Cooling and deodorizing device for processing silica gel cotton pillow core

Through the combination of negative ion generator, suction assembly and fan, the automatic cooling and deodorization of the silicone cotton pillow core is achieved, solving the problem of low cooling and deodorization efficiency in the prior art, improving production efficiency and reducing health risks.

CN223115656UActive Publication Date: 2025-07-18DONGGUAN SICON SILICONE INTELLIGENT INNOVATION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422320230.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-07-18
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

During the existing silicone cotton pillow core processing, the cooling and deodorization device needs to be manually operated, with low cooling efficiency and incomplete deodorization, resulting in low production efficiency, which poses potential risks to the health of the operator.

Method used

A cooling and odor removal device including a negative ion generator, a suction assembly and a fan is designed. The negative ion generator is used to directly remove odor, the suction assembly absorbs toxic gas, and the fan cools it to achieve automatic processing.

Benefits of technology

The cooling and odor removal efficiency of the silicone cotton pillow core is improved, the intermediate link of heat transfer is reduced, the processing time is shortened, the health risks of operators are reduced, and the production efficiency is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a cooling and deodorizing device for processing a silica gel cotton pillow interior, in particular to a cooling and deodorizing device for processing a silica gel cotton pillow interior, which is used for cooling and deodorizing the silica gel cotton pillow interior and comprises a device body, a conveying device, a cooling device and a deodorizing device, the cooling device is mounted on the device body opposite to the conveying device; the deodorizing device comprises a negative-ion generator and an air suction assembly, and the negative-ion generator and the air suction assembly penetrate out of the bottom of the device body through a first pipeline and a second pipeline correspondingly and extend to the conveying device; according to the cooling and deodorizing device for processing the silica gel cotton pillow core, a product can be rapidly cooled, and the cooling efficiency is improved; through the air suction assembly and the second pipeline, heat and toxic gas emitted from the product can be directly absorbed, the toxic gas is effectively removed in time, accumulation of the toxic gas in a working area is avoided, and the risk that operators are exposed in toxic substances is reduced.
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Description

Technical Field

[0001] The utility model relates to the field of machining equipment, in particular to a cooling and deodorizing device for processing silica gel cotton pillow cores. Background Technique

[0002] The emergence of silica gel cotton pillow cores has developed against the background of people's increasing attention to sleep quality and health; with the acceleration of the modern life rhythm and the increase of work pressure, people pay more and more attention to the comfort of sleep and the protection of the cervical spine. Silica gel cotton pillow cores have good elasticity, air permeability and stability, can better adapt to the sleeping postures of the human body, and provide more comfortable support.

[0003] However, during the production of silica gel cotton pillow cores, some chemical reactions may occur, and these reactions will produce some odoriferous substances; the residual odor may contain some volatile organic compounds (VOCs) harmful to the human body. Long-term exposure to these harmful gases may irritate the respiratory tract, causing symptoms such as coughing, asthma, and dyspnea, and in severe cases, may even lead to respiratory tract inflammation or other health problems. For sensitive populations such as children, the elderly, pregnant women, and people suffering from respiratory diseases, the harm may be more obvious.

[0004] In the existing cooling and deodorizing device, it is necessary for workers to put the above products into the drying device. After drying, it is necessary to wait for a period of time for the products to cool down before taking them out; while the products usually reach a temperature of 200 °C or even higher, and the products are placed in the drying equipment for cooling, which will lead to an extension of the entire drying process time and reduce the output per unit time. Content of the Utility Model

[0005] Based on this, in view of the problems of the current existing technologies, it is necessary to provide a cooling and deodorizing device for processing silica gel cotton pillow cores with fast cooling and high deodorizing efficiency.

[0006] The technical solution of the utility model is a cooling and deodorizing device for processing silica gel cotton pillow cores, which is used for cooling and deodorizing silica gel cotton pillow cores. The cooling and deodorizing device for processing silica gel cotton pillow cores includes a device body, a conveying device, a cooling device and a deodorizing device; the cooling device is installed on the device body opposite to the conveying device; the deodorizing device includes an anion generator and a suction assembly, and the anion generator and the suction assembly respectively pass through the bottom of the device body through a first pipeline and a second pipeline and extend towards the conveying device.

[0007] Furthermore, a cooling and deodorizing device for processing a silica gel cotton pillow core for cooling and deodorizing the silica gel cotton pillow core. The cooling and deodorizing device for processing the silica gel cotton pillow core includes a device body, a conveying device, a cooling device, and a deodorizing device; the cooling device is installed on the device body opposite to the conveying device; the deodorizing device includes an anion generator and a suction assembly, and the anion generator and the suction assembly respectively pass through the bottom of the device body through a first pipe and a second pipe and extend towards the conveying device.

