Blanket production equipment with edge cutting and flow guiding functions

By introducing positioning components and collection devices into the blanket production equipment, using hydraulic cylinders and dual-axis motors to flatten the blanket and cut the edges, and combining crushing blades and flow guiding devices to process scraps, the problems of uneven cutting and scrap accumulation in blanket production are solved, achieving efficient blanket edge cutting and flow guiding effects.

CN120945653APending Publication Date: 2025-11-14CREATION TEXTILES CORP LTD
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Patent Information

Application Number
CN202511239923.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-02
Publication Date
2025-11-14

AI Technical Summary

Technical Problem

Existing blanket production edge-cutting equipment is prone to unevenness during blanket transport, leading to misaligned cutting. Furthermore, the edge-cutting equipment can only cut the edges of the blanket, resulting in excessive accumulation of scraps and debris at the edges.

Method used

The blanket production equipment with edge cutting and diversion function includes positioning components and collection devices. The hydraulic cylinder drives the support top frame and pressing roller to flatten the blanket. The dual-axis motor drives the circular cutter to cut the edge of the blanket. The scraps are crushed and discharged by the synchronization device and the crushing knife. The lint is treated by the photoelectric sensor and the negative pressure absorption valve. The edge of the blanket is ironed flat by the heating plate.

Benefits of technology

It achieves precise and flat cutting of blanket edges, avoids cutting misalignment and accumulation of scraps, improves production efficiency and product aesthetics, and reduces the amount of scraps accumulated.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of blanket production, in particular to blanket production equipment with edge cutting and flow guiding functions, which comprises a positioning component, a supporting device is mounted at the top end of the positioning component, a blanket is placed in the positioning component, and the blanket is positioned below the supporting device. The supporting device comprises an extending wing plate, a first spring, a supporting top frame, movable rods, a hydraulic cylinder, a first plastic wheel, a double-shaft motor, a round cutter, a pressing wheel and a bottom plate, the supporting top frame is fixedly installed at the top end of the hydraulic cylinder, the movable rods are symmetrically inserted into the supporting top frame in a sliding mode, and the bottom plate is fixedly installed at the bottom ends of the movable rods; the first springs are symmetrically and fixedly installed between the supporting top frame and the bottom plate and located on the outer ring of the movable rod, the extending wing plates are fixedly installed at the tops of the two ends of the supporting top frame, and the double-shaft motors are fixedly installed at the bottoms of the two ends of the supporting top frame. And through the arrangement of the supporting device and the positioning part, the purposes of pressing the blanket flatly and continuously cutting and guiding out leftover materials are achieved.
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Description

Technical Field

[0001] This invention relates to the field of blanket production technology, specifically a blanket production equipment with edge trimming and flow guiding function. Background Technology

[0002] Blankets are thick fabrics made primarily of animal fibers (such as wool, cashmere, and camel hair) or chemical fibers (such as acrylic, polyester, and coral fleece). They have functions such as warmth and decoration and are widely used in home furnishings, outdoor areas, and other fields.

[0003] Blanket production edge trimming equipment is a specialized machine used to trim, cut, and finish the edges of blankets after they have been woven, ensuring accurate blanket dimensions, neat edges, and improving product aesthetics and safety.

[0004] For example, a production equipment for a grass coral fiber raschel blanket, as disclosed in Chinese Patent Publication No. CN115233430A, includes a conveyor belt, a cutting machine, a collection box, a separator, and an inclined plate. The distance between the two separators is designed to correspond to the size of the cut blanket. The rear end surface of the inclined plate contacts the conveyor belt, so that the cut blanket slides down the space between the two separators onto the upper surface of the inclined plate, effectively preventing the blanket from sliding into the collection box. The edge waste slides down the separator away from the blanket into the collection box.

[0005] Currently, existing blanket production edge-cutting equipment has several drawbacks. Uneven blankets may occur during transport, and the cutter is in a fixed position, leading to misalignment when the uneven blanket contacts the cutter. Furthermore, existing edge-cutting equipment can only cut the blanket edges, causing excessive accumulation of scraps and debris on the ground. Therefore, an improved device is needed to address these issues. Summary of the Invention

[0006] To address the problems in the prior art, the present invention provides a blanket production device with edge-cutting and flow-guiding function.

