Transfer device for packaging lining production

By designing the chassis, longitudinal support, and lateral adjustment mechanism, and utilizing the principle of bidirectional screws, the problem of difficult operation of the EPE foam transfer device was solved, enabling convenient storage and stable transfer of EPE foam raw materials.

CN223982543UActive Publication Date: 2026-03-10XINZHENG YONGZHIFENG PACKAGING MATERIALS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-07
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

Existing pearl cotton transfer devices require manual bending over to stack and retrieve goods, which is difficult to operate, and the side walls of the boxes hinder storage and retrieval operations.

Method used

It adopts a chassis, longitudinal support mechanism and lateral adjustment mechanism, and utilizes the principle of bidirectional lead screw to manually drive the worm gear and lead screw to clamp or loosen the pearl cotton material of the frame, simplifying the operation.

Benefits of technology

It enables convenient storage and stable transfer of pearl cotton raw materials, is easy to operate, reduces manual labor intensity, and improves transfer efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a transfer device for packaging lining production. The transfer device comprises a base plate, a longitudinal supporting mechanism and a transverse adjusting mechanism. The chassis is formed by butting a front side butting plate, a middle butting plate and a rear side butting plate; the longitudinal supporting mechanism comprises middle vertical frames and corner supporting vertical frames, the corner supporting vertical frames are arranged on the front side of the upper surface of the front side butt joint plate in a bilateral symmetry mode, and the middle vertical frames are arranged in the middle of the upper surface of the middle butt joint plate in a bilateral symmetry mode; the transverse adjusting mechanism comprises a front side rectangular cylinder, sleeving rectangular cylinders, a sliding rectangular cylinder, a threaded cylinder, a lead screw, a worm gear and a worm, the front side rectangular cylinder is fixedly connected to the front side of the upper surface of the front side butt joint plate, and the sleeving rectangular cylinders are fixedly connected to the middle of the left side face and the middle of the right side face of the front side rectangular cylinder correspondingly; according to the transfer device for packaging lining production, operation is easy and convenient, and storage and taking are convenient and fast when pearl wool raw materials are transferred.
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Description

TECHNICAL FIELD

[0001] The utility model relates to pearl wool production transfer technical field, specifically for a kind of transfer device for packing lining production. BACKGROUND

[0002] Pearl wool is a new type of environmental protection packing material which is made of low-density polyethylene and has numerous independent bubbles by physical foaming. It has many advantages such as water-proof, moisture-proof, shock-proof, sound-proof, heat preservation, good plasticity, strong toughness, recycling, environmental protection and strong impact resistance, and is widely used in the packaging of electronic appliances, instruments, computers, audio equipment, medical equipment, industrial parts, handicrafts, glass, ceramics, furniture and other products.

[0003] In the prior art, a patent with the authorization publication number CN202022528127.4 discloses an EPE pearl wool transfer device convenient for overall stacking, which comprises a transfer box.

[0004] The above-mentioned pearl wool transfer device has some problems in actual use, for example, it needs to be continuously bent by manual operation for stacking, and when the goods in the box are taken out, the side wall of the box tightly contacts the side of the cotton material, which hinders the storage and retrieval operation, and the operation of transferring goods is more difficult. Therefore, we propose a transfer device for packing lining production. UTILITY MODEL CONTENT

[0005] The technical problem to be solved by the utility model is to overcome the defects of the prior art and provide a transfer device for packing lining production, which is easy to operate, convenient to store and retrieve when transferring pearl wool raw materials, and can effectively solve the problems in the background art.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a transfer device for packing lining production, comprising a base plate, a longitudinal support mechanism and a transverse adjusting mechanism.

[0007] The base plate is formed by butt joint of a front side butt joint plate, a middle butt joint plate and a rear side butt joint plate.

[0008] The longitudinal support mechanism comprises a middle vertical frame and a corner support vertical frame, the corner support vertical frame is symmetrically arranged on the upper surface of the front side butt joint plate, and the middle butt joint plate is symmetrically provided with a middle vertical frame on the upper surface.

