Light-blocking reflective film with antistatic function
By introducing conductive components and nanoparticles into the light-blocking reflective film, the problem of dust adsorption caused by static electricity is solved, achieving antistatic function and enhanced strength, ensuring normal use and cleanliness of the film.
Patent Information
- Application Number
- CN202520316491.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-26
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-02-26
AI Technical Summary
Existing light-blocking and reflective films are prone to attracting dust and contaminants to their surface due to static electricity during use, affecting usability and cleanliness.
The design employs an inner base membrane and conductive components, including electrostatic conductors, side plates, plug-in rods, and a bottom surface membrane. Static electricity is discharged through metal materials, and a conductive layer is formed using ion exchange resin. The membrane structure is enhanced by combining nanoparticles and oxide materials to improve antistatic function.
It effectively dissipates static electricity, prevents dust adsorption, ensures the normal use and surface cleanliness of the membrane, and enhances the strength and tensile strength of the membrane.
Smart Images

Figure CN223742774U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of reflective film technology, specifically to a light-blocking reflective film with antistatic function. Background Technology
[0002] A light-blocking reflective film is a special material designed to reflect light of a specific wavelength while blocking other wavelengths from passing through. This type of film is commonly used in applications requiring precise light control, such as optical instruments, photography, display technology, solar panels, and architectural glass.
[0003] For example, the utility model with application number CN202220021892.3 belongs to the field of reflective film technology, and in particular to a multi-layer light-blocking reflective film with a pressure-resistant structure. When the device is subjected to impact during use, the multi-layer light-blocking reflective film with a pressure-resistant structure is blocked by the reflective baffle above the protective shell. Then, the main body of the device moves up and down to buffer through the buffer connected below. At the same time, it slides on the sliding rod through the sliding sleeve connected on one side, which helps to maintain the stability of the main body of the device and avoid collision with the protective shell, which would cause damage to the mold. However, the existing light-blocking reflective film is prone to dust and pollutants adsorbed on the film surface due to static electricity during use, which affects the use of the film and its surface cleanliness.
[0004] Therefore, in view of this, we have studied and improved the existing structure and its shortcomings, and provided a light-blocking and reflective film with antistatic function. Utility Model Content
[0005] The purpose of this invention is to provide a light-blocking and reflective film with antistatic function to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a light-blocking and reflective film with antistatic function, comprising an inner base film and a conductive component. The lower end of the inner base film is connected to an inner fluorinated film. The conductive component, used to increase the antistatic effect, is disposed inside the inner fluorinated film. The conductive component includes an electrostatic rod, a side plate, a plug rod, a plug groove, and a bottom surface film. The end of the electrostatic rod is connected to the side plate, and a plug rod is installed on the side of the lower end of the side plate. A plug groove is provided on the outside of the plug rod, and a bottom surface film is provided on the outside of the plug groove.
[0007] Furthermore, the inner fluorinated membrane is wavy in shape, and the electrostatic conductors are symmetrically offset about the horizontal central axis of the inner fluorinated membrane.
[0008] Furthermore, the side plate and the electrostatic conductor are vertically distributed, and the side plate and the plug-in rod are fixedly connected.
[0009] Furthermore, the lower end of the inner fluorinated membrane is connected to an inner base membrane two, and the upper end of the inner base membrane one is connected to an upper surface membrane.
[0010] Furthermore, a reinforcing edge membrane is connected to the outer side of the side plate, and the end of the reinforcing edge membrane is provided with a connecting end.
[0011] Furthermore, the upper end of the bottom surface membrane is provided with a reinforcing component for strengthening the membrane, and four side plates are arranged in a ring around the center point of the bottom surface membrane.
[0012] Furthermore, the reinforcement component includes a reinforcement membrane and a side reinforcement plate, and the side reinforcement plate is disposed inside the reinforcement membrane.
[0013] Furthermore, the reinforcement assembly also includes side fixing strips and inner fixing strips, with side fixing strips connected to the side edges of the edge fixing plate and inner fixing strips installed at the corners of the edge fixing plate.
[0014] This invention provides a light-blocking and reflective film with antistatic function, which has the following beneficial effects:
[0015] 1. This utility model uses a metal electrostatic conductive rod to conduct static electricity from the membrane body into the inner base membrane one and inner base membrane two. The side plate is made of ion exchange resin, and the ion exchange between the resin inside and the membrane surface forms a conductive layer to conduct static electricity away. The connection between the plug rod and the plug slot increases the firmness of the side plate connection. The bottom membrane contains nanoparticles to further conduct static electricity away from the membrane body, increasing the antistatic function of the membrane body during use, ensuring the normal use of the membrane body and its ability to resist surface dust.
