A thermal insulation cotton suit mechanism and a suit method

By designing a thermal insulation cotton packaging mechanism, and utilizing negative pressure adsorption and air jet to open the packaging bag, the problem of inconvenient thermal insulation cotton packaging operation was solved, and the packaging efficiency was improved.

CN120942671BActive Publication Date: 2026-04-17浙江佳惠新材料科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
浙江佳惠新材料科技有限公司
Filing Date
2025-09-22
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

In existing technologies, the operation of bagging thermal insulation cotton is inconvenient, resulting in low efficiency in bagging.

Method used

An insulation cotton kit mechanism is adopted, including components such as a cylinder, clamps, pull rods, sliding blocks, and air jets. The packaging bag is opened by negative pressure adsorption and air jets, realizing convenient kitting of the packaging bag.

Benefits of technology

It improves the operational efficiency of thermal insulation cotton sets, simplifies the bagging process, and increases production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a thermal insulation cotton set mechanism and method, including a cylindrical body. A driving component is installed at the top of the cylindrical body, and a clamping plate is installed at the output end of the driving component. Two clamping plates are arranged opposite each other and can clamp a packaging bag. A pull rod is installed on the cylindrical body, located on the left and right sides of the vertical symmetrical plane of the cylindrical body. The pull rod can move left and right to bring the two pull rods closer or further apart. The pull rod includes a sliding surface, and a sliding block is slidably connected to the sliding surface. The sliding surface is inclined, and the two sliding surfaces are arranged parallel to each other. The sliding block includes an end face, and the end faces of the two sliding blocks are arranged opposite each other. The packaging bag includes a wall surface one and a wall surface two. When the two end faces clamp the packaging bag and continue to push the sliding blocks two closer together, one end face moves upward and the other end face moves downward, so that a gap is formed between the wall surface one and the wall surface two. This invention provides a thermal insulation cotton set mechanism and method, improving the efficiency of the set operation.
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Description

Technical Field

[0001] This invention relates to the field of thermal insulation cotton suit technology, and more specifically, to a thermal insulation cotton suit mechanism and suit fitting method. Background Technology

[0002] Thermal insulation cotton 300 is laid flat when formed, such as Figure 1 As shown, the insulation cotton 300 is wound into a cylindrical shape and needs to be placed inside the bag 200 to complete the packaging. Currently, the bag 200 needs to be placed on the outer wall of the cylindrical frame 100 before the insulation cotton 300 is pushed into the bag 200. Since the diameter of the bag 200 and the frame 100 is not much different, the operation of placing the bag 200 on the outer wall of the frame 100 is inconvenient and affects the operation efficiency. Summary of the Invention

[0003] The purpose of this invention is to overcome the shortcomings of the prior art and provide a thermal insulation cotton set mechanism and set method to improve the efficiency of set operation.

[0004] To achieve the above objectives, the present invention adopts the following technical solution: a thermal insulation cotton suit mechanism, comprising a cylindrical body, a driving component 1 installed at the top of the cylindrical body, and a clamping plate installed at the output end of the driving component 1. Two clamping plates are arranged opposite each other, and the two clamping plates can clamp a packaging bag. A pull rod 1 is installed on the cylindrical body, located on the left and right sides of the vertical symmetrical plane of the cylindrical body. The pull rod 1 can move left and right to bring the two pull rods closer together or further apart. The pull rod 1 includes a sliding surface, and a sliding block 2 is slidably connected to the sliding surface. The sliding surface is inclined, and the two sliding surfaces are arranged parallel to each other. Block 2 includes an end face, and the end faces of the two sliding blocks 2 are arranged opposite each other. The packaging bag includes wall surface 1 and wall surface 2. When the two end faces clamp the packaging bag and continue to push the sliding blocks 2 closer to each other, one end face moves upward and the other end face moves downward, so that a gap is formed between wall surface 1 and wall surface 2. It includes an extension rod, the axis of which is parallel to the axis of the cylinder. The extension rod can move up and down and can move along the axis of the cylinder. The extension rod can be inserted into the gap. The sliding block 2 is provided with a channel 1, which passes through the end face. The channel 1 can generate negative pressure.

[0005] The invention is further configured such that a first pull rod is slidably connected to a first sliding block, the first sliding block being able to move left and right; a support plate is installed on the first pull rod, a support rod is installed on the support plate, and a spring is sleeved on the support rod; one end of the spring abuts against the support plate and the other end abuts against the first sliding block; the second sliding block also includes an inclined surface, and the side of the first sliding block away from the spring abuts against the inclined surface.

