Modular cutting machine for curtain production

By using the limiting structure and adjustment components of the modular cutting machine, the problems of unidirectional control and uneven cutting in traditional curtain cutting machines are solved, realizing multi-directional tensioning and uniform cutting of curtains, thus improving cutting efficiency and accuracy.

CN116949792BActive Publication Date: 2026-04-28SHAOXING YUEXIU STRAPS
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHAOXING YUEXIU STRAPS
Filing Date
2023-08-09
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Traditional curtain cutting machines can only be controlled in one direction, which cannot meet the production needs of curtains in different directions, and the cutting is uneven.

Method used

The modular cutting machine includes a modular limiting structure, a smoothing adjustment component, and a tensioning adjustment component. The motor drives the active gear plate and gear ring to rotate the cutting blade mounting frame. Combined with a negative pressure fan and an adsorption plate, it realizes the automated stretching and cutting of the curtains.

Benefits of technology

It enables multi-directional tension adjustment and uniform cutting of curtains, improving cutting efficiency and precision.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a curtain production modular cutting machine, which comprises a module limiting treatment structure and a curtain. The curtain is arranged at the transverse position of the module limiting treatment structure and is slidably arranged on the module limiting treatment structure. The module limiting treatment structure limits the curtain and facilitates subsequent cutting. The module limiting treatment structure comprises an adjusting smooth component and an adjusting tension component. The adjusting tension component and the adjusting smooth component are rotationally adjusted. The adjusting tension component can be rotationally adjusted through the bottom of the adjusting smooth component. The adjusting smooth component comprises a smooth treatment part, a supporting tray, a first motor and a driving gear disc. The side end of the supporting tray is fixedly connected with the first motor. The first motor is fixedly connected with the driving gear disc. The curtain production modular cutting machine is provided with the module limiting treatment structure, realizes the limiting purpose of the curtain and facilitates subsequent cutting.
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Description

Technical Field

[0001] This invention relates to the field of curtain production equipment technology, specifically a modular cutting machine for curtain production. Background Technology

[0002] Curtain cutting machines can perform cutting processes during curtain production, enabling curtains to be cut and shaped quickly. Furthermore, curtain cutting machines can be automated, achieving efficient curtain processing and improving production efficiency.

[0003] According to Chinese Patent Publication No. CN217678283U, an equidistant cutting device for curtain fabric production is disclosed, comprising: a fabric feeding roller frame fixedly connected to the rear end of the cutting machine body, and a fabric collection groove formed on the upper surface of the cutting machine body; further comprising: a fabric feeding plate fixedly connected to the connection between the fabric feeding roller frame and the cutting machine body, and a fabric guide frame provided above the fabric feeding plate; a cutting main frame spanning and installed across the front edge of the upper surface of the fabric guide frame, and a cutting machine slidably connected to the front side of the cutting main frame, and a cutting blade installed at the bottom end of the cutting machine. This equidistant cutting device for curtain fabric production can realize automated equidistant cutting of curtain fabric, maintain the consistency of the cut dimensions of the curtain fabric, simulate manual operation to smooth the edges of the pulled curtain fabric, and efficiently and conveniently collect the cut curtain fabric, thus improving the cutting efficiency of curtain fabric production.

[0004] However, the following problems exist in the use of current curtain production cutting machines and the equipment mentioned in the above cases: Traditional curtain production cutting machines adopt positioning cutting, and can perform equidistant cutting operations through the operation of the cutting blade. However, this structure often only allows for unidirectional control during operation, which cannot meet the production coordination of curtains in different directions. At the same time, it is also inconvenient to perform tension cutting of curtains, resulting in uneven cutting. Improvements are needed. Summary of the Invention

[0005] The purpose of this invention is to provide a modular cutting machine for curtain production to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a modular cutting machine for curtain production, comprising a modular limiting structure and a curtain, wherein the curtain is provided at a lateral position of the modular limiting structure, and the curtain is slidably disposed on the modular limiting structure;

[0007] The module limiting structure limits the position of the curtain, making subsequent cutting easier.

[0008] The module limiting processing structure includes an adjusting smoothing component and an adjusting tensioning component. The adjusting tensioning component and the adjusting smoothing component are configured for rotational adjustment. The adjusting tensioning component can be adjusted by rotating the bottom of the adjusting smoothing component.

[0009] The smoothing adjustment component includes a smoothing treatment part, a support tray, a first motor, and a drive gear. The first motor is fixedly connected to the side end of the support tray, and the drive gear is fixedly connected to the first motor. The smoothing treatment part is engaged with the upper end of the drive gear, and the smoothing treatment part can rotate and adjust on the support tray.

