An electric roller type intelligent turning conveying device

The electric roller intelligent turning conveyor's auxiliary correction and buffer shock absorption design solves the instability problem of materials during turning, achieving stable material conveying and long equipment life, and has good heat dissipation capabilities.

CN224529679UActive Publication Date: 2026-07-21ANHUI TAIFU HEAVY IND MFG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANHUI TAIFU HEAVY IND MFG CO LTD
Filing Date
2025-09-25
Publication Date
2026-07-21

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Abstract

The utility model provides a kind of electric roller type intelligent turning conveying device, it is related to electric roller conveying equipment technical field. Including fixed bottom plate, the top of fixed bottom plate is installed with turning conveying belt mechanism, by setting first conveying belt mechanism, turning conveying belt mechanism and auxiliary correction mechanism, material is carried by the conveying belt of first conveying belt mechanism and is sent into turning conveying belt mechanism, material is handed over to the second conveying roller of second conveying belt mechanism, continues linear conveying, provides secondary support and buffer, when fan in radiator mounting cover interior operates, inhale air from around, airflow blows towards the driving component near the junction of conveying mechanism, then is discharged through the air outlet hole outside cover, overall structure is simple and easy to operate, it is convenient for staff to quickly get started, realizes to give consideration to correcting material posture, effectively buffer vibration impact, and has good heat dissipation capacity function in one, to improve the service life of overall equipment.
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Description

Technical Field

[0001] This utility model relates to the technical field of electric roller conveying equipment, and in particular to an electric roller intelligent turning conveying device. Background Technology

[0002] In modern logistics, warehousing, and production lines, conveying devices are the core equipment for achieving automated material flow. Among them, turning conveyors are used to connect straight conveyor sections in different directions, enabling the turning and conveying of materials. Their performance directly affects the efficiency and reliability of the entire conveying system.

[0003] In practical applications, although existing turning conveyor devices can basically achieve the turning function, the following problems still exist during use: When materials enter, pass through or leave the turning section, they are prone to deviation, jamming or even overturning due to inertia, speed changes or uneven roller friction, which affects the smoothness of conveying and the safety of materials, increases the workload of manual adjustment, and also poses safety hazards. The entire device will generate vibration and impact when starting, stopping, or when the load is uneven. Without the installation of corresponding buffer and protection equipment, long-term operation can easily lead to problems such as structural component fatigue and loose connections, thereby reducing the service life of the equipment and causing many inconveniences.

[0004] Therefore, this utility model provides an electric roller type intelligent turning conveyor. Utility Model Content

[0005] The purpose of this invention is to overcome the shortcomings of existing technologies and provide an intelligent turning conveyor that actively corrects the material posture, effectively buffers vibration and impact, and has good heat dissipation capabilities, thereby accelerating the efficiency of automated conveying.

[0006] To achieve the above objectives, this utility model adopts the following technical solution: an electric roller type intelligent turning conveyor device, including a fixed base plate. A turning conveyor belt mechanism is installed on the top of the fixed base plate. A first conveyor belt mechanism is installed at one end of the turning conveyor belt mechanism, and a second conveyor belt mechanism is installed at the other end of the turning conveyor belt mechanism. The second conveyor belt mechanism is rotatably connected to equidistant second conveyor rollers. The first conveyor belt mechanism is installed to the inside of an equidistant conveyor belt. The turning conveyor belt mechanism is rotatably connected to equidistant first conveyor rollers. Auxiliary correction mechanisms are installed on both sides of the connection between the turning conveyor belt mechanism and the first conveyor belt mechanism. Each auxiliary correction mechanism includes a positioning clamp. A radiator mounting cover is installed on the side of each positioning clamp that is close to the other, and a fan is fixedly connected inside each radiator mounting cover. A first spring is fixedly connected to the bottom of each positioning clamp, and a first shock absorber is fixedly connected inside each first spring. A positioning rod is fixedly connected to one bottom end of each first spring. The positioning clamp is located away from the turning point. An auxiliary support base plate is installed on one side of the conveyor belt mechanism and on top of the fixed base plate. An electric telescopic rod is rotatably connected inside the auxiliary support base plate. An auxiliary support inclined plate is fixedly connected to the output end of the electric telescopic rod. One end of the auxiliary support inclined plate extends into the positioning clamp and is rotatably connected to the positioning clamp. A bottom buffer plate is fixedly connected to the bottom of the auxiliary support base plate. A second spring is fixedly connected to the bottom of the bottom buffer plate. A second shock absorber is fixedly connected inside the second spring. A bottom pressure plate is fixedly connected to the bottom of the second spring. Each positioning clamp is fixedly connected to a limiting sleeve at its top. A second positioning screw is threaded into the interior of each limiting sleeve. One end of the second positioning screw passes through the corresponding positioning clamp and is fixedly connected to a correction clamp at the top of the turning conveyor belt mechanism. A buffer disassembly pad is fixedly connected to the side of each of the two correction clamps that are close to each other. A first positioning screw, which cooperates with the second positioning screw for limiting, is threaded into the top of each limiting sleeve. The distance between the two first positioning screws can be easily adjusted by manually turning the second positioning screw, thereby assisting in the correction of materials conveyed by the first conveyor belt mechanism, the turning conveyor belt mechanism, and the second conveyor belt mechanism. The first positioning screws facilitate the limiting of the two correction clamps after the distance adjustment is completed, preventing equipment reset and avoiding low correction efficiency.

