Discharging device of packaging machine
By designing the packaging machine's discharge device, automated conveying and coding of fiberglass mesh belts were achieved, solving the problems of low efficiency and high labor intensity caused by manual operation and improving production efficiency.
Patent Information
- Application Number
- CN202520117678.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-18
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-01-18
AI Technical Summary
In existing technologies, the flow and orderly placement of products between packaging equipment and coding equipment in the production process of fiberglass mesh belts mainly rely on manual operation, resulting in low efficiency and high labor intensity.
A packaging machine discharge device was designed, including a motor-driven circular base, a cylinder, a disc, a heat shrink packaging machine, a conveyor line, a guiding mechanism, a material picking mechanism, and a coding mechanism. It realizes the automatic conveying and orderly placement of cylindrical mesh belts through mechanization, and uses the guiding mechanism and pneumatic grippers to realize the directional movement and coding of products.
It has enabled automated conveying and coding of cylindrical mesh belts, reducing labor intensity and improving work efficiency.
Smart Images

Figure CN223751863U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of packaging equipment, in particular to a packaging machine discharging device. BACKGROUND
[0002] The mesh belt of glass fiber material is generally wound on a paper tube during production, then cut into a cylindrical structure, then placed in a heat shrink packaging machine for bagging and heat shrink setting to complete the packaging work, then the packaged mesh belt is placed in a storage device for transportation to the next step, at this time the cylindrical mesh belt is placed in order on the assembly line by the code spraying mechanism for code spraying on the packaging surface, the product flow conveying and orderly placing between the packaging equipment and the code spraying equipment are completed manually, which not only affects the efficiency, but also increases the labor intensity, so we need a mechanical device that can convey the cylindrical mesh belt packaged by the packaging machine to the code spraying mechanism to reduce the labor intensity and improve the work efficiency. SUMMARY
[0003] The purpose of the present application is to provide a packaging machine discharging device.
[0004] The technical problem of the present application is mainly solved by the following technical scheme:
[0005] A packaging machine discharging device, comprising a circular seat driven by a motor, a plurality of cylindrical bodies for fixing the cylindrical mesh belt are arranged circumferentially on the top of the circular seat, a disc for supporting the cylindrical mesh belt is arranged on the cylindrical body, a heat shrink packaging machine for bagging and packaging the cylindrical mesh belt is arranged outside the circular seat, a conveying assembly line is also arranged outside the circular seat, a guide mechanism and a material taking mechanism are arranged in sequence upstream of the conveying assembly line, one end of the material taking mechanism extends to the top of one of the discs, and a code spraying mechanism is arranged downstream of the conveying assembly line.
[0006] The guide mechanism comprises two groups of vertical rods arranged on the rear side of the conveying assembly line, and the two groups of vertical rods are connected to an inclined guide plate arranged on the top of the conveying assembly line through a connecting rod.
[0007] The material taking mechanism comprises a mounting frame arranged above the conveying assembly line, a linear module extending to the top of one of the discs is arranged on the mounting frame, a slide cylinder is arranged at the bottom of the slider in the linear module, and a pneumatic clamp jaw is arranged at the bottom of the slide cylinder.
[0008] Preferably, the conveying pipeline is composed of two groups of racks and a conveying belt arranged between the two groups of racks, the deflector plate is located on top of the conveying belt, the distance between the end upstream of the deflector plate and the front side rack is greater than the distance between the end downstream of the deflector plate and the front side rack, the linear module is located directly above the conveying belt on the front side of the deflector plate, and the code spraying mechanism is located on the conveying pipeline on the rear side of the deflector plate.
[0009] Preferably, a micro vibration motor is arranged on the back of the deflector plate, and the deflector plate is composed of a stainless steel metal plate and a rubber plate bonded to the metal plate.
[0010] Preferably, an arc-shaped silica gel seat is arranged on each of the clamping jaw ends of the pneumatic clamping jaw, and a cylindrical structure is formed between the two groups of silica gel seats.
[0011] Preferably, a support frame for supporting the overhanging end of the material taking mechanism is arranged on the outside upstream of the conveying pipeline.
