A winding mechanism and bundling and labeling apparatus

By designing an automatic wrapping mechanism and a bundling and labeling device, the problem of low efficiency in kraft paper bundling was solved, realizing an efficient and automated bundling and labeling process, and improving bundling quality and efficiency.

CN119975929BActive Publication Date: 2026-01-16SHENZHEN HUADI EQUIPMENT INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510093486.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2026-01-16
Estimated Expiration
2045-01-21

AI Technical Summary

Technical Problem

Existing strapping machines are unable to effectively wrap kraft paper, resulting in low packaging efficiency, poor quality, and the need for manual operation.

Method used

A wrapping mechanism was designed, including a material transfer component, a material storage component, and a winding component. It automatically wraps the strapping material mechanically and, combined with an adhesive and labeling mechanism, achieves automatic pasting of the strapping tape and attachment of labels.

Benefits of technology

It improves the efficiency and quality of bundling, reduces manual intervention, has a simple structure and low cost, and realizes the functions of automated bundling and labeling.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application belongs to the technical field of automation equipment, and particularly relates to a winding mechanism and a bundling and labeling device. The material moving component comprises a cutter assembly, a material moving assembly and a material roll wound with a bundling piece. The transfer assembly comprises a moving driving part, a carrier plate, a first side plate, a second side plate, a first supporting assembly installed on the first side plate and a second supporting assembly installed on the second side plate. The carrier plate is installed on the output end of the moving driving part, the first side plate and the second side plate are installed on the carrier plate, and the first side plate, the second side plate and the carrier plate enclose a containing space. The material moving assembly is used for lengthening the bundling piece released by the material roll and making the bundling piece located on the top of the to-be-packed piece. The jacking assembly is used for driving the to-be-packed piece into the containing space, so that the to-be-packed piece has the bundling piece on the side. The first supporting assembly and the second supporting assembly are used for folding the free end of the bundling piece on the bottom of the to-be-packed piece. The winding mechanism has high automation degree, high packing efficiency and high packing quality.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of automation equipment, in particular to a winding mechanism and a bundling and labeling equipment. BACKGROUND

[0002] The bundling machine is commonly known as a packing machine, which is a machine that uses a bundling belt to wrap a product or a packaging piece, then tightens and connects the two ends through heat melting or using a buckle material. The function of the bundling machine is to make the plastic belt tightly adhere to the surface of the packaged piece, to ensure that the packaged piece does not scatter due to loose bundling during transportation and storage, and also to bundle neatly and aesthetically.

[0003] In the prior art, the bundling machine can usually only bundle the adhesive tape on the packaging piece, and for the wrapping of the packaging piece with kraft paper, since the kraft paper is relatively soft in texture, the kraft paper is prone to tearing and breaking when being wound on the packaged piece by using the existing bundling machine. Therefore, in the prior art, the kraft paper is usually wound on the packaging piece by manual operation. The manual winding of the kraft paper on the packaging piece has the technical problems of low packing efficiency and poor packing quality. SUMMARY

[0004] The present application provides a winding mechanism and a bundling and labeling equipment to solve the technical problem of the need for manual winding of kraft paper on the packaging piece in the prior art.

[0005] An embodiment of the present application provides a winding mechanism comprising a material moving component and a material storing component.

[0006] The material moving component comprises a cutter assembly, a material moving assembly, and a material winding roller on which a bundling piece is wound, and the cutter assembly is used to cut the bundling piece;

[0007] The material storing component comprises a jacking assembly and a transfer assembly, the transfer assembly comprises a moving drive, a carrier plate, a first side plate, a second side plate, a first support assembly installed on the first side plate, and a second support assembly installed on the second side plate; the carrier plate is installed on the output end of the moving drive, the first side plate and the second side plate are installed on the carrier plate in a spaced manner, and the first side plate, the second side plate, and the carrier plate enclose a containing space; the jacking assembly is located below the containing space and is used to store a piece to be packed;

[0008] The material moving assembly is used to lengthen the bundling piece released by the material winding roller, and to make the bundling piece located on the top of the piece to be packed; the jacking assembly is used to drive the piece to be packed into the containing space, so that the side of the piece to be packed has the bundling piece; the first support assembly is used to fold a free end of the bundling piece on the bottom of the piece to be packed, and the second support assembly is used to fold another free end of the bundling piece on the bottom of the piece to be packed.

[0009] Optionally, the winding mechanism further comprises a winding component, the winding component comprising a winding drive, a turnover drive, a first roller body and a second roller body, the turnover drive being connected to the first roller body, and the winding drive being connected to the second roller body.

