Double-belt distribution conveying line
By designing a dual-belt material distribution conveyor line, the gap between the partitions can be adjusted by regulating the conveying speed. This solves the problem of fixed partition spacing in traditional scraper conveyor belts, enabling flexible adjustment of the partition spacing, reducing maintenance costs and downtime, and improving production efficiency and stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- AOMEI MEDICAL SUPPLIES CO LTD
- Filing Date
- 2025-05-30
- Publication Date
- 2026-05-29
AI Technical Summary
The fixed spacing between the partitions of traditional scraper conveyor belts means that the entire belt needs to be replaced when different sizes of materials are being conveyed, increasing maintenance costs and downtime, and affecting production efficiency.
The dual-belt material distribution conveyor line uses partitions installed on the first and second conveyor belts. The gap between the partitions can be flexibly adjusted by regulating the conveying speed of the two belts, thus avoiding the need to replace the entire belt.
It enables flexible adjustment of the partition gap, reduces maintenance costs and downtime, improves the flexibility and production efficiency of material conveying, and enhances the stability and reliability of the conveying process.
Smart Images

Figure CN224298018U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of medical dressing production equipment, and specifically relates to a double belt material distribution and conveying line. Background Technology
[0002] In the field of material handling, scraper conveyors are widely used due to their high efficiency and stability. Traditional scraper conveyors typically consist of a single conveyor belt with several baffles fixed to it, utilizing the gaps between adjacent baffles to store and transport materials. However, this traditional structure has a significant drawback: the gap between adjacent baffles is fixed. If the gap needs to be adjusted to accommodate materials of different specifications and conveying requirements, the entire conveyor belt must be replaced. This not only increases equipment maintenance costs and downtime but also severely impacts production efficiency. With the increasing demands for flexibility and adaptability in material handling in industrial production, how to achieve flexible adjustment of baffle spacing has become an urgent technical problem to be solved. Summary of the Invention
[0003] The technical problem to be solved by this utility model is to provide a double belt material distribution conveyor line. This utility model sets up a first conveyor belt and a second conveyor belt, and installs a first partition and a second partition respectively. By adjusting the conveying speed of the two belts, the gap between the partitions can be flexibly changed without replacing the entire belt, which significantly reduces maintenance costs and downtime.
[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows:
[0005] A dual-belt material distribution conveyor line includes a first conveyor belt and a second conveyor belt. A plurality of first partitions are installed on the first conveyor belt, and a plurality of second partitions are installed on the second conveyor belt. A partition gap is formed between adjacent first and second partitions. The spacing of the partition gap is adjusted by changing the conveying speed of the first and second conveyor belts.
[0006] Preferably, the first conveyor belt is driven by a first conveyor belt drive motor, and the second conveyor belt is driven by a second conveyor belt drive motor; the first and second conveyor belts have the same conveying direction, and the installation positions of the first and second conveyor belts do not overlap.
[0007] Preferably, the first conveyor belt and the second conveyor belt are arranged side by side.
[0008] Preferably, the first partition and the second partition have the same shape and size;
[0009] A portion of the first partition is mounted on the first conveyor belt, and another portion of the first partition extends to the second conveyor belt but is not connected to the second conveyor belt.
[0010] Part of the second partition is installed on the second conveyor belt, and another part of the second partition extends to the first conveyor belt but is not connected to the first conveyor belt.
[0011] Preferably, the space between the first partition and the second partition is used to store the materials to be conveyed. The space where the materials are located is called the material space. The length of the material space is adjusted by changing the conveying speed of the first conveyor belt and the second conveyor belt.
[0012] Preferably, both the first partition and the second partition are concave plate structures.
[0013] Preferably, both the first and second conveyor belts are mounted on a conveyor belt frame, and the conveyor belt frame is provided with baffles on the sides, which are located on both sides of the first and second partitions.
[0014] The present invention can achieve the following beneficial effects:
[0015] This invention, by setting up a first conveyor belt and a second conveyor belt, and installing a first partition and a second partition respectively, allows for flexible adjustment of the partition gap by adjusting the conveying speed of the two belts, eliminating the need to replace the entire belt and significantly reducing maintenance costs and downtime. At the same time, it can quickly adapt to materials of different specifications and conveying requirements, greatly improving the flexibility of material conveying and production efficiency.
[0016] In addition, the concave plate structure of the baffle facilitates filling and material removal, and the baffle design effectively prevents material from falling, further optimizing the stability and reliability of the conveying process. Attached Figure Description
[0017] The present invention will be further described below with reference to the accompanying drawings and embodiments:
[0018] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0019] Figure 2 This is the front view of the present utility model.
[0020] In the diagram: First conveyor belt 1, second conveyor belt 2, first partition 3, second partition 4. Detailed Implementation
[0021] Preferred solutions include Figures 1 to 2 As shown, a double-belt material distribution conveyor line includes a first conveyor belt 1 and a second conveyor belt 2. Several first partitions 3 are installed on the first conveyor belt 1, and several second partitions 4 are installed on the second conveyor belt 2. A partition gap is formed between adjacent first partitions 3 and second partitions 4. The spacing of the partition gap is adjusted by changing the conveying speed of the first conveyor belt 1 and the second conveyor belt 2.
[0022] Traditional scraper conveyor belts consist of only one conveyor belt with several fixed partitions. The gap between adjacent partitions is fixed, and if the gap between two partitions needs to be adjusted, the entire conveyor belt needs to be replaced. This invention addresses this technical problem by using a first conveyor belt 1, a second conveyor belt 2, and first and second partitions 3 and 4.
