A paper-clip cotton roll felt binding and winding wire film equipment and its use method

By introducing a semi-circular frame and trajectory adjustment module into the equipment for bundling and winding paper-insulated cotton rolls, combined with tension and positioning modules, the adaptability and stability issues of the linear winding structure are solved, achieving good bonding between the roll material and the film material and efficient utilization of equipment space.

CN120986796BActive Publication Date: 2025-12-23TAIZHOU MAOTAI SANITARY PROD CO LTD
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Patent Information

Application Number
CN202511500345.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-10-21
Publication Date
2025-12-23
Estimated Expiration
2045-10-21

AI Technical Summary

Technical Problem

The existing winding and transporting structures of paper-insulated cotton rolls and felts are mostly linear, resulting in poor adaptability to large-size rolls, insufficient support and stability, poor adhesion between the roll and the film, easy formation of bubbles and wrinkles, and large equipment footprint with low space utilization.

Method used

The semi-circular frame and trajectory adjustment module are used to adjust the trajectory radius of the conveyor rollers. The tension module and positioning module are combined to adjust the tension of the roll. The pressing module ensures that the roll material and the film material are in contact. The ground rail design shortens the length of the equipment and forms an arc-shaped winding structure.

Benefits of technology

It improves the support stability and adaptability of roll material conveying, reduces the formation of bubbles and wrinkles, and reduces the space occupancy of the equipment, making it suitable for small and medium-sized workshops.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application provides a kind of cotton roll paper clamping felt binding winding wire film equipment and its use method, belong to cotton roll paper clamping felt packaging machinery technical field. Including conveying chassis, the middle part of the upper end of conveying chassis is equipped with semicircle frame, the inner side of the upper end of semicircle frame is equipped with track adjusting module, the front and rear sides of the upper end of conveying chassis are equipped with pressure holding module. Servo motor is set in the application, drive screw to rotate, so as to drive adjusting block and butt flange to expand displacement along the slot in the inside of semicircle frame middle support rod, and butt flange and the two ends of conveying roller are spliced and assembled into an integral structure, so as to adjust the expansion or contraction of multiple conveying rollers, drive the expansion or contraction of the external tape arc of the wrapped multiple conveying rollers, through the adjustable track radius conveying structure, and the multi-point support under the external tape, compared with traditional straight line type winding, solve the problem of support stability and adaptability of different specifications of cotton roll paper clamping felt conveying.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of paper-clip cotton roll felt packaging machinery, in particular to a paper-clip cotton roll felt bundling and winding film equipment and a using method thereof. BACKGROUND

[0002] The paper-clip cotton roll felt is a flexible roll-shaped functional composite material formed by physical composite process (needling, hot pressing or adhesive composite) with inorganic fiber (such as glass fiber, rock wool, etc.) as the core layer main body and paper or non-woven fabric as the reinforced interlayer. It has the characteristics of inorganic fiber, such as heat insulation, sound absorption and noise reduction, fireproofing and flame retardation, and the mechanical enhancement, tear resistance and form stability of the paper interlayer. It is a typical flexible thermal insulation material in the industrial and building fields.

[0003] After the paper-clip cotton roll felt is produced, it needs to be physically packaged based on the systematic needs of material properties, logistics safety, storage efficiency and quality protection, which requires the use of paper-clip cotton roll felt bundling and winding film equipment.

[0004] At present, the winding and conveying structure of the existing paper-clip cotton roll felt bundling and winding film equipment is mostly traditional straight-line winding. Such winding and conveying structure has the following problems in actual use: 1. In straight-line winding, the roll material moves along a horizontal straight line, and the bottom support is mostly single-point support by a supporting roll. The spacing of the traditional supporting roll is usually 400-500 mm. When the overall conveying span is large, the paper-clip cotton roll felt is prone to sagging and deformation and layer misalignment at the suspended end between the supporting rolls when encountering large-diameter roll materials, which has the problems of poor adaptability and insufficient support and stability, and a horn-shaped opening is easily formed during subsequent winding. 2. In straight-line winding, the contact angle between the film material and the surface of the roll material fluctuates greatly during large-span conveying, which is prone to air bubbles and wrinkles. 3. When straight-line winding, a straight-line space for "roll material conveying, winding and discharging" needs to be reserved, which is generally not less than 8 meters, resulting in a large overall land occupation and low space utilization. Therefore, the present application provides a paper-clip cotton roll felt bundling and winding film equipment and a using method thereof to meet the needs. SUMMARY

[0005] The technical problem to be solved by the present application is to provide a paper-clip cotton roll felt bundling and winding film equipment and a using method thereof to solve the problem that the winding and conveying structure of the existing paper-clip cotton roll felt bundling and winding film equipment is mostly straight-line winding, which has the problems of poor adaptability and insufficient support and stability for large-size roll materials, poor adhesion between the roll material and the film material, and easy formation of air bubbles and wrinkles, and a large equipment land occupation and low space utilization.

[0006] To solve the above technical problems, the present application provides the following technical solutions:

[0007] The utility model provides a kind of paper cotton roll felt binding winding wire film equipment, including conveying chassis, the middle part of the upper end of conveying chassis is equipped with semicircle frame, the inboard of the upper end of semicircle frame is equipped with trajectory adjusting module, the front and back of the upper end of conveying chassis is equipped with hold-down module, the lower of the front end of conveying chassis is equipped with tight module, the left and right sides of the front of conveying chassis is equipped with ground rail, the inboard of the upper end of ground rail is equipped with front module, the upper of the front end of front module is equipped with cutting module, the lower of cutting module is equipped with film support, the rear side of conveying chassis is equipped with winding machine, the left and right sides in the inside of semicircle frame is equipped with fixed pressing block, the inboard of the upper end of tight module is equipped with positioning module.

[0008] Optionally, the conveying chassis includes a support frame, guide rollers, a conveying motor, a conveying wheel and crossbars, the front and back sides of the upper end of the support frame are symmetrically provided with guide rollers, the lower side of the guide rollers is provided with a conveying motor, the right side of the outer end of the guide rollers is provided with a conveying wheel, and the front and back sides of the inside of the support frame are symmetrically provided with crossbars.

[0009] Optionally, the semicircle frame includes a left clamping plate, a right clamping plate, an arc-shaped rod, a support rod, a conveying roller, a heat dissipation motor and a heat dissipation filter screen, the right side of the left clamping plate is provided with a right clamping plate, the upper ends of the left clamping plate and the right clamping plate are symmetrically provided with arc-shaped rods, the inner side of the arc-shaped rod is provided with a support rod, the upper middle part of the left clamping plate and the right clamping plate is provided with a conveying roller, the upper middle part of the left end of the left clamping plate and the right end of the right clamping plate is provided with a heat dissipation motor, and the left middle part of the outer end of the left clamping plate and the right middle part of the outer end of the right clamping plate is provided with a heat dissipation filter screen.

[0010] Optionally, the trajectory adjusting module includes a servo motor, a lead screw, an adjusting block and a butt flange, the front end of the servo motor is provided with a lead screw, the outer end of the lead screw is threadedly sleeved with an adjusting block, and the front end of the adjusting block is provided with a butt flange.

[0011] Optionally, the hold-down module includes a hold-down base, a lifting groove, a sealing plate, a hold-down motor, a lifting block, a hold-down wheel and a side plate, the inner side of the upper end of the hold-down base is provided with a lifting groove, the upper end of the hold-down base is provided with a sealing plate, the upper middle part of the sealing plate is provided with a hold-down motor, the inside of the lifting groove is provided with a lifting block, the lower side of the left end of the lifting block is provided with a hold-down wheel, and the left side of the hold-down wheel is provided with a side plate.

