Phenolic resin particle molding device
By designing the cutting and heat dissipation components, and utilizing a motor-driven rotating rod and a cooling fan, the problem of low heat dissipation efficiency of phenolic resin particles was solved, enabling rapid cooling and efficient transport of phenolic resin particles and improving the working efficiency of the device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-26
- Publication Date
- 2026-03-24
AI Technical Summary
Existing phenolic resin particle molding devices are inefficient in heat dissipation, relying mainly on natural wind for cooling, which reduces the device's operating efficiency.
The design combines cutting and heat dissipation components. A motor-driven rotating rod drives a partition plate and a cooling fan to disperse phenolic resin particles and achieve efficient heat dissipation. The heat dissipation efficiency is improved through the cooperation of the heat dissipation mesh and the fan.
This effectively prevents phenolic resin particles from falling directly, increases heat dissipation time, achieves rapid cooling, and improves the overall working efficiency of the device.
Smart Images

Figure CN224027768U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the granule modeling setting technical field especially relates to a phenolic resin granule modeling device. BACKGROUND
[0002] Phenolic resin, originally colorless or yellowish-brown transparent, market sales often add colorant and present red, yellow, black, green, brown, blue and other colors, present granule or powder. Weak acid and weak base resistant, strong acid decomposition, strong alkali corrosion. Insoluble in water, soluble in acetone, alcohol and other organic solvents. Phenol aldehyde or its derivative polycondensation.
[0003] At present, in the granulation processing of phenolic resin, such as prior art authorized announcement number CN219522693U utility model patent, the device includes the base, the top of the base is fixedly connected with the installation box for installing the granulation device for phenolic resin production, and the top of the installation box is slidably connected with the adjusting plate, the top of the adjusting plate is fixedly connected with the fixed end of the stepping motor, and the driving end of the stepping motor is fixedly connected with the limiting rod through the connecting rod, the two ends of the limiting rod are fixedly connected with the first limiting disc and the second limiting disc of the same structure, and a plurality of particle discharge pipes are welded on the side surface of the first limiting disc and the second limiting disc, the inner side of the second limiting disc is slidably connected with the side wall of the feeding pipe, and the side surface of the feeding pipe is connected and fixed with the inner side wall of the installation box, however, the device in the process of using, because the phenolic resin granules exist certain residual heat, only through the natural wind heat dissipation treatment, greatly reduce the device work efficiency.
[0004] Therefore, it is necessary to provide a phenolic resin granule modeling device to solve the above technical problems. SUMMARY
[0005] The utility model provides a phenolic resin granule modeling device, solved the device in the process of using, because the phenolic resin granules exist certain residual heat, only through the natural wind heat dissipation treatment, greatly reduce the device work efficiency's problem.
[0006] In order to solve the above technical problems, the utility model provides a phenolic resin granule modeling device, it includes: working frame, the left side of working frame is provided with cutting assembly, the bottom of cutting assembly and the left side of working frame is provided with heat dissipation assembly;
[0007] The cutting assembly includes the collection bin of setting in the left side of working frame, the fixed seat is fixedly installed at the inboard near the top of collection bin, the cutting knife is rotatably arranged at the right side of fixed seat, and the first motor for driving the rotation of the cutting knife is fixedly installed on the inner wall of fixed seat.
[0008] The heat dissipation assembly comprises a collecting cylinder arranged at the front of the bottom of the collecting bin and located at the left side of the working frame, a rotating rod is arranged through the center of the inner side of the collecting cylinder and is rotationally connected with the collecting cylinder, a plurality of partition plates are fixedly installed on the surface of the rotating rod, heat dissipation frames are fixedly installed on the front and rear sides of the collecting cylinder, the rotating rod penetrates through the inner sides of the heat dissipation frames at the front and rear ends thereof and is rotationally connected with the heat dissipation frames, heat dissipation fans are fixedly installed on the outer edges of the rotating rod and located at the inner sides of the heat dissipation frames, and first heat dissipation nets are formed at the positions, close to the partition plates, of the two heat dissipation frames adjacent to the collecting cylinder.