[0010] The smoothing process section performs adjustable control, enabling the limit tension adjustment of the curtains;

[0011] The tensioning adjustment component includes a connecting rod frame, a first telescopic guide rod, a first cylinder, a rotating adjustment platform, a second telescopic guide rod, and a second cylinder. The side end of the second cylinder is telescopically connected to the rotating adjustment platform via the second telescopic guide rod. The upper end of the second telescopic guide rod is fixedly mounted with the first cylinder. The upper end of the first cylinder is telescopically connected to the connecting rod frame via the first telescopic guide rod. A positioning drive seat is fixedly connected to the side end of the connecting rod frame. A movable rod frame is hinged to the upper front end of the positioning drive seat. A rotating bonding roller is rotatably connected to the front end of the movable rod frame. A negative pressure fan is fixedly mounted to the lower end of the positioning drive seat. An adsorption plate is connected to the negative pressure fan. The adsorption plate is connected to... A gap is provided between the rotating bonding rollers. By installing and adjusting the tensioning component, the second cylinder inside the tensioning component can drive the rotating adjustment table to extend and retract via the second telescopic guide rod. The upper end of the first cylinder can drive the connecting rod frame to extend and retract via the first telescopic guide rod, thereby changing the position of the adsorption plate, negative pressure fan, rotating bonding rollers, movable rod frame, and positioning drive seat. The adsorption plate and negative pressure fan are connected to adsorb the curtains. At the same time, the movable rod frame can rotate and adjust with the positioning drive seat so that the rotating bonding rollers contact the curtains, which can lift the curtains to the designated position, facilitating automated stretching and enabling continuous cutting of the curtains.

[0012] Specifically, the smoothing process includes a cutting blade mounting bracket, a control processing mechanism, a docking bracket, and a toothed ring. The upper end of the toothed ring is fixedly connected to the docking bracket, the upper end of the docking bracket is fixedly connected to the control processing mechanism, and the upper center of the control processing mechanism is fixedly connected to the cutting blade mounting bracket. The cutting blade mounting bracket is used for mounting the cutting blade.

[0013] Specifically, the control processing mechanism includes a positioning plate, a connecting plate, a first mating gear plate, a second mating gear plate, a third mating gear plate, a contact wheel, an assembly plate, a contact wheel, a cam, and a control power rod. The positioning plate is fixedly connected to the side end of the connecting plate, and a second cylinder is fixedly connected to the center of the positioning plate. A plate body is hinged to the second cylinder, and a second motor is fixedly installed at the center of the plate body. An active control rod is fixedly connected to the side end of the second motor through the plate body. A fourth mating gear plate is fixedly connected to the active control rod. A second hinge frame is fixedly connected to the lower end of the plate body. A control cylinder is telescopically hinged to the upper left side of the second hinge frame. A first hinge frame is hinged to the upper end of the control cylinder, and the first hinge frame is fixedly connected to the connecting plate.

[0014] Specifically, the rear end of the fourth mating gear plate is engaged with a first mating gear plate, the center of the first mating gear plate is fixedly connected with a control power rod, the center of the control power rod is fixedly connected with a cam, the side end of the cam is pressed and contacted with a contact wheel, and the contact wheel is fixed at the left side of the assembly plate.

[0015] Specifically, displacement plates are fixedly connected to the front and rear ends of the assembly plate. A spring telescopic rod is elastically connected to the left side of the displacement plate. A limit key is provided on the right side of the active control rod, and a push block is provided on the limit key. The push block is fixedly connected to the displacement plate. By installing and adjusting the smoothing component, the tension adjustment of the curtain is assisted. The first motor inside the smoothing component can drive the active gear plate to rotate, which drives the gear ring to rotate on the support tray, thereby changing the position of the cutting blade mounting bracket, the control processing mechanism, and the docking bracket, so as to realize the coordinated tension adjustment of the curtain at different positions. At the same time, the upper end of the plate is limited by the installation of a hinge bracket. The connection allows the panel to rotate via a hinge, while the control cylinder can extend and retract, causing the panel to move the overall side structure and adjust the tilt angle. Simultaneously, a cam rotates via a drive, causing a control rod to press against a contact wheel. This allows the displacement plate to extend and retract via a spring-loaded telescopic rod, which in turn moves the push block and the second mating gear on the active control rod. The rotation of the second mating gear drives the third mating gear and the bonding wheel to rotate. The rotation of the bonding wheel allows for the tension adjustment of the curtain, ensuring a tighter fit and more even subsequent cutting.

[0016] Specifically, the active control lever drives a second mating gear plate through one side of the push block, and the second mating gear plate is rotatably connected to the push block. The push block limits the second mating gear plate so that the second mating gear plate can only rotate in the center of the push block. The active control lever drives the second mating gear plate to rotate through the push block. A third mating gear plate is meshed with the rear end of the second mating gear plate. A contact wheel is fixedly connected to the rear end of the third mating gear plate. The third mating gear plate, the contact wheel, and the right side of the displacement plate are connected.

[0017] Specifically, the extension and retraction of the control cylinder enables the plate to rotate and adjust via the mounting hinge, changing the tilt angle. The second motor drives the fourth and second mating gears to rotate via the active control lever. The rotation of the fourth mating gear drives the first mating gear to rotate, thereby driving the cam and control power lever to rotate, so that the cam drives the pressing contact wheel.