[0007] The technical solution adopted by this invention to solve its technical problem is: a blanket production equipment with edge cutting and flow guiding function, including a positioning component, a support device installed on the top of the positioning component, a blanket placed inside the positioning component, and the blanket located below the support device. The support device includes an extension wing plate, a first spring, a support top frame, a movable rod, a hydraulic cylinder, a first plastic wheel, a dual-axis motor, a circular cutter, a pressing wheel, and a base plate. The support top frame is fixedly installed on the top of the hydraulic cylinder. The movable rod is symmetrically slidably inserted into the interior of the support top frame. The base plate is fixedly installed on the bottom end of the movable rod. The first spring is symmetrically fixedly installed between the support top frame and the base plate, and the first spring is located on the outer ring of the movable rod. The extension wing plate is fixedly installed on the top of both ends of the support top frame. The dual-axis motor is fixedly installed on the bottom of both ends of the support top frame. The first plastic wheel is fixedly installed on one side of the dual-axis motor. The circular cutter is fixedly installed on the other side of the dual-axis motor. The pressing wheel is symmetrically rotated and installed on both sides of the base plate.

[0008] Specifically, the positioning component includes a synchronization device and a collection device, with the synchronization device fixedly installed on both sides inside the collection device.

[0009] Specifically, the synchronization device includes a first transmission gear, a first gear, an L-shaped air cylinder, a photoelectric sensor, a first piston rod, a magnetic absorbing plate, a second piston rod, a negative pressure absorption valve, a support base, a second transmission gear, a transmission toothed belt, a protective cover, a second plastic wheel, a first bevel gear, a second bevel gear, and a crushing blade. The second plastic wheel is rotatably mounted on the top side of the protective cover. The second transmission gear is fixedly mounted on the center of the second plastic wheel near the protective cover. The first gear is fixedly mounted on the center of the second transmission gear away from the second plastic wheel. The first transmission gear is rotatably mounted inside the bottom of the protective cover. The first bevel gear is fixedly mounted on the side of the first transmission gear near the second plastic wheel. At the center, the second bevel gear is rotatably mounted inside the bottom of the protective cover. The crushing blade is fixedly mounted at the center of the bottom end of the second bevel gear. The transmission belt meshes with the outer rings of the second and first transmission gears. The support base is symmetrically fixedly mounted at the top of the protective cover. The L-shaped air cylinder is fixedly mounted on the top of the support base near the top of the first gear. The first piston rod is slidably inserted into the top of the L-shaped air cylinder. The magnetic suction plate is fixedly mounted at the top of the first piston rod. The photoelectric sensor is symmetrically fixedly mounted on the top of the outer ring of the L-shaped air cylinder. The second piston rod is slidably inserted into the bottom of the L-shaped air cylinder. The negative pressure absorption valve is fixedly mounted on the end of the second piston rod away from the L-shaped air cylinder.

[0010] Specifically, the collecting device includes a take-up reel, a second spring, a connecting rope, a guide wheel, a U-shaped push plate, a second gear, an accumulation cavity, a heating element, a spreading plate, and a positioning base frame. The spreading plate is fixedly installed at the top inside the positioning base frame, the heating element is fixedly installed on both sides of the spreading plate, the accumulation cavity is fixedly installed on both sides of the bottom of the positioning base frame near the spreading plate, the second gear is rotatably installed on the top side of the accumulation cavity away from the spreading plate, the take-up reel is fixedly installed at the center of the side end of the second gear, the guide wheel is rotatably installed at the bottom side end of the accumulation cavity, the U-shaped push plate is slidably inserted into the bottom inside the accumulation cavity, the second spring is fixedly installed between the accumulation cavity and the U-shaped push plate, and the connecting rope is fixedly installed between the take-up reel and the U-shaped push plate.