[0008] Furthermore, a grasping mechanism is further arranged on the conveying device. The grasping mechanism includes a support frame installed on the conveying device; a first sliding rail is arranged on the support frame, and the track direction of the first sliding rail is the same as the conveying direction of the conveying device; a transverse sliding rod is slidably arranged on the first sliding rail, and a manipulator is arranged on the sliding rod; the manipulator is opposite to the cooling device and the conveying device respectively.

[0009] Furthermore, the manipulator includes a fixed seat and a grasping member. The fixed seat is fixedly installed on the transverse sliding rod, and the grasping member and the fixed seat are connected by a lifting rope; a driving motor for controlling the lifting height of the lifting rope is arranged on the transverse sliding rod.

[0010] Furthermore, the first pipe includes a first outer pipe and a first inner pipe, and the first outer pipe is sleeved outside the first inner pipe; a plurality of pairs of opposite through holes are arranged between the first outer pipe and the first inner pipe, and they are connected and fixed by a connecting member.

[0011] Furthermore, the second pipe includes a second outer pipe and a second inner pipe, and the second outer pipe is sleeved outside the second inner pipe; a plurality of pairs of opposite through holes are arranged between the second outer pipe and the second inner pipe, and they are connected and fixed by a connecting member.

[0012] Furthermore, the connecting member is a plug pin.

[0013] Furthermore, internal threads are arranged on the through holes, and the connecting member is a bolt that matches them.

[0014] Furthermore, the conveying device includes a second sliding rail and a carrier for carrying products, and the carrier is slidably arranged on the second sliding rail.

[0015] Furthermore, the cooling device is a blower, and the blower is arranged on the device body and is opposite to the carrier; a fixed bracket is arranged on the periphery of the blower, and a condenser is arranged on the fixed bracket, and the cooling outlet of the condenser is opposite to the carrier.

[0016] Furthermore, opening and closing doors for ventilation are arranged on the side surfaces of the device body.

[0017] The beneficial effects of the present utility model are as follows:

[0018] Through the negative ion generator and the first pipeline, the negative ions emitted by the negative ion generator can be directly blown onto the products on the conveying device, enabling the negative ions to act on the products more concentratedly and directly, quickly combining with and decomposing the odor molecules, and improving the efficiency and effect of odor removal; through the cooling device, direct cooling of the products can be achieved, reducing the intermediate links of heat transfer, enabling the products to cool down quickly, and improving the cooling efficiency; through the air suction component and the second pipeline, the heat and toxic gases emitted from the products can be directly absorbed, effectively removing the toxic gases in a timely manner, preventing them from accumulating in the working area, and reducing the risk of operators being exposed to toxic substances. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 is a three-dimensional schematic diagram of a cooling and deodorizing device for processing silica gel cotton pillow cores according to an embodiment of the present utility model;

[0020] Figure 2 is Figure 1 a three-dimensional schematic diagram of the cooling and deodorizing device for processing silica gel cotton pillow cores after removing the outer shell;

[0021] Figure 3 is Figure 2 a three-dimensional schematic diagram of another angle of the cooling and deodorizing device for processing silica gel cotton pillow cores. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0022] For the convenience of understanding the present utility model, the present utility model will be described more comprehensively below. However, the present utility model can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the understanding of the disclosure content of the present utility model more thorough and comprehensive.

[0023] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those of ordinary skill in the technical field to which the present utility model belongs. The terms used in the description of the present utility model herein are only for the purpose of describing specific embodiments and are not intended to limit the present utility model.

[0024] Please refer to Figures 1 to 3, A cooling and deodorizing device 40 for processing a silica gel cotton pillow core provided for an embodiment of the present utility model, which is used for cooling and deodorizing the silica gel cotton pillow core; the cooling and deodorizing device 40 for processing the silica gel cotton pillow core includes a device body 10, a conveying device 20, a cooling device 30 and a deodorizing device 40; the cooling device 30 is installed on the device body 10 opposite to the conveying device 20; the deodorizing device 40 includes an anion generator 41 and an air suction assembly 42, and the anion generator 41 and the air suction assembly 42 respectively pass through a first pipeline 43 and a second pipeline 44 and penetrate out from the bottom of the device body 10 and extend towards the conveying device 20.

[0025] The product on the conveying device 20 is cooled by the cooling device 30, the anion generator 41 emits anions through the first pipeline 43 to deodorize the product on the conveying device 20, and then the heat and toxic gases emitted from the product are absorbed by the air suction assembly 42 through the second pipeline 44; when the cooling and deodorizing of the product are completed, the product is conveyed to the next process through the conveying device 20.