[0018] Specifically, the contact wheel is limited by the assembly plate and the displacement plate. By pressing, the displacement plate can be extended and retracted by the spring telescopic rod, and the push block and the second mating gear plate can be slidably adjusted on the active control rod. At the same time, the third mating gear plate, the contact wheel, and the assembly plate follow the movement.

[0019] Specifically, the second mating toothed disc drives the bonding wheel to rotate on the displacement plate via the third mating toothed disc, and the bonding wheel can contact the curtain to adjust the tension of the curtain.

[0020] Specifically, the active gear plate meshes with the gear ring, and the gear ring can drive the cutting blade mounting bracket, the control and processing mechanism, and the docking bracket to rotate on the support tray. The lower end of the support tray is rotatably connected to the second cylinder, and the rotation of the second cylinder can drive the connecting rod bracket, the first telescopic guide rod, the first cylinder, the rotating adjustment table, and the second telescopic guide rod to rotate as a whole.

[0021] Compared with the prior art, the beneficial effects of the present invention are:

[0022] 1. By installing and adjusting the smoothing component, the tension of the curtains can be adjusted. The first motor inside the smoothing component drives the active gear plate to rotate, which in turn drives the gear ring to rotate on the support tray. This changes the position of the cutting blade mounting bracket, control processing mechanism, and docking bracket, enabling tension adjustment of the curtains at different positions. Simultaneously, the upper end of the panel is limited by a mounting hinge, allowing the panel to rotate. The control cylinder can also extend and retract, causing the panel to move the entire side structure and adjust the tilt angle. A cam, driven by a motor, rotates, causing the control rod to press against the contact wheel. This allows the displacement plate to extend and retract via a spring telescopic rod, which in turn moves the push block and the second mating gear plate on the active control rod. When the second mating gear plate rotates, it drives the third mating gear plate and the bonding wheel to rotate. The rotation of the bonding wheel enables tension adjustment of the curtains, ensuring proper tautness and resulting in more even cutting.

[0023] Second, by installing and adjusting the tensioning component, the second cylinder inside the tensioning component can drive the rotating adjustment table to extend and retract via the second telescopic guide rod. The upper end of the first cylinder can drive the connecting rod frame to extend and retract via the first telescopic guide rod, thereby changing the position of the adsorption plate, negative pressure fan, rotating bonding roller, movable rod frame, and positioning drive seat. The adsorption plate and negative pressure fan are connected to adsorb the curtain. At the same time, the movable rod frame can rotate and adjust with the positioning drive seat so that the rotating bonding roller contacts the curtain, which can lift the curtain and bring it to the designated position for automatic stretching, allowing the curtain to be continuously cut. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the main structure of the present invention;

[0025] Figure 2 This is a schematic diagram of the module limiting processing structure in this invention;

[0026] Figure 3 This is a schematic diagram of the smoothness adjustment component in this invention;

[0027] Figure 4 This is an exploded view of the smoothness adjustment component in this invention;

[0028] Figure 5 This is a schematic diagram of the smoothing treatment section in this invention;

[0029] Figure 6 This is a schematic diagram of the control and processing mechanism in this invention;

[0030] Figure 7 For the present invention Figure 6 Enlarged view of point A in the image;

[0031] Figure 8 For the present invention Figure 6 Enlarged view of point B in the image;

[0032] Figure 9 This is a schematic diagram of the structure of the tensioning adjustment component in this invention;

[0033] Figure 10 For the present invention Figure 9 Enlarged view of point C in the image.

[0034] In the diagram: 1-Module limiting structure; 2-Curtain; 3-Adjusting smoothing component; 4-Adjusting tensioning component; 5-Smoothing section; 6-Supporting tray; 7-First motor; 8-Drive gear plate; 9-Cut blade mounting bracket; 10-Control processing mechanism; 11-Connecting frame; 12-Gear ring; 13-Positioning plate; 14-Connecting plate; 15-First mating gear plate; 16-Second mating gear plate; 17-Third mating gear plate; 18-Fitting wheel; 19-Assembly plate; 20-Contact wheel; 21-Cam; 22-Control power rod; 23-First hinge; 24-Control cylinder; 25-Second hinge; 26-Second motor; 27-Active control rod; 28-Fourth mating gear plate; 29-Mounting hinge; 30-Spring telescopic rod; 31-Limit key; 32-Push block; 33-Displacement plate; 34-Connecting rod frame; 35-First telescopic guide rod; 36-First cylinder; 37-Rotating adjustment table; 38-Second telescopic guide rod; 39-Second cylinder; 40-Adsorption plate; 41-Negative pressure fan; 42-Rotating bonding roller; 43-Modular rod frame; 44-Positioning drive seat. Detailed Implementation

[0035] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0036] Please see Figure 1-10 The present invention provides a technical solution: a modular cutting machine for curtain production, including a modular limiting structure 1 and a curtain 2. The curtain 2 is provided at the lateral position of the modular limiting structure 1, and the curtain 2 is slidably set on the modular limiting structure 1.

