Finished product conveying line for packaging bag production
By designing multiple conveyor lines and automatic material handling mechanisms on the packaging bag production line, combined with negative pressure adsorption and detectors, the problems of slow speed and reliance on manual operation of traditional conveyor lines are solved, achieving efficient and accurate material transmission and quality control.
Patent Information
- Application Number
- CN202423018851.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-09
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-12-09
AI Technical Summary
Traditional packaging bag production lines are mostly single-line designs with limited conveying speed, which cannot meet the demand for high output. The back end relies on manual operation, which increases labor costs and is prone to human error.
Multiple conveyor lines are designed, equipped with material-retrieving mechanisms and detectors to achieve automatic positioning and sorting. The materials are accurately transferred and stacked through the combined action of cylinders and transmission parts. The negative pressure adsorption technology is combined to ensure the stability of the materials, and detectors are set up to screen out defective products in real time.
It improves material transmission efficiency and accuracy, reduces manual labor intensity, ensures product quality, reduces production costs, and improves production efficiency and system flexibility.
Smart Images

Figure CN223456563U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a conveying line, especially to a finished product conveying line for packaging bag production. BACKGROUND
[0002] In the packaging bag production process, the finished product conveying line is one of the key links in the production line, mainly responsible for conveying the finished packaging bags on the production line from the production area to the subsequent processes such as packaging, inspection, and warehousing.
[0003] The traditional finished product conveying line usually adopts a simple belt conveyor or chain conveyor, which realizes continuous conveying through motor driving. However, with the continuous development of the packaging bag production industry, the requirements for production efficiency, product quality, and automation degree are becoming higher and higher. The traditional conveying line gradually exposes some shortcomings. The traditional conveying line is mostly designed as a single line, with limited conveying speed, which cannot meet the needs of high-yield production lines. At the same time, the middle and rear ends of most traditional conveying lines still rely on manual operation, such as product positioning, sorting, packaging, etc., which increases labor costs and is prone to human errors. SUMMARY
[0004] In order to overcome the shortcomings of the traditional conveying line, which is mostly designed as a single line with limited conveying speed, cannot meet the needs of high-yield production lines, and the middle and rear ends of most traditional conveying lines still rely on manual operation, such as product positioning, sorting, packaging, etc., which increases labor costs and is prone to human errors, the purpose is to provide a finished product conveying line for packaging bag production, which is equipped with multiple conveying lines and has a material taking component at the end of the conveying line for automatic positioning and sorting of materials.
[0005] The technical scheme is: a finished product conveying line for packaging bag production, comprising a bottom plate, a support, a control platform, a conveying line, a support plate, a rotating shaft, a conveying belt, a transmission member one, a sliding table, a transmission member two, a cylinder one, a material taking frame one and a material placing table, the support is arranged on one side of the upper portion of the bottom plate, the control platform is arranged on the front portion of the support, not less than two conveying lines are arranged side by side on the inner side of the upper portion of the support, the conveying line is composed of a frame, a rotating shaft and a conveying belt, the support is provided with the support plate arranged in the same direction as the conveying line, one support plate is embedded in the inner side of one conveying belt, the conveying belt is shaped and supported, and the straightness of the conveying belt during conveying is maintained, the conveying line is provided with a power member, the conveying belt is driven to rotate by the power member, the transmission member one is arranged on the right side of the upper portion of the support, the sliding table is arranged on the transmission member one, the sliding table moves left and right under the transmission of the transmission member one, the transmission member two is arranged perpendicular to the transmission member one, the sliding table is provided with a sliding block, the cylinder one is vertically arranged on one side of the sliding block, the movable rod end of the cylinder one is provided with the material taking frame one, the material taking frame is vertically lifted by the cylinder one, the material taking frame one moves forward and backward under the transmission of the transmission member two, and when the material taking frame one moves, the material taking frame one passes above the conveying line in the support, the material placing table is arranged on the right side of the bottom plate close to the support, the material placing table is provided with a stacking platform, and when the transmission member one drives the transmission member two to move rightwards, the transmission member two passes above the material placing table.
[0006] In a preferred embodiment of the present application, the material placing table is internally provided with a mounting groove, the mounting groove is provided with a lifting member, the lifting member is internally provided with a lifting rod, one end of the lifting rod of the lifting member is arranged to pass through the upper portion of the material placing table, and the top of the lifting rod is provided with a positioning support plate.
[0007] In a preferred embodiment of the present application, the positioning support plate is divided into a plurality of positioning subareas, and the positioning subareas are all provided with positioning rods.
