Finished product compression device for blanket production and processing

Through the dual-station compression device and automatic cutting design, the problems of low compression efficiency of finished blankets and adhesion of packaging bags are solved, and efficient and automated production is achieved.

CN120348022AInactive Publication Date: 2025-07-22ZHEJIANG TUOHONG TEXTILE CO LTD
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Patent Information

Application Number
CN202510648534.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-20
Publication Date
2025-07-22
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing finished blanket compression devices have low compression efficiency in single-stations, requiring manual loading and unloading, and the heat-sealed packaging bags are easily stuck to the device, affecting production efficiency.

Method used

The dual-station compression device is adopted to achieve alternating reciprocating movement of the compressed components through the servo motor-driven telescopic plate and the cutting block, combining the automatic cutting and heating component design to avoid adhesion of the packaging bag.

Benefits of technology

It improves the production efficiency of the finished blanket compression device, reduces pause time, realizes automatic discharge, prevents the heat sealing position of the packaging bag, and improves the overall production efficiency.

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Abstract

The invention discloses a finished product compression device for blanket production and processing, and particularly relates to the technical field of blanket production and processing.The finished product compression device comprises an operation table and a servo motor, a supporting component is fixedly installed in the middle of the upper side of the operation table through a supporting frame, and two connecting shafts penetrating through the operation table are rotatably installed on one side of the operation table; the two connecting shafts are connected through a synchronous belt wheel set, the servo motor is fixedly connected with one connecting shaft, telescopic plates parallel to each other are fixedly installed on the two sides of the two connecting shafts, and compression parts sliding on the supporting parts in a reciprocating mode are rotationally installed on the sides, away from the operation table, of the two telescopic plates on the same side. Two rotating discharging blocks are installed on the lower side of the operation table. According to the finished product compression device for blanket production and processing, through alternate reciprocating movement of the compression parts, double-station switching can be conducted for compression, the pause time of the device is shortened, and the production efficiency of the device is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of blanket production and processing, and particularly to a finished product compression device for blanket production and processing. Background Art

[0002] A blanket is a commonly used bedding with a warming function and can be seen everywhere in daily life. It is also sold in some large shopping malls. With the increasing development of online shopping, many consumers will choose to buy it online. Since the blanket is too large in its natural state and is not convenient for packaging and transportation, it is necessary to compress and pack the blanket and shape it, which will facilitate packaging and transportation, reduce some space, improve the utilization rate of space, and also facilitate handling. In the process of compressing the finished blanket, the existing technology compresses the blanket packed in a packaging bag through a single station, and both loading and unloading need to be manually operated, resulting in insufficient production efficiency of the device. In addition, the heat-sealed packaging bag may stick to the device after heating, which is not convenient for unloading. Summary of the Invention

[0003] The purpose of the present invention is to provide a finished product compression device for blanket production and processing to solve the problem that in the process of compressing the finished blanket, the existing technology compresses the blanket packed in a packaging bag through a single station, and both loading and unloading need to be manually operated, resulting in insufficient production efficiency of the device.

[0004] To achieve the above purpose, the present invention adopts the following technical solution: a finished product compression device for blanket production and processing: It includes an operating table and a servo motor. In the middle of the upper side of the operating table, a supporting component is fixedly installed through a support frame. On one side of the operating table, two connecting shafts penetrating the operating table are rotatably installed. A synchronous pulley set is connected between the two connecting shafts. The servo motor is fixedly connected to one of the connecting shafts. On both sides of the two connecting shafts, mutually parallel telescopic plates are fixedly installed. On the side far from the operating table of the two telescopic plates on the same side, a compression component reciprocally sliding on the supporting component is rotatably installed. On the lower side of the operating table, two rotating blanking blocks are installed. By rotating the telescopic plates on both sides, the compression component can reciprocally move alternately on the supporting component, and at the same time, the blanking blocks can be flipped.

[0005] As a further description of the above-mentioned finished product compression device for blanket production and processing: Two groups of clamping components are fixed on the upper side of the operating table, and a bidirectional pushing component adapted to the clamping components is fixed in the middle of the upper side of the operating table.

[0006] As a further description of the above-mentioned finished product compression device for blanket production and processing: A blanking groove adapted to the blanking block is formed on the operating table. L-shaped mounting plates fixedly mounted on the lower end surface of the operating table are installed on both sides of the blanking block. A mounting shaft penetrating the blanking block is rotatably installed between the two L-shaped mounting plates. The mounting shaft is fixedly connected to the blanking block, and the mounting shaft is connected to the adjacent connecting shaft through a synchronous belt.