[0011] Specifically, the hydraulic cylinders are symmetrically fixedly installed at the top of the positioning base frame, the protective cover is fixedly installed at the top of the inside of the storage cavity, and the second gear meshes with the first gear.

[0012] Specifically, guide rods are symmetrically fixedly installed at the bottom end of the accumulation cavity near the positioning base, and the second spring is located on the periphery of the guide rods. A discharge hole is opened at the bottom side end of the accumulation cavity near the heating element.

[0013] Specifically, the crushing blade is located inside the accumulation cavity, the second plastic wheel is vertically aligned with the first plastic wheel, and the extended wing plate is vertically aligned with the magnetic chuck.

[0014] Specifically, the L-shaped air cylinder is hollow inside, and a sealed cavity is formed between the second piston rod, the L-shaped air cylinder, and the first piston rod. The transmission ratio between the first gear and the second gear is 1:5. The first bevel gear meshes with the second bevel gear. The bottom end of the negative pressure absorption valve is symmetrically fixed with keying, and the top end of the support base is provided with a slot.

[0015] Specifically, the photoelectric sensor is electrically connected to the negative pressure absorption valve and the heating element, the negative pressure absorption valve is horizontally aligned with the circular cutter, the circular cutter is vertically aligned with the accumulation cavity, and the inner top of the accumulation cavity is symmetrically fixed with guide plates.

[0016] Specifically, the positioning base frame also includes an extended rear frame and an ironing head. The extended rear frame is symmetrically fixedly installed on the top of the side end of the positioning base frame, and the ironing head is fixedly installed on the bottom end of the extended rear frame.

[0017] The beneficial effects of this invention are:

[0018] First, when the hydraulic cylinder is activated, the supporting top frame can be moved downward, allowing the pressing roller to press the blanket first. Then, when the dual-axis motor is started, the circular cutter can be driven to rotate at high speed, so that the edge of the blanket can be cut. At the same time, the setting of the first spring can prevent the pressing roller from fixing the blanket and making it easy to continuously transport the blanket and complete the work of pressing and flattening the blanket.

[0019] Second, when the second plastic wheel rotates, it can drive the second transmission gear to rotate, which in turn drives the first transmission gear to rotate the crushing blade inside the accumulation cavity. The edge of the cut-off blanket can enter the accumulation cavity, and the crushing blade can break the edge of the fallen blanket when it rotates, preventing the blanket from remaining in long strips inside the accumulation cavity. Furthermore, when the second plastic wheel rotates, it can also drive the second gear to rotate intermittently through the first gear, which allows the U-shaped push plate to move back and forth inside the accumulation cavity, pushing the crushed blanket scraps out of the accumulation cavity and completing the work of guiding and outputting the scraps. Attached Figure Description

[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0021] Figure 1 This is a three-dimensional structural diagram of the main body from a frontal perspective in this invention;

[0022] Figure 2 This is a three-dimensional structural diagram of the support device from the front view in this invention;

[0023] Figure 3 This is a three-dimensional structural diagram of the positioning component from a frontal view in this invention;

[0024] Figure 4 This is a partial cross-sectional schematic diagram of the synchronization device in this invention;

[0025] Figure 5 This is a side view three-dimensional structural diagram of the synchronization device in this invention;

[0026] Figure 6 This is a partial cross-sectional schematic diagram of the collecting device in this invention;

[0027] Figure 7 This is a three-dimensional structural diagram of the bottom end of the collecting device in this invention;

[0028] Figure 8 This is a frontal perspective three-dimensional structural diagram of the second embodiment of the positioning base frame in this invention.

