Raw material drying device for antistatic film production

By combining infrared radiation heating plates and ion air bars, the problem of static electricity accumulation in the raw material drying device for antistatic film production is solved, achieving uniform drying and safety of raw materials and ensuring the stability of subsequent processing.

CN224230567UActive Publication Date: 2026-05-12SUZHOU NANOPLASTIC NEW MATERIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SUZHOU NANOPLASTIC NEW MATERIAL CO LTD
Filing Date
2025-05-09
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Existing raw material drying equipment for antistatic film production is prone to generating static electricity during the drying process, which can lead to static electricity accumulation, potentially causing dust adsorption, agglomeration, or even explosion risks, and the drying process is not thorough.

Method used

The method combines an infrared radiation heating plate and an ion air bar. The raw material is evenly spread out by a motor and the ion air bar is used to neutralize static electricity. Combined with the ion hot air machine, the ion flow is released for drying, which prevents the generation and accumulation of static electricity.

Benefits of technology

This method achieves uniform drying of raw materials, avoids dust adsorption and agglomeration caused by static electricity, ensures the uniformity and safety of drying, and reduces the risk of defects in subsequent processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of anti-static film production, in particular to a raw material drying device for anti-static film production, which comprises a supporting plate, a feeding channel is fixedly connected in a shell in a penetrating manner, a feeding port is communicated with the interior of the feeding channel, and sliding rods are slidably connected in two connecting blocks. The upper end of the sliding block is fixedly connected with a connecting plate, the upper end of the infrared radiation heating plate is detachably connected with a material carrying plate, the output end of the motor is fixedly connected with a driving wheel through a coupler, and the tooth face of the driving wheel is sequentially meshed with the convex face in the sliding block. Charges on the surface of raw materials passing through the lower end of the ion air bar are neutralized, the ion air heater pumps hot air into the air supply pipe, the raw materials at the upper end of the material holding plate are subjected to hot air drying through the air outlet, and meanwhile ion flow is released. And the phenomenon that dry fine raw material particles are adsorbed on the inner wall of equipment or agglomerate mutually due to static electricity generated by friction and flowing in the drying process of the raw materials, and drying uniformity and subsequent processes are affected is prevented.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of antistatic film production, and particularly relates to a raw material drying device for antistatic film production. BACKGROUND

[0002] The raw material drying device for antistatic film production is a drying device specially used for processing antistatic film raw materials. Its core function is to remove water or solvent from the raw materials while strictly controlling the generation of static electricity, so as to ensure that the raw materials have stable antistatic performance in subsequent film forming processes. If the antistatic film raw materials are stacked too thick in the existing device, the internal moisture is difficult to quickly discharge, resulting in incomplete drying and increasing the risk of defects in subsequent processing.

[0003] After searching, a utility model patent with publication number CN211030815U is found, which specifically discloses a raw material drying device for high polymer heat shrinkable film production, which comprises a base, a turnover mechanism, a drying mechanism and a vibration mechanism. The top left side of the base is provided with the vibration mechanism, the top of the vibration mechanism is provided with the turnover mechanism, and the right side of the turnover mechanism is connected with the drying mechanism. The drying mechanism can dry the raw material particles, and the turnover mechanism can drive the drying mechanism to turn over and repeatedly dry the raw material in the drying mechanism. The utility model can alternately turn over through the drying mechanism, so that the raw material can be repeatedly dried in the drying box. The granular raw material rolls back and forth on the drying plate, so that the hot air used for drying can uniformly act on the surface of the granular material, thereby making the drying more uniform and complete. It is practical, suitable for wide promotion and use.

[0004] In the above-mentioned patent, only the drying box, the turnover mechanism and the vibration mechanism are used to dry the raw materials. However, during the drying process, the raw materials are easy to generate static electricity when rubbing against the inner wall of the drying cavity. However, the drying device lacks a static electricity elimination device, which may cause static electricity accumulation and lead to the risk of dust adsorption, agglomeration and even explosion.

