Bobbin paper waxing device

By designing a paper waxing device for yarn tubes with rotating components, a stirring mechanism, and a waxing mechanism, the problems of uneven wax mixing and solidification were solved, achieving uniform wax application and efficient waxing effect.

CN224253272UActive Publication Date: 2026-05-19ZHEJIANG HUACHUAN IND GRP
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG HUACHUAN IND GRP
Filing Date
2025-03-20
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

The existing waxing device for yarn tubes cannot effectively stir the wax liquid, resulting in uneven wax application and easy solidification of the wax, which affects the quality of waxing.

Method used

A waxing device for yarn tube paper was designed, comprising a rotating component, a stirring mechanism, and a waxing mechanism. The rotating component drives the yarn tube paper to rotate, the stirring mechanism uses the self-rotating and revolutionizing stirring component and the heating component to uniformly stir the wax liquid, and the waxing mechanism uniformly applies the stirred wax liquid onto the yarn tube paper.

Benefits of technology

It achieves uniform mixing and appropriate heating of the wax liquid, improves the fluidity and evenness of the wax application, enhances the quality and efficiency of waxing, and avoids unevenness caused by wax solidification.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of paper tube processing equipment, in particular to a bobbin paper waxing device which comprises a supporting seat, a working table located on the side face of the supporting seat, table legs arranged at the bottom of the working table, a conveying belt arranged on the outer side of the working table, a rotating assembly, a stirring mechanism and a waxing mechanism. The stirring mechanism is arranged at the top of the supporting seat; the waxing mechanism is arranged on the side face of the stirring mechanism. Through the arrangement of the stirring mechanism, the motor drives the stirring blades to rotate and revolve at the same time, the power plate extrudes the friction plate during rotation so as to generate heat, the electric heating plate also generates heat after being electrified, and solid particles in wax liquid can be more uniformly distributed in a three-dimensional space through the combination of revolution and rotation; the phenomenon that the local concentration is too high or too low is avoided, and the wax liquid can be properly heated by the electric heating plate and heat generated by friction, so that the flowing of the wax liquid can be accelerated, and the wax liquid can be more easily and uniformly mixed.
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Description

Technical Field

[0001] This utility model relates to the technical field of paper tube processing equipment, and in particular to a waxing device for yarn tube paper. Background Technology

[0002] Paper tubes are mainly used in the production of cores and pipes, including industrial pipes, mulch pipes, firework pipes, textile pipes, spiral pipes, pagoda pipes, parallel pipes, various paper corner protectors, cartons, honeycomb cardboard, etc.

[0003] Chinese Patent No. CN211846609U discloses a waxing device for yarn tube paper, including a frame. Two support plates are screwed to both ends of the frame. A feeding roller and a receiving roller are respectively mounted on the two support plates via a rotating shaft. A conveyor belt is mounted on the frame. Columns are located on both sides of the frame, connected by crossbars. A slide rail is located under the crossbars, and a waxing device is mounted on the slide rail via a slider. A drying chamber is located on the right side of the frame. The drying chamber consists of front and rear side plates, inverted U-shaped left and right side plates, and a top plate. The front and rear side plates are screwed to the front and rear sides of the frame. The inverted U-shaped left and right side plates are located on the conveyor belt. A heating plate is screwed to the top of the drying chamber, and a heat-conducting plate is located below the heating plate. This utility model has a compact structure, reasonable design, and strong practicality. The coordinated use of the conveyor belt, feeding roller, and receiving roller facilitates stable conveying of the yarn tube paper. The multiple brush rollers can evenly apply wax to the yarn tube paper, improving the quality of the wax layer.

[0004] However, the above-mentioned publicly disclosed solutions have the following shortcomings: the existing yarn tube paper waxing device cannot stir and heat the wax liquid properly, so the wax liquid on the upper layer is prone to solidification if it has not been used for too long before application, and the composition of the wax is not uniform enough. Utility Model Content

[0005] The purpose of this invention is to address the problem in the prior art that it is impossible to stir the wax liquid evenly and maintain its fluidity, and to propose a waxing device for yarn tube paper.

[0006] The technical solution of this utility model: a waxing device for yarn tube paper, including a support base, a worktable located on the side of the support base, table legs disposed at the bottom of the worktable, and a conveyor belt disposed on the outside of the worktable; further comprising:

[0007] A rotating component, mounted on the conveyor belt, is used to hold the yarn tube paper on it, thereby causing the yarn tube paper to rotate.

