Antibacterial and mildew-proof curtain made of nanometer materials

By embedding breathable fabric, antibacterial fabric and connecting airways into the curtain fabric, an air circulation channel is formed, which solves the problems of moisture accumulation, mold and bacterial growth in the curtain, and achieves better breathability and light-shading performance.

CN223025809UActive Publication Date: 2025-06-27ZHEJIANG DESHENGLONG CURTAIN CO LTD
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Patent Information

Application Number
CN202422247751.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-13
Publication Date
2025-06-27
Estimated Expiration
2034-09-13

AI Technical Summary

Technical Problem

Due to its heavy and poor breathable properties, existing curtains lead to internal moisture accumulation, mildew and bacterial growth.

Method used

Antibacterial and mildew-resistant curtains made of nanomaterials form airflow channels by embedding breathable fabrics, antibacterial fabrics and connecting airways into the curtain fabrics, which promotes moisture dissipation and prevents mildew and bacterial growth.

Benefits of technology

It effectively improves the breathability of curtains, prevents moisture accumulation, avoids mildew and bacterial growth, and maintains light-shading performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an antibacterial mould-proof curtain made of nanometer materials, which comprises a curtain supporting rod, a plurality of hanging rings are slidably mounted on the outer sides of two ends of the curtain supporting rod, a fixing rod is fixed at the bottom of each hanging ring, and a rotary connecting rod is rotatably hung at the bottom end of each fixing rod. A curtain cloth fixing block is fixed to the bottom end of the rotary connecting rod, two pieces of curtain cloth are arranged below the curtain supporting rod, the top ends of the curtain cloth are detachably connected to the bottom of the curtain cloth fixing block in a clamped mode, and the curtain cloth comprises sunscreen cloth and indoor anti-static cloth. The connecting air channels and the breathable strip-shaped holes distributed on the surfaces of the breathable cloth and the antibacterial cloth are utilized to form a flow channel for air circulation, so that air circulates in the curtain cloth, moisture adsorbed in the breathable cloth and the antibacterial cloth is dissipated, and the moisture absorption effect is improved. The moisture is prevented from accumulating in the breathable cloth and the antibacterial cloth for a long time, so that the interiors of the breathable cloth and the antibacterial cloth are moist and bacteria are bred.
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Description

Technical Field

[0001] The utility model relates to the technical field of curtains, in particular to an antibacterial and mildew-proof curtain made of nano materials. Background Technique

[0002] Curtains are made of cloth, hemp, yarn, aluminum sheets, wood sheets, metal materials, etc., and have the functions of shading, heat insulation and adjusting indoor light. Cloth curtains are classified by material into cotton gauze, polyester cloth, polyester-cotton blend, cotton-linen blend, non-woven fabric, etc. Different materials, textures, colors, patterns, etc. are combined to form different styles of cloth curtains, which are matched with different styles of indoor design curtains;

[0003] Curtains can be named according to the fabric materials used to make them. For example, nano curtains refer to curtains made using nano technology, which combines the innovative application of nano materials and textile technology. The characteristic of this kind of curtain is that its surface is covered with a nano coating, which is usually composed of nano-scale materials.

[0004] However, in order to ensure the blocking of outdoor sunlight and prevent sunlight from passing through the curtain, the existing curtains are often thick and have poor air permeability, resulting in easy accumulation of moisture inside the curtain and internal mildew, and even the growth of bacteria; Therefore, it does not meet the existing requirements, and for this reason, we propose an antibacterial and mildew-proof curtain made of nano materials. Content of the Utility Model

[0005] The purpose of the utility model is to provide an antibacterial and mildew-proof curtain made of nano materials, so as to solve the problems mentioned in the above background technique that in order to ensure the blocking of outdoor sunlight and prevent sunlight from passing through the curtain, the curtain is often thick and has poor air permeability, resulting in easy accumulation of moisture inside the curtain and internal mildew, and even the growth of bacteria, etc.