[0010] The turnover drive is configured to drive the first roller body to turn over, so that the first roller body and the second roller body clamp the bundling member away from one end of the material moving assembly; and the winding drive is configured to drive the bundling member to move through the second roller body, so as to adjust the distance between the free end of the bundling member and the to-be-packed member.

[0011] Optionally, the jacking assembly comprises a jacking drive and a top plate mounted on the output end of the jacking drive.

[0012] The material storing component further comprises a pressing assembly, the pressing assembly comprising a pressing drive mounted on the carrier plate and a pressing plate mounted on the output end of the pressing drive, the pressing plate being located in the accommodating space; the pressing drive is configured to drive the pressing plate to press the to-be-packed member located on the top plate or on the first support assembly and the second support assembly.

[0013] Optionally, the first support assembly comprises a first support drive and a first side support plate mounted on the output end of the first support drive; the first support drive is mounted on the first side plate and is configured to drive the first side support plate to move towards or away from the second support assembly.

[0014] The second support assembly comprises a second support drive and a second side support plate mounted on the output end of the second support drive; the second support drive is mounted on the second side plate and is configured to drive the second side support plate to move towards or away from the first support assembly.

[0015] Optionally, the material storing component comprises a positioning plate and two aligning assemblies arranged at opposite sides of the positioning plate; the positioning plate, the aligning assemblies and the jacking assembly enclose a mounting space for accommodating the to-be-packed member.

[0016] The aligning assemblies are configured to align the to-be-packed member located on the jacking assembly from opposite sides.

[0017] Optionally, the aligning assembly comprises a first driving member, a second driving member, a first side beating plate and a second side beating plate mounted on the first side beating plate, the first side beating plate is perpendicular to the second side beating plate; the first driving member is connected with the second driving member and is used to drive the second driving member to move in a first direction; the second driving member is connected with the first side beating plate and is used to drive the first side beating plate to move in a second direction perpendicular to the first direction.

[0018] Optionally, the transferring assembly further comprises a lifting driving member mounted on the carrier plate, the second side plate is mounted on the lifting driving member; the lifting driving member is used to drive the second side plate to lift.

[0019] Optionally, the material moving assembly comprises a material moving driving member, a material moving plate and a clamping member mounted on the material moving plate; the material moving driving member is connected with the material moving plate and is used to drive the material moving plate and the clamping member to move in a first direction.

[0020] Another embodiment of the present application further provides a bundling and labeling device, which comprises a first conveying mechanism, a tape sticking mechanism, a second conveying mechanism, a label sticking mechanism and the above-mentioned winding mechanism.

[0021] The first conveying mechanism is used to convey the to-be-packed member to the jacking assembly.

[0022] The transferring assembly is further used to convey the to-be-packed member with the bundling member wound thereon to the tape sticking mechanism.

[0023] The tape sticking mechanism is used to stick the adhesive tape on the bundling member to bind the opposite two free ends of the bundling member.

[0024] The transferring assembly is further used to convey the to-be-packed member on the tape sticking mechanism to the second conveying mechanism.

[0025] The label sticking mechanism is used to attach the label on the bundling member located on the second conveying mechanism.

[0026] Optionally, the tape sticking mechanism comprises a tape sticking component and a supporting table, the tape sticking component comprises a tape moving driving member, a supporting plate and a tape sticking assembly, the tape moving driving member is connected with the supporting plate.

[0027] The tape sticking assembly comprises a suction disc, a first tape roller, a cutter, a third driving member, a fourth driving member and a tape roller with adhesive tape wound thereon; the suction disc is rotationally mounted on the supporting plate and is provided with suction holes, the third driving member is mounted on the carrier plate and is used to drive the suction disc to rotate; the fourth driving member is mounted on the supporting plate and is connected with the cutter; the adhesive tape released from the tape roller is suctioned on the suction disc and then extends above the first tape roller.

[0028] The to-be-packed piece wrapped with the bundling piece is conveyed by the transfer assembly to the support table;

[0029] The third driving piece drives the first belt roller to rotate, so that the rubber belt is abutted on the bundling piece;

[0030] The belt-moving driving piece drives the rubber belt adhering assembly to move, so that the rubber belt adheres to the bundling piece, and the rubber belt binds the opposite two free ends of the bundling piece;

[0031] The fourth driving piece drives the cutter to cut the rubber belt.

