Dehumidifying dryer for processing glass fiber reinforced nylon material
Through the design of split-leveling components and drying auxiliary components, the problem of insufficient drying of glass fiber reinforced nylon materials is solved, and uniform feeding of materials and multi-layer drying is achieved, which improves drying efficiency.
Patent Information
- Application Number
- CN202422464267.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-11
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-10-11
AI Technical Summary
The existing dehumidifier for processing glass fiber reinforced nylon materials is poor in drying during the drying process, and it is prone to insufficient drying.
The split flattening assembly and drying auxiliary components are adopted, including conveyor belt water filter holes, water collection tanks, split frames, heating drying assembly, drying jet head and blower jet nozzles. The air is heated through a hot air fan and dried in multiple layers with waste heat. Combined with a micro motor, the inclination angle of the flattening plate is adjusted to evenly spread the material.
The uniform feeding and multi-layer drying of glass fiber reinforced nylon materials is achieved, which improves the drying efficiency and ensures the adequacy of drying.
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Figure CN223258534U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of nylon material processing, in particular to a dehumidifying dryer for processing glass fiber reinforced nylon materials. Background Art
[0002] Glass fiber reinforced nylon is a type of plastic obtained by adding a certain amount of glass fiber to nylon resin for reinforcement. During the production of flame retardant glass fiber reinforced nylon, nylon particles are obtained through granulation and other means. The nylon particles are then processed by acid-base blending or oxidation soaking. The surface of the particles will be contaminated with a large amount of solution. Therefore, they need to be dehumidified and dried afterwards.
[0003] For example, the utility model application number CN202321623589.1 discloses a dehumidification dryer for processing flame-retardant glass fiber reinforced nylon materials. Dehumidification dryers similar to the above-mentioned application currently have the following shortcomings: although they can continuously dehumidify and dry moving nylon particles, the use of only an air-drying frame to centrally dry the materials during the drying process results in poor drying effects and is prone to insufficient drying.
[0004] Therefore, in view of this, the existing structure and defects are studied and improved, and a dehumidification dryer for processing glass fiber reinforced nylon materials is proposed. Utility Model Content
[0005] The purpose of the utility model is to provide a dehumidifying dryer for processing glass fiber reinforced nylon materials to solve the problems raised in the above background technology.
[0006] To achieve the above-mentioned objectives, the utility model provides the following technical solutions: a dehumidifying dryer for processing glass fiber reinforced nylon materials, comprising an installation frame, a heating and drying component and a drying auxiliary component, a water collecting tank is installed below the installation frame, and a conveyor belt is provided on the inner side of the installation frame, and water filtering holes are evenly opened on the surface of the conveyor belt, a heating and drying component is installed on one side above the installation frame, a diversion and flattening component is installed on the other side above the installation frame, and the diversion and flattening component includes a connecting plate and a diversion frame, the inner side of the installation frame is connected to the diversion frame through the connecting plate, and the diversion frames are equidistantly distributed, a drying auxiliary component is installed on one side of the heating and drying component, and the drying auxiliary component includes an air guide pipe, an air blowing pipe and an air nozzle, one side of the air guide pipe is connected to the air blowing pipe, and the air blowing pipe is located inside the diversion frame, and air nozzles are installed on the front and back sides of the air blowing pipe, and the air nozzles are inclined at °.
[0007] Furthermore, the heating and drying component includes a drying box, a hot air blower and a hot air chamber. The hot air blower is installed above the outside of the drying box, and the hot air chamber is provided above the inside of the drying box, and the hot air blower and the hot air chamber are connected to each other.
[0008] Furthermore, the heating and drying assembly also includes a drying pipe and a drying nozzle. The drying pipe is connected to the bottom of the hot air chamber, and the drying pipes are arranged at equal distances, and the drying nozzle is installed below the drying pipe.
[0009] Furthermore, the diversion and flattening assembly also includes a rotating shaft, a spreading plate, a slot and a micro motor. The spreading plate is rotatably installed on the inner side of the mounting frame through the rotating shaft, and a slot is provided on the lower side of the spreading plate corresponding to the diversion frame, and a micro motor is installed at one end of the rotating shaft.
[0010] Furthermore, the interior of the diversion frame is hollow, and the outer wall of the diversion frame is a hollow structure.
