Filter cotton cutting machine
By using a pressure roller and a transmission column in conjunction with a wiping tube and a suction structure in the filter cotton cutting machine, the problems of static electricity and fiber floating during the filter cotton cutting process are solved, achieving uniform cutting length and maintaining the sharpness of the cutter.
Patent Information
- Application Number
- CN202511300789.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-12
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2045-09-12
AI Technical Summary
Existing filter cotton cutting machines are prone to generating static electricity during the cutting process, which causes the cut part of the filter cotton to be rough and the fibers to float, affecting the sharpness of the cutting blade.
The system uses a pressure roller and a drive column in conjunction with a wiping tube to remove filter cotton fibers through wiping components and a suction structure. Combined with water spraying and air suction, it eliminates static electricity and ensures the sharpness of the cutter.
It effectively avoids the generation of static electricity in the filter cotton during the cutting process, ensures uniform cutting length, prevents fibers from floating, and keeps the cutter sharp.
Smart Images

Figure CN120791865B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of cutting machines, and particularly discloses a filter cotton cutting machine. BACKGROUND
[0002] The filter cotton cutting machine is a device for positioning and cutting filter cotton, can position and cut filter cotton into a required shape and size, and brings great convenience to the processing of filter cotton.
[0003] At present, when the filter cotton cutting machine on the market cuts filter cotton, the finished filter cotton is conveyed to the filter cotton cutting machine by a TRAY trolley, then the filter cotton can be unfolded on the finished product stacker of the cutting machine, then the transmission wheel of the cutting machine can drive the filter cotton to be released to the rack of the cutting machine, and then the filter cotton on the rack is positioned and cut by the cutter. This kind of filter cotton cutting machine can indeed achieve good positioning and cutting effect on filter cotton in actual use, but it still has some deficiencies in actual use, for example:
[0004] The transmission wheel in the filter cotton cutting machine can indeed drive the filter cotton to be released to the rack of the cutting machine in use, but the filter cotton will generate great friction with the rack of the cutting machine in the releasing process, which will cause static electricity of the filter cotton in the cutting process. When the filter cotton generating static electricity is cut by the cutter, the cutting part of the filter cotton will appear rough, the cutting length of the filter cotton will be uneven, and the cutting fibers of the filter cotton will also float to the air from the cutting part. When the floating fibers adhere to the surface of the cutting knife, the fibers will cause the cutting edge of the cutting knife to be rough, affecting the smooth cutting of the filter cotton by the cutting knife.
[0005] Therefore, we propose a filter cotton cutting machine to solve the problem that the filter cotton is easy to generate static electricity in the cutting process. SUMMARY
[0006] Therefore, the purpose of the application is to propose a filter cotton cutting machine to solve the above problems.
[0007] To achieve the above purpose, the application provides a filter cotton cutting machine, which comprises a frame body and a mounting plate fixed on the frame body. The top surface of the mounting plate is fixed with a shell structure on both sides. A pressing roller and a transmission column are rotatably connected to the shell structure. The number of transmission columns is two. A wiping cotton tube is sleeved on each transmission column. A transmission motor is fixed on the shell structure. The output shaft of the transmission motor is fixed with the transmission column. A cutter is distributed between the two transmission columns. A transmission assembly is connected to the mounting plate. A protection assembly is fixed to the part of the mounting plate close to the transmission column.
[0008] The protection assembly comprises a first supporting plate distributed on one side of the cutter and a second supporting plate distributed on the other side of the cutter, the first supporting plate and the second supporting plate are fixed with inclined plates near the transmission column, the inclined plates are fixed with wiping members, the wiping members abut against the wiping cotton tube, and the wiping members are connected with suction structures.
[0009] In the technical scheme, further, opposite parts of the top surface of the mounting plate and the cutter are fixedly connected with abutting shells, the abutting shells have a trapezoidal shape with a narrow top and a wide bottom, and the top surface of the abutting shell is provided with a rectangular hole.
[0010] In the technical scheme, further, the frame body is connected with a filter cotton strip, the filter cotton strip can abut against the pressing roller, the cutter and the abutting shell, and the wiping cotton tube can abut against the cutter and the filter cotton strip.
[0011] In the technical scheme, further, the end of the transmission column away from the transmission motor is sleeved with a mounting bearing, the outer ring of the mounting bearing is fixedly connected with a shell structure, and the shell structure is fixed with a controller.