[0007] As a further description of a finished product compression device for blanket production and processing of the above technology: The compression component includes a moving block rotatably connected to the telescopic plate. A telescopic cylinder is fixedly installed on the upper side of the moving block. The output end of the telescopic cylinder is fixed with a compression plate. Two symmetric heating components are fixedly installed on the upper side of the moving block.

[0008] As a further description of a finished product compression device for blanket production and processing of the above technology: Two symmetric sliding plates are fixedly installed on the lower side of the moving block. Two symmetric sliding strips are fixedly installed on the lower side of the moving block. The sliding strips are perpendicular to the sliding plates.

[0009] As a further description of a finished product compression device for blanket production and processing of the above technology: The support component includes a U-shaped block. Chute grooves are formed on both side walls of the upper side groove of the U-shaped block. A baffle plate adapted to the sliding plate is slidably installed in the inner cavities of the two chute grooves together. Two installation grooves adapted to the sliding strips are formed at the upper end of the U-shaped block.

[0010] As a further description of a finished product compression device for blanket production and processing of the above technology: Two matching components adapted to the blanking block are installed on the upper side of the operating table. The matching component includes a matching block. A rectangular groove is formed on one side of the matching block. Sliding blocks are slidably installed on both side walls of the inner cavity of the rectangular groove. Support springs are fixedly installed between the two sliding blocks and the bottom wall of the rectangular groove. A push plate is fixedly installed on the upper sides of the two sliding blocks together. An arc-shaped block adapted to the blanking block is fixedly installed on the lower side of the push plate.

[0011] As a further description of a finished product compression device for blanket production and processing of the above technology: The heating component includes two cylinder 1s. The output ends of the two cylinder 1s are fixed with heating plates adapted to the matching block.

[0012] In summary, due to adopting the above technology of a finished product compression device for blanket production and processing, the beneficial effects of the present invention are: 1. The device can improve the production efficiency of the device through the mutual cooperation among the set support components, compression components, blanking block, and telescopic plate. Through the alternating reciprocating movement of the compression components, the switching of double workstations can be carried out for compression, reducing the pause time of the device and improving the production efficiency of the device. In addition, automatic blanking can be carried out while switching workstations, saving the manual blanking time of the device and further improving the production efficiency of the device; through the rotation of the telescopic plate, the compression components can reciprocate, realizing the switching of double workstations, reducing the pause time of the compression components, and improving the production efficiency of the device. In addition, during the reciprocating movement of the compression components, the blanking block rotates, enabling the compressed blanket on the upper side of the blanking block to be automatically blanked, avoiding manual blanking of the device.

[0013] 2. Through the mutual cooperation between the set blanking block and the matching components, the device can prevent the sealing position of the packaging bag from sticking to the device, thus avoiding the situation where the automatic blanking cannot be completed due to the packaging bag sticking to the device, which affects the production efficiency of the device; by rotating the blanking block, the blanking block jacks up the closely attached arc-shaped block, so that the arc-shaped block drives the push plate to move upward. The push plate is close to the heat-sealing position, so the push plate pushes the heat-sealing position of the packaging bag upward, preventing the heat-sealing position of the packaging bag from sticking to the upper side of the matching block. Brief Description of the Drawings

[0014] Figure 1 Shows the overall structure schematic diagram of the device provided according to an embodiment of the present invention Figure 1 ; Figure 2 Shows the overall structure schematic diagram of the device provided according to an embodiment of the present invention Figure 2 ; Figure 3 Shows the schematic diagram of a partial structure of the device provided according to an embodiment of the present invention; Figure 4 Shows the schematic diagram of the rotation trajectory of the blanking block provided according to an embodiment of the present invention; Figure 5 Shows the schematic diagram of the structure of the compression component provided according to an embodiment of the present invention Figure 1 ; Figure 6 Shows the schematic diagram of the structure of the compression component provided according to an embodiment of the present invention Figure 2 ; Figure 7 Shows the schematic diagram of the structure of the support component provided according to an embodiment of the present invention; Figure 8 Shows the schematic diagram of the cooperation state between the support component and the compression component provided according to an embodiment of the present invention Figure 1 ; Figure 9 Shows the schematic diagram of the cooperation state between the support component and the compression component provided according to an embodiment of the present invention Figure 2 ; Figure 10 Shows a schematic structural diagram of a mating component provided according to an embodiment of the present invention; Figure 11 Shows a side view of the structural diagram of a mating component provided according to an embodiment of the present invention; Figure 12 Shows a schematic diagram of the mating state of a blanking block and a mating component provided according to an embodiment of the present invention; Figure 13 Shows a schematic diagram of the mating state of a heating component and a mating block provided according to an embodiment of the present invention.