[0032] In the present application, the to-be-packed piece is placed on the jacking assembly by a conveying belt, a mechanical hand or the like, the material-moving assembly clamps one end of the bundling piece released by the roll material roller and then stretches the bundling piece, the cutter assembly cuts the bundling piece, and the cut bundling piece falls on the top of the to-be-packed piece; the jacking assembly drives the to-be-packed piece to enter the containing space, and the to-be-packed piece has the bundling piece on the top and opposite two sides due to the limitation of the first side plate and the second side plate; the first support assembly and the second support assembly extend into the containing space and support the to-be-packed piece from the bottom on two sides; and the first support assembly folds one free end of the bundling piece on the bottom of the to-be-packed piece, and the second support assembly folds the other free end of the bundling piece on the bottom of the to-be-packed piece, so that the bundling piece is wound on the to-be-packed piece. In the present application, the winding mechanism can automatically wind the bundling piece on the to-be-packed piece, improves the packing efficiency and quality of the to-be-packed piece, and has a simple structure and low manufacturing cost. BRIEF DESCRIPTION OF DRAWINGS

[0033] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the description of the embodiments of the present application. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative labor.

[0034] Figure 1 is a structural schematic view of the winding mechanism provided by an embodiment of the present application;

[0035] Figure 2 is a structural schematic view of the material-moving component of the material-moving mechanism provided by an embodiment of the present application;

[0036] Figure 3 is a structural schematic view of the transfer assembly of the material-moving mechanism provided by an embodiment of the present application;

[0037] Figure 4is a partial structure schematic view of a material storing component of a material moving mechanism provided by an embodiment of the present application;

[0038] Figure 5 is a schematic view of a bundling member being wound on a to-be-packed member provided by an embodiment of the present application;

[0039] Figure 6 is a structure schematic view of a bundling and labeling device provided by an embodiment of the present application;

[0040] Figure 7 is a structure schematic view of a glue sticking mechanism of a bundling and labeling device provided by an embodiment of the present application;

[0041] Figure 8 is a structure schematic view of a glue sticking component of a bundling and labeling device provided by an embodiment of the present application.

[0042] The reference signs in the specification are as follows:

[0043] 1, material moving component; 11, cutter assembly; 12, material moving assembly; 121, material moving driving member; 122, material moving plate; 123, clamping member; 13, material roll;

[0044] 2, material storing component; 21, jacking assembly; 211, jacking driving member; 212, top plate; 22, transfer assembly; 221, moving driving member; 222, carrier plate; 223, first side plate; 224, second side plate; 225, first support assembly; 2251, first support driving member; 2252, first side support plate; 226, second support assembly; 2261, second support driving member; 2262, second side support plate; 227, lifting driving member; 23, pressing assembly; 231, pressing driving member; 232, pressing plate; 24, positioning plate; 25, aligning assembly; 251, first driving member; 252, second driving member; 253, first side beating plate; 254, second side beating plate;

[0045] 3, winding component; 31, winding driving member; 32, turning driving member; 33, first roller body; 34, second roller body; 4, first conveying mechanism; 5, glue sticking mechanism; 51, glue sticking component; 511, belt moving driving member; 512, support plate; 513, glue sticking assembly; 5131, suction disc; 51311, suction hole; 5132, first belt roller; 5133, cutter; 5134, third driving member; 5135, fourth driving member; 5136, adhesive tape roller; 52, support table; 6, second conveying mechanism; 7, label sticking mechanism; 10, bundling member; 20, to-be-packed member; 30, adhesive tape. DETAILED DESCRIPTION

[0046] In order to make the technical problems, technical solutions and beneficial effects solved by the present application clearer, the present application will be further described in detail below in conjunction with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and not to limit the present application.

[0047] In the description of the present application, it should be understood that the orientation or positional relationship indicated by the terms "longitudinal", "radial", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In the description of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more.

[0048] In the description of the present application, it should be noted that, unless otherwise specified and limited, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0049] As shown in Figure 1 , an embodiment of the present application provides a winding mechanism, which comprises a material moving component 1 and a material storing component 2;

[0050] As shown in Figure 2 , the material moving component 1 comprises a cutter assembly 11, a material moving assembly 12 and a material roll 13 wound with a bundling member 10, the cutter assembly 11 is used to cut the bundling member 10; it can be understood that the bundling member 10 includes but is not limited to kraft paper and the like, and the material roll 13 is wound with a roll of bundling member 10.

