Laminating machine cleaning device for laminated paper processing
By designing a membrane coating machine cleaning device for self-cleaning transfer components, vibrating vacuum cleaner components and continuous cleaning components, the problem of dust being difficult to clean during the rolling process of membrane coating paper is solved, and the efficient cleaning and cleaning effect of membrane coating paper is achieved.
Patent Information
- Application Number
- CN202510537360.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-27
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2045-04-27
AI Technical Summary
The existing coating machine for coating paper processing lacks effective cleaning devices during the rolling process, which makes it difficult to clean up dust and dirt on the surface of coating paper, affecting the cleaning effect of the product.
A membrane cleaning device including a self-cleaning transfer assembly, a vibrating vacuum cleaner assembly and a continuous cleaning assembly is designed. The self-cleaning transfer assembly realizes dust removal at the edge of the coating paper through hollow transmission rollers and dense air holes, the vibrating vacuum cleaner assembly is further cleaned by negative pressure vacuum and frequency vibration shake, and the continuous cleaning assembly uses a hard brush drum to sweep away the dust.
Effectively remove dust from the edges and surfaces of the coating paper, significantly improving the neat effect of the coating paper and ensuring the cleanliness of the product.
Smart Images

Figure CN120054951A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of coating paper cleaning, and specifically to a cleaning device for a coating machine in the processing of coating paper. Background Art
[0002] A coating machine, also known as an extrusion compounding machine, a casting machine, an extrusion casting machine, a casting compounding machine, a coating machine, or a plastic coating machine, is a type of extrusion molding machine. It has the advantages of high automation, simple operation, high production speed, uniform coating thickness, high bonding strength, smooth winding, environmental protection and no pollution, saving labor and raw material costs, etc. It has been developed and matured in Europe and America and is gradually being applied in China. It is an inevitable trend to replace dry compounding and hot melt adhesive coating compounding.
[0003] Coating paper is a composite material obtained by coating plastic particles on the surface of paper through a coating machine. Its main characteristics are that this composite material can prevent oil and water (relatively), and can be heat-sealed. When used for packaging hamburgers, its oil-proof property is utilized. A coating machine, also known as an extrusion compounding machine, a casting machine, or an extrusion casting machine, has the characteristics of high automation, simple operation, high production speed, and uniform coating thickness.
[0004] In the existing coating machine for coating paper processing, when the coating paper is wound by a winding roller, there is no good blowing and cleaning device for the surface of the coating paper on the winding roller bracket, which is not convenient for blowing and cleaning the dust and dirt attached to the surface of the coating paper, resulting in poor surface cleanliness of the coating paper, bacterial growth, and inconvenience in ensuring the cleanliness of the product.
[0005] Existing patent: CN211161007U, a cleaning device for a coating machine in the processing of coating paper, includes a coating machine body. A bracket is fixed on one side surface of the coating machine body. A winding roller is rotatably installed inside the bracket. An installation box is fixed on the front surface of the coating machine body. A blower is fixed inside the installation box through a first connecting plate. A dust filter screen plate is fixed at one end of the installation box. A telescopic hose is fixed at the other end of the installation box; by providing a blower, a dust filter screen plate, a blowing plate, a guide rod, a rotating wheel, and a support plate, it is avoided that during the winding process of the coating paper, it is not convenient to blow and clean the dust and dirt attached to the surface of the coating paper, resulting in poor surface cleanliness of the coating paper.
[0006] However, although the blower is used to remove dust from the coating paper, when winding is about to occur, due to electrostatic action, dust will still be inhaled at the edges of the coating paper. Therefore, in the wound coating paper, most edges are attached with dust debris, reducing the product quality, and the effect of simply using the blower for dust removal is extremely limited. Summary of the Invention
[0007] In view of the deficiencies of the prior art, the present invention provides a cleaning device for a coating machine in the processing of coating paper, which solves the problems raised in the above background art.