[0015] Legend description: 10. Operating table; 11. Servo motor; 12. Connecting shaft; 13. Telescopic plate; 14. Bi-directional pushing component; 15. Blanking chute; 20. Clamping component; 30. Support component; 31. U-shaped block; 32. Chute; 33. Installation groove; 34. Baffle; 40. Compression component; 41. Moving block; 42. Heating component; 421. Cylinder 1; 422. Heating plate; 43. Telescopic cylinder; 44. Sliding plate; 45. Slide bar; 46. Compression plate; 50. Mating component; 51. Mating block; 52. Rectangular groove; 53. Arc-shaped block; 54. Slide block; 55. Push plate; 60. Blanking block; 61. L-shaped mounting plate; 62. Mounting shaft. Detailed implementation manners

[0016] Next, the technical solution of a finished product compression device for blanket production and processing in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention.

[0017] Embodiment 1: As Figures 1-3 shown, a finished product compression device for blanket production and processing includes an operating table 10 and a servo motor 11. In the middle of the upper side of the operating table 10, a support component 30 is fixedly installed through a support frame. In the middle of the upper end surface of the operating table 10, a U-shaped support frame is installed. The support component 30 is fixedly installed on the upper side of the horizontal part of the support frame. On one side of the operating table 10, two connecting shafts 12 penetrating the operating table 10 are rotatably installed. Two symmetrical connecting shafts 12 are rotatably installed through the middle of the operating table 10; Next, the two connecting shafts 12 are connected by a synchronous pulley set. Synchronous wheels are fixedly installed on one side of each of the two connecting shafts 12, and a synchronous belt is installed on the two synchronous wheels, enabling the two connecting shafts 12 to rotate synchronously by the same angle. The servo motor 11 is fixedly connected to one of the connecting shafts 12, enabling the servo motor 11 to control the transmission of the two connecting shafts 12; In addition, telescopic plates 13 that are parallel to each other are fixedly installed on both sides of the two connecting shafts 12. Telescopic plates 13 are fixedly installed at both ends of one connecting shaft 12, and the two telescopic plates 13 are parallel to each other. In addition, the two telescopic plates 13 on the same side of the two connecting shafts 12 are also parallel to each other. A compression component 40 that reciprocally slides on the support component 30 is rotatably installed on the side of the two telescopic plates 13 on the same side away from the operation table 10. The side of the two telescopic plates 13 on the same side away from the operation table 10 is rotatably connected to the compression component 40. When the compression component 40 moves, it can compress the telescopic plates 13, causing the compression component 40 to move linearly; Two rotating blanking blocks 60 are installed on the lower side of the operation table 10. The end faces of the two blanking blocks 60 that are flush with the operation table 10 are used to place the blankets to be compressed; By rotating the telescopic plates 13 on both sides, the compression component 40 can reciprocally move alternately on the support component 30, enabling the device to perform double-station compression, reducing the pause time of the device, and improving the production efficiency of the device. While the device switches stations, the blanking blocks 60 are flipped, enabling the finished blankets compressed on the blanking blocks 60 to be automatically discharged, saving the blanking time, and further improving the production efficiency of the device; The two blanking blocks 60 rotate towards the middle of the operation table 10, enabling the finished blankets compressed on the two blanking blocks 60 to fall to the lower side of the operation table 10. A collection box can be placed on the lower side of the operation table 10 to collect the finished blankets; Next, two mating components 50 that are adapted to the blanking blocks 60 are installed on the upper side of the operation table 10. The position where the packaging bags are sealed is placed on the upper side of the mating components 50. When the blanking blocks 60 rotate, the components in the mating components 50 can lift the packaging bags, preventing the packaging bags from sticking to the upper side of the mating components 50; In addition, two groups of clamping components 20 are fixed on the upper side of the operation table 10. One group of clamping components 20 includes two centering cylinders, and centering clamping plates are fixedly installed at the output ends of the centering cylinders, enabling the two clamping components 20 in the same group to perform centering clamping on the blanket. A two-way pushing component 14 that is adapted to the clamping components 20 is fixed in the middle of the upper side of the operation table 10. The two-way pushing component 14 includes a two-way cylinder, and pushing plates are fixedly installed at both output ends of the two-way cylinder, which are used to push the blanket and are adapted to one group of clamping components 20 on the same side for clamping the blanket to be compressed.

