A honeycomb core strip glue drying apparatus
The honeycomb material core strip adhesive drying equipment, which combines a switching mechanism and a drying mechanism, solves the problems of deformation and low efficiency of aramid paper during the drying process after adhesive coating. It achieves uniform heating and efficient drying of the material, ensuring the integrity and safety of the material structure.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGSU JIUXIANG AVIATION EQUIP CO LTD
- Filing Date
- 2025-07-15
- Publication Date
- 2026-07-31
AI Technical Summary
In the existing technology, aramid paper is prone to deformation or twisting during the drying process after coating, and horizontal drying is inefficient, affecting the integrity of the material's pore structure and the amount of material dried at one time.
The honeycomb material core strip adhesive drying equipment adopts a combination of a switching mechanism and a drying mechanism. The switching mechanism realizes the lateral displacement of the tray and the hot air circulation driven by the motor, which ensures uniform heating and avoids local overheating. The tray moving speed is controlled by gear transmission, and the motor drives the fan blades to rotate to accelerate the hot air circulation.
This method achieves uniform drying of honeycomb materials, avoids deformation of the material structure and local overheating, improves drying efficiency and safety, and facilitates material cooling and removal.
Smart Images

Figure CN224580582U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of honeycomb material processing, specifically to a honeycomb material core strip adhesive drying equipment. Background Technology
[0002] Diamond, commonly known as "diamond," is a mineral composed of pure carbon and is the hardest substance in nature. Since the 18th century, when it was confirmed that diamond is composed of pure carbon, people began to study synthetic diamonds. It was only in the 1950s, through advancements in high-pressure research and testing technology, that true success and rapid development were achieved. Synthetic diamonds are now widely used in various industries and crafts.
[0003] Because aramid paper is sensitive to temperature and humidity and is easily deformed, it is prone to shrinkage due to excessive temperature during the drying stage after coating. After returning to room temperature, it is also prone to absorbing moisture and stretching. Fixed drying methods can cause the material's pores to become skewed and twisted. Furthermore, horizontal drying methods can affect drying efficiency and result in a smaller amount of material being dried at one time. Summary of the Invention
[0004] The purpose of this invention is to provide a drying device for honeycomb material core strip adhesive, so as to solve the above-mentioned defects caused by the prior art.
[0005] A honeycomb material core strip adhesive drying device includes a drying chamber, a motor, a material rack, and a mesh tray. A door is hinged to one side of the drying chamber. A shifting mechanism is installed inside the drying chamber. This mechanism laterally shifts the mesh tray according to the material's drying requirements, facilitating the direct discharge of material from the drying chamber via the material rack. A drying mechanism is located on one side of the drying chamber. This drying mechanism heats external air and injects it into the drying chamber, thereby working with the shifting mechanism to dry multiple sets of honeycomb materials.
[0006] Preferably, the shifting mechanism includes a material rack, a mesh tray, a spur gear, a guide rod, a drive gear, and a driven gear. A spur gear is provided on one side of the material rack, and a driven gear is meshed on one side of the spur gear. The drive gear is meshed on the other side of the driven gear. Multiple sets of mesh trays are provided on the outer side of the material rack. Guide rods are symmetrically arranged through the outer side of the material rack, and one end of the guide rod is connected to the inner end of the drying chamber.
[0007] Preferably, the drying chamber is positioned by symmetrically distributed guide rods and the outer side of the material rack, and the outer side of the material rack has corresponding slots that engage with the outer side of the mesh tray 5.
[0008] Preferably, the drying mechanism includes a motor, a blower box, a fan, an air duct, an electric heating plate, and a pipe clamp. The motor is installed on the outside of the blower box, and the output shaft of the motor is connected to the fan. The fan is located inside the blower box, and the blower box is installed on one side of the drying chamber. An electric heating plate is installed inside the blower box. An air duct is connected to the outside of the pipe clamp. One end of the air duct is connected to the blower box, and the other end of the air duct is connected to the drying chamber.
[0009] Preferably, the motor is connected to the driven gear via a shaft connected to the output end.
[0010] Preferably, the air box is connected to the drying chamber through an air duct on one side, and the drying chamber is positioned on the outside of the air duct by pipe clamps arranged at equal intervals inside.
[0011] Compared with the prior art, the present invention has the following advantages:
[0012] 1. The driven gear drives the material rack to reciprocate, so that the material moves continuously during the drying process, avoiding local overheating or deformation, improving drying uniformity, and thus preventing some parts of the material from being heated too high, which would affect the structural integrity of the material itself. At the same time, the motor drives the fan blades to rotate, and the rotation of the fan blades accelerates the circulation of hot air, which, together with the movement of the material, expands the contact area.
