Can-making parallel can path production line
A combined stand-up and sorting conveyor system with magnetic assistance addresses space and cost issues in can manufacturing, enabling efficient and space-saving can handling with integrated temperature control.
Patent Information
- Application Number
- CN202421827625.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-31
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-07-31
AI Technical Summary
The existing canning production line equipment covers a large area and is costly, and requires multiple people to operate, so it is impossible to efficiently carry out the standing and inspection of the tank body.
A parallel tank production line for tank making is designed, including a vertical tank conveying device and a screening conveying table, and the continuous upright and transmission of the tank body is achieved by using magnetic sheets and air blow pipes, reducing the number of equipment, saving the site and improving the transmission efficiency.
The continuous upright and inspection of tanks is realized, which reduces equipment costs, saves site area, reduces personnel demand, and improves production efficiency.
Smart Images

Figure CN223101690U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of can manufacturing, in particular to a parallel can path production line for can manufacturing. Background Art
[0002] The can preparation production line includes multiple processing procedures such as drying, inspection, and sealing. During can manufacturing, the can body needs to be placed flat for printing and dried in an oven. After drying, the can body is erected, and multiple parallel can paths are combined as the can manufacturing production line. In the prior art, a flipping mechanism is often installed on a conveyor belt to erect the can body, and then multiple parallel can paths are used for transmission. Front inspection personnel are arranged on both sides of the flat can path for front inspection or lid placement and other operations, which occupies a large area and has a high equipment cost.
[0003] Based on this, the utility model designs a parallel can path production line for can manufacturing. Summary of the Utility Model
[0004] The purpose of the utility model is to provide a parallel can path production line for can manufacturing to solve the problems in the prior art.
[0005] To solve the above technical problems, the utility model is realized through the following technical solutions:
[0006] A parallel can path production line for can manufacturing sequentially includes a vertical can device, a conveying device, and a screening conveyor table. The vertical can conveying device includes a first conveying device and a second conveying device. The screening conveyor table sequentially includes a front conveyor belt, a conveyor table, and a rear conveyor belt, all of which are respectively installed on a base through a plurality of brackets. The first conveying device includes a first conveyor belt, and first baffles are arranged on both sides of the first conveyor belt. The first baffles are fixed through first baffle brackets; the second conveying device includes a second conveyor belt, and second baffles are arranged on both sides of the second conveyor belt. The second baffles are fixed through second baffle brackets; the first conveyor belt and the second conveyor belt are respectively provided with a first inclined section and a second inclined section, and the first inclined section and the second inclined section form a V-shaped angle; a magnetic sheet is arranged at the bottom of the first inclined section, and the bottom of the magnetic sheet is fixed on a fixing plate. The fixing plate is fixed through a fixing plate bracket; a partition belt is vertically arranged on the upper surface of the conveyor table. The front and rear ends of the partition belt are respectively a gradually expanding opening and a gradually shrinking opening, and an air blowing pipe is arranged at the gradually shrinking opening. The air blowing pipe is connected to a gas source.
[0007] Further, the first conveying device further includes a first driving wheel, a first driven main wheel, and a first driven auxiliary wheel. A first driving wheel shaft is installed on the first driving wheel, and the first driving wheel shaft is installed on a first driving wheel bracket. The first driving wheel is connected to a first sprocket driving motor; a first driven main wheel shaft is installed on the first driven main wheel, and the first driven main wheel shaft is installed on a first driven main wheel bracket. A magnetic sheet is provided on the tread of the first driven main wheel; the first driven auxiliary wheel is connected to a first driven auxiliary wheel shaft, and the first driven auxiliary wheel shaft is installed on a mounting seat.
[0008] Further, the second conveying device further includes a second driving wheel and a second driven wheel. A second driving wheel shaft is installed on the second driving wheel, and the second driving wheel shaft is installed on a mounting seat. The second driving wheel is connected to a second sprocket driving motor; a second driven wheel shaft is installed on the second driven wheel, and the second driven wheel shaft is installed on a second driven wheel bracket.