[0012] The present application has the following advantages: the present application drives the cylindrical grid belt to rotate through the rotating circular seat, so that the heat shrink packaging machine sequentially displaces the bagged and packaged cylindrical grid belt to the material taking mechanism, then the material taking mechanism takes out the cylindrical grid belt and orderly places it on the conveying pipeline, then the product is sprayed with codes by the code spraying mechanism after being guided by the guide mechanism, and the cylindrical grid belt is mechanically conveyed and orderly taken and placed, thereby reducing the labor intensity and improving the efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 is a top view of the present application;
[0014] Figure 2 is a sectional view in the front direction of the present application.
[0015] In the figure: 1, motor, 2, circular seat, 3, cylinder, 4, disc, 5, heat shrink packaging machine, 6, conveying pipeline, 61, rack, 61, conveying belt, 7, guide mechanism, 71, vertical rod, 72, connecting rod, 73, deflector plate, 8, material taking mechanism, 81, mounting frame, 82, linear module, 83, sliding block, 84, sliding table cylinder, 85, pneumatic clamping jaw, 9, code spraying mechanism, 10, micro vibration motor, 11, silica gel seat, 12, support frame. DETAILED DESCRIPTION
[0016] The technical solutions of the present application will be further specifically described below by combining the accompanying drawings. Figures 1-2
[0017] A kind of packaging machine discharge device, including circular seat 2 driven by motor 1, the top of the circular seat 2 is circumferentially provided with multiple groups of cylindrical body 3 for fixing cylindrical grid belt, the disc 4 for supporting cylindrical grid belt is provided on the cylindrical body 3, the outer side of the circular seat 2 is provided with heat shrinkage packaging machine 5 for bagging packaging of cylindrical grid belt (it is prior art and not to repeat it), the outer side of the circular seat 2 is also provided with conveying flow line 6, the guiding mechanism 7 and material taking mechanism 8 are sequentially provided at the upstream of the conveying flow line 6, one end of the material taking mechanism 8 extends to the just above one of disc 4, the downstream of the conveying flow line 6 is also provided with code spraying mechanism 9 (it is prior art and not to repeat it);
[0018] The guiding mechanism 7 includes two groups of vertical rods 71 arranged at the back of the conveying flow line 6, wherein the two groups of vertical rods 71 are connected with the flow guide plate 73 arranged obliquely at the top of the conveying flow line 6 through the connecting rod 72;
[0019] The material taking mechanism 8 includes a mounting frame 81 arranged above the conveying flow line 6, the mounting frame 81 is provided with a linear module 82 extending to the just above one of disc 4 at one end, the slider 83 in the linear module 82 is provided with a sliding table cylinder 84 at the bottom, and the sliding table cylinder 84 is provided with a pneumatic gripper 85 at the bottom.
[0020] The conveying flow line 6 is composed of two groups of racks 61 and a conveying belt 62 arranged between the two groups of racks 61, and the flow guide plate 73 is located at the top of the conveying belt 62, wherein the distance between the end of the flow guide plate 73 upstream and the front side of the front side rack 61 is greater than the distance between the end of the flow guide plate 73 downstream and the front side of the front side rack 61, the linear module 82 is located just above the conveying belt 62 in front of the flow guide plate 73, and the code spraying mechanism 9 is located on the conveying flow line 6 behind the flow guide plate 73.
[0021] As shown in the drawings, Figure 1 The back of the flow guide plate 73 is provided with a micro vibration motor 10, and the flow guide plate 73 is composed of a stainless steel plate and a rubber plate bonded to the metal plate.
[0022] As shown in the drawings, Figure 2 The gripper end of the pneumatic gripper 85 is provided with an arc-shaped silica gel seat 11, and a group of cylindrical structures is formed between the two groups of silica gel seats 11.
[0023] In the embodiment, a support frame 12 is arranged outside the upstream of the conveying flow line 6 for supporting the suspended end of the material taking mechanism 8. In this way, the stability of the material taking mechanism 8 is improved.
