A sunshade system and its transportation method and installation method
By designing a sunshade system containing magnetic sliders and shrapnel, the problem of louvers scattering and dust scattering in the prior art during transportation and installation is solved, and the stability and aesthetics of the system are achieved.
Patent Information
- Application Number
- CN201910985948.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Priority Date
- 2019-08-13
- Filing Date
- 2019-10-17
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2039-10-17
AI Technical Summary
The existing sunshade system embedded in glass has problems such as scattering of louvers, easy dust hiding and inconvenient maintenance during transportation and installation, which affects the user experience.
A shading system including glass, outer magnetic slider, inner magnetic slider, pulley, slider, locking member, shrapnel and sunshade structure is designed. By sliding the outer magnetic slider, locking the inner magnetic slider and the sunshade structure, the stability and aesthetics of the sunshade structure during transportation and installation are ensured.
It effectively prevents the scattering of louvers during transportation, simplifies the transportation and installation process, improves the user experience, and ensures the quality and aesthetics of the sunshade system.
Smart Images

Figure CN110905375B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of doors and windows. Specifically, it relates to a sunshade system. Correspondingly, a transportation method and an installation method based on the sunshade system are also provided. Background Art
[0002] Sunshade systems are widely used in various places. In some high-end office buildings and enterprises, for the sake of the overall aesthetic decoration, a sunshade system embedded in the glass is usually used, which is called a sunshade system. Although this kind of sunshade system can meet the aesthetic requirements, due to the inconvenient installation, it is usually sold as a whole. During the transportation process, the louvers in the sunshade system are likely to fall off due to bumps, affecting its use, and its maintenance process is extremely inconvenient, bringing many troubles to the majority of users. On the other hand, during the installation process of this kind of integral-structured sunshade system, there is a lot of dust, and the dust is likely to hide inside structures such as chutes and is difficult to clean, bringing many inconveniences to users and unable to meet the user needs. Summary of the Invention
[0003] The technical problem to be solved by the present invention is to provide a sunshade system to ensure that the louvers will not fall off during the transportation process, which is convenient for transportation and meets the user needs.
[0004] The technical problem to be solved by the present invention also lies in providing a transportation method for the sunshade system to ensure that the louvers will not fall off during the transportation process, which is convenient for transportation and meets the user needs.
[0005] The technical problem to be solved by the present invention also lies in providing an installation method for the sunshade system to prevent the external components of the glass from being damaged, prevent sand and stones from entering the sunshade system, and ensure the quality and aesthetics of the sunshade system.
[0006] To solve the above technical problems, the present invention provides a sunshade system, including a glass, an external magnetic slider located outside the glass, an internal magnetic slider located inside the glass, a pulley connected to the internal magnetic slider, a sliding member connected to the internal magnetic slider, a locking member located inside the glass, a spring plate located between the glass and the sliding member, a sunshade structure located inside the glass, and a guide rail for guiding the movement of the external magnetic slider. The sunshade structure is connected to the internal magnetic slider through a telescopic rope;
[0007] A first hook is provided on the sliding member, and a second hook matching the first hook is provided on the locking member;
[0008] The sliding member is a magnetic sliding member, and the restoring force of the spring plate is less than the magnetic attraction force between the external magnetic slider and the sliding member;
[0009] The glass is in two layers, and the inner magnetic slider, pulley, slider, locking member, elastic piece, and sunshade structure are located between the two layers of glass.
[0010] Preferably, the pulley includes a housing connected to the inner magnetic slider and a roller located inside the housing;
[0011] The housing is provided with mounting holes, and both ends of the roller are provided with mounting shafts, and the mounting shafts extend into the interior of the mounting holes.
[0012] Preferably, the slider is rotatably connected to the inner magnetic slider.
[0013] Preferably, the outer magnetic slider includes a housing, a magnetic body located inside the housing, a rolling wheel mounted on the housing, and a guide groove located on the housing;
[0014] The guide grooves are distributed along the movement direction of the outer magnetic slider.
[0015] Preferably, the elastic piece is located between the first hook and the glass, and includes a fixed area and a pushing area, and the fixed area is in a flat sheet-like structure.
[0016] Preferably, the pushing area is located between the first hook and the glass, and is in an arc-shaped sheet-like structure and protrudes towards the direction close to the first hook.