[0007] In a preferred embodiment, a buffer block is fixedly connected to one side of each positioning rod, and the bottom of each buffer block is located at the top of the fixed base plate. Second positioning bolts extending to the inner wall of the fixed base plate are threaded around the top of the bottom pressure plate. Equally spaced air vents for fan use are provided on the outer side of the radiator mounting cover. Fixed side plates are fixedly connected around the radiator mounting cover, and first positioning bolts extending to the inside of the positioning clamp are threaded inside each fixed side plate. The fixed side plates and positioning clamp are positioned and installed using the first positioning bolts, thereby positioning and installing the entire radiator mounting cover, facilitating position adjustment during installation.

[0008] In a preferred embodiment, a first drive motor is provided at the bottom of the first conveyor belt mechanism, a motor mounting bracket is fixedly connected to the bottom of the turning conveyor belt mechanism, a second support base rod is fixedly connected to one side of the motor mounting bracket, and a control panel is fixedly connected to the outer side of one of the positioning clamps. The first drive motor, fan, second drive motor and control panel are all electrically connected. The control panel is used to control the operation of the first drive motor, fan, second drive motor and electric telescopic rod, realizing unified management of power equipment.

[0009] In a preferred embodiment, the bottom of the first conveyor belt mechanism is fixedly connected to four first support rods, and the bottom of each of the four first support rods is fixedly connected to a first support foot extending to the inner top wall of the fixed base plate. The bottom of the second conveyor belt mechanism is fixedly connected to four third support rods, and the bottom of each of the four third support rods is fixedly connected to a first support foot extending to the inner top wall of the fixed base plate. The bottom of the turning conveyor belt mechanism is fixedly connected to two equally spaced second support rods, and one end of each second support rod is fixedly connected to a second support foot extending into the interior of the fixed base plate. The turning conveyor belt mechanism is supported and installed by the cooperation of the second support rods and the second support feet.

[0010] In a preferred embodiment, rotating frames are rotatably connected to both sides of the auxiliary support base plate, and a connecting rod is provided between the two rotating frames and above the electric telescopic rod. The outer side of the auxiliary support base plate is threaded with a third positioning bolt that cooperates with the limiting of the electric telescopic rod, thereby limiting the electric telescopic rod after the angle adjustment is completed, thus assisting in the connection of the positioning clamp and the turning conveyor belt mechanism.

[0011] Compared with the prior art, the advantages and positive effects of this utility model are as follows: By setting up a first conveyor belt mechanism, a turning conveyor belt mechanism, and an auxiliary correction mechanism, the material is carried by the conveyor belt of the first conveyor belt mechanism and fed into the turning conveyor belt mechanism. After turning, the material is transferred to the second conveyor roller of the second conveyor belt mechanism for continued linear conveying. All drive motors are uniformly controlled through the control panel to coordinate their operating speeds and ensure a smooth material transition. By manually rotating the second positioning screw, the correction clamps on both sides can be driven to move in opposite directions to adjust their spacing to accommodate materials of different widths. After adjustment, tightening the first positioning screw and the limit sleeve locks the second positioning screw, preventing the correction clamps from shifting during equipment operation. The buffer disassembly pads on the inner side of the correction clamps provide flexible guidance when in contact with materials, reducing damage from hard collisions. The extension and retraction of the electric telescopic rod... The movement of the auxiliary support plate allows for fine adjustment of the overall tilt angle or support force of the positioning clamp. The bottom pressure plate is fixed to the fixed base plate by the second positioning bolt, providing a stable foundation for the entire auxiliary correction mechanism and absorbing vibrations transmitted from the fixed base plate, providing secondary support and buffering. When the fan inside the radiator housing runs, it draws in air from the surroundings, blows the airflow towards the drive components near the connection of the conveying mechanism, and then discharges it through the air outlet on the outside of the housing, forming forced air cooling. This promptly removes the heat generated during operation, preventing the equipment from degrading or being damaged due to overheating. The overall structure is simple and easy to operate, allowing staff to quickly get started. It integrates the functions of correcting material posture, effectively buffering vibration and impact, and having good heat dissipation capabilities, thereby improving the overall service life of the equipment. Attached Figure Description