[0009] Further, at least one conveyor belt adjusting wheel is provided on both the first conveying device and the second conveying device. The conveyor belt adjusting wheel is fixed to the mounting seat through a conveyor belt adjusting wheel bracket; the first driven main wheel and the first driven auxiliary wheel form a first inclined section, and the second driving wheel and the second driven wheel form a second inclined section. The height of the second driving wheel is higher than that of the first driven auxiliary wheel, and the second inclined section is vertically connected to the first inclined section.
[0010] Further, the first baffle bracket, the second baffle bracket, the fixing plate bracket, the first driving wheel bracket, the first sprocket driving motor, the first driven main wheel bracket, the second sprocket driving motor, and the conveyor belt adjusting wheel bracket are fixed to the mounting seat.
[0011] Further, fixing rods are evenly provided on both sides of the partition belt and fixed to the bracket.
[0012] Further, partition belts are provided on both sides of the front conveyor belt and the rear conveyor belt.
[0013] Further, a cross bar is provided directly above the connection between the front conveyor belt and the conveyor table. Both ends of the cross bar are fixed to the bracket, and a bent rod is fixed to the lower surface of the cross bar.
[0014] Further, a through hole is formed on one side of the rear conveyor belt, and the air blowing pipe is obliquely fixed in the through hole in the conveying direction.
[0015] The utility model has the following beneficial effects:
[0016] 1. Realize continuous vertical cans, with low equipment cost and convenient maintenance, and are suitable for most iron can production lines.
[0017] 2. Integrate multiple parallel can paths into one wide can path, saving site area and personnel;
[0018] 3. The air box reduces the temperature of the empty tank and increases the transmission power at the same time. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0020] Figure 1 It is a schematic diagram of the overall structure of the production line;
[0021] Figure 2 It is a schematic diagram of the overall structure of the vertical tank conveying device;
[0022] Figure 3 For Figure 2 the schematic diagram of the structure at position A in
[0023] Figure 4 It is a schematic diagram of the side view structure of the vertical tank conveying device;
[0024] Figure 5 It is a schematic diagram of the overall structure of the screening conveyor table;
[0025] Figure 6 For Figure 5 the schematic diagram of the structure at position B in
[0026] Figure 7 For Figure 5 the schematic diagram of the bending mechanism of the partition belt in
[0027] In the drawings, the list of components represented by each reference numeral is as follows:
[0028] 1. Vertical tank conveying device; 2. Screening conveyor table;
[0029] 1-1, First conveyor belt; 1-2, First baffle; 1-3, First baffle bracket; 1-4, Second conveyor belt; 1-5, Second baffle; 1-6, Second baffle bracket; 1-7, First inclined section; 1-8, Second inclination; 1-9, Magnetic sheet; 1-10, Fixed plate; 1-11, Fixed plate bracket; 1-12, First driving wheel; 1-13, First driven main wheel; 1-14, First driving wheel shaft; 1-15, First driving wheel bracket; 1-16, First sprocket drive motor; 1-17, First driven main wheel shaft; 1-18, First driven main wheel bracket; 1-19, First driven auxiliary wheel; 1-20, First driven auxiliary wheel shaft; 1-21, Mounting seat; 1-22, Second driving wheel; 1-23, Second driven wheel; 1-24, Second driving wheel shaft; 1-25, Second sprocket drive motor; 1-26, Second driven wheel shaft; 1-27, Second driven wheel bracket; 1-28, Conveyor belt adjusting wheel; 1-29, Conveyor belt adjusting wheel bracket; 1-30, Fixed rod;
[0030] 2-1, Rear conveyor belt; 2-2, Front conveyor belt; 2-3, Conveyor table; 2-4, Partition belt; 2-41, Flaring opening; 2-42, Tapered opening; 2-5, Air source; 2-6, Air blowing pipe; 2-7, Bracket; 71, Cross bar; 2-72, Bent rod; 2-8, Base; 2-9, Fixed rod. Detailed implementation mode
[0031] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. It should be understood that the terms "upper", "middle", "outer", "inner", "lower", etc. indicating the orientation or position relationship are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the components or elements referred to must have a specific orientation. Therefore, it should not be construed as a limitation to the present invention.