[0008] To achieve the above object, the present invention is realized through the following technical solutions: A cleaning device for a laminating machine in the processing of laminated paper, including an equipment frame, and further including a self-cleaning transfer component, a continuous cleaning component, and a vibrating dust suction component installed on the equipment frame.
[0009] The self-cleaning transfer component includes a hollow transfer roller installed on the equipment frame. Dense air holes for dust suction are provided on the outer ring and end face of the end of the hollow transfer roller. Suction mechanisms communicating with the inside of the hollow transfer roller are installed at both ends of the hollow transfer roller for negative pressure air extraction.
[0010] The vibrating dust suction component includes a vibrating track installed on the equipment frame and multiple suction pipes installed on the vibrating track. The suction pipes are on one side of the hollow transfer roller and can vibrate on the vibrating track for centralized air extraction.
[0011] The continuous cleaning component is on the side of the hollow transfer roller away from the suction pipes.
[0012] Preferably, the self-cleaning transfer component includes two hollow transfer rollers. Central air collecting chambers, edge air collecting chambers, and end reinforcing plugs are provided at the ends of any one of the hollow transfer rollers. The dense air holes communicate with both the central air collecting chamber and the edge air collecting chamber. Multiple honeycomb air channels communicating inside and outside are provided on the end reinforcing plugs; The self-cleaning transfer component further includes a rotating shaft that passes through the two hollow transfer rollers and is fixed to the end reinforcing plugs.
[0013] Preferably, the suction mechanism includes a closed connection cover. The closed connection cover is rotatably connected to the end of the hollow transfer roller and is sealed with each other. A connection pipe is installed at the outer end of the closed connection cover for pumping air into the closed connection cover. The honeycomb air channel of the end reinforcing plug communicates with the inside of the closed connection cover. The rotating shaft is rotatably connected to the closed connection cover and is sealed with each other.
[0014] Preferably, a rim is provided at the end of the hollow transfer roller. The dense air holes on the outer ring of the hollow transfer roller are on the side of the rim close to the end of the hollow transfer roller.
[0015] Preferably, the self-cleaning transfer component further includes an extender A. The ends of the two hollow transfer rollers close to each other are respectively fixedly installed at both ends of the extender A.
[0016] Preferably, the vibrating track includes a track and multiple sliding base blocks slidably connected to the track. Springs are used to connect between any two sliding base blocks; It further includes vibrating motors installed at both ends of the track. The output ends of the vibrating motors are connected to the two sliding base blocks at the ends for the sliding base blocks to vibrate back and forth; Any set of exhaust pipes is fixedly installed on a sliding base block, and the end of the exhaust pipe is arranged obliquely upward.
[0017] Preferably, the vibratory dust collection assembly further includes a main collecting pipe fixed to the equipment frame, and the bottom end of any exhaust pipe is connected to the main collecting pipe by a hose.
[0018] Preferably, the continuous cleaning assembly includes a rigid brush barrel and two support arms. The support arms are elastically hinged to the equipment frame, and the rigid brush barrel is rotatably connected to the two support arms.
[0019] Preferably, a winding assembly is further installed on the equipment frame. The winding assembly is located on the other side of the rigid brush barrel away from the hollow transmission roller. The winding assembly includes two winding rollers rotatably connected to the equipment frame and an extender B, and both winding rollers are fixed to the extender B.
[0020] Preferably, a guiding roller rotatably connected to the equipment frame is further installed on the equipment frame. The guiding roller is located above one side of the hollow transmission roller corresponding to the exhaust pipe.
[0021] Compared with the prior art, the present invention has the following beneficial effects: 1. For the cleaning device of the film laminating machine for processing the laminated paper, by setting the self-cleaning transfer assembly, when the laminated paper passes around the hollow transmission roller, the dense air holes can extract the dust at the edge of the laminated paper, so that the edge of the laminated paper to be wound later has almost no dust.