[0005] Therefore, it is necessary to invent a raw material drying device for antistatic film production to solve the above-mentioned problems. UTILITY MODEL CONTENTS

[0006] The utility model aims to provide a raw material drying device for antistatic film production, which can uniformly spread and dry the raw materials through the motor, the driving gear and the heating plate. The ion wind stick and the ion hot air blower are used to blow and dry the raw materials and neutralize the electric charge, so as to solve the problem that the traditional drying device lacks a static electricity elimination device in the prior art, which may cause static electricity accumulation.

[0007] In order to achieve the above object, the utility model provides the following technical scheme: A raw material drying device for antistatic film production, including support plate, the support plate upper end fixedly connected with the casing, the casing inside fixedly connected with the feed channel, the feed channel is connected with the casing, the feed channel end fixedly connected with the feed port, the feed port is connected with the feed channel, the support plate upper end fixedly connected with two connecting blocks, two the connecting block inside slidingly connected with the sliding rod, two the sliding rod end common fixedly connected with the sliding block, the sliding block upper end fixedly connected with the connecting plate, the connecting plate upper end fixedly connected with the infrared radiation heating plate, the infrared radiation heating plate upper end detachably connected with the material board, the support plate upper end fixedly connected with the motor, the motor output fixedly connected with the driving wheel through the shaft, the driving wheel and the sliding block inside convex surface cooperation, the casing side wall fixedly connected with the protection door through the hinge.

[0008] Preferably, the feed channel side wall fixedly connected with fixed support, the fixed support inner wall fixedly connected with ion wind stick.

[0009] Preferably, the support plate upper end fixedly connected with ion hot air machine, the casing inside fixedly connected with the air supply pipe, the air supply pipe is connected with the casing, the casing inner wall fixedly connected with the air outlet, the air supply pipe is connected with the air outlet, the ion hot air machine side wall fixedly connected with the input pipe.

[0010] Preferably, the input pipe side wall fixedly connected with filter box, the filter box inner wall slidingly connected with filter plate, the filter plate inner wall detachably connected with filter cotton core.

[0011] Preferably, the protection door side wall fixedly connected with observation glass, the casing side wall is provided with a plurality of moisture discharge ports.

[0012] Preferably, the support plate lower end fixedly connected with a plurality of support columns.

[0013] In the above technical scheme, the utility model provides technical effect and advantage:

[0014] 1、When the raw material needs to be dried, open the feeding port 102, pour the raw material from the feeding port 102, the raw material enters the feeding channel 105 through the feeding port 102, falls into the material loading plate 206 through the feeding channel 105, open the infrared radiation heating plate 205, heat the raw material, drive the motor 207, the output end of the motor 207 drives the driving wheel 208 to rotate, the tooth surface of the driving wheel 208 is matched with the inner convex surface of the sliding block 203, the driving wheel 208 drives the sliding block 203 to slide reciprocatingly and transversely, the sliding block 203 drives the sliding rod 202 to slide reciprocatingly and transversely, the sliding block 203 drives the connecting plate 204 to slide reciprocatingly and transversely, the connecting plate 204 drives the infrared radiation heating plate 205 to slide reciprocatingly and transversely, the infrared radiation heating plate 205 drives the material loading plate 206 to slide reciprocatingly and transversely to make the raw material uniformly distributed on the upper end of the material loading plate 206, cooperate with the heating of the infrared radiation heating plate 205 to uniformly heat and dry the raw material, open the protective door 103 after drying is completed, take out the dried raw material by holding the side wall handle of the material loading plate 206 to pull out the material loading plate 206;

[0015] 2、Open the ion wind stick 402, the electric charge on the surface of the raw material passing through the lower end of the ion wind stick 402 is neutralized, start the ion hot air blower 301, the ion hot air blower 301 pumps hot air into the air supply pipe 302, the hot air enters the air outlet 307 through the air supply pipe 302, and the hot air dries the raw material on the upper end of the material loading plate 206 through the air outlet 307, while releasing ion flow, preventing the raw material from being easily electrified due to friction and flow during the drying process, so that the dried fine raw material particles are adsorbed on the inner wall of the equipment or agglomerated with each other, affecting the drying uniformity and subsequent process. BRIEF DESCRIPTION OF DRAWINGS

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed in the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments described in the present application, and other drawings can also be obtained by those skilled in the art according to these drawings.

