Jacking and transverse moving conveying mechanism for conveying line

By introducing a barrier frame and a hoisting assembly into the conveying mechanism, the barrier plate movement is achieved by using the electric cylinder to drive the lead screw and slide, the problems of material slipping and height fixation are solved, precise barrier and height adjustment are achieved, and the conveying efficiency and applicability are improved.

CN223174900UActive Publication Date: 2025-08-01LINGRUI INTELLIGENT EQUIPMENT (GUANGDONG) CO LTD
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Patent Information

Application Number
CN202422185398.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-05
Publication Date
2025-08-01
Estimated Expiration
2034-09-05

AI Technical Summary

Technical Problem

The lack of a barrier structure of the existing conveying mechanism causes the material to slide down on the belt, and the conveying height is fixed and cannot be adjusted, which affects efficiency and applicability.

Method used

The barrier frame and hoisting assembly are adopted to move the barrier plate through the electric cylinder drive lead screw and slider, and the material height is adjusted by combining the electric cylinder drive push plate and the lifting rod to achieve accurate barrier and height adjustment.

Benefits of technology

Effectively prevent materials from slipping, ensure delivery accuracy, and adjust material height according to needs to improve delivery efficiency and applicability.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223174900U_ABST
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Abstract

The utility model discloses a jacking and transverse moving conveying mechanism for a conveying line in the field of conveying mechanisms, which comprises a transverse moving conveying belt and a jacking conveying belt, a blocking frame is placed outside the jacking conveying belt, a motor seat is arranged on the side face of the blocking frame, a first electric cylinder is arranged on the top face of the motor seat, and a second electric cylinder is arranged on the top face of the motor seat. The output end of the first electric cylinder is connected with a rotatable lead screw, a plurality of fastening bases are arranged on the top face of the blocking frame, and one end of the lead screw penetrates through the fastening bases and is rotationally connected with the fastening bases. According to the jacking and transverse moving conveying mechanism for the conveying line, the second electric cylinder drives the push plate to drive the fixing frame and the upper structure to vertically ascend and descend, and the lifting rod and the top plate on the positioning plate are combined to ascend and descend, so that the conveying mechanism can adjust the height position of materials according to different production requirements, and convenience is provided for subsequent machining or transportation.
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Description

Technical Field

[0001] The utility model relates to the field of conveying mechanisms, in particular to a lifting and transverse conveying mechanism for a conveying line. Background Art

[0002] A material conveying mechanism generally refers to a mechanical equipment system dedicated to transporting materials from one location to another. This system mainly consists of the following key components: The conveyor is the core component of the material conveying mechanism. It usually consists of one or more rollers, conveyor belts or chains. These components transport the materials placed on them from the starting point to the ending point in a continuous motion manner. According to different working principles and application scenarios, conveyors can be divided into various types, such as heavy-duty belt conveyors, light-duty roller conveyors, bucket elevators, etc. The transition mechanism is used to connect different types of conveyors so that they can transfer materials to each other, thereby achieving more complex conveying paths and layouts. The electric motor is the power source for driving the conveyor to work. Through the drive of the electric motor, the conveyor belt or the conveyor chain starts to operate, thereby driving the materials for conveying. The working principle of the material conveying mechanism can be simply summarized as: providing power through the electric motor to drive the transmission components such as the conveyor belt or the conveyor chain to operate. The materials are placed on the conveyor belt or the conveyor chain and are transported to the target position as they move.

[0003] The existing conveying mechanisms still have the following defects:

[0004] 1) The existing conveying mechanisms generally drive the sprocket to rotate through a motor, and then drive the chain and the belt to move. By placing the materials on the belt, the motor drives the belt to transport the materials from one location to another. However, the current conveying mechanisms lack a structure for blocking the materials at both ends of the belt. After conveying for a period of time, the materials are prone to snake on the belt, resulting in an increasing snake shape. Without a blocking structure to block, the materials are likely to deviate, and finally the materials are easily slipped off from both sides of the belt. After slipping off, manual re-picking is required, which affects the efficiency of conveying materials.