[0012] Optionally, the tight module includes a longitudinal rod, a support column, a boss, a longitudinal groove, a tight motor, a tight screw, a displacement block and an anti-wear bearing, the lower end of the longitudinal rod is provided with a support column, the middle part of the front end of the longitudinal rod is provided with a boss, the inner side of the upper end of the longitudinal rod is provided with a longitudinal groove, the upper end of the boss is provided with a tight motor, the transmission end of the tight motor is butt-jointed with a tight screw, the outer end of the tight screw is threadedly sleeved with a displacement block, and the rear end of the tight screw is provided with an anti-wear bearing.

[0013] Optionally, the pre-module comprises a concave-convex plate, a reinforcing block, a rotating roller, a rotating belt, a rotating motor and a rotating guide wheel, the upper end of the concave-convex plate is provided with the reinforcing block, the inner side of the reinforcing block is sleeved with the rotating roller, the outer end of the rotating roller is provided with the rotating belt, the left side below the reinforcing block is provided with the rotating motor, and the front end of the rotating motor is provided with the rotating guide wheel.

[0014] Optionally, the cutting module comprises a cutting frame, a closing plate, a rectangular block, a cutting motor, a cutting knife and a bearing table, the left and right sides of the upper end of the cutting frame are provided with the closing plate, the lower side of the closing plate is provided with the rectangular block, the middle part of the upper end of the closing plate is provided with the cutting motor, the inner side of the upper part of the cutting frame is provided with the cutting knife, and the lower side of the cutting knife is provided with the bearing table.

[0015] Optionally, the positioning module comprises a fixing block, a clamping sleeve, a double-hole rod, a pulling roller and a traction roller, the inner side of the fixing block is provided with the clamping sleeve, the front end of the clamping sleeve is provided with the double-hole rod, the inner side of the upper end of the double-hole rod is provided with the pulling roller, and the inner side of the lower end of the double-hole rod is provided with the traction roller.

[0016] A method for using a paper-clip cotton roll felt binding and winding film equipment, comprising the following steps:

[0017] Step one, before starting work, according to the production specification of the paper-clip cotton roll felt, such as producing more than eight hundred millimeter specification, the servo motor in the track adjusting module is started to work by the external operation table, the synchronous rotation of the lead screw is driven by the rotation of the servo motor, so as to drive the adjusting block and the butt flange to expand displacement along the slot inside the half-circle frame support, so as to adjust the track radius of the plurality of arc-shaped distribution conveying rollers to expand, the external tape arc wrapped around the plurality of conveying rollers is expanded, and stable multi-point support is provided by the plurality of conveying rollers below the external tape, and when less than eight hundred millimeter specification is produced, the above operation is reversed, and the external tape arc supported by the plurality of conveying rollers is reduced;

[0018] Step two, when the track adjustment module is adjusted, the loose module starts to work, the loose motor in the loose module drives the loose screw to rotate, and the displacement block moves forward and backward along the longitudinal groove. The displacement block and the fixed block are fastened together by screws, which can drive the positioning module to move synchronously along the displacement direction and angle of the displacement block. At the same time, since the positioning module is wrapped inside the external coiled tape, the external coiled tape can be tightened or loosened when the positioning module moves forward and backward. When the positioning module moves forward, the external coiled tape is tightened due to the relaxation caused by the track adjustment module. When the positioning module moves backward, the external coiled tape is slowly released due to the tightness caused by the expansion of the track adjustment module, so that the external coiled tape always maintains a stable tightness;

[0019] Step three, when the loose module cooperates with the positioning module to complete the tightness adjustment of the external coiled tape, the pressure holding module starts to work. The front end transmission shaft is driven to rotate by the pressure holding motor, so that the lifting block moves up and down in the lifting groove, so that the pressure holding wheel installed on the outer side of the lifting block also moves synchronously, and the pressure holding wheel is attached to the top of the external coiled tape to hold the pressure, so that the external coiled tape wrapped around the outer end of the plurality of conveying rollers, guide rollers, pulling rollers and traction rollers can always maintain a suitable angle to convey the paper cotton roll felt, so that the tangent of the motion trajectory of the paper cotton roll felt and the film material as a whole is consistent, so that they can better adhere to each other, so as to reduce the probability of forming a horn on both sides during subsequent winding, and reduce the problem of air bubbles and wrinkles generated when the film material and the paper cotton roll felt are wound and rolled;

[0020] Step four, when the conveyed paper cotton roll felt enters the inside of the winding machine, the paper cotton roll felt is wound into a roll by the roll structure inside the winding machine, and the rubber belt sleeved on the front end rod of the winding machine is used to complete the binding and winding work. After the binding and winding is completed, it is discharged through the discharging structure on the rear side of the winding machine;

[0021] Step five, through the setting of the ground rail, which is laid on both sides of the tension module, then the front module is displaced along the ground rail, and the front module is slid to the upper side of the tension module, and the front end of the conveying chassis is attached, leaving a suitable gap, and the external tape wrapped around the outer end of the plurality of conveying rollers, guide rollers, pulling rollers and traction rollers, and the trajectory adjusting module form a complete circular arc winding conveying structure. Compared with the traditional linear winding conveying equipment which requires an area of eight meters, the circular arc winding conveying structure can compress the total length of the area to five meters, reducing the space occupancy of the equipment, suitable for small and medium-sized building material factories with insufficient workshop width. Secondly, by setting the ground rail, the front module is designed to be movable, which is more convenient and fast for subsequent maintenance. At the same time, the length and size of the front module can be added according to the actual production demand, which provides convenience for subsequent equipment arrangement.

[0022] Step six, through the setting of the film placing support, the bottom film material can be placed on the inside for installation, so as to place the film during subsequent production. Through the setting of the cutting module, since the inner bearing table is consistent with the conveying height of the front module, only when the paper cotton roll felt reaches the appropriate length, the cutting knife driven by the cutting motor can be displaced downward to complete the cutting work of the paper cotton roll felt.

[0023] Compared with the prior art, the present application has at least the following advantages:

[0024] The servo motor is arranged, the screw rod is driven to rotate, the adjusting block and the butt flange are driven to expand displacement along the slot inside the half-round frame middle support rod, the butt flange and the two ends of the conveying roller are spliced and assembled into an integral structure, so that the plurality of conveying rollers are expanded or contracted, the external tape arc wrapped around the plurality of conveying rollers is expanded or contracted, the conveying structure with adjustable track radius and the multi-point support under the external tape improve the support stability and adaptability of different specifications of the paper-clip cotton roll felt conveying compared with the traditional straight-line winding, and the second, the tension motor is arranged to drive the tension screw to rotate, the displacement block moves forward and backward along the longitudinal slot, the displacement block and the fixed block are fastened together through the screw, so that the positioning module is driven to move synchronously along the displacement direction and angle of the displacement block, and since the positioning module is wrapped inside the external tape, the external tape can be tightened or loosened when the positioning module moves forward and backward, wherein, when small specifications are produced, the positioning module moves forward to tighten the slack of the external tape caused by the contraction of the track adjusting module, and when large specifications are produced, the positioning module moves backward to slowly release the tightness of the external tape caused by the expansion of the track adjusting module, so that the external tape always maintains a stable tension, avoids over-looseness to cause the roll felt and the film material to be unable to adhere, and avoids over-tightness to increase the fluctuation of the external tape to affect the adhesion of the roll felt and the film material.

[0025] The pressing motor is arranged to drive the front end transmission shaft to rotate, thereby driving the lifting block to move up and down in the lifting groove, so as to drive the pressing wheel mounted on the outer side of the lifting block to move synchronously, so that the pressing wheel is pressed against the upper side of the external tape, so that the external tape wrapped around the plurality of conveying rollers, guide rollers, pulling rollers and traction rollers can always maintain a suitable angle to convey the paper-clip cotton roll felt, so that the tangential line of the motion track of the paper-clip cotton roll felt and the film material is consistent, so that they can be better adhered, so as to reduce the probability of forming a horn on both sides when winding, and reduce the problem of bubbles and wrinkles generated when the film material and the paper-clip cotton roll felt are wound.