[0018] Wherein, air extraction devices for evacuating the finished blanket are installed on both sides of the two mating components 50, which are used to extract the air in the packaging bag when compressing the blanket. This device belongs to the prior art and is not elaborated in the present invention.

[0019] Furthermore, as Figure 3 and Figure 4 shown, a blanking groove 15 adapted to the blanking block 60 is formed on the operating table 10. The blanking groove 15 facilitates the rotation of the blanking block 60. L-shaped mounting plates 61 fixedly installed on the lower end surface of the operating table 10 are installed on both sides of the blanking block 60. The vertical part of the L-shaped mounting plate 61 is rotatably connected to the blanking block 60, and the horizontal part of the L-shaped mounting plate 61 is fixed to the lower end surface of the operating table 10. An installation shaft 62 passing through the blanking block 60 is rotatably installed between the two L-shaped mounting plates 61. The installation shaft 62 is fixedly connected to the blanking block 60. The installation shaft 62 passes through the two L-shaped mounting plates 61 and is fixedly connected to the blanking block 60. The installation shaft 62 is rotatably connected to the L-shaped mounting plate 61 at the penetration point, enabling the blanking block 60 to rotate within the inner cavity of the blanking groove 15; Wherein, the installation shaft 62 is connected to the adjacent connecting shaft 12 through a synchronous belt, so that when the connecting shaft 12 rotates, it can drive the installation shaft 62 to rotate, thereby rotating the blanking block 60. When the connecting shaft 12 rotates, the telescopic plate 13 fixed thereon will also rotate. When the telescopic plate 13 rotates, the compression component 40 starts to move and changes the working position. Therefore, when the device changes the working position, the blanking block 60 rotates to discharge the upper finished product. This process saves the pause time of the device and improves the production efficiency of the device.

[0020] Furthermore, as Figure 5 and Figure 6 shown, the compression component 40 includes a moving block 41 rotatably connected to the telescopic plate 13. A telescopic cylinder 43 is fixedly installed on the upper side of the moving block 41. The output end of the telescopic cylinder 43 is fixed with a compression plate 46. The compression plate 46 is adapted to the clamping component 20 and the bi-directional pushing component 14. The clamping component 20 and the bi-directional pushing component 14 clamp the blanket to be compressed. The compression plate 46 moves downward along with the telescopic cylinder 43, and the blanket can be compressed; Two symmetric heating components 42 are fixedly installed on the upper side of the moving block 41. The heating components 42 are used for sealing the packaging bag; Next, two symmetric sliding plates 44 are fixedly installed on the lower side of the moving block 41. Two symmetric sliding bars 45 are fixedly installed on the lower side of the moving block 41. The sliding bars 45 are perpendicular to the sliding plates 44. Therefore, the two sliding plates 44 and the two sliding bars 45 are respectively installed around the lower side of the moving block 41 and will not affect each other.

[0021] Furthermore, as Figure 7As shown, the support component 30 includes a U-shaped block 31, which is fixed to the upper end surface of the horizontal part of the support frame. Both side walls of the groove on the upper side of the U-shaped block 31 are provided with sliding grooves 32. The inner cavities of the two sliding grooves 32 are slidably installed with baffles 34 adapted to the sliding plate 44. The sliding plate 44 slides in the inner cavity of the groove on the upper side of the U-shaped block 31. like Figure 8 and Figure 9 As shown, when the compression component 40 slides to the processing position, the baffle 34 slides to the top of both sides of the slide groove 32, so that the sliding plate 44 fits with the baffle 34 to block the moving block 41, so that the moving block 41 no longer moves, which is used to stabilize the position of the compression component 40. Two mounting grooves 33 adapted to the slide bar 45 are provided at the upper end of the U-shaped block 31. The mounting groove 33 is cross-shaped, so that the slide bar 45 can only slide in translation and will not separate from the inner cavity of the mounting groove 33, so that the compression component 40 can only slide in translation.

[0022] Embodiment 2: This embodiment further defines the matching component 50 on the basis of Embodiment 1, so as to achieve the purpose of preventing the packaging bag from sticking to the device after hot melting during automatic unloading.