[0029] In the diagram: 1-Supporting device, 2-Positioning component, 3-Blank, 4-Extended wing plate, 5-First spring, 6-Supporting top frame, 7-Moving rod, 8-Hydraulic cylinder, 9-First plastic wheel, 10-Dual-axis motor, 11-Circular cutter, 12-Pressing wheel, 13-Base plate, 14-Synchronizing device, 15-Collecting device, 16-First transmission gear, 17-First gear, 18-L-shaped air cylinder, 19-Photoelectric sensor, 20-First piston rod, 21-Magnetic suction plate, 22-Second piston rod, 2 3-Negative pressure absorption valve, 24-Support base frame, 25-Second transmission gear, 26-Transmission toothed belt, 27-Protective cover, 29-Second plastic wheel, 30-First bevel gear, 31-Second bevel gear, 32-Crushing blade, 33-Rewinding wheel, 34-Second spring, 35-Connecting rope, 36-Guide wheel, 37-U-shaped push plate, 38-Second gear, 39-Accumulation cavity, 40-Heating plate, 41-Spreading plate, 42-Positioning base frame, 43-Extended rear frame, 44-Ironing head. Detailed Implementation

[0030] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application.

[0031] The invention will be further described below with reference to the accompanying drawings.

[0032] Example 1

[0033] like Figure 1 and Figure 2As shown, a blanket production device with edge-cutting and flow-guiding function according to the present invention includes a positioning component 2, a support device 1 installed on the top of the positioning component 2, a blanket 3 placed inside the positioning component 2, and the blanket 3 located below the support device 1. The support device 1 includes an extension wing plate 4, a first spring 5, a support top frame 6, a movable rod 7, a hydraulic cylinder 8, a first plastic wheel 9, a dual-axis motor 10, a circular cutter 11, a pressing wheel 12, and a base plate 13. The support top frame 6 is fixedly installed on the top of the hydraulic cylinder 8, and the movable rod 7 is symmetrically slidably inserted into the support top frame 13. Inside the support top frame 6, the base plate 13 is fixedly installed at the bottom end of the movable rod 7. The first spring 5 is symmetrically fixedly installed between the support top frame 6 and the base plate 13, and the first spring 5 is located on the outer ring of the movable rod 7. The extension wing plate 4 is fixedly installed at the top of both ends of the support top frame 6. The dual-axis motor 10 is fixedly installed at the bottom of both ends of the support top frame 6. The first plastic wheel 9 is fixedly installed on one side of the dual-axis motor 10. The circular cutter 11 is fixedly installed on the other side of the dual-axis motor 10. The pressing wheel 12 is symmetrically rotated and installed on both sides of the base plate 13.

[0034] like Figure 3 The positioning component 2 includes a synchronization device 14 and a collection device 15. The synchronization device 14 is fixedly installed on both sides inside the collection device 15 and can support the synchronization device 14 to work.

[0035] like Figure 4 and Figure 5The synchronization device 14 includes a first transmission gear 16, a first gear 17, an L-shaped air cylinder 18, a photoelectric sensor 19, a first piston rod 20, a magnetic absorbing plate 21, a second piston rod 22, a negative pressure absorption valve 23, a support base 24, a second transmission gear 25, a transmission toothed belt 26, protective covers 27 and 28, a second plastic wheel 29, a first bevel gear 30, a second bevel gear 31, and a crushing blade 32. The second plastic wheel 29 is rotatably mounted on the top side of the protective cover 27. The second transmission gear 25 is fixedly mounted on the center of the side end of the second plastic wheel 29 near the protective cover 27. The first gear 17 is fixedly mounted on the center of the side end of the second transmission gear 25 away from the second plastic wheel 29. The first transmission gear 16 is rotatably mounted inside the bottom end of the protective cover 27. The first bevel gear 30 is fixedly mounted on the center of the side end of the first transmission gear 16 near the second plastic wheel 29. The second bevel gear 31 is rotatably mounted inside the protective cover 27. At the bottom, the crushing blade 32 is fixedly installed at the center of the bottom end of the second bevel gear 31. The transmission belt 26 is engaged with the outer ring of the second transmission gear 25 and the first transmission gear 16. The support base 24 is symmetrically fixedly installed at the top of the protective cover 27. The L-shaped air cylinder 18 is fixedly installed on the support base 24 near the top of the first gear 17. The first piston rod 20 is slidably inserted into the top of the L-shaped air cylinder 18. The magnetic suction plate 21 is fixedly installed at the top of the first piston rod 20. The photoelectric sensor 19 is symmetrically fixedly installed at the top of the outer ring of the L-shaped air cylinder 18. The second piston rod 22 is slidably inserted into the bottom end of the L-shaped air cylinder 18. The negative pressure absorption valve 23 is fixedly installed on the end of the second piston rod 22 away from the L-shaped air cylinder 18. The protective cover 27 is located around the first transmission gear 16, the first bevel gear 30, the second bevel gear 31, the transmission belt 26, and the second transmission gear 25, so that the debris can be prevented from contacting the rotating parts.