[0005] 2) The conveying height of the existing conveying mechanisms is fixed. When the height of the actual working environment changes, it is impossible to adjust the height position of the materials according to different production requirements, and the materials cannot be conveyed to different height positions. The use limitations are relatively large. In addition, manual operation is required to move the materials up and down, resulting in time-consuming and laborious material transfer, which greatly reduces the conveying efficiency. Summary of the Utility Model

[0006] In order to overcome the deficiencies of the existing technical solutions, the present utility model provides a lifting and traversing conveying mechanism for a conveying line, which can effectively solve the technical problems that the existing conveying mechanism has no blocking structure to block materials, resulting in the materials being easily slipped from both ends of the belt during the conveying process, and the conveying height of the existing conveying mechanism is fixed and cannot convey the materials to positions at different heights.

[0007] The technical solution adopted by the present utility model to solve its technical problems is: a lifting and traversing conveying mechanism for a conveying line, including a traversing conveyor belt and a lifting conveyor belt. A blocking frame is placed outside the lifting conveyor belt. A motor base is arranged on the side surface of the blocking frame. A first electric cylinder is arranged on the top surface of the motor base. The output end of the first electric cylinder is connected with a rotatable lead screw. A plurality of fastening seats are arranged on the top surface of the blocking frame. One end of the lead screw passes through the fastening seat and is rotatably connected with the fastening seat. A slide rail is arranged on the top surface of the blocking frame and extends along the blocking frame. A blocking plate for realizing blocking is arranged on the side surface of the blocking frame. The blocking plate is sleeved on the lead screw. A slider slidably connected with the slide rail is arranged on the top surface of the slide rail. The slider moves along the slide rail. The top surface of the slider is connected with the blocking plate.

[0008] The lifting conveyor belt includes a fixed frame and a lifting assembly. The lifting assembly is located at the bottom of the fixed frame. The lifting assembly includes a lifting frame, a bottom plate and a second electric cylinder. The bottom plate is fixedly arranged at the bottom of the lifting frame. The second electric cylinder is arranged on the top surface of the bottom plate. A push plate is arranged at the output end of the second electric cylinder. The top of the push plate is connected with the bottom of the fixed frame. A horizontally arranged positioning plate is arranged at the top of the lifting frame. The positioning plate is provided with a fixed sleeve. A movable lifting rod is sleeved in the fixed sleeve. Both ends of the lifting rod extend outwards from the outside of the fixed sleeve. One end of the lifting rod is fixedly provided with a top plate. The top plate is parallel to the positioning plate. The top of the top plate is connected with the fixed frame.

[0009] Further, the slide rail and the lead screw are parallel to each other, and there are two slide rails.

[0010] Further, two side plates are arranged at the bottom of the fixed frame, and the two side plates are symmetrically distributed with respect to the fixed frame. A first rotating motor is installed on the side surface of the side plate by screws. A plurality of lifting rollers are arranged on the side surface of the fixed frame. Both ends of the plurality of lifting rollers pass through the side surface of the fixed frame, and the plurality of lifting rollers are rotatably connected with the fixed frame. The first rotating motor drives the lifting rollers to rotate.

[0011] Further, a plurality of feet are arranged at the bottom of the fixed frame, and the plurality of feet are all on the same horizontal plane.

[0012] Furthermore, the transverse conveyor belt includes a positioning frame, a limiting plate, rotating rollers and conveying rollers. The limiting plate is arranged on the side of the positioning frame. The rotating rollers are arranged between the positioning frame and the side plate. Both ends of the rotating rollers pass through the sides of the positioning frame and the side plate respectively, and the rotating rollers are rotatably connected to the positioning frame and the side plate respectively. Both ends of the conveying rollers pass through the side of the positioning frame, and the conveying rollers are rotatably connected to the positioning frame. A fixing plate is arranged at the bottom of the positioning frame, and a second rotating motor is arranged on the side of the fixing plate. The second rotating motor drives the rotating rollers to rotate.

[0013] Furthermore, a plurality of supporting feet are arranged at the bottom of the positioning frame, and all the plurality of supporting feet are on the same horizontal plane.