[0051] As shown in Figure 3 and Figure 4As shown, the material storage component 2 comprises a jacking assembly 21 and a transfer assembly 22, the transfer assembly 22 comprises a moving drive 221, a carrier plate 222, a first side plate 223, a second side plate 224, a first support assembly 225 mounted on the first side plate 223, and a second support assembly 226 mounted on the second side plate 224; the carrier plate 222 is mounted on the output end of the moving drive 221, the first side plate 223 and the second side plate 224 are spacedly mounted on the carrier plate 222, and the first side plate 223, the second side plate 224 and the carrier plate 222 enclose a containing space; the jacking assembly 21 is located below the containing space and is used for storing the to-be-packed piece 20; it can be understood that the first side plate 223 and the second side plate 224 are spacedly arranged along a first direction, and the moving drive 221 can drive the carrier plate 222 to move along the first direction; the to-be-packed piece 20 comprises but is not limited to a stack of packaging boxes, a stack of packaging bags, etc.

[0052] As shown, Figure 5 The material transfer assembly 12 is used for lengthening the bundled piece 10 released by the roll material roller 13 and making the bundled piece 10 located on the top of the to-be-packed piece 20; the jacking assembly 21 is used for driving the to-be-packed piece 20 into the containing space, so that the to-be-packed piece 20 has the bundled piece 10 on the side; the first support assembly 225 is used for folding a free end of the bundled piece 10 on the bottom of the to-be-packed piece 20, and the second support assembly 226 is used for folding another free end of the bundled piece 10 on the bottom of the to-be-packed piece 20.

[0053] Specifically, the to-be-packed piece 20 is placed on the jacking assembly 21 by a conveyor belt, a mechanical hand or the like, after the material transfer assembly 12 clamps one end of the bundled piece 10 released by the roll material roller 13 and lengthens the bundled piece 10, the cutting knife assembly 11 cuts the bundled piece 10, and the cut bundled piece 10 falls on the top of the to-be-packed piece 20; the jacking assembly 21 drives the to-be-packed piece 20 into the containing space, and due to the limitation of the first side plate 223 and the second side plate 224, the to-be-packed piece 20 has the bundled piece 10 on the top and on the opposite two sides; the first support assembly 225 and the second support assembly 226 extend into the containing space and support the to-be-packed piece 20 from the bottom on both sides; and the first support assembly 225 folds a free end of the bundled piece 10 on the bottom of the to-be-packed piece 20, and the second support assembly 226 folds another free end of the bundled piece 10 on the bottom of the to-be-packed piece 20, so that the bundled piece 10 is wound on the to-be-packed piece 20. In the present application, the winding mechanism can automatically wind the bundled piece 10 on the to-be-packed piece 20, improves the packing efficiency and quality of the to-be-packed piece 20, and the winding mechanism has a simple structure and low manufacturing cost.

[0054] In an embodiment, asFigure 4 As shown, the winding mechanism further comprises a winding component 3, the winding component 3 comprises a winding driving member 31, a turnover driving member 32, a first roller body 33 and a second roller body 34, the turnover driving member 32 is connected with the first roller body 33, and the winding driving member 31 is connected with the second roller body 34; the turnover driving member 32 is used to drive the first roller body 33 to turn over, so that the first roller body 33 and the second roller body 34 clamp the bundling member 10 away from one end of the material moving assembly 12; the winding driving member 31 is used to drive the bundling member 10 to move through the second roller body 34, so as to adjust the distance between the free end of the bundling member 10 and the to-be-packed member 20. It can be understood that the turnover driving member 32 comprises but is not limited to a gear and rack assembly and the like, and the turnover driving member 32 can drive the first roller body 33 to be in an upright state or a horizontal state; the winding driving member 31 comprises but is not limited to a rotating motor, a rotating cylinder and the like.

[0055] Specifically, as shown in Figure 5 the turnover driving member 32 drives the first roller body 33 to be in the upright state, the material moving assembly 12 stretches the bundling member 10 released by the material roll 13; after the cutting knife assembly 11 cuts the bundling member 10, the turnover driving member 32 drives the first roller body 33 to be in the horizontal state, and makes the first roller body 33 press on the upper surface of the bundling member 10, and the second roller body 34 is lowly connected to the lower surface of the bundling member 10; the winding driving member 31 drives the second roller body 34 to rotate around a first rotation direction, the second roller body 34 drives the bundling member 10 to move towards the end close to the material moving component 1, until the end of the bundling member 10 away from the material moving component 1 is located in the gap between the first roller body 33 and the second roller body 34; the winding driving member 31 drives the second roller body 34 to rotate around a second rotation direction opposite to the first rotation direction, the second roller body 34 drives the bundling member 10 to move away from the end of the material moving component 1, so that the end of the bundling member 10 away from the material moving component 1 extends below the first roller body 33, thereby adjusting the length of the bundling member 10 located at both ends of the to-be-packed member 20, so that after the bundling member 10 is wound on the to-be-packed member 20, the two free ends of the to-be-packed member 20 can be overlapped together, thereby facilitating the bundling member 10 to bundle the to-be-packed member 20.