[0008] In a preferred embodiment of the present application, the support is provided with a supporting seat, a transmission member three, a cylinder two, a material taking frame two and a detector, the supporting seat is arranged on the rear side of the upper portion of the support, the top of the supporting seat is provided with the transmission member three, the transmission member three is consistent with the transmission member two in structure, and the transmission member three and the transmission member two are arranged in the same direction, the cylinder two is vertically arranged on the sliding block of the transmission member three, the movable rod end of the cylinder two is provided with the material taking frame two, the detector is arranged on one side of the transmission member three, and the detection probe of the detector faces the conveying line.
[0009] In a preferred embodiment of the present application, the support plate is internally hollow, a plurality of air suction holes are arranged on the top of the support plate and the belt surface of the conveying belt in a spaced manner, the support is provided with a suction member, the suction member is connected with all the support plates through pipelines and is in communication with the interiors of the support plates, when the suction member works, air flows into the suction member from the air suction holes and forms a negative pressure area around the air suction holes.
[0010] The utility model has the advantages that the utility model is provided with a plurality of transmission lines, connects finished product materials of a plurality of stations, and concentrates transmission to the material taking mechanism, and the finished product materials are sorted and stacked on the material placing table through the material taking mechanism.
[0011] The utility model discloses a detection instrument is arranged on the transmission path of the transmission line and scans and detects the finished product material of transmission, when the defective product appears, the detection instrument will feedback data to the control platform, and simultaneously controls the transmission piece three and the material taking piece two and picks out the defective product, can monitor and screen out the defective product in real time, ensures product quality, can also reduce the link of manual inspection, improves the accuracy and efficiency of detection, through the automatic control, can respond and handle the defective product quickly, avoids its flow into the next procedure, reduces production cost, improves production efficiency and product reliability.
[0012] The utility model discloses a positioning platform that can be lifted with the stacking height, ensures that the material is always at the best positioning and placing height during stacking, this design not only improves the stability and safety of stacking, avoids the material inclination or collapse caused by height change, but also can automatically adapt to the stacking demand of different height, improves the flexibility and adaptability of the system. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is the three-dimensional structure schematic diagram of the utility model.
[0014] Figure 2 It is the three-dimensional structure schematic diagram of the transmission line, control platform, extraction and pressure piece and other components of the utility model.
[0015] Figure 3 It is the three-dimensional structure schematic diagram of the extraction and pressure piece and support plate of the utility model.
[0016] Figure 4 It is the three-dimensional structure schematic diagram of the material taking mechanism of the utility model.
[0017] Figure 5 It is the three-dimensional structure schematic diagram of the material placing table, positioning support plate and positioning rod and other components of the utility model.
[0018] The names and serial numbers of the parts in the figure are: 1_base plate, 2_bracket, 3_control platform, 4_transmission line, 41_support plate, 42_rotating shaft, 43_conveyor belt, 5_transmission part one, 51_slide, 511_transmission part two, 53_cylinder one, 52_feeding rack one, 6_unloading table, 61_positioning support plate, 62_positioning rod, 63_lifting part, 7_support seat, 71_transmission part three, 72_cylinder two, 73_feeding rack two, 74_detector, 8_suction and pressure part, 8100_suction hole. DETAILED DESCRIPTION
[0019] The present invention will be described in detail below with reference to the accompanying drawings and specific embodiments.
[0020] Example 1: A finished product conveyor line for packaging bag production, such as Figures 1-5 As shown, it includes a base plate 1, a bracket 2, a control platform 3, a transmission line 4, a support plate 41, a rotating shaft 42, a conveyor belt 43, a transmission part 1 5, a slide 51, a transmission part 2 511, a cylinder 1 53, a material picking rack 1 52 and a material unloading platform 6. A bracket 2 is provided on one side of the upper part of the base plate 1, and a control platform 3 is provided in front of the bracket 2. The control platform 3 is used to monitor and control the operating status of the entire conveyor line to ensure that each component works in coordination and improve production efficiency and stability.
[0021] At least two transmission lines 4 are arranged side by side on the inner side of the upper part of the bracket 2. The transmission lines 4 are composed of a frame, a rotating shaft 42 and a conveyor belt 43. The bracket 2 is provided with a support plate 41 consistent with the layout direction of the transmission line 4. One support plate 41 will be embedded in the inner side of a conveyor belt 43 to shape and support the conveyor belt 43, maintain the straight state of the conveyor belt 43 during transmission, ensure that the packaging bags will not deviate or overturn during the transmission process, and improve the stability and reliability of the transmission.