[0008] The stirring mechanism, located on the top of the support base, is used to simultaneously stir the wax liquid and heat it appropriately through rotation and revolution.

[0009] And a waxing mechanism, located on the side of the stirring mechanism, is used to rotate and apply the heated wax liquid onto the yarn tube paper.

[0010] Preferably, the rotating assembly includes a mounting plate, a motor, and a rotating shaft;

[0011] The mounting plate is set on the conveyor belt. There are multiple mounting plates. Motor 1 is set on the side of the mounting plate, and rotating shaft 1 is set at the output end of motor 1.

[0012] Preferably, the mixing mechanism includes a storage tank, a feed inlet, a discharge outlet, an electric valve, a mixing assembly, and a heating assembly;

[0013] The storage tank is located on top of the support base, the inlet is located on top of the storage tank, the outlet is located at the bottom of the storage tank, and the electric valve is located inside the outlet.

[0014] The stirring component is located inside the storage tank and is used to stir the wax liquid by rotating on its own axis and revolving around the sun simultaneously.

[0015] The heating components are located on the side of the stirring components, and there are two of them, which are used to heat the wax liquid by simultaneously generating heat through electricity and friction.

[0016] Preferably, the stirring assembly includes a motor, a second rotating shaft, spiral blades, a turntable, and a gear ring;

[0017] The motor is located at the top of the storage tank, the second rotating shaft is located at the output end of the motor, the spiral blades are located on the outside of the second rotating shaft, the turntable is located at the end of the second rotating shaft away from the motor, the gear ring is located on the inside of the storage tank, a spur gear meshes on the outside of the gear ring, a connecting shaft is located at the center of the spur gear, a stirring blade is located on the outside of the connecting shaft, a circular slide rail is located on the outside of the turntable, and a fixing ring is slidably located on the outside of the circular slide rail.

[0018] Preferably, the heating assembly includes a power plate, a friction plate, a telescopic tube, a spring, and an electric heating plate;

[0019] The power plate is located at the end of the stirring blade, the friction plate is located at the top of the fixed ring, the telescopic tube is located on the side of the friction plate away from the power plate, the spring is located on the outside of the telescopic tube, there are multiple telescopic tubes, and the electric heating plate is located at the end of the telescopic tube away from the friction plate.

[0020] Preferably, the waxing mechanism includes a connecting pipe, a storage box, a baffle plate, and a motor.

[0021] The connecting pipe is located at the bottom of the discharge port, the storage box is located at the end of the connecting pipe away from the discharge port, the second motor is located on the side of the storage box, the output end of the second motor is equipped with a third rotating shaft, the outer side of the third rotating shaft is equipped with a waxing roller, and the baffle is located on the outer side of the waxing roller.

[0022] Compared with the prior art, the present invention has the following beneficial technical effects:

[0023] 1. Through the design of the stirring mechanism, the motor drives the stirring blades to rotate and revolve simultaneously. During rotation, the power plate presses against the friction plate, generating heat. The electric heating plate also generates heat when energized. The combination of rotation and revolution allows the solid particles in the wax liquid to be more evenly distributed in three-dimensional space, avoiding local concentrations that are too high or too low. This helps reduce stratification during stirring, keeping the wax liquid in a more stable mixed state. The heat generated by the electric heating plate and friction can appropriately heat the wax liquid, accelerating its flow and making it easier to mix evenly. It also reduces the viscosity of the wax liquid, enhancing its fluidity and further improving stirring efficiency. This helps the components in the wax liquid to blend better, improving the overall performance of the wax liquid.

[0024] 2. Through the setting of the waxing mechanism, the processed wax liquid flows into the storage box. Motor 2 drives the waxing roller to apply wax to the surface of the yarn tube paper. The yarn tube paper and the waxing roller rotate in opposite directions, which can comprehensively coat the yarn tube paper and better adhere to the surface of the yarn tube paper. The friction generated by the reverse rotation helps to evenly distribute the wax liquid on the yarn tube paper and reduce unevenness in the waxing process. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the structure of one embodiment of the present utility model;

[0026] Figure 2 This is a schematic diagram of the stirring mechanism;

[0027] Figure 3 This is a schematic diagram of the internal structure of the stirring mechanism;

[0028] Figure 4 This is a schematic diagram of the bottom structure of the stirring mechanism;

[0029] Figure 5 This is a schematic diagram of the waxing mechanism;

[0030] Figure 6 This is a schematic diagram of the internal structure of the waxing mechanism.