[0017] Preferably, the deformation height of the elastic piece is greater than the distance between the first hook and the second hook.
[0018] Preferably, the first hook and the slider are integrally connected, and are located at one end of the slider away from the inner magnetic slider.
[0019] A transportation method based on the sunshade system described above includes the following steps:
[0020] S1. Move the outer magnetic slider, and the inner magnetic slider and the slider move together with the outer magnetic slider. The slider and the locking member approach each other until the positions of the first hook and the second hook match;
[0021] S2. Remove the outer magnetic slider, and the first hook and the second hook are hooked to each other under the action of the elastic piece to lock the sunshade structure:
[0022] S3. Stick a protective film on the surface of the glass;
[0023] S4. Independently package and transport the glass and its internal components, the outer magnetic slider, and the guide rail respectively.
[0024] An installation method based on the described sunshade system, comprising the following steps:
[0025] S1’: Install the glass with the protective film and its internal components on the wall;
[0026] S2’: Decorate the interior, exterior and floor;
[0027] S3’: After completing all the decoration processes, tear off the protective film and attach the guide rail to the preset position on the surface of the glass;
[0028] S4’: Install the outer magnetic slider on the guide rail so that the guide rail is embedded inside the guide groove;
[0029] S5’: Slide the outer magnetic slider so that the position of the outer magnetic slider matches the position of the sliding member. The outer magnetic slider and the sliding member attract each other, squeeze the elastic piece, and the first hook and the second hook are disengaged from each other. Slide the outer magnetic slider again to control the sunshade structure.
[0030] Implementing the present invention has the following beneficial effects:
[0031] 1. For the sunshade system provided by the present invention, during transportation, only need to slide the outer magnetic slider near the locking member, move the outer magnetic slider away, the elastic piece pops up, pushes the first hook, so that the first hook and the second hook are hooked to each other, realizing the locking of the inner magnetic slider, solving the problem of the scattered sunshade structure in the sunshade system, facilitating transportation and meeting the user's needs.
[0032] 2. For the transportation method of the sunshade system provided by the present invention, since the sliding member is connected to the inner magnetic slider, when the inner magnetic slider slides to the locking position and the first hook and the second hook are locked to each other, the sunshade structure is in a contracted state, and in a bumpy environment such as transportation, the sunshade structure will not be scattered, ensuring the reliability of the transportation process. On the other hand, since the guide rail is made of a material with a relatively high hardness and is likely to scratch the surfaces of other structures such as glass, here the guide rail is independently packaged for transportation to prevent it from scratching other components and ensuring that the system is not damaged.
[0033] 3. For the installation method of the sunshade system provided by the present invention, after completing all the decoration and cleaning work, then tear off the protective film and install the guide rail and the outer magnetic slider. No sand and stones will enter any groove interior, ensuring the slider effect of the outer magnetic slider. On the other hand, the guide rail and the outer magnetic slider will not be damaged during the decoration and cleaning process, ensuring the quality and aesthetics of the sunshade system. Description of the Drawings
[0034] Figure 1 is an exploded view of the sunshade system of the present invention;
[0035] Figure 2 It is a partial structural schematic diagram of the locking state of the sunshade system of the present invention;
[0036] Figure 3 is Figure 2 The enlarged view at position A in
[0037] Figure 4 It is a partial structural schematic diagram of the opening state of the sunshade system of the present invention;
[0038] Figure 5 is Figure 4 The enlarged view at position B in
[0039] Figure 6 It is a structural schematic diagram of the outer magnetic slider of the sunshade system of the present invention;
[0040] Figure 7 It is a flowchart of the transportation method based on the sunshade system of the present invention;
[0041] Figure 8 It is a flowchart of the installation method based on the sunshade system of the present invention. Detailed implementation manners
[0042] To make the objectives, technical solutions and advantages of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings. It is hereby declared that the orientation terms such as up, down, left, right, front, back, inside and outside that appear or will appear in the text of the present invention are only based on the accompanying drawings of the present invention, and they do not specifically limit the present invention.