[0026] Through the ground rail arranged, it is laid on both sides of the tension module, then the front module is displaced along the ground rail, the front module is slid to the upper side of the tension module, and the front end of the conveying chassis is attached, a suitable gap is left, and the external tape wrapped around the outer end of the plurality of conveying rollers, guide rollers, pulling rollers and traction rollers form a complete circular arc winding conveying structure with the track adjusting module. Compared with the traditional linear winding conveying equipment which requires an area of 8 meters, the circular arc winding conveying structure can compress the total length of the area to within 5 meters, reduce the space occupancy of the equipment, and is suitable for small and medium-sized building material factories with insufficient workshop width. Secondly, through the ground rail, the front module is designed to be movable, which is more convenient and fast when maintenance is needed in the future. At the same time, the length and size of the front module can be added according to actual production needs, which provides convenience for subsequent equipment arrangement. BRIEF DESCRIPTION OF DRAWINGS

[0027] The accompanying drawings, which are incorporated herein and constitute part of the specification, illustrate embodiments of the application and, together with the description, further serve to explain the principles of the application and to enable a person skilled in the relevant art to implement and use the application.

[0028] Figure 1 is a three-dimensional structure assembly diagram of the present application;

[0029] Figure 2 is a three-dimensional structure explosion diagram of the conveying chassis, the tension module, the front module and the winding machine of the present application;

[0030] Figure 3 is a three-dimensional structure assembly diagram of the conveying chassis, the semi-circular frame, the track adjusting module, the pressing module and the tension module of the present application;

[0031] Figure 4 is a three-dimensional structure diagram of the support frame and the guide roller of the present application;

[0032] Figure 5 is a three-dimensional structure explosion diagram of the semi-circular frame of the present application;

[0033] Figure 6 is a cross-sectional structure diagram of the semi-circular frame and the track adjusting module of the present application;

[0034] Figure 7 is a three-dimensional structure explosion diagram of the tension module and the positioning module of the present application;

[0035] Figure 8 is a three-dimensional structure explosion diagram of the fixed block, the clamping sleeve, the double-hole rod and the displacement block of the present application;

[0036] Figure 9 is a three-dimensional structure explosion diagram of the pressing module of the present application;

[0037] Figure 10 It is the three-dimensional structure assembly schematic view of the ground rail and front module of the present application;

[0038] Figure 11 It is the three-dimensional structure schematic view of the cutting module of the present application;

[0039] Figure 12 It is the three-dimensional structure schematic view of the winding machine of the present application;

[0040] Figure 13 It is the three-dimensional structure schematic view of the auxiliary device of the present application; Figure 3 It is the enlarged schematic view of the partial structure at A in the auxiliary device of the present application;

[0041] Figure 14 It is the three-dimensional structure schematic view of the auxiliary device of the present application; Figure 6 It is the enlarged schematic view of the partial structure at B in the auxiliary device of the present application.

[0042] Reference signs:

[0043] 1, conveying chassis; 2, semicircular frame; 3, track adjusting module; 4, pressing module; 5, tensioning module; 6, ground rail; 7, front module; 8, cutting module; 9, film placing support; 10, winding machine; 11, fixed pressing block; 12, positioning module; 101, support frame; 102, guide roller; 103, conveying motor; 104, conveying wheel; 105, cross rod; 201, left clamping plate; 202, right clamping plate; 203, arc-shaped rod; 204, support rod; 205, conveying roller; 206, heat dissipation motor; 207, heat dissipation filter screen; 301, servo motor; 302, screw rod; 303, adjusting block; 304, butt flange; 401, pressing base; 402, lifting groove; 403, sealing plate; 404, pressing motor; 405, lifting block; 406, pressing wheel; 407, side plate; 501, longitudinal rod; 502, support column; 503, boss; 504, longitudinal groove; 505, tensioning motor; 506, tensioning screw rod; 507, displacement block; 508, anti-wear bearing; 701, concave-convex plate; 702, reinforcing block; 703, rotating roller; 704, rotating belt; 705, rotating motor; 706, rotating guide wheel; 801, cutting frame; 802, closing plate; 803, rectangular block; 804, cutting motor; 805, cutting knife; 806, bearing table; 121, fixed block; 122, clamping sleeve; 123, double-hole rod; 124, pulling roller; 125, traction roller.

[0044] As shown in the drawings, in order to clearly realize the structure of the embodiments of the present application, specific structures and devices are marked in the drawings, but this is only for the need of illustration, and is not intended to limit the present application in the specific structures, devices and environments, and the devices and environments can be adjusted or modified by those skilled in the art according to specific needs. DETAILED DESCRIPTION

[0045] A paper-rolling cotton roll binding and winding wire film equipment and a method of using the same according to the present application will be described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that the following embodiments are the best, preferred embodiments, and other alternative embodiments can also be implemented by those skilled in the art for some known technologies; and the drawings are only used to more specifically describe the embodiments, and are not intended to specifically limit the present application.

[0046] It should be noted that the terms "one embodiment", "an embodiment", "exemplary embodiment", "some embodiments", etc. in the specification indicate that the described embodiment can include a specific feature, structure or characteristic, but not necessarily every embodiment. In addition, when a specific feature, structure or characteristic is described in conjunction with an embodiment, it should be within the knowledge of those skilled in the related art to implement such a feature, structure or characteristic in conjunction with other embodiments, whether or not explicitly described.

[0047] Generally, the terms can be understood at least in part from the context in which they are used. For example, depending at least in part upon the context, the term "one or more" as used herein can be used to describe any feature, structure, or characteristic in the singular or can be used to describe combinations of features, structures or characteristics, in the plural, depending at least in part upon the context. Further, the term "based on" can be understood as not necessarily of exclusive alternatives, but rather as allowing for additional implicit factors, whether or not explicitly mentioned.

[0048] It can be understood that the meaning of "on", "above", and "upper" in the present application should be interpreted in the broadest way, so that "on" not only means "directly on" something, but also includes the meaning of "on" something with intervening features or layers therebetween, and "above" or "upper" not only means the meaning of "above" or "upper" something, but also can include the meaning of "above" or "upper" something without intervening features or layers therebetween.

[0049] In addition, spatially relative terms such as "under", "below", "lower", "over", "upper" and the like can be used herein for ease of description to describe one element or feature's relationship to another element(s) or feature(s) as illustrated in the figures. The spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientations depicted in the figures. The device can be otherwise oriented (rotated 90 degrees or at other orientations) and the spatially relative descriptors used herein can be interpreted accordingly.

[0050] As Figures 1 to 14As shown, the embodiment of the present application provides a kind of paper cotton roll felt binding winding wire film equipment, including conveying chassis 1, the middle part of the upper end of conveying chassis 1 is equipped with semicircular frame 2, the inner side of the upper end of semicircular frame 2 is equipped with trajectory adjusting module 3, the front and rear sides of the upper end of conveying chassis 1 are equipped with pressure holding module 4, the lower side of the front end of conveying chassis 1 is equipped with tension module 5, the left and right sides of the front of conveying chassis 1 are equipped with ground rail 6, the inner side of the upper end of ground rail 6 is equipped with front module 7, the upper side of the front end of front module 7 is equipped with cutting module 8, the lower side of cutting module 8 is equipped with film placing support 9, the rear side of conveying chassis 1 is equipped with winding machine 10, the left and right sides in the inside of semicircular frame 2 are equipped with fixed pressing block 11, the inner side of the upper end of tension module 5 is equipped with positioning module 12.