[0056] In an embodiment, as shown in Figure 4 the jacking assembly 21 comprises a jacking driving member 211 and a top plate 212 installed at the output end of the jacking driving member 211; it can be understood that the jacking driving member 211 comprises but is not limited to a pneumatic cylinder, a hydraulic cylinder and the like.

[0057] As Figure 3As shown, the material storage component 2 further comprises a material pressing assembly 23, which comprises a material pressing driving member 231 mounted on the carrier plate 222 and a pressing plate 232 mounted on the output end of the material pressing driving member 231, and the pressing plate 232 is located in the accommodating space; the material pressing driving member 231 is used to drive the pressing plate 232 to press the to-be-packed piece 20 located on the top plate 212 or on the first support assembly 225 and the second support assembly 226. It can be understood that the material pressing driving member 231 comprises but is not limited to a pneumatic cylinder, a hydraulic cylinder, a linear motor, etc.

[0058] Specifically, after the to-be-packed piece 20 is placed on the top plate 212, the material pressing driving member 231 drives the pressing plate 232 to move downward and press the top of the to-be-packed piece 20; the jacking driving member 211 drives the top plate 212 to move the to-be-packed piece 20 into the accommodating space, and in the process of upward movement of the to-be-packed piece 20, the pressing plate 232 always presses the top of the to-be-packed piece 20, thereby ensuring that the bundling piece 10 can be bent and ensuring the stability of the upward movement of the to-be-packed piece 20.

[0059] In an embodiment, as shown in Figure 3 The first support assembly 225 comprises a first support driving member 2251 and a first side support plate 2252 mounted on the output end of the first support driving member 2251; the first support driving member 2251 is mounted on the first side plate 223 and is used to drive the first side support plate 2252 to move towards the direction of approaching or moving away from the second support assembly 226; it can be understood that the first support driving member 2251 comprises but is not limited to a pneumatic cylinder, a hydraulic cylinder and a linear motor, etc., and the first side support plate 2252 is located at the bottom of the first side plate 223.

[0060] The second support assembly 226 comprises a second support driving member 2261 and a second side support plate 2262 mounted on the output end of the second support driving member 2261; the second support driving member 2261 is mounted on the second side plate 224 and is used to drive the second side support plate 2262 to move towards the direction of approaching or moving away from the first support assembly 225. It can be understood that the second support driving member 2261 comprises but is not limited to a pneumatic cylinder, a hydraulic cylinder and a linear motor, etc., and the second side support plate 2262 is located at the bottom of the second side plate 224.

[0061] Specifically, after the jacking assembly 21 jacks the piece 20 to be packed into the accommodating space, the first support driving member 2251 drives the first side support plate 2252 to move towards the second side support plate 2262, and the second support driving member 2261 drives the second side support plate 2262 to move towards the first side support plate 2252, so that the first side support plate 2252 and the second side support plate 2262 can support the piece 20 to be packed from both sides of the bottom, and the first side support plate 2252 and the second side support plate 2262 fold the two free ends of the baling member 10 at the bottom of the piece 20 to be packed; after the top plate 212 is lowered, the piece 20 to be packed is supported by the first side support plate 2252 and the second side support plate 2262.

[0062] In an embodiment, as shown in Figure 4 The storage component 2 comprises a positioning plate 24 and two alignment assemblies 25 arranged at opposite sides of the positioning plate 24, and the positioning plate 24, the alignment assemblies 25 and the jacking assembly 21 surround an installation space for accommodating the piece 20 to be packed. It can be understood that the positioning plate 24 is located in front of the top plate 212, and the two alignment assemblies 25 are respectively located at the left and right sides of the top plate 212.

[0063] The alignment assembly 25 is used to align the piece 20 to be packed on the jacking assembly 21 from opposite sides. Specifically, after the piece 20 to be packed is conveyed to the top plate 212, the two alignment assemblies 25 are folded and moved towards the positioning plate 24, so that the piece 20 to be packed can be aligned on the top plate 212, and the neatness of the piece 20 to be packed is ensured.

[0064] In an embodiment, as shown in Figure 4 The alignment assembly 25 comprises a first driving member 251, a second driving member 252, a first side flap 253 and a second side flap 254 mounted on the first side flap 253, and the first side flap 253 is perpendicular to the second side flap 254. The first driving member 251 is connected to the second driving member 252 and is used to drive the second driving member 252 to move in a first direction. The second driving member 252 is connected to the first side flap 253 and is used to drive the first side flap 253 to move in a second direction perpendicular to the first direction. It can be understood that the first driving member 251 and the second driving member 252 comprise, but are not limited to, pneumatic cylinders, hydraulic cylinders and the like.