[0009] The transverse adjusting mechanism comprises a front-side rectangular cylinder, a sleeving rectangular cylinder, a sliding rectangular cylinder, a threaded cylinder, a screw rod, a worm wheel and a worm, the front-side rectangular cylinder is fixedly connected to the upper surface front side of the front-side butt joint plate, the middle part of the left side surface of the front-side rectangular cylinder and the middle part of the right side surface are fixedly connected with sleeving rectangular cylinders respectively, the interiors of the two sleeving rectangular cylinders are slidably connected with sliding rectangular cylinders respectively, the outer surfaces of the two sliding rectangular cylinders away from the front-side rectangular cylinder are fixedly connected with the outer surfaces of the corner support vertical supports on the same side respectively, the inner walls of the two sleeving rectangular cylinders are rotatably connected with screw rods respectively, the outer threaded surfaces of the two screw rods are threadedly connected with threaded cylinders respectively, the interiors of the two threaded cylinders are fixedly connected with the sliding rectangular cylinders on the same side respectively, the two screw rods are fixedly connected through a rotating rod, the outer arc surface of the rotating rod is fixedly connected with the worm wheel, the front and back inner walls of the front-side rectangular cylinder are rotatably connected with the worm, and the worm wheel is meshedly connected with the worm, so that the operation is simple, and the pearl wool raw material is convenient to store and take when being transported.

[0010] Further, the transverse adjusting mechanism further comprises front-side fixed circular sleeves and front-side sliding circular sleeves, the opposite inner side surfaces of the two corner support vertical supports are fixedly and symmetrically connected with front-side sliding circular sleeves in an up-down manner, the outer arc surfaces of the two front-side sliding circular sleeves are movably sleeved with front-side fixed circular sleeves respectively, and the tail ends of the four front-side fixed circular sleeves are fixedly connected with the outer surfaces of one front-side rectangular cylinder, so that the stability during the adjustment position is guaranteed.

[0011] Further, the longitudinal supporting mechanism further comprises side sliding cylinders, rear vertical supports, rear sliding cylinders and fixed sleeves, the rear side surfaces of the two corner support vertical supports on the front side are fixedly connected with uniformly distributed fixed sleeves, the front side surfaces and the rear side surfaces of the two middle vertical supports are fixedly connected with uniformly distributed side sliding cylinders respectively, the interiors of the eight side sliding cylinders on the front side are fixedly sleeved with the outer arc surfaces of the fixed sleeves at the same positions respectively, the interiors of the eight side sliding cylinders on the rear side are movably sleeved with rear sliding cylinders respectively, and the rear ends of every four vertically adjacent rear sliding cylinders are fixedly connected with the front sides of one rear vertical support, so that the limiting function is realized.

[0012] Further, the transverse adjusting mechanism further comprises sliding grooves, the sliding grooves are symmetrically formed on the front side of the upper surface of the front-side butt joint plate and the rear side of the upper surface of the rear-side butt joint plate respectively, the interiors of the sliding grooves on the front side are slidably connected with the outer surfaces of the corner support vertical supports on the same side, and the interiors of the sliding grooves on the rear side are slidably connected with the outer surfaces of the rear vertical supports on the same side, so that the positions of the front-side butt joint plate and the rear vertical supports are limited.

[0013] Further, the longitudinal support mechanism further comprises middle support plates and front side support plates, the middle support plates are uniformly fixedly connected to opposite inner sides of the two middle vertical supports, and the opposite inner sides of the two corner support vertical supports are fixedly connected with uniformly distributed front side support plates, so that the flexible contact with the packaging liner raw material is realized, and the problem of scratches caused by the direct support of the raw material by the frame body is prevented.

[0014] Further, the rear sides of the two rear vertical supports are fixedly connected with rotary frames, and the rear sides of the two rotary frames are fixedly connected with hooks, so that the rear side support function is realized.

[0015] Further, the front side of the front side butt joint plate is rotatably connected with a handle through a rotating shaft, and the lower sides of the front side butt joint plate and the rear side butt joint plate are respectively and left-right symmetrically provided with universal wheels, so that the pulling function is realized.

