Drying equipment for C-type parylene monomer

By combining multi-layer staggered conveyor belts and crushing and extruding blades, the problems of low powder drying efficiency and pollution emissions in existing equipment have been solved, achieving efficient powder processing and zero pollution emissions.

CN223783181UActive Publication Date: 2026-01-09SHENZHEN FANGCUNDA TECH CO LTD
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Patent Information

Application Number
CN202520297196.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-24
Publication Date
2026-01-09
Estimated Expiration
2035-02-24

AI Technical Summary

Technical Problem

Existing powder raw material drying equipment has low drying efficiency and is prone to powder overflow and adhesion, resulting in raw material loss.

Method used

The system employs a multi-layered, staggered conveyor belt system, combined with crushing and extrusion blades. Through the synergistic effect of hot air drying and the conveyor belt, powder raw materials are gradually crushed and dried, and pollution-free emissions are achieved through a filtration structure.

Benefits of technology

It achieves efficient powder drying, ensuring that raw materials are processed into powder form without pollution emissions.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223783181U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of parylene drying equipment, in particular to drying equipment for C-type parylene monomers. Comprising a drying box body, a crushing cutter assembly and an extrusion cutter assembly, a feeding port and an air outlet are formed in the top face of the drying box body, four layers of staggered conveying belts are horizontally arranged in the drying box body, an air heater and a material receiving groove are arranged at the bottom of the drying box body, a stainless steel wire roller is arranged at the tail end of each layer of conveying belt in the moving direction, and a smashing cutter assembly is arranged on the lower side of the tail end of the second layer of conveying belt in the moving direction. An extrusion knife assembly is arranged on the lower side of the tail end of the third conveying belt in the moving direction, a temperature sensor is arranged in the drying box, a control panel is arranged outside the drying box, an air outlet is rectangular, multiple layers of baffles inclining downwards are arranged in a crossed mode in the air outlet, and filter cloth is arranged on the baffles. The smashing cutter assembly comprises a rectangular cutter rest, a smashing cutter female roller and a smashing cutter male roller are arranged on the inner side of the cutter rest, annular blades and annular cutter grooves are evenly distributed on the smashing cutter female roller and the smashing cutter male roller, and the stainless steel wire roller can brush off raw materials adhering to the conveying belt.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a parylene drying equipment technical field especially relates to a kind of drying equipment of C type parylene monomer. BACKGROUND

[0002] C type parylene needs to carry out Hong dry to powder in production process, but the existing powder raw material drying device is mostly low in drying efficiency, and it is easy to cause powder overflow to cause raw material loss, meanwhile, powder is easy to stick on drying box and be difficult to unload. UTILITY MODEL CONTENTS

[0003] The utility model is mainly to provide a kind of drying equipment of C type parylene monomer, to effectively solve the problem raised in background art.

[0004] To achieve the above object, the utility model takes the following technical scheme: a kind of drying equipment of C type parylene monomer, including drying box body, crushing cutter assembly, extrusion cutter assembly;The drying box body is rectangular box structure, top surface is provided with feeding opening and air outlet, feeding opening is provided with feeding opening cover, four layers of misplacement arrangement's conveying belt are horizontally arranged in the inside of drying box body, and are respectively first conveying belt of the uppermost layer, second conveying belt of second layer, third conveying belt of third layer, fourth conveying belt of fourth layer, the conveying belt is annular closed structure, and two ends are respectively with a rotating shaft to tension conveying belt, each layer of conveying belt is separately provided with a conveying belt motor drive rotating shaft rotation that is fixed in the side of drying box body, hot air fan and receiving groove are provided at the bottom of drying box body, a stainless steel wire roller is provided at the end of the direction of movement of each layer of conveying belt, a crushing cutter assembly is provided at the end of the direction of movement of second conveying belt and the lower side of stainless steel wire roller, an extrusion cutter assembly is provided at the end of the direction of movement of third conveying belt and the lower side of stainless steel wire roller, the lower side of extrusion cutter assembly and crushing cutter assembly is fixed with two support rods that are fixed in the side wall of drying box body, and is driven with a cutter shaft motor that is fixed in the outer side wall of drying box body, temperature sensor is provided in the inside of drying box body, and control panel is provided outside, and control panel is electrically connected with temperature sensor, hot air fan, conveying belt motor and cutter shaft motor.