[0051] Conveying chassis 1 and semicircular frame 2 are assembled and reinforced by six bolts on the left and right sides, trajectory adjusting module 3 is embedded and installed in the inside of semicircular frame 2, pressure holding module 4 is distributed symmetrically left and right, four groups are distributed on each side, the regions of the four groups are the front two groups and the rear two groups, and the distance of the front two groups and the rear two groups from semicircular frame 2 is equal, tension module 5 is distributed symmetrically left and right with two groups, and the rear ends of the two groups of tension module 5 and the lower side of the front end of conveying chassis 1 are both reinforced by bolts, ground rail 6 is distributed symmetrically left and right with two, and the distribution interval of the two ground rails 6 and the overall width of the lower end of front module 7 are mutually adapted, the left and right sides of the upper end of front module 7 are concave-convex, wherein, the concave surface has four in total, the inner side of the concave surface can be welded and installed on the upper film covering support as needed, front module 7 is embedded and installed on the inner side of the upper end of ground rail 6, and can slide between the two, at the same time, the contact end of front module 7 and ground rail 6 can be positioned and reinforced by a latch, cutting module 8 and the front end of front module 7 can be reinforced by a screw pin, film placing support 9 exists independently, and its specific placement area can be displaced according to the actual displacement area of front module 7, since film placing support 9 is provided with a plugboard car working slot at the bottom, it is convenient to lift and displace, winding machine 10 is a known technology, it is a tail end equipment for winding paper cotton roll felt into a roll, therefore, it will not be described in detail in the present application, fixed pressing block 11 and semicircular frame 2 are reinforced by tail bolts, the structure of fixed pressing block 11 is the same as the structure composed of lifting block 405, pressure holding wheel 406 and side plate 407 in pressure holding module 4, pressure roller is installed in front of positioning module 12, and displacement block 507 in the inside of tension module 5 is reinforced together with positioning module 12 by screws.

[0052] In work, according to the production specification of the paper-clip cotton roll felt, the track adjusting module 3 controlled by the external operating table starts to work, expands along the slot inside the support rod 204 in the semicircular frame 2, thereby expanding or shrinking the external tape arc wrapped around the plurality of conveying rollers 205, and at the same time, providing stable multi-point support below the external tape; when the track adjusting module 3 is adjusted, the tension module 5 starts to work, and the positioning module 12 is driven by the tension module 5 to move forward and backward, and since the positioning module 12 is wrapped inside the external tape, when the positioning module 12 moves forward and backward, the external tape can be tightened or loosened, wherein when the positioning module 12 moves forward, the looseness of the external tape caused by the shrinking of the track adjusting module 3 is tightened, and when large-scale production is encountered, the positioning module 12 moves backward, and the tightness of the external tape caused by the expansion of the track adjusting module 3 is slowly released, so that the external tape always maintains a stable tension; when the tension module 5 cooperates with the positioning module 12 to complete the tension adjustment of the external tape, the pressing module 4 starts to work, cooperates with the fixed pressing block 11, so that the external tape wrapped around the plurality of conveying rollers 205, guide rollers 102, pulling rollers 124 and traction rollers 125 can always maintain a suitable angle to convey the paper-clip cotton roll felt, so that the tangent of the motion track of the paper-clip cotton roll felt and the film material as a whole is consistent, so that they can better fit, so as to reduce the probability of forming a horn on both sides when rolling later, and also reduce the problem of bubbles and wrinkles caused by the winding of the film and the paper-clip cotton roll felt.

[0053] As shown in Figures 1 to 14 In this embodiment, the conveying chassis 1 includes a support frame 101, guide rollers 102, a conveying motor 103, conveying wheels 104 and crossbars 105, the front and rear sides of the upper end of the support frame 101 are symmetrically distributed with the guide rollers 102, the lower side of the guide rollers 102 is provided with the conveying motor 103, the right side of the outer end of the guide rollers 102 is provided with the conveying wheels 104, and the front and rear sides inside the support frame 101 are symmetrically distributed with the crossbars 105; the semicircular frame 2 includes a left clamping plate 201, a right clamping plate 202, an arc-shaped rod 203, a support rod 204, a conveying roller 205, a heat dissipation motor 206 and a heat dissipation filter screen 207, the right side of the left clamping plate 201 is provided with the right clamping plate 202, the upper ends of the left and right clamping plates 201 and 202 are symmetrically provided with the arc-shaped rods 203, the inner side of the arc-shaped rods 203 is provided with the support rod 204, the upper middle part of the left clamping plate 201 and the upper middle part of the right clamping plate 202 are provided with the heat dissipation motor 206, and the left middle part of the outer end of the left clamping plate 201 and the right middle part of the outer end of the right clamping plate 202 are provided with the heat dissipation filter screen 207.

[0054] The support frame 101 is provided with a guide seat between the guide roller 102, the guide seat is symmetrically distributed left and right, wherein the guide roller 102 is sleeved and installed inside the symmetrically distributed guide seat, and is reinforced by bolts, the support frame 101 and the guide seat are also reinforced by bolts, the conveying motor 103 is installed at the rear side of the right end of the support frame 101, and is perpendicular to the installation angle of the upper guide roller 102, the transmission end of the conveying motor 103 penetrates the inside of the support frame 101 and extends to the outside, the extended part is provided with a transmission wheel, at the same time, the right side of the outer end of the guide roller 102 is also sleeved and installed with a conveying wheel 104, and is reinforced with a screw pin, the conveying wheel 104 and the transmission wheel are connected through a transmission belt, the cross rod 105 is symmetrically distributed front and back inside the support frame 101, and the contact end of the support frame 101 and the cross rod 105 is reinforced by welding; the left clamping plate 201 and the right clamping plate 202 are symmetrically distributed left and right, and the size and shape of the two are exactly the same, at the same time, the left clamping plate 201 and the right clamping plate 202 are provided with a circular structure at the upper middle part, and the inside of the circular structure is hollow, the inside of the hollow of the circular structure and the bottom inside of the supporting rod 204 are in communication with each other, the arc-shaped rod 203 is also symmetrically distributed left and right, and the two arc-shaped rods 203 are respectively combined with the left clamping plate 201 and the right clamping plate 202 on the left and right sides to form a structure with a rectangular bottom and a semicircular top, the lower end of the supporting rod 204 is internally hollow in a cylindrical shape, at the same time, a through sliding slot is formed in the inside of the upper end of the supporting rod 204, the supporting rod 204 is symmetrically installed inside the two semicircular structures, six supporting rods 204 are distributed on each side, and the top ends of the six supporting rods 204 and the contact ends inside the two semicircular structures are reinforced by welding, and the bottoms of the six supporting rods 204 and the circular structures at the upper middle parts of the left clamping plate 201 and the right clamping plate 202 are reinforced by welding, the conveying roller 205 is installed in the middle region of the symmetrically distributed supporting rods 204, the left and right ends of the conveying roller 205 are provided with a butt joint disc, the butt joint disc and the butt joint flange 304 in the track adjusting module 3 are mutually spliced, and are reinforced by bolt assembly, the heat dissipation motor 206 is symmetrically distributed left and right, and the two heat dissipation motors 206 are fixed in the circular structures at the upper middle parts of the left clamping plate 201 and the right clamping plate 202 by bolts, and the outer sides of the two circular structures are provided with a heat dissipation filter screen 207.

[0055] In work, through the cooperation of the supporting frame 101, the guide roller 102, the left clamping plate 201, the right clamping plate 202, the arc-shaped rod 203, the supporting rod 204 and the conveying roller 205, the traditional linear supporting rod structure is changed to form a combined supporting rod structure with a circular arc-shaped supporting rod structure in the middle and linear supporting rod structures on both sides. Then, the external winding tape is wrapped and installed outside the combined supporting rod structure to form a conveying structure. Compared with the traditional linear conveying structure, the overall layout length of the conveying structure is shortened by changing the supporting rod structure, thereby reducing the equipment floor area and improving the space utilization rate. At the same time, the track adjusting module 3 can be installed on the inner side by matching the cylindrical cavity in the bottom inner side of the supporting rod 204 and the through sliding slot opening at the upper end of the left clamping plate 201 and the right clamping plate 202, so that the combined supporting rod structure can expand and contract without increasing the overall equipment volume, thereby changing the running track.