[0065] Specifically, the second driving member 252 drives the two second side beaters 254 to move towards each other, so that the alignment assembly 25 can align the to-be-packed pieces 20 in the second direction; the first driving member 251 drives the second side beaters 254 to move towards the positioning plate 24, so that the alignment assembly 25 can align the to-be-packed pieces 20 in the first direction. In the embodiment, the alignment assembly 25 has simple structure and low manufacturing cost.

[0066] In an embodiment, as shown in Figure 3 The transfer assembly 22 further comprises a lifting driving member 227 installed on the carrier plate 222, and the second side plate 224 is installed on the lifting driving member 227; the lifting driving member 227 is used to drive the second side plate 224 to lift. It can be understood that the lifting driving member 227 includes but is not limited to a pneumatic cylinder, a hydraulic cylinder, etc.; when the lifting driving member 227 drives the second side plate 224 to move downwards, the first side plate 223, the second side plate 224 and the carrier plate 222 enclose a containing space; when the lifting driving member 227 drives the second side plate 224 to move upwards, the second side plate 224 can open the opening of the containing space away from one end of the first side plate 223, so that the to-be-packed pieces 20 in the containing space can be output.

[0067] In an embodiment, as shown in Figure 2 The material moving assembly 12 comprises a material moving driving member 121, a material moving plate 122 and a clamping member 123 installed on the material moving plate 122; the material moving driving member 121 is connected to the material moving plate 122 and is used to drive the material moving plate 122 and the clamping member 123 to move in the first direction. It can be understood that the material moving driving member 121 includes but is not limited to a pneumatic cylinder, a hydraulic cylinder, a screw nut mechanism, a belt mechanism, etc., and the clamping member 123 includes but is not limited to a clamping pneumatic cylinder, etc.; after the clamping member 123 clamps the bundled piece 10, the material moving driving member 121 drives the material moving plate 122 and the clamping member 123 to move in the first direction, so that the material moving assembly 12 can stretch the bundled piece 10 to the top of the to-be-packed piece 20.

[0068] As shown in Figure 6 Another embodiment of the present application further provides a bundling and labeling device, which comprises a first conveying mechanism 4, a rubberizing mechanism 5, a second conveying mechanism 6, a labeling mechanism 7 and the above-described winding mechanism;

[0069] The first conveying mechanism 4 is used to convey the to-be-packed pieces 20 to the jacking assembly 21; it can be understood that the first conveying mechanism 4 includes but is not limited to a conveying belt, etc., and the first conveying mechanism 4 can convey the to-be-packed pieces 20 to the top plate 212.

[0070] The transfer assembly 22 is also used to transport the to-be-packaged piece 20 with the bundling piece 10 wound thereon to the adhesive tape sticking mechanism 5; it can be understood that after the first supporting group 225 and the second supporting group 226 support the to-be-packaged piece 20, the moving driving member 221 moves the carrier plate 222 in the first direction again, so that the transfer assembly 22 transports the to-be-packaged piece 20 to the adhesive tape sticking mechanism 5.

[0071] The adhesive tape sticking mechanism 5 is used to stick the adhesive tape 30 on the bundling piece 10, so as to bind the opposite two free ends of the bundling piece 10.

[0072] The transfer assembly 22 is also used to transport the to-be-packaged piece 20 on the adhesive tape sticking mechanism 5 to the second conveying mechanism 6; it can be understood that after the adhesive tape 30 is stuck on the bundling piece 10, the first supporting group 225 and the second supporting group 226 support the to-be-packaged piece 20 from the bottom two sides again, and the moving driving member 221 drives the carrier plate 222 to move in the first direction, so that the transfer assembly 22 transports the to-be-packaged piece 20 on the adhesive tape sticking mechanism 5 to the second conveying mechanism 6.

[0073] The label sticking mechanism 7 is used to stick the label on the bundling piece 10 located on the second conveying mechanism 6. It can be understood that the second conveying mechanism 6 includes but is not limited to a belt assembly and the like, and the second conveying mechanism 6 can convey the to-be-packaged piece 20 in the first direction; when the to-be-packaged piece 20 is conveyed to the label sticking position, the label sticking mechanism 7 can stick the label on the bundling piece.

[0074] In the present application, the bundling and labeling device can complete the functions of winding the bundling piece 10 on the to-be-packaged piece 20, sticking the adhesive tape 30 on the bundling piece 10, and sticking the label on the bundling piece 10, and has high automation degree and high efficiency.