[0023] Specifically, Figure 10 and Figure 11 As shown, the matching component 50 includes a matching block 51, which is fixedly mounted on the upper end surface of the operating table 10. A rectangular groove 52 is provided on one side of the matching block 51. The rectangular groove 52 is provided on a side close to the blanking block 60. Slide blocks 54 are slidably mounted on both side walls of the inner cavity rectangular groove 52, so that the two slide blocks 54 can move up and down. Support springs are fixedly mounted between the two slide blocks 54 and the bottom wall of the rectangular groove 52. A support spring is fixedly mounted between the lower side of the slide block 54 and the inner cavity bottom wall of the rectangular groove 52, so as to automatically reset the upwardly moved slide block 54. A push plate 55 is fixedly mounted on the upper side of the two slide blocks 54. In addition, if Figure 12 As shown, an arc block 53 adapted to the blanking block 60 is fixedly installed on the lower side of the push plate 55. During the rotation of the blanking block 60, the arc block 53 can be lifted up, so that the push plate 55 moves upward to push the sealing position of the packaging bag upward to prevent the heat-sealed position of the packaging bag from sticking to the matching component 50.

[0024] Then, if Figure 13 As shown, the heating assembly 42 includes two cylinders 421, and the cylinders 421 are fixedly installed on the upper side of the moving block 41. The output ends of the two cylinders 421 are fixed with heating plates 422 that are compatible with the matching block 51. After the heating plates 422 are lowered, the heat-sealed position is close to the push plate 55, so the push plate 55 can push the heat-sealed packaging bag opening upwards.

[0025] It should be noted that the servo motor 11, telescopic plate 13, bidirectional pushing assembly 14, clamping component 20, heating assembly 42, telescopic cylinder 43 and compression plate 46 in the present invention are all prior arts, and their installation methods and control methods are also conventional designs, which will not be elaborated in detail in the present invention.

[0026] Working principle of the present invention: This device is a finished product compression device for blanket production and processing. Through the alternating reciprocating movement of the compression component 40, the double-station switching can be performed for compression, which reduces the pause time of the device and improves the production efficiency of the device. In addition, the material can be automatically unloaded while switching the station, which saves the unloading time of the device and further improves the production efficiency of the device. Specifically, the blanket to be compressed is first placed on the unloading block 60 on one side, and the clamping component 20 and the bidirectional pushing assembly 14 on the same side cooperate to clamp the blanket to be compressed, and then the heating plate 422 moves downward to clamp the packaging bag first, and then the compression plate 46 moves toward the output end of the telescopic cylinder 43 to compress the blanket to be compressed, and then the heating plate 422 heats and seals the packaging bag; Then, the workstation is switched, and the two connecting shafts 12 are controlled to rotate by the servo motor 11. Since the two connecting shafts 12 are connected by a synchronous pulley set, the two connecting shafts 12 rotate synchronously and have the same rotation angle, so that the telescopic plates 13 on the two connecting shafts 12 rotate synchronously and have the same rotation angle; Then, if Figure 8 and Figure 9 As shown, during the rotation of the telescopic plate 13, the moving block 41 is moved with it, so that the two slide bars 45 at the lower end of the moving block 41 move in the inner cavity of the mounting groove 33, and the slide bar 45 in contact with the baffle 34 moves in the inner cavity of the groove on the upper side of the U-shaped block 31 along with the movement of the baffle 34. When the baffle 34 moves to the other side of the inner cavity of the slide groove 32, the slide bar 45 continues to move until the other slide bar 45 contacts the baffle 34. At this time, the moving block 41 no longer moves, and the station switching of the device is completed. The switching of the double stations can save the preparation time for loading and improve the production efficiency of the device; During the process of switching workstations, the device can automatically unload materials, saving the manual unloading time of the device and improving the production efficiency of the device; Specifically, during the rotation of the connecting shaft 12, the mounting shaft 62 rotates with the blanking block 60 through the synchronous pulley set, and the rotation of the connecting shaft 12 causes the telescopic plate 13 to move the compression component 40 to switch the workstation. Therefore, during the switching of the workstation, the blanking block 60 rotates, so that the felt compressed on the upper side of the blanking block 60 can be automatically unloaded; Next, when the automatic unloading block 60 is unloading automatically, if the sealing position of the packaging bag is stuck to the device, the automatic unloading cannot be completed, thereby affecting the production efficiency of the device; As Figure 12 and Figure 13 shown, by rotating the blanking block 60, the blanking block 60 jacks up the closely attached arc-shaped block 53, so that the arc-shaped block 53 drives the push plate 55 to move upward. The push plate 55 approaches the heat-sealing position. Therefore, the push plate 55 pushes the heat-sealing position of the packaging bag upward, preventing the heat-sealing position of the packaging bag from sticking to the upper side of the mating block 51. In addition, the slider 54 can be reset under the action of the support spring, facilitating the next operation.