[0036] like Figure 6 and Figure 7The collecting device 15 includes a winding reel 33, a second spring 34, a connecting rope 35, a guide reel 36, a U-shaped push plate 37, a second gear 38, an accumulation cavity 39, a heating element 40, a spreading plate 41, and a positioning base frame 42. The spreading plate 41 is fixedly installed inside the top of the positioning base frame 42. The heating element 40 is fixedly installed on both sides of the spreading plate 41. The accumulation cavity 39 is fixedly installed on both sides of the bottom of the positioning base frame 42 near the spreading plate 41. The second gear 38 is rotatably installed on the top of the side end of the accumulation cavity 39 away from the spreading plate 41. The winding reel 37... 3 is fixedly installed at the center of the side end of the second gear 38, the guide wheel 36 is rotatably installed at the bottom of the side end of the accumulation cavity 39, the U-shaped push plate 37 is slidably inserted into the bottom of the inside of the accumulation cavity 39, the second spring 34 is fixedly installed between the accumulation cavity 39 and the U-shaped push plate 37, the connecting rope 35 is fixedly installed between the winding wheel 33 and the U-shaped push plate 37, and a guide plate is installed at the top of the inside of the accumulation cavity 39 so that the scraps that are cut off can enter the inside of the accumulation cavity 39 along the guide plate and contact the crusher 32 for easy cutting.

[0037] Hydraulic cylinders 8 are symmetrically fixedly installed at the top of the positioning base 42. Protective covers 27 are fixedly installed inside the top of the accumulation cavity 39. The second gear 38 meshes with the first gear 17. Guide rods are symmetrically fixedly installed at the bottom of the accumulation cavity 39 near the positioning base 42, and the second spring 34 is located around the guide rods. A discharge hole is opened at the bottom of the side end of the accumulation cavity 39 near the heating element 40. The crushing blade 32 is located inside the accumulation cavity 39. The second plastic wheel 29 is vertically aligned with the first plastic wheel 9. The extended wing plate 4 is vertically aligned with the magnetic suction plate 21. The L-shaped air cylinder 18 is hollow inside. A sealed cavity is formed between the second piston rod 22, the L-shaped air cylinder 18 and the first piston rod 20. The transmission ratio of the first gear 17 to the second gear 38 is 1:5. The first bevel gear 30 meshes with the second bevel gear 31. The bottom end of the negative pressure absorption valve 23 is symmetrically fixed with a locking key, and the top of the support base 24 is provided with a locking groove. The photoelectric sensor 19 is electrically connected to the negative pressure absorption valve 23 and the heating element 40 respectively. The negative pressure absorption valve 23 is horizontally aligned with the circular cutter 11, and the circular cutter 11 is vertically aligned with the accumulation cavity 39. The top of the inside of the accumulation cavity 39 is symmetrically fixed with a guide plate.