[0043] As Figures 1 to 5 shown, the sunshade system of the present invention includes glass 1, an outer magnetic slider 2 located outside the glass 1, an inner magnetic slider 3 located inside the glass 1, a pulley 4 connected to the inner magnetic slider 3, a sliding member 5 connected to the inner magnetic slider 3, a locking member 6 located inside the glass 1, a spring piece 7 located between the glass 1 and the sliding member 5, a sunshade structure 8 located inside the glass, and a guide rail 9 for guiding the movement of the outer magnetic slider 2. The sunshade structure 8 is connected to the inner magnetic slider 3 through a telescopic rope;
[0044] A first hook 51 is provided on the sliding member 5, and a second hook 61 matching the first hook 51 is provided on the locking member 6;
[0045] The sliding member 5 is a magnetic sliding member, and the restoring force of the spring piece 7 is less than the magnetic attraction force between the outer magnetic slider 2 and the sliding member 5.
[0046] The glass 1 has two layers, and the inner magnetic slider 3, pulley 4, sliding member 5, locking member 6, elastic piece 7 and sunshade structure 8 are located between the two layers of glass 1, facilitating cleaning.
[0047] The outer magnetic slider 2 is located outside the glass 1, facilitating the movement of the outer magnetic slider 2 by the action of an external force, driving the movement of the inner magnetic slider 3, thereby realizing the opening and closing of the sunshade system.
[0048] Specifically, as Figure 6 shown, the outer magnetic slider 2 includes a housing 21, a magnetic body 22 located inside the housing 21, a rolling wheel 23 installed on the housing 21, and a guide groove 24 located on the housing 21. The rolling wheel can roll inside the housing to reduce the friction of the outer magnetic slider, facilitating the sliding of the outer magnetic slider driven by an external force and improving the user experience. To prevent the outer magnetic slider 2 from shifting in position and affecting its driving of the inner magnetic slider 3, a guide groove 21 is also provided on the inner side of the outer magnetic slider 2, and the guide groove 21 is distributed along the movement direction of the outer magnetic slider 2.
[0049] The inner magnetic slider 3 is located between the two layers of glass 1, facilitating the opening and closing of the sunshade system through the movement of the inner magnetic slider 3. The suction force between it and the outer magnetic slider 2 is greater than the force required to open and close the sunshade system, for ensuring the normal opening and closing of the sunshade system.
[0050] The pulley 4 is connected to the inner magnetic slider 3, is located at the top of the inner magnetic slider 3, and is connected to the telescopic rope of the sunshade system. That is, when the pulley 4 moves with the inner magnetic slider 3, the telescopic rope of the sunshade system extends or shortens, thereby realizing the opening and closing of the sunshade system.
[0051] The pulley 4 includes a housing 41 connected to the inner magnetic slider 3 and a roller 42 located inside the housing 41. The housing 41 is provided with mounting holes, and both ends of the roller are provided with mounting shafts, and the mounting shafts extend into the mounting holes to realize the rotatable connection between the roller 42 and the housing 41, ensuring the smooth opening and closing of the sunshade system.
[0052] The sliding member 5 is located inside the glass 1, is connected to the end of the inner magnetic slider 3, and is used to cooperate with the locking member 6 to lock the inner magnetic slider 3. To realize the locking or unlocking between the sliding member 5 and the locking member 6, the sliding member 5 and the inner magnetic slider 3 are rotatably connected. Specifically, a rotating shaft passes through the sliding member 5 and the inner magnetic slider 3 to realize the rotatable connection between the sliding member 5 and the inner magnetic slider 3.
[0053] The sliding member 5 is a magnetic sliding member, which attracts the outer magnetic slider 2.
[0054] The first hook is integrally connected to the sliding member 5 and is located at one end of the sliding member 5 away from the inner magnetic slider 3. The elastic piece 7 is located between the first hook and the glass 1, facilitating the first hook to interact with the locking member 6 to lock the inner magnetic slider 3.
[0055] The locking member 6 is fixed to the inner side of the glass 1 and is provided with a second hook matching the first hook. The first hook and the second hook are arranged opposite to each other for easy engagement.
[0056] The elastic piece 7 is located between the first hook and the glass 1 and includes a fixing area 71 and a pushing area 72. The fixing area 71 is in a planar sheet structure to fix the elastic piece 7. The pushing area 72 is located between the first hook and the glass 1, is in an arc-shaped sheet structure, and protrudes towards the first hook. The deformation height of the elastic piece 7 is greater than the distance between the first hook and the second hook, ensuring that the first hook and the second hook can engage with each other under the action of the elastic piece 7 to lock the inner magnetic slider.