[0016] 2. This utility model utilizes the excellent chemical stability and durability of the internal fluorinated membrane, the reinforcement of the side membrane and the connecting end for strengthening the outer side of the membrane, and the prevention of membrane delamination during use, which affects the performance. The reinforcement membrane is made of oxide material, which is not easily affected by the environment and has good stability. The side reinforcement plate increases the strength of the membrane side and prevents the membrane corners from curling. The four side reinforcement strips and the X-shaped internal reinforcement strip increase the strength of the membrane and increase its tensile strength. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall internal structure of a light-blocking and reflective film with antistatic function according to this utility model.
[0018] Figure 2 This is a schematic diagram of the overall assembly structure of a light-blocking and reflective film with antistatic function according to this utility model;
[0019] Figure 3 This is a cross-sectional view of a conductive component of a light-blocking and reflective film with antistatic function according to the present invention.
[0020] Figure 4 This is a schematic diagram of the reinforcement component structure of a light-blocking and reflective film with antistatic function according to this utility model.
[0021] In the diagram: 1. Inner base membrane one; 2. Inner fluorinated membrane; 3. Inner base membrane two; 4. Upper surface membrane; 5. Conductive component; 501. Electrostatic conductor rod; 502. Side connecting plate; 503. Connecting rod; 504. Connecting groove; 505. Bottom surface membrane; 6. Reinforcing edge membrane; 7. Reinforcing component; 701. Reinforcing membrane; 702. Edge fixing plate; 703. Side fixing strip; 704. Inner fixing strip; 8. Connecting end. Detailed Implementation
[0022] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.
[0023] like Figure 1 As shown, a light-blocking and reflective film with antistatic function includes an inner base film 1 and a conductive component 5. The lower end of the inner base film 1 is connected to an inner fluorinated film 2, which has good chemical stability and durability. The lower end of the inner fluorinated film 2 is connected to an inner base film 3. The upper end of the inner base film 1 is connected to an upper surface film 4. A reinforcing edge film 6 is connected to the outer side of the side plate 502. The reinforcing edge film 6 and the connecting end 8 are used to strengthen the outer edge of the film to prevent the film from delaminating during use and affecting the performance. The end of the reinforcing edge film 6 is provided with a connecting end 8.
[0024] like Figure 2 As shown, the conductive component 5, used to enhance the antistatic effect, is disposed inside the inner fluorinated membrane 2. The inner fluorinated membrane 2 is wavy in shape, and the electrostatic conductive rods 501 are symmetrically staggered about the horizontal central axis of the inner fluorinated membrane 2. The conductive component 5 includes electrostatic conductive rods 501, side plates 502, plug rods 503, plug grooves 504, and a bottom surface membrane 505. The end of the electrostatic conductive rod 501 is connected to the side plate 502. The electrostatic conductive rod 501, made of metal, penetrates into the inner base membrane 1 and the inner base membrane 2 to conduct static electricity out of the membrane. The plug rod 503 is installed on the side of the lower end of the side plate 502. The side plate 502 adopts a free-floating design. Made of ion exchange resin, the internal ions and the ion exchange on the membrane surface form a conductive layer to conduct static electricity away. The side plate 502 and the static conductive rod 501 are vertically distributed, and the side plate 502 and the plug rod 503 are fixedly connected. The plug rod 503 and the plug groove 504 are connected to increase the firmness of the connection of the side plate 502. The plug groove 504 is provided on the outside of the plug rod 503, and the bottom surface film 505 is provided on the outside of the plug groove 504. The bottom surface film 505 contains nanoparticles, which further conduct static electricity away from the membrane, increase the antistatic function of the membrane during use, and ensure the normal use of the membrane and its ability to resist surface dust.
[0025] like Figure 3 As shown, a reinforcing component 7 for strengthening the membrane is provided at the upper end of the bottom membrane 505, and four side plates 502 are arranged in a ring around the center point of the bottom membrane 505. The reinforcing component 7 includes a reinforcing membrane 701 and a side plate 702, and the side plate 702 is provided inside the reinforcing membrane 701. The reinforcing membrane 701 is made of oxide material, which is not easily affected by the environment and has good stability. The reinforcing component 7 also includes side strips 703 and inner strips 704. The side strips 703 are connected to the side of the side plate 702. The side plate 702 increases the strength of the membrane side and prevents the membrane corners from curling. The inner strips 704 are installed at the corners of the side plate 702. The four side strips 703 and the X-shaped inner strips 704 increase the strength of the membrane inside the membrane and increase the tensile strength of the membrane.