[0056] As shown in Figures 5 to 6 In this embodiment, the track adjusting module 3 includes a servo motor 301, a lead screw 302, an adjusting block 303 and a butt flange 304. The front end of the servo motor 301 is provided with the lead screw 302, the outer end of the lead screw 302 is threadedly sleeved with the adjusting block 303, and the front end of the adjusting block 303 is provided with the butt flange 304.

[0057] The servo motor 301 and the lead screw 302 are in a sleeved installation structure, and the sleeved ends of the two are limited and reinforced by a clamping pin. The adjusting block 303 is threadedly sleeved and installed at the outer end of the lead screw 302, and the butt flange 304 is fixed at the front end of the adjusting block 303 by welding. In addition, the servo motor 301, the lead screw 302, the adjusting block 303 and the butt flange 304 are all distributed in two groups, and each group has six servo motors 301, six lead screws 302, six adjusting blocks 303 and six butt flanges 304.

[0058] In work, the servo motor 301 starts to work, drives the lead screw 302 to rotate synchronously, thereby driving the adjusting block 303 and the butt flange 304 to expand or contract along the slot in the supporting rod 204 inside the semicircular frame 2, so as to expand or contract the track radius of the plurality of arc-shaped distributed conveying rollers 205 assembled with the butt flange 304, thereby providing multi-point support below the external winding tape. Compared with the traditional linear winding, the support stability and adaptability of different specifications of paper cotton roll felt conveying are improved.

[0059] As shown in Figures 1 to 9As shown, in this embodiment, the pressing module 4 comprises a pressing base 401, a lifting groove 402, a sealing plate 403, a pressing motor 404, a lifting block 405, a pressing wheel 406 and a side plate 407. The inner side of the upper end of the pressing base 401 is provided with the lifting groove 402. The upper end of the pressing base 401 is provided with the sealing plate 403. The middle part of the upper end of the sealing plate 403 is provided with the pressing motor 404. The inside of the lifting groove 402 is provided with the lifting block 405. The lower left end of the lifting block 405 is provided with the pressing wheel 406. The left side of the pressing wheel 406 is provided with the side plate 407.

[0060] The pressing module 4 is installed symmetrically left and right. The inside of the pressing base 401 is provided with the lifting groove 402. The contact end of the lifting groove 402 and the inner side of the outer wall of the pressing base 401 is a longitudinal rectangular opening. The sealing plate 403 and the pressing base 401 are reinforced by four bolts located at the four corners thereof. The pressing motor 404 is reinforced on the middle part of the upper end of the sealing plate 403 by screws. The transmission end of the pressing motor 404 penetrates the inside of the sealing plate 403 and the lifting block 405 and extends to the lower outer side. The lifting block 405 is composed of a rectangular structure and a side L-shaped structure. The outer diameter of the rectangular structure is adapted to the inner diameter of the lifting groove 402. The width of the side L-shaped structure is adapted to the width of the longitudinal rectangular opening of the lifting groove 402 and the inner side of the outer wall of the pressing base 401. The pressing wheel 406 and the side L-shaped structure in the lifting block 405 are connected by a plug rod. The front end of the plug rod penetrates the inside of the side L-shaped structure in the lifting block 405 and the inside of the pressing wheel 406 in sequence and extends to the rear side of the side plate 407 and is limited by a screw pin. The side plate 407 is reinforced with the side L-shaped structure in the lifting block 405 by a screw pin. There is a few centimeters spacing between the lower end of the side plate 407 and the lower end of the pressing wheel 406 to prevent the side plate 407 from contacting the surface of the external tape during subsequent pressing of the external tape.

[0061] In work, the pressing motor 404 starts to work, thereby driving the lifting block 405 penetrated by the transmission shaft to move up and down in the lifting groove 402, so as to drive the pressing wheel 406 installed on the outer side of the lifting block 405 to also move synchronously, allowing the pressing wheel 406 to press the upper part of the external tape, so that the external tape wrapped around the outer end of the plurality of conveying rollers 205, guide rollers 102, pulling rollers 124 and traction rollers 125 can always maintain a suitable angle to convey the paper cotton roll felt, so that the tangent of the motion trajectory of the paper cotton roll felt and the film material as a whole remains consistent, so that they can better fit, so as to reduce the probability of forming a horn on both sides during subsequent winding, and at the same time, reduce the problem of air bubbles and wrinkles generated when the film material and the paper cotton roll felt are wound.

[0062] As Figures 1 to 8As shown, in this embodiment, the tension module 5 includes a longitudinal rod 501, a support 502, a boss 503, a longitudinal slot 504, a tension motor 505, a tension screw 506, a displacement block 507, and an anti-wear bearing 508. The lower end of the longitudinal rod 501 is provided with the support 502. The middle part of the front end of the longitudinal rod 501 is provided with the boss 503. The inner side of the upper end of the longitudinal rod 501 is provided with the longitudinal slot 504. The upper end of the boss 503 is provided with the tension motor 505. The transmission end of the tension motor 505 is provided with the tension screw 506. The outer end of the tension screw 506 is threadedly sleeved with the displacement block 507. The rear end of the tension screw 506 is provided with the anti-wear bearing 508.

[0063] The two groups of tension modules 5 are symmetrically distributed on the left and right, and the sizes and shapes of the two groups are equal. The longitudinal rod 501, the support 502, and the boss 503 are in an integral structure. The support 502 is transversely distributed with three supports. The upper end of the boss 503 is symmetrically provided with six screw holes on the left and right for reinforcing the tension motor 505. The inner diameter of the longitudinal slot 504 and the outer diameter of the displacement block 507 are adapted to each other. The transmission end of the tension motor 505 and the tension screw 506 are in mutual sleeving, and the sleeving ends of the two are reinforced by a latch. The front end of the tension screw 506 is threadedly penetrated into the inside of the displacement block 507 and continues to extend forward to be sleeved with the anti-wear bearing 508. The anti-wear bearing 508 is embedded and installed at the rear end inside the longitudinal slot 504.

[0064] In operation, the tension module 5 starts to work. The tension motor 505 in the tension module 5 drives the tension screw 506 to rotate, allowing the displacement block 507 to move forward and backward along the longitudinal slot 504. The displacement block 507 and the fixed block 121 are reinforced together by a screw, which can drive the positioning module 12 to move synchronously along the displacement direction and angle of the displacement block 507. At the same time, since the positioning module 12 is wrapped by the external winding tape on the inside, the external winding tape can be tightened or loosened when the positioning module 12 moves forward and backward. When producing small specifications, the positioning module 12 moves forward to tighten the slack of the external winding tape caused by the contraction of the trajectory adjustment module 3. When producing large specifications, the positioning module 12 moves backward to slowly release the tightness of the external winding tape caused by the expansion of the trajectory adjustment module 3, so that the external winding tape always maintains a stable tension, avoiding over-looseness that causes the felt and film material to be unable to adhere, and avoiding over-tightness that causes the external winding tape to generate fluctuations affecting the adhesion of the felt and film material.

[0065] As shown in FIG. 6, the tension module 5 is provided with a plurality of tension motors 505, and the transmission ends of the tension motors 505 are provided with a plurality of tension screws 506. The outer end of each tension screw 506 is threadedly sleeved with a displacement block 507. The rear end of each tension screw 506 is provided with an anti-wear bearing 508. Figures 1 to 10As shown in the figure, in this embodiment, the front module 7 comprises a concave-convex plate 701, a reinforcing block 702, a rotating roller 703, a rotating belt 704, a rotating motor 705 and a rotating guide wheel 706, the upper end of the concave-convex plate 701 is provided with the reinforcing block 702, the inner side of the reinforcing block 702 is sleeved and installed with the rotating roller 703, the outer end of the rotating roller 703 is provided with the rotating belt 704, the left side below the reinforcing block 702 is provided with the rotating motor 705, and the front end of the rotating motor 705 is provided with the rotating guide wheel 706.

