A multi-row inclined ramped conveyor belt
By designing a multi-row inclined lifting conveyor belt, adopting a frame and synchronous belt structure, and evenly distributed baffles, and using servo or stepper motor drive, stable lifting and neat conveying of packaging bags are achieved, solving the problem of low exit of vertical packaging machines and adapting to subsequent automated processing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI KOMATSU PACKAGING MACHINERY
- Filing Date
- 2025-09-10
- Publication Date
- 2026-08-04
AI Technical Summary
Vertical packaging machines have low output, and the bags need to be lifted and sorted during the subsequent conveying process, lacking automated solutions.
Design a multi-column inclined lifting conveyor belt, adopting a left-right symmetrical frame structure, inner and outer side guards combined with synchronous belts, and partition plates evenly distributed. Stable and neat conveying of packaging bags is achieved by servo or stepper motor drive.
It achieves stable lifting and neat conveying of packaging bags, solves the problem of low output of vertical packaging machines, and meets the needs of downstream automated processing.
Smart Images

Figure CN224589897U_ABST
Abstract
Description
[Technical Field]
[0001] This utility model relates to the field of packaging machine conveyor belts, specifically a multi-row inclined lifting conveyor belt. [Background Technology]
[0002] Currently, the qualified packaging bags produced by multi-row packaging machines are mostly loaded into finished product frames and large packaging bags for subsequent processing, such as sterilization, manual counting and bagging (boxing), etc.
[0003] With the improvement of social production levels, downstream processing is increasingly being replaced by automated methods, such as weighing, X-ray inspection, and automatic bagging (boxing). For vertical packaging machines, the output of their products is often very low, and lifting and sorting operations are often required during the transfer to downstream processes. This necessitates targeted design based on the specific requirements of downstream processes. [Utility Model Content]
[0004] The purpose of this invention is to address the aforementioned shortcomings by providing a multi-row inclined lifting conveyor belt, which can solve the problem of low outlet of vertical packaging machines and the need for lifting and sorting of packaging bags during the subsequent conveying process.
[0005] To achieve the above objectives, a multi-column inclined lifting conveyor belt is designed, including a left frame 100 and a right frame 101. The left frame 100 and right frame 101 are symmetrically arranged, with the front higher than the rear. A front support leg 102 and a drive shaft 104 are respectively provided on the front side of the left frame 100 and right frame 101, and a rear support leg 103 and a driven shaft 105 are respectively provided on the rear side of the left frame 100 and right frame 101. A support plate 106 is provided between the left frame 100 and right frame 101, and outer side guards 109 are symmetrically arranged on both sides of the support plate 106. An inner baffle group 110 is provided between the outer baffles 109 on the left and right sides. There are at least two inner baffle groups 110, and the inner baffle groups 110 are arranged in parallel to each other. A synchronous belt 107 is provided between the outer baffle 109 and its adjacent inner baffle group 110, as well as between two adjacent inner baffle groups 110. The synchronous belt 107 is connected between the drive shaft 104 and the driven shaft 105. Several baffles 108 are provided on each synchronous belt 107. The baffles 108 are distributed at equal intervals on the synchronous belt 107 with the same horizontal position as the base point.
[0006] Furthermore, the distance between the outer edge 109 and the nearest inner edge group 110 is equal to the distance between two adjacent inner edge groups 110, and synchronous belts 107 of equal width are provided within this distance, thereby making the conveying of packaging bags on the downstream production line of the multi-row packaging machine more stable and neat.
[0007] Furthermore, the inner side guard assembly 110 includes two inner side guards on the left and right sides. The outer side guard 109 and the inner side guards of the inner side guard assembly 110 are both L-shaped structures. The L-shaped structure is divided into a vertical part and a horizontal part. The vertical part of the L-shaped structure is located on the left and right sides of the synchronous belt 107 and plays a guiding and restricting role. The horizontal part of the L-shaped structure is fixed to the support plate 106 by screws.
[0008] Furthermore, the two inner side guards of the inner side guard group 110 are arranged symmetrically on the left and right sides and form a U-shaped structure. The horizontal parts of the outer side guards 109 located on the left and right sides of their vertical parts are respectively set on the left and right sides, which further ensures stable and neat conveying.
[0009] Furthermore, synchronous pulleys are respectively sleeved on the power shaft 104 and driven shaft 105 at positions corresponding to the synchronous belt 107, and the upper and lower sides of the synchronous belt 107 are respectively sleeved on the corresponding synchronous pulleys.
[0010] Furthermore, the power shaft 104 is connected to the output end of a servo motor or a stepper motor, and uses a servo motor or a stepper motor as the power source. It adopts a positioning intermittent transmission method, and each time it is transmitted, the baffle plate 108 of the synchronous belt 107 moves obliquely upward to the position of an adjacent baffle.