[0031] Reference numerals in the attached diagram: 1. Support base; 2. Workbench; 3. Table leg; 4. Conveyor belt; 501. Mounting plate; 502. Motor 1; 503. Shaft 1; 601. Storage bin; 602. Motor; 603. Feed inlet; 604. Shaft 2; 605. Spiral blade; 606. Turntable; 607. Circular slide rail; 608. Fixing ring; 609. Discharge port; 610. Electric valve; 611. Gear ring; 612. Circular gear; 613. Connecting shaft; 614. Stirring blade; 615. Power plate; 616. Friction plate; 617. Telescopic tube; 618. Spring; 619. Electric heating plate; 701. Connecting tube; 702. Storage box; 703. Baffle plate; 704. Waxing roller; 705. Motor 2; 706. Shaft 3. Detailed Implementation

[0032] Example 1

[0033] like Figures 1-4 As shown, the present invention proposes a waxing device for yarn tube paper, including a support base 1, a worktable 2 located on the side of the support base 1, table legs 3 disposed at the bottom of the worktable 2, a conveyor belt 4 disposed on the outside of the worktable 2, a rotating assembly, a stirring mechanism, and a waxing mechanism.

[0034] The rotating component is mounted on the conveyor belt 4 to hold the yarn tube paper on it, thereby driving the yarn tube paper to rotate.

[0035] The stirring mechanism is located on the top of the support base 1 and is used to stir the wax liquid and heat it appropriately through rotation and revolution.

[0036] The waxing mechanism is located on the side of the stirring mechanism and is used to rotate and apply the heated wax liquid onto the yarn tube paper.

[0037] The rotating assembly includes a mounting plate 501, a motor 502, and a rotating shaft 503. The mounting plate 501 is mounted on the conveyor belt 4, and multiple mounting plates 501 are provided. The motor 502 is located on the side of the mounting plate 501, and the rotating shaft 503 is located at the output end of the motor 502. Before waxing, the motor 502 is started to drive the rotating shaft 503 to rotate. Then, the worker attaches the yarn tube paper to the rotating shaft 503, and the yarn tube paper rotates with the rotating shaft 503.

[0038] The stirring mechanism includes a storage tank 601, an inlet 603, an outlet 609, an electric valve 610, a stirring assembly, and a heating assembly. The storage tank 601 is located on top of the support base 1, the inlet 603 is located on top of the storage tank 601, and the outlet 609 is located at the bottom of the storage tank 601. The electric valve 610 is rotatably located inside the outlet 609, allowing the wax liquid to be poured into the storage tank 601 through the inlet 603 for the stirring assembly and heating assembly to operate. After the wax liquid is processed, the electric valve 610 is opened to discharge the wax liquid through the outlet 609 into the waxing mechanism. The stirring assembly is located inside the storage tank 601 and is used to stir the wax liquid by rotating and revolving simultaneously. Two heating assemblies are located on the side of the stirring assembly and are used to heat the wax liquid simultaneously by applying electricity and generating heat through friction. The stirring assembly includes a motor 602, a second rotating shaft 604, a spiral blade 605, a turntable 606, and a gear ring 611. The motor 602 is located at the top of the storage tank 601. The second rotating shaft 604 is located at the output end of the motor 602. The spiral blade 605 is located on the outer side of the second rotating shaft 604. The turntable 606 is located at the end of the second rotating shaft 604 away from the motor 602. The gear ring 611 is located inside the storage tank 601 and at its bottom. Four spur gears 612 mesh with the outer side of the gear ring 611. A connecting shaft 613 is located at the center of each spur gear 612. The outer side of the connecting shaft 613 connects to the turntable 606. Stirring blades 611 are located on the outer side of the connecting shaft 613. 14. A circular slide rail 607 is provided on the outer side of the turntable 606. A fixed ring 608 is slidably provided on the outer side of the circular slide rail 607. The outer side of the fixed ring 608 is connected to the inner side of the storage tank 601. The fixed ring 608 and the circular slide rail 607 are sealed together, so the wax liquid will not leak out through the connection. The motor 602 is started, and the motor 602 drives the second rotating shaft 604 to rotate. The second rotating shaft 604 drives the turntable 606 to rotate. The rotation of the turntable 606 drives the circular gear 612 to revolve around the second rotating shaft 604 through the connecting shaft 613. At the same time, since the gear ring 611 is fixed, the circular gear 612 meshes with the gear ring 611 and rotates. The stirring blade 614 rotates and revolves simultaneously with the circular gear 612.The heating assembly includes a power plate 615, a friction plate 616, a telescopic tube 617, a spring 618, and an electric heating plate 619. The power plate 615 is located at the end of the stirring blade 614. The friction plate 616 is located at the top of the fixing ring 608. The telescopic tube 617 is located on the side of the friction plate 616 away from the power plate 615. The spring 618 is located on the outside of the telescopic tube 617. Multiple telescopic tubes 617 are provided. The electric heating plate 619 is located at the end of the telescopic tube 617 away from the friction plate 616 and is connected to the fixing ring 608 by screws. The top of the electric heating plate 619 has an insertion port, and the top of the storage container 601 has a through hole, thus allowing the heating plate to be inserted. The wire is plugged into the socket through the through hole to power the electric heating plate 619. When the stirring blade 614 rotates, it drives the power plate 615 to rotate. When the power plate 615 contacts the end of the friction plate 616, since the friction plate 616 is set in an M shape and the arc in the middle of the friction plate 616 is the same as that of the power plate 615, the power plate 615 can cut into the friction plate 616 from the end and then squeeze the friction plate 616. At this time, the spring 618 squeezes the friction plate 616 at the same time under the action of elasticity, thereby generating heat. In this way, the heat generated by the electric heating plate 619 and the heat generated by friction can more quickly heat the wax liquid in the storage tank 601 appropriately.