[0037] The module limiting structure 1 limits the position of the curtain 2, making it easier to cut later.

[0038] The module limiting processing structure 1 includes an adjusting smoothing component 3 and an adjusting tensioning component 4. The adjusting tensioning component 4 and the adjusting smoothing component 3 are set by rotation adjustment. The adjusting tensioning component 4 can be adjusted by rotating the bottom of the adjusting smoothing component 3. The adjusting tensioning component 4 can be adjusted by rotating at the lower end of the adjusting smoothing component 3. At the same time, the internal structure of the adjusting smoothing component 3 can also be adjusted by rotation, thereby realizing the tension adjustment of the curtain 2.

[0039] The smoothing adjustment component 3 includes a smoothing treatment part 5, a support tray 6, a first motor 7, and a drive gear 8. The first motor 7 is fixedly connected to the side end of the support tray 6, and the drive gear 8 is fixedly connected to the first motor 7. The smoothing treatment part 5 is meshed with the upper end of the drive gear 8, and the smoothing treatment part 5 can rotate and adjust on the support tray 6. The tensioning adjustment component 4 can rotate and adjust at the lower end of the smoothing adjustment component 3. At the same time, the internal structure of the smoothing adjustment component 3 can also rotate and adjust, thereby realizing the tension adjustment of the curtain 2.

[0040] The smoothing section 5 performs adjustable control, enabling the limit tension adjustment of the curtain 2;

[0041] The tensioning adjustment component 4 includes a connecting rod frame 34, a first telescopic guide rod 35, a first cylinder 36, a rotating adjustment table 37, a second telescopic guide rod 38, and a second cylinder 39. The side end of the second cylinder 39 is telescopically connected to the rotating adjustment table 37 via the second telescopic guide rod 38. The upper end of the second telescopic guide rod 38 is fixedly mounted with the first cylinder 36. The upper end of the first cylinder 36 is telescopically connected to the connecting rod frame 34 via the first telescopic guide rod 35. A positioning drive seat 44 is fixedly connected to the side end of the connecting rod frame 34. A movable rod frame 43 is hinged to the upper front end of the positioning drive seat 44. A rotating bonding roller 42 is rotatably connected to the front end of the movable rod frame 43. A negative pressure fan 41 is fixedly mounted at the lower end of the positioning drive seat 44. An adsorption plate 40 is connected to the upper part of the curtain 2. There is a gap between the adsorption plate 40 and the rotating bonding roller 42. The second cylinder 39 can drive the rotating adjustment table 37 to extend and retract through the second telescopic guide rod 38. The first cylinder 36 can drive the connecting rod frame 34 and the first telescopic guide rod 35 to follow the adjustment. The curtain 2 passes through the adsorption plate 40 and the rotating bonding roller 42. The negative pressure fan 41 works to adsorb the curtain 2 through the adsorption plate 40. The positioning drive seat 44 can drive the movable rod frame 43 to rotate and adjust, so that the rotating bonding roller 42 can be pressed down, so that the rotating bonding roller 42 contacts the curtain 2, causing the curtain 2 to stretch and reach the designated position, which is convenient for subsequent cutting.

[0042] The smoothing section 5 includes a cutting blade mounting bracket 9, a control processing mechanism 10, a docking frame 11, and a toothed ring 12. The upper end of the toothed ring 12 is fixedly connected to the docking frame 11, and the upper end of the docking frame 11 is fixedly connected to the control processing mechanism 10. The upper center of the control processing mechanism 10 is fixedly connected to the cutting blade mounting bracket 9. The cutting blade mounting bracket 9 is used for mounting the cutting blade. Driven by the active toothed disc 8, the toothed ring 12 can rotate around the support tray 6. When the toothed ring 12 rotates, it drives the upper cutting blade mounting bracket 9, the control processing mechanism 10, and the docking frame 11 to move and adjust in coordination. The cutting blade can be mounted on the cutting blade mounting bracket 9, and the cutting blade adopts the existing technology setting. When mounted on the cutting blade mounting bracket 9, it can perform longitudinal cutting processing on the cutting blade mounting bracket 9.

