Energy-saving numerical control twill paper tube machine
By installing a vacuum cleaner and a lifting sleeve structure on the paper tube machine, the problem of automated paper scrap cleaning was solved, improving the automation level and operating efficiency of the equipment.
Patent Information
- Application Number
- CN202520009641.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-03
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2035-01-03
AI Technical Summary
Existing energy-saving CNC oblique paper tube machines require manual cleaning of paper scraps generated during the cutting process, which is cumbersome and affects the automation level and efficiency of the equipment.
A vacuum cleaner and a stepper motor-driven lifting sleeve structure are installed on the paper tube machine. The cutting position is sealed by a sponge sealing ring. The vacuum cleaner automatically collects paper scraps, and the lifting sleeve vibrates to collect paper scraps that are not sucked in, thus achieving automated cleaning.
It enables automatic collection of paper scraps, improves the automation level of the equipment, and reduces the frequency and labor intensity of manual cleaning.
Smart Images

Figure CN223604450U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to paper tube technical field, concretely is a kind of energy-saving numerical control twilled paper tube machine. BACKGROUND
[0002] Twilled paper tube is a kind of paper tube with special texture, its surface presents diagonal stripe or pattern, twilled paper tube is made of high-quality paper or paperboard winding, with higher strength and carrying capacity, which makes it keep stable form and performance in transportation, storage etc.
[0003] When the twilled paper tube is needed to be produced, the raw material paper or paperboard of the twilled paper tube is wound on the paper tube forming metal rod on the twilled paper tube machine, then with the progress of paper or paperboard and the rotation of paper tube forming metal rod, twilled paper tube will be continuously formed on paper tube forming metal rod, the twilled paper tube machine adopts advanced energy-saving technology and frequency control system, can automatically adjust motor speed and power according to production demand, effectively reduces energy consumption, and the equipment is also equipped with advanced numerical control system, operator can easily set and adjust production parameters, such as paper tube length, diameter, wall thickness and twilled pattern, through touch screen, this numerical control operation mode not only improves production precision, but also reduces manual operation difficulty and labor intensity, and the paper tube machine for producing twilled paper tube with numerical control and energy-saving effect can be called energy-saving numerical control twilled paper tube machine.
[0004] But the energy-saving numerical control twilled paper tube machine cuts the twilled paper tube of specified length by rotating cutting, a certain amount of paper scraps will be generated in the cutting process, with the increase of use time, paper scraps around cutting mechanism on paper tube machine will be more and more, in order to ensure normal use of equipment, it needs to be cleaned manually, and the operation is more complicated, therefore, it does not meet the existing demand, and we propose an energy-saving numerical control twilled paper tube machine. UTILITY MODEL CONTENT
[0005] The utility model aims at providing an energy-saving numerical control twilled paper tube machine, to solve the problems that the energy-saving numerical control twilled paper tube machine cuts the twilled paper tube of specified length by rotating cutting, a certain amount of paper scraps will be generated in the cutting process, with the increase of use time, paper scraps around cutting mechanism on paper tube machine will be more and more, in order to ensure normal use of equipment, it needs to be cleaned manually, and the operation is more complicated.
[0006] In order to achieve the above object, the utility model provides the following technical scheme: an energy -conserving numerical control twill paper tube machine, including paper tube machine, the top of paper tube machine is equipped with paper tube, the outside of paper tube is equipped with square metal shell, one side of square metal shell front end surface is equipped with through -hole, paper tube transversely penetrates through -hole, and both sides of the inside of through -hole are fixed with the sponge sealing ring that its inner wall is combined with the outer surface of paper tube,
[0007] The middle position of the upper end surface of the square metal shell is provided with a cutting head connected thereto in sliding mode, and the connection between the square metal shell and the cutting head is subjected to sealing treatment.
[0008] One side of the inside of the square metal shell is fixedly installed with a dust collector, one side of the front end surface of the dust collector is connected with a dust suction pipe, and the top end of the dust suction pipe is located directly below the cutting head.
[0009] Preferably, the inside of the front end of the paper tube is provided with a paper tube forming metal rod connected between the paper tube and the paper tube machine, and the outer surface of the paper tube forming metal rod is combined with the inner wall of the paper tube.