[0011] Furthermore, the drying auxiliary component also includes an air collecting box and a hollow air outlet. The end of the blowing pipe is connected to the air collecting box, and a hollow air outlet is provided on the side of the air collecting box close to the heating and drying component.
[0012] The utility model provides a dehumidifying dryer for processing glass fiber reinforced nylon materials, which has the following features:
[0013] Beneficial effects:
[0014] The utility model is provided with a diversion and flattening component. The water filter holes opened on the surface of the conveyor belt are used for filtering water, and the water collecting box below can be used for collecting water. Several diversion frames can separate the glass fiber reinforced nylon material so as to facilitate uniform feeding and further promote drying in conjunction with the drying auxiliary component. The slots of the spreading plate correspond to the diversion frames. The micro motor and the rotating shaft are used to easily rotate and adjust the inclination angle of the spreading plate, thereby adjusting the bottom height of the spreading plate, so that the spreading plate can flatten the glass fiber reinforced nylon material transported on the conveyor belt between adjacent diversion frames and adjust the material thickness of the transported granular material.
[0015] The utility model is provided with a heating and drying component and a drying auxiliary component. The drying nozzle is convenient for ejecting a hot air flow to carry out mobile drying of the glass fiber reinforced nylon material transported on the conveyor belt at the lower side of the drying box. The hot air flow used for drying inside the drying box has residual heat, which can enter the blowing pipe through the air guide pipe. The blowing pipe is located inside the diverter frame, so that the air nozzles on the front and rear sides of the blowing pipe can pass through the hollow diverter frame to the position of the glass fiber reinforced nylon material between adjacent diverter frames, thereby utilizing the residual heat to carry out preliminary drying of the fed glass fiber reinforced nylon material. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic diagram of the overall structure of a dehumidifying dryer for processing glass fiber reinforced nylon materials according to the present invention;
[0017] Figure 2This is a schematic diagram of the partial explosion structure of a dehumidifying dryer for processing glass fiber reinforced nylon materials in the utility model;
[0018] Figure 3 This is a left-side structural schematic diagram of an air collecting box of a dehumidifying dryer for processing glass fiber reinforced nylon materials according to the present invention.
[0019] In the figure: 1. Installation frame; 2. Water collecting box; 3. Heating and drying component; 301. Drying box; 302. Hot air blower; 303. Hot air chamber; 304. Drying pipe; 305. Drying nozzle; 4. Conveyor belt; 5. Water filter hole; 6. Diversion and flattening component; 601. Connecting plate; 602. Diversion frame; 603. Rotating shaft; 604. Flattening plate; 605. Slotting; 606. Micro motor; 7. Drying auxiliary component; 701. Air guide tube; 702. Blowing pipe; 703. Air nozzle; 704. Air collecting box; 705. Hollow air outlet. DETAILED DESCRIPTION
[0020] The following embodiments of the present invention are described in further detail with reference to the accompanying drawings and examples. The following examples are used to illustrate the present invention, but are not intended to limit the scope of the present invention.
[0021] like Figure 1-Figure 2 As shown, a dehumidifying dryer for processing glass fiber reinforced nylon materials includes an installation frame 1, a heating and drying component 3 and a drying auxiliary component 7. A water collecting box 2 is installed below the installation frame 1, and a conveyor belt 4 is provided on the inner side of the installation frame 1, and water filter holes 5 are evenly opened on the surface of the conveyor belt 4. A heating and drying component 3 is installed on the upper side of the installation frame 1. The heating and drying component 3 includes a drying box 301, a hot air blower 302 and a hot air chamber 303. The hot air blower 302 is installed above the outside of the drying box 301, and the hot air chamber 303 is provided above the inside of the drying box 301, and the hot air blower 302 and the hot air chamber 303 are connected to each other. The heating and drying component 3 also It includes a drying pipe 304 and a drying nozzle 305. The drying pipe 304 is connected to the bottom of the hot air chamber 303, and the drying pipes 304 are arranged at equal distances, and the drying nozzle 305 is installed below the drying pipe 304; the hot air blower 302 is convenient for heating the air and sending the hot air into the hot air chamber 303. The hot air inside the hot air chamber 303 can enter the interior of several evenly distributed drying pipes 304 and be sprayed out through the drying nozzle 305 to move and dry the glass fiber reinforced nylon material transported on the conveyor belt 4 at the lower side of the drying box 301. The water filter holes 5 opened on the surface of the conveyor belt 4 are used for filtering water, and the water collecting tank 2 below can be used to collect water.