[0043] The control processing mechanism 10 includes a positioning plate 13, a connecting plate 14, a first mating gear plate 15, a second mating gear plate 16, a third mating gear plate 17, a contact wheel 18, an assembly plate 19, a contact wheel 20, a cam 21, and a control power rod 22. The positioning plate 13 is fixedly connected to the side end of the connecting plate 14. A second cylinder 39 is fixedly connected to the center of the positioning plate 13. A plate body is hinged to the second cylinder 39. A second motor 26 is fixedly installed at the center of the plate body. An active control rod 27 is fixedly connected to the side end of the second motor 26 through the plate body. A fourth mating gear plate 28 is fixedly connected to the active control rod 27. A second hinge 25 is fixedly connected to the lower end of the plate body. A control cylinder 24 is telescopically hinged to the upper left side of the second hinge 25. A first hinge 23 is hinged to the upper end of the control cylinder 24. The first hinge 23 is fixedly connected to the connecting plate 14. The positioning plate 13 and the connecting plate 14 are fixed. The connecting plate 14 is fixed to the first hinge 23. The first hinge 23 is hinged to the control cylinder 24. The bottom of the control cylinder 24 is hinged to the second hinge 25. When the control cylinder 24 extends or retracts, it can drive the second hinge 25 and the plate to move and adjust. The upper end of the plate can be rotated and adjusted by installing the hinge 29, thereby changing the overall position of the second motor 26, the active control rod 27, the fourth mating gear 28, the first mating gear 15, the second mating gear 16, the third mating gear 17, the contact wheel 18, the assembly plate 19, the contact wheel 20, the cam 21, the control power rod 22, the spring telescopic rod 30, the limit key 31, the push block 32, and the displacement plate 33.

[0044] The rear end of the fourth mating gear 28 is engaged with the first mating gear 15. A control power rod 22 is fixedly connected to the center of the first mating gear 15. A cam 21 is fixedly connected to the center of the control power rod 22. A contact wheel 20 is pressed against the side end of the cam 21. The contact wheel 20 is fixed to the left side of the assembly plate 19. The positioning plate 13 and connecting plate 14 are fixed together. The connecting plate 14 is fixed to the first hinge 23. The first hinge 23 is hinged to the control cylinder 24. The bottom of the control cylinder 24 is connected to the second hinge 23. 5. The hinge setting allows the second hinge frame 25 and the plate to move and adjust when the control cylinder 24 extends or retracts. The upper end of the plate can be rotated and adjusted by installing the hinge frame 29, thereby changing the overall position of the second motor 26, the active control rod 27, the fourth mating gear plate 28, the first mating gear plate 15, the second mating gear plate 16, the third mating gear plate 17, the contact wheel 18, the assembly plate 19, the contact wheel 20, the cam 21, the control power rod 22, the spring telescopic rod 30, the limit key 31, the push block 32, and the displacement plate 33.

[0045] The front and rear ends of the assembly plate 19 are fixedly connected to the displacement plate 33. The left side of the displacement plate 33 is elastically telescopically connected to the spring telescopic rod 30. The right side of the active control rod 27 is provided with a limit key 31. The limit key 31 is provided with a push block 32. The push block 32 is fixedly connected to the displacement plate 33.

[0046] The active control lever 27 passes through one side of the push block 32 and drives the second mating gear 16. The second mating gear 16 is rotatably connected to the push block 32. The push block 32 limits the second mating gear 16 so that the second mating gear 16 can only rotate in the center of the push block 32. The active control lever 27 passes through the push block 32 and drives the second mating gear 16 to rotate. The rear end of the second mating gear 16 is meshed with a third mating gear 17. The rear end of the third mating gear 17 is fixedly connected with a contact wheel 18. The third mating gear 17, the contact wheel 18 and the right side of the displacement plate 33 are connected.

[0047] The extension and retraction of the control cylinder 24 allows the plate to rotate and adjust via the mounting hinge 29, changing the tilt angle. The second motor 26 drives the fourth mating gear 28 and the second mating gear 16 to rotate via the active control lever 27. The rotation of the fourth mating gear 28 drives the first mating gear 15 to rotate, thereby driving the cam 21 and the control power lever 22 to rotate, so that the cam 21 drives the pressing contact wheel 20.

[0048] The contact wheel 20 is limited by the assembly plate 19 and the displacement plate 33. By pressing, the displacement plate 33 can be extended and retracted by the spring telescopic rod 30, and the push block 32 and the second mating gear 16 can slide and adjust on the active control rod 27. At the same time, the third mating gear 17, the contact wheel 18, and the assembly plate 19 follow the movement.

[0049] The second mating gear 16 drives the bonding wheel 18 to rotate on the displacement plate 33 through the third mating gear 17, and the bonding wheel 18 can contact the curtain 2 to adjust the tension of the curtain 2, which facilitates the mating adjustment work.

[0050] The active gear plate 8 meshes with the gear ring 12, which can drive the cutting blade mounting bracket 9, the control and processing mechanism 10, and the docking bracket 11 to rotate on the support plate 6. The lower end of the support plate 6 is rotatably connected to the second cylinder 39, and the rotation of the second cylinder 39 can drive the connecting rod bracket 34, the first telescopic guide rod 35, the first cylinder 36, the rotating adjustment table 37, and the second telescopic guide rod 38 to rotate as a whole.