[0006] To achieve the above purpose, the utility model provides the following technical solution: an antibacterial and mildew-proof curtain made of nano materials, including a curtain support rod, and a plurality of hanging rings are slidably installed on the outer sides of both ends of the curtain support rod. A fixed rod is fixed to the bottom of the hanging ring, and a rotating connecting rod is rotatably suspended at the bottom of the fixed rod. A curtain cloth fixing block is fixed to the bottom of the rotating connecting rod. There are two curtain cloths below the curtain support rod. The top end of the curtain cloth is detachably clamped to the bottom of the curtain cloth fixing block. The curtain cloth includes a sunscreen fabric and an indoor anti-static fabric. Breathable fabrics are sewn on the mutually facing surfaces of the sunscreen fabric and the indoor anti-static fabric. An antibacterial fabric is arranged between the two breathable fabrics. A plurality of breathable strip-shaped holes are arranged at equal intervals up and down on the surface of the breathable fabric. An inclined connecting air passage is arranged on the surface of the antibacterial fabric, and the connecting air passage communicates the breathable strip-shaped holes on the surfaces of the two breathable fabrics.

[0007] Preferably, the position of the ventilation strip holes on the surface of the ventilation fabric connected to the sunscreen fabric is lower than the position of the corresponding ventilation strip holes on the surface of the other ventilation fabric.

[0008] Preferably, two hanging devices are provided below both ends of the curtain support rod. The two hanging devices are rotationally symmetric in position, and the two hanging devices are connected to the roof through expansion screws.

[0009] Preferably, the hanging device includes a fixing plate. The top end of the fixing plate is bent and parallel to the roof. The bottom end of the fixing plate is bent upward in a V shape, and two symmetrical support plates are fixed at the end of the bottom end of the fixing plate.

[0010] Preferably, a positioning card slot is provided between the two support plates, and the width of the positioning card slot is the same as the width of the support plates.

[0011] Preferably, an arc-shaped limiting plate is fixed at the end of the top of the support plate. The arc-shaped limiting plate is arc-shaped and the radius is the same as the radius of the curtain fabric fixing block.

[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0013] 1. The present utility model utilizes the connecting air ducts and ventilation strip holes distributed on the surfaces of the ventilation fabric and the antibacterial fabric to form an air circulation channel, enabling air to circulate inside the curtain fabric, dissipating the moisture adsorbed in the ventilation fabric and the antibacterial fabric, and preventing the moisture from accumulating inside the ventilation fabric and the antibacterial fabric for a long time, resulting in dampness and bacteria growth inside the ventilation fabric and the antibacterial fabric. At the same time, when light irradiates the curtain fabric, the light will not pass through the connecting air ducts and ventilation strip holes into the room, ensuring the normal light-shielding performance of the curtain fabric.

[0014] 2. The present utility model supports the curtain support rod through the fixing plates with the bottom ends bent upward in a V shape. When the bottom ends of the two fixing plates are stressed upward, they can move away from each other, enabling the curtain support rod to smoothly pass through the two fixing plates to reach between the two fixing plates, facilitating the installation of the curtain support rod. When disassembling the curtain support rod, it only requires separating the two fixing plates manually to complete the disassembly of the curtain support rod, facilitating curtain construction. The arc-shaped limiting plate is used to support the position of the curtain support rod from the bottom of the curtain support rod, ensuring that the bottom ends of the two fixing plates will not move away from each other after the curtain support rod is stressed, and preventing the curtain support rod from falling due to excessive force exerted by the person pulling the curtain fabric. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a schematic structural diagram of the whole of the present utility model;

[0016] Figure 2 is Figure 1 the structural diagram at A in

[0017] Figure 3 This is a schematic structural diagram of the hoist of the present utility model;

[0018] Figure 4 This is a schematic structural diagram of the curtain fabric of the present utility model.