[0039] Example 2

[0040] like Figures 5-6 As shown, this utility model proposes a waxing device for yarn tubes. Compared with Embodiment 1, this embodiment details the structure of the waxing mechanism:

[0041] The waxing mechanism includes a connecting pipe 701, a storage box 702, a baffle plate 703, and a second motor 705. The connecting pipe 701 is located at the bottom of the discharge port 609, the storage box 702 is located at the end of the connecting pipe 701 away from the discharge port 609, and the second motor 705 is located on the side of the storage box 702. A third rotating shaft 706 is located at the output end of the second motor 705, and a waxing roller 704 is located on the outer side of the third rotating shaft 706. The waxing roller 704 is a hollow cylinder with grooves around its circumference to guide the wax liquid into the hollow pipe and coat the yarn tube paper. The baffle plate 703 is located on the side of the connecting pipe 701. The outer side of the wax roller 704 and the bottom of the baffle 703 are connected to the inner side of the storage box 702. Both sides of the baffle 703 are provided with through grooves. When the second motor 705 is started, the rotation direction of the second motor 705 is opposite to that of the first motor 502, which facilitates the coating of the yarn tube paper. The second motor 705 drives the third rotating shaft 706 to rotate, and the third rotating shaft 706 drives the waxing roller 704 to rotate. When the through groove of the waxing roller 704 rotates into the storage box 702, the wax liquid can be guided into the interior of the waxing roller 704. When it continues to rotate to the outside of the storage box 702, the wax liquid in the waxing roller 704 can be applied to the yarn tube paper.

[0042] In summary, when using this utility model, the wire is plugged into the socket through the through hole to power the electric heating plate 619. Then, the wax liquid is poured into the storage tank 601 through the feed port 603. The motor 602 is started, and the motor 602 drives the rotating shaft 604 to rotate. The rotating shaft 604 drives the turntable 606 to rotate. The rotation of the turntable 606 drives the spur gear 612 to revolve around the rotating shaft 604 through the connecting shaft 613. At the same time, since the gear ring 611 is fixed, the spur gear 612 meshes with the gear ring 611 and rotates. The stirring blade 614 rotates and revolves simultaneously with the spur gear 612. When the stirring blade 614 rotates, it drives the power plate 615 to rotate. The power plate 615 can cut into the friction plate 616 from the end of the friction plate 616 and squeeze the friction plate 616. At this time, the spring 618 squeezes the friction plate 616 under the elastic action, thereby generating heat. The heat generated by the electric heating plate 619 and the heat generated by friction can quickly and appropriately heat the wax liquid in the storage tank 601. After the wax liquid is processed, the electric valve 610 is opened to discharge the wax liquid through the discharge port 609 into the waxing mechanism. The motor 502 is started to drive the rotating shaft 503 to rotate. Then, the operator attaches the yarn tube paper to the rotating shaft 503. The yarn tube paper rotates with the rotating shaft 503. Then, the motor 705 is started. The rotation direction of the motor 705 is opposite to that of the motor 502 to facilitate the coating of the yarn tube paper. The motor 705 drives the rotating shaft 706 to rotate. The rotating shaft 706 drives the waxing roller 704 to rotate. When the groove of the waxing roller 704 rotates into the storage box 702, it can guide the wax liquid into the interior of the waxing roller 704. When it continues to rotate to the outside of the storage box 702, the wax liquid in the waxing roller 704 can be coated onto the yarn tube paper.