[0012] In the technical scheme, further, the transmission assembly comprises a sliding plate fixedly connected with the mounting plate, the sliding plate is provided with a sliding groove, the sliding groove is slidably connected with a sliding block, the sliding block is fixed with the cutter, and an electric push rod is fixed between the sliding block and the mounting plate.
[0013] In the technical scheme, further, the suction structure comprises a suction pipe penetrating through the first supporting plate and the second supporting plate, the suction pipe penetrates through the inclined plate, the receiving end of the inclined plate is fixed with a suction hopper, and the suction hopper penetrates through the wiping member.
[0014] In the technical scheme, further, the shell structure is fixed with a discharge pipe, the receiving end of the discharge pipe is connected with the discharge end of the first supporting plate and the second supporting plate, and the discharge end of the discharge pipe is connected with an external dust collector.
[0015] In the technical scheme, further, the wiping member is provided with a flow guide groove, the suction hopper penetrates through the inside of the flow guide groove, and the wiping member is provided with a flow distribution plate near the flow guide groove.
[0016] In the technical scheme, further, the lower part of the first supporting plate is penetrated through with a water spraying pipe, the lower part of the second supporting plate is penetrated through with an air suction pipe, the air suction pipe is connected with the flow collecting pipe, and the water spraying pipe is connected with a water conveying pipe.
[0017] Compared with the prior art, the present application has the following beneficial effects:
[0018] 1. The pressure roller in this cutting machine can work with the abutment shell and transmission column to press the filter cotton strip, which can realize the smooth conveying of the filter cotton strip above the mounting plate. At the same time, it can also straighten the filter cotton strip that is about to be cut, so that the transmission component can drive the cutter to smoothly cut the filter cotton strip.
[0019] 2. The drive motor in this cutting machine can drive the wiping tube to transport the filter cotton strips through the drive column, which makes it easier to release the filter cotton strips that are about to be cut onto the abutment shell. At the same time, the wiping tube can also wipe the cotton strip fibers on the cutter, so as to prevent the fibers of the filter cotton strips from adhering to the cutter when the cutter cuts the filter cotton strips, thus ensuring that the cutter is in a sharp state.
[0020] 3. The wiping component in this cutting machine can wipe the filter cotton fibers on the wiping cotton tube. Then, the suction bucket can drive the fibers on the filter cotton tube to be transported to the inside of the external vacuum cleaner. This can prevent a lot of filter cotton fibers from adhering to the wiping cotton tube, making it easier for the wiping cotton tube to stably wipe the fibers on the cutter.
[0021] 4. The water spray pipe in the cutting machine can spray water mist onto the filter strips to be cut, and the air suction pipe can then guide the water mist to ensure that the water mist adheres stably to the filter strips to be cut, avoiding static electricity on the filter strips. This also prevents static electricity from causing roughness at the cut parts of the filter strips and from causing the fibers of the filter strips to float. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the structure of the present invention;
[0023] Figure 2 This is a schematic diagram showing the distribution of the cutter and the pressure roller in this invention;
[0024] Figure 3 This is a schematic diagram showing the distribution of the cutting blade and protective components in this invention;
[0025] Figure 4 This is a connection structure diagram of the transmission component and the cutter in this invention;
[0026] Figure 5 This is a diagram showing the contact structure between the filter cotton strip and the contact shell in this invention.
[0027] Figure 6 This is a diagram showing the connection structure between the wiping component and the wiping cotton tube in this invention;
[0028] Figure 7 This is a diagram showing the connection structure between the wiping component and the inclined plate in this invention;
[0029] Figure 8 This is a diagram showing the connection structure between the inclined plate and the second support plate in this invention.
[0030] 1, filter cotton strip; 2, pressing roller; 3, cutter; 4, transmission assembly; 41, sliding plate; 42, sliding groove; 43, sliding block; 44, electric push rod; 5, protection assembly; 51, inclined plate; 52, wiping member; 53, first supporting plate; 54, second supporting plate; 55, water spraying pipe; 56, air suction pipe; 57, suction pipe; 58, flow guide groove; 59, flow distribution plate; 510, suction hopper; 511, flow collection pipe; 512, water delivery pipe; 6, shell structure; 7, frame body; 8, controller; 9, transmission column; 91, mounting bearing; 92, wiping cotton tube; 10, mounting plate; 11, abutting shell; 12, discharge pipe; 13, transmission motor. DETAILED DESCRIPTION
[0031] In order to enable the above-mentioned objects, features and advantages of the present application to be more clearly understood, the following further describes the present application with reference to the accompanying drawings and specific embodiments.