[0051] Working principle: The user assembles and installs the modular limiting structure 1. The curtain 2 passes through the center of the modular limiting structure 1 and can be lifted through the modular limiting structure 1. At the same time, the tension of the curtain 2 can be adjusted to facilitate subsequent cutting.

[0052] The module limiting processing structure 1 is configured by combining the adjusting smoothing component 3 and the adjusting tensioning component 4. The adjusting tensioning component 4 can be rotated at the lower end of the adjusting smoothing component 3, and the internal structure of the adjusting smoothing component 3 can also be rotated, thereby realizing the tension adjustment of the curtain 2.

[0053] The smoothing adjustment component 3 is configured by combining the smoothing treatment part 5 and the support tray 6. The smoothing treatment part 5 can rotate on the support tray 6, and the tension adjustment component 4 can also rotate at the lower end of the support tray 6. The support tray 6 maintains a fixed position. The tension adjustment component 4 and the smoothing treatment part 5 can rotate at the upper and lower ends of the support tray 6, thereby changing their positions on the support tray 6. When the curtain 2 is transported through different positions, the tension adjustment component 4 and the smoothing treatment part 5 can also be adjusted.

[0054] Among them, the smooth adjustment component 3 is also configured by a combination of a first motor 7 and an active gear 8. The first motor 7 can drive the active gear 8 to rotate, and the first motor 7 is limited by the support plate 6.

[0055] Driven by the active gear plate 8, the gear ring 12 can rotate around the support plate 6. When the gear ring 12 rotates, it drives the upper cutting blade mounting frame 9, the control processing mechanism 10, and the docking frame 11 to move and adjust. The cutting blade can be installed on the cutting blade mounting frame 9, and the cutting blade adopts the existing technology setting and is installed on the cutting blade mounting frame 9, which can perform longitudinal cutting on the cutting blade mounting frame 9.

[0056] The control processing mechanism 10 is assembled from a positioning plate 13, a connecting plate 14, a first mating gear plate 15, a second mating gear plate 16, a third mating gear plate 17, a contact wheel 18, an assembly plate 19, a contact wheel 20, a cam 21, and a control power rod 22. The positioning plate 13 and the connecting plate 14 are fixed together. The connecting plate 14 is fixed to the first hinge 23. The first hinge 23 is hinged to the control cylinder 24. The bottom of the control cylinder 24 is hinged to the second hinge 25. When cylinder 24 extends or retracts, it can drive the second hinge 25 and the plate to move and adjust. The upper end of the plate can be rotated and adjusted by installing hinge 29, thereby changing the overall position of the second motor 26, active control rod 27, fourth mating gear 28, first mating gear 15, second mating gear 16, third mating gear 17, contact wheel 18, assembly plate 19, contact wheel 20, cam 21, control power rod 22, spring telescopic rod 30, limit key 31, push block 32, and displacement plate 33.

[0057] When the second motor 26 is driven, it can drive the active control lever 27 and the fourth mating gear 28 to rotate. The rotation of the fourth mating gear 28 can drive the first mating gear 15 to mesh and rotate. When the first mating gear 15 rotates, it can drive the control power lever 22 to rotate. When the control power lever 22 rotates, it can drive the cam 21 to adjust accordingly, so that the cam 21 can squeeze the contact wheel 20. The contact wheel 20 is limited by the assembly plate 19, and the assembly plate 19 is fixed to the displacement plate 33. The displacement plate 33 is fixed to the push block 32. When the contact wheel 20 is squeezed, it can drive the displacement plate 33 to extend and retract on the spring telescopic rod 30, which can change the position of the push block 32 and the second mating gear 16 on the active control lever 27 and the limit key 31. When the assembly plate 19 moves and stretches, it can drive the third mating gear 17 and the contact wheel 18 to move accordingly, and the second mating gear 16 and the third mating gear 17 are meshed and connected in real time.

[0058] When the second mating gear 16 is adjusted on the active control lever 27, the second mating gear 16 can rotate on the active control lever 27. The rotation of the second mating gear 16 drives the third mating gear 17 and the bonding wheel 18 to rotate. The bonding wheel 18 can contact the curtain 2 to realize the tension adjustment of the curtain 2.

[0059] The tensioning adjustment component 4 is assembled by a combination of a connecting rod frame 34, a first telescopic guide rod 35, a first cylinder 36, a rotating adjustment table 37, a second telescopic guide rod 38, a second cylinder 39, an adsorption plate 40, a negative pressure fan 41, a rotating bonding roller 42, a movable rod frame 43, and a positioning drive seat 44. The second cylinder 39 can drive the rotating adjustment table 37 to extend and retract via the second telescopic guide rod 38. The first cylinder 36 can drive the connecting rod frame 34 and the first telescopic guide rod 35 to follow suit. The curtain 2 passes between the adsorption plate 40 and the rotating bonding roller 42. When the negative pressure fan 41 is working, the curtain 2 is adsorbed through the adsorption plate 40. The positioning drive seat 44 can drive the movable rod frame 43 to rotate and adjust, so that the rotating bonding roller 42 can be pressed down, so that the rotating bonding roller 42 contacts the curtain 2, causing the curtain 2 to stretch and reach the designated position, which is convenient for subsequent cutting.

