Material conveying device based on turning guide mechanism
Through the material conveying device based on the turning guide mechanism, the design of the fan-shaped material support plate and the guide curved plate is utilized, combined with the belt transmission, which solves the problems of material blockage and low efficiency during the material transfer process, realizes the smooth transfer of materials and improves the equipment efficiency.
Patent Information
- Application Number
- CN202422666558.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-01
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-11-01
AI Technical Summary
The existing material transfer device needs to adjust the belt differential speed at the turning point during the right-angle turning process, which is prone to material blockage, and the pushing mechanism is complicated, resulting in low conveying efficiency.
A material conveying device based on a turning guide mechanism is adopted, and a fan-shaped material support plate and a guide bent plate are used to realize two-way turning guidance of the material. Combined with the belt conveyor mechanism, the material support plate is set at an obtuse angle to the central axis of the belt, and smooth transfer of materials is achieved through pushing and traction.
It enables materials to enter the next conveyor line continuously and orderly, improves material transfer efficiency, and enhances the overall efficiency of the equipment.
Smart Images

Figure CN223421735U_ABST
Abstract
Description
Technical field:
[0001] The utility model relates to the technical field of material conveying equipment manufacturing, in particular to a material conveying device based on a turning guide mechanism, which occupies a small space and can smoothly convey curvature during material conveying. Background technology:
[0002] When transferring materials between two parallel transmission lines on the market, right-angle turn belts and pushing mechanisms are often used. During the right-angle turn, the differential speed of the belt at the turn needs to be adjusted according to the turning radius of different materials, and material blockage is prone to occur. The transfer structure based on the pushing mechanism is complex, the pushing process is difficult to be continuous, and the conveying efficiency is low. The speed of material transfer restricts the working efficiency of the terminal mechanism. Therefore, a material transfer device with smooth operation and low cost is urgently needed. Summary of the invention:
[0003] In view of the shortcomings and deficiencies in the prior art, the utility model proposes a material conveying device based on a turning guide mechanism, which occupies a small space and can smoothly convey the curvature during the material conveying process.
[0004] The utility model is achieved through the following measures:
[0005] A material conveying device based on a turning guide mechanism is provided with a loading conveyor line and a unloading conveyor line. The loading conveyor line and the unloading conveyor line have the same transmission direction and are arranged parallel to each other. It is characterized in that it is also provided with a transfer mechanism for transferring materials from the discharge port of the loading conveyor line to the feed end of the unloading conveyor line. The transfer mechanism includes a transfer conveyor line and a turning guide mechanism respectively located at the front end and the rear end of the transfer conveyor line. The turning guide mechanism includes a material supporting plate for connecting the loading conveyor line to the transfer conveyor line or the transfer conveyor line to the unloading conveyor line. The material supporting plate is fan-shaped and its height is flush with the transfer conveyor line. The arc-shaped extension of the material supporting plate is provided with a guide bent plate arranged along the curvature of the material supporting plate. The guide bent plate is vertically fixed to the outer edge of the upper surface of the material supporting plate.
[0006] The transfer conveyor line of the present invention is provided with a turning guide mechanism at the front end and the rear end respectively. The turning guide mechanism at the front end of the transfer conveyor line is arranged opposite to the turning guide mechanism at the rear end of the transfer conveyor line, so as to realize two turning guides of the material.
[0007] The angle of the material support plate of the present invention is preferably less than 70°, and further preferably less than 45°, so as to reduce the area of the material turning area, so that only one portion of the material to be processed passes through each time and enters the next conveyor line as quickly as possible under the guidance of the guide bend plate.
[0008] The transfer conveyor line of the present invention is realized by a belt conveyor mechanism, and is provided with a frame, a transfer drive motor, a driven roller, an active roller, and a transfer belt, wherein the transfer belt is sleeved on the driven roller and the active roller, and the transfer drive motor drives the active roller to rotate to realize the transfer of materials. The central axis of the belt forms an obtuse angle with the material conveying direction of the loading conveyor line and the unloading conveyor line respectively, and the outer peripheral tangent of the material support plate in the turning guide mechanism is parallel to the central axis of the belt.
[0009] When the utility model is working, the material is put into the feeding port of the loading conveyor line. At the turning point, the material is subjected to the thrust of the previous conveyor line and the traction of the next conveyor line, and under the intervention of the guide bent plate, the material quickly passes through the turning guide mechanism, the conveying direction is changed and enters the transfer conveyor line. Driven by the belt in the transfer conveyor line, the material enters the turning guide mechanism between the transfer conveyor line and the unloading conveyor line. The transfer conveyor line belt pushes the material through the turning guide mechanism and pushes it to the feeding end of the unloading conveyor line, thereby completing the transfer of the material.
[0010] Compared with the prior art, the utility model can realize that materials can continuously and orderly enter the unloading conveying line, thereby improving the efficiency of material transfer and further improving the overall efficiency of the equipment. Description of the drawings:
[0011] Attachment Figure 1 It is a structural diagram of the present utility model.