[0066] The concave-convex plate 701 is symmetrically distributed with two blocks, the upper end of the concave-convex plate 701 is symmetrically installed with ten reinforcing blocks 702, and the contact ends of the two are reinforced by bolts, the middle part of the symmetrically distributed reinforcing blocks 702 is sleeved and installed with the rotating roller 703, the rotating roller 703 is horizontally arranged with five rods from front to back, the right outer end of the frontmost rod is sleeved and installed with a traction wheel equal to the rotating guide wheel 706, the traction wheel and the rotating guide wheel 706 are connected through a belt, the rotating belt 704 is wrapped around the outer end of the five rotating rollers 703, the rotating motor 705 is installed above the front side of the right end of the concave-convex plate 701, the contact end is reinforced by bolts, the transmission end of the rotating motor 705 penetrates through the inside of the concave-convex plate 701 and extends to the inner side, the part extending to the inner side is sleeved and installed with the rotating guide wheel 706 and is reinforced by a screw pin, secondly, the working mode of the combination of the rotating roller 703, the rotating belt 704, the rotating motor 705 and the rotating guide wheel 706 is a known technology, therefore, the working mode will not be described in detail herein.

[0067] In work, through the concave-convex plate 701, because the lower end extends to the inner side of the upper end of the ground rail 6, and the left and right expansion structure is also provided above the contact end, the ground rail 6 can be fixed by a plug, when moving, it can be quickly disassembled by plugging, secondly, the ground rail 6 is provided, the front module 7 is designed to be movable, which is more convenient and fast when maintaining in the future, at the same time, the length and size of the front module 7 can be added according to the actual production demand, which provides convenience for subsequent equipment arrangement.

[0068] As shown in the figure, Figures 1 to 11 In this embodiment, the cutting module 8 comprises a cutting frame 801, a closing plate 802, a rectangular block 803, a cutting motor 804, a cutting knife 805 and a bearing table 806, the left and right sides of the upper end of the cutting frame 801 are provided with the closing plate 802, the lower side of the closing plate 802 is provided with the rectangular block 803, the middle part of the upper end of the closing plate 802 is provided with the cutting motor 804, the inner side of the upper side of the cutting frame 801 is provided with the cutting knife 805, and the lower side of the cutting knife 805 is provided with the bearing table 806.

[0069] The cutting frame 801 is reinforced with bolts between the closing plate 802, the rectangular block 803 is embedded and installed in the notches opened on the left and right sides of the upper end of the cutting frame 801, the cutting motor 804 is reinforced on the middle of the upper end of the closing plate 802 through screws, the transmission end of the cutting motor 804 is threaded through the inside of the rectangular block 803 and extends to the inside of the lower cutting frame 801, wherein the transmission end of the cutting motor 804 is sleeved with a rotary bearing at the contact end of the cutting frame 801, the cutting knife 805 is sleeved and installed at the contact end of the rectangular block 803 and is reinforced by a latch, the bearing table 806 is of an integral structure with the cutting frame 801, the middle of the upper end of the bearing table 806 is provided with an anti-collision notch with a horizontal length equal to that of the cutting knife 805, and the overall height of the bearing table 806 and the conveying height of the upper end of the front module 7 are kept horizontal.

[0070] In work, the left and right balance of the front module 7 can be supported through the cutting frame 801 and the bearing table 806, and the lifting working principle of the cutting module 8 is the same as that of the pressing module 4, except that the pressing is changed to cutting, so that the working principle is not described in detail herein, and the main purpose is to cut the paper cotton roll felt and film material.

[0071] As shown in Figures 1 to 8 In this embodiment, the positioning module 12 includes a fixed block 121, a clamping sleeve 122, a double-hole rod 123, a pulling roller 124 and a traction roller 125, the inner side of the fixed block 121 is provided with the clamping sleeve 122, the front end of the clamping sleeve 122 is provided with the double-hole rod 123, the inner side of the upper end of the double-hole rod 123 is provided with the pulling roller 124, and the inner side of the lower end of the double-hole rod 123 is provided with the traction roller 125.

[0072] The fixed block 121 and the clamping sleeve 122 are in a sleeved installation mode, the clamping sleeve 122 is composed of left and right two parts, the left part is slightly thicker than the right part, and the right part can extend into the left part, and the left and right parts are reinforced with bolts, the clamping sleeve 122 and the double-hole rod 123 are reinforced with four long screw pins, wherein the hole on the upper end of the double-hole rod 123 and the inner circular hole of the clamping sleeve 122 are in a horizontal line, the left and right ends of the pulling roller 124 extend through the upper hole of the double-hole rod 123 and extend into the inside of the clamping sleeve 122, the lower hole of the double-hole rod 123 is in a horizontal line with the traction roller 125, and the two ends of the traction roller 125 extend through the inside of the lower hole of the double-hole rod 123 and extend to the outside and are reinforced with a clasp and a latch.

[0073] In work, through the setting of the double hole rod 123, four long screws are used to reinforce the clamping sleeve 122, so that the two are integrated into an installation structure. At the same time, the clamping sleeve 122 is also reinforced on the inside of the fixed block 121 by bolts, and the fixed block 121 and the displacement block 507 are also reinforced together by screws, so that the displacement block 507 does not change the vertical angle of the pulling roller 124 and the traction roller 125 installed in the upper and lower end openings of the double hole rod 123 during displacement. At the same time, since the positioning module 12 is wrapped with an external tape on the inside, the external tape can be tightened or loosened when the positioning module 12 moves forward and backward. When producing small specifications, the positioning module 12 will move forward to tighten the slack of the external tape caused by the contraction of the trajectory adjustment module 3, and when producing large specifications, the positioning module 12 will move backward to slowly release the tightness of the external tape caused by the expansion of the trajectory adjustment module 3, so that the external tape always maintains a stable tightness.

[0074] A method for using a paper-clip cotton roll felt binding and winding wire film equipment, comprising the following steps:

[0075] Step one, before starting work, according to the production specifications of the paper-clip cotton roll felt, such as producing more than eight hundred millimeter specifications, the servo motor 301 in the trajectory adjustment module 3 is started to work by the external operation table, wherein the external operation table can be an existing known computer equipment, the rotation of the servo motor 301 drives the screw rod 302 to rotate synchronously, thereby driving the adjustment block 303 and the butt flange 304 to expand and displace along the slot inside the half-round frame 2 The support rod 204, thereby adjusting the track radius of the plurality of arc-shaped distribution conveying rollers 205 to expand, expanding the arc of the external tape wrapped around the plurality of conveying rollers 205, providing stable multi-point support for the external tape below the plurality of conveying rollers 205, and when producing less than eight hundred millimeter specifications, the above operation is reversed, and the arc of the external tape supported by the plurality of conveying rollers 205 is reduced;

[0076] Step two, when the trajectory adjustment module 3 is adjusted, the tension module 5 starts to work, the tension motor 505 in the tension module 5 drives the tension screw 506 to rotate, the displacement block 507 moves forward and backward along the longitudinal groove 504, and the displacement block 507 and the fixed block 121 are fastened together by screws, so as to drive the positioning module 12 to move synchronously along the displacement direction and angle of the displacement block 507, and since the positioning module 12 is wrapped by the external winding tape on the inside, the external winding tape can be tightened or loosened when the positioning module 12 moves forward and backward, wherein the positioning module 12 moves forward to tighten the looseness of the external winding tape caused by the contraction of the trajectory adjustment module 3 during small specification production, and the positioning module 12 moves backward to slowly release the tightness of the external winding tape caused by the expansion of the trajectory adjustment module 3 during large specification production, so that the external winding tape always maintains a stable tension;