[0060] When needed, the user assembles the module limiting processing structure 1. First, the second cylinder 39 is rotated, causing it to rotate at the lower end of the support tray 6. Then, the first motor 7 is driven, causing the active gear plate 8 to rotate. The rotation of the active gear plate 8 causes the gear ring 12 to follow and move. When the gear ring 12 moves, it drives the cutting blade mounting bracket 9, the control processing mechanism 10, and the docking bracket 11 to adjust accordingly, thereby ensuring accurate positioning. At this time, the curtain 2 and the center of the smoothing processing section 5 are intersected. The curtain 2 is transported on the adsorption plate 40. At this time, the negative pressure fan 41 adsorbs the curtain through the adsorption plate 40. Then, the positioning drive seat 44 works. The movable rod 43 and the rotating bonding roller 42 are rotated, causing the rotating bonding roller 42 to limit the curtain 2. The connecting rod 34 can be adjusted in position via the first telescopic guide rod 35 to adjust the height of the curtain 2. Then, the second cylinder 39 works, driving the rotating adjustment table 37 to extend and retract via the second telescopic guide rod 38, thereby stretching the curtain 2. Then, a cutting blade is installed on the cutting blade mounting bracket 9. This cutting blade adopts existing technology and is installed on the cutting blade mounting bracket 9 to perform longitudinal cutting work, which is convenient for installation and combination with the cutting blade mounting bracket 9. The positioning plate 13 and the connecting plate 14 are fixed. At this time, The control cylinder 24 adjusts its extension and retraction. The second hinge 25 drives the plate to rotate via the mounting hinge 29, changing the tilt angle of the contact wheel 18. At this time, the second motor 26 drives the active control lever 27 to rotate. When the active control lever 27 rotates, it drives the fourth mating gear 28 to rotate, which in turn drives the first mating gear 15 to rotate. This achieves the driving operation of the cam 21 and the control power lever 22. The rotation of the cam 21 can press the contact wheel 20, allowing the contact wheel 20 and the assembly plate 19 to continuously extend and retract via the spring telescopic rod 30. When the active control lever 27 rotates, it can... The limit key 31 drives the second mating gear plate 16 to rotate. At this time, the second mating gear plate 16 can drive the bonding wheel 18 to rotate through the third mating gear plate 17. The push block 32 can be adjusted on the limit key 31 along with the displacement plate 33. The connection between the push block 32 and the second mating gear plate 16 is set with a bearing structure, which can rotate relative to each other. Through the rotation of the bonding wheel 18 and the pushing of the contact wheel 20, the bonding wheel 18 can reciprocate to contact and press with the curtain 2. When in contact, the cutting blade can cut the curtain 2, thereby realizing the reciprocating cutting of the curtain 2 and completing the work.

[0061] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A modular cutting machine for curtain production, characterized by: It includes a module limiting processing structure (1) and a curtain (2). The curtain (2) is provided at the lateral position of the module limiting processing structure (1). The curtain (2) is slidably set on the module limiting processing structure (1). The module limiting structure (1) limits the curtain (2) to facilitate subsequent cutting; The module limiting processing structure (1) includes an adjusting smoothing component (3) and an adjusting tensioning component (4). The adjusting tensioning component (4) and the adjusting smoothing component (3) are configured to be rotated. The adjusting tensioning component (4) can be adjusted by rotating the bottom of the adjusting smoothing component (3). The smoothing adjustment component (3) includes a smoothing treatment part (5), a support tray (6), a first motor (7), and a drive gear (8). The first motor (7) is fixedly connected to the side end of the support tray (6), and the drive gear (8) is fixedly connected to the first motor (7). The smoothing treatment part (5) is meshed with the upper end of the drive gear (8), and the smoothing treatment part (5) can rotate and adjust on the support tray (6). The smoothing treatment section (5) performs adjustable control work, and can adjust the limit tension of the curtain (2); The tensioning adjustment component (4) includes a connecting rod frame (34), a first telescopic guide rod (35), a first cylinder (36), a rotating adjustment table (37), a second telescopic guide rod (38), and a second cylinder (39). The side end of the second cylinder (39) is telescopically connected to the rotating adjustment table (37) via the second telescopic guide rod (38). The upper end of the second telescopic guide rod (38) is fixedly mounted with the first cylinder (36), and the upper end of the first cylinder (36) is telescopically connected to the first telescopic guide rod (35). There is a connecting rod frame (34), and a positioning drive seat (44) is fixedly connected to the side end of the connecting rod frame (34). A movable rod frame (43) is hinged to the upper front end of the positioning drive seat (44). A rotating bonding roller (42) is rotatably connected to the front end of the movable rod frame (43). A negative pressure fan (41) is fixedly installed at the lower end of the positioning drive seat (44). An adsorption plate (40) is connected to the negative pressure fan (41). A gap is provided between the adsorption plate (40) and the rotating bonding roller (42). The smoothing section (5) includes a cutting blade mounting bracket (9), a control processing mechanism (10), a docking bracket (11), and a toothed ring (12). The upper end of the toothed ring (12) is fixedly connected to the docking bracket (11), the upper end of the docking bracket (11) is fixedly connected to the control processing mechanism (10), and the upper center of the control processing mechanism (10) is fixedly connected to the cutting blade mounting bracket (9). The cutting blade mounting bracket (9) is used for mounting the cutting blade. The control processing mechanism (10) includes a positioning plate (13), a connecting plate (14), a first mating gear plate (15), a second mating gear plate (16), a third mating gear plate (17), a contact wheel (18), an assembly plate (19), a contact wheel (20), a cam (21), and a control power rod (22). The positioning plate (13) is fixedly connected to the side end of the connecting plate (14). The center of the positioning plate (13) is fixedly connected to a mounting hinge (29). The mounting hinge (29) is hinged to a plate body. A second motor (26) is fixedly installed at the center of the body. An active control rod (27) is fixedly connected to the side end of the second motor (26) through the plate. A fourth mating gear plate (28) is fixedly connected to the active control rod (27). A second hinge (25) is fixedly connected to the lower end of the plate. A control cylinder (24) is telescopically hinged to the upper left side of the second hinge (25). A first hinge (23) is hinged to the upper end of the control cylinder (24). The first hinge (23) is fixedly connected to the connecting plate (14).

