An antibacterial treatment device for antibacterial down production and processing
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- GAOFAN (ZHEJIANG) INFORMATION TECH CO LTD
- Filing Date
- 2024-06-20
- Publication Date
- 2026-08-07
AI Technical Summary
然而,在热风烘干过程中,潮湿的羽绒会释放出抗菌液微粒,这些微粒不仅可能影响烘干效果,还可能对环境造成污染
[0017] 1. The antibacterial treatment device of the present invention realizes multi-stage targeted drying of soaked down and effective collection of antibacterial liquid particles released during the drying process. The device has a simple overall structure and achieves effective utilization of heat through a special channel structure design, making the drying operation in the antibacterial treatment process of down more efficient.
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Figure CN118654471B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the technical field of down antibacterial treatment equipment, specifically relating to an antibacterial treatment device for the production and processing of antibacterial down. Background Technology
[0002] In recent years, with increasing attention to health and comfort, down products have become widely popular due to their superior warmth and comfort. However, traditional down products are susceptible to bacterial contamination, mold, and insect infestation during use, seriously affecting their lifespan and consumer health. Therefore, developing a down product with antibacterial properties has become an urgent need in the industry.
[0003] In the processing of antibacterial down products, the down is typically soaked in an antibacterial solution to impart antibacterial properties. However, during hot air drying, the damp down releases antibacterial solution particles. These particles can not only affect the drying effect but also potentially pollute the environment. Furthermore, during subsequent hot air drying, the dispersed particles not only affect the operating environment but may also pose potential health hazards to the operators. Summary of the Invention
[0004] The purpose of this invention is to provide an antibacterial treatment device for the production and processing of antibacterial down, so as to solve the problems mentioned in the background art.
[0005] The present invention achieves the above objectives through the following technical solutions:
[0006] This invention proposes an antibacterial treatment device for antibacterial down production and processing, comprising a cylinder and a first fixing part and a second fixing part disposed at both ends of the cylinder, the second fixing part including a particle collection area, and the cylinder including a first guiding cavity and a second guiding cavity arranged horizontally;
[0007] A high-speed fan is provided inside the first fixed part and at the feed end of the first guide cavity. A spiral channel for connecting the first guide cavity and the second guide cavity is provided in the particle collection area. An electric heating plate for heating the particle collection area is also provided. A low-speed fan is provided at the top of the spiral channel.
[0008] A first micropore is provided at the connection between the first material guiding cavity and the particle collection area, and a second micropore is provided at the lowest horizontal section of the spiral channel;
[0009] Down feathers soaked in antibacterial solution are fed into the first guide chamber through the inlet, then pass through the spiral channel and the second guide chamber in sequence, and are discharged from the outlet at the end of the second guide chamber.
[0010] Furthermore, the cylinder body is tapered towards the second fixing part.
[0011] Furthermore, the bottom of the first and second material guiding cavities are respectively provided with a first conveyor belt and a second conveyor belt;
[0012] The first conveyor belt is inclined downward toward the feed end of the spiral channel;
[0013] The second conveyor belt is inclined upward toward the discharge end of the spiral channel.
[0014] Furthermore, the first and second material guiding cavities are separated from the particle collection area by heat-conducting plates, wherein the first micropore is formed on the heat-conducting plate located below the connection between the spiral channel and the first material guiding cavity.
[0015] Furthermore, a collection component is detachably provided at the bottom of the particle collection area, and the collection component contains an adsorbent material for adsorbing and collecting antibacterial liquid particles released by damp down.
[0016] The beneficial effects of this invention are as follows:
[0017] 1. The antibacterial treatment device of the present invention realizes multi-stage targeted drying of soaked down and effective collection of antibacterial liquid particles released during the drying process. The device has a simple overall structure and achieves effective utilization of heat through a special channel structure design, making the drying operation in the antibacterial treatment process of down more efficient.
[0018] 2. The cylinder of this invention is designed as a horizontally placed conical structure, which allows the down to be collected by gravity at the feed end of the spiral pipe after entering the first feed chamber. Since the end of the cylinder near the second fixing part is thinner, the heat in the particle collection area can be collected and transferred to the first and second feed chambers more quickly, which can improve the drying effect on the down. In addition, this cylinder design can reduce the flow rate of the down when it is close to the second fixing part, resulting in a better drying effect. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the overall structure of the antibacterial treatment device proposed in this invention.
[0020] Figure 2 This is a cross-sectional structural diagram of the antibacterial treatment device proposed in this invention.