[0017] Figure 1 It is a front view structure schematic diagram of the utility model;

[0018] Figure 2 It is a rear view structure schematic diagram of the utility model;

[0019] Figure 3 It is a front view cross-sectional structure schematic diagram of the utility model;

[0020] Figure 4 It is a left view cross-sectional structure schematic diagram of the utility model;

[0021] Figure 5The right view of the sectional structure schematic diagram of the utility model.

[0022] Mark explanation:

[0023] 001, support plate; 101, shell; 102, feed inlet; 103, protection door; 104, observation glass; 105, feed channel; 106, support column; 201, connecting block; 202, sliding rod; 203, sliding block; 204, connecting plate; 205, infrared radiation heating plate; 206, material riding plate; 207, motor; 208, driving wheel; 301, ion hot air machine; 302, air supply pipe; 303, input pipe; 304, filter box; 305, filter plate; 306, filter cotton core; 307, air outlet; 401, fixed support; 402, ion wind stick; 403, dehumidification port. Specific implementation

[0024] In order to make the technical personnel in the art better understand the technical scheme of the utility model, the utility model will be introduced further in detail below in combination with the drawings.

[0025] The utility model provides a kind of Figures 1-5The utility model discloses an anti -static film production with raw material drying device, including support plate 001, support plate 001 upper end fixedly connected with the casing 101, the casing 101 inside fixedly connected with the feed channel 105, the feed channel 105 is connected with the casing 101 inside, the feed channel 105 end fixedly connected with the feed port 102, the feed port 102 is connected with the feed channel 105 inside, support plate 001 upper end fixedly connected with two connecting blocks 201, two connecting blocks 201 inside slidingly connected with sliding rod 202, two sliding rods 202 end common fixedly connected with sliding block 203, sliding block 203 upper end fixedly connected with the connecting plate 204, the connecting plate 204 upper end fixedly connected with infrared radiation heating plate 205, infrared radiation heating plate 205 upper end detachably connected with the material board 206, support plate 001 upper end fixedly connected with motor 207, motor 207 output is fixedly connected with driving wheel 208 through the shaft coupling, and the convex surface cooperation in the sliding block 203 is matched with driving wheel 208, and the casing 101 side wall is fixedly connected with the protective door 103 through the hinge, when needing to dry raw material, open the feed port 102, pour the raw material from the feed port 102, the raw material enters the feed channel 105 through the feed port 102, falls into the material board 206 through the feed channel 105, opens infrared radiation heating plate 205, and heats raw material, drives motor 207, and the output end of motor 207 drives driving wheel 208 to rotate, and the convex surface cooperation in the sliding block 203 is matched with the tooth surface of driving wheel 208, and driving wheel 208 drives sliding block 203 to reciprocatingly slide horizontally, and sliding block 203 drives sliding rod 202 to reciprocatingly slide horizontally, and sliding block 203 drives connecting plate 204 to reciprocatingly slide horizontally, and connecting plate 204 drives infrared radiation heating plate 205 to reciprocatingly slide horizontally, and infrared radiation heating plate 205 drives material board 206 to reciprocatingly slide horizontally and makes the raw material evenly distribute on the upper end of material board 206, and the heating of infrared radiation heating plate 205 is uniformly heated and dried to raw material, and after drying is completed, the protective door 103 is opened, and the material board 206 is extracted by holding the material board 206 side wall handle, and the raw material of drying completion can be taken out.