[0032] In the following description, a large number of specific details are set forth in order to facilitate a thorough understanding of the present application, but the present application can also be implemented in other ways different from those described herein, and therefore the present application is not limited to the specific embodiments disclosed below.
[0033] The transmission wheel in the existing filter cotton cutting machine can indeed drive the filter cotton to be released onto the rack of the cutting machine during use, but the filter cotton will generate a large friction with the rack during the release process, which will cause static electricity to be generated in the filter cotton during cutting, and the filter cotton with static electricity will cause the cut part of the filter cotton to be rough when being cut by the cutter, resulting in uneven cutting length of the filter cotton and causing the cutting fibers of the filter cotton to float into the air from the cut part, and when the floating fibers adhere to the surface of the cutting knife, the fibers will cause the cutting edge of the cutting knife to be rough, affecting the smooth cutting of the cutting knife on the filter cotton. In order to solve the above-mentioned problems, the following structure is proposed.
[0034] Embodiment one: please refer to Figures 1-8 The present application provides a technical solution:
[0035] The present application is a filter cotton cutting machine, which comprises a frame body 7 and a mounting plate 10 fixed on the frame body 7, the top surface of the mounting plate 10 is fixed with a shell structure 6 on both sides, the shell structure 6 is rotatably connected with a pressing roller 2 and a transmission column 9, the number of transmission columns 9 is two, the transmission column 9 is sleeved with a wiping cotton tube 92, the shell structure 6 is fixed with a transmission motor 13, the output shaft of the transmission motor 13 is fixed with the transmission column 9, two transmission columns 9 are distributed with a cutter 3, the mounting plate 10 is connected with a transmission assembly 4, and the mounting plate 10 is fixed with a protection assembly 5 near the transmission column 9;
[0036] In actual use, the pressing roller 2 and the transmission column 9 can press and convey the filter cotton strip 1, and the filter cotton strip 1 can be straightened above the mounting plate 10, so that the transmission assembly 4 drives the cutter 3 to cut the filter cotton strip 1.
[0037] The protection assembly 5 comprises a first supporting plate 53 distributed on one side of the cutter 3 and a second supporting plate 54 distributed on the other side of the cutter 3, and the first supporting plate 53 and the second supporting plate 54 are both fixed with an inclined plate 51 near the transmission column 9, the inclined plate 51 is fixed with a wiping member 52, the wiping member 52 abuts against the wiping cotton tube 92, and the wiping member 52 is connected with a suction structure.
[0038] The inclined plate 51 on the protection assembly 5 can drive the wiping member 52 to wipe the filter cotton fiber on the wiping cotton tube 92, and then the suction structure can adsorb the filter cotton fiber wiped by the wiping member 52, so that more filter cotton fibers are prevented from adhering to the cutter 3, and the cutter 3 is prevented from cutting the filter cotton strip 1, so that static electricity is prevented from being easily generated around the filter cotton strip 1.
[0039] Embodiment two: please refer to Figures 2-8 As shown in the drawings, based on the embodiment one, the application provides a technical scheme, which is different from the embodiment one, that is, the transmission column 9 in the embodiment can not only convey the filter cotton strip 1 through the wiping cotton tube 92, but also wipe the filter cotton fiber on the cutter 3, so that the filter cotton fiber is prevented from adhering to the cutter 3, and the sharpness of the cutter 3 is ensured.
[0040] The top surface of the mounting plate 10 and the opposite part of the cutter 3 are fixedly connected with an abutting shell 11, the transverse section of the abutting shell 11 is in the shape of a trapezoid with the top narrow and the bottom wide, and the top surface of the abutting shell 11 is provided with a rectangular hole.
[0041] The abutting shell 11 can clamp the filter cotton strip 1 in cooperation with the transmission column 9, so that the transmission column 9 drives the filter cotton strip 1 to convey on the abutting shell 11 through the wiping cotton tube 92, and then the transmission assembly 4 drives the cutter 3 to cut the filter cotton strip 1.
[0042] The frame body 7 is connected with the filter cotton strip 1, the filter cotton strip 1 can abut against the pressing roller 2, the cutter 3 and the abutting shell 11, and the wiping cotton tube 92 can abut against the cutter 3 and the filter cotton strip 1.