[0023] Under normal circumstances, the first conveyor belt 1 and the second conveyor belt 2 operate at the same speed, ensuring that the distance between the first partition 3 and the second partition 4 remains constant. When it is necessary to adjust the distance between the first partition 3 and the second partition 4, the transmission speeds of the first conveyor belt 1 and the second conveyor belt 2 are temporarily changed to be asynchronous. This alters the distance between the first partition 3 and the second partition 4. Once the distance between the first partition 3 and the second partition 4 meets the requirements, the first conveyor belt 1 and the second conveyor belt 2 are then adjusted back to be synchronized. This achieves the goal of flexibly adjusting the distance between the first partition 3 and the second partition 4.
[0024] From the appendix Figure 2 It can be seen that the distance between the first partition 3 and the second partition 4 includes a larger distance and a smaller distance. When the smallest distance is infinitely close to zero, it is the maximum value of the material storage space. When the larger distance and the smaller distance are infinitely close, it is the minimum value of the material storage space.
[0025] The space between the first partition 3 and the second partition 4 is used to store the materials to be conveyed. The space where the materials are located is called the material space. The length of the material space is adjusted by changing the conveying speed of the first conveyor belt 1 and the second conveyor belt 2.
[0026] Furthermore, to achieve both synchronous and asynchronous movement of the first conveyor belt 1 and the second conveyor belt 2, two motors are required for separate control. The first conveyor belt 1 is driven by a first conveyor belt drive motor, and the second conveyor belt 2 is driven by a second conveyor belt drive motor. The first conveyor belt 1 and the second conveyor belt 2 have the same conveying direction, and their installation positions do not overlap. In this embodiment, the first conveyor belt 1 and the second conveyor belt 2 are arranged side by side.
[0027] The first partition 3 and the second partition 4 have the same shape and size;
[0028] A portion of the first partition 3 is installed on the first conveyor belt 1, and another portion of the first partition 3 extends to the second conveyor belt 2, but is not connected to the second conveyor belt 2.
[0029] Part of the second partition 4 is installed on the second conveyor belt 2, and another part of the second partition 4 extends to the first conveyor belt 1, but is not connected to the first conveyor belt 1.
[0030] Specifically, the first partition 3 is fixed to the first conveyor belt 1 with screws, and the second partition 4 is installed on the second conveyor belt 2 with screws.
[0031] Both the first partition 3 and the second partition 4 are concave plate structures. This is mainly to facilitate filling or removing materials from other equipment.
[0032] Both the first conveyor belt 1 and the second conveyor belt 2 are mounted on a conveyor belt frame. The conveyor belt frame has baffles on its sides, located on either side of the first partition 3 and the second partition 4. The baffles primarily prevent material from falling from the sides of the first conveyor belt 1 and the second conveyor belt 2. This structure is similar to that of existing scraper conveyor belts.
[0033] The above embodiments are merely preferred technical solutions of this utility model and should not be considered as limitations on this utility model. The protection scope of this utility model should be the technical solution described in the claims, including equivalent substitutions of the technical features described in the claims. That is, equivalent substitutions and improvements within this scope are also within the protection scope of this utility model.
Claims
1. A double-belt material distribution conveyor line, characterized in that: It includes a first conveyor belt (1) and a second conveyor belt (2). Several first partitions (3) are installed on the first conveyor belt (1), and several second partitions (4) are installed on the second conveyor belt (2). A partition gap is formed between adjacent first partitions (3) and second partitions (4). The spacing of the partition gap is adjusted by changing the conveying speed of the first conveyor belt (1) and the second conveyor belt (2).
2. The double-belt material distribution conveyor line according to claim 1, characterized in that: The first conveyor belt (1) is driven by the first conveyor belt drive motor, and the second conveyor belt (2) is driven by the second conveyor belt drive motor; the first conveyor belt (1) and the second conveyor belt (2) have the same conveying direction, and the installation positions of the first conveyor belt (1) and the second conveyor belt (2) do not overlap.
3. A double-belt material distribution conveyor line according to claim 2, characterized in that: The first conveyor belt (1) and the second conveyor belt (2) are arranged side by side.
4. A double-belt material distribution conveyor line according to claim 1, characterized in that: The first partition (3) and the second partition (4) have the same shape and size; A portion of the first partition (3) is installed on the first conveyor belt (1), and the other portion of the first partition (3) extends to the second conveyor belt (2) and is not connected to the second conveyor belt (2); Part of the second partition (4) is installed on the second conveyor belt (2), and the other part of the second partition (4) extends to the first conveyor belt (1) and is not connected to the first conveyor belt (1).
5. A double-belt material distribution conveyor line according to claim 1, characterized in that: The space between the first partition (3) and the second partition (4) is used to store the materials that need to be conveyed. The space where the materials are located is called the material space. The length of the material space is adjusted by changing the conveying speed of the first conveyor belt (1) and the second conveyor belt (2).
6. A double-belt material distribution conveyor line according to claim 4, characterized in that: Both the first partition (3) and the second partition (4) are concave plate structures.
7. A double-belt material distribution conveyor line according to claim 1, characterized in that: The first conveyor belt (1) and the second conveyor belt (2) are both installed on the conveyor belt frame. The conveyor belt frame is provided with baffles on the side, which are located on both sides of the first partition (3) and the second partition (4).