[0032] The accompanying drawings are specific embodiments of the present invention. As Figure 1 shown in - , the present invention is a parallel can path production line for cans, which successively includes a vertical can conveying device 1 and a screening conveyor table 2. As Figures 2 - 4As shown, the utility model of the upright can conveying device 1 for can making comprises a first conveying device and a second conveying device, the first conveying device comprises a first conveyor belt 1-1, first baffles 1-2 are arranged on both sides of the first conveyor belt 1-1, the baffles can adopt different shapes, and the first baffle 1-2 is fixed by a first baffle bracket 1-3; the second conveying device comprises a second conveyor belt 1-4, second baffles 1-5 are arranged on both sides of the second conveyor belt 1-4, and the second baffle 1-5 is fixed by a second baffle bracket 1-6; the first conveyor belt 1-1 and the second conveyor belt 1-4 are respectively provided with a first inclined section 1-7 and a second inclined section 1-8, and the first inclined section 1-7 forms a V-shaped angle with the second inclined section 1-8; a magnetic sheet 1-9 is arranged at the bottom of the first inclined section 1-7, the length of the magnetic sheet 1-9 needs to be greater than the first inclined section 1-7, the bottom of the magnetic sheet 1-9 is fixed on a fixed plate 1-10, and the fixed plate 1-10 is fixed by a fixed plate bracket 1-11. The first inclined section 1-7 is provided with cylindrical first baffles 1-2 on both sides, which are fixed on the fixed plate 1-10 through the fixing rod 1-30. The selection of the magnetic sheet 1-9 can be determined according to the actual use situation, and the can body can be sucked through the second conveyor belt 1-4. The first conveying device also includes a first driving wheel 1-12, a first driven main wheel 1-13, and a first driven secondary wheel 1-14. The first driving wheel 1-12 is equipped with a first driving wheel shaft 1-14, and the first driving wheel shaft 1-14 is installed on the first driving wheel bracket 1-15. The first driving wheel 1-12 is connected to the first sprocket transmission motor 1-16; the first driven main wheel 1-13 is equipped with a first driven main wheel shaft 1-17, and the first driven main wheel shaft 1-17 is installed on the first driven main wheel bracket 1-18; the first driven secondary wheel 1-19 is connected to the first driven secondary wheel shaft 1-20, and the first driven secondary wheel shaft 1-20 is installed on the mounting seat 1-21. The second transmission device also includes a second driving wheel 1-22 and a second driven wheel 1-23. The second driving wheel 1-22 is mounted with a second driving wheel shaft 1-24, which is mounted on a mounting seat 1-21. The second driving wheel 1-23 is connected to a second sprocket transmission motor 25. The second driven wheel 1-23 is mounted with a second driven wheel shaft 1-26, which is mounted on a second driven wheel bracket 1-27. Both the first transmission device and the second transmission device are provided with a conveyor belt adjusting wheel 1-28, which is fixed on the mounting seat 1-21 through a conveyor belt adjusting wheel bracket 1-29. The first driven main wheel 1-13 and the first driven secondary wheel 1-14 form a first inclined section 1-7, and the second driving wheel 1-22 and the second driven wheel 1-23 form a second inclined section 1-8. The height of the second driving wheel 1-22 is higher than the first driven secondary wheel 1-14, so that the second inclined section 1-8 can be vertically connected to the first inclined section 1-7 without contact.The purpose is that after the tank body moves down along the second inclined section 1-8, the upper surface of the tank body can be attached to the first inclined section 1-7 under the suction force of the magnetic plate 1-9, and gradually rises as the first conveyor belt 1-1 conveys, completing the vertical tank action. The first baffle bracket 1-3, the second baffle bracket 1-6, the fixed plate bracket 1-11, the first driving wheel bracket 1-15, the first sprocket drive motor 1-16, the first driven main wheel bracket 1-18, the second sprocket drive motor 1-25, and the conveyor belt adjusting wheel bracket 1-29 are fixed on the mounting base 1-21.