[0014] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0015] 1) For the lifting and transverse conveying mechanism for the conveyor line of the present utility model, the first electric cylinder drives the screw rod to rotate, converts the rotational motion into a linear motion, and enables the blocking plate and the slider sleeved on the screw rod to move along the slide rail, realizing the efficient and precise blocking of materials, preventing the materials from sliding off from both ends of the lifting rollers during the conveying process, and ensuring that the materials can be accurately blocked when needed;

[0016] 2) For the lifting and transverse conveying mechanism for the conveyor line of the present utility model, the second electric cylinder drives the push plate to drive the fixed frame and the upper structure to vertically lift and lower, and in combination with the lifting rods and the top plate on the positioning plate to lift and lower, enabling the conveying mechanism to adjust the height position of the materials according to different production requirements, and being able to convey the materials to positions at different heights, providing convenience for subsequent processing or transportation. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a perspective view of the lifting and transverse conveying mechanism for the conveyor line of the present utility model;

[0018] Figure 2 is a perspective view of the transverse conveyor belt of the lifting and transverse conveying mechanism for the conveyor line of the present utility model;

[0019] Figure 3 is a perspective view of the lifting conveyor belt of the lifting and transverse conveying mechanism for the conveyor line of the present utility model;

[0020] Figure 4 is a perspective view of the lifting assembly of the lifting and transverse conveying mechanism for the conveyor line of the present utility model;

[0021] Figure 5 is a perspective view of the blocking frame of the lifting and transverse conveying mechanism for the conveyor line of the present utility model.

[0022] Reference numerals in the drawings:

[0023] 1 - Cross - transfer conveyor belt; 2 - Lifting conveyor belt; 3 - Blocking frame; 4 - Positioning frame; 5 - Support feet; 6 - Fixed plate; 7 - Second rotating motor; 8 - Limiting plate; 9 - Rotating roller; 10 - Conveying roller; 11 - Bottom plate; 12 - Lifting frame; 13 - Bottom feet; 14 - Side plate; 15 - First rotating motor; 16 - Fixed sleeve; 17 - Lifting rod; 18 - Positioning plate; 19 - Fixed frame; 20 - Lifting roller; 21 - Top plate; 22 - Pushing plate; 23 - Second electric cylinder; 24 - Blocking plate; 25 - Slide rail; 26 - Slide block; 27 - Motor base; 28 - First electric cylinder; 29 - Fastening seat; 30 - Lead screw. Detailed implementation mode

[0024] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0025] As Figures 1 - 5 shown, the lifting and cross - transfer conveying mechanism for a conveyor line includes a cross - transfer conveyor belt 1 and a lifting conveyor belt 2. A blocking frame 3 is placed outside the lifting conveyor belt 2. A motor base 27 is provided on the side of the blocking frame 3. A first electric cylinder 28 is provided on the top surface of the motor base 27. The output end of the first electric cylinder 28 is connected to a rotatable lead screw 30. A plurality of fastening seats 29 are provided on the top surface of the blocking frame 3. One end of the lead screw 30 passes through the fastening seat 29 and is rotatably connected to the fastening seat 29. A slide rail 25 is provided on the top surface of the blocking frame 3 and extends along the blocking frame 3. A blocking plate 24 for blocking is provided on the side of the blocking frame 3. The blocking plate 24 is sleeved on the lead screw 30. A slide block 26 slidably connected to the slide rail 25 is provided on the top surface of the slide rail 25. The slide block 26 moves along the slide rail 25. The top surface of the slide block 26 is connected to the blocking plate 24. By driving the lead screw 30 to rotate with the first electric cylinder 28, the rotational motion is converted into a linear motion, so that the blocking plate 24 and the slide block 26 sleeved on the lead screw 30 move along the slide rail 25, realizing the efficient and precise blocking of materials.