[0022] 2. For the cleaning device of the film laminating machine for processing the laminated paper, by setting the vibratory dust collection assembly, a negative pressure dust collection can be realized on the winding surface of the laminated paper in the early stage of winding. When actually transporting the laminated paper, the laminated paper is close to the exhaust pipe, and the frequency vibration can shake off the dust on the laminated paper, making the subsequent dust removal more complete.
[0023] 3. For the cleaning device of the film laminating machine for processing the laminated paper, by setting the continuous cleaning assembly, when the laminated paper after the edge is dusted continues to be transported, the rigid brush barrel can clean the laminated paper again, and the dust brushed off can also be sucked away by the dense air holes. Therefore, the wound laminated paper is almost completely dust-free.
[0024] 4. For the cleaning device of the film laminating machine for processing the laminated paper, both the winding roller and the hollow transmission roller can change the length specifications, and can adapt to most types of laminated paper on the market. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 is a schematic structural diagram of the present invention; Figure 2 is a top view of the structure of the present invention; Figure 3 is a front view of the structure of the present invention; Figure 4 Structural sectional view of the present invention; Figure 5 Partial structural schematic diagram of the present invention; Figure 6 For the present invention Figure 5 Enlarged view of the structure at A in the present invention; Figure 7 Structural diagram of the self-cleaning transfer assembly of the present invention; Figure 8 Partial structural diagram of the self-cleaning transfer assembly of the present invention; Figure 9 Sectional view of the self-cleaning transfer assembly of the present invention; Figure 10 For the present invention Figure 9 Enlarged view of the structure at B in the present invention.
[0026] In the figure: 1, equipment frame; 2, self-cleaning transfer assembly; 201, hollow transfer roller; 2011, central air collecting chamber; 2012, edge air collecting chamber; 2013, end reinforcing plug; 2014, honeycomb air duct; 2015, wheel rim; 202, dense air holes; 203, air suction mechanism; 2031, closed connection cover; 2032, connecting pipe; 204, rotating shaft; 205, extender A; 3, continuous cleaning assembly; 301, hard brush barrel; 302, support arm; 4, vibrating dust suction assembly; 401, vibrating track; 4011, track; 4012, sliding base block; 4013, spring; 4014, vibrating motor; 402, exhaust pipe; 403, main collecting pipe; 404, hose; 5, winding assembly; 501, winding roller; 502, extender B; 6, guiding roller. Detailed implementation manners
[0027] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.
[0028] It should be noted that all the directional indications in the embodiments of the present application are only used to explain the relative positional relationship, movement conditions, etc. between components in a specific posture. If the specific posture changes, the directional indications will also change accordingly.
[0029] In the present application, unless otherwise clearly defined and limited, the terms "connection", "fixation", etc. should be understood in a broad sense. For example, "fixation" can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components or the interaction relationship between two components, unless otherwise clearly limited. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.
[0030] In addition, in the present application, descriptions such as "first", "second", etc. are only for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one such feature. In addition, the technical solutions between various embodiments can be combined with each other, but it must be based on the ability of those of ordinary skill in the art to implement. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the protection scope required by the present application.
[0031] As Figure 1-10 shown, a cleaning device for a film laminating machine in film laminating paper processing includes an equipment frame 1, and also includes a self-cleaning transfer component 2, a continuous cleaning component 3, and a vibrating dust suction component 4 installed on the equipment frame 1.
[0032] The self-cleaning transfer component 2 includes a hollow transfer roller 201 installed on the equipment frame 1. Dense air holes 202 for dust suction are provided on the outer ring and end face of the end of the hollow transfer roller 201. Suction mechanisms 203 communicating with the inside of the hollow transfer roller 201 are installed at both ends of the hollow transfer roller 201 for negative pressure air extraction.
[0033] The vibrating dust suction component 4 includes a vibrating track 401 installed on the equipment frame 1 and multiple groups of air extraction pipes 402 installed on the vibrating track 401. The air extraction pipes 402 are on one side of the hollow transfer roller 201, and the air extraction pipes 402 can vibrate on the vibrating track 401 and concentrate air extraction.