[0033] As Figures 5 - 7 shown, the screening conveyor table 2 of the present utility model sequentially includes a front conveyor belt 2-2, a conveyor table 2-3, and a rear conveyor belt 2-1, all of which are respectively installed on the base 2-8 through a plurality of brackets 2-7. A partition belt 2-4 is vertically arranged on the upper surface of the conveyor table 2-3. Partition belts 2-4 are also provided on both sides of the front conveyor belt 2-2 and the rear conveyor belt 2-1, and are connected to the partition belt 4 on the conveyor table 2-3. The front and rear ends of the partition belt 2-4 on the conveyor table 2-3 are respectively an expanding opening 2-41 and a shrinking opening 42. Among them, a blowing pipe 2-6 is provided at the shrinking opening 2-42. The blowing pipe 2-6 is connected to an air source 2-5, and the air source 2-5 can be a blowing bellows, and the bracket 2-7 raises it to an appropriate height. A through hole is opened on one side of the rear conveyor belt 1, and the blowing pipe 2-6 is obliquely fixed in the through hole in the conveying direction, which can not only cool the dried tank body but also increase the conveying power for the movement of the tank body. Fixed rods 2-9 are evenly arranged on both sides of the partition belt 2-4 and are fixed on the bracket 2-7 through the fixed rods 2-9. On the one hand, it can limit the displacement of the partition belt and prevent the tank body from falling during the conveying process. On the other hand, it can change the direction of the partition belt to form a shrinking opening 2-42. A cross bar 2-71 is provided directly above the connection between the front conveyor belt 2-2 and the conveyor table 2-3. Both ends of the cross bar 2-71 are fixed on the bracket 2-7, and a bent rod 2-72 is fixed on the lower surface of the cross bar 2-71. The partition belt 2-4 expands outward from the inner side of the bent rod 2-72 to form an expanding opening 2-41. The bent rod 2-72 is threadedly installed on the lower surface of the cross bar 2-71, and the opening size can be adjusted according to actual use.
[0034] The usage method of this embodiment is as follows:
[0035] In use, the tank body is conveyed to the second conveying device by a pre - arranged conveying mechanism. When on the second conveyor belt 1 - 4, the height direction of the tank body is consistent with the conveying direction. When passing through the second inclined section 1 - 8, the end surface in the conveying direction of the tank body gradually approaches the first conveyor belt 1 - 1. When reaching the bottom of the included angle formed by the first inclined section 1 - 7 and the second inclined section 1 - 8, the end surface in the conveying direction of the tank body fits with the first conveyor belt 1 - 1 located at the first inclined section 1 - 7. At this time, since there is a magnetic sheet 1 - 9 at the bottom of the first inclined section 1 - 7, it can overcome the gravity of the tank body itself and drive the tank body to climb the slope. When passing through the included angle, the vertical - standing tank body action is completed, and it is conveyed by the first conveying device to the front conveyor belt 2 - 2, and then conveyed by the front conveyor belt 2 - 2 to the conveying platform 2 - 3. It can be gradually dispersed and widened through the array of the gradually expanding openings 2 - 41. Personnel can be arranged to inspect here. A wide tank path not only saves the site area, but also allows personnel to take care of the entire tank path. When the tank body passes through the gradually shrinking opening 2 - 42, it returns to a single - row tank path. The air - blowing pipe 2 - 6 cools the tank body, and the rear conveyor belt 2 - 1 conveys the tank body to the next process for sealing.
[0036] The preferred embodiments of the present utility model disclosed above are only used to help illustrate the present utility model. The preferred embodiments do not describe all the details in detail, nor do they limit the present utility model to only the specific implementation manners.
Claims
1. A parallel can path production line for can making, successively including a vertical can device conveying device (1) and a screening conveyor table (2), the vertical can conveying device (1) including a first conveying device and a second conveying device, the screening conveyor table (2) successively including a front conveyor belt (2-2), a conveyor table (2-3), and a rear conveyor belt (2-1), all of which are respectively installed on a base (2-8) through a plurality of brackets (2-7), and characterized in that: The first conveying device includes a first conveyor belt (1-1), with first baffles (1-2) provided on both sides of the first conveyor belt (1-1), and the first baffles (1-2) are fixed by first baffle brackets (1-3); the second conveying device includes a second conveyor belt (1-4), with second baffles (1-5) provided on both sides of the second conveyor belt (1-4), and the second baffles (1-5) are fixed by second baffle brackets (1-6); the first conveyor belt (1-1) and the second conveyor belt (1-4) are respectively provided with a first inclined section (1-7) and a second inclined section (1-8), and the first inclined section (1-7) and the second inclined section (1-8) form a V-shaped angle; a magnetic sheet (1-9) is provided at the bottom of the first inclined section (1-7), and the bottom of the magnetic sheet (1-9) is fixed on a fixing plate (1-10), and the fixing plate (1-10) is fixed by a fixing plate bracket (1-11); a partition belt (2-4) is vertically provided on the upper surface of the conveying table (2-3), and the front and rear ends of the partition belt (2-4) are respectively an expanding opening (2-41) and a shrinking opening (2-42), and an air blowing pipe (2-6) is provided at the shrinking opening (2-42), and the air blowing pipe (2-6) is connected to an air source (2-5).