[0006] The present invention is further configured to include a lifting seat, which is capable of moving up and down, and a sliding sleeve is slidably connected to the lifting seat. The sliding sleeve is capable of moving along the axial direction of the cylinder. A rotating shaft is rotatably connected to the inner wall of the sliding sleeve, and a fixing rod is installed at one end of the rotating shaft. The fixing rod includes an extension rod.

[0007] The invention is further configured such that the extension rod can be inserted into the cylinder, and the side of the extension rod inserted into the cylinder is tapered.

[0008] The present invention is further configured such that the channel is connected to an air pipe, and the air pipe is connected to an external negative pressure device.

[0009] The invention is further configured such that the cylinder is equipped with two pull rods, one below the other and located on the left and right sides of the vertical symmetrical plane of the cylinder. The pull rods can move left and right. Each pull rod includes a channel, which is connected to an external negative pressure device via an air pipe. The channel extends through the wall of the other pull rod and the two pull rods are close to each other and can clamp the packaging bag.

[0010] The invention is further configured to include a jet head, with the jet tip aligned with the opening of the packaged bag after it has been opened.

[0011] The present invention also adopts the following technical solution: a method for fitting thermal insulation cotton, which uses a thermal insulation cotton fitting mechanism to fit the thermal insulation cotton roll, including the following steps:

[0012] ① Install the packaging bag, clamp the top edge of the packaging bag with the clamps, bring the two pull rods together, and clamp the packaging bag on both sides;

[0013] ② The negative pressure generated by the channels 1 and 2 will attract the corresponding wall surfaces 1 and 2;

[0014] ③In the initial state, the two end faces are at the same height. The two tie rods continue to move closer to each other. One end face moves upward and the other end face moves downward. Under the friction of the two end faces, a gap is formed between the two wall surfaces.

[0015] ④ Insert the extension rod into the gap;

[0016] ⑤ The two tie rods move away from each other so that the two end faces return to the same height. At the same time, the extension rod moves downward and inserts between the two end faces so that the outer wall surface of the extension rod and the end face clamp either wall surface one or wall surface two.

[0017] ⑥ The two pull rods move away from each other, and the end faces pull open the corresponding wall surfaces one and two to open the packaging bag;

[0018] ⑦ Aim the jet nozzle at the open packaging bag and spray air to make the packaging bag open into a cylindrical shape;

[0019] ⑧ Wrap the thermal insulation cotton roll around the body and push it into the packaging bag to complete the set.

[0020] In summary, the present invention has the following beneficial effects:

[0021] When the two ends of the packaging bag are clamped together and the sliding block two is pushed closer together, one end moves upward and the other end moves downward, creating a gap between wall surface one and wall surface two. This allows the extension rod to be inserted into the gap, facilitating the injection of air into the gap to open the packaging bag. The packaging bag clamping is convenient, improving production efficiency. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the background technology;

[0023] Figure 2 This is a cross-sectional view of an embodiment;

[0024] Figure 3 for Figure 1 Enlarged view of point A in the middle;

[0025] Figure 4 This is a cross-sectional schematic diagram of the lifting platform in the embodiment;

[0026] Figure 5 The packaging bag is opened in the example. Figure 1 ;

[0027] Figure 6 The packaging bag is opened in the example. Figure 2 ;

[0028] Figure 7 This is a schematic diagram of the packaging of the thermal insulation cotton roll in the embodiment.

[0029] Reference numerals in the attached drawings: 1. Cylinder body; 11. Drive component one; 111. Clamping plate; 2. Lifting seat; 21. Sliding sleeve; 22. Motor; 23. Bearing; 24. Rotating shaft; 25. Fixing rod; 251. Extension rod; 3. Fixing seat; 31. Drive component two; 32. Fixing plate; 33. Pull rod one; 33. Sliding surface; 331. Support plate; 34. Support rod; 341. Spring; 35. Sliding block one; 36. Sliding block two; 37. Channel one; 371. End face; 372. Inclined surface; 373. Air pipe one; 38. Pull rod two; 41. Channel two; 41. Air pipe two; 5. Packaging bag; 6. Wall surface one; 61. Wall surface two; 62. Gap part; 63. Insulation cotton roll body; 7. Drive plate; 8. Jet head; 9. Cylinder frame body; 100. Bag; 200. Insulation cotton; 300. Detailed Implementation

[0030] 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.