[0034] The continuous cleaning component 3 is on the side of the hollow transfer roller 201 away from the air extraction pipes 402.
[0035] The equipment frame 1 is of a frame structure. The main shaft of the hollow transfer roller 201 is rotatably connected to the equipment frame 1 by means of bearings, and a pulley is installed at the end of the main shaft of the hollow transfer roller 201, and the pulley can be driven to rotate by an external power motor.
[0036] The self-cleaning transfer assembly 2 includes two hollow transfer rollers 201. A central air collecting cavity 2011, an edge air collecting cavity 2012 and an end reinforcing plug 2013 are provided at the end of any one of the hollow transfer rollers 201. The dense air holes 202 are all communicated with the inside of the central air collecting cavity 2011 and the edge air collecting cavity 2012, and multiple honeycomb air channels 2014 communicating inside and outside are provided on the end reinforcing plug 2013.
[0037] The self-cleaning transfer assembly 2 further includes a rotating shaft 204. The rotating shaft 204 passes through the two hollow transfer rollers 201 and is fixed to the end reinforcing plug 2013.
[0038] After the rotating shaft 204 passes through the hollow transfer roller 201, a spline connection is adopted. The inside of the hollow transfer roller 201 is of a hollow structure. The central air collecting cavity 2011 and the edge air collecting cavity 2012 are both located at the end positions of the hollow structure. The dense air holes 202 on the outer circle of the hollow transfer roller 201 are of a circular structure, and the dense air holes 202 on the end face of the hollow transfer roller 201 are of a long and narrow structure. Therefore, the dust and debris existing at the edge of the coated paper can be collected by the dense air holes 202 at any position. The end reinforcing plug 2013 can increase the connection strength with the rotating shaft 204, and the ventilation is not affected after the honeycomb air channels 2014 are provided.
[0039] The air suction mechanism 203 includes a closed connection cover 2031. The closed connection cover 2031 is rotatably connected to the end of the hollow transfer roller 201, and the two are sealed to each other. A connection pipe 2032 is installed at the outer end of the closed connection cover 2031 for pumping air into the closed connection cover 2031. The honeycomb air channels 2014 of the end reinforcing plug 2013 are communicated with the inside of the closed connection cover 2031. The rotating shaft 204 is rotatably connected to the closed connection cover 2031, and the two are sealed to each other.
[0040] The diameter of the end of the hollow transfer roller 201 is smaller than the diameter of the position where the coated paper is conveyed. Bearings and single-end mechanical seals are installed at the connection between the closed connection cover 2031 and the hollow transfer roller 201, and bearings and single-end mechanical seals are also installed at the connection between the rotating shaft 204 and the closed connection cover 2031. Therefore, it can be ensured that the inside of the closed connection cover 2031 is not communicated with the outside, and the connection pipe 2032 is connected to an external negative pressure air extraction assembly during use.
[0041] A rim 2015 is provided at the end of the hollow transfer roller 201. The dense air holes 202 on the outer ring of the hollow transfer roller 201 are located on the side of the rim 2015 close to the end of the hollow transfer roller 201.
[0042] The provision of the rim 2015 can prevent the offset of the coating paper. However, the height of the rim 2015 is relatively low, and the hollow transfer roller 201 is not responsible for winding but only for transmission. Therefore, the provision of the rim 2015 can ensure the accuracy of transmission.
[0043] The self-cleaning transfer assembly 2 further includes an extender A205, and the two ends of the two hollow transfer rollers 201 that are close to each other are respectively fixedly installed at the two ends of the extender A205.
[0044] The hollow transfer roller 201 is sleeved on the extender A205, and the two are connected by internal bolts. After removing the internal bolts, the two hollow transfer rollers 201 can be removed. By changing the length specification of the extender A205, the distance between the two hollow transfer rollers 201 can be lengthened.