[0038] The working principle of Example 1 is as follows: During use, the blanket 3 can be laid flat on the top of the spreading plate 41, and the end of the blanket 3 is installed on an external winding device. The winding device is then turned on, continuously pulling and moving the blanket 3. Simultaneously, the hydraulic cylinder 8 is activated, causing the support top frame 6 to move downwards, causing the pressing roller 12 to contact the blanket 3, thus squeezing the blanket 3 flat on the spreading plate 41 and preventing the edges of the blanket 3 that need to be cut from curling up. Subsequently, as the support top frame 6 continues to move downwards, it can drive the circular cutter 11 to contact the edge of the blanket 3, allowing the edge of the blanket 3 to be cut. By vertically aligning the circular cutter 11 with the inside of the accumulation cavity 39, the cut scraps can fall into the inside of the accumulation cavity 39. At this time, the circular cutter... When moving downwards, 11 can also drive the first plastic wheel 9 to contact the second plastic wheel 29. Thus, when the dual-axis motor 10 is running, it can drive the circular cutter 11 and the first plastic wheel 9 to rotate at high speed, which facilitates the circular cutter 11 to cut the edge of the blanket 3. At the same time, when the first plastic wheel 9 rotates at high speed, it can drive the second plastic wheel 29 and the second transmission gear 25 to rotate synchronously. When the second transmission gear 25 rotates, it can drive the first transmission gear 16 to rotate through the transmission belt 26. The first transmission gear 16 is connected to the first bevel gear 30, and the first bevel gear 30 meshes with the second bevel gear 31. When the second bevel gear 31 rotates, it can drive the crusher 32 to rotate. Since the crusher 32 is located inside the accumulation cavity 39, the crusher 32 can drive the crusher 32 to rotate. The scrap material inside body 39 can contact the crushing blade 32, cutting the long strips of scrap material into smaller segments, completing the scrap material guiding and cutting work. Furthermore, when the second transmission gear 25 rotates, it also drives the first gear 17 and the second gear 38 to rotate, allowing the second gear 38 to drive the winding wheel 33 to rotate. This causes the connecting rope 35 to pull the U-shaped push plate 37 within the accumulation cavity 39, pushing out the scrap material accumulated at the bottom of the accumulation cavity 39. As the U-shaped push plate 37 moves within the accumulation cavity 39, subsequently cut scrap material falls to the top of the U-shaped push plate 37. The teeth of the first gear 17 have a tooth distribution angle of 270°. When the first gear 17 rotates 270°... The first gear 17 disengages from the second gear 38. At this point, the elasticity of the second spring 34 causes the U-shaped push plate 37 to move and reset, allowing it to return to its original position inside the accumulation cavity 39. This facilitates the U-shaped push plate 37 pushing the scrap material at the bottom of the accumulation cavity 39 again. The U-shaped push plate 37 slides onto the guide rod on the side of the accumulation cavity 39, ensuring its linear movement. Furthermore, the connecting rope 35, wrapped around the outer ring of the guide wheel 36, allows the connecting rope to pull the U-shaped push plate 37 in a straight line, completing the scrap material crushing and extraction process. Additionally, when the support top frame 6 moves downward to its limit position, it can also drive the extension wing plate 4 to squeeze the first piston rod 20 into the L-shaped air cylinder 18.Thus, the second piston rod 22 can drive the negative pressure absorption valve 23 to approach the circular cutter 11. At the same time, through the extended wing plate 4, it will also contact the photoelectric sensor 19, so that the photoelectric sensor 19 can respectively open and operate the negative pressure absorption valve 23 and the heating plate 40. Through the negative pressure absorption valve 23, it is connected to the external negative pressure equipment, so that the negative pressure absorption valve 23 can absorb the lint that falls off the blanket 3 after cutting. At the same time, through the heating plate 40 and the side end of the spreading plate 41, when the cut blanket 3 moves past the heating plate 40, the edges of the blanket 3 can be melted after cutting, so as to prevent the edges of the blanket 3 from becoming loose. Subsequently, after the blanket 3 is cut, the hydraulic cylinder 8 can be opened, driving the support top frame 6 to move upward as a whole, and through the extension wing plate 4 and the magnetic suction plate 21, it is attracted. The fit allows the first piston rod 20 to be pulled upwards, which in turn causes the second piston rod 22 to move the negative pressure absorption valve 23 away from the circular cutter 11 and reset it. Simultaneously, the locking key at the bottom of the negative pressure absorption valve 23 moves within a slot at the top of the support frame 24, allowing the valve to move linearly. Then, as the support frame 6 continues to move upwards, the extension wing plate 4 disengages from the magnetic suction plate 21, causing the pressing wheel 12 and the circular cutter 11 to disengage from the blanket 3. Simultaneously, the first plastic wheel 9 disengages from the second plastic wheel 29, preventing further kinetic energy transmission. Furthermore, when the extension wing plate 4 disengages from the photoelectric sensor 19, the negative pressure absorption valve 23 and the heating element 40 are de-energized, preventing energy waste and completing the operation.