[0012] Figure 1 A schematic diagram of the overall structure of an electric roller-type intelligent turning conveyor provided by this utility model. Figure 1 ; Figure 2 A schematic diagram of the overall structure of an electric roller-type intelligent turning conveyor provided by this utility model. Figure 2 ; Figure 3 Enlarged schematic diagram of the auxiliary correction mechanism of the electric roller intelligent turning conveyor provided by this utility model. Figure 1 ; Figure 4 Enlarged schematic diagram of the auxiliary correction mechanism of the electric roller intelligent turning conveyor provided by this utility model. Figure 2 ; Figure 5 An enlarged structural diagram of the turning conveyor belt mechanism of an electric roller-type intelligent turning conveyor device provided by this utility model; Figure 6 The present invention provides an electric roller type intelligent turning conveyor device. Figure 4 A magnified schematic diagram of the structure at point A in the diagram.

[0013] Legend: 1. First conveyor belt mechanism; 11. Conveyor belt; 12. First support base rod; 13. First drive motor; 14. First support foot; 2. Turning conveyor belt mechanism; 21. First conveyor roller; 22. Second support base rod; 23. Motor mounting bracket; 24. Second drive motor; 25. Second support foot; 3. Second conveyor belt mechanism; 31. Second conveyor roller; 32. Third support base rod; 4. Positioning clamp; 41. Control panel; 42. Limiting sleeve; 43. First positioning screw; 44. Second positioning screw; 45. Correction clamp; 46. Radiator mounting cover; 47. Fixed side plate; 48. First positioning bolt; 49. Air outlet; 5. Fixed base plate; 51. First spring; 52. First shock absorber; 53. Positioning rod; 54. Buffer block; 6. Auxiliary support inclined plate; 61. Auxiliary support base plate; 62. Electric telescopic rod; 63. Rotating frame; 64. Connecting rod; 65. Bottom buffer pressure plate; 66. Second spring; 67. Second shock absorber damper; 68. Bottom pressure plate; 69. Second positioning bolt. Detailed Implementation

[0014] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0015] like Figures 1-6 As shown, this embodiment provides a technical solution: an electric roller type intelligent turning conveyor device, including a fixed base plate 5, a turning conveyor belt mechanism 2 installed on the top of the fixed base plate 5, a first conveyor belt mechanism 1 installed at one end of the turning conveyor belt mechanism 2, a second conveyor belt mechanism 3 installed at the other end of the turning conveyor belt mechanism 2, second conveyor rollers 31 equidistantly connected inside the second conveyor belt mechanism 3, a conveyor belt 11 equidistantly installed inside the first conveyor belt mechanism 1, and first conveyor rollers 21 equidistantly connected inside the turning conveyor belt mechanism 2; In this design, auxiliary correction mechanisms are installed on both sides of the connection between the turning conveyor belt mechanism 2 and the first conveyor belt mechanism 1. Each auxiliary correction mechanism includes a positioning clamp 4. A radiator mounting cover 46 is installed on the side of the two positioning clamps 4 closest to each other. A fan is fixedly connected inside each radiator mounting cover 46. A first spring 51 is fixedly connected to the bottom of each positioning clamp 4. A first shock absorber 52 is fixedly connected inside each first spring 51. A positioning rod 53 is fixedly connected to one end of the bottom of each first spring 51. An auxiliary support base plate 61 is installed on the side of the positioning clamp 4 away from the turning conveyor belt mechanism 2 and on top of the fixed base plate 5. Electric telescopic rods 62 are rotatably connected inside the plate 61. The output end of the electric telescopic rods 62 is fixedly connected to an auxiliary support inclined plate 6. One end of the auxiliary support inclined plate 6 extends into the positioning clamp 4 and is rotatably connected to the positioning clamp 4. Bottom buffer plates 65 are fixedly connected to the bottom of the auxiliary support base plate 61. Second springs 66 are equidistantly distributed at the bottom of the bottom buffer plates 65. Second damping devices 67 are fixedly connected inside the second springs 66. Bottom pressure plates 68 are fixedly connected to the bottom of the second springs 66. Different degrees of shaking will occur during support. The second springs 66, the second damping devices 67, and the first damping devices 52 work together to achieve a secondary buffering and protection effect, thereby extending the service life of the equipment. In this scheme, the top of each positioning clamp 4 is fixedly connected to a limiting sleeve 42. The inside of each limiting sleeve 42 is threaded with a second positioning screw 44. One end of the second positioning screw 44 passes through the corresponding positioning clamp 4 and is fixedly connected to a correction clamp 45 at the top of the turning conveyor belt mechanism 2. A buffer disassembly pad is fixedly connected to the side of the two correction clamps 45 that are close to each other. The top of each limiting sleeve 42 is threadedly connected to a first positioning screw 43 that cooperates with the second positioning screw 44 for limiting. The distance between the two first positioning screws 43 can be easily adjusted by manually turning the second positioning screw 44, thereby assisting in the correction of the material conveyed by the first conveyor belt mechanism 1, the turning conveyor belt mechanism 2 and the second conveyor belt mechanism 3. The first positioning screw 43 can be used to limit the two correction clamps 45 after the distance adjustment is completed, avoiding the problem of low correction efficiency caused by equipment reset.