[0016] Further, the front side of the worm is fixedly connected with a twist valve, so that the manual driving function is realized.

[0017] Compared with the prior art, the packaging liner production transfer device has the following advantages:

[0018] The mechanism adopts the bidirectional screw rod principle, drives the upper frame body and the right frame body of the transfer trolley to approach each other, clamps the pearl wool liner raw material, and makes the pearl wool liner raw material stable during operation. The manual twist valve mode is used to drive the worm gear to rotate, and the rotating force is transferred to the bidirectional screw rod, so that the pearl wool raw material is clamped or loosened by the manual driving frame body, the operation is simple, and the pearl wool raw material is stored and taken conveniently during transfer. BRIEF DESCRIPTION OF DRAWINGS

[0019] Fig. 1 It is a structural schematic view of the utility model;

[0020] Fig. 2 It is an explosion structural schematic view of the utility model;

[0021] Fig. 3 It is an enlarged structural schematic view of A of the utility model.

[0022] In the drawing: 1 bottom disc, 101 front side butt joint plate, 102 middle butt joint plate, 103 rear side butt joint plate, 2 longitudinal support mechanism, 201 middle vertical support, 202 middle support plate, 203 side edge sliding cylinder, 204 rear vertical support, 205 rear sliding cylinder, 206 fixed sleeve, 207 corner support vertical support, 208 front side support plate, 3 rotary frame, 4 hook, 5 horizontal adjustment mechanism, 501 front side rectangular cylinder, 502 sleeved rectangular cylinder, 503 sliding rectangular cylinder, 504 threaded cylinder, 505 screw rod, 506 front side fixed circular sleeve, 507 front side sliding circular sleeve, 508 worm gear, 509 worm, 510 sliding groove, 6 universal wheel, 7 handle, 8 twist valve. DETAILED DESCRIPTION

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0024] Please see Figs. 1-3 This embodiment provides a technical solution: a transfer device for producing packaging liners, including a chassis 1, a longitudinal support mechanism 2 and a transverse adjustment mechanism 5;

[0025] Chassis 1: It is formed by connecting the front connecting plate 101, the middle connecting plate 102 and the rear connecting plate 103. The front side of the front connecting plate 101 is rotatably connected to the handle 7 via a pivot. The lower sides of the front connecting plate 101 and the rear connecting plate 103 are respectively provided with symmetrical casters 6. When it is necessary to use this transfer device to transfer the pearl cotton lining material, the transfer device can be spliced. First, adjust the distance between the front connecting plate 101 and the rear connecting plate 103 according to the length and width of the pearl cotton lining material. Then, fasten the middle connecting plate 102 onto the upper surface of the front connecting plate 101 and the rear connecting plate 103. It should be noted that the bolt holes on the middle connecting plate 102 need to correspond to the bolt holes on the front connecting plate 101 and the rear connecting plate 103. Then the splicing is completed.