[0031] like Figures 2-7As shown, this embodiment discloses a thermal insulation cotton suit mechanism, including a cylindrical body 1, combined with... Figure 2 , Figure 7 The cylinder 1 is a cylindrical structure. A drive component 11 is installed on the top of the cylinder 1. The drive component 11 is a thumb cylinder. A clamping plate 111 is installed at the output end of the drive component 11. There are two clamping plates 111 arranged opposite each other. The two clamping plates 111 can clamp the packaging bag 6. Figure 2 In the middle, the packaging bag 6 has a flat rectangular structure, and two clamps 111 hold the top edge of the packaging bag 6. For example... Figure 5 As shown, the packaging bag 6 includes a first wall 61 and a second wall 62 located on the left and right sides. When the first wall 61 and the second wall 62 are opened, a storage space can be formed inside the packaging bag 6 for storage. Figure 7 The thermal insulation cotton roll shown is 7.

[0032] like Figure 2 As shown, the cylinder 1 is equipped with a pull rod 33, which is located on the left and right sides of the vertical symmetrical plane of the cylinder 1. The pull rods 33 can move left and right to bring the two pull rods 33 closer to each other or further apart. Specifically, a fixed seat 3 is installed on the outer wall of the cylinder 1, and a driving component 31 is installed on the top of the fixed seat 3. The driving component 31 is a cylinder, and a fixed plate 32 is installed at the output end of the driving component 31. The fixed plate 32 is fixedly connected to one end of the pull rod 33, and the pull rod 33 moves left and right under the driving action of the driving component 31.

[0033] like Figure 3 As shown, the pull rod 33 includes a sliding surface 331. The two sliding surfaces 331 are arranged in parallel. The sliding surface 331 is an inclined surface. The sliding surface 331 of the left pull rod 33 gradually tilts downward in the right direction, and the sliding surface 331 of the right pull rod 33 gradually tilts upward in the left direction.

[0034] like Figure 3 As shown, the sliding surface 331 is equipped with a slide rail or a slide groove to slide the second sliding block 37. The first pull rod 33 is slidably connected to the first sliding block 36. The first sliding block 36 can move left and right. The first sliding block 36 and the first pull rod 33 are connected by a slide rail.

[0035] A support plate 34 is installed on the first pull rod 33, a support rod 341 is installed on the support plate 34, a spring 35 is sleeved on the support rod 341, one end of the spring 35 abuts against the support plate 34 and the other end abuts against the first sliding block 36, and the second sliding block 37 includes an inclined surface 373, with the side of the first sliding block 36 away from the spring 35 abutting against the inclined surface 373.

[0036] Combination Figure 3 , Figure 5The second sliding block 37 includes an end face 372. The end faces 372 of the two second sliding blocks 37 are arranged opposite each other. When the two end faces 372 clamp the packaging bag 6 and continue to push the second sliding blocks 37 closer to each other, one end face 372 moves upward and the other end face 372 moves downward, so that a gap 63 is formed between the first wall surface 61 and the second wall surface 62.

[0037] like Figure 2 , Figure 4 As shown, it includes a lifting seat 2, which can move up and down via a cylinder. Figure 2 (As shown in the diagram), the lifting seat 2 is slidably connected to a sliding sleeve 21, which can move axially along the cylinder 1. The axis of the sliding sleeve 21 is parallel to the axis of the cylinder 1. A rotating shaft 24 is rotatably connected to the inner wall of the sliding sleeve 21. A bearing 23 is installed between the inner wall of the sliding sleeve 21 and the outer wall of the rotating shaft 24. A motor 22 is installed on the sliding sleeve 21, and the motor 22 drives the rotating shaft 24 to rotate. A fixing rod 25 is installed at one end of the rotating shaft 24. The fixing rod 25 is L-shaped and includes an extension rod 251. The extension rod 251 can be inserted into the cylinder 1, and the side of the extension rod 251 inserted into the cylinder 1 is tapered.

[0038] The axis of the extension rod 251 is parallel to the axis of the cylinder 1. Under the synchronous movement of the rotating shaft 24, the extension rod 251 can move up and down and can move along the axis of the cylinder 1. The extension rod 251 can be inserted into the gap 63 to facilitate the injection of air into the gap 63, thereby opening the packaging bag 6.

[0039] The sliding block 2 37 is provided with a channel 371, which is connected to an air pipe 38. The air pipe 38 is an external negative pressure device. The channel 371 passes through the end face 372. The channel 371 can generate negative pressure, thereby causing the end face 372 to suck the wall surface 61 or the wall surface 62.