[0022] The transmission lines 4 are all provided with power parts, which drive the flow of the conveyor belt 43. The power parts provide stable driving force to ensure that the conveyor belt 43 can run smoothly and transport the packaging bags smoothly from left to right to the designated position. A transmission part 5 is provided on the upper right side of the bracket 2. A slide 51 is provided on the transmission part 5. The slide 51 will move left and right under the drive of the transmission part 5. Through this lateral movement, the slide 51 can cover multiple transmission lines 4, and realize the material picking operation of the packaging bags on different transmission lines 4.
[0023] The front side of the sliding table 51 is provided with a transmission member two 511, which is arranged perpendicular to the transmission member one 5. The transmission member two 511 is provided with a sliding block. The sliding block is vertically provided with a cylinder one 53 on one side. The movable rod end of the cylinder one 53 is provided with a material taking frame one 52. The material taking frame one 52 is vertically lifted by the cylinder one 53. The material taking frame one 52 can take materials at different heights, so as to adapt to packaging bags of different heights. The material taking frame one 52 is driven by the transmission member two 511 to move forward and backward. When the material taking frame one 52 moves, it passes above the transmission line 4 in the support 2. Through this kind of vertical and horizontal interlaced movement mode, the material taking frame one 52 can take packaging bags from multiple transmission lines 4 flexibly, so as to improve the efficiency and accuracy of material taking.
[0024] The bottom plate 1 is provided with a material placing table 6 near the right side of the support 2. The material placing table 6 is provided with a stacking platform. When the material taking frame one 52 takes the packaging bag, the transmission member two 511 drives the transmission member two 511 to move to the right. The transmission member two 511 passes above the material placing table 6. The material taking frame one 52 places the packaging bag on the stacking platform.
[0025] On the basis of the embodiment 1, as shown in Figure 1 and Figure 5 , the positioning supporting plate 61 and the lifting member 63 are further included. The material placing table 6 is internally provided with a mounting groove. The mounting groove is internally provided with the lifting member 63. The lifting member 63 is internally provided with a lifting rod. One end of the lifting rod of the lifting member 63 penetrates out of the upper part of the material placing table 6. The top of the lifting rod is provided with the positioning supporting plate 61. The lifting member 63 can automatically adjust the position of the lifting rod according to the stacking height, so as to keep the positioning supporting plate 61 always at a suitable height. When the material taking frame one 52 places the material, the packaging bag can be stably placed on the positioning supporting plate 61. The situation that the stacking is unstable due to the height difference between the cylinder one 53 and the material placing table 6 after the stroke of the cylinder one 53 reaches the limit position and the material is placed in the air is avoided. The positioning rod 62 is further included. The positioning supporting plate 61 is divided into multiple positioning subareas. The positioning rod 62 is arranged at the periphery of each positioning subarea. The positioning rod 62 can accurately position the packaging bag in each subarea, so as to ensure that the packaging bags are arranged in an orderly manner during stacking, and the stability and aesthetic degree of the stacking are improved.
[0026] In addition, as shown in Figure 1As shown, it also includes support seat 7, transmission member three 71, cylinder two 72, material taking frame two 73 and detector 74, the upper rear side of support 2 is provided with support seat 7, the top of support seat 7 is provided with transmission member three 71, transmission member three 71 is consistent with the structure of transmission member two 511, and the arrangement direction of the two is consistent, the sliding block of transmission member three 71 is vertically provided with cylinder two 72, the movable rod end of cylinder two 72 is provided with material taking frame two 73, the combination of transmission member three 71 and cylinder two 72 makes material taking frame two 73 can move flexibly in the vertical and horizontal directions, ensures that material taking frame two 73 can accurately take away defective products from conveying line 4, improves the rejection efficiency and accuracy of defective products. One side of transmission member three 71 is provided with detector 74, the detection probe of detector 74 faces conveying line 4, detector 74 can monitor the packaging bag on conveying line 4 in real time, when detecting defective products, detector 74 will immediately feed back data to control platform 3, control platform 3 will instruct cylinder two 72 to act, so that material taking frame two 73 quickly picks out defective products, avoids defective products entering subsequent processes, and ensures the quality of products.
