Discharging device with high-viscosity resin
By designing a spherical mixing tank and a discharge device for the electric heating tube, the problem of resin sticking when discharged from the container is solved, and automatic cleaning and efficient resin discharge are achieved.
Patent Information
- Application Number
- CN202422447485.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-10
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2034-10-10
AI Technical Summary
When the resin is discharged from the container, it tends to stick to the discharge area, making it difficult to clean.
A discharging device was designed, which included a spherical mixing tank, a resin delivery pipe, an electric push rod, a cylindrical sleeve and an electric heating pipe. The resin delivery pipe was heated by the heating pipe, and the gravity of the resin caused it to fall automatically. A sponge pad was used to clean the water vapor on the outside of the delivery pipe.
It effectively avoids resin adhesion, simplifies the cleaning process, and improves the efficiency of the device and the convenience of cleaning.
Smart Images

Figure CN223383741U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of resin processing, in particular to a discharge device for high-viscosity resin. Background Art
[0002] Resin generally refers to an organic polymer that softens or melts when heated, tends to flow under external forces, and is solid, semi-solid, or sometimes liquid at room temperature. Broadly speaking, any polymer compound that can be used as a raw material for plastic products is called a resin.
[0003] Since the resin itself is sticky, when it is discharged from the container, the resin easily sticks to the discharge point, and it is easy to cause problems such as manual cleaning.
[0004] Therefore, it is necessary to propose a discharge device for high viscosity resin to solve the above problems. Utility Model Content
[0005] The purpose of the utility model is to provide a discharge device for high-viscosity resin to solve the problem that the resin itself is sticky and easily sticks to the discharge point when discharged from the container, and is difficult to clean manually.
[0006] To achieve the above object, the utility model provides the following technical solution: a discharge device for high-viscosity resin, comprising a placement table, a spherical fixing groove is formed on the top of the placement table, and a spherical mixing tank is placed inside the spherical fixing groove;
[0007] A bottom opening is provided in the middle of the bottom end of the placing table, and the bottom end of the spherical mixing tank is connected to a resin delivery pipe. The bottom end of the resin delivery pipe extends out of the bottom opening, and an electric push rod is embedded in the edge of the bottom end of the bottom opening. A cylindrical sleeve is fixed to the bottom end of the electric push rod, and a cavity is provided between the inner wall and the outer side of the cylindrical sleeve. An electric heating pipe is provided in the cavity, and a spherical valve is provided at the connection between the resin delivery pipe and the spherical mixing tank.
[0008] Preferably, the cylindrical sleeve is arranged on the outside of the resin delivery pipe, and a sponge pad is fixed to the top end of the cylindrical sleeve. The sponge pad is annular, and the inner wall of the annular structure fits the outside of the resin delivery pipe.
[0009] Preferably, a plurality of connection holes are opened at the bottom end of the cylindrical sleeve, and the plurality of connection holes are distributed at equal distances around the center of the cylindrical sleeve.
[0010] Preferably, an electric wire is provided on the outside of the cylindrical sleeve, and one end of the electric wire is connected to the electric heating tube.
[0011] Preferably, an input port is provided on one side of the spherical mixing tank, and the input port is communicated with the interior of the spherical mixing tank.
[0012] Preferably, the radius of the bottom opening and the cylindrical sleeve are consistent.
[0013] Preferably, a temperature sensor is embedded on the inner wall of the cylindrical sleeve.
[0014] The technical effects and advantages of this utility model are:
[0015] 1. In the actual operation of the present invention, when the resin is discharged through the resin delivery pipe, the electric heating pipe can be started to heat the resin delivery pipe to soften the resin raw material adhering to the inner wall of the resin delivery pipe. Since the resin delivery pipe is set vertically downward, it can automatically fall by its own gravity to avoid the occurrence of adhesion.
[0016] 2. Furthermore, when the resin is finished outputting, the electric heating tube is turned off and the electric push rod drives the cylindrical sleeve to extend downward, so that the resin delivery tube can be leaked out, thereby accelerating the heat dissipation speed of the resin delivery tube and facilitating the next use.
[0017] 3. At the same time, when the cylindrical sleeve extends downward, the sponge pad will move downward from the top of the resin delivery tube, rubbing the outside of the resin delivery tube, which can absorb the water vapor generated on the outside of the resin delivery tube during heating, playing a cleaning role, and the sponge pad fits the outside of the resin delivery tube, which can make the up and down movement of the cylindrical sleeve more stable. When heated, the sponge pad can play a role of heat preservation. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 This is a structural schematic diagram from one perspective of a discharge device for high-viscosity resin according to the present invention.
[0019] Figure 2 This is a structural schematic diagram of another perspective of the discharge device for high-viscosity resin of the utility model.
[0020] Figure 3 For this utility model Figure 2 Enlarged schematic diagram of point A in the middle.
[0021] Figure 4 This is a structural diagram of the electric heating tube of the utility model.
[0022] In the figure: 1. Placement table; 2. Spherical mixing tank; 3. Input port; 4. Spherical fixing groove; 5. Bottom port; 6. Resin feed pipe; 7. Electric push rod; 8. Cylindrical sleeve; 9. Sponge pad; 10. Connection hole; 11. Electric wire; 12. Electric heating tube. DETAILED DESCRIPTION
[0023] The following will be combined with the accompanying drawings in the embodiments of the present invention to clarify the technical solutions in the embodiments of the present invention; it is clear that the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0024] The utility model provides Figure 1 - Figure 4 The device for discharging high-viscosity resin shown in the figure includes a placement table 1, a spherical fixing groove 4 is provided at the top of the placement table 1, a spherical mixing tank 2 is placed inside the spherical fixing groove 4, an input port 3 is provided on one side of the spherical mixing tank 2, and the input port 3 is connected to the interior of the spherical mixing tank 2. In the actual operation of the present invention, the resin to be mixed with other materials can be poured into the spherical mixing tank 2 and mixed evenly by the spherical mixing tank 2. An inlet is provided in the middle of the top of the spherical mixing tank 2, which can be connected to a stirring device.