[0075] In an embodiment, as shown in Figure 7 and Figure 8 The adhesive tape sticking mechanism 5 includes an adhesive tape sticking component 51 and a supporting table 52, the adhesive tape sticking component 51 includes a tape moving driving member 511, a supporting plate 512, and an adhesive tape sticking assembly 513, and the tape moving driving member 511 is connected to the supporting plate 512; it can be understood that the tape moving driving member 511 includes but is not limited to a pneumatic cylinder, a belt assembly, and the like, and the tape moving driving member 511 can drive the supporting plate 512 to move in the first direction.

[0076] The adhesive assembly 513 comprises an adsorption disc 5131, a first tape roller 5132, a cutter 5133, a third driving member 5134, a fourth driving member 5135, and a tape roller 5136 with adhesive tape 30 wound thereon; the adsorption disc 5131 is rotationally installed on the support plate 512 and is provided with an adsorption hole 51311; the third driving member 5134 is installed on the carrier plate 222 and is used to drive the adsorption disc 5131 to rotate; the fourth driving member 5135 is installed on the support plate 512 and is connected with the cutter 5133; the adhesive tape 30 released from the tape roller 5136 is adsorbed on the adsorption disc 5131 and then extends above the first tape roller 5132; it can be understood that the third driving member 5134 and the fourth driving member 5135 each comprise but are not limited to a pneumatic cylinder and a hydraulic cylinder, etc.; the cutter 5133 and the first tape roller 5132 are both in an inclined state; the adsorption hole 51311 adsorbs the adhesive tape 30 between the first tape roller 5132 and the tape roller 5136, so that the free end of the adhesive tape 30 released from the tape roller 5136 is located above the first tape roller 5132.

[0077] The packaged piece 20 with the bundling piece 10 wound thereon is conveyed by the transfer assembly 22 to the support table 52; the third driving member 5134 drives the first tape roller 5132 to rotate, so that the first tape roller 5132 drives the adhesive tape 30 to abut against the bundling piece 10; the tape moving driving member 511 drives the adhesive assembly 513 to move through the support plate 512, so that the adhesive tape 30 is attached to the bundling piece 10 and binds the opposite two free ends of the bundling piece 10; the fourth driving member 5135 drives the cutter 5133 to cut the adhesive tape 30.

[0078] Specifically, after the packaged piece with the bundling piece 10 wound thereon is placed on the support table 52, the third driving member 5134 drives the first tape roller 5132 to rotate, so that the first tape roller 5132 drives the adhesive tape 30 thereon to move upward and attach to the bundling piece 10; the tape moving driving member 511 drives the adhesive assembly 513 to move along a first direction through the support plate 512, the first tape roller 5132 presses the adhesive tape 30 against the packaged piece 20, and the first tape roller 5136 moves along the first direction, so that the adhesive tape 30 can bond the opposite two free ends of the bundling piece 10; the fourth driving member 5135 drives the cutter 5133 to move, so that the cutter 5133 can cut the adhesive tape between the tape roller 5136 and the first tape roller 5132, so that the cut adhesive tape 30 will be bonded to the bundling piece 10. In this embodiment, the adhesive mechanism 5 has a compact structure and occupies a small space.

[0079] The above-described embodiments are only used to illustrate the technical solutions of the present application, and are not intended to limit the present application; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application, and should be included in the protection scope of the present application.

Claims

1. A winding mechanism characterized by, The material moving part and the material storing part are included. The material moving part includes a cutting knife assembly, a material moving assembly and a material roll with a binding member, and the cutting knife assembly is used to cut the binding member; The material storing part includes a jacking assembly and a transfer assembly, the transfer assembly includes a moving drive, a carrier plate, a first side plate, a second side plate, a first supporting assembly installed on the first side plate and a second supporting assembly installed on the second side plate; the carrier plate is installed on the output end of the moving drive, the first side plate and the second side plate are installed on the carrier plate in a spaced manner, and the first side plate, the second side plate and the carrier plate enclose a containing space; the jacking assembly is located below the containing space and is used to store a to-be-packed member; The material moving assembly is used to lengthen the binding member released by the material roll and make the binding member located on the top of the to-be-packed member; the jacking assembly is used to drive the to-be-packed member into the containing space so that the to-be-packed member has the binding member on the side; the first supporting assembly is used to fold a free end of the binding member on the bottom of the to-be-packed member, and the second supporting assembly is used to fold another free end of the binding member on the bottom of the to-be-packed member; The winding mechanism further includes a winding part, and the winding part includes a winding drive, a turnover drive, a first roller and a second roller, the turnover drive is connected with the first roller, and the winding drive is connected with the second roller; The turnover drive is used to drive the first roller to turn over so that the first roller and the second roller clamp the binding member away from one end of the material moving assembly; the winding drive is used to drive the binding member to move through the second roller so as to adjust the distance between the free end of the binding member and the to-be-packed member; The transfer assembly further includes a lifting drive installed on the carrier plate, and the second side plate is installed on the lifting drive; the lifting drive is used to drive the second side plate to lift.