[0026] The utility model discloses an anti -static film production with raw material drying device, including support plate 001, support plate 001 upper end fixedly connected with the casing 101, the casing 101 inside fixedly connected with the feed channel 105, the feed channel 105 is connected with the casing 101 inside, the feed channel 105 end fixedly connected with the feed port 102, the feed port 102 is connected with the feed channel 105 inside, support plate 001 upper end fixedly connected with two connecting blocks 201, two connecting blocks 201 inside slidingly connected with sliding rod 202, two sliding rods 202 end common fixedly connected with sliding block 203, sliding block 203 upper end fixedly connected with the connecting plate 204, the connecting plate 204 upper end fixedly connected with infrared radiation heating plate 205, infrared radiation heating plate 205 upper end detachably connected with the material board 206, support plate 001 upper end fixedly connected with motor 207, motor 207 output is fixedly connected with driving wheel 208 through the shaft coupling, and the convex surface cooperation in the sliding block 203 is matched with driving wheel 208, and the convex surface cooperation in the sliding block 203 is matched with the tooth surface of driving wheel 208, and driving wheel 208 drives sliding block 203 to reciprocatingly slide horizontally, and sliding block 203 drives sliding rod 204 to reciprocatingly slide horizontally, and sliding block 203 drives connecting plate 205 to reciprocatingly slide horizontally, and connecting plate 204 drives infrared radiation heating plate 206 to reciprocatingly slide horizontally, and infrared radiation heating plate 205 drives material board 207 to reciprocatingly slide horizontally and makes the raw material evenly distribute on the upper end of the material board 206, and the heating of infrared radiation heating plate 205 is uniformly heated and dry to raw material, and after drying is completed, the protective door 103 is opened, and

[0027] The upper end of the supporting plate 001 is fixedly connected with an ion hot air machine 301, a blast pipe 302 is fixedly connected in the shell 101, the blast pipe 302 communicates with the inside of the shell 101, an air outlet 307 is fixedly connected to the inner wall of the shell 101, the blast pipe 302 communicates with the inside of the air outlet 307, an input pipe 303 is fixedly connected to the side wall of the ion hot air machine 301, the ion hot air machine 301 is started, the ion hot air machine 301 pumps hot air into the blast pipe 302, the hot air enters the air outlet 307 through the blast pipe 302, and the hot air dries the raw materials on the upper end of the material plate 206 through the air outlet 307, and the ion flow is released to neutralize the electric charge on the surface of the raw materials.

[0028] The side wall of the input pipe 303 is fixedly connected with a filter box 304, the inner wall of the filter box 304 is slidably connected with a filter plate 305, and the inner wall of the filter plate 305 is detachably connected with a filter cotton core 306; air is filtered by the filter cotton core 306 in the filter plate 305, enters the filter box 304, and then enters the input pipe 303, so that dust in the air is filtered, and the raw materials are prevented from being polluted by the dust and affected by subsequent processes.

[0029] The side wall of the protective door 103 is fixedly connected with an observation glass 104, and a plurality of moisture discharge ports 403 are arranged on the side wall of the shell 101; when the raw materials are dried, the inside of the shell 101 can be observed through the observation glass 104 at any time, and moisture on the surface of the raw materials is discharged out of the shell 101 through the moisture discharge ports 403.

[0030] The lower end of the supporting plate 001 is fixedly connected with a plurality of supporting columns 106, and the plurality of supporting columns 106 support the whole device to ensure the stability of the whole device during operation.

[0031] The utility model works as follows: when the raw materials need to be dried, the feeding port 102 is opened, the raw materials are poured into the feeding port 102, the raw materials enter the feeding channel 105 through the feeding port 102, fall into the material plate 206 through the feeding channel 105, the infrared radiation heating plate 205 is opened to heat the raw materials, the driving motor 207 is driven, the output end of the motor 207 drives the driving wheel 208 to rotate, the tooth surface of the driving wheel 208 is matched with the inner convex surface of the sliding block 203, the driving wheel 208 drives the sliding block 203 to reciprocatingly slide transversely, the sliding block 203 drives the sliding rod 202 to reciprocatingly slide transversely, the sliding block 203 drives the connecting plate 204 to reciprocatingly slide transversely, the connecting plate 204 drives the infrared radiation heating plate 205 to reciprocatingly slide transversely, the infrared radiation heating plate 205 drives the material plate 206 to reciprocatingly slide transversely to make the raw materials uniformly distributed on the upper end of the material plate 206, and the raw materials are uniformly heated and dried in cooperation with the heating of the infrared radiation heating plate 205; after drying, the protective door 103 is opened, the material plate 206 is taken out by holding the side wall handle of the material plate 206, and the dried raw materials can be taken out.