[0009] Preferably, an extruder body is inlaid at the inner side of the working frame close to the top.
[0010] Preferably, a fixed frame is fixedly installed at the left side of the working frame close to the bottom, a conveying belt is rotationally arranged at the inner side of the fixed frame, a fixed block is fixedly installed on the front side of the fixed frame close to the rear side, and a second motor for driving the conveying belt to rotate is fixedly installed on the top of the fixed block.
[0011] Preferably, a first grooved wheel is sleeved on the outer edge of the power output shaft of the second motor, a second grooved wheel is arranged on the top of the first grooved wheel, a belt is sleeved on the outer edges of the first grooved wheel and the second grooved wheel and is drivingly connected through the belt, and the rear end of the second grooved wheel is fixedly connected with the front end of the rotating rod.
[0012] Preferably, two mounting holes are formed at the sides away from each other of the two heat dissipation frames, and second heat dissipation nets are fixedly installed at the inner sides of the mounting holes.
[0013] Preferably, conveying openings are formed at the top and the bottom of the collecting cylinder, and the conveying opening at the top is in communication with the inner side of the collecting bin.
[0014] Compared with the related art, the phenolic resin particle molding device has the following beneficial effects:
[0015] The phenolic resin particle molding device is characterized in that: the second motor drives the rotating rod to rotate through the actions of the first grooved wheel and the second grooved wheel, the rotating rod drives the partition plates to rotate, the partition plates disperse the cut phenolic resin particles between the partition plates, and the particles fall on the top of the conveying belt through the conveying opening at the bottom when the rotating rod rotates to the bottom; meanwhile, the rotating rod drives the heat dissipation fans on the two sides to rotate, and the first heat dissipation nets are used to dissipate heat from the phenolic resin particles. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1A preferred embodiment structure schematic view of the phenolic resin particle molding device is shown in the figure;
[0017] Figure 2 For Figure 1 A structure schematic view of the collection bin and collection cylinder side view cross-sectional view is shown in the figure;
[0018] Figure 3 For Figure 1 A structure schematic view of the heat dissipation frame side view cross-sectional view is shown in the figure;
[0019] Figure 4 For Figure 1 A structure schematic view of the collection cylinder side view is shown in the figure.
[0020] The figure mark: 10, working frame; 20, cutting assembly; 21, collection bin; 22, fixed seat; 23, cutting knife; 24, first motor; 30, heat dissipation assembly; 31, collection cylinder; 32, rotating rod; 33, partition plate; 34, heat dissipation frame; 35, heat dissipation fan; 36, first heat dissipation net; 37, second heat dissipation net; 38, conveying port; 40, extruder main body; 50, conveying belt; 60, second motor; 70, first grooved wheel; 80, second grooved wheel. Specific implementation
[0021] The utility model is further described below in combination with the drawings and embodiments.
[0022] Please refer to Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 Among them, Figure 1 A preferred embodiment structure schematic view of the phenolic resin particle molding device is shown in the figure; Figure 2 For Figure 1 A structure schematic view of the collection bin and collection cylinder side view cross-sectional view is shown in the figure; Figure 3 For Figure 1 A structure schematic view of the heat dissipation frame side view cross-sectional view is shown in the figure; Figure 4 For Figure 1 A structure schematic view of the collection cylinder side view is shown in the figure. A phenolic resin particle molding device, comprising: working frame 10, the left side of working frame 10 is provided with cutting assembly 20, and the bottom of cutting assembly 20 and the left side of working frame 10 are provided with heat dissipation assembly 30;
[0023] Cutting assembly 20 includes collection bin 21 arranged on the left side of working frame 10, fixed seat 22 is fixedly installed on the inner side of collection bin 21 close to the top, cutting knife 23 is rotatably arranged on the right side of fixed seat 22, and first motor 24 for driving cutting knife 23 to rotate is fixedly installed on the inner side wall of fixed seat 22;
[0024] The worker extrudes the phenolic resin strip through the output end of the extruder body 40 during use. Then the first motor 24 starts to work, drives the cutting knife 23 to rotate, cuts the phenolic resin, and makes the phenolic resin particles fall into the collection bin 21 after being processed, and then fall into the collection cylinder 31 through the top conveying port 38.