[0026] Through the anion generator 41 and the first pipeline 43, the anions emitted by the anion generator 41 can be directly blown onto the product on the conveying device 20, enabling the anions to act on the product more concentratedly and directly, quickly combining with and decomposing the odor molecules, and improving the efficiency and effect of deodorization; through the cooling device 30, direct cooling of the product can be achieved, reducing the intermediate links of heat transfer, enabling the product to quickly cool down and improving the cooling efficiency; through the air suction assembly 42 and the second pipeline 44, the heat and toxic gases emitted from the product can be directly absorbed, effectively removing the toxic gases in a timely manner, preventing them from accumulating in the working area, and reducing the risk of operators being exposed to toxic substances.

[0027] Please refer to Figure 2 and Figure 3 , a grasping mechanism 21 is further provided on the conveying device 20, and the grasping mechanism 21 includes a support frame 210, and the support frame 210 is installed on the conveying device 20; a first slide rail 211 is provided on the support frame 210, and the track direction of the first slide rail 211 is the same as the conveying direction of the conveying device 20; a transverse slide bar 212 is slidably provided on the first slide rail 211, and a manipulator 213 is provided on the transverse slide bar 212; the manipulator 213 is respectively opposite to the cooling device 30 and the conveying device 20. The position where the manipulator 213 slides on the first slide rail 211 through the transverse slide bar 212 can grasp the product according to the position of the product on the conveying device 20; it is convenient for the manipulator 213 to quickly and accurately grasp the product, shortening the waiting time for the product to be grasped, accelerating the rhythm of the entire production process, and improving the production efficiency.

[0028] The manipulator 213 includes a fixed seat 214 and a grabbing member 215. The fixed seat 214 is fixedly mounted on the transverse slide bar 212. The grabbing member 215 and the fixed seat 214 are connected by a lifting rope 216. A driving motor 217 for controlling the lifting height of the lifting rope 216 is provided on the transverse slide bar 212. By controlling the lifting height of the lifting rope 216 by the driving motor 217, the grabbing member 215 can accurately grab the product at different heights, adapting to the height change of the product on the conveying device 20 and the requirements of different processes; the height of the lifting rope 216 can also be adjusted according to the wind force of the cooling device 30 to ensure that the product is blown by uniform and appropriate wind force during the cooling process, thereby achieving the best cooling effect and ensuring the stability of product quality.

[0029] like Figure 3 As shown, the first pipe 43 includes a first outer tube 440 and a first inner tube 441, and the first outer tube 440 is sleeved outside the first inner tube 441; a plurality of pairs of opposite through holes 432 are arranged between the first outer tube 440 and the first inner tube 441, and they are connected and fixed by a connector. According to the height of the product, by adjusting the relative height of the first outer tube 440 and the first inner tube 441, the emission height of the negative ion generator 41 is controlled to ensure that the negative ions can accurately reach the surface of the product, achieve more effective deodorization and purification effects, and avoid the inability of the negative ions to fully act on the product due to improper emission height; the negative ions are concentrated in the area where the product is located, the utilization efficiency of the negative ions is improved, the speed of deodorization and purification is accelerated, and the processing time is shortened.

[0030] The second pipe 44 includes a second outer tube 440 and a second inner tube 441, and the second outer tube 440 is sleeved on the outside of the second inner tube 441; a plurality of pairs of opposing through holes 432 are arranged between the second outer tube 440 and the second inner tube 441, and they are connected and fixed by connecting pieces; the connecting pieces are latches; in other embodiments, an internal thread may be arranged on the through hole 432, and the connecting piece may also be a matching bolt; according to the height of the product, the relative height of the second outer tube 440 and the second inner tube 441 is adjusted to control the suction height of the suction assembly 42, thereby ensuring that the suction port can be accurately located in the area where the product emits heat and toxic gases, thereby maximizing the suction efficiency and quickly and effectively absorbing harmful substances; through precise positioning, the best suction effect is achieved with minimal power consumption.

[0031] like Figure 2 As shown, the conveying device 20 includes a second slide rail 21 and a bearing seat 22 for bearing the product, and the bearing seat 22 is slidably arranged on the second slide rail 21; the bearing seat 22 slides on the second slide rail 21 to achieve precise linear motion, thereby ensuring the position accuracy of the product during the conveying process; the second slide rail 21 provides stable guidance and support, thereby making the movement of the bearing seat 22 smoother, reducing the shaking and bumping of the product during the transmission process, and reducing the risk of product damage.