[0005] Preferably, the air outlet is a rectangular tube, and a plurality of downwardly inclined baffles are arranged inside the air outlet.

[0006] Preferably, the four layers of misplacement arrangement's conveying belt, the first conveying belt moves to the right, the second conveying belt moves to the left, the second conveying belt is mispositioned to the right, and the material on the first conveying belt falls downward on the second conveying belt after moving to the right end, the third conveying belt and the fourth conveying belt are arranged according to the same principle, and the receiving groove is arranged at the lower side of the end of the direction of movement of the fourth conveying belt.

[0007] Preferably, the crushing knife assembly comprises a rectangular knife holder, a crushing knife female roller and a crushing knife male roller are arranged inside the knife holder, the crushing knife female roller and the crushing knife male roller are provided with uniformly distributed annular blades and annular blade grooves, the annular blades of the crushing knife male roller are inserted into the blade grooves of the crushing knife female roller, the annular blades of the crushing knife female roller are inserted into the blade grooves of the crushing knife male roller, a driving gear is mounted on the crushing knife female roller outside the knife holder, a driven gear is mounted on the crushing knife male roller, the driving gear and the driven gear are meshed with each other, and the other end of the crushing knife female roller is connected with the knife shaft motor through a shaft coupling.

[0008] Preferably, the extrusion knife assembly structure is the same as the crushing knife assembly, except that the surface of the light stick knife driving roller and the light stick knife driven roller is a light shaft.

[0009] Preferably, the rotating direction of the stainless steel wire roller is opposite to the rotating direction of the rotating shaft of the conveying belt adjacent to the same layer.

[0010] In use, the hot air fan, the conveying belt motor and the knife shaft motor are started, the raw materials to be dried are added to the first conveying belt from the charging port, and then the charging port cover is covered, the raw materials slowly move on the first conveying belt, when moving to the end, the stainless steel wire roller helps to brush and push the raw materials to the second conveying belt, when the second conveying belt moves to the end to the right, the stainless steel wire roller helps to brush and push the raw materials to the space between the crushing knife female roller and the crushing knife male roller of the crushing knife assembly, the two crush the blocky materials in the raw materials, and the crushed raw materials are easy to dry, the crushed raw materials fall on the third conveying belt, when the raw materials on the third conveying belt move to the right end, the stainless steel wire roller helps to brush and push the raw materials to the space between the light stick knife driving roller and the light stick knife driven roller, the two crush the small particle raw materials into powder, and finally the raw materials are conveyed to the receiving groove through the fourth conveying belt. When the gas overflows from the air outlet, the powder raw materials carried in the air fall down after being blocked by the multiple layers of baffles, and finally are filtered by the filter cloth and discharged into the atmosphere, so that no pollution is discharged.

[0011] The drying speed is fast, the raw materials are processed into powder after drying, and no pollution is discharged. BRIEF DESCRIPTION OF DRAWINGS

[0012] ATTACHED Figure 1 It is a structural schematic view of the utility model.

[0013] ATTACHED Figure 2 It is an attached Figure 1 It is a side view.

[0014] ATTACHED Figure 3 It is a crushing knife three-dimensional structure schematic view of the utility model.

[0015] ATTACHED Figure 4 It is a crushing knife structure plan view of the utility model.

[0016] ATTACHED Figure 5The utility model discloses an extrusion knife structure schematic view.

[0017] Attached Figure 1 In -5, drying box 1, pivot 2, air outlet 3, baffle 4, filter cloth 5, first conveying belt 6-1, second conveying belt 6-2, third conveying belt 6-3, fourth conveying belt 6-4, feeding port 7, feeding port cover 7-1, receiving groove 8, hot air blower 9, support rod 10, extrusion knife assembly 11, crushing knife assembly 11-1, stainless steel wire roller 12, temperature sensor 13, control panel 14, driven gear 15, driving gear 16, crushing knife female roller 17, tool rest 18, coupling 19, crushing knife male roller 20, light stick knife driving roller 21, light stick knife driven roller 22, conveying belt motor 23, cutter shaft motor 24. DETAILED DESCRIPTION

[0018] The technical scheme in the embodiments of the utility model will be clearly and completely described below in conjunction with the embodiments of the utility model, and obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments, and all other embodiments obtained by the ordinary skilled in the art without creative labor based on the embodiments in the utility model belong to the protection scope of the utility model.