[0022] like Figure 1-Figure 2As shown, a diversion and flattening component 6 is installed on the other side of the upper part of the installation frame 1, and the diversion and flattening component 6 includes a connecting plate 601 and a diversion frame 602. The inner side of the installation frame 1 is connected to the diversion frame 602 through the connecting plate 601, and the diversion frames 602 are equidistantly distributed. The diversion and flattening component 6 also includes a rotating shaft 603, a spreading plate 604, a slot 605 and a micro motor 606. The inner side of the installation frame 1 is rotatably installed with a spreading plate 604 through the rotating shaft 603, and the lower side of the spreading plate 604 is provided with a slot 605 corresponding to the diversion frame 602, and a micro motor 606 is installed at one end of the rotating shaft 603. 02 is hollow inside, and the outer wall of the diverter frame 602 is a hollow structure; several diverter frames 602 can separate the glass fiber reinforced nylon material so as to facilitate uniform feeding and further promote drying in conjunction with the drying auxiliary component 7. The slot 605 of the spreading plate 604 corresponds to the diverter frame 602. The micro motor 606 and the rotating shaft 603 are used to easily rotate and adjust the inclination angle of the spreading plate 604, thereby adjusting the bottom height of the spreading plate 604, so that the spreading plate 604 can flatten the glass fiber reinforced nylon material transported on the conveyor belt 4 between adjacent diverter frames 602 and adjust the material thickness of the transported granular material.
[0023] like Figure 2-Figure 3 As shown, a drying auxiliary component 7 is installed on one side of the heating and drying component 3, and the drying auxiliary component 7 includes an air guide pipe 701, a blowing pipe 702 and an air nozzle 703. One side of the air guide pipe 701 is connected to the blowing pipe 702, and the blowing pipe 702 is located inside the diversion frame 602. Air nozzles 703 are installed on the front and back sides of the blowing pipe 702, and the air nozzles 703 are set at a 45° angle. The drying auxiliary component 7 also includes an air collecting box 704 and a hollow air outlet 705. The end of the blowing pipe 702 is connected to the air collecting box 704, and the air collecting box 704 is provided with a hollow outlet 705 on the side close to the heating and drying component 3. Air outlet 705; the hot air flow used for drying inside the drying box 301 has residual heat, which can enter the blowing pipe 702 through the air guide pipe 701. The blowing pipe 702 is located inside the diverter frame 602, so that the air nozzles 703 on the front and rear sides of the blowing pipe 702 can be ejected through the hollow diverter frame 602 to the position of the glass fiber reinforced nylon material between the adjacent diverter frames 602, and the residual hot air inside the air collecting box 704 at the end of the blowing pipe 702 can be ejected into the diverter frame 602 through the hollow air outlet 705 and overflow to both sides, thereby utilizing the residual heat to perform preliminary drying of the fed glass fiber reinforced nylon material.
[0024] In summary, if Figure 1-Figure 3As shown, the dehumidifying dryer for processing glass fiber reinforced nylon material, when in use, can firstly feed the glass fiber reinforced nylon material processed into granular form from right to left via the conveyor belt 4. At this time, the water filter holes 5 opened on the surface of the conveyor belt 4 are used to filter water and allow the water collection box 2 below to receive water. During the feeding process, a number of diverter frames 602 can separate the glass fiber reinforced nylon material, and the micro motor 606 and the rotating shaft 603 are used to adjust the inclination angle of the spreading plate 604, thereby adjusting the bottom surface height of the spreading plate 604, so that the spreading plate 604 flattens the glass fiber reinforced nylon material transported on the conveyor belt 4 between adjacent diverter frames 602, thereby adjusting the material thickness of the transported granular material.