[0010] Preferably, the lower side of the square metal shell is provided with a slide rail fixedly installed on the upper end surface of the paper tube machine, one side of the upper end surface of the slide rail is installed with a sliding table, and the lower end surface of the square metal shell is fixed between the sliding table.
[0011] Preferably, one side of the upper end surface of the sliding table is fixedly installed with a cutting mechanical arm, and the upper end surface of the cutting head is connected between the top end of the cutting mechanical arm.
[0012] Preferably, both sides of the top end of the dust collector are provided with a stepping motor fixedly installed in the inside of the square metal shell, the output shaft of the stepping motor is connected with a concave shaft through a shaft coupling, one side of the outer surface of the concave shaft is concave, and a rubber protective sleeve is fixedly sleeved at the middle position of the concave surface of the outer surface of the concave shaft.
[0013] Preferably, the upper side of the two concave shafts is provided with a lifting sleeve connected in sliding mode between the square metal shell, the dust suction pipe is inserted into the inside of the lifting sleeve, and the middle position of the upper end surface of the dust suction pipe is a bevel opening.
[0014] Preferably, both sides of the outer surface of the lifting sleeve are provided with a slot, the inside of the slot is provided with a spring, the upper end surface of the spring is connected with a metal block located in the inside of the slot and fixed between the inside of the square metal shell.
[0015] Compared with the prior art, the utility model has the beneficial effects that:
[0016] 1. The utility model discloses a paper tube is cut in the position of the paper tube is located in the inside of the through -hole, and the cutting position on the paper tube can be sealed to a sealed space through the two sponge sealing rings located in the inside of the through -hole, when cutting the paper tube through the cutting head, first start the dust collector, and the dust suction pipe connected with the dust collector can produce suction force, when the dust collector is started, the paper tube is cut through the cutting head, and the paper scraps produced in the cutting process will be sucked into the inside of the dust suction pipe and finally enter the inside of the dust collector along the dust suction pipe to collect automatically, the above technical scheme can automatically collect the paper scraps produced in the process of cutting the paper tube, thereby improving the automation degree of equipment.
[0017] 2. The utility model discloses through two stepping motor can make the lifting sleeve of setting on the dust suction pipe top end outer surface unceasing vibration, if some paper scraps are not sucked into the inside of the dust suction pipe, will drop to the inside of the slope port of lifting sleeve upper end surface, along with the vibration of lifting sleeve, the paper scraps falling on the slope port will roll along the inner wall of slope port and fall into the inside of the dust suction pipe, and the above technical scheme can automatically collect the paper scraps not sucked into the inside of the dust suction pipe. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is the overall structure schematic view of the utility model;
[0019] Figure 2 It is the structure enlarged view of A in the utility model; Figure 1
[0020] Figure 3 It is the structure enlarged view of B in the utility model; Figure 2
[0021] Figure 4 It is the structure enlarged view of C in the utility model. Figure 2
[0022] In the drawing: 1, paper tube machine;2, paper tube forming metal rod;3, paper tube;4, slide rail;5, sliding table;6, cutting mechanical arm;7, cutting head;8, square metal shell;9, through -hole;10, sponge sealing ring;11, lifting sleeve;12, slope port;13, strip -shaped slot;14, metal block;15, concave shaft;16, spring;17, dust suction pipe;18, dust collector;19, stepping motor. DETAILED DESCRIPTION
[0023] The technical scheme in the embodiments of the utility model will be described clearly and completely in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments.
[0024] The paper tube machine 1 (model number 3H150-15), the dust collector 18 (model number MXQ-T012) and the stepping motor 19 (model number DM542) mentioned in the utility model can be obtained by market purchase or private customization.
[0025] As shown in Figure 1 and Figure 2 , the utility model provides an embodiment: a kind of energy-saving numerical control twill paper tube machine, including paper tube machine 1, the top of paper tube machine 1 is equipped with paper tube 3, the outside of paper tube 3 is equipped with square metal shell 8, one side of square metal shell 8 front end surface is equipped with through hole 9, paper tube 3 transversely penetrates through hole 9, and both sides inside through hole 9 are fixedly provided with a sponge sealing ring 10, and the inner wall of sponge sealing ring 10 is combined with the outer surface of paper tube 3;
[0026] The middle position of square metal shell 8 upper end surface is equipped with cutting head 7 connected with sliding, and the connecting place between square metal shell 8 and cutting head 7 is sealed treatment;
[0027] One side of square metal shell 8 inside is fixedly installed with dust collector 18, and the front end surface of dust collector 18 is connected with dust suction pipe 17, and the top end of dust suction pipe 17 is located below cutting head 7.