[0026] In summary, this light-blocking and reflective film with antistatic function is first based on... Figures 1-4 The structure shown in the diagram features an internal fluorinated membrane 2 that provides excellent chemical stability and durability. The reinforced edge membrane 6 and connecting end 8 strengthen the outer edge of the membrane, preventing delamination during use and ensuring optimal performance. During use, a metal electrostatic rod 501 penetrates the inner base membrane 1 and inner base membrane 2 3, conducting static electricity to the side plate 502. The side plate 502, made of ion-exchange resin, forms a conductive layer through ion exchange between its internal components and the membrane surface, discharging static electricity to the bottom surface membrane 505. At this point, the insertion rod 503 and insertion slot 504 connect. The side plate 502 is strengthened by increasing the connection strength. The bottom film 505 contains nanoparticles, which further conduct static electricity away from the film, increasing the antistatic function of the film during use and ensuring normal use and resistance to surface dust. The internal reinforcing film 701 is made of oxide material, which is not easily affected by the environment and has good stability. During use, the side plate 702 increases the strength of the film sides and prevents the edges of the film from curling. The four side reinforcing strips 703 and the X-shaped inner reinforcing strips 704 inside the film increase the strength of the film and increase its tensile strength.
[0027] The embodiments of this utility model are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the utility model to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical applications of this utility model, and to enable those skilled in the art to understand this utility model and design various embodiments with various modifications suitable for a particular purpose.
Claims
1. A light-blocking reflective film having an antistatic function, comprising an inner base film (1) and a conductive component (5), characterized in that, The lower end of the inner base film one (1) is connected with an inner fluorinated film (2), the conductive assembly (5) for increasing the anti-static effect is arranged inside the inner fluorinated film (2), and the conductive assembly (5) comprises an electrostatic guide rod (501), a side connecting plate (502), a plug-in rod (503), a plug-in groove (504) and a bottom surface film (505), the end of the electrostatic guide rod (501) is connected with the side connecting plate (502), the side of the lower end of the side connecting plate (502) is provided with the plug-in rod (503), the outside of the plug-in rod (503) is provided with the plug-in groove (504), and the outside of the plug-in groove (504) is provided with the bottom surface film (505).
2. The light-blocking reflective film having an antistatic function according to claim 1, characterized by The shape of the inner fluorinated film (2) is wave-shaped, and the electrostatic guide rod (501) is symmetrically and staggeredly distributed about the horizontal central axis of the inner fluorinated film (2).
3. The light-blocking reflective film having an antistatic function according to claim 1, characterized by, The side connecting plate (502) and the electrostatic guide rod (501) are vertically distributed, and the side connecting plate (502) and the plug-in rod (503) are fixedly connected.
4. The light-blocking reflective film having an antistatic function according to claim 1, characterized by, The lower end of the inner fluorinated film (2) is connected with an inner base film two (3), and the upper end of the inner base film one (1) is connected with an upper surface film (4).
5. The light-blocking reflective film having an antistatic function according to claim 1, wherein The outside of the side connecting plate (502) is connected with a reinforcing edge film (6), and the end of the reinforcing edge film (6) is provided with a linking end (8).
6. The light-blocking reflective film having an antistatic function according to claim 1, wherein The upper end of the bottom surface film (505) is provided with a reinforcing assembly (7) for strengthening the strength of the film body, and the side connecting plate (502) is arranged in a ring shape about the center point of the bottom surface film (505) and is provided with four.
7. The light-blocking reflective film having an antistatic function according to claim 6, wherein The reinforcing assembly (7) comprises a reinforcing film (701) and an edge fixing plate (702), and the inside of the reinforcing film (701) is provided with the edge fixing plate (702).
8. The light-blocking reflective film having an antistatic function according to claim 7, wherein The reinforcing assembly (7) further comprises a side fixing strip (703) and an inner fixing strip (704), the side of the edge fixing plate (702) is connected with the side fixing strip (703), and the corner of the edge fixing plate (702) is provided with the inner fixing strip (704).
Citation Information
Patent Citations
Multi-layer light-blocking reflecting film with compression-resistant structure
CN216748166U