[0039] Example 2

[0040] Based on Example 1, such as Figure 8 As shown, the positioning base frame 42 also includes an extended rear frame 43 and an ironing head 44. The extended rear frame 43 is symmetrically fixedly installed on the top of the side end of the positioning base frame 42, and the ironing head 44 is fixedly installed on the bottom end of the extended rear frame 43.

[0041] In implementing this embodiment, by aligning the ironing head 44 vertically with the blanket 3 and making the ironing head 44 fit against the blanket 3, the ironing head 44 can iron the surface of the blanket 3 when it is turned on, thus pre-treating the blanket 3 and reducing the probability of wrinkles or unevenness in the blanket 3 during transport, thereby completing the work.

[0042] 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 blanket production device with edge-cutting and flow-guiding function, comprising a positioning component (2), a support device (1) mounted on the top of the positioning component (2), a blanket (3) placed inside the positioning component (2), and the blanket (3) located below the support device (1), characterized in that: The support device (1) includes an extension wing plate (4), a first spring (5), a support top frame (6), a movable rod (7), a hydraulic cylinder (8), a first plastic wheel (9), a dual-axis motor (10), a circular cutter (11), a pressing wheel (12), and a base plate (13). The support top frame (6) is fixedly installed at the top of the hydraulic cylinder (8). The movable rod (7) is symmetrically slidably inserted into the inside of the support top frame (6). The base plate (13) is fixedly installed at the bottom end of the movable rod (7). The first spring (5) is symmetrically fixedly installed. Between the support top frame (6) and the base plate (13), and with the first spring (5) located on the outer ring of the movable rod (7), the extended wing plate (4) is fixedly installed at the top of both ends of the support top frame (6), the dual-axis motor (10) is fixedly installed at the bottom of both ends of the support top frame (6), the first plastic wheel (9) is fixedly installed on one side of the dual-axis motor (10), the circular cutter (11) is fixedly installed on the other side of the dual-axis motor (10), and the pressing wheel (12) is symmetrically rotated and installed on both sides of the base plate (13).

2. The blanket production equipment with edge-cutting and flow-guiding function according to claim 1, characterized in that: The positioning component (2) includes a synchronization device (14) and a collection device (15), wherein the synchronization device (14) is fixedly installed on both sides inside the collection device (15).

3. A blanket production equipment with edge-cutting and flow-guiding function according to claim 2, characterized in that: The synchronization device (14) includes a first transmission gear (16), a first gear (17), an L-shaped air cylinder (18), a photoelectric sensor (19), a first piston rod (20), a magnetic absorbing plate (21), a second piston rod (22), a negative pressure absorption valve (23), a support base (24), a second transmission gear (25), a transmission toothed belt (26), a protective cover (27), (28), a second plastic wheel (29), a first bevel gear (30), a second bevel gear (31), and a crushing blade (32). The second plastic wheel (29) is rotatably mounted on the top side of the protective cover (27). The second transmission gear (25) is fixedly mounted on the center of the side end of the second plastic wheel (29) near the protective cover (27). The first gear (17) is fixedly mounted on the center of the side end of the second transmission gear (25) away from the second plastic wheel (29). The first transmission gear (16) is rotatably mounted on the bottom inside the protective cover (27). The first bevel gear (30) is fixedly mounted on the first transmission gear (16). Near the center of the side end of the second plastic wheel (29), the second bevel gear (31) is rotatably mounted on the bottom inside of the protective cover (27). The crushing blade (32) is fixedly mounted on the center of the bottom end of the second bevel gear (31). The transmission belt (26) meshes with the outer ring of the second transmission gear (25) and the first transmission gear (16). The support base (24) is symmetrically fixedly mounted on the top of the protective cover (27). The L-shaped air cylinder (18) is fixedly mounted on the support base (24) near the center of the side end of the second plastic wheel (29). Near the top of the first gear (17), the first piston rod (20) is slidably inserted into the top of the L-shaped air cylinder (18), the magnetic suction plate (21) is fixedly installed at the top of the first piston rod (20), the photoelectric sensor (19) is symmetrically fixedly installed at the top of the outer ring of the L-shaped air cylinder (18), the second piston rod (22) is slidably inserted into the bottom of the L-shaped air cylinder (18), and the negative pressure absorption valve (23) is fixedly installed on the end of the second piston rod (22) away from the L-shaped air cylinder (18).