[0077] Step three, when the tension module 5 cooperates with the positioning module 12 to complete the tension adjustment of the external winding tape, the pressure holding module 4 starts to work, the pressure holding motor 404 drives the front end transmission shaft to rotate, thereby driving the lifting block 405 to move up and down in the lifting groove 402, so as to drive the pressure holding wheel 406 installed on the outside of the lifting block 405 to move synchronously, the pressure holding wheel 406 is pressed against the upper part of the external winding tape, so that the external winding tape wrapped around the outer ends of the plurality of conveying rollers 205, the guide rollers 102, the pulling rollers 124 and the traction rollers 125 can always maintain a suitable angle to convey the paper cotton roll felt, so that the tangent of the motion trajectory of the paper cotton roll felt and the film material is consistent, and the two can be better adhered to reduce the probability of forming a horn on both sides during subsequent winding, and to reduce the problem of air bubbles and wrinkles generated when the film and the paper cotton roll felt are wound and rolled;

[0078] Step four, when the conveyed paper cotton roll felt enters the inside of the winding machine 10, the winding structure in the winding machine 10 winds the paper cotton roll felt into a roll, cooperates with the adhesive tape sleeved on the front end round rod of the winding machine 10 to complete the binding and winding work, and after the binding and winding is completed, the winding machine 10 is discharged through the discharging structure on the rear side of the winding machine 10;

[0079] Step five, through the setting of the ground rail 6, which is laid on both sides of the tension module 5, and then the front module 7 is displaced along the ground rail 6, and the front module 7 is slid to the upper side of the tension module 5, and is attached to the front end of the conveying chassis 1, leaving a suitable gap between each other, and the external tape wrapped around the outer end of the plurality of conveying rollers 205, guide rollers 102, pulling rollers 124 and traction rollers 125, in cooperation with the trajectory adjusting module 3 to form a complete circular arc winding conveying structure. Compared with the traditional linear winding conveying equipment which requires an area of eight meters, the circular arc winding conveying structure can compress the total length of the occupied area to within five meters, reducing the space occupancy rate of the equipment, suitable for small and medium-sized building material factories with insufficient workshop width, secondly, through the setting of the ground rail 6, the front module 7 is designed to be movable, which is more convenient and fast when maintenance is needed in the future. At the same time, the length and size of the front module 7 can be added according to the actual production demand, which provides convenience for subsequent equipment arrangement.

[0080] Step six, through the setting of the film placing support 9, the bottom film material can be placed on the inside for installation to facilitate film placement in subsequent production. Through the setting of the cutting module 8, since the bearing table 806 inside is consistent with the conveying height of the front module 7, only when the paper cotton roll felt reaches the appropriate length, the cutting knife 805 driven by the cutting motor 804 can be displaced downward to complete the cutting work of the paper cotton roll felt.

[0081] The motors used in this paper are all reversible AC asynchronous motors, which are the most commonly used in existing industrial scenarios.

[0082] The technical scheme provided by the present application has the following working principle: firstly, before starting work, according to the production specification of the paper-clip cotton roll felt, the servo motor 301 in the track adjusting module 3 is started to work under the control of the external operation table, the lead screw 302 is driven to rotate synchronously by the servo motor 301, so as to drive the adjusting block 303 and the butt flange 304 to expand or contract along the slot in the half-round frame 2, so as to adjust the track radius of the plurality of arc-shaped distribution conveying rollers 205 assembled with the butt flange 304, and the track radius is expanded or contracted to reach the appropriate track radius, then the tensioning module 5 is started to work, the tensioning screw 506 is driven to rotate by the tensioning motor 505 in the tensioning module 5, the displacement block 507 moves forward and backward along the longitudinal slot 504, the displacement block 507 and the fixed block 121 are fastened together by screws, so as to drive the positioning module 12 to move synchronously along the displacement direction and angle of the displacement block 507, at the same time, since the positioning module 12 is wrapped by the external tape on the inside, the external tape can be tightened or loosened when the positioning module 12 moves forward and backward, wherein the positioning module 12 moves forward to tighten the looseness of the external tape caused by the contraction of the track adjusting module 3 when the small specification production is carried out, and the positioning module 12 moves backward to slowly release the tightness of the external tape caused by the expansion of the track adjusting module 3 when the large specification production is carried out, then the pressing motor 404 is started to work, so as to drive the lifting block 405 penetrated by the transmission shaft to move up and down in the lifting groove 402, so as to drive the pressing wheel 406 installed on the outside of the lifting block 405 to move synchronously, the pressing wheel 406 is pressed against the upper part of the external tape, so that the external tape wrapped around the plurality of conveying rollers 205, the guide roller 102, the pulling roller 124 and the traction roller 125 can always maintain a proper angle to convey the paper-clip cotton roll felt, when the paper-clip cotton roll felt is conveyed into the inside of the winding machine 10, the paper-clip cotton roll felt is wound into a roll by the winding structure in the inside of the winding machine 10, and the rubber belt sleeved on the front end rod of the winding machine 10 is used for binding and winding work, after the binding and winding work is completed, the paper-clip cotton roll felt is discharged through the discharging structure on the rear side of the winding machine 10, and when the paper-clip cotton roll felt reaches a proper length, the cutting knife 805 is driven to move downward by the cutting motor 804 to complete the cutting work of the paper-clip cotton roll felt.

[0083] The present application covers any alternatives, modifications, equivalent methods and schemes made on the essence and scope of the present application. In order to make the public have a thorough understanding of the present application, specific details are described in the following preferred embodiments of the present application, and the present application can also be completely understood without the description of these details for those skilled in the art. In addition, in order to avoid unnecessary confusion to the essence of the present application, well-known methods, processes, procedures, elements and circuits are not described in detail.

[0084] The above description is only the preferred embodiment of the present application, it should be pointed out that for those skilled in the art, without departing from the principles of the present application, can make several improvements and refinements, these improvements and refinements should also be considered as the protection scope of the present application.