[0057] The restoring force of the elastic piece 7 is less than the magnetic attraction force between the outer magnetic slider 2 and the sliding member 5, ensuring that the first hook can leave the second hook under the action of the outer magnetic slider 2 to open the inner magnetic slider 3.
[0058] The sunshade structure 8 is located inside the glass. It can be a louver or a sunshade cloth, etc., and is specifically set according to actual needs, not limited to this embodiment.
[0059] The guide rail 9 is installed outside the glass 1 and is pasted on the outer surface of the glass 1 through an adhesive to guide the movement of the outer magnetic slider 2. It is embedded inside the guide groove 24, and the shape and size of the guide rail 9 match the shape and size of the guide groove 24, facilitating the outer magnetic slider 2 to slide along the guide rail 9 to achieve its guiding function.
[0060] In a traditional sunshade system, during transportation, due to jolting, the inner magnetic slider 3 and the outer magnetic slider 2 are separated from each other, resulting in the scattering of the sunshade structure of the sunshade system.
[0061] The sunshade system provided by the present invention, during transportation, only needs to slide the outer magnetic slider 2 near the locking member 6, remove the outer magnetic slider 2, the elastic piece pops up, pushes away the first hook 51, so that the first hook 51 and the second hook 61 are hooked to each other, realizing the locking of the inner magnetic slider 3, solving the problem of the scattered sunshade structure of the sunshade system, being convenient for transportation and meeting the user's needs.
[0062] Correspondingly, as Figure 7 shown, the present invention also provides a transportation method based on the above sunshade system, including the following steps:
[0063] S1. Move the outer magnetic slider 2, the inner magnetic slider 3 and the sliding member 5 move together with the outer magnetic slider 2, the sliding member 5 and the locking member 6 approach each other until the positions of the first hook 51 and the second hook 61 match;
[0064] S2. Remove the outer magnetic slider 2, the first hook 51 and the second hook 61 are hooked to each other under the action of the elastic piece 7, realizing the locking of the sunshade structure 8:
[0065] S3. Stick a protective film on the surface of the glass 1;
[0066] S4. Independently package and transport the glass 1 and its internal components, the outer magnetic slider 2 and the guide rail 9 respectively.
[0067] For the transportation method of the sunshade system provided by the present invention, since the sliding member 5 is connected to the inner magnetic slider 3, when the inner magnetic slider 3 slides to the locking position and the first hook 51 and the second hook 61 are locked to each other, the sunshade structure 8 is in a contracted state, and in a bumpy environment such as transportation, there will be no phenomenon of the scattered sunshade structure, ensuring the reliability of the transportation process. On the other hand, since the guide rail 9 is made of a material with a relatively high hardness and is likely to scratch the surfaces of other structures such as the glass, here the guide rail 9 is independently packaged for transportation to prevent it from scratching other components and ensuring that such a system is not damaged.
[0068] During the house decoration process, it is necessary to install the sunshade system and then carry out the interior decoration. This installation method is likely to cause damage to the external components of the glass such as the guide rail or the outer magnetic slider. On the other hand, since both the inner magnetic slider and the outer magnetic slider are made of magnetic materials, and the sand and gravel used in the decoration are easily adsorbed between the guide rail and the glass, between the outer magnetic slider and the inner magnetic slider or inside other grooves, it is easy to damage components such as the glass during the cleaning process. At the same time, the sand and gravel are extremely difficult to clean thoroughly. If not cleaned thoroughly, it will affect the sliding of the sliding outer magnetic slider, resulting in a poor user experience.
[0069] Based on the above deficiencies, as Figure 8 shown, the present invention also provides an installation method based on the sunshade system, including the following steps:
[0070] S1': Install the glass 1 with the protective film attached and its internal components on the wall;
[0071] S2': Decorate the interior, exterior and floor;
[0072] S3': After completing all the decoration processes, tear off the protective film and attach the guide rail 9 to the preset position on the surface of the glass 1;
[0073] S4': Install the outer magnetic slider 2 on the guide rail 9 so that the guide rail 9 is embedded inside the guide groove 24;
[0074] S5': Slide the outer magnetic slider 2 so that the position of the outer magnetic slider 2 matches the position of the slider 5. The outer magnetic slider 2 and the slider 5 attract each other, squeeze the elastic piece 7, and the first hook 51 and the second hook 61 are disengaged from each other. Slide the outer magnetic slider 2 again to control the sunshade structure 8.