[0025] Then the hot air blower 302 can heat the air and send the hot air into the hot air chamber 303. The hot air in the hot air chamber 303 can enter the evenly distributed drying pipes 304 and be sprayed out through the drying nozzles 305 to perform mobile drying on the glass fiber reinforced nylon material transported on the conveyor belt 4 at the lower side of the drying box 301. The hot air flow used for drying in the drying box 301 has residual heat and can enter the blowing pipe 702 through the air guide pipe 701. The blowing pipe 702 is located at the diversion frame 602. Internally, the air nozzles 703 on the front and rear sides of the blowing pipe 702 can be sprayed through the hollow diversion frame 602 to the position of the glass fiber reinforced nylon material between adjacent diversion frames 602. At the same time, the remaining hot air inside the air collecting box 704 at the end of the blowing pipe 702 can be sprayed into the diversion frame 602 through the hollow air outlet 705 and overflow to both sides, thereby utilizing the waste heat to perform preliminary drying of the fed glass fiber reinforced nylon material, thus completing the use process of the dehumidification dryer for processing glass fiber reinforced nylon materials.
[0026] The embodiments of the present invention are provided for purposes of illustration and description and are not intended to be exhaustive or to limit the present invention to the disclosed forms. Many modifications and variations will be apparent to those skilled in the art. The embodiments are selected and described to better illustrate the principles and practical applications of the present invention and to enable those skilled in the art to understand the present invention and design various embodiments with various modifications suitable for specific applications.
Claims
1. A dehumidifying dryer for processing glass fiber reinforced nylon materials, comprising a mounting frame (1), a heating and drying component (3) and a drying auxiliary component (7), characterized in that: A water collecting box (2) is installed below the installation frame (1), and a conveyor belt (4) is provided inside the installation frame (1), and water filter holes (5) are evenly opened on the surface of the conveyor belt (4). A heating and drying component (3) is installed on one side above the installation frame (1), and a diversion and flattening component (6) is installed on the other side above the installation frame (1), and the diversion and flattening component (6) includes a connecting plate (601) and a diversion frame (602). The inner side of the installation frame (1) is connected to the diversion frame (602) via the connecting plate (601). , and the diversion frames (602) are distributed at equal distances, a drying auxiliary component (7) is installed on one side of the heating and drying component (3), and the drying auxiliary component (7) includes an air guide pipe (701), a blowing pipe (702) and an air nozzle (703), one side of the air guide pipe (701) is connected to the blowing pipe (702), and the blowing pipe (702) is located inside the diversion frame (602), and the front and rear sides of the blowing pipe (702) are both installed with air nozzles (703), and the air nozzles (703) are arranged at a 45° inclination.
2. A dehumidifying dryer for processing glass fiber reinforced nylon materials according to claim 1, characterized in that: The heating and drying component (3) comprises a drying box (301), a hot air blower (302) and a hot air chamber (303); the hot air blower (302) is installed above the outside of the drying box (301), and the hot air chamber (303) is provided above the inside of the drying box (301); and the hot air blower (302) and the hot air chamber (303) are communicated with each other.
3. The dehumidifying dryer for processing glass fiber reinforced nylon materials according to claim 2, characterized in that: The heating and drying assembly (3) further comprises a drying pipe (304) and a drying nozzle (305); the drying pipe (304) is connected below the hot air chamber (303), and the drying pipes (304) are arranged at equal distances from each other; and the drying nozzle (305) is installed below the drying pipe (304).
4. The dehumidifying dryer for processing glass fiber reinforced nylon materials according to claim 1, characterized in that: The diversion and flattening assembly (6) further comprises a rotating shaft (603), a spreading plate (604), a slot (605) and a micro motor (606); the spreading plate (604) is rotatably mounted on the inner side of the mounting frame (1) via the rotating shaft (603); a slot (605) is provided on the lower side of the spreading plate (604) corresponding to the diversion frame (602); and a micro motor (606) is mounted on one end of the rotating shaft (603).
5. The dehumidifying dryer for processing glass fiber reinforced nylon materials according to claim 1, characterized in that: The interior of the diversion frame (602) is hollow, and the outer wall of the diversion frame (602) is a hollow structure.
6. The dehumidifying dryer for processing glass fiber reinforced nylon materials according to claim 1, characterized in that: The drying auxiliary component (7) further comprises an air collecting box (704) and a hollow air outlet (705); the end of the blowing pipe (702) is connected to the air collecting box (704), and a hollow air outlet (705) is provided on a side of the air collecting box (704) close to the heating and drying component (3).
Citation Information
Patent Citations
Dehumidifying dryer for processing flame-retardant glass fiber reinforced nylon material
CN220454195U