[0011] Furthermore, a middle support leg 200 is provided between the front support leg 102 and the rear support leg 103. The middle support leg 200 is located in the middle of the left frame 100 and the right frame 101, thereby enhancing stability.
[0012] Compared with the prior art, this utility model achieves the lifting and stable, neat conveying of packaging bags on the subsequent production line by setting an inclined lifting conveyor belt in the rear row of a multi-row packaging machine. Specifically, a synchronous belt is installed at the position where each row of packaging bags passes, and baffles are evenly spaced on the synchronous belt. This solves the problem of the low outlet of vertical packaging machines, which requires lifting and sorting of packaging bags during the subsequent conveying process. Furthermore, the adjacent baffles in this utility model are used to receive packaging bags produced by multiple rows of packaging machines, thus solving the problem of lifting and stable, neat conveying of packaging bags on the subsequent production line of multi-row packaging machines. This invention is worthy of widespread application. [Image Description]
[0013] Figure 1 This is a schematic diagram of the three-dimensional structure of this utility model. Figure 1 ;
[0014] Figure 2 This is a schematic diagram of the three-dimensional structure of this utility model. Figure 2 ;
[0015] Figure 3 This is a schematic diagram of an embodiment of the present invention (conveyed obliquely upward on a five-column packaging machine);
[0016] Figure 4 This is a partial structural schematic diagram of the present invention;
[0017] In the diagram: 100, left frame; 101, right frame; 102, front support leg; 103, rear support leg; 104, drive shaft; 105, driven shaft; 106, support plate; 107, synchronous belt; 108, baffle plate; 109, outer side guard; 110, inner side guard assembly; 200, middle support leg; 300, packaging bag. [Detailed Implementation]
[0018] The present invention will be further described below with reference to the accompanying drawings:
[0019] As attached Figure 1 To be continued Figure 4 As shown, this utility model relates to a ramp conveyor for packaging bags produced by a multi-row packaging machine. Specifically, it provides a multi-row ramp conveyor belt, including a left frame 100 and a right frame 101. The left and right frames 100 and 101 are symmetrically arranged, with the front higher than the rear. A front support leg 102 and a drive shaft 104 are respectively provided on the front side of the left and right frames 101, and a rear support leg 103 and a driven shaft 105 are respectively provided on the rear side of the left and right frames 101. A support plate 106 is provided between the left and right frames 101. Symmetrical outer guardrails 109 are arranged on both the left and right sides. Several inner guardrail groups 110 are arranged parallel to each other between the outer guardrails 109 and their adjacent inner guardrail groups 110. Synchronous belts 107 are installed between each outer guardrail 109 and its adjacent inner guardrail group 110, as well as between two adjacent inner guardrail groups 110. The synchronous belts 107 connect the drive shaft 104 and the driven shaft 105. Several baffles 108 are installed on each synchronous belt 107, evenly spaced with the same horizontal position as the base point. A middle support leg 200 is installed between the front support leg 102 and the rear support leg 103. The middle support leg 200 is located in the middle of the left frame 100 and the right frame 101, thereby enhancing stability.
[0020] The distance between the outer edge 109 and the nearest inner edge group 110 is equal to the distance between two adjacent inner edge groups 110. Within this distance, synchronous belts 107 of equal width are provided. Each synchronous belt 107 is provided with equally spaced baffles 108 with the same horizontal position as the base point, which further makes the conveying of packaging bags on the downstream production line of the multi-row packaging machine more stable and neat.
[0021] The inner side guard assembly 110 consists of two inner side guards, one on the left and one on the right. Both the outer side guard 109 and the inner side guards of the inner side guard assembly 110 are L-shaped structures. The L-shaped structure is divided into a vertical section and a horizontal section. The vertical section of the L-shaped structure is located on both sides of the synchronous belt 107, serving a guiding and restrictive function. The horizontal section of the L-shaped structure is fixed to the support plate 106 with screws. Furthermore, the two inner side guards of the inner side guard assembly 110 are arranged symmetrically to form a U-shape. The horizontal sections of the outer side guards 109, located on the left and right sides of their vertical sections, are respectively positioned to the left and right of their vertical sections, further ensuring stable and orderly conveying.
[0022] Synchronous pulleys are respectively sleeved on the drive shaft 104 and driven shaft 105 at positions corresponding to the synchronous belt 107. The upper and lower sides of the synchronous belt 107 are respectively sleeved on the corresponding synchronous pulleys. The drive shaft 104 is connected to the output end of a servo motor or a stepper motor, and uses a servo motor or a stepper motor as the power source. The positioning intermittent transmission method is adopted. Each time the transmission is performed, the baffle plate 108 of the synchronous belt 107 moves obliquely upward to the position of an adjacent baffle.