[0040] like Figure 6 As shown, after the extension rod 251 is inserted into the gap 63, it moves downward to be inserted between the two end faces 372, thereby separating wall surface 61 and wall surface 62 from left to right. This allows the end faces 372 to easily attract wall surface 61 or wall surface 62 and move away from each other, thus opening the packaging bag 6. The contact surface between the extension rod 251 and the end face 372 is a cylindrical surface, which reduces air leakage after the outer wall surface of the extension rod 251 and the end face 372 clamp wall surface 61 or wall surface 62. This reduces the interference between the negative pressure generated by the two end faces 372 and wall surface 61 and wall surface 62, allowing wall surface 61 and wall surface 62 to separate. After separation, the two end faces 372 attract and pull apart their respective wall surfaces 61 and 62 to open the packaging bag 6.

[0041] like Figure 2As shown, cylinder 1 is equipped with two pull rods 4. The pull rods 4 are located below pull rod 33 and on either side of the vertical symmetrical plane of cylinder 1. The pull rods 4 can move left and right. Each pull rod 4 includes a channel 41, which connects to an external negative pressure device via an air pipe 5. The channel 41 extends through the wall of the other pull rod 4, allowing the two pull rods 4 to approach each other and clamp the packaging bag 6. By moving the pull rods 4 to either side, they pull the corresponding walls 61 and 62 apart to open the packaging bag 6.

[0042] It also includes a jet head 9, whose jet tip is aimed at the opened packaging bag 6 and jets air to make the packaging bag 6 open into a cylindrical shape.

[0043] The assembly method for the above-mentioned thermal insulation kit is as follows:

[0044] ① Install the packaging bag 6, clamp plate 111 clamps the upper edge of the packaging bag 6, pull rods 1 on both sides 33 move closer together, end faces 372 on both sides clamp the packaging bag 6, and pull rods 2 on both sides 4 move closer together and clamp the packaging bag 6.

[0045] ② When the negative pressure device is turned on, the negative pressure generated in the first channel 371 and the second channel 41 will attract the corresponding wall surface 61 and wall surface 62.

[0046] ③In the initial state, both end faces 372 are at the same height, such as Figure 2 As shown, the two pull rods 33 continue to move closer to each other, the end face 372 on the left moves upward and the end face 372 on the right moves downward. The wall surface 61 and the wall surface 62 are clamped and fixed by the friction of the two end faces 372 and the upper edge of the packaging bag 6, so that a gap 63 is formed between the wall surface 61 and the wall surface 62.

[0047] ④ After the extension rod 251 rotates around the axis of the sliding sleeve 21, it is aligned and inserted into the gap 63 so that the extension rod 251 will separate the wall surface 61 and the wall surface 62 on the left and right.

[0048] ⑤ The two pull rods 33 move away from each other so that the two end faces 372 return to the same height. At the same time, the extension rod 251 moves downward and inserts between the two end faces 372 so that the outer wall surface of the extension rod 251 and the end face 372 clamp the wall surface 61 or the wall surface 62.

[0049] ⑥ The two pull rods 33 move away from each other, and the end face 372 pulls open the corresponding wall surface 61 and wall surface 62 to open the packaging bag 6. At the same time, the pull rod 4 moves to both sides, and the pull rod 4 pulls the corresponding wall surface 61 and wall surface 62 to open the packaging bag 6.

[0050] ⑦ The jet nozzle 9 sprays air at the opened packaging bag 6 to make the packaging bag 6 open into a cylindrical shape.

[0051] ⑧ After the thermal insulation cotton roll 7 is pushed into the packaging bag 6 to complete the set under the push of the drive plate 8, the clamp 111 releases the packaging bag 6, and the drive plate 8 pushes the packaging bag 6 and the thermal insulation cotton roll 7 out of the cylinder 1 together.

[0052] The above description is merely a preferred embodiment of the present invention. The scope of protection of the present invention is not limited to the above embodiments. All technical solutions falling within the scope of the present invention's concept are within the scope of protection of the present invention. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principles of the present invention should also be considered within the scope of protection of the present invention.