[0016] Going further, such as Figures 1-4 , Figure 6As shown: In this scheme, buffer blocks 54 are fixedly connected to one side of the positioning rod 53. The bottom of the buffer blocks 54 is located on the top of the fixed base plate 5. The positioning rod 53 and the buffer blocks 54 assist in providing secondary support for the auxiliary correction mechanism. Different degrees of shaking will occur during support. The first spring 51 and the first shock absorber 52 work together to achieve a secondary buffer protection effect, thereby extending the service life of the equipment. The bottom pressure plate 68 is threaded around its inner top and four sides with second positioning bolts 69 extending to the inner wall of the top of the fixed base plate 5. Multiple second positioning bolts 69 reinforce the connection between the bottom pressure plate 68 and the fixed base plate 5, improving the stability of the equipment during support.

[0017] Going further, such as Figures 1-4 , Figure 6 As shown: In this solution, the outer side of the radiator mounting cover 46 is provided with equidistantly distributed air outlet holes 49 for use with the fan. The radiator mounting cover 46 is fixedly connected to all four sides with fixed side plates 47. The interior of each fixed side plate 47 is threaded with a first positioning bolt 48 extending into the positioning clamp 4. The fixed side plates 47 and the positioning clamp 4 are positioned and installed by the first positioning bolts 48, thereby positioning and installing the radiator mounting cover 46 as a whole, which facilitates the adjustment of the position during installation.

[0018] Going further, such as Figures 1-6 As shown, in this scheme, the bottom of the first conveyor belt mechanism 1 is provided with a first drive motor 13, the bottom of the turning conveyor belt mechanism 2 is fixedly connected with a motor mounting bracket 23, and a second support base rod 22 is fixedly connected to one side of the motor mounting bracket 23. The first conveyor belt mechanism 1, the turning conveyor belt mechanism 2, and the second conveyor belt mechanism 3 are all known technologies, so it is not necessary to explain the specific operation mode to ensure the normal operation of the whole.

[0019] In this scheme, a control panel 41 is fixedly connected to the outside of one of the positioning clamps 4. The first drive motor 13, the fan, the second drive motor 24 and the electric telescopic rod 62 are all electrically connected. The electric telescopic rod 62 is used to control the operation of the first drive motor 13, the fan, the second drive motor 24 and the electric telescopic rod 62, realizing unified management of power equipment.

[0020] Going further, such as Figures 1-4As shown, in this scheme, the bottom of the first conveyor belt mechanism 1 is fixedly connected to the four sides of the bottom, and the bottom of each of the four first support bases 12 is fixedly connected to the first support feet 14 extending to the inner top wall of the fixed base plate 5. The bottom of the second conveyor belt mechanism 3 is fixedly connected to the four sides of the bottom, and the bottom of each of the four third support bases 32 is fixedly connected to the first support feet 14 extending to the inner top wall of the fixed base plate 5. The second conveyor belt mechanism 3 is supported and installed by the cooperation of the first support feet 14 and the third support bases 32, and the first conveyor belt mechanism 1 is supported and installed by the cooperation of the first support feet 14 and the first support bases 12, thereby improving the installation stability of the two conveyor belts. The bottom of the turning conveyor belt mechanism 2 is fixedly connected to the equidistantly distributed second support bases 22, and the bottom end of each of the second support bases 22 is fixedly connected to the second support feet 25 extending into the interior of the fixed base plate 5. The turning conveyor belt mechanism 2 is supported and installed by the cooperation of the second support bases 22 and the second support feet 25.