[0019] In the figure: 1. Curtain support rod; 2. Suspension ring; 3. Rotating connecting rod; 4. Curtain fabric fixing block; 5. Curtain fabric; 51. Sunscreen fabric; 52. Indoor anti-static fabric; 53. Breathable fabric; 54. Antibacterial fabric; 55. Connecting air duct; 56. Breathable strip-shaped holes; 6. Hoist; 61. Fixed plate; 62. Positioning card slot; 63. Support plate; 64. Arc-shaped limiting plate; 7. Fixed rod. Specific embodiments

[0020] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments.

[0021] As Figure 1 , Figure 2 and Figure 4 shown, an antibacterial and mildew-proof curtain made of nano materials. A plurality of suspension rings 2 are slidably installed on the outer sides of both ends of the curtain support rod 1. A fixed rod 7 is fixed to the bottom of the suspension ring 2. The bottom end of the fixed rod 7 is rotatably suspended with a rotating connecting rod 3. The bottom end of the rotating connecting rod 3 is fixed with a curtain fabric fixing block 4. Two curtain fabrics 5 are provided below the curtain support rod 1. The top end of the curtain fabric 5 is detachably clamped at the bottom of the curtain fabric fixing block 4. The curtain fabric 5 includes a sunscreen fabric 51 and an indoor anti-static fabric 52. Breathable fabrics 53 are sewn on the mutually facing surfaces of the sunscreen fabric 51 and the indoor anti-static fabric 52. An antibacterial fabric 54 is provided between the two breathable fabrics 53. A plurality of breathable strip-shaped holes 56 are equally spaced up and down on the surface of the breathable fabric 53. An inclined connecting air duct 55 is provided on the surface of the antibacterial fabric 54. The connecting air duct 55 connects the breathable strip-shaped holes 56 on the surfaces of the two breathable fabrics 53. A flow channel for air circulation is formed by the breathable fabric 53, the connecting air ducts 55 and the breathable strip-shaped holes 56 distributed on the surface of the antibacterial fabric 54, so that air circulates inside the curtain fabric 5 to dissipate the moisture adsorbed in the breathable fabric 53 and the antibacterial fabric 54.

[0022] The position of the ventilation strip holes 56 on the surface of the ventilation fabric 53 connected to the sunscreen fabric 51 is lower than the position of the corresponding ventilation strip holes 56 on the surface of the other ventilation fabric 53, so that the connecting air duct 55 and the ventilation strip holes 56 form an inclined air circulation channel, ensuring that while air circulates inside the ventilation fabric 53 and the antibacterial fabric 54, external light will not pass through the connecting air duct 55 and the ventilation strip holes 56 and shine into the room, thus ensuring the normal light-shielding performance of the curtain fabric 5.

[0023] As Figure 1 and Figure 3 shown, two slings 6 are provided below both ends of the curtain support rod 1. The two slings 6 are rotationally symmetric in position. The two slings 6 are connected to the roof through expansion screws. The sling 6 includes a fixing plate 61. The top end of the fixing plate 61 is bent and parallel to the roof. The bottom end of the fixing plate 61 is bent upward in a V shape, and two symmetric support plates 63 are fixed at the end of the bottom end of the fixing plate 61. The end of the curtain support rod 1 is supported by the two rotationally symmetric fixing plates 61 and the symmetric support plates 63 at the bottom end of the fixing plate 61, ensuring that the curtain support rod 1 will not fall from the air.

[0024] A positioning card slot 62 is provided between the two support plates 63. The width of the positioning card slot 62 is the same as the width of the support plate 63. An arc-shaped limiting plate 64 is fixed at the top end of the support plate 63. The arc-shaped limiting plate 64 is arc-shaped and the radius is the same as the radius of the curtain fabric fixing block 4. The position of the curtain support rod 1 is supported from the bottom by the arc-shaped arc-shaped limiting plate 64, ensuring that the bottom ends of the two fixing plates 61 will not move away from each other after the curtain support rod 1 is stressed, and preventing the curtain support rod 1 from falling due to excessive force exerted by the person pulling the curtain fabric 5.