[0025] The heat dissipation assembly 30 comprises a collection cylinder 31 arranged at the front of the bottom of the collection bin 21 and located on the left side of the workbench 10. A rotating rod 32 is arranged at the center of the inside of the collection cylinder 31 and is rotatably connected to the collection cylinder 31. A plurality of partition plates 33 are fixedly arranged on the surface of the rotating rod 32. Heat dissipation frames 34 are fixedly arranged on the front and back of the collection cylinder 31. The rotating rod 32 penetrates the heat dissipation frames 34 and is rotatably connected to the heat dissipation frames 34. Heat dissipation fans 35 are fixedly arranged on the outer edge of the rotating rod 32 and located inside the heat dissipation frames 34. First heat dissipation nets 36 are arranged on the side of the heat dissipation frames 34 close to the partition plates 33 and adjacent to the collection cylinder 31.
[0026] The second motor 60 starts to work, drives the rotating rod 32 to rotate through the first groove wheel 70 and the second groove wheel 80, drives the partition plates 33 to rotate, and makes the cut phenolic resin particles fall between the partition plates 33. When the rotating rod 32 rotates to the bottom, the particles fall on the top of the conveying belt 50 through the bottom conveying port 38. At the same time, the rotating rod 32 drives the heat dissipation fans 35 on both sides to rotate and heat the phenolic resin particles through the first heat dissipation net 36. In this way, the direct falling of the phenolic resin particles can be effectively avoided, the heat dissipation time of the phenolic resin particles is increased, and the phenolic resin particles are rapidly cooled.
[0027] The extruder body 40 is arranged in the workbench 10 and extends into the collection bin 21.
[0028] The fixed frame is fixedly arranged on the left side of the workbench 10 close to the bottom. The conveying belt 50 is rotatably arranged in the fixed frame. The fixed block is fixedly arranged on the front side of the fixed frame close to the back. The second motor 60 is fixedly arranged on the top of the fixed block and drives the conveying belt 50 to rotate.
[0029] The first groove wheel 70 is arranged on the outer edge of the power output shaft of the second motor 60. The second groove wheel 80 is arranged on the top of the first groove wheel 70. The first groove wheel 70 and the second groove wheel 80 are rotatably connected through the belt. The second groove wheel 80 is fixedly connected to the front end of the rotating rod 32.
[0030] The second heat dissipation nets 37 are fixedly arranged in the installation ports on the side of the heat dissipation frames 34 away from each other.
[0031] The collection cylinder 31 has conveying ports 38 at both the top and bottom, and the top conveying port 38 is connected to the inside of the collection chamber 21.
[0032] The working principle of the phenolic resin particle molding device provided by this utility model is as follows:
[0033] Step 1: During use, the operator extrudes phenolic resin into strips through the output end of the extruder body 40. Then, the first motor 24 starts working, driving the cutting blade 23 to rotate and cut the phenolic resin. The phenolic resin granules are then formed and fall into the inner side of the collection bin 21, and then fall into the inner side of the collection cylinder 31 through the top conveying port 38.
[0034] Step 2: The second motor 60 starts working, and through the action of the first grooved wheel 70 and the second grooved wheel 80, it drives the rotating rod 32 to rotate. The rotating rod 32 drives the partition plate 33 to rotate, and the partition plate 33 disperses the cut phenolic resin particles among the multiple partition plates 33. When the rotation reaches the bottom, the particles fall onto the top of the conveyor belt 50 through the bottom conveyor port 38 for conveying. At the same time, the rotating rod 32 drives the cooling fans 35 on both sides to rotate, and the first heat dissipation net 36 dissipates heat from the phenolic resin particles. This can effectively prevent the phenolic resin particles from falling directly, thereby increasing the heat dissipation time of the phenolic resin particles and thus making the phenolic resin particles cool down quickly.