[0021] In this scheme, rotating frames 63 are rotatably connected to both sides of the auxiliary support base plate 61. A connecting rod 64 is provided between the two rotating frames 63 and above the electric telescopic rod 62. The outer side of the auxiliary support base plate 61 is threaded with a third positioning bolt that cooperates with the limit of the electric telescopic rod 62, thereby limiting the electric telescopic rod 62 after the angle adjustment is completed, thereby assisting in the connection of the positioning clamp 4 and the turning conveyor belt mechanism 2.

[0022] Working principle: like Figures 1-6 As shown: By setting up a first conveyor belt mechanism 1, a turning conveyor belt mechanism 2, and an auxiliary correction mechanism, the control panel 41 is opened during use. In actual use, the auxiliary correction mechanism is installed on both sides of the connection between the first conveyor belt mechanism 1 and the turning conveyor belt mechanism 2, and on both sides of the connection between the turning conveyor belt mechanism 2 and the second conveyor belt mechanism 3, thereby providing auxiliary correction for materials conveyed from any direction. The material is carried by the conveyor belt 11 of the first conveyor belt mechanism 1 and fed into the turning conveyor belt mechanism 2. The first conveyor rollers 21, which are evenly distributed inside the turning conveyor belt mechanism 2, rotate under the drive of the drive device, using friction to push the material to turn along the arc path. After the turning is completed, the material is transferred to the second conveyor belt mechanism 3. The material continues to be conveyed linearly on the second conveyor roller 31. All drive motors are uniformly controlled through the control panel 41 to coordinate their operating speeds and ensure a smooth transition of materials. By manually rotating the second positioning screw 44, the two side correction clamps 45 can be driven to move in opposite directions to adjust their spacing to accommodate materials of different widths. After adjustment, tightening the first positioning screw 43 and the limit sleeve 42 locks the second positioning screw 44, preventing the correction clamps 45 from shifting during equipment operation. The buffer disassembly pad on the inner side of the correction clamps 45 provides flexible guidance when in contact with materials, reducing damage from hard collisions. The extension and retraction of the electric telescopic rod 62 pushes the auxiliary support inclined plate 6, which can finely adjust the overall tilt angle of the positioning clamps 4. Or, to provide support, the positioning clamp 4 is connected to the positioning rod 53 via the first spring 51 and the first shock absorber 52 at its bottom. When the turning mechanism is impacted, it can effectively absorb and dissipate vertical vibration energy. The buffer block 54 on the side of the positioning rod 53 provides lateral primary support and buffering. The auxiliary support base plate 61 is connected to the bottom pressure plate 68 via the second spring 66 and the second shock absorber 67 at its bottom. The bottom pressure plate 68 is fixed to the fixed base plate 5 by the second positioning bolt 69, thus providing a stable foundation for the entire auxiliary correction mechanism and absorbing vibrations transmitted from the fixed base plate 5, providing secondary support and buffering. The rotating frame 63 and the connecting rod 64 enhance the auxiliary support base plate 61 and the electric telescopic... The structural stability between rods 62 is ensured. The third positioning bolt is used to lock the adjustment state of the electric telescopic rod 62. When the fan inside the radiator mounting cover 46 is running, it draws in air from the surroundings. The airflow blows towards the drive components near the connection of the conveying mechanism and then discharges through the air outlet 49 on the outside of the cover, forming forced air cooling. This promptly blows away the heat generated during operation, preventing the equipment from degrading or being damaged due to overheating. The fixed side plate 47 and the first positioning bolt 48 ensure the stable installation of the radiator mounting cover 46. The overall structure is simple and easy to operate, allowing workers to quickly get started. It integrates the functions of correcting material posture, effectively buffering vibration and impact, and having good heat dissipation capabilities, thereby improving the overall service life of the equipment.

[0023] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution of the present utility model shall still fall within the protection scope of the technical solution of the present utility model.