2. The can-making parallel can path production line according to claim 1, characterized in that: The first conveying device further includes a first driving wheel (1-12), a first driven main wheel (1-13), and a first driven auxiliary wheel (1-14). A first driving wheel shaft (1-14) is installed on the first driving wheel (1-12), and the first driving wheel shaft (1-14) is installed on a first driving wheel bracket (1-15), and the first driving wheel (v12) is connected to a first sprocket drive motor (1-16); a first driven main wheel shaft (1-17) is installed on the first driven main wheel (1-13), and the first driven main wheel shaft (1-17) is installed on a first driven main wheel bracket (1-18), and a magnetic sheet is provided on the tread of the first driven main wheel (1-13); the first driven auxiliary wheel (1-19) is connected to a first driven auxiliary wheel shaft (1-20), and the first driven auxiliary wheel shaft (1-20) is installed on a mounting seat (1-21).
3. A parallel tank line production line for can making according to claim 1, characterized in that: The second conveying device further includes a second driving wheel (1-22) and a second driven wheel (1-23). A second driving wheel shaft (1-24) is installed on the second driving wheel (1-22), and the second driving wheel shaft (1-24) is installed on a mounting seat (1-21), and the second driving wheel (1-23) is connected to a second sprocket drive motor (1-25); a second driven wheel shaft (1-26) is installed on the second driven wheel (1-23), and the second driven wheel shaft (1-26) is installed on a second driven wheel bracket (1-27).
4. A parallel can production line for can making according to claim 3, characterized in that: At least one conveyor belt adjusting wheel (1-28) is provided on each of the first conveyor device and the second conveyor device, and the conveyor belt adjusting wheel (1-28) is fixed on the mounting base (1-21) through a conveyor belt adjusting wheel bracket (1-29); a first inclined section (1-7) is formed between the first driven main wheel (1-13) and the first driven auxiliary wheel (14), a second inclined section (1-8) is formed between the second driving wheel (1-22) and the second driven wheel (1-23), the height of the second driving wheel (1-22) is higher than that of the first driven auxiliary wheel (1-14), and the second inclined section (1-8) is vertically connected to the first inclined section (1-7).
5. The can-making parallel can path production line according to claim 4, characterized in that: The first baffle bracket (1-3), the second baffle bracket (1-6), the fixing plate bracket (1-11), the first driving wheel bracket (1-15), the first sprocket drive motor (1-16), the first driven main wheel bracket (1-18), the second sprocket drive motor (1-25), and the conveyor belt adjusting wheel bracket (1-29) are fixed on the mounting base (1-21).
6. The production line of parallel can-making tank paths according to claim 1, characterized in that: Fixing rods (2-9) are evenly arranged on both sides of the partition belt (2-4) and fixed on the bracket (2-7).
7. A parallel tank path production line for can making according to claim 1, characterized in that: Partition belts (2-4) are provided on both sides of the front conveyor belt (2-2) and the rear conveyor belt (2-1).
8. A parallel tank line production line for can manufacturing according to claim 1, characterized in that: A cross bar (2-71) is provided directly above the connection between the front conveyor belt (2-2) and the conveyor table (2-3), both ends of the cross bar (2-71) are fixed on the bracket (2-7), and a bent rod (2-72) is fixed on the lower surface of the cross bar (2-71).
9. The can-making parallel can path production line according to claim 1, characterized in that: A through hole is formed on one side of the rear conveyor belt (2-1), and the air blowing pipe (2-6) is obliquely fixed in the through hole in the conveying direction.