[0043] When the filter cotton strip 1 is conveyed on the mounting plate 10, the transmission column 9 can not only convey the filter cotton strip 1 through the wiping cotton tube 92, but also wipe the filter cotton fiber on the cutter 3, so that the filter cotton fiber is prevented from adhering to the cutter 3, and the sharpness of the cutter 3 is ensured.
[0044] The end of the transmission column 9 away from the transmission motor 13 is sleeved with a mounting bearing 91, the outer ring of the mounting bearing 91 is fixedly connected with the shell structure 6, and the shell structure 6 is fixedly connected with the controller 8.
[0045] When the outer ring of the bearing 91 is connected with the shell structure 6, the output shaft of the transmission motor 13 can drive the transmission column 9 to rotate on the shell structure 6, thereby realizing the conveying of the filter cotton strip 1 above the mounting plate 10 by the transmission column 9 through the wiping cotton tube 92.
[0046] Embodiment three: please refer to Figures 2-8 As shown, based on the basis of embodiment two, the application provides a technical solution, which is different from embodiment two, that is, the shunt plate 59 in the embodiment can shunt the filter cotton fibers on the wiping member 52, which can realize the guided conveying of the filter cotton fibers into the inner part of the flow guide groove 58, thereby facilitating the adsorption of the filter cotton fibers by the suction hopper 510.
[0047] The transmission assembly 4 comprises a sliding plate 41 fixedly connected to the mounting plate 10, a sliding groove 42 is formed in the sliding plate 41, a sliding block 43 is slidably connected to the sliding groove 42, the sliding block 43 is fixed with the cutter 3, and an electric push rod 44 is fixed between the sliding block 43 and the mounting plate 10;
[0048] The output end of the electric push rod 44 can drive the cutter 3 to move up and down through the sliding block 43, which can realize the cutting of the filter cotton strip 1 above the abutting shell 11 by the cutter 3.
[0049] The suction structure comprises a suction pipe 57 penetrating through the first supporting plate 53 and the second supporting plate 54, the suction pipe 57 penetrates through the inclined plate 51, the receiving end of the inclined plate 51 is fixed with a suction hopper 510, and the suction hopper 510 penetrates through the wiping member 52.
[0050] The shell structure 6 is fixed with a discharge pipe 12, the receiving end of the discharge pipe 12 is connected with the discharge end of the first supporting plate 53 and the second supporting plate 54, and the discharge end of the discharge pipe 12 is connected with an external dust collector;
[0051] When the transmission column 9 drives the wiping cotton tube 92 to convey the filter cotton strip 1, the filter cotton fibers on the wiping cotton tube 92 can be wiped by the wiping member 52, and in this process, the external dust collector can suck air through the discharge pipe 12 to the suction pipe 57, the suction pipe 57 can suck air to the suction hopper 510 on the inclined plate 51, thereby realizing the suction of the filter cotton fibers on the wiping member 52 by the suction hopper 510.
[0052] The wiping member 52 is provided with a flow guide groove 58, the suction hopper 510 penetrates into the inner part of the flow guide groove 58, and the part of the wiping member 52 close to the flow guide groove 58 is provided with a shunt plate 59;
[0053] When the wiping member 52 wipes the filter cotton fibers on the wiping cotton tube 92, the shunt plate 59 can shunt the filter cotton fibers on the wiping member 52, which can realize the guided conveying of the filter cotton fibers into the inner part of the flow guide groove 58, thereby facilitating the adsorption of the filter cotton fibers by the suction hopper 510.
[0054] Embodiment four: please refer to Figures 2-8 As shown, based on the basis of embodiment one, the application provides a technical solution, which is different from embodiment one, the transmission column 9 can not only convey the filter cotton strip 1 through the wiping cotton tube 92, but also wipe the filter cotton fiber on the cutter 3, so as to avoid the filter cotton fiber adhering to the cutter 3, and further ensure the sharpness of the cutter 3.