[0023] As attached Figure 3 The diagram illustrates a specific embodiment of this invention, where the packaging bags are conveyed diagonally upwards on a five-column packaging machine. The preceding multi-column packaging machine produces qualified packaging bags 300, which are cut and separated from the horizontal seal by a cutter. These bags are then guided onto the conveyor belt of this invention to a station enclosed by adjacent lowermost partitions 108 and side guards. Driven by a servo motor or stepper motor, the bags move diagonally upwards one station to receive the next batch of packaging bags 300 cut by the packaging machine. During each upward movement of the cut packaging bags 300, the lower ends of the bags are separated by the partitions 108, preventing mixing of bags 300 from different stations within each column and ensuring smooth operation and processing in subsequent stages.
[0024] The specific embodiments described above further illustrate the problems to be solved, the technical solutions, and the beneficial effects of this utility model. Contents not described in detail in this specification are prior art known to those skilled in the art. Standard parts used can be purchased commercially, and irregularly shaped parts can be customized according to the specification and drawings. The specific connection methods for each part all employ conventional methods such as bolts, rivets, and welding, which are mature technologies in the prior art. The machinery, parts, and equipment all adopt conventional models in the prior art, and the circuit connections adopt conventional connection methods in the prior art, which will not be detailed here.
[0025] This utility model is not limited to the above-described embodiments. Any changes, modifications, substitutions, combinations, or simplifications made without departing from the spirit and principle of this utility model shall be considered equivalent substitutions and shall be included within the protection scope of this utility model.
Claims
1. A multi-column inclined lifting conveyor belt, comprising a left frame (100) and a right frame (101), wherein the left frame (100) and the right frame (101) are symmetrically arranged, with the front higher than the rear; a front support leg (102) and a drive shaft (104) are respectively provided on the front side of the left frame (100) and the right frame (101); a rear support leg (103) and a driven shaft (105) are respectively provided on the rear side of the left frame (100) and the right frame (101); and a support plate (106) is provided between the left frame (100) and the right frame (101), characterized in that: The support plate (106) is symmetrically provided with outer side guards (109) on the left and right sides. An inner side guard group (110) is provided between the outer side guards (109) on the left and right sides. There are at least two inner side guard groups (110), and the inner side guard groups (110) are arranged in parallel to each other. A synchronous belt (107) is provided between the outer side guard (109) and its adjacent inner side guard group (110), as well as between two adjacent inner side guard groups (110). The synchronous belt (107) is connected between the power shaft (104) and the driven shaft (105). Several baffles (108) are provided on each synchronous belt (107). The baffles (108) are distributed at equal intervals on the synchronous belt (107) with the same horizontal position as the base point.
2. The multi-row, inclined, elevated conveyor belt as claimed in claim 1, characterized in that: The distance between the outer edge (109) and the nearest inner edge group (110) is equal to the distance between two adjacent inner edge groups (110), and a synchronous belt (107) of equal width is provided within this distance.
3. The multi-row, inclined, elevated conveyor belt as claimed in claim 1, characterized in that: The inner side guard assembly (110) includes two inner side guards on the left and right. The outer side guard (109) and the inner side guards of the inner side guard assembly (110) are both L-shaped structures. The L-shaped structure is divided into a vertical part and a horizontal part. The vertical part of the L-shaped structure is located on the left and right sides of the synchronous belt (107) and plays a guiding and restricting role. The horizontal part of the L-shaped structure is fixed to the support plate (106) by screws.
4. The multi-row, inclined, elevated conveyor belt as claimed in claim 3, characterized in that: The two inner side edges of the inner side edge group (110) are arranged symmetrically on the left and right sides and form a U-shaped structure. The horizontal parts of the outer side edges (109) on the left and right sides are respectively located on the left and right sides of their vertical parts.
5. The multi-row, inclined, elevated conveyor belt as claimed in claim 1, characterized in that: The synchronous pulleys are respectively sleeved on the power shaft (104) and driven shaft (105) at positions corresponding to the synchronous belt (107), and the upper and lower sides of the synchronous belt (107) are respectively sleeved on the corresponding synchronous pulleys.
6. The multi-row inclined elevator conveyor belt of claim 5, wherein: The power shaft (104) is connected to the output end of a servo motor or a stepper motor, and uses a servo motor or a stepper motor as the power source.
7. The multi-row inclined elevator conveyor belt according to any one of claims 1 to 6, characterized in that: A middle support leg (200) is provided between the front support leg (102) and the rear support leg (103), and the middle support leg (200) is located in the middle of the left frame (100) and the right frame (101).