[0043] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited thereto. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the spirit of the present invention.

Claims

1. A waxing device for yarn tube paper, comprising a support base (1), a worktable (2) located on the side of the support base (1), table legs (3) disposed at the bottom of the worktable (2), and a conveyor belt (4) disposed on the outside of the worktable (2); characterized in that, Also includes: A rotating component is set on the conveyor belt (4) to hold the yarn tube paper on it, thereby driving the yarn tube paper to rotate. A stirring mechanism is located on the top of the support base (1) and is used to stir the wax liquid and heat it appropriately by rotating on its own axis and revolving around the sun. And a waxing mechanism, located on the side of the stirring mechanism, is used to rotate and apply the heated wax liquid onto the yarn tube paper.

2. The yarn tube paper waxing device according to claim 1, characterized in that, The rotating assembly includes a mounting plate (501), a motor (502), and a rotating shaft (503); Mounting plate (501) is set on conveyor belt (4). Multiple mounting plates (501) are provided. Motor 1 (502) is set on the side of mounting plate (501), and rotating shaft 1 (503) is set on the output end of motor 1 (502).

3. The yarn tube paper waxing device according to claim 1, characterized in that, The mixing mechanism includes a storage tank (601), a feed inlet (603), a discharge outlet (609), an electric valve (610), a mixing assembly, and a heating assembly; The storage tank (601) is located on the top of the support base (1), the feed inlet (603) is located on the top of the storage tank (601), the discharge port (609) is located on the bottom of the storage tank (601), and the electric valve (610) is located inside the discharge port (609). The stirring component is located inside the storage tank (601) and is used to stir the wax liquid by rotating on its own axis and revolving around the sun simultaneously. The heating components are located on the side of the stirring components, and there are two of them, which are used to heat the wax liquid by simultaneously generating heat through electricity and friction.

4. The yarn tube paper waxing device according to claim 3, characterized in that, The stirring assembly includes a motor (602), a second rotating shaft (604), a spiral blade (605), a turntable (606), and a gear ring (611); The motor (602) is located on the top of the storage tank (601), the second rotating shaft (604) is located at the output end of the motor (602), the spiral blade (605) is located on the outside of the second rotating shaft (604), the turntable (606) is located at the end of the second rotating shaft (604) away from the motor (602), the gear ring (611) is located on the inside of the storage tank (601), the outer side of the gear ring (611) is meshed with a spur gear (612), the shaft of the spur gear (612) is provided with a connecting shaft (613), the outer side of the connecting shaft (613) is provided with a stirring blade (614), the outer side of the turntable (606) is provided with a circular slide rail (607), and the outer side of the circular slide rail (607) is slidably provided with a fixing ring (608).

5. The yarn tube paper waxing device according to claim 4, characterized in that, The heating assembly includes a power plate (615), a friction plate (616), a telescopic tube (617), a spring (618), and an electric heating plate (619); A power plate (615) is located at the end of the stirring blade (614), a friction plate (616) is located at the top of the fixing ring (608), a telescopic tube (617) is located on the side of the friction plate (616) away from the power plate (615), a spring (618) is located on the outside of the telescopic tube (617), multiple telescopic tubes (617) are provided, and an electric heating plate (619) is located at the end of the telescopic tube (617) away from the friction plate (616).

6. The yarn tube paper waxing device according to claim 3, characterized in that, The waxing mechanism includes a connecting pipe (701), a storage box (702), a baffle plate (703), and a second motor (705); The connecting pipe (701) is located at the bottom of the discharge port (609), the storage box (702) is located at the end of the connecting pipe (701) away from the discharge port (609), the second motor (705) is located on the side of the storage box (702), the output end of the second motor (705) is provided with the third rotating shaft (706), the outer side of the third rotating shaft (706) is provided with the waxing roller (704), and the baffle plate (703) is located on the outer side of the waxing roller (704).