[0055] The lower part of the first supporting plate 53 penetrates the water spraying pipe 55, and the lower part of the second supporting plate 54 penetrates the air suction pipe 56, the air suction pipe 56 is connected with the converging pipe 511, and the water spraying pipe 55 is connected with the water conveying pipe 512;
[0056] The receiving end of the water spraying pipe 55 is connected with the external water liquid atomization equipment through the water conveying pipe 512, and the external water liquid atomization equipment can atomize the water liquid, and then convey the atomized water liquid to the surface of the filter cotton strip 1 through the water spraying pipe 55, so that the atomized water liquid can eliminate the dryness of the surface of the filter cotton strip 1, and avoid the static electricity of the filter cotton strip 1 when the cutter 3 cuts the filter cotton strip 1;
[0057] The discharge end of the converging pipe 511 is connected with the external air suction structure, when the water spraying pipe 55 conveys the water mist to the surface of the filter cotton strip 1, the external air suction structure can suck the air around the filter cotton strip 1 through the air suction pipe 56, so as to realize the rapid drying of the surface of the filter cotton strip 1, and facilitate the subsequent processing of the cut filter cotton strip 1 by the workers;
[0058] When the water liquid atomization equipment sprays the water mist to the filter cotton strip 1 through the water spraying pipe 55, the external air suction structure can also guide the water mist around the filter cotton strip 1 through the air suction pipe 56, so as to realize the uniform coverage of the water mist on the cutting surface of the filter cotton strip 1, and realize the rapid elimination of the static electricity on the filter cotton strip 1.
[0059] It should be noted that the speed of the water liquid atomization equipment spraying the water mist to the filter cotton strip 1 through the water spraying pipe 55 is determined according to the actual situation, when the water mist spraying rate of the water spraying pipe 55 is high, the air suction rate of the external air suction structure through the air suction pipe 56 also needs to be relatively increased, so as to facilitate the elimination of the static electricity of the filter cotton strip 1, and the surface of the filter cotton strip 1 can also be rapidly dried.
[0060] Working principle: in the actual use process, the pressing roller 2 and the transmission column 9 can press and convey the filter cotton strip 1, and the output shaft of the straightening transmission motor 13 above the mounting plate 10 can drive the transmission column 9 to rotate on the shell structure 6, so as to realize the conveying of the filter cotton strip 1 above the mounting plate 10 by the transmission column 9 through the wiping cotton tube 92;
[0061] The output end of the electric push rod 44 can drive the cutting knife 3 to move up and down through the sliding block 43, so that the cutting knife 3 can cut the filter cotton strip 1 above the abutting shell 11;
[0062] When the transmission column 9 drives the wiping cotton tube 92 to convey the filter cotton strip 1, the filter cotton fibers on the wiping cotton tube 92 can be wiped by the wiping member 52. In this process, the external air cleaner can suck the suction pipe 57 through the discharge pipe 12, and the suction pipe 57 can suck the suction hopper 510 on the inclined plate 51, so as to realize the suction of the filter cotton fibers on the wiping member 52 by the suction hopper 510;
[0063] When the wiping member 52 wipes the filter cotton fibers on the wiping cotton tube 92, the filter cotton fibers on the wiping member 52 can be shunted by the shunt plate 59, so as to realize the guidance of the filter cotton fibers to the inside of the flow guide groove 58, and then facilitate the adsorption of the filter cotton fibers by the suction hopper 510;
[0064] The receiving end of the water spraying pipe 55 is connected with the external water liquid atomization equipment through the water conveying pipe 512. The external water liquid atomization equipment can atomize the water liquid, and then convey the atomized water liquid to the surface of the filter cotton strip 1 through the water spraying pipe 55. At this time, the atomized water liquid can eliminate the dryness of the surface of the filter cotton strip 1, so as to avoid the static electricity of the filter cotton strip 1 when the cutting knife 3 cuts the filter cotton strip 1;
[0065] The discharge end of the flow collecting pipe 511 is connected with the external air suction structure. When the water spraying pipe 55 sprays water mist to the surface of the filter cotton strip 1, the external air suction structure can suck the air around the filter cotton strip 1 through the air suction pipe 56, so as to realize the rapid drying of the surface of the filter cotton strip 1, and facilitate the subsequent processing of the cut filter cotton strip 1 by the staff;
[0066] When the water liquid atomization equipment sprays water mist to the filter cotton strip 1 through the water spraying pipe 55, the external air suction structure can also guide the water mist around the filter cotton strip 1 through the air suction pipe 56, so as to realize the uniform coverage of the water mist on the cutting surface of the filter cotton strip 1, and realize the rapid elimination of the static electricity on the filter cotton strip 1;
[0067] It should be noted that the speed of the water liquid atomization equipment spraying water mist to the filter cotton strip 1 through the water spraying pipe 55 is determined according to the actual situation. When the water mist spraying rate of the water spraying pipe 55 is high, the air suction rate of the external air suction structure through the air suction pipe 56 around the filter cotton strip 1 also needs to be relatively increased, so as to facilitate the elimination of the static electricity of the filter cotton strip 1, and the surface of the filter cotton strip 1 can also be rapidly dried.