[0028] As the preferred technical scheme of the embodiment, as shown in Figure 1 , the inside of paper tube 3 front part end is equipped with paper tube forming metal rod 2 connected between paper tube machine 1, and the outer surface of paper tube forming metal rod 2 is combined with the inner wall of paper tube 3;When the equipment is needed to be used, first, raw material paper or paperboard of paper tube 3 is wound to paper tube forming metal rod 2, then paper tube machine 1 is started to drive paper tube forming metal rod 2 to rotate, along with the progress of paper or paperboard and the rotation of paper tube forming metal rod 2, paper tube 3 will be continuously formed on the outer surface of paper tube forming metal rod 2.
[0029] As the preferred technical scheme of the embodiment, as shown in Figure 2As shown, the lower part of the square metal shell 8 is provided with a slide rail 4 fixedly installed on the upper end surface of the paper tube machine 1, one side of the upper end surface of the slide rail 4 is provided with a sliding table 5, and the lower end surface of the square metal shell 8 is fixedly connected with the sliding table 5; one side of the upper end surface of the sliding table 5 is fixedly provided with a cutting mechanical arm 6, and the upper end surface of the cutting head 7 is connected with the top end of the cutting mechanical arm 6; with the increase of time, the paper tube 3 located on the outer surface of the paper tube forming metal rod 2 will become longer and longer, and the longer and longer paper tube 3 will be inserted into the inside of the through hole 9 located on the outer surface of the square metal shell 8 and penetrate through the through hole 9. During the movement of the paper tube 3 in the inside of the through hole 9, it will pass through two sponge sealing rings 10, and the paper tube 3 located between the two sponge sealing rings 10 can be isolated from the outside world. Before cutting the paper tube 3, start the dust collector 18, and the dust suction pipe 17 connected with the dust collector 18 can generate suction force. After the dust collector 18 is started, the cutting mechanical arm 6, the cutting head 7 and the square metal shell 8 are moved through the sliding table 5. At this time, the cutting head 7 is moved to the corresponding cutting position on the paper tube 3, and then the cutting head 7 is moved downward through the cutting mechanical arm 6. During the downward movement of the cutting head 7, the sliding table 5 needs to be constantly moved backward to ensure that the position where the cutting head 7 contacts the paper tube 3 remains unchanged. With the descent of the cutting head 7, the rear end of the paper tube 3 will be cut off, and the paper scraps generated during the cutting process will be sucked into the inside of the dust suction pipe 17 and finally enter the inside of the dust collector 18 along the dust suction pipe 17 to be automatically collected. Through this embodiment, the paper scraps generated during the cutting of the paper tube 3 can be automatically collected, thereby improving the automation degree of the equipment.
[0030] When the rear end of the paper tube 3 is cut off, the dust collector 18 is not turned off, and the cutting operation is circulated. When the dust collector 18 has been working for one month, the garbage storage box inside the dust collector 18 needs to be taken out, and the paper scraps inside the garbage storage box are poured into the inside of the garbage can.