[0035] Compared with related technologies, the phenolic resin particle molding device provided by this utility model has the following beneficial effects:
[0036] By coordinating the various components of the device, the second motor 60, through the action of the first grooved wheel 70 and the second grooved wheel 80, drives the rotating rod 32 to rotate. The rotating rod 32 drives the partition plate 33 to rotate, and the partition plate 33 disperses the cut phenolic resin particles among the multiple partition plates 33. When the rotation reaches the bottom, the particles fall onto the top of the conveyor belt 50 through the bottom conveyor port 38 for conveying. At the same time, the rotating rod 32 drives the cooling fans 35 on both sides to rotate, and the first heat dissipation net 36 dissipates heat from the phenolic resin particles. This effectively prevents the phenolic resin particles from falling directly, thereby increasing the heat dissipation time of the phenolic resin particles and thus rapidly cooling them down.
Claims
1. A phenolic resin particle molding device, characterized in that, include: A work frame (10) is provided with a cutting component (20) on the left side of the work frame (10), and a heat dissipation component (30) is provided at the bottom of the cutting component (20) and on the left side of the work frame (10). The cutting assembly (20) includes a collection bin (21) disposed on the left side of the work frame (10). A fixed seat (22) is fixedly installed on the inner side of the collection bin (21) near the top. A cutting blade (23) is rotatably disposed on the right side of the fixed seat (22). A first motor (24) for driving the cutting blade (23) to rotate is fixedly installed on the inner wall of the fixed seat (22). The heat dissipation assembly (30) includes a collection cylinder (31) located at the bottom front of the collection chamber (21) on the left side of the work frame (10). A rotating rod (32) is provided through the center of the inner side of the collection cylinder (31) and is rotatably connected to it. Multiple partition plates (33) are fixedly installed on the surface of the rotating rod (32). Heat dissipation racks (34) are fixedly installed on both the front and rear sides of the collection cylinder (31). Both ends of the rotating rod (32) pass through the inner side of the heat dissipation rack (34) and are rotatably connected to it. A cooling fan (35) is fixedly installed on the outer edge of the rotating rod (32) and inside the heat dissipation rack (34). A first heat dissipation mesh (36) is provided on the side of the two heat dissipation racks (34) adjacent to the partition plate (33) and the collection cylinder (31).
2. The phenolic resin particle molding device according to claim 1, characterized in that, The extruder body (40) is embedded in the inner side of the work frame (10) near the top, and the conveying end of the extruder body (40) extends into the inner side of the collection bin (21).
3. The phenolic resin particle molding device according to claim 1, characterized in that, A fixed frame is fixedly installed on the left side of the work frame (10) near the bottom. A conveyor belt (50) is rotatably arranged inside the fixed frame. A fixed block is fixedly installed on the front side of the fixed frame near the rear side. A second motor (60) that drives the conveyor belt (50) to rotate is fixedly installed on the top of the fixed block.
4. The phenolic resin particle molding device according to claim 3, characterized in that, The outer edge of the power output shaft of the second motor (60) is fitted with a first grooved wheel (70), and the top of the first grooved wheel (70) is provided with a second grooved wheel (80). The outer edges of the first grooved wheel (70) and the second grooved wheel (80) are fitted with a belt and connected by belt drive. The rear end of the second grooved wheel (80) is fixedly connected to the front end of the rotating rod (32).
5. The phenolic resin particle molding device according to claim 1, characterized in that, Two mounting holes are provided on opposite sides of the two heat sinks (34), and a second heat sink mesh (37) is fixedly installed inside each mounting hole.
6. The phenolic resin particle molding device according to claim 1, characterized in that, The collection cylinder (31) has a conveying port (38) at both the top and bottom, and the conveying port (38) at the top is connected to the inside of the collection chamber (21).
Citation Information
Patent Citations
Granulation equipment for phenolic resin production
CN219522693U