[0026] The lifting conveyor belt 2 includes a fixed frame 19 and a lifting assembly. The lifting assembly is located at the bottom of the fixed frame 19. The lifting assembly includes a lifting frame 12, a bottom plate 11, and a second electric cylinder 23. The bottom plate 11 is fixedly arranged at the bottom of the lifting frame 12. The second electric cylinder 23 is arranged on the top surface of the bottom plate 11. A push plate 22 is arranged at the output end of the second electric cylinder 23. The top of the push plate 22 is connected to the bottom of the fixed frame 19. A horizontally arranged positioning plate 18 is arranged at the top of the lifting frame 12. A fixed sleeve 16 is arranged on the positioning plate 18. A movable lifting rod 17 is sleeved in the fixed sleeve 16. Both ends of the lifting rod 17 extend outward from the fixed sleeve 16. One end of the lifting rod 17 is fixedly provided with a top plate 21. The top plate 21 is parallel to the positioning plate 18. The top of the top plate 21 is connected to the fixed frame 19. The slide rail 25 and the lead screw 30 are parallel to each other. There are two slide rails 25. The parallel arrangement of the slide rail 25 and the lead screw 30 and the configuration of the double slide rails 25 enhance the stability of the movement of the baffle 24. By driving the push plate 22 with the second electric cylinder 23, the fixed frame 19 and the upper structure are driven to vertically lift and lower. Combining the lifting rod 17 and the top plate 21 on the positioning plate 18 for lifting and lowering, the conveying mechanism can adjust the height position of the material according to different production requirements and can convey the material to positions at different heights.

[0027] Two side plates 14 are arranged at the bottom of the fixed frame 19. The two side plates 14 are symmetrically distributed with respect to the fixed frame 19. A first rotating motor 15 is installed on the side surface of the side plate 14 by screws. A plurality of lifting rollers 20 are arranged on the side surface of the fixed frame 19. Both ends of the plurality of lifting rollers 20 pass through the side surface of the fixed frame 19. The plurality of lifting rollers 20 are all rotatably connected to the fixed frame 19. The first rotating motor 15 drives the lifting rollers 20 to rotate. A plurality of feet 13 are arranged at the bottom of the fixed frame 19. The plurality of feet 13 are all on the same horizontal plane.

[0028] The transverse conveyor belt 1 includes a positioning frame 4, a limiting plate 8, a rotating roller 9 and a conveying roller 10. The limiting plate 8 is arranged on the side of the positioning frame 4. The rotating roller 9 is arranged between the positioning frame 4 and the side plate 14. Both ends of the rotating roller 9 pass through the sides of the positioning frame 4 and the side plate 14 respectively, and the rotating roller 9 is rotatably connected to the positioning frame 4 and the side plate 14 respectively. Both ends of the conveying roller 10 pass through the side of the positioning frame 4, and the conveying roller 10 is rotatably connected to the positioning frame 4. A fixing plate 6 is arranged at the bottom of the positioning frame 4, and a second rotating motor 7 is arranged on the side of the fixing plate 6. The second rotating motor 7 drives the rotating roller 9 to rotate. A plurality of supporting feet 5 are arranged at the bottom of the positioning frame 4, and all the plurality of supporting feet 5 are on the same horizontal plane. The transverse conveyor belt 1 realizes the horizontal conveying of materials through the combination of the rotating roller 9 and the conveying roller 10. Combined with the drive of the second rotating motor 7, the continuity and stability of the conveying are ensured.

[0029] In addition, a chain is also arranged between the first rotating motor 15 and the lifting roller 20. The first rotating motor 15 drives the lifting roller 20 to rotate. Similarly, a chain is arranged between the second rotating motor 7 and the rotating roller 9. The second rotating motor 7 drives the rotating roller 9 to rotate, enabling the materials to be conveyed. Moreover, the limiting plate 8 divides the rotating roller 9 into two groups, enabling the materials to be conveyed from the two groups of rotating rollers 9, greatly improving the conveying efficiency and enabling the simultaneous conveying of two groups of materials.

[0030] When the lifting and transverse conveying mechanism for the conveyor line in this embodiment is in use, the transverse conveyor belt 1 and the lifting conveyor belt 2 are placed together, with the transverse conveyor belt 1 arranged in front of the lifting conveyor belt 2. The blocking frame 3 is placed separately. During conveying, the materials to be conveyed are fed from the two groups of rotating rollers 9. The second rotating motor 7 drives the rotating roller 9 to rotate, enabling the two groups of materials to be conveyed. When the materials are conveyed to the lifting roller 20, the first rotating motor 15 drives the lifting roller 20 to rotate. The first electric cylinder 28 drives the lead screw 30 to rotate, converting the rotational motion into a linear motion, so that the blocking plate 24 and the slider 26 sleeved on the lead screw 30 move along the slide rail 25, realizing the blocking of the materials and preventing the materials from slipping from both ends of the lifting roller 20 during the conveying process. The second electric cylinder 23 drives the push plate 22, driving the fixing frame 19 and the upper structure to vertically lift and lower, combined with the lifting rod 17 and the top plate 21 on the positioning plate 18 to lift and lower, enabling the conveying mechanism to convey the materials to positions at different heights according to different production requirements. After adjusting the height of the materials, the materials are sent out through the lifting roller 20.