[0026] Longitudinal support mechanism 2: It includes a central vertical frame 201 and corner support vertical frames 207. The corner support vertical frames 207 are symmetrically arranged on the front side of the upper surface of the front connecting plate 101. The central vertical frame 201 is symmetrically arranged on the middle of the upper surface of the central connecting plate 102. The longitudinal support mechanism 2 also includes side sliding cylinders 203, rear vertical frames 204, rear sliding cylinders 205, and fixing sleeves 206. The rear sides of the two front corner support vertical frames 207 are fixedly connected with evenly distributed fixing sleeves 206. The front and rear sides of the two central vertical frames 201 are respectively fixedly connected with evenly distributed side sliding cylinders 203. The eight front side sliding cylinders 203... The interior of 03 is fixedly sleeved with the outer arc surface of the fixed sleeve 206 located at the same position. The interior of the eight side sliding cylinders 203 on the rear side is movably sleeved with the rear sliding cylinders 205. The rear end of every four vertically adjacent rear sliding cylinders 205 is fixedly connected to the front side of a rear vertical frame 204. The longitudinal support mechanism 2 also includes a central support plate 202 and a front support plate 208. The central support plate 202 is evenly fixedly connected to the opposite inner sides of the two central vertical frames 201. The opposite inner sides of the two corner support vertical frames 207 are fixedly connected with evenly distributed front support plates 208. The rear sides of the two rear vertical frames 204 are fixedly connected with rotating frames. 3. Hooks 4 are fixedly connected to the rear sides of the two rotating frames 3 respectively. During the splicing process, the side sliding cylinder 203 needs to be inserted into the rear sliding cylinder 205. This not only achieves initial positioning but also facilitates splicing, thereby causing the two corner support vertical frames 207 to move relatively far apart and relatively close together. At this time, the two corner support vertical frames 207 can be adjusted to move relatively close together, so that the front support plate 208 clamps the surface of the pearl cotton lining material. The middle support plate 202 will also clamp the surface of the pearl cotton lining material. The rotating frame 3 also clamps the surface of the pearl cotton lining material simultaneously. At this time, all four sides of the pearl cotton lining material will be clamped. The transfer device can be moved to a designated position using the handle 7 and casters 6. Once in the designated position, the above operations can be reversed. The two corner support frames 207 move away from each other, the middle support plate 202 and the front support plate 208 lose their side grip on the pearl cotton lining material and continue to move away. At the same time, the rotating frame 3 also loses its rear side grip on the pearl cotton lining material. At this time, the pearl cotton lining material can be moved from the rear side to complete the transfer operation. The weight of pearl cotton is lighter than that of solid packaging, so except for the chassis 1, the rest of the frame can be made of stainless steel to reduce weight and facilitate manual rotation of the torsion valve 8.

[0027] Horizontal adjustment mechanism 5: It includes a front rectangular tube 501, a sleeve rectangular tube 502, a sliding rectangular tube 503, a threaded tube 504, a lead screw 505, a worm gear 508, and a worm 509. The front rectangular tube 501 is fixedly connected to the front side of the upper surface of the front abutment plate 101. The middle of the left side and the middle of the right side of the front rectangular tube 501 are respectively fixedly connected to the sleeve rectangular tube 502. The sliding rectangular tube 503 is slidably connected inside the two sleeve rectangular tubes 502. The ends of the two sliding rectangular tubes 503 away from the front rectangular tube 501 are respectively fixedly connected to the outer surface of the corner support frame 207 located on the same side. The inner walls of the rectangular tube 502 are rotatably connected to lead screws 505, and the external thread surfaces of the two lead screws 505 are threaded to threaded cylinders 504. The two threaded cylinders 504 are fixedly connected to the interior of the sliding rectangular tube 503 located on the same side. The two lead screws 505 are fixedly connected to each other by a rotating rod. The outer arc surface of the rotating rod is fixedly connected to a worm gear 508. The front and rear inner walls of the front rectangular tube 501 are rotatably connected to a worm 509. The worm gear 508 and the worm 509 are meshed. The lateral adjustment mechanism 5 also includes a front fixed circular sleeve 506 and a front sliding circular sleeve 507. The opposite inner surfaces of the two corner support vertical brackets 207 are respectively up and down. A symmetrical fixed front sliding circular sleeve 507 is provided. The outer arc surfaces of two front sliding circular sleeves 507 are respectively movably fitted with front fixed circular sleeves 506. The ends of all four front fixed circular sleeves 506 are fixedly connected to the outer surface of a front rectangular tube 501. The lateral adjustment mechanism 5 also includes a sliding groove 510, which is symmetrically opened on the front side of the upper surface of the front docking plate 101 and the rear side of the upper surface of the rear docking plate 103. The interior of the front sliding groove 510 is slidably connected to the lower side of the outer surface of the corner support vertical frame 207 located on the same side, and the interior of the rear sliding groove 510 is slidably connected to the rear vertical frame 207 located on the same side. The rear vertical frame 204 is slidably connected to the lower outer surface. The front side of the worm gear 509 is fixedly connected to the torsion valve 8. After the chassis 1 is assembled, the transfer device can be used normally. At this time, the pearl cotton lining material can be placed on the upper surface of the chassis 1 in sequence and stacked. After stacking, the torsion valve 8 can be manually rotated in the forward and reverse directions, which will drive the worm gear 509 to rotate in the forward and reverse directions, which will drive the worm wheel 508 to rotate in the forward and reverse directions, which will drive the two lead screws 505 to rotate in the forward and reverse directions simultaneously. The two lead screws 505 have opposite thread directions, which will drive the two sleeved rectangular cylinders 502 to move away from each other and closer together through the threaded cylinder 504.