[0027] Finally, as Figure 3 shown, it also includes suction member 8 and air suction hole 8100, the inside of support plate 41 is hollow, a plurality of air suction holes 8100 are spaced apart on the top of support plate 41 and the belt surface of conveying belt 43, suction member 8 is arranged on support 2, suction member 8 is connected with all support plates 41 through pipelines and communicates with the inside of support plate 41, when suction member 8 works, airflow enters suction member 8 from air suction hole 8100, and a negative pressure area is formed around air suction hole 8100, the negative pressure area can firmly adsorb the packaging bag on conveying belt 43, prevents the packaging bag from deviating or overturning during transmission, ensures that the packaging bag can be stably and accurately transmitted to the specified position, and improves the stability and reliability of transmission. At the same time, the adsorption effect also helps to reduce the friction between the packaging bag and conveying belt 43 when sliding, prolongs the service life of conveying belt 43.
[0028] The above only describes the embodiments of the present application, and does not limit the patent range of the present application, and any equivalent structure or equivalent process conversion according to the content of the present application specification, or direct or indirect application in other related technical fields, are also included in the patent protection range of the present application.
Claims
1. A finished product conveying line for packaging bag production, comprising a base plate (1), a support (2) and a control platform (3), the upper side of the base plate (1) is provided with the support (2), and the front of the support (2) is provided with the control platform (3); The application is characterized in that It also includes a transmission line (4), a support plate (41), a rotating shaft (42), a conveyor belt (43), a transmission member one (5), a sliding table (51), a transmission member two (511), a cylinder one (53), a material taking frame one (52) and a material placing table (6), the upper inner side of the support (2) is provided with not less than two transmission lines (4), the transmission line (4) is composed of a frame, a rotating shaft (42) and a conveyor belt (43), the support (2) is provided with a support plate (41) arranged in the same direction as the transmission line (4), one support plate (41) is embedded in the inner side of one conveyor belt (43) correspondingly, the conveyor belt (43) is shaped and supported, and the straightness of the conveyor belt (43) during transmission is maintained, the transmission line (4) is provided with a power member, the conveyor belt (43) is driven to circulate through the power member, the upper right side of the support (2) is provided with a transmission member one (5), the transmission member one (5) is provided with a sliding table (51), the sliding table (51) moves left and right under the transmission of the transmission member one (5), the front side of the sliding table (51) is provided with a transmission member two (511), the transmission member two (511) and the transmission member one (5) are arranged in a mutually perpendicular manner, the transmission member two (511) is provided with a sliding block, the sliding block is vertically provided with a cylinder one (53) on one side, the movable rod end of the cylinder one (53) is provided with a material taking frame one (52), the material taking frame is vertically lifted by the cylinder one (53), the material taking frame one (52) moves forward and backward under the drive of the transmission member two (511), and when it moves, it passes above the transmission line (4) in the support (2), the right side of the base plate (1) close to the support (2) is provided with a material placing table (6), the material placing table (6) is provided with a stacking platform, when the transmission member one () drives the transmission member two (511) to move to the right, the transmission member two (511) passes above the material placing table (6).
2. A finished product conveying line for a packaging bag production according to claim 1, characterized in that: It also includes a positioning support plate (61) and a lifting member (63), the inside of the material placing table (6) is provided with a mounting groove, the mounting groove is provided with a lifting member (63), the lifting member (63) is provided with a lifting rod, one end of the lifting rod of the lifting member (63) penetrates out of the upper part of the material placing table (6), and the top of the lifting rod is provided with a positioning support plate (61).
3. A finished product conveying line for a packaging bag production according to claim 2, characterized in that: It also includes a positioning rod (62), the positioning support plate (61) is divided into a plurality of positioning partitions, and the periphery of each positioning partition is provided with a positioning rod (62).
4. A finished product conveying line for a packaging bag production according to claim 3, characterized in that: Also include support seat (7), transmission three (71), cylinder two (72), take material frame two (73) and detector (74), support (2) upper rear side is equipped with support seat (7), the top of support seat (7) is equipped with transmission three (71), transmission three (71) is identical with transmission two (511) structure, and the layout direction of two is identical, the slider of transmission three (71) is vertically equipped with cylinder two (72), the movable rod end of cylinder two (72) is equipped with take material frame two (73), one side of transmission three (71) is equipped with detector (74), the detection probe of detector (74) is towards transmission line (4).
5. A finished product conveying line for a packaging bag production according to claim 4, characterized in that: Also include suction and pressure element (8) and air inlet hole (8100), the inside of support plate (41) is hollow, the top of support plate (41) and the belt surface of conveying belt (43) are all spaced with a plurality of air inlet holes (8100), the bracket (2) is equipped with suction and pressure element (8), the suction and pressure element (8) is connected with all support plates (41) through pipeline, and is communicated with the inside of support plate (41), when suction and pressure element (8) works, airflow will enter suction and pressure element (8) from air inlet hole (8100), and a negative pressure area is formed around air inlet hole (8100).