2. The modular cutting machine for curtain production according to claim 1, characterized in that: The rear end of the fourth mating gear plate (28) is meshed with the first mating gear plate (15). The center of the first mating gear plate (15) is fixedly connected to the control power rod (22). The center of the control power rod (22) is fixedly connected to the cam (21). The side end of the cam (21) is pressed and contacted with the contact wheel (20). The contact wheel (20) is fixed on the left side of the assembly plate (19).

3. The modular cutting machine for curtain production according to claim 2, characterized in that: The front and rear ends of the assembly plate (19) are fixedly connected to displacement plates (33). The left side of the displacement plate (33) is elastically connected to a spring telescopic rod (30). The right side of the active control rod (27) is provided with a limit key (31). The limit key (31) is provided with a push block (32). The push block (32) is fixedly connected to the displacement plate (33).

4. The modular cutting machine for curtain production according to claim 3, characterized in that: The active control lever (27) drives a second mating gear (16) through one side of the push block (32), and the second mating gear (16) is rotatably connected to the push block (32). The push block (32) limits the second mating gear (16) so that the second mating gear (16) can only rotate in the center of the push block (32). The active control lever (27) drives the second mating gear (16) to rotate through the push block (32). The rear end of the second mating gear (16) is meshed with a third mating gear (17). The rear end of the third mating gear (17) is fixedly connected with a contact wheel (18). The third mating gear (17), the contact wheel (18), and the right side of the displacement plate (33) are connected.

5. The modular cutting machine for curtain production according to claim 4, characterized in that: The extension and retraction of the control cylinder (24) enables the plate to rotate and adjust through the mounting hinge (29), changing the tilt angle. The second motor (26) drives the fourth mating gear plate (28) and the second mating gear plate (16) to rotate through the active control rod (27). The rotation of the fourth mating gear plate (28) can drive the first mating gear plate (15) to rotate, thereby driving the cam (21) and the control power rod (22) to rotate, so that the cam (21) drives the pressing contact wheel (20).

6. The modular cutting machine for curtain production according to claim 5, characterized in that: The contact wheel (20) is limited by the assembly plate (19) and the displacement plate (33). By pressing, the displacement plate (33) can be extended and retracted by the spring telescopic rod (30), and the push block (32) and the second mating gear plate (16) slide and adjust on the active control rod (27). At the same time, the third mating gear plate (17), the contact wheel (18), and the assembly plate (19) follow the movement.

7. The modular cutting machine for curtain production according to claim 6, characterized in that: The second mating gear plate (16) drives the bonding wheel (18) to rotate on the displacement plate (33) through the third mating gear plate (17), and the bonding wheel (18) can contact the curtain (2) to adjust the tension of the curtain (2).

8. The modular cutting machine for curtain production according to claim 7, characterized in that: The active gear plate (8) meshes with the gear ring (12). The gear ring (12) can drive the cutting blade mounting bracket (9), the control processing mechanism (10), and the docking bracket (11) to rotate on the support plate (6). The lower end of the support plate (6) is rotatably connected to the second cylinder (39). The rotation of the second cylinder (39) can drive the connecting rod frame (34), the first telescopic guide rod (35), the first cylinder (36), the rotating adjustment table (37), and the second telescopic guide rod (38) to rotate as a whole.

Citation Information

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