[0025] Working principle: First, connect the two slings 6 to each other, so that the support plate 63 of one sling 6 is inserted inside the positioning card slot 62 of the other sling 6, and fix the two slings 6 to the top of the house through expansion screws. Then, the curtain constructor puts the hanging ring 2 on the outside of the curtain support rod 1, and clamps and fixes the top of the curtain fabric 5 to the curtain fabric fixing block 4. Then, lift the curtain support rod 1 and make it contact with the bottom ends of the two fixing plates 61, and push the curtain support rod 1 upward. After the two fixing plates 61 are stressed, the bottoms move away from each other. The curtain support rod 1 passes through the gap formed after the two fixing plates 61 move away and reaches above the fixing plates 61. At this time, the fixing plates 61 elastically recover and support the curtain support rod 1 from below through the support plates 63 and the arc-shaped limiting plates 64, completing the construction of the curtain.

[0026] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above-mentioned exemplary embodiments, and the present utility model can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present utility model. Any reference signs in the claims should not be construed as limiting the claims involved.

Claims

1. An antibacterial and mildew-proof curtain made of nanomaterials, comprising a curtain support rod (1), characterized in that: A plurality of hanging rings (2) are slidably mounted on the outer sides of both ends of the curtain support rod (1); a fixing rod (7) is fixed to the bottom of the hanging ring (2); a rotating connecting rod (3) is rotatably suspended at the bottom end of the fixing rod (7); a curtain cloth fixing block (4) is fixed to the bottom end of the rotating connecting rod (3); two curtain cloths (5) are arranged below the curtain support rod (1); the top end of the curtain cloth (5) is detachably clamped to the bottom of the curtain cloth fixing block (4); the curtain cloth (5) comprises a sunscreen cloth (51) and an indoor antistatic cloth (52). The sunscreen fabric (51) and the indoor antistatic fabric (52) are both sewn with breathable fabric (53) on their mutually facing surfaces by needle and thread, an antibacterial fabric (54) is arranged between the two breathable fabrics (53), a plurality of breathable strip holes (56) are arranged on the surface of the breathable fabric (53) at equal intervals in the upper and lower directions, and an inclined connecting air channel (55) is arranged on the surface of the antibacterial fabric (54), and the connecting air channel (55) connects the breathable strip holes (56) on the surfaces of the two breathable fabrics (53).

2. The antibacterial and mildew-proof curtain made of nanomaterials according to claim 1, characterized in that: The position of the breathable strip holes (56) on the surface of the breathable fabric (53) connected to the sun-proof fabric (51) is lower than the position of the corresponding breathable strip holes (56) on the surface of another breathable fabric (53).

3. The antibacterial and mildew-proof curtain made of nanomaterials according to claim 1, characterized in that: Two hangers (6) are provided below both ends of the curtain support rod (1); the positions of the two hangers (6) are rotationally symmetrical; and the two hangers (6) are connected to the roof via expansion screws.

4. The antibacterial and mildew-proof curtain made of nanomaterials according to claim 3, characterized in that: The hanger (6) comprises a fixing plate (61), the top end of the fixing plate (61) is bent and parallel to the roof, the bottom end of the fixing plate (61) is bent upward in a V-shape, and two symmetrical supporting plates (63) are fixed to the bottom end of the fixing plate (61).

5. The antibacterial and mildew-proof curtain made of nanomaterials according to claim 4, characterized in that: A positioning slot (62) is provided between the two support plates (63), and the width of the positioning slot (62) is consistent with the width of the support plate (63).

6. The antibacterial and mildew-proof curtain made of nanomaterials according to claim 5, characterized in that: An arc-shaped limiting plate (64) is fixed to the top end of the support plate (63); the arc-shaped limiting plate (64) is arc-shaped and has a radius that is consistent with the radius of the curtain fabric fixing block (4).