[0045] The vibration track 401 includes a track 4011 and a plurality of sliding base blocks 4012 slidably connected to the track 4011, and any two sliding base blocks 4012 are connected by a spring 4013; It further includes vibration motors 4014 installed at both ends of the track 4011, and the output ends of the vibration motors are connected to the two sliding base blocks 4012 at the ends for the sliding base blocks 4012 to vibrate back and forth; Any set of air extraction pipes 402 are fixedly installed on a sliding base block 4012, and the end of the air extraction pipe 402 is inclined upward.
[0046] The cross-sectional shape of the track 4011 is U-shaped, and the sliding base blocks 4012 are each installed with rollers with bearings on the upper and lower sides inside it, so that the sliding base blocks 4012 can slide smoothly back and forth in the track 4011. The spring 4013 is made of a relatively hard material, and the spring 4013 connects all the sliding base blocks 4012. When the sliding base blocks 4012 move back and forth, the spring 4013 does not act as a buffer. By providing the connection of the spring 4013, it can prevent the output shaft of the vibration motor 4014 from being damaged due to excessive impact during long-term operation.
[0047] The vibration motor 4014 is an axially telescopic motor, and its output shaft can axially extend and retract. This design makes it very useful in occasions where linear motion is required. It has a built-in electromagnetic telescopic mechanism with a telescopic range of 0 - 20 mm, and can drive multiple sliding base blocks 4012 at one time. Both of the two vibration motors 4014 are controlled by encoders and need to achieve stretching coordination.
[0048] The air extraction pipe 402 is connected to the sliding base block 4012 by a fixed clamp, and a horn head is also installed at the end of the air extraction pipe 402. During the actual equipment layout, a sticky hair sleeve needs to be put on the horn head to prevent the coating paper from being adsorbed by the horn head when it contacts the horn head, and the sticky hair sleeve can also protect the coating paper and prevent it from being scratched.
[0049] The vibrating dust collection assembly 4 further includes a main collecting pipe 403 fixed to the equipment frame 1, and the bottom end of any one of the suction pipes 402 is connected to the main collecting pipe 403 by a flexible hose 404.
[0050] One end of the main collecting pipe 403 is of a closed structure. The main collecting pipe 403 is connected to a suction device, and the flexible hose 404 connected to the suction pipe 402 is used to transfer gas. When the suction pipe 402 shakes, the flexible hose 404 does not affect the connection.
[0051] The continuous cleaning assembly 3 includes a rigid brush barrel 301 and two support arms 302. The support arms 302 are elastically hinged to the equipment frame 1, and the rigid brush barrel 301 is rotatably connected to the two support arms 302.
[0052] The outer ring of the rigid brush barrel 301 has multiple groups of stiff hairs, and there are gaps between each group of stiff hairs for sweeping the dust and debris on the coated paper. The end spindle of the rigid brush barrel 301 is connected to the support arm 302 by a bearing, but there should be a certain damping at the connection between the rigid brush barrel 301 and the support arm 302 to prevent the rigid brush barrel 301 from having the same speed as the coated paper. In order to ensure the dust removal quality, a certain speed difference needs to be formed between the two, and a speed reducer or other structures can be set on its spindle to generate damping.
[0053] The support arm 302 is connected to the equipment frame 1 by a bearing, but a torsion spring or a tension spring that bears tension is also installed at the connection between the two. When the support arm 302 is stressed, it can swing, and when it is not stressed, it will return to its original position.
[0054] A winding assembly 5 is also installed on the equipment frame 1. The winding assembly 5 is on the other side of the rigid brush barrel 301 away from the hollow transmission roller 201. The winding assembly 5 includes two winding rollers 501 rotatably connected to the equipment frame 1 and an extender B502. Both winding rollers 501 are fixed to the extender B502.