[0075] For the installation method of the sunshade system provided by the present invention, after completing all decoration and cleaning work, then tear off the protective film and install the guide rail 9 and the outer magnetic slider 2. No sand and gravel will enter any groove, ensuring the sliding effect of the outer magnetic slider 2. On the other hand, the guide rail 9 and the outer magnetic slider 2 will not be damaged during the decoration and cleaning process, ensuring the quality and aesthetics of the sunshade system.
[0076] The above is the preferred embodiment of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and retouches can be made, and these improvements and retouches are also regarded as the protection scope of the present invention.
Claims
1. A sunshade system, characterized in that, it includes glass, an outer magnetic slider located outside the glass, an inner magnetic slider located inside the glass, a pulley connected to the inner magnetic slider, a sliding member connected to the inner magnetic slider, a locking member located inside the glass, a shrapnel located between the glass and the sliding member, a sunshade structure located inside the glass, and a guide rail for guiding the movement of the outer magnetic slider. The sunshade structure is connected to the inner magnetic slider through a telescopic rope; a first hook is provided on the sliding member, and a second hook matching the first hook is provided on the locking member; the sliding member is a magnetic sliding member, and the restoring force of the shrapnel is less than the magnetic attraction force between the outer magnetic slider and the sliding member; the glass is two-layered, and the inner magnetic slider, pulley, sliding member, locking member, shrapnel, and sunshade structure are located between the two layers of glass; the sliding member and the inner magnetic slider are rotatably connected; the outer magnetic slider includes a housing, a magnetic body located inside the housing, a rolling wheel installed on the housing, and a guide groove located on the housing; the guide grooves are distributed along the movement direction of the outer magnetic slider; the shrapnel is located between the first hook and the glass, and it includes a fixed area and a pushing area. The fixed area is in a flat sheet-like structure; the pushing area is located between the first hook and the glass, and it is in an arc-shaped sheet-like structure and protrudes towards the direction close to the first hook; the deformation height of the shrapnel is greater than the distance between the first hook and the second hook.
2. The sunshade system according to claim 1, characterized in that, the pulley includes a housing connected to the inner magnetic slider and a roller located inside the housing; mounting holes are provided on the housing, and mounting shafts are provided at both ends of the roller, and the mounting shafts extend into the interior of the mounting holes.
3. The sunshade system according to claim 1, characterized in that, the first hook and the sliding member are integrally connected, and it is located at one end of the sliding member away from the inner magnetic slider.
4. A transportation method for the sunshade system according to any one of claims 1-3, characterized in that, it includes the following steps: S1. Move the outer magnetic slider, and the inner magnetic slider and the sliding member move together with the outer magnetic slider. The sliding member and the locking member approach each other until the positions of the first hook and the second hook match; S2. Remove the outer magnetic slider, and the first hook and the second hook are hooked to each other under the action of the shrapnel to lock the sunshade structure: S3. Stick a protective film on the surface of the glass; S4. Independently package and transport the glass and its internal components, the outer magnetic slider, and the guide rail respectively.
5. An installation method for the sunshade system according to any one of claims 1-3, characterized in that, it includes the following steps: S1'. Install the glass with the protective film and its internal components on the wall; S2'. Decorate the interior, exterior, and floor; S3'. After completing all the decoration processes, tear off the protective film and attach the guide rail to the preset position on the surface of the glass. S4'. Install the outer magnetic slider on the guide rail so that the guide rail is embedded inside the guiding groove; S5'. Slide the outer magnetic slider so that the position of the outer magnetic slider matches the position of the slider. The outer magnetic slider and the slider attract each other, squeezing the elastic piece, and the first hook and the second hook are disengaged from each other. Slide the outer magnetic slider again to control the sunshade structure.
Citation Information
Patent Citations
Lifting locking structure for built-in sun-shading hollow glass product
CN109736696A
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