2. The winding mechanism according to claim 1, characterized in that, The jacking assembly includes a jacking drive and a top plate installed on the output end of the jacking drive; The material storing part further includes a pressing assembly, and the pressing assembly includes a pressing drive installed on the carrier plate and a pressing plate installed on the output end of the pressing drive, and the pressing plate is located in the containing space; The pressing drive is used to drive the pressing plate to press the to-be-packed member located on the top plate or on the first supporting assembly and the second supporting assembly.

3. The winding mechanism of claim 1, wherein, The first supporting assembly includes a first supporting drive and a first side supporting plate installed on the output end of the first supporting drive; the first supporting drive is installed on the first side plate and is used to drive the first side supporting plate to move towards the direction of approaching or moving away from the second supporting assembly; The second supporting assembly includes a second supporting drive and a second side supporting plate installed on the output end of the second supporting drive; the second supporting drive is installed on the second side plate and is used to drive the second side supporting plate to move towards the direction of approaching or moving away from the first supporting assembly.

4. The winding mechanism of claim 1, wherein, The material storage component comprises a positioning plate and two alignment assemblies arranged at opposite sides of the positioning plate, and the positioning plate, the alignment assemblies and the jacking assembly enclose a mounting space for accommodating the to-be-packed pieces; The alignment assemblies are used for aligning the to-be-packed pieces on the jacking assembly from opposite sides.

5. The winding mechanism of claim 4, wherein, The alignment assembly comprises a first driving member, a second driving member, a first side plate and a second side plate mounted on the first side plate, the first side plate is perpendicular to the second side plate; the first driving member is connected with the second driving member and is used for driving the second driving member to move in a first direction; the second driving member is connected with the first side plate and is used for driving the first side plate to move in a second direction perpendicular to the first direction.

6. The winding mechanism of claim 1, wherein, The material moving assembly comprises a material moving driving member, a material moving plate and a clamping member mounted on the material moving plate; the material moving driving member is connected with the material moving plate and is used for driving the material moving plate and the clamping member to move in a first direction.

7. A strapping and labelling apparatus characterised in that, The wrapping mechanism comprises a first conveying mechanism, a tape sticking mechanism, a second conveying mechanism, a label sticking mechanism and the wrapping mechanism as claimed in any one of claims 1 to 6. The first conveying mechanism is used for conveying the to-be-packed pieces to the jacking assembly; The transfer assembly is further used for conveying the to-be-packed pieces wrapped with the binding pieces to the tape sticking mechanism; The tape sticking mechanism is used for sticking the adhesive tape on the binding pieces to bind the opposite free ends of the binding pieces; The transfer assembly is further used for conveying the to-be-packed pieces on the tape sticking mechanism to the second conveying mechanism; The label sticking mechanism is used for attaching the label on the binding pieces on the second conveying mechanism.

8. The strapping and labelling apparatus of claim 7, wherein, The tape sticking mechanism comprises a tape sticking component and a support table, the tape sticking component comprises a tape moving driving member, a support plate and a tape sticking assembly, and the tape moving driving member is connected with the support plate; The tape sticking assembly comprises a suction disc, a first tape roller, a cutter, a third driving member, a fourth driving member and an adhesive tape roller wrapped with adhesive tape; the suction disc is rotationally mounted on the support plate and is provided with suction holes, the third driving member is mounted on the support plate and is used for driving the suction disc to rotate, and the fourth driving member is mounted on the support plate and is connected with the cutter; The adhesive tape released from the adhesive tape roller is suctioned on the suction disc and then extends above the first tape roller; The to-be-packed pieces wrapped with the binding pieces are conveyed by the transfer assembly to the support table; The third driving member drives the first tape roller to rotate, so that the first tape roller drives the adhesive tape to abut on the binding pieces; The tape moving driving member drives the tape sticking assembly to move through the support plate, so that the adhesive tape is attached on the binding pieces and binds the opposite free ends of the binding pieces; The fourth driving member drives the cutter to cut the adhesive tape.

Citation Information

Patent Citations

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