[0031] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above exemplary embodiments, and the present utility model can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present utility model, and any reference signs in the claims should not be regarded as limiting the claims involved.

Claims

1. The lifting and traversing conveyor mechanism for a conveyor line, comprising a traversing conveyor belt and a lifting conveyor belt, with a blocking frame placed outside the lifting conveyor belt, and a motor base provided on the side of the blocking frame, characterized in that: A first electric cylinder is provided on the top surface of the motor base. The output end of the first electric cylinder is connected to a rotatable lead screw. A plurality of fastening seats are provided on the top surface of the blocking frame. One end of the lead screw passes through the fastening seat and is rotatably connected to the fastening seat. A slide rail is provided on the top surface of the blocking frame and extends along the blocking frame. A blocking plate for blocking is provided on the side surface of the blocking frame. The blocking plate is sleeved on the lead screw. A slider slidably connected to the slide rail is provided on the top surface of the slide rail. The slider moves along the slide rail. The top surface of the slider is connected to the blocking plate. The lifting conveyor belt includes a fixed frame and a lifting assembly. The lifting assembly is located at the bottom of the fixed frame. The lifting assembly includes a lifting frame, a bottom plate, and a second electric cylinder. The bottom plate is fixedly provided at the bottom of the lifting frame. The second electric cylinder is provided on the top surface of the bottom plate. A push plate is provided at the output end of the second electric cylinder. The top of the push plate is connected to the bottom of the fixed frame. A horizontally arranged positioning plate is provided at the top of the lifting frame. The positioning plate is provided with a fixed sleeve. A movable lifting rod is sleeved in the fixed sleeve. Both ends of the lifting rod extend outward from the fixed sleeve. A top plate is fixedly provided at one end of the lifting rod. The top plate is parallel to the positioning plate. The top of the top plate is connected to the fixed frame.

2. The lifting and transverse conveying mechanism for a conveying line according to claim 1, characterized in that: The slide rail is parallel to the lead screw, and there are two slide rails.

3. The lifting and transverse conveying mechanism for a conveying line according to claim 1, characterized in that: Two side plates are provided at the bottom of the fixed frame, and the two side plates are symmetrically distributed with respect to the fixed frame. A first rotating motor is installed on the side surface of the side plate by screws. A number of lifting rollers are provided on the side surface of the fixed frame. Both ends of the number of lifting rollers pass through the side surface of the fixed frame, and the number of lifting rollers are all rotatably connected to the fixed frame. The first rotating motor drives the lifting rollers to rotate.

4. The lifting and transverse conveying mechanism for a conveying line according to claim 3, characterized in that: A number of feet are provided at the bottom of the fixed frame, and the number of feet are all on the same horizontal plane.

5. The lifting and transverse conveying mechanism for a conveying line according to any one of claims 1-4, characterized in that: The transverse conveyor belt includes a positioning frame, a limiting plate, rotating rollers, and conveying rollers. The limiting plate is provided on the side surface of the positioning frame. The rotating rollers are provided between the positioning frame and the side plate. Both ends of the rotating rollers pass through the side surfaces of the positioning frame and the side plate respectively, and the rotating rollers are respectively rotatably connected to the positioning frame and the side plate. Both ends of the conveying rollers pass through the side surface of the positioning frame, and the conveying rollers are rotatably connected to the positioning frame. A fixing plate is provided at the bottom of the positioning frame. A second rotating motor is provided on the side surface of the fixing plate. The second rotating motor drives the rotating rollers to rotate.

6. The lifting and transverse conveying mechanism for a conveying line according to claim 5, characterized in that: A number of support feet are provided at the bottom of the positioning frame, and the number of support feet are all on the same horizontal plane.