[0068] The above shows and describes the basic principles, main features and advantages of the present application. Those skilled in the art should understand that the present application is not limited to the above-mentioned embodiments, and the above-mentioned embodiments and descriptions in the specification are only the principles of the present application. Various changes and improvements can be made without departing from the spirit and scope of the present application, and these changes and improvements all fall within the scope of the claimed present application.
Claims
1. A filter cotton cutting machine comprising a frame (7) and a mounting plate (10) fixed on the frame (7), characterized in that: The top surface of the mounting plate (10) is fixed with a shell structure (6) on both sides, the shell structure (6) is rotatably connected with a pressing roller (2) and a transmission column (9), the number of the transmission column (9) is two, the transmission column (9) is sleeved with a wiping cotton pipe (92), the shell structure (6) is fixed with a transmission motor (13), the output shaft of the transmission motor (13) is fixed with the transmission column (9), the two transmission columns (9) are distributed with a cutter (3), the mounting plate (10) is connected with a transmission assembly (4), the part of the mounting plate (10) close to the transmission column (9) is fixed with a protection assembly (5); The protection assembly (5) includes a first supporting plate (53) distributed on one side of the cutter (3) and a second supporting plate (54) distributed on the other side of the cutter (3), the part of the first supporting plate (53) and the second supporting plate (54) close to the transmission column (9) is fixed with an inclined plate (51), the inclined plate (51) is fixed with a wiping piece (52), the wiping piece (52) is abutted with the wiping cotton pipe (92), the wiping piece (52) is connected with a suction structure, the transmission assembly (4) includes a sliding plate (41) fixedly connected with the mounting plate (10), the sliding plate (41) is provided with a sliding groove (42), the sliding groove (42) is slidably connected with a sliding block (43), the sliding block (43) is fixed with the cutter (3), the sliding block (43) and the mounting plate (10) are fixedly connected with an electric push rod (44); The suction structure includes a suction pipe (57) penetrating through the first supporting plate (53) and the second supporting plate (54), the suction pipe (57) penetrates through the inclined plate (51), the receiving end of the inclined plate (51) is fixed with a suction hopper (510), the suction hopper (510) penetrates through the wiping piece (52); The shell structure (6) is fixed with a discharge pipe (12), the receiving end of the discharge pipe (12) is connected with the discharge end of the first supporting plate (53) and the second supporting plate (54), the discharge end of the discharge pipe (12) is connected with an external dust collector; The wiping piece (52) is provided with a flow guide groove (58), the suction hopper (510) penetrates in the inside of the flow guide groove (58), the part of the wiping piece (52) close to the flow guide groove (58) is provided with a flow distribution plate (59); The lower part of the first supporting plate (53) penetrates through a water spraying pipe (55), the lower part of the second supporting plate (54) penetrates through an air suction pipe (56), the air suction pipe (56) is connected with a flow collecting pipe (511), the water spraying pipe (55) is connected with a water conveying pipe (512).
2. The filter cotton cutting machine according to claim 1, characterized in that, The opposite part of the top surface of the mounting plate (10) and the cutter (3) is fixedly connected with an abutting shell (11), the cross section of the abutting shell (11) is a trapezoidal shape with narrow top and wide bottom, the top surface of the abutting shell (11) is provided with a rectangular hole.
3. The filter cotton cutting machine according to claim 2, characterized in that, The frame body (7) is connected with a filter cotton strip (1), the filter cotton strip (1) is abutted with the pressing roller (2), the cutter (3) and the abutting shell (11), the wiping cotton pipe (92) is abutted with the cutter (3) and the filter cotton strip (1).
4. The filter cotton cutting machine according to claim 1, characterized in that, The transmission column (9) is sleeved with a mounting bearing (91) at one end away from the transmission motor (13), the outer ring of the mounting bearing (91) is fixedly connected with the shell structure (6), and the shell structure (6) is fixedly connected with the controller (8).
Citation Information
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