[0055] A pulley is installed on the input shaft of the winding roller 501, and an external power drives the winding roller 501 to rotate through a belt. When winding the coated paper, determine the length of the two winding rollers 501 plus an extender B502, and then put the paper tube on the two winding rollers 501 for use. The winding roller 501 is connected to the extender B502 by internal bolts, and the extender B502 can be replaced with specifications of different lengths to adapt to coated papers of different width specifications.
[0056] A guiding roller 6 rotatably connected to the equipment frame 1 is also installed on the equipment frame 1. The guiding roller 6 is above one side of the hollow transmission roller 201 corresponding to the suction pipe 402.
[0057] The guiding roller 6 is a solid stainless-steel structure. The main shaft at its end is connected to the equipment frame 1 using bearings. Before the processed coated paper is wound up, it first needs to be supported by the guiding roller 6, with the coated paper positioned above the air extraction pipe 402, maintaining a height of 10 mm between them. This can not only ensure the effect of negative-pressure dust suction but also prevent the air extraction pipe 402 from scratching the coated paper. The main function of the guiding roller 6 is to carry the coated paper.
[0058] During use, the coated paper is first guided by the guiding roller 6 to pass above the air extraction pipe 402. The negative-pressure effect of the air extraction pipe 402 can clean the winding surface of the coated paper in the first step. Due to the action of the vibration motor 4014, the guiding roller 6, the coated paper, and the air extraction pipe 402 are all in a frequency-vibration state, enabling the dust and debris on the coated paper to break away from the electrostatic field. Combined with high-flow negative-pressure dust suction, most of the dust and debris in the middle of the coated paper are removed during this process.
[0059] The preliminarily processed coated paper is wound around the hollow transmission roller 201 again. Due to the effect of negative-pressure air extraction, there are negative-pressure air fields at both ends of the hollow transmission roller 201. The dust accumulated at the positions where the edges of the coated paper are prone to dust contamination can easily be taken away by the dense air holes 202 at both ends of the hollow transmission roller 201. During the air extraction process, the hollow transmission roller 201 keeps running without stopping, so the dust and debris on the passing coated paper can be completely removed.
[0060] After passing through the hollow transmission roller 201, the coated paper is wound around the rigid brush cylinder 301 and finally wound up. The rigid brush cylinder 301 serves to remove dust for the last time. The dust above the passing coated paper will be swept off and taken away again by the negative-pressure air field on the hollow transmission roller 201. Therefore, the coated paper after winding can be basically completely clean.
[0061] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of this application. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art can combine and combine the different embodiments or examples described in this specification.
[0062] In addition, the technical solutions between various embodiments can be combined with each other, but it must be based on the ability of those of ordinary skill in the art to implement. When the combination of technical solutions results in contradictions or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection required by this application.
[0063] Although embodiments of the present invention have been shown and described, those of ordinary skill in the art will appreciate that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A laminating machine cleaning device for laminating paper processing, comprising a device frame (1), characterized in that: It also includes a self-cleaning transfer component (2), a continuous cleaning component (3) and a vibrating dust collection component (4) installed on the equipment frame (1); The self-cleaning transfer assembly (2) comprises a hollow transmission roller (201) mounted on the equipment frame (1); the outer ring and end surface of the end of the hollow transmission roller (201) are provided with dense air holes (202) for dust collection; the ends of the hollow transmission roller (201) are provided with suction mechanisms (203) connected to the inside of the hollow transmission roller (201) for negative pressure extraction; The vibrating dust collection assembly (4) comprises a vibrating track (401) mounted on the equipment frame (1) and a plurality of exhaust pipes (402) mounted on the vibrating track (401), wherein the exhaust pipes (402) are located on one side of the hollow transmission roller (201), and the exhaust pipes (402) are capable of vibrating on the vibrating track (401) and exhausting air in a concentrated manner; The continuous cleaning assembly (3) is located on a side of the hollow transport roller (201) away from the exhaust pipe (402).