[0019] Embodiment 1

[0020] Attached Figure 1As shown in 5, a drying device for C type parylene monomer includes a drying box, a crushing knife assembly, and an extruding knife assembly; the drying box 1 is a rectangular box structure, and a feeding port 7 and an air outlet 3 are arranged on the top surface of the drying box 1; the feeding port 7 is provided with a feeding port cover 7-1; four layers of staggered conveying belts are horizontally arranged in the drying box 1, including a first conveying belt 6-1 on the uppermost layer, a second conveying belt 6-2 on the second layer, a third conveying belt 6-3 on the third layer, and a fourth conveying belt 6-4 on the fourth layer; the conveying belts are annular closed structures, and the conveying belts are tensioned by two rotating shafts 2 at both ends; each layer of the conveying belts is independently provided with a rotating shaft 2 driven by a conveying belt motor 23 fixed to the side of the drying box 1; a hot air blower 9 and a receiving groove 8 are arranged at the bottom of the drying box 1; a stainless steel roller 12 is arranged at the end of the moving direction of each layer of the conveying belts; a crushing knife assembly 11-1 is arranged at the end of the moving direction of the second conveying belt 6-2 and below the stainless steel roller; an extruding knife assembly 11 is arranged at the end of the moving direction of the third conveying belt 6-3 and below the stainless steel roller; the extruding knife assembly 11 and the crushing knife assembly 11-1 are fixed by two support rods 10 fixed to the side wall of the drying box 1; the extruding knife assembly 11 and the crushing knife assembly 11-1 are driven by a knife shaft motor 24 fixed to the outer side wall of the drying box 1; a temperature sensor 13 is arranged in the drying box 1; a control panel 14 is arranged outside the drying box 1; and the control panel 14 is electrically connected with the temperature sensor 13, the hot air blower 9, the conveying belt motor 23, and the knife shaft motor 24.

[0021] Preferably, the air outlet 3 is a rectangular tube, and a plurality of downwardly inclined baffles 4 are arranged in the air outlet 3.

[0022] Preferably, the four layers of staggered conveying belts are arranged as follows: the first conveying belt 6-1 moves to the right, the second conveying belt 6-2 moves to the left, the second conveying belt 6-2 is staggered to the right, the materials on the first conveying belt 6-1 fall downwardly on the second conveying belt 6-2 after moving to the right end, and the third conveying belt 6-3 and the fourth conveying belt 6-4 are arranged in the same manner; and the receiving groove 8 is arranged below the end of the moving direction of the fourth conveying belt 6-4.

[0023] Preferably, the crushing knife assembly 11-1 includes a rectangular knife holder 18, a crushing female roller 17, and a crushing male roller 20 arranged in the inside of the knife holder 18; the crushing female roller 17 and the crushing male roller 20 are provided with uniformly distributed annular blades and annular blade grooves; the annular blade of the crushing male roller 20 is inserted into the blade groove of the crushing female roller 17; the annular blade of the crushing female roller 17 is inserted into the blade groove of the crushing male roller 20; a driving gear 16 is arranged on the crushing female roller 17 outside the knife holder 18; a driven gear 15 is arranged on the crushing male roller 20; the driving gear 16 and the driven gear 15 are meshed with each other; and the crushing female roller 17 is connected with the knife shaft motor 24 by a shaft coupling 19 at the other end.

[0024] Preferably, the extrusion knife assembly 11 is identical to the crushing knife assembly 11-1, except that the two knife roller light bar knife driving roller 21 and light bar knife driven roller 22 surfaces are light shafts.

[0025] Preferably, the rotating direction of the stainless steel wire roller 12 is opposite to the rotating direction of the conveyor belt rotating shaft 2 adjacent to it.