[0027] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, makes equivalent replacements or changes, and should be covered by the protection scope of the present invention.

Claims

1. A finished product compression device for blanket production and processing, comprising an operating table (10) and a servo motor (11), characterized in that: In the middle of the upper side of the operating table (10), a support component (30) is fixedly installed through a support frame. On one side of the operating table (10), two connecting shafts (12) penetrating the operating table (10) are rotatably installed. A synchronous pulley set is connected between the two connecting shafts (12). The servo motor (11) is fixedly connected to one of the connecting shafts (12). On both sides of the two connecting shafts (12), telescopic plates (13) parallel to each other are fixedly installed. On the side of the two telescopic plates (13) on the same side away from the operating table (10), a compression component (40) that reciprocally slides on the support component (30) is rotatably installed. On the lower side of the operating table (10), two rotating blanking blocks (60) are installed; By rotating the telescopic plates (13) on both sides, the compression component (40) can reciprocally move alternately on the support component (30), and at the same time, the blanking block (60) can be flipped.

2. The finished product compression device for blanket production and processing according to claim 1, characterized in that, On the upper side of the operating table (10), two groups of clamping components (20) are fixed. In the middle of the upper side of the operating table (10), a two-way pushing component (14) adapted to the clamping component (20) is fixed.

3. A finished product compression device for blanket production and processing according to claim 1, characterized in that, On the operating table (10), a blanking groove (15) adapted to the blanking block (60) is opened. On both sides of the blanking block (60), L-shaped mounting plates (61) fixedly installed on the lower end surface of the operating table (10) are installed. An installation shaft (62) penetrating the blanking block (60) is rotatably installed between the two L-shaped mounting plates (61). The installation shaft (62) is fixedly connected to the blanking block (60). A synchronous belt is connected between the installation shaft (62) and the adjacent connecting shaft (12).

4. A finished product compression device for blanket production and processing according to claim 1, characterized in that, The compression component (40) includes a moving block (41) rotatably connected to the telescopic plate (13). On the upper side of the moving block (41), a telescopic cylinder (43) is fixedly installed. The output end of the telescopic cylinder (43) is fixed with a compression plate (46). On the upper side of the moving block (41), two symmetric heating components (42) are fixedly installed.

5. A finished product compression device for blanket production and processing according to claim 4, characterized in that, On the lower side of the moving block (41), two symmetric sliding plates (44) are fixedly installed. On the lower side of the moving block (41), two symmetric sliding strips (45) are fixedly installed. The sliding strips (45) are perpendicular to the sliding plates (44).

6. The finished product compression device for blanket production and processing according to claim 5, wherein, The support component (30) includes a U-shaped block (31). On both side walls of the groove on the upper side of the U-shaped block (31), sliding grooves (32) are opened. A baffle (34) adapted to the sliding plate (44) is jointly slidably installed in the inner cavities of the two sliding grooves (32). On the upper end of the U-shaped block (31), two installation grooves (33) adapted to the sliding strips (45) are opened.

7. A finished product compression device for blanket production and processing according to claim 4, characterized in that, On the upper side of the operation table (10), two fitting components (50) adapted to the blanking block (60) are installed. The fitting component (50) includes a fitting block (51). A rectangular groove (52) is formed on one side of the fitting block (51). Sliders (54) are slidably installed on both side walls of the inner cavity of the rectangular groove (52). Support springs are fixedly installed between the two sliders (54) and the bottom wall of the rectangular groove (52). A push plate (55) is fixedly installed on the upper sides of the two sliders (54). An arc-shaped block (53) adapted to the blanking block (60) is fixedly installed on the lower side of the push plate (55).

8. A finished product compression device for blanket production and processing according to claim 7, characterized in that, The heating component (42) includes two cylinders one (421). The output ends of the two cylinders one (421) are fixed with a heating plate (422) adapted to the fitting block (51).