[0028] The working principle of the transfer device for packaging lining production provided by this utility model is as follows: When it is necessary to use this transfer device to transfer pearl cotton lining raw materials, the transfer device can be spliced. First, adjust the distance between the front connecting plate 101 and the rear connecting plate 103 according to the length and width of the pearl cotton lining raw materials. Then, fasten the middle connecting plate 102 onto the upper surfaces of the front connecting plate 101 and the rear connecting plate 103. It should be noted that the bolt holes on the middle connecting plate 102 need to be aligned with the bolt holes on the front connecting plate 101 and the rear connecting plate 103. Once the positions of the openings are aligned, the splicing can be completed. During the splicing process, the side sliding cylinder 203 needs to be inserted into the rear sliding cylinder 205, which can achieve primary positioning and facilitate splicing. After the chassis 1 is spliced, the transfer device can be used normally. At this time, the pearl cotton lining material can be placed on the upper surface of the chassis 1 in sequence and stacked. After stacking, the torsion valve 8 can be manually rotated in the forward and reverse directions, which will drive the worm gear 509 to rotate in the forward and reverse directions, which will drive the worm wheel 508 to rotate in the forward and reverse directions, which will drive the two lead screws. 505 rotates synchronously in both directions, with the two lead screws 505 having opposite thread directions. This, in turn, drives the two sleeved rectangular cylinders 502 to move away from each other and towards each other via the threaded cylinder 504. This, in turn, drives the two corner support vertical frames 207 to move away from each other and towards each other. At this time, the two corner support vertical frames 207 can be adjusted to move towards each other, thereby causing the front support plate 208 to clamp the surface of the pearl cotton lining material. The middle support plate 202 also clamps the surface of the pearl cotton lining material. The rotating frame 3 also simultaneously clamps the pearl cotton lining material. When the material is placed on the surface, the four sides of the pearl cotton lining material will be clamped. At this time, the transfer device can be moved to the designated position by using the handle 7 and the caster 6. After it is moved to the designated position, the above operation can be reversed. The two corner support frames 207 will move away from each other, the middle support plate 202 and the front support plate 208 will lose the side clamping of the pearl cotton lining material and continue to move away. At the same time, the rotating frame 3 will also lose the rear side clamping of the pearl cotton lining material. At this time, the pearl cotton lining material can be moved from the rear side to complete the transfer operation.

[0029] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A transfer device for packaging inner liner production, characterized by: It include chassis (1), longitudinal support mechanism (2) and horizontal adjustment mechanism (5); Chassis (1): it is by front butt joint plate (101), middle butt joint plate (102) and rear butt joint plate (103) butt joint; Longitudinal support mechanism (2): it includes middle vertical frame (201) and corner support vertical frame (207), the corner support vertical frame (207) is symmetrically set up in the upper surface front side of front butt joint plate (101), the upper surface middle part of middle butt joint plate (102) is symmetrically provided with middle vertical frame (201); Horizontal adjustment mechanism (5): it includes front rectangular tube (501), sleeve rectangular tube (502), sliding rectangular tube (503), threaded tube (504), screw rod (505), worm wheel (508) and worm (509), the upper surface front side of front butt joint plate (101) is fixedly connected with front rectangular tube (501), the left side surface middle part of front rectangular tube (501) is fixedly connected with sleeve rectangular tube (502) respectively, the inside of two sleeve rectangular tubes (502) is slidably connected with sliding rectangular tube (503) respectively, the end of two sliding rectangular tubes (503) away from front rectangular tube (501) is fixedly connected with the outer surface of corner support vertical frame (207) on the same side respectively, the inner wall of two sleeve rectangular tubes (502) is rotatably connected with screw rod (505) respectively, the outer thread surface of two screw rods (505) is threadedly connected with threaded tube (504) respectively, two threaded tubes (504) are fixedly connected with the inside of sliding rectangular tube (503) on the same side respectively, two screw rods (505) are fixedly connected through rotating rod, the outer arc surface of rotating rod is fixedly connected with worm wheel (508), the front and rear inner walls of front rectangular tube (501) are rotatably connected with worm (509), worm wheel (508) is meshingly connected with worm (509).