[0031] As a preferred technical solution of the present embodiment, Figure 3 and Figure 4As shown, the top end of the dust collector 18 is provided with a step motor 19 fixedly installed in the square metal shell 8, the output shaft of the step motor 19 is connected with a concave shaft 15 through a shaft coupling, one side of the outer surface of the concave shaft 15 is concave, and a rubber protective sleeve is fixedly sleeved at the middle position of the concave part of the outer surface of the concave shaft 15; the upper part of the two concave shafts 15 is provided with a lifting sleeve 11 slidingly connected with the square metal shell 8, the dust suction pipe 17 is inserted into the inside of the lifting sleeve 11, and the middle position of the upper end surface of the dust suction pipe 17 is a beveled port 12; the outer surface of the lifting sleeve 11 is provided with a strip-shaped groove 13 on both sides, the strip-shaped groove 13 is provided with a spring 16, and the upper end surface of the spring 16 is connected with a metal block 14 located in the strip-shaped groove 13 and fixed between the inside of the strip-shaped groove 13 and the inside of the square metal shell 8; when the dust collector 18 is started, the two step motors 19 are started synchronously, the concave shaft 15 connected with the step motor 19 can be driven to rotate, with the rotation of the concave shaft 15, the concave part of the outer surface of the concave shaft 15 will contact the lower end surface of the lifting sleeve 11 and push the lifting sleeve 11 upwards, with the lifting of the lifting sleeve 11, the spring 16 will be squeezed, and through the reaction force of the squeezed spring 16, the lifting sleeve 11 can be pushed downwards, through the above technical scheme, the lifting sleeve 11 can be circularly vibrated up and down as a whole, if some paper scraps are not sucked into the inside of the dust suction pipe 17, they will fall into the inside of the beveled port 12 located at the upper end surface of the lifting sleeve 11, with the vibration of the lifting sleeve 11, the paper scraps falling on the beveled port 12 will roll along the inner wall of the beveled port 12 and fall into the inside of the dust suction pipe 17, through the embodiment, the paper scraps not sucked into the inside of the dust suction pipe 17 can be automatically collected.
[0032] It is apparent for those skilled in the art that the present application is not limited to the details of the foregoing exemplary embodiments, and the present application can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in all respects as illustrative and not restrictive, the scope of the present application being indicated by the appended claims rather than by the foregoing description, and it is intended to embrace all changes and modifications that fall within the meaning and scope of equivalents of the claims. Any reference signs in the claims should not be construed as limiting the claims to the figures in which the reference signs are used.
Claims
1. An energy saving numerically controlled machine for making paper tubes, comprising a paper tube machine (1), characterized in that: The paper tube machine (1) is provided with a paper tube (3), the outer side of the paper tube (3) is provided with a square metal shell (8), one side of the front end surface of the square metal shell (8) is provided with a through hole (9), the paper tube (3) transversely penetrates the through hole (9), and the two sides of the inside of the through hole (9) are fixedly provided with a sponge sealing ring (10) whose inner wall is combined with the outer surface of the paper tube (3). The middle position of the upper end surface of the square metal shell (8) is provided with a cutting head (7) slidably connected thereto, and the connection between the square metal shell (8) and the cutting head (7) is sealed. One side of the front end surface of the dust collector (18) is connected with a dust suction pipe (17), and the top end of the dust suction pipe (17) is located directly below the cutting head (7).
2. The energy saving numerically controlled machine for making diagonal paper tubes according to claim 1, characterized in that: The inside of the front end of the paper tube (3) is provided with a paper tube forming metal rod (2) connected with the paper tube machine (1), and the outer surface of the paper tube forming metal rod (2) is combined with the inner wall of the paper tube (3).
3. The energy saving numerically controlled machine for making diagonal paper tubes according to claim 1, characterized in that: The lower end surface of the square metal shell (8) is fixedly connected with the sliding table (5).
4. An energy saving numerically controlled machine for making paper tubes according to claim 3, characterized in that: The upper end surface of the cutting head (7) is connected with the top end of the cutting mechanical arm (6).
5. The energy saving numerically controlled machine for making diagonal paper tubes according to claim 1, characterized in that: The top end of the dust collector (18) is provided with a stepping motor (19) fixedly installed in the inside of the square metal shell (8), the output shaft of the stepping motor (19) is connected with a concave shaft (15) through a shaft coupling, one side of the outer surface of the concave shaft (15) is concave, and a rubber protective sleeve is fixedly sleeved on the middle position of the concave surface of the concave shaft (15).
6. An energy saving numerically controlled machine for making paper tubes according to claim 5, characterized in that: The upper end of the concave shaft (15) is provided with a lifting sleeve (11) slidably connected with the square metal shell (8), the dust suction pipe (17) is inserted into the inside of the lifting sleeve (11), and the upper end surface of the dust suction pipe (17) is provided with an inclined surface (12).
7. An energy saving numerically controlled diagonal pipe machine according to claim 6, characterized in that: The outer surface of the lifting sleeve (11) is provided with a strip-shaped groove (13), the inside of the strip-shaped groove (13) is provided with a spring (16), and the upper end surface of the spring (16) is connected with a metal block (14) fixedly connected with the inside of the square metal shell (8).