[0021] In the diagram: 1. Support leg; 2. Cylinder body; 3. First fixing part; 4. Second fixing part; 5. Feed inlet; 6. Discharge outlet; 21. First guide chamber; 22. Second guide chamber; 23. First conveyor belt; 24. Second conveyor belt; 25. First micropore; 31. High-speed fan; 41. Spiral channel; 42. Heating plate; 43. Low-speed fan; 44. Second micropore; 45. Collection assembly; 46. Heat-conducting plate. Detailed Implementation
[0022] The present application will now be described in further detail with reference to the accompanying drawings. It should be noted that the following specific embodiments are only used to further illustrate the present application and should not be construed as limiting the scope of protection of the present application. Those skilled in the art can make some non-essential improvements and adjustments to the present application based on the above application content.
[0023] Example 1
[0024] like Figure 1-2 As shown, this embodiment proposes an antibacterial treatment device for antibacterial down production and processing, including a cylinder 2 (see...). Figure 1 The cylinder 2 is specifically a horizontally placed, conical structure, and has a first fixing part 3 and a second fixing part 4 at both ends. The first fixing part 3 and the second fixing part 4 are also used to fix the cylinder 2. Its two ends are fixed to the ground by support feet 1. The second fixing part 4 includes a particle collection area. The cylinder 2 includes a first guide cavity 21 and a second guide cavity 22 arranged horizontally. A high-speed fan 31 is provided in the first fixing part 3 and at the feed end of the first guide cavity 21. The particle collection area is provided with a connection to the first guide cavity. The spiral channel 41 of the first guide chamber 21 and the second guide chamber 22 are also provided with an electric heating plate 42 for heating the particulate collection area. A low-speed fan 43 is provided at the top of the spiral channel 41. A first micropore 25 is provided at the connection between the first guide chamber 21 and the particulate collection area. A second micropore 44 is provided at the bottom horizontal section of the spiral channel 41. After being soaked in antibacterial liquid, the down is fed into the first guide chamber 21 through the feed inlet 5, passes through the spiral channel 41 and the second guide chamber 22 in sequence, and is discharged from the discharge port 6 at the end of the second guide chamber 22.
[0025] Understandably, this embodiment proposes an antibacterial treatment device with drying function to address the situation where down soaked in antibacterial solution releases antibacterial solution particles during the drying process. In this embodiment, the down soaked in antibacterial solution undergoes a three-stage drying process. In the first stage, the first guide chamber 21 uses high wind speed to initially dry the down. In the second stage, the low-speed fan 43 in the spiral channel 41 reduces the wind speed and is at a higher temperature, allowing the heat to penetrate deeper into the down and ensuring that the moisture inside the down is effectively removed. In the third stage, the down is further dried in the second guide chamber 22 under the action of the hot air discharged from the spiral pipe 41 and the second conveyor belt 24, and then discharged from the outlet 6.
[0026] More specifically, in the actual implementation, the electric heating plate 42 in the particle collection area is activated first, so that its internal temperature is gradually increased, and the spiral channel 41 is also in a high-temperature environment. When the down enters the spiral channel 41 through the first guide chamber 21 (the temperature of the first guide chamber 21 is also rising synchronously), the high-speed fan and the low temperature (relative to the temperature inside the spiral channel 41) in the first guide chamber 21 quickly remove most of the moisture on the surface of the down. During this process, the antibacterial liquid particles released enter the particle collection area through the first micropore 25. After the down enters the spiral channel 41, under the action of the low-speed fan 43 and the high-temperature environment, the spiral channel 41 can increase the contact area with the down, so that the heat can penetrate deeper into the interior of the down, ensuring that the moisture inside the down can be effectively removed. At the same time, the antibacterial liquid particles released by the heating in the spiral channel 41 enter the particle collection area through the second micropore 44 in the horizontal section of the spiral channel 41.
[0027] More preferably, the cylinder 2 tapers towards the second fixing part 4. The bottom of the first guide chamber 21 and the second guide chamber 22 are respectively provided with a first conveyor belt 23 and a second conveyor belt 24; the first conveyor belt 23 is inclined downward towards the feed end of the spiral channel 41; the second conveyor belt 24 is inclined upward towards the discharge end of the spiral channel 41.
[0028] In this embodiment, by setting the cylinder 2 into a horizontally placed conical structure, the down feathers can be collected by gravity at the feed end of the spiral pipe 41 after entering the first guide chamber 21. Since the end of the cylinder 2 that is closer to the second fixing part 4 is thinner, the heat in the particle collection area can be collected and transferred to the first guide chamber 21 and the second guide chamber 22 more quickly, which can improve the drying effect on the down feathers. In addition, this setting of the cylinder 2 can reduce the flow rate of the down feathers when they approach the second fixing part 4 (due to the obstruction effect of the gradually thinning cylinder 2), resulting in a better drying effect.