[0012] Figure numerals: loading conveyor line 1, material supporting plate 2, transfer conveyor line 3, guide bent plate 4, unloading conveyor line 5. Specific implementation method:
[0013] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0014] Example:
[0015] As attached Figure 1 As shown, this example provides a material conveying device based on a turning guide mechanism, which is provided with a loading conveyor line 1 and a unloading conveyor line 5. The loading conveyor line 1 and the unloading conveyor line 5 have the same transmission direction and are arranged parallel to each other. A transfer mechanism is also provided for transferring the material at the discharge port of the loading conveyor line 1 to the feed end of the unloading conveyor line 5. The transfer mechanism includes a transfer conveyor line 3 and a turning guide mechanism located at the front end and the rear end of the transfer conveyor line 3 respectively. The turning guide mechanism includes a material supporting plate 2 for connecting the loading conveyor line 1 to the transfer conveyor line 3 or the transfer conveyor line 3 to the unloading conveyor line 5. The material supporting plate 2 is fan-shaped and its height is flush with the transfer conveyor line 3. The arc-shaped extension of the material supporting plate 2 is provided with a guide bent plate 4 arranged along the arc of the material supporting plate 2. The guide bent plate 4 is vertically fixed to the outer edge of the upper surface of the material supporting plate 2;
[0016] In this example, the front and rear ends of the transfer conveyor line 3 are respectively provided with a turning guide mechanism. The turning guide mechanism at the front end of the transfer conveyor line 3 is arranged opposite to the turning guide mechanism at the rear end of the transfer conveyor line, so as to realize two turning guides of the material.
[0017] The angle of the material support plate 2 in this example is preferably less than 70°, and further preferably less than 45°, so as to reduce the area of the material turning area, so that only one portion of the material to be processed passes through each time and enters the next conveyor line as quickly as possible under the guidance of the guide bend plate;
[0018] The transfer conveyor line described in this example is realized by a belt conveyor mechanism, which is provided with a frame, a transfer drive motor, a driven roller, an active roller, and a transfer belt, wherein the transfer belt is sleeved on the driven roller and the active roller, and the transfer drive motor drives the active roller to rotate to realize the transfer of materials. The central axis of the belt forms an obtuse angle with the material conveying direction of the loading conveyor line and the unloading conveyor line respectively, and the outer peripheral tangent of the material support plate in the turning guide mechanism is parallel to the central axis of the belt; the unloading conveyor line 5 and the transfer conveyor line 3 are pushed and pulled to transport the material to the feeding end of the unloading conveyor line 5;
[0019] During operation, the material is put into the feed port of the loading conveyor line 1. The material is subjected to the thrust of the previous conveyor line and the traction of the next conveyor line, and under the intervention of the guide bent plate, it quickly passes through the turning guide mechanism, the conveying direction changes and enters the transfer conveyor line. Driven by the belt in the transfer conveyor line 3, it enters the turning guide mechanism between the transfer conveyor line 3 and the unloading conveyor line 5. The material is pushed by the belt of the transfer conveyor line 3 and pulled by the unloading conveyor line 5, and is transported to the feed end of the unloading conveyor line 5 through the turning guide mechanism to complete the transfer of the material.
[0020] Compared with the prior art, the utility model can realize that materials can continuously and orderly enter the unloading conveying line, thereby improving the efficiency of material transfer and further improving the overall efficiency of the equipment.
Claims
1. A material conveying device based on a turning guide mechanism, provided with a loading conveyor line and a unloading conveyor line, wherein the loading conveyor line and the unloading conveyor line have the same transmission direction and are arranged parallel to each other, characterized in that: There is also a transfer mechanism for transferring materials from the discharge port of the loading conveyor line to the feed end of the unloading conveyor line. The transfer mechanism includes a transfer conveyor line and a turning guide mechanism located at the front end and the rear end of the transfer conveyor line respectively. The turning guide mechanism includes a material support plate for connecting the loading conveyor line to the transfer conveyor line or the transfer conveyor line to the unloading conveyor line. The material support plate is fan-shaped and its height is flush with the transfer conveyor line. The arc-shaped extension of the material support plate is provided with a guide bent plate arranged along the curvature of the material support plate. The guide bent plate is vertically fixed to the outer edge of the upper surface of the material support plate.
2. The material conveying device based on the turning guide mechanism according to claim 1, characterized in that: The front end and rear end of the transfer conveyor line are respectively provided with a turning guide mechanism. The turning guide mechanism located at the front end of the transfer conveyor line and the turning guide mechanism located at the rear end of the transfer conveyor line are arranged opposite to each other to realize two turning guides of the material.
3. The material conveying device based on the turning guide mechanism according to claim 1, characterized in that: The angle of the material supporting plate is less than 70°.
4. The material conveying device based on the turning guide mechanism according to claim 1, characterized in that: The transfer conveyor line is realized by a belt transmission mechanism, which is provided with a frame, a transfer drive motor, a driven roller, an active roller, and a transfer belt, wherein the transfer belt is sleeved on the driven roller and the active roller, and the transfer drive motor drives the active roller to rotate to realize the transfer of materials. The central axis of the belt forms an obtuse angle with the material conveying direction of the loading conveyor line and the unloading conveyor line respectively, and the outer peripheral tangent of the material support plate in the turning guide mechanism is parallel to the central axis of the belt.