Claims

1. A thermal insulation cotton suit mechanism, characterized in that, Includes a cylindrical body (1), a driving component (11) is installed on the top of the cylindrical body (1), a clamping plate (111) is installed at the output end of the driving component (11), two clamping plates (111) are arranged opposite each other, and the two clamping plates (111) can clamp the packaging bag (6). The cylinder (1) is equipped with a first pull rod (33), which is located on the left and right sides of the vertical symmetry plane of the cylinder (1). The first pull rod (33) can move left and right to bring the two first pull rods (33) closer to each other or further apart. The first pull rod (33) includes a sliding surface (331), and the sliding surface (331) is slidably connected to a second sliding block (37). The sliding surface (331) is an inclined surface, and the two sliding surfaces (331) are arranged in parallel. The second sliding block (37) The packaging bag (6) includes an end face (372), and the end faces (372) of the two sliding blocks (37) are arranged opposite to each other. The packaging bag (6) includes a wall surface (61) and a wall surface (62). When the two end faces (372) clamp the packaging bag (6) and continue to push the sliding blocks (37) closer to each other, one of the end faces (372) moves upward and the other end face (372) moves downward, so that a gap (63) is formed between the wall surface (61) and the wall surface (62). Includes an extension rod (251), the axis of which is parallel to the axis of the cylinder (1), the extension rod (251) can move up and down and can move along the axis of the cylinder (1), the extension rod (251) can be inserted into the gap (63), the sliding block two (37) is provided with a channel one (371), the channel one (371) penetrates the end face (372), and the channel one (371) can generate negative pressure; The first pull rod (33) is slidably connected to the first sliding block (36), which can move left and right. The first pull rod (33) is equipped with a support plate (34), and the support plate (34) is equipped with a support rod (341). The support rod (341) is fitted with a spring (35). One end of the spring (35) abuts against the support plate (34) and the other end abuts against the first sliding block (36). The second sliding block (37) also includes an inclined surface (373), and the side of the first sliding block (36) away from the spring (35) abuts against the inclined surface (373).

2. The thermal insulation cotton suit mechanism according to claim 1, characterized in that, The device includes a lifting seat (2), which can move up and down. The lifting seat (2) is slidably connected to a sliding sleeve (21), which can move along the axial direction of the cylinder (1). The inner wall of the sliding sleeve (21) is rotatably connected to a rotating shaft (24), and a fixing rod (25) is installed at one end of the rotating shaft (24). The fixing rod (25) includes the extension rod (251).

3. The thermal insulation cotton suit mechanism according to claim 1, characterized in that, The extension rod (251) can be inserted into the cylinder (1), and the side of the extension rod (251) inserted into the cylinder (1) is tapered.

4. The thermal insulation cotton suit mechanism according to claim 1, characterized in that, The cylinder (1) is equipped with a second pull rod (4). There are two pull rods (4). The second pull rod (4) is located below the first pull rod (33). The second pull rod (4) is located on the left and right sides of the vertical symmetry plane of the cylinder (1). The second pull rod (4) can move left and right. The second pull rod (4) includes a second channel (41). The second channel (41) passes through the wall of the second pull rod (4) facing the other second pull rod (4). The two second pull rods (4) are close to each other and can clamp the packaging bag (6).

5. The thermal insulation cotton suit mechanism according to claim 1, characterized in that, Includes a jet nozzle (9), the jet nozzle (9) having its jet end aligned with the opening of the package bag (6) after it has been opened.

6. A method for fitting thermal insulation cotton, comprising fitting a thermal insulation cotton roll (7) using the thermal insulation cotton fitting mechanism according to any one of claims 1-5, characterized in that, Includes the following steps: ① Install the packaging bag (6), clamp the upper edge of the packaging bag (6) with the clamp (111), pull rods (33) on both sides are close together, and the end faces (372) on both sides clamp the packaging bag (6); ② The negative pressure generated by the first channel (371) and the second channel (41) is used to attract the corresponding wall surface (61) and wall surface (62); ③In the initial state, the two end faces (372) are at the same height, the two tie rods (33) continue to move closer to each other, one end face (372) moves upward and the other end face (372) moves downward. Under the friction of the two end faces (372), the gap (63) is formed between the wall surface (61) and the wall surface (62). ④ The extension rod (251) is inserted into the gap (63); ⑤ The two pull rods (33) move away from each other so that the two end faces (372) return to the same height. At the same time, the extension rod (251) moves downward and inserts between the two end faces (372) so that the outer wall surface of the extension rod (251) and the end face (372) clamp the wall surface (61) or the wall surface (62). ⑥ The two pull rods (33) move away from each other, and the end face (372) pulls open the corresponding wall surface (61) and wall surface (62) to open the packaging bag (6); ⑦ The jet nozzle (9) sprays air at the opened packaging bag (6) to open the packaging bag (6) into a cylindrical shape; ⑧ The thermal insulation cotton roll (7) is pushed into the packaging bag (6) to complete the set.

Citation Information

Patent Citations

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