Claims

1. A bale wrapping line film apparatus for bale wrapping paper, characterized by, The utility model provides a cutting film conveying device, including conveying chassis, the middle part of upper end of conveying chassis is equipped with semicircle frame, the inboard of upper end of semicircle frame is equipped with track adjusting module, the front and back of upper end of conveying chassis is equipped with pressure holding module, the below of front end of conveying chassis is equipped with tight module, the left and right sides of front of conveying chassis is equipped with ground rail, the inboard of upper end of ground rail is equipped with front module, the above of front end of front module is equipped with cutting module, the below of cutting module is equipped with film placing support, the rear side of conveying chassis is equipped with winding machine, the left and right sides in semicircle frame are equipped with fixed pressing block, the inboard of upper end of tight module is equipped with positioning module, the right side of left clamping plate is equipped with right clamping plate, the upper end of left clamping plate and right clamping plate is equipped with arcuate rod, the inboard of arcuate rod is equipped with support rod, the above of middle part of left clamping plate and right clamping plate is equipped with conveying roller, The track adjusting module includes a servo motor, a lead screw, an adjusting block and a butt flange, the front end of the servo motor is provided with the lead screw, the outer end of the lead screw is threadedly sleeved with the adjusting block, and the front end of the adjusting block is provided with the butt flange, the conveying roller is installed in the middle region of the left-right symmetrically distributed support rods, the left and right ends of the conveying roller are provided with butt joint discs, the butt joint discs and the butt flanges in the track adjusting module are mutually spliced and are reinforced by bolt assembly, the upper end of the left clamping plate and the right clamping plate is provided with a circular structure, the inside of the circular structure is hollow, the inside of the circular structure is in communication with the bottom inboard of the support rod, and the track adjusting module is installed in the inboard by the circular structure in the upper end of the left clamping plate and the right clamping plate cooperating with the cylindrical cavity of the bottom inboard of the support rod and the through sliding slot opening in the upper end, The pressure holding module includes a pressure holding base, a lifting groove, a sealing plate, a pressure holding motor, a lifting block, a pressure holding wheel and a side plate, the inboard of the upper end of the pressure holding base is provided with the lifting groove, the upper end of the pressure holding base is provided with the sealing plate, the middle part of the upper end of the sealing plate is provided with the pressure holding motor, the inside of the lifting groove is provided with the lifting block, the lower part of the left end of the lifting block is provided with the pressure holding wheel, and the left side of the pressure holding wheel is provided with the side plate, The tight module includes a longitudinal rod, a support column, a boss, a longitudinal groove, a tight motor, a tight screw rod, a displacement block and an anti-wear bearing, the lower end of the longitudinal rod is provided with the support column, the middle part of the front end of the longitudinal rod is provided with the boss, the inboard of the upper end of the longitudinal rod is provided with the longitudinal groove, the upper end of the boss is provided with the tight motor, the transmission end of the tight motor is provided with the tight screw rod, the outer end of the tight screw rod is threadedly sleeved with the displacement block, and the rear end of the tight screw rod is provided with the anti-wear bearing, The front module includes a concave-convex plate, a reinforcing block, a rotating roller, a rotating belt, a rotating motor and a rotating guide wheel, the upper end of the concave-convex plate is provided with the reinforcing block, the inboard of the reinforcing block is sleeved with the rotating roller, the outer end of the rotating roller is provided with the rotating belt, the left side below the reinforcing block is provided with the rotating motor, and the front end of the rotating motor is provided with the rotating guide wheel. The positioning module comprises a fixed block, a clamping sleeve, a double-hole rod, a pulling roller and a traction roller, the inner side of the fixed block is provided with the clamping sleeve, the front end of the clamping sleeve is provided with the double-hole rod, the inner side of the upper end of the double-hole rod is provided with the pulling roller, and the inner side of the lower end of the double-hole rod is provided with the traction roller; the fixed block and the displacement block are also fastened together through screws; in working, according to the production specification of the paper-clip cotton roll felt, the track adjustment module starts to work to expand or shrink the external tape arc wrapped around the multiple conveying rollers; after the track adjustment module is adjusted, the tension module starts to work to drive the positioning module to move forward and backward, at the same time, since the positioning module is wrapped by the external tape on the inner side, the external tape is tightened or loosened under the condition that the positioning module moves forward and backward, so that the external tape always maintains a stable tension, after the tension of the external tape is adjusted, the pressing module starts to work to cooperate with the fixed pressing block to make the external tape always maintain a proper angle to convey the paper-clip cotton roll felt, so that the tangential line of the movement track of the paper-clip cotton roll felt and the film material is consistent, and the two are better adhered.

2. The paper- and-cotton-roll-batting strapping and wrapping thread film apparatus according to claim 1, characterized by, The conveying chassis comprises a support frame, guide rollers, a conveying motor, conveying wheels and cross bars, the front and rear sides of the upper end of the support frame are symmetrically provided with guide rollers, the lower side of the guide roller is provided with a conveying motor, the right side of the outer end of the guide roller is provided with a conveying wheel, and the front and rear sides of the inside of the support frame are symmetrically provided with cross bars.

3. The baling twine film apparatus for baling paper roll batts of claim 2, wherein, The semi-circular frame further comprises heat dissipation motors and heat dissipation screens, the upper middle part of the right end of the left clamping plate and the upper middle part of the left end of the right clamping plate are both provided with heat dissipation motors, and the left middle part of the outer end of the left clamping plate and the right middle part of the outer end of the right clamping plate are both provided with heat dissipation screens.

4. The baling twine film apparatus for baling paper roll batts of claim 3, wherein, The cutting module comprises a cutting frame, a closing plate, a rectangular block, a cutting motor, a cutting knife and a bearing table, the left and right sides of the upper end of the cutting frame are provided with closing plates, the lower side of the closing plate is provided with a rectangular block, the middle part of the upper end of the closing plate is provided with a cutting motor, the inner side of the upper part of the cutting frame is provided with a cutting knife, and the lower side of the cutting knife is provided with a bearing table.

5. A paper-clip cotton roll felt binding and winding device according to claim 4, comprising the following steps: Method of using a linear film apparatus, characterized in that Step one, before starting to work, according to the production specification of the paper-clip cotton roll felt, when the production specification is greater than 800 mm, the servo motor in the track adjustment module is started to work by the external operation table, the synchronous rotation of the servo motor drives the screw rod to rotate, thereby driving the adjustment block and the butt flange to expand and displace along the slot in the middle support rod of the semi-circular frame, thereby adjusting the track radius of the multiple arc-shaped distribution conveying rollers to expand, the arc radius of the external tape wrapped around the multiple conveying rollers is expanded, and the multiple conveying rollers provide stable multi-point support under the external tape, and when the production specification is less than 800 mm, the above operation is reversed, and the arc radius of the external tape supported by the multiple conveying rollers is reduced. ​ Step two, when the trajectory adjustment module is adjusted, the tension module starts to work, the tension motor in the tension module drives the tension screw to rotate, the displacement block moves forward and backward along the longitudinal groove, and the displacement block and the fixed block are fastened together by screws. It can also drive the positioning module to move synchronously along the displacement direction and angle of the displacement block. At the same time, since the positioning module is wrapped in the outer side of the external tape, the external tape can be tightened or loosened when the positioning module moves forward and backward. When the positioning module moves forward, it can tighten the slack of the external tape caused by the contraction of the trajectory adjustment module. When it encounters large-scale production, the positioning module will move backward, slowly releasing the tightness of the external tape caused by the expansion of the trajectory adjustment module, so that the external tape always maintains a stable tension; Step three, when the tension module cooperates with the positioning module to adjust the tension of the external tape, the pressure holding module starts to work, the pressure holding motor drives the front end transmission shaft to rotate, and the lifting block moves up and down in the lifting groove, so as to drive the pressure holding wheel installed on the outer side of the lifting block to move synchronously, so that the pressure holding wheel can be pressed on the upper side of the external tape, so that the external tape wrapped around the outer end of the plurality of conveying rollers, guide rollers, pulling rollers and traction rollers can always maintain a suitable angle to convey the paper cotton roll felt, so that the tangent of the motion trajectory of the whole film and the paper cotton roll felt can be consistent, so that they can be better matched, so as to reduce the probability of forming a horn on both sides during subsequent winding, and reduce the problem of air bubbles and wrinkles caused by the winding of the film and the paper cotton roll felt; Step four, when the conveyed paper cotton roll felt enters the inside of the winding machine, the paper cotton roll felt is wound into a roll by the winding structure inside the winding machine, and the rubber belt on the front end of the winding machine is completed. After the binding and winding are completed, the discharge structure on the rear side of the winding machine discharges it; Step five, by setting the ground rail, it is laid on the left and right sides of the tension module, and then the front module is displaced along the ground rail, and the front module is slid to the upper side of the tension module, and the front end of the conveying chassis is matched, leaving a suitable distance, and the external tape wrapped around the outer end of the plurality of conveying rollers, guide rollers, pulling rollers and traction rollers, and the trajectory adjustment module form a complete circular arc winding and conveying structure; Step six, by setting the film placing support, the bottom film can be placed on the inside for installation, so as to place the film during subsequent production. By setting the cutting module, since the carrying table on the inside is consistent with the conveying height of the front module, only the cutting knife needs to be displaced downward by the cutting motor after the paper cotton roll felt reaches the appropriate length to complete the cutting work of the paper cotton roll felt.

Citation Information

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