[0029] In a further preferred embodiment, the first material guiding chamber 21 and the second material guiding chamber 22 are both separated from the particle collection area by a heat-conducting plate 46, so that the first material guiding chamber 21 and the second material guiding chamber 22 are at a certain high temperature, but their temperature is lower than that inside the spiral channel 41; wherein, the first micropore 25 is opened on the heat-conducting plate 46 located below the connection between the spiral channel 41 and the first material guiding chamber 21.
[0030] More preferably, the bottom of the particle collection area is detachably provided with a collection component 45, which contains an adsorbent material for adsorbing and collecting antibacterial liquid particles released by damp down.
[0031] Through the special channel structure design within the second fixing part 4 of this embodiment, efficient collection of antibacterial liquid particles released during the down drying process is achieved, avoiding the impact of particles on the drying effect and the environment. Simultaneously, the collection component 45 is located at the bottom, allowing the antibacterial liquid particles to fall smoothly into the collection component 45 under the influence of gravity. Furthermore, a drain port is provided at the bottom of the second fixing part 4, facilitating regular cleaning and replacement of the adsorbent material.
[0032] According to an embodiment of the present invention, the antibacterial treatment device realizes multi-stage targeted drying of soaked down and effective collection of antibacterial liquid particles released during the drying process. The device has a simple overall structure and achieves effective utilization of heat through a special channel structure design, making the drying operation more efficient during the antibacterial treatment of down.
[0033] It will be apparent to those skilled in the art that the embodiments of the present invention are not limited to the details of the exemplary embodiments described above, and that the embodiments of the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the embodiments of the present invention. Therefore, the embodiments should be considered exemplary and non-limiting in all respects, and the scope of the embodiments of the present invention is defined by the appended claims rather than the foregoing description. Therefore, all variations falling within the meaning and scope of equivalents of the claims are intended to be encompassed within the embodiments of the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims. Furthermore, it is clear that the word "comprising" does not exclude other units or steps, and the singular does not exclude the plural. Multiple units, modules, or devices recited in the system, apparatus, or terminal claims may also be implemented by the same unit, module, or device through software or hardware. The terms "first," "second," etc., are used to indicate names and do not indicate any particular order.
[0034] The above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this application.
Claims
1. An antibacterial treatment device for the production and processing of antibacterial down, characterized in that, It includes a cylinder (2) and a first fixing part (3) and a second fixing part (4) disposed at both ends of the cylinder (2). The second fixing part (4) includes a particle collection area. The cylinder (2) includes a first guiding cavity (21) and a second guiding cavity (22) arranged horizontally. A high-speed fan (31) is provided in the first fixed part (3) and at the feed end of the first guide cavity (21). A spiral channel (41) for connecting the first guide cavity (21) and the second guide cavity (22) is provided in the particle collection area. An electric heating plate (42) for heating the particle collection area is also provided. A low-speed fan (43) is provided at the top of the spiral channel (41). The first material guiding cavity (21) is provided with a first micropore (25) at the connection between it and the particle collection area, and the bottom horizontal section of the spiral channel (41) is provided with a second micropore (44). After being soaked in antibacterial liquid, the down feathers are fed into the first guide chamber (21) through the feed inlet (5), then pass through the spiral channel (41) and the second guide chamber (22) in sequence, and are discharged from the discharge port (6) at the end of the second guide chamber (22); The cylindrical body (2) is tapered toward the second fixing part (4); The bottom of the first material guiding cavity (21) and the second material guiding cavity (22) are respectively provided with a first conveyor belt (23) and a second conveyor belt (24); The first conveyor belt (23) is inclined downward toward the feed end of the spiral channel (41); The second conveyor belt (24) is inclined upward toward the discharge end of the spiral channel (41); The first material guiding cavity (21) and the second material guiding cavity (22) are separated from the particle collection area by a heat-conducting plate (46). The first micropore (25) is opened on the heat-conducting plate (46) located below the connection between the spiral channel (41) and the first material guiding cavity (21).
2. The antibacterial treatment device for antibacterial down production and processing according to claim 1, characterized in that: The bottom of the particle collection area is detachably provided with a collection component (45), which contains an adsorbent material for adsorbing and collecting antibacterial liquid particles released from damp down.
Citation Information
Patent Citations
Down uniform drying machine
CN219607510U