[0032] The cooling device 30 is a blower 31. The blower 31 is disposed on the device body 10 and is opposite to the carrier seat 22. A fixing bracket 32 is provided on the periphery of the blower 31, and a condenser 33 is provided on the fixing bracket 32. The cooling outlet 330 of the condenser 33 is opposite to the carrier seat 22. The air flow generated by the blower 31 can evenly blow the products on the carrier seat 22. The cooling outlet 330 of the condenser 33 is opposite to the carrier seat 22, which helps to ensure the uniformity of cooling of each part of the product, avoid local overheating or overcooling, and ensure the consistency of product quality. The cooling outlet 330 of the condenser 33 directly faces the carrier seat 22, which can more accurately cool the product and improve the pertinence and effect of cooling.

[0033] As Figure 1 shown, opening and closing doors 11 for ventilation are provided on the side surfaces of the device body 10. The openable ventilation channels 11 on the side surfaces of the device body 10 help to promote air circulation and enhance the overall heat dissipation effect. When cooperating with the blower 31 and the condenser 33, they can timely discharge hot air and introduce fresh cold air, thereby improving the cooling efficiency.

[0034] The above-described embodiments merely represent several implementation manners of the present invention. The description is relatively specific and detailed, but it should not be construed as a limitation on the scope of the patent of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several modifications and improvements can still be made, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the patent of the present invention shall be subject to the appended claims.

Claims

1. A cooling and deodorizing device for processing silica gel cotton pillow cores, characterized in that: A cooling and deodorizing device for processing silica gel cotton pillow cores for cooling and deodorizing of silica gel cotton pillow cores. The cooling and deodorizing device for processing silica gel cotton pillow cores includes a device body, a conveying device, a cooling device and a deodorizing device; the cooling device is installed on the device body opposite to the conveying device; the deodorizing device includes a negative ion generator and a suction component, and the negative ion generator and the suction component respectively pass through the bottom of the device body through a first pipe and a second pipe and extend towards the conveying device.

2. The cooling and deodorizing device for processing silica gel cotton pillow cores according to claim 1, wherein: A grasping mechanism is further arranged on the conveying device. The grasping mechanism includes a support frame which is installed on the conveying device; a first sliding rail is arranged on the support frame, and the track direction of the first sliding rail is the same as the conveying direction of the conveying device; a transverse sliding rod is slidably arranged on the first sliding rail, and a manipulator is arranged on the transverse sliding rod; the manipulator is opposite to the cooling device and the conveying device respectively.

3. The cooling and deodorizing device for processing silica gel cotton pillow cores according to claim 2, characterized in that: The manipulator includes a fixed seat and a grasping part. The fixed seat is fixedly installed on the transverse sliding rod, and the grasping part and the fixed seat are connected by a lifting rope; a driving motor for controlling the lifting height of the lifting rope is arranged on the transverse sliding rod.

4. The cooling and deodorizing device for processing silica gel cotton pillow cores according to claim 1, characterized in that: The first pipe includes a first outer pipe and a first inner pipe, and the first outer pipe is sleeved outside the first inner pipe; a plurality of pairs of opposite through holes are arranged between the first outer pipe and the first inner pipe, and they are connected and fixed by a connecting piece.

5. The cooling and deodorizing device for processing silica gel cotton pillow cores according to claim 1, characterized in that: The second pipe includes a second outer pipe and a second inner pipe, and the second outer pipe is sleeved outside the second inner pipe; a plurality of pairs of opposite through holes are arranged between the second outer pipe and the second inner pipe, and they are connected and fixed by a connecting piece.

6. The cooling and deodorizing device for processing silica gel cotton pillow cores according to claim 4 or 5, characterized in that: The connecting piece is a plug pin.

7. The cooling and deodorizing device for processing silica gel cotton pillow cores according to claim 4 or 5, characterized in that: Internal threads are arranged on the through holes, and the connecting piece is a bolt that matches them.

8. The cooling and deodorizing device for processing silica gel cotton pillow cores according to claim 1, characterized in that: The conveying device includes a second sliding rail and a carrier for carrying products, and the carrier is slidably arranged on the second sliding rail.

9. The cooling and deodorizing device for processing silica gel cotton pillow cores according to claim 8, characterized in that: The cooling device is a fan. The fan is arranged on the device body and is opposite to the carrier; a fixed bracket is arranged on the periphery of the fan, and a condenser is arranged on the fixed bracket. The cooling outlet of the condenser is opposite to the carrier.

10. The cooling and deodorizing device for processing silica gel cotton pillow cores according to claim 1, characterized in that: Opening and closing doors for ventilation are arranged on the side surfaces of the device body.