[0024] The use method of the application: the cylindrical mesh belt is placed on the cylinder 3 and is fixed thereon, and is supported by the disc 4, wherein the motor 1 drives the circular seat 2 to sequentially rotate the cylindrical mesh belt above it to the heat shrink wrapping machine 5 to wrap and heat shrink and shape the cylindrical mesh belt to complete the wrapping work. At this time, the wrapped product is still in a cylindrical structure with both ends open. Then the circular seat 2 continues to drive the wrapped cylindrical mesh belt to be displaced to the position directly below one end of the material taking mechanism 8. At this time, the slide cylinder 84 drives the pneumatic clamping jaw 85 to move downward, so that the pneumatic clamping jaw 85 drives the silica gel seat 11 to be inserted into the opening of the cylindrical mesh belt and then to be opened, thereby fixing the cylindrical mesh belt. Then the slide cylinder 84 drives the pneumatic clamping jaw 85 and the clamped cylindrical mesh belt to move upward, thereby separating from the cylinder 3. Then the linear module 82 (also referred to as a linear slide) drives the slide cylinder 84 and the pneumatic clamping jaw 85 to drive the cylindrical mesh belt to be displaced to the upstream of the conveying line 6, that is, directly above the conveying belt 62 on the front side of the flow guide plate 73. At this time, the slide cylinder 84 drives the pneumatic clamping jaw 85 to move downward to make the cylindrical mesh belt contact the top of the conveying belt 62. Then the clamping jaw of the pneumatic clamping jaw 85 is retracted and reset, and at the same time, the material taking mechanism 58 drives the pneumatic clamping jaw 85 to move upward and then reset to the original position (that is, directly above one of the groups of discs 4);
[0025] When the cylindrical mesh belt is taken and placed on the conveying belt 62 and is conveyed downward to the code spraying mechanism 9 to perform code spraying work thereon, the flow guide plate 73 guides the cylindrical mesh belt to prevent the cylindrical mesh belt from being hung by the components such as the code spraying mechanism 9 on the rear side of the conveying belt 62, thereby affecting the downward flow or the subsequent code spraying work. The miniature vibration motor 10 works to slightly vibrate the side wall of the flow guide plate 73, so that the product quickly separates from the side wall of the flow guide plate 73 under the influence of the vibration force, thereby preventing the cylindrical mesh belt from being tightly attached to the side wall of the flow guide plate 73 and being stopped by the flow guide plate 73, thereby causing the conveying belt 62 to not be able to well drive the cylindrical mesh belt to flow downward.
[0026] The application has been described in detail, but the content described is only the preferred embodiment of the application and cannot be considered as limiting the scope of the implementation of the application. Any equivalent changes and improvements made within the scope of the application should still belong to the patent coverage range of the application.
Claims
1. A packaging machine outfeed device, characterized in that, The application relates to a motor-driven circular seat, which is provided with a plurality of groups of cylindrical bodies for fixing a cylindrical mesh belt on the top periphery of the circular seat, the cylindrical bodies are provided with discs for supporting the cylindrical mesh belt, the outer side of the circular seat is provided with a heat-shrinkable packaging machine for bagging and packaging the cylindrical mesh belt, and the outer side of the circular seat is further provided with a conveying assembly line, which is provided with a guiding mechanism and a material taking mechanism in sequence at the upstream of the conveying assembly line, the material taking mechanism extends to the top of one group of discs at one end, and the conveying assembly line is further provided with a code spraying mechanism at the downstream. The guiding mechanism comprises two groups of vertical rods arranged at the back side of the conveying assembly line, and the two groups of vertical rods are connected with a guiding plate arranged obliquely at the top of the conveying assembly line through connecting rods. The material taking mechanism comprises a mounting frame arranged above the conveying assembly line, the mounting frame is provided with a linear module extending to the top of one group of discs at one end, the slider in the linear module is provided with a sliding table air cylinder at the bottom, and the bottom of the sliding table air cylinder is provided with pneumatic clamping jaws.
2. A packaging machine outfeed apparatus according to claim 1, characterised in that: The conveying assembly line is composed of two groups of racks and a conveying belt arranged between the two groups of racks, the guiding plate is located at the top of the conveying belt, the distance between the end of the guiding plate at the upstream and the front side of the rack is greater than the distance between the end of the guiding plate at the downstream and the front side of the rack, the linear module is located above the conveying belt in front of the guiding plate, and the code spraying mechanism is located on the conveying assembly line at the back side of the guiding plate.
3. A packaging machine discharge apparatus according to claim 1, characterized in that: The back side of the guiding plate is provided with a micro vibration motor, and the guiding plate is composed of a stainless steel plate and a rubber plate bonded on the metal plate.
4. A packaging machine discharge apparatus according to claim 1, characterized in that: The clamping jaw ends of the pneumatic clamping jaws are provided with arc-shaped silica gel seats, and the two groups of silica gel seats form a cylindrical structure.
5. A packaging machine discharge apparatus according to claim 1, characterized in that: The outer side of the conveying assembly line at the upstream is provided with a support frame for supporting the suspended end of the material taking mechanism.