[0013] 2. The adjustable gear ratio controls the displacement speed of the material rack. When high torque is required, the rotation speed is reduced but the processing capacity of wet materials is enhanced. At the same time, by moving the rack in one direction and opening the door of the drying chamber, the material rack is moved out of the drying chamber. This makes it easier for workers to move the material to the outside of the drying chamber to cool before taking it out, avoiding burns or damage to the material during the material handling process. Attached Figure Description
[0014] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0015] Figure 2 This is a schematic diagram of the internal structure of the drying chamber in this utility model.
[0016] Figure 3 This is a schematic diagram of the internal structure of the bellows in this utility model.
[0017] Figure 4 This is a schematic diagram of the drying mechanism itself in this utility model.
[0018] Figure 5 This is a top view of the drying mechanism in this utility model.
[0019] in:
[0020] 1. Drying chamber; 2. Chamber door; 3. Switching mechanism; 4. Material rack; 5. Mesh tray; 6. Straight toothed rack; 7. Guide rod; 8. Drying mechanism; 9. Motor; 10. Air box; 11. Fan; 12. Drive gear; 13. Driven gear; 14. Air duct; 15. Electric heating plate; 16. Pipe clamp. Detailed Implementation
[0021] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0022] like Figures 1 to 5 As shown, a honeycomb material core strip adhesive drying device includes a drying chamber 1, a motor 9, a material rack 4, and a mesh tray 5. A door 2 is hinged to one side of the drying chamber 1. A shifting mechanism 3 is provided inside the drying chamber 1. The shifting mechanism 3 performs lateral displacement of the mesh tray 5 according to the drying requirements of the material, and at the same time facilitates the direct discharge of the material inside the drying chamber 1 through the material rack 4. A drying mechanism 8 is provided on one side of the drying chamber 1. The drying mechanism 8 heats the outside air and injects it into the interior of the drying chamber 1, thereby cooperating with the shifting mechanism 3 to dry multiple sets of honeycomb materials.
[0023] In this embodiment, the shifting mechanism 3 includes a material rack 4, a mesh tray 5, a spur gear 6, a guide rod 7, a driving gear 12, and a driven gear 13. A spur gear 6 is provided on one side of the material rack 4, and one side of the driven gear 13 is meshed with one side of the spur gear 6. The driving gear 12 is meshed with the other side of the driven gear 13. Multiple sets of mesh trays 5 are provided on the outer side of the material rack 4. Guide rods 7 are symmetrically arranged through the outer side of the material rack 4. One end of the guide rod 7 is connected to the inner end of the drying chamber 1. The guide rod 7 provides lateral guidance for the spur gear 6 and the material rack 4, thereby facilitating the drying process through reciprocating motion.
[0024] In this embodiment, the drying chamber 1 is positioned by symmetrically distributed guide rods 7 and the outer side of the material rack 4. The outer side of the material rack 4 has corresponding slots that engage with the outer side of the mesh tray 5. The material rack 4 is used to position multiple sets of mesh trays 5, and then the mesh trays 5 can be disassembled and installed.
[0025] In this embodiment, the drying mechanism 8 includes a motor 9, a blower box 10, a fan 11, an air duct 14, an electric heating plate 15, and a pipe clamp 16. The motor 9 is installed on the outside of the blower box 10, and the output shaft of the motor 9 is connected to the fan 11. The fan 11 is located inside the blower box 10. The blower box 10 is installed on one side of the drying chamber 1. The electric heating plate 15 is installed inside the blower box 10. The air duct 14 is connected to the outside of the pipe clamp 16. One end of the air duct 14 is connected to the blower box 10, and the other end of the air duct 14 is connected to the drying chamber 1. The blower box 10 draws in outside air, heats it, and then transfers it, thus completing the heating of the drawn-in air.
[0026] In this embodiment, the motor 9 is connected to the driven gear 13 via the output shaft of the driving gear 12. The displacement speed of the mesh tray 5 is controlled by controlling the driving gear 12 and the driven gear 13 to avoid the drying effect being affected by the speed being too fast or too slow.
[0027] In this embodiment, the air box 10 is connected to the drying chamber 1 through an air duct 14 on one side. The drying chamber 1 uses pipe clamps 16 arranged at equal intervals inside to position the outside of the air duct 14. The position of the drying chamber is adjusted according to the drying requirements by using the pipe clamps 16 to position the outside of the air duct 14.