2. A transfer device for producing a packaging liner according to claim 1, characterized in that: The horizontal adjustment mechanism (5) further includes front fixed circular sleeve (506) and front sliding circular sleeve (507), the opposite inner side of two corner support vertical frames (207) is fixedly connected with front sliding circular sleeve (507) symmetrically up and down respectively, the outer arc surface of two front sliding circular sleeves (507) is movably sleeved with front fixed circular sleeve (506) respectively, the end of four front fixed circular sleeves (506) is fixedly connected with the outer surface of one front rectangular tube (501).

3. A transfer device for packaging liner production according to claim 1, characterized in that: The longitudinal supporting mechanism (2) further comprises side edge sliding cylinders (203), rear side vertical supports (204), rear side sliding cylinders (205) and fixing sleeves (206), the rear side surface of the two front side corner supporting vertical supports (207) is fixedly connected with uniformly distributed fixing sleeves (206), the front side surface and the rear side surface of the two middle vertical supports (201) are fixedly connected with uniformly distributed side edge sliding cylinders (203), the inner parts of the eight front side side edge sliding cylinders (203) are fixedly sleeved with the outer curved surfaces of the fixing sleeves (206) at the same positions, the inner parts of the eight rear side side edge sliding cylinders (203) are movably sleeved with rear side sliding cylinders (205), and the rear ends of every four vertically adjacent rear side sliding cylinders (205) are fixedly connected with the front side of a rear side vertical support (204).

4. A transfer device for producing a packaging liner according to claim 3, characterized in that: The transverse adjusting mechanism (5) further comprises sliding grooves (510), the sliding grooves (510) are symmetrically arranged on the front side of the upper surface of the front side butt joint plate (101) and the rear side of the upper surface of the rear side butt joint plate (103), the inner part of the front side sliding groove (510) is slidably connected with the lower side of the outer surface of the corner supporting vertical support (207) at the same side, and the inner part of the rear side sliding groove (510) is slidably connected with the lower side of the outer surface of the rear side vertical support (204) at the same side.

5. A transfer device for use in the production of a packaging liner according to claim 3, characterized in that: The longitudinal supporting mechanism (2) further comprises middle supporting plates (202) and front side supporting plates (208), the opposite inner side surfaces of the two middle vertical supports (201) are fixedly connected with the middle supporting plates (202), and the opposite inner side surfaces of the two corner supporting vertical supports (207) are fixedly connected with the front side supporting plates (208).

6. A transfer device for producing a packaging liner according to claim 3, characterized in that: The rear sides of the two rear side vertical supports (204) are fixedly connected with rotary frames (3), and the rear side surfaces of the two rotary frames (3) are fixedly connected with hooks (4).

7. A transfer device for use in the production of a packaging liner according to claim 1, characterized in that: The front side surface of the front side butt joint plate (101) is rotatably connected with a handle (7) through a rotating shaft, and the lower side surfaces of the front side butt joint plate (101) and the rear side butt joint plate (103) are symmetrically provided with universal wheels (6).

8. The transfer device for producing a packaging liner according to claim 1, characterized in that: The front side of the worm (509) is fixedly connected with a twist valve (8). The front side of the worm (509) is fixedly connected with a twist valve (8).

Citation Information

Patent Citations

  • EPE pearl wool transfer device facilitating overall stacking

    CN213678037U