4. A blanket production equipment with edge-cutting and flow-guiding function according to claim 3, characterized in that: The collecting device (15) includes a winding reel (33), a second spring (34), a connecting rope (35), a guide reel (36), a U-shaped push plate (37), a second gear (38), an accumulation cavity (39), a heating element (40), a spreading plate (41), and a positioning base frame (42). The spreading plate (41) is fixedly installed at the top inside the positioning base frame (42), the heating element (40) is fixedly installed on both sides of the spreading plate (41), and the accumulation cavity (39) is fixedly installed on both sides of the bottom of the positioning base frame (42) near the spreading plate (41). The second gear (38) is rotatably mounted on the top side of the accumulation cavity (39) away from the spreading plate (41). The take-up reel (33) is fixedly mounted on the center of the side of the second gear (38). The guide wheel (36) is rotatably mounted on the bottom side of the accumulation cavity (39). The U-shaped push plate (37) is slidably inserted into the bottom of the inside of the accumulation cavity (39). The second spring (34) is fixedly mounted between the accumulation cavity (39) and the U-shaped push plate (37). The connecting rope (35) is fixedly mounted between the take-up reel (33) and the U-shaped push plate (37).

5. A blanket production equipment with edge-cutting and flow-guiding function according to claim 4, characterized in that: The hydraulic cylinder (8) is symmetrically fixedly installed on the top of the positioning base frame (42), the protective cover (27) is fixedly installed on the top of the inside of the storage cavity (39), and the second gear (38) meshes with the first gear (17).

6. A blanket production equipment with edge-cutting and flow-guiding function according to claim 5, characterized in that: The accumulation cavity (39) is symmetrically fixed with guide rods near the bottom end of the positioning base (42), and the second spring (34) is located on the periphery of the guide rods. The bottom of the side end of the accumulation cavity (39) near the heating element (40) is provided with a discharge hole.

7. A blanket production equipment with edge-cutting and flow-guiding function according to claim 6, characterized in that: The crushing blade (32) is located inside the storage cavity (39), the second plastic wheel (29) is vertically aligned with the first plastic wheel (9), and the extended wing plate (4) is vertically aligned with the magnetic chuck (21).

8. A blanket production equipment with edge-cutting and flow-guiding function according to claim 7, characterized in that: The L-shaped air cylinder (18) is hollow inside, and a sealed cavity is formed between the second piston rod (22), the L-shaped air cylinder (18) and the first piston rod (20). The transmission ratio of the first gear (17) and the second gear (38) is 1:

5. The first bevel gear (30) meshes with the second bevel gear (31). The bottom end of the negative pressure absorption valve (23) is symmetrically fixed with key, and the top end of the support base (24) is provided with a slot.

9. A blanket production equipment with edge-cutting and flow-guiding function according to claim 8, characterized in that: The photoelectric sensor (19) is electrically connected to the negative pressure absorption valve (23) and the heating element (40) respectively. The negative pressure absorption valve (23) is horizontally aligned with the circular cutter (11), and the circular cutter (11) is vertically aligned with the accumulation cavity (39). The top of the accumulation cavity (39) is symmetrically fixed with a guide plate.

10. A blanket production equipment with edge-cutting and flow-guiding function according to claim 9, characterized in that: The positioning base (42) also includes an extension back frame (43) and an ironing head (44). The extension back frame (43) is symmetrically fixedly installed on the top side of the positioning base (42), and the ironing head (44) is fixedly installed on the bottom of the extension back frame (43).

Citation Information

Patent Citations

  • Production equipment for sarcandra glabra fiber raschel blanket

    CN115233430A