[0028] In practical applications, this honeycomb material core strip adhesive drying equipment includes the following tasks:
[0029] Step 1: Before feeding the material, first open the door 2 on one side of the drying chamber 1, then turn on the motor 9 to drive the drive gear 12 to rotate, and the drive gear 12 to drive the driven gear 13 to mesh, and the driven gear 13 to mesh with the straight toothed rack 6 on the outside, and the straight toothed rack 6 to drive the material rack 4 to move. The material rack 4 is guided by the guide rods 7 on both sides, so that the operator can place the material on the outside of the mesh tray 5. Then rotate the driven gear 13 in the opposite direction to move the material rack 4 into the drying chamber 1.
[0030] Step 2: The operator closes the door 2 and then turns on the electric heating plate 15 to preheat the air inside the air box 10. The motor 9 drives the fan 11 to rotate. Multiple air intake holes are opened on one side of the air box 10 to draw air into the air box 10. The hot air is directly injected into the drying chamber 1 through the air duct 14 set on one side of the air box 10.
[0031] Step 3: At the same time, the motor 9 drives the drive gear 12 to rotate, the drive gear 12 drives the driven gear 13 to mesh, the driven gear 13 drives the spur tooth rack 6 set at the top to mesh, the spur tooth rack 6 pushes the material rack 4 laterally, and the material rack 4 drives multiple sets of mesh trays 5 to reciprocate, so that the multiple sets of mesh trays 5 move below the air duct 14, so that the hot air in the air duct 14 heats the material evenly.
[0032] Step 4: After the multiple sets of mesh trays 5 have been moved and dried inside the drying chamber 1, turn off the electric heating plate 15, let it stand for a period of time, and wait for it to cool down. Then, open the chamber door 2 again, use the straight toothed rack 6 to move the material rack 4, and use the guide rod 7 to guide the outside of the material rack 4 laterally to move the mesh trays 5 out of the drying chamber 1 and take the material out from inside the mesh trays 5.
[0033] Therefore, the above-disclosed embodiments are merely illustrative in all respects and are not the only ones. All modifications within the scope of this utility model or its equivalents are included in this utility model.
Claims
1. A honeycomb core strip glue drying apparatus, characterized by: The equipment includes a drying chamber (1), a motor (9), a material rack (4), and a mesh tray (5). A door (2) is hinged to one side of the drying chamber (1). A shifting mechanism (3) is provided inside the drying chamber (1). The shifting mechanism (3) performs lateral displacement of the mesh tray (5) according to the drying requirements of the material. At the same time, it facilitates the direct discharge of the material inside the drying chamber (1) through the material rack (4). A drying mechanism (8) is provided on one side of the drying chamber (1). The drying mechanism (8) heats the outside air and injects it into the interior of the drying chamber (1), thereby cooperating with the shifting mechanism (3) to dry multiple sets of honeycomb materials.
2. A honeycomb core strip glue drying apparatus as set forth in claim 1 wherein: The shifting mechanism (3) includes a material rack (4), a mesh tray (5), a straight toothed rack (6), a guide rod (7), a driving gear (12), and a driven gear (13). A straight toothed rack (6) is provided on one side of the material rack (4). One side of the straight toothed rack (6) is meshed with one side of the driven gear (13). The other side of the driven gear (13) is meshed with the driving gear (12). Multiple sets of mesh trays (5) are provided on the outer side of the material rack (4). A guide rod (7) is symmetrically provided through the outer side of the material rack (4). One end of the guide rod (7) is connected to the inner end of the drying chamber (1).
3. A honeycomb core strip glue drying apparatus as set forth in claim 2 wherein: The drying chamber (1) is positioned on the outside of the material rack (4) by symmetrically distributed guide rods (7), and the material rack (4) has corresponding slots on its outside that engage with the outside of the mesh tray (5).
4. A honeycomb core strip glue drying apparatus as set forth in claim 1 wherein: The drying mechanism (8) includes a motor (9), a blower box (10), a fan (11), an air duct (14), an electric heating plate (15), and a pipe clamp (16). The motor (9) is installed on the outside of the blower box (10). The output shaft of the motor (9) is connected to the fan (11). The fan (11) is located inside the blower box (10). The blower box (10) is installed on one side of the drying chamber (1). An electric heating plate (15) is installed inside the blower box (10). The air duct (14) is connected to the outside of the pipe clamp (16). One end of the air duct (14) is connected to the blower box (10), and the other end of the air duct (14) is connected to the drying chamber (1).
5. A honeycomb core strip glue drying apparatus as set forth in claim 4 wherein: The motor (9) is connected to the driven gear (13) via the driving gear (12) connected to the output shaft.
6. A honeycomb core strip glue drying apparatus as set forth in claim 4 wherein: The air box (10) is connected to the drying box (1) through an air duct (14) on one side. The drying box (1) is positioned on the outside of the air duct (14) by pipe clamps (16) arranged at equal intervals inside.