[0025] Since the resin itself is sticky, it is easy for the resin to stick to the discharge area during discharge, and it is easy to cause problems such as difficult to clean manually.
[0026] Therefore, a bottom opening 5 is opened in the middle of the bottom end of the placement table 1, and the bottom end of the spherical mixing tank 2 is connected to a resin delivery pipe 6, and the bottom end of the resin delivery pipe 6 extends out of the bottom opening 5. An electric push rod 7 is embedded in the edge of the bottom end of the bottom opening 5, and a cylindrical sleeve 8 is fixed to the bottom end of the electric push rod 7. A cavity is opened between the inner wall and the outer side of the cylindrical sleeve 8, and an electric heating pipe 12 is arranged in the cavity. A spherical valve is provided at the connection between the resin delivery pipe 6 and the spherical mixing tank 2.
[0027] The cylindrical sleeve 8 is sleeved on the outside of the resin delivery pipe 6 , and a sponge pad 9 is fixed to the top end of the cylindrical sleeve 8 . The sponge pad 9 is annular, and the inner wall of the annular structure fits the outside of the resin delivery pipe 6 .
[0028] In the actual operation of the present invention, when the resin is discharged through the resin delivery pipe 6, the electric heating pipe 12 can be started to heat the resin delivery pipe 6 to soften the resin raw material adhering to the inner wall of the resin delivery pipe 6. Since the resin delivery pipe 6 is set vertically downward, it can automatically fall by its own gravity to avoid the occurrence of adhesion.
[0029] Furthermore, when the resin is finished being output, the electric heating tube 12 is turned off and the electric push rod 7 drives the cylindrical sleeve 8 to extend downward, allowing the resin delivery tube 6 to leak out, thereby accelerating the heat dissipation speed of the resin delivery tube 6 and facilitating the next use.
[0030] At the same time, when the cylindrical sleeve 8 extends downward, the sponge pad 9 will move downward from the top of the resin delivery tube 6, rubbing the outside of the resin delivery tube 6, and can absorb the water vapor generated on the outside of the resin delivery tube 6 during heating, thereby playing a cleaning role. In addition, the sponge pad 9 fits the outside of the resin delivery tube 6, which can make the up and down movement of the cylindrical sleeve 8 more stable.
[0031] When heated, the sponge pad 9 can play a role in heat preservation.
[0032] A plurality of connection holes 10 are provided at the bottom end of the cylindrical sleeve 8 . The plurality of connection holes 10 are distributed at equal distances around the center of the cylindrical sleeve 8 . The connection holes 10 can be connected to docking pipes.
[0033] An electric wire 11 is provided on the outside of the cylindrical sleeve 8. One end of the electric wire 11 is connected to the electric heating tube 12, and the other end of the electric wire 11 is connected to the power supply. The radius of the bottom opening 5 and the cylindrical sleeve 8 are consistent.
[0034] A temperature sensor is embedded in the inner wall of the cylindrical sleeve 8 to monitor the internal temperature.
Claims
1. A discharge device for high-viscosity resin, comprising a placement table (1), characterized in that: A spherical fixing groove (4) is provided at the top of the placement platform (1), and a spherical mixing tank (2) is placed inside the spherical fixing groove (4); A bottom opening (5) is provided in the middle of the bottom end of the placing table (1), and a resin delivery pipe (6) is connected to the bottom end of the spherical mixing tank (2). The bottom end of the resin delivery pipe (6) extends out of the bottom opening (5), and an electric push rod (7) is embedded in the edge of the bottom end of the bottom opening (5). A cylindrical sleeve (8) is fixed to the bottom end of the electric push rod (7), and a cavity is provided between the inner wall and the outer wall of the cylindrical sleeve (8). An electric heating pipe (12) is provided in the cavity, and a spherical valve is provided at the connection between the resin delivery pipe (6) and the spherical mixing tank (2).
2. A discharge device for high-viscosity resin according to claim 1, characterized in that: The cylindrical sleeve (8) is sleeved on the outside of the resin delivery pipe (6), and a sponge pad (9) is fixed to the top end of the cylindrical sleeve (8). The sponge pad (9) is annular, and the inner wall of the annular structure is in contact with the outside of the resin delivery pipe (6).
3. The discharge device for high-viscosity resin according to claim 2, characterized in that: The bottom end of the cylindrical sleeve (8) is provided with a plurality of connection holes (10), and the plurality of connection holes (10) are distributed at equal distances around the center of the cylindrical sleeve (8).
4. A discharge device for high-viscosity resin according to claim 3, characterized in that: An electric wire (11) is provided on the outside of the cylindrical sleeve (8), and one end of the electric wire (11) is connected to the electric heating tube (12).
5. The discharge device for high-viscosity resin according to claim 1, characterized in that: An input port (3) is provided on one side of the spherical mixing tank (2), and the input port (3) is communicated with the interior of the spherical mixing tank (2).
6. The discharge device for high-viscosity resin according to claim 1, characterized in that: The radii of the bottom opening (5) and the cylindrical sleeve (8) are consistent.
7. The discharge device for high-viscosity resin according to claim 1, characterized in that: A temperature sensor is embedded on the inner wall of the cylindrical sleeve (8).