[0026] In use, the hot air blower 9, the conveyor belt motor 23, and the knife shaft motor 24 are started, the material to be dried is added to the first conveyor belt 6-1 from the charging port 7, and then the charging port cover 7-1 is closed. The material slowly moves on the first conveyor belt 6-1, and when it moves to the end, the stainless steel wire roller 12 helps to brush the material to the second conveyor belt 6-2. When the second conveyor belt 6-2 moves to the end, the stainless steel wire roller 12 helps to brush the material to the crushing knife female roller 17 and the crushing knife male roller 20 of the crushing knife assembly 11-1. The two rollers crush the lumps in the material, making it easier to dry. The crushed material falls onto the third conveyor belt 6-3, and when the material on the third conveyor belt 6-3 moves to the right end, the stainless steel wire roller 12 helps to brush the material to the light bar knife driving roller 21 and the light bar knife driven roller 22. The two rollers crush the small particles of the material into powder through extrusion. Finally, the material is conveyed to the receiving chute 8 through the fourth conveyor belt 6-4. When the gas flows out of the air outlet 3, the powder material carried by the air will fall down after being blocked by the multiple layers of the baffle 4. Finally, the material is filtered by the filter cloth 5 and discharged into the atmosphere, achieving non-polluting discharge.

[0027] Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or make equivalent replacements for part of the technical features, as long as the modifications, equivalent replacements, improvements, etc. are within the spirit and principles of the utility model, they should be included in the protection scope of the utility model.

Claims

1. A drying apparatus for C-type parylene monomer, characterized by: It includes drying box, crushing knife assembly, extrusion knife assembly; the drying box is rectangular box structure, the top surface is provided with feeding opening and air outlet, the feeding opening is provided with feeding opening cover, the inside of drying box is provided with four layers of staggered arrangement of conveying belt, it is first conveying belt of uppermost layer, second conveying belt of second layer, third conveying belt of third layer, fourth conveying belt of fourth layer, the conveying belt is annular closed structure, and the conveying belt is tensioned by one rotating shaft at both ends, each layer of conveying belt is separately provided with one conveying belt motor drive rotating shaft rotation that is fixed at the side of drying box, is provided with hot air fan and receiving groove at the bottom of drying box, is provided with a stainless steel wire roller at the end of each layer of conveying belt moving direction, is provided with a crushing knife assembly below the lower side of stainless steel wire roller at the end of second conveying belt moving direction, is provided with a extrusion knife assembly below the lower side of stainless steel wire roller at the end of third conveying belt moving direction, the lower side of extrusion knife assembly and crushing knife assembly is fixed by two support rods fixed on the side wall of drying box, and is driven by one knife shaft motor fixed on the outside wall of drying box, temperature sensor is arranged in the inside of drying box, and control panel is arranged outside, and control panel is electrically connected with temperature sensor, hot air fan, conveying belt motor and knife shaft motor.

2. The drying apparatus of a C-type parylene monomer according to claim 1, characterized by: The air outlet is rectangular tubular, and multiple layers of downwardly inclined baffles are arranged in the inside, and filter cloth is arranged on the baffles.

3. The drying apparatus of a C-type parylene monomer according to claim 1, characterized by: The four layers of staggered arrangement of conveying belt, first conveying belt moves to the right, second conveying belt moves to the left, second conveying belt is staggered to the right, the material on first conveying belt moves to the right end and then falls down on second conveying belt, third conveying belt and fourth conveying belt are arranged according to the same principle, and the receiving groove is arranged below the end of fourth conveying belt moving direction.

4. The drying apparatus of a C-type parylene monomer according to claim 1, characterized by: The crushing knife assembly includes rectangular knife holder, the inside of knife holder is provided with crushing knife female roller and crushing knife male roller, the crushing knife female roller and the crushing knife male roller are provided with uniformly distributed annular blades and annular grooves, the annular blades of crushing knife male roller are inserted into the grooves on crushing knife female roller, the annular blades of crushing knife female roller are inserted into the grooves on crushing knife male roller, and the outer crushing knife female roller of knife holder is provided with driving gear, the crushing knife male roller is provided with driven gear, the driving gear and driven gear are engaged with each other, and the other end of crushing knife female roller is connected with knife shaft motor by coupling.

5. The drying apparatus of a C-type parylene monomer according to claim 1, characterized by: The extrusion knife assembly structure is same with the crushing knife assembly, and the difference is that the surface of light rod knife driving roller and light rod knife driven roller is light shaft.

6. The drying apparatus of a C-type parylene monomer according to claim 1, characterized by: The rotating direction of stainless steel wire roller is opposite to the rotating direction of the rotating shaft of the conveying belt of adjacent layer.