[0032] The ion wind rod 402 is opened, the electric charge on the surface of the raw material passing through the lower end of the ion wind rod 402 is neutralized, the ion hot air blower 301 is started, the ion hot air blower 301 pumps hot air into the air supply pipe 302, the hot air enters the air outlet 307 through the air supply pipe 302, and the raw material on the upper end of the material plate 206 is dried by hot air through the air outlet 307, and an ion flow is released at the same time, so that the fine raw material particles are prevented from being adsorbed on the inner wall of the equipment or aggregated with each other due to static electricity generated by friction and flow during the drying process, and the drying uniformity and subsequent process are affected.

[0033] The above only describes some exemplary embodiments of the present application by way of illustration, without doubt, for ordinary skilled in the art, without departing from the spirit and scope of the present application, the described embodiments can be modified in various ways. Therefore, the above drawings and description are illustrative in nature and should not be construed as limiting the scope of protection of the present application.

Claims

1. A raw material drying device for antistatic film production, comprising a support plate (001), characterized in that: A housing (101) is fixedly connected to the upper end of the support plate (001). A feeding channel (105) is fixedly connected through the inside of the housing (101). The feeding channel (105) communicates with the inside of the housing (101). A feeding port (102) is fixedly connected to the end of the feeding channel (105). The feeding port (102) communicates with the inside of the feeding channel (105). Two connecting blocks (201) are fixedly connected to the upper end of the support plate (001). Sliding rods (202) are slidably connected inside the two connecting blocks (201). The ends of the two sliding rods (202) are fixedly connected to a common... A slider (203) is fixedly connected to a connecting plate (204) at its upper end. An infrared radiation heating plate (205) is fixedly connected to the upper end of the connecting plate (204). A feeding plate (206) is detachably connected to the upper end of the infrared radiation heating plate (205). A motor (207) is fixedly connected to the upper end of the support plate (001). A drive wheel (208) is fixedly connected to the output end of the motor (207) through a coupling. The drive wheel (208) cooperates with the convex surface inside the slider (203). A protective door (103) is fixedly connected to the side wall of the housing (101) through a hinge.

2. The raw material drying device for antistatic film production according to claim 1, characterized in that: A fixed bracket (401) is fixedly connected to the side wall of the feeding channel (105), and an ion fan bar (402) is fixedly connected to the inner wall of the fixed bracket (401).

3. The raw material drying device for antistatic film production according to claim 1, characterized in that: An ion hot air blower (301) is fixedly connected to the upper end of the support plate (001). An air supply pipe (302) is fixedly connected through the inside of the housing (101). The air supply pipe (302) communicates with the inside of the housing (101). An air outlet (307) is fixedly connected to the inner wall of the housing (101). The air supply pipe (302) communicates with the inside of the air outlet (307). An input pipe (303) is fixedly connected to the side wall of the ion hot air blower (301).

4. The raw material drying device for antistatic film production according to claim 3, characterized in that: A filter box (304) is fixedly connected to the side wall of the input pipe (303), a filter plate (305) is slidably connected to the inner wall of the filter box (304), and a filter cotton core (306) is detachably connected to the inner wall of the filter plate (305).

5. The raw material drying device for antistatic film production according to claim 1, characterized in that: The protective door (103) has an observation glass (104) fixedly connected to its side wall, and the housing (101) has multiple vents (403) on its side wall.

6. The raw material drying device for antistatic film production according to claim 1, characterized in that: The lower end of the support plate (001) is fixedly connected to multiple support columns (106).