Claims

1. An electric roller-type intelligent turning conveyor, comprising a fixed base plate (5), characterized in that, A turning conveyor belt mechanism (2) is installed on the top of the fixed base plate (5). A first conveyor belt mechanism (1) is installed at one end of the turning conveyor belt mechanism (2), and a second conveyor belt mechanism (3) is installed at the other end of the turning conveyor belt mechanism (2). Auxiliary correction mechanisms are installed on both sides of the connection between the turning conveyor belt mechanism (2) and the first conveyor belt mechanism (1). The auxiliary correction mechanism includes a positioning clamp (4). A radiator mounting cover (46) is installed on the side of the two positioning clamps (4) that are close to each other. A fan is fixedly connected inside the radiator mounting cover (46). A first spring (51) is fixedly connected to the bottom of the positioning clamp (4). A positioning rod (53) is fixedly connected to one end of the bottom of the first spring (51). An auxiliary support base plate (61) is installed on the side of the positioning clamp (4) away from the turning conveyor belt mechanism (2) and on the top of the fixed base plate (5). A bottom buffer plate (65) is fixedly connected to the bottom of the auxiliary support base plate (61). A second spring (66) is fixedly connected to the bottom of the bottom buffer plate (65). A bottom pressure plate (68) is fixedly connected to the bottom of the second spring (66). The top of each positioning clamp (4) is fixedly connected to a limiting sleeve (42), and the inside of each limiting sleeve (42) is threaded with a second positioning screw (44). One end of the second positioning screw (44) passes through the corresponding positioning clamp (4) and is fixedly connected to a correction clamp (45) at the top of the turning conveyor belt mechanism (2).

2. The electric roller type intelligent turning conveyor according to claim 1, characterized in that: The first spring (51) is fixedly connected to the first shock absorber (52), the second spring (66) is fixedly connected to the second shock absorber (67), the auxiliary support base plate (61) is rotatably connected to the electric telescopic rod (62), the output end of the electric telescopic rod (62) is fixedly connected to the auxiliary support inclined plate (6), one end of the auxiliary support inclined plate (6) extends into the positioning clamp (4) and is rotatably connected to the positioning clamp (4), one side of the positioning insert (53) is fixedly connected to the buffer block (54), the bottom of the buffer block (54) is located at the top of the fixed base plate (5), and the bottom pressure plate (68) is threaded around the top of the bottom plate (68) with the second positioning bolt (69) extending to the inner wall of the top of the fixed base plate (5).

3. The electric roller type intelligent turning conveyor according to claim 1, characterized in that: The top of each limiting sleeve (42) is threaded with a first positioning screw (43) that cooperates with the second positioning screw (44) for limiting. The outer side of the radiator mounting cover (46) is provided with air outlet holes (49) that are evenly distributed and used in conjunction with the fan. The radiator mounting cover (46) is fixedly connected with fixed side plates (47) around its perimeter. The inside of each fixed side plate (47) is threaded with a first positioning bolt (48) that extends into the positioning clamp (4).

4. The electric roller type intelligent turning conveyor according to claim 2, characterized in that: The second conveyor belt mechanism (3) is rotatably connected to a second conveyor roller (31) that is evenly distributed. The first conveyor belt mechanism (1) is installed with an evenly distributed conveyor belt (11). The turning conveyor belt mechanism (2) is rotatably connected to a first conveyor roller (21) that is evenly distributed. The bottom of the first conveyor belt mechanism (1) is provided with a first drive motor (13). The bottom of the turning conveyor belt mechanism (2) is fixedly connected to a motor mounting bracket (23). A second support base rod (22) is fixedly connected to one side of the motor mounting bracket (23).

5. The electric roller type intelligent turning conveyor according to claim 4, characterized in that: A control panel (41) is fixedly connected to the outside of one of the positioning clamps (4), and the first drive motor (13), the fan, the second drive motor (24) and the control panel (41) are all electrically connected.

6. The electric roller type intelligent turning conveyor according to claim 1, characterized in that: The bottom of the first conveyor belt mechanism (1) is fixedly connected with a first support base rod (12) around its bottom, the bottom of the second conveyor belt mechanism (3) is fixedly connected with a third support base rod (32) around its bottom, and the bottom of the turning conveyor belt mechanism (2) is fixedly connected with a second support base rod (22) that is evenly distributed.

7. The electric roller type intelligent turning conveyor according to claim 6, characterized in that: The auxiliary support base plate (61) is rotatably connected to both sides of a rotating frame (63), and a connecting rod (64) is provided between the two rotating frames (63) and above the electric telescopic rod (62).