two bearing bars 3 on both sides of the mosquito net frame. The bearing bar 3 is an arched structure as a whole and is located at the top of the mosquito net frame. The bearing bar 3 is connected to the cross bar 1 and the vertical bar 2 through sleeve 2 42. The two bearing bars 3 are connected by three connecting bars 6. The connecting bar 6 and the bearing bar 3 are connected by a fixing piece 5. The bearing bar 3 runs through both sides of the fixing piece 5, and one end of the fixing piece 5 is fixed Fixed at one end of the connecting rod 6, the connecting assembly 4 includes a sleeve 1 41 and a sleeve 2 42. The sleeve 1 41 is a three-way pipe, including two horizontal mounting holes 411 and one vertical mounting hole 412. There are four sleeves 1 41 in total, which are installed at the bottom of the mosquito net frame. The horizontal mounting hole 411 is used to install the cross bar 1, and the vertical mounting hole 412 is used to install the vertical bar 2. The sleeve 2 42 is a four-way pipe, including a cross bar mounting hole 421, a vertical bar mounting hole 422 and a load-bearing rod mounting hole 423. The cross bar mounting hole 421 is located in the horizontal direction for installing the cross bar 1, and the vertical bar mounting hole 422 is located in the vertical direction for installing the vertical bar 2. The load-bearing rod mounting hole 423 is an inclined structure, which is adapted to the load-bearing rod 3 and is used to install the load-bearing rod 3. The connecting rod 6 is used to connect the two load-bearing rods 3 and is connected to the load-bearing rod 3 through the fixing member 5;
[0029] A mosquito net is provided. A mosquito net cloth is sheathed on a bearing rod 3. The bearing rod 3 supports the mosquito net cloth, thereby increasing the internal space of the mosquito net. At the same time, the bearing rod 3 evenly disperses the gravity of the mosquito net cloth, thereby reducing the pressure on the vertical rod 2 and increasing the service life of the mosquito net. During assembly and disassembly, the horizontal rod 1, the vertical rod 2 and the bearing rod 3 are connected or disconnected by a first sleeve 41 and a second sleeve 42. The installation is simple and efficient.
[0030] Working principle: Sleeve 1 41 is a three-way pipe, including two horizontal mounting holes 411 and one vertical mounting hole 412. The cross bar 1 is installed at the bottom of the mosquito net frame through the horizontal mounting hole 411 to provide horizontal support, and the vertical bar 2 is installed at the bottom of the mosquito net frame through the vertical mounting hole 412 to provide vertical support. The sleeve 1 41 connects the cross bar 1 and the vertical bar 2 together to form a stable bottom support structure to ensure the stability and balance of the bottom of the mosquito net. The sleeve 2 42 is a four-way pipe, including cross bar mounting holes 421, vertical bar mounting holes 422 and load-bearing rod mounting holes 423. The cross bar 1 is installed at the top of the mosquito net frame through the cross bar mounting holes 421 to provide horizontal support, the vertical bar 2 is installed at the top of the mosquito net frame through the vertical bar mounting holes 422 to provide vertical support, and the load-bearing rod 3 is installed at the top of the mosquito net frame through the load-bearing rod mounting holes 423. The load-bearing rod mounting holes 423 are inclined structures, which are adapted to the arched structure of the load-bearing rod 3. The connecting rod 6 is used to connect the two load-bearing rods 3 to enhance the stability of the top structure and fix it. The two sides of the component 5 are sleeved on the load-bearing rod 3, and one end is fixed to one end of the connecting rod 6. The combined design of the connecting rod 6 and the fixing component 5 makes the two load-bearing rods 3 form a whole, further enhancing the rigidity of the top structure and preventing the load-bearing rod 3 from lateral displacement or bending during use. The arched load-bearing rod 3 design significantly increases the space at the top of the mosquito net, making the interior of the mosquito net more spacious, and the user will not feel oppressed when moving in the mosquito net. Through the multi-point fixed sleeve 1 41 and sleeve 2 42, and the combined design of the connecting rod 6 and the fixing component 5, the entire mosquito net frame forms a stable structure, which greatly enhances the overall stability. The design of the load-bearing rod 3 and the connecting rod 6 makes the gravity and external force evenly distributed to each support point, reducing the local pressure on the vertical rod 2 and the horizontal rod 1, and avoiding deformation or damage caused by excessive force on a single point. The modular design allows each component to be quickly inserted and removed, and the user can easily complete assembly and disassembly without complicated tools or steps, which facilitates daily use and maintenance.
[0031] The preferred embodiments of the present invention are described in detail above. However, the present invention is not limited to the specific details of the above embodiments. Within the technical concept of the present invention, various equivalent transformations can be made to the technical solutions of the present invention, and these equivalent transformations all fall within the scope of protection of the present invention.
Claims
1. A mosquito net frame, characterized by: The invention comprises a horizontal bar (1), a vertical bar (2), a bearing bar (3) and a connecting assembly (4); the bearing bar (3) is located at the top of the mosquito net frame, the vertical bar (2) connects the horizontal bar (1) and the bearing bar (3) together through the connecting assembly (4), and the connecting assembly (4) comprises a sleeve 1 (41) and a sleeve 2 (42), the sleeve 1 (41) connects the horizontal bar (1) and the vertical bar (2) at the bottom of the mosquito net frame together, and the sleeve 2 (42) connects the horizontal bar (1), the vertical bar (2) and the bearing bar (3) at the top of the device together.
2. The mosquito net frame according to claim 1, characterized in that: The sleeve one (41) is a three-way pipe including two horizontal mounting holes (411) and one vertical mounting hole (412). A total of four sleeves (41) are provided and mounted on the bottom of the mosquito net frame. The horizontal rod (1) is mounted in the horizontal mounting hole (411), and the vertical rod (2) is mounted in the vertical mounting hole (412).
3. The mosquito net frame according to claim 1, characterized in that: Two bearing rods (3) are provided in total. The bearing rods (3) are of an arched structure, and a connecting rod (6) is provided between the two bearing rods (3).
4. The mosquito net frame according to claim 3, characterized in that: A fixing member (5) is further provided between the connecting rod (6) and the bearing rod (3), both sides of the fixing member (5) being sleeved on the bearing rod (3), and one end of the fixing member (5) being fixed to one end of the connecting rod (6).
5. The mosquito net frame according to claim 1, characterized in that: The second sleeve (42) is a four-way pipe including a crossbar mounting hole (421), a vertical bar mounting hole (422) and a bearing bar mounting hole (423), wherein the crossbar mounting hole (421) is located in the horizontal direction, the vertical bar mounting hole (422) is located in the vertical direction, and the bearing bar mounting hole (423) is an inclined structure adapted to the bearing bar (3).
6. A mosquito net, characterized in that: The mosquito net frame and mosquito net cloth according to claim 4 are included, the mosquito net cloth is sleeved on the mosquito net frame, and the mosquito net frame is detachably connected via the sleeve 1 (41), the sleeve 2 (42) and the fixing member (5).
Citation Information
Patent Citations
Connecting framework and mosquito net
CN219661323U