2. The laminating machine cleaning device for laminating paper processing according to claim 1, characterized in that: The self-cleaning transfer assembly (2) comprises two hollow transmission rollers (201), the end of each hollow transmission roller (201) is provided with a central air collecting cavity (2011), an edge air collecting cavity (2012) and an end reinforcement plug (2013), the dense air holes (202) are connected to the central air collecting cavity (2011) and the edge air collecting cavity (2012), and the end reinforcement plug (2013) is provided with a plurality of honeycomb air channels (2014) connected inside and outside; The self-cleaning transfer assembly (2) further comprises a rotating shaft (204), wherein the rotating shaft (204) passes through the two hollow transmission rollers (201) and is fixed to the end reinforcement plugs (2013).
3. The laminating machine cleaning device for laminating paper processing according to claim 2, characterized in that: The air suction mechanism (203) comprises a closed connection cover (2031), the closed connection cover (2031) is rotationally connected to the end of the hollow transmission roller (201), and the two are sealed to each other; a connection pipe (2032) is installed at the outer end of the closed connection cover (2031) for extracting air into the closed connection cover (2031); the honeycomb air channel (2014) of the end reinforcement plug (2013) is connected to the closed connection cover (2031); the rotating shaft (204) is rotationally connected to the closed connection cover (2031), and the two are sealed to each other.
4. The laminating machine cleaning device for laminating paper processing according to claim 2, characterized in that: A rim (2015) is provided at the end of the hollow transmission roller (201), and the dense air holes (202) on the outer ring of the hollow transmission roller (201) are located on a side of the rim (2015) close to the end of the hollow transmission roller (201).
5. The laminating machine cleaning device for laminating paper processing according to claim 1, characterized in that: The self-cleaning transfer assembly (2) further comprises an extender A (205), and the ends of the two hollow transmission rollers (201) that are close to each other are fixedly mounted on the two ends of the extender A (205) respectively.
6. The laminating machine cleaning device for laminating paper processing according to claim 3, characterized in that: The vibration track (401) comprises a track (4011) and a plurality of sliding base blocks (4012) slidably connected to the track (4011), and any of the sliding base blocks (4012) are connected by springs (4013); It also includes a vibration motor (4014) installed at both ends of the track (4011), the output end of which is connected to two sliding base blocks (4012) at the end, so as to make the sliding base blocks (4012) vibrate back and forth; Any set of air extraction pipes (402) are fixedly mounted on a sliding base block (4012), and the ends of the air extraction pipes (402) are arranged to be tilted upward.
7. The laminating machine cleaning device for laminating paper processing according to claim 6, characterized in that: The vibrating dust collection assembly (4) further comprises a main air collecting pipe (403) fixed on the equipment frame (1), and the bottom end of any air extraction pipe (402) is connected to the main air collecting pipe (403) by a hose (404).
8. The laminating machine cleaning device for laminating paper processing according to claim 1, characterized in that: The continuous cleaning component (3) comprises a hard brush cylinder (301) and two supporting arms (302), wherein the supporting arms (302) are elastically hinged to the device frame (1), and the hard brush cylinder (301) is rotatably connected to the two supporting arms (302).
9. The laminating machine cleaning device for laminating paper processing according to claim 8, characterized in that: A winding assembly (5) is also mounted on the device frame (1). The winding assembly (5) is located on the other side of the hard brush cylinder (301) away from the hollow transmission roller (201). The winding assembly (5) comprises two winding rollers (501) rotatably connected to the device frame (1) and an extender B (502). Both winding rollers (501) are fixed to the extender B (502).
10. The laminating machine cleaning device for laminating paper processing according to claim 9, characterized in that: The equipment frame (1) is also provided with a guide roller (6) rotatably connected thereto, the guide roller (6) being located above a side of the hollow transmission roller (201) corresponding to the exhaust pipe (402).
Citation Information
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Laminating machine cleaning device for laminated paper processing
CN211161007U
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