Product separation auxiliary tool suitable for conveying process
By designing product separation auxiliary tooling suitable for the conveying process, the problem of space limitation of the robotic arm is solved, and the function of product diversion without space restriction and adaptation to conveyor belts of different assembly lines is realized, which expands the scope of use and reduces the impact force of product falling.
Patent Information
- Application Number
- CN202422738459.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-11
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-11-11
AI Technical Summary
In the prior art, robotic arms are easily restricted by space when used for product diversion, resulting in certain limitations in their scope of use.
A product diversion auxiliary tooling suitable for the conveying process is designed, including components such as supports, columns, sleeve columns, base plates, telescopic structures, rotating motors, concave plates, and slide structures. It can assist the assembly line conveyor belt in product diversion, and adjust the angle and height to adapt to different spaces through the rotating motor, slide structure, and telescopic structure.
It realizes product diversion without space restriction, expands the scope of use, and adapts to different assembly line conveyor belts by adjusting the inclination angle and height of the slide plate, slowing down the sliding speed of the product, reducing the impact force of falling, and improving the wide range of use and practicality.
Smart Images

Figure CN223356764U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of product conveying lane separation assistance, and specifically to a product lane separation assistance tooling suitable for a conveying process. Background Art
[0002] In logistics and processing companies, conveyor belt equipment is widely used for product transportation and processing. To achieve product diversion, automated mechanisms such as robotic arms and electric actuators are often used. These technologies increase the degree of automation of diversion.
[0003] However, since the current product diversion mainly uses robotic arms to grab and divert products, although the existing technology can achieve a certain degree of automation, the robotic arms occupy a large space, which makes them easily restricted in actual applications. As a result, the scope of use of the robotic arms has certain limitations. Therefore, a product diversion auxiliary tooling suitable for the conveying process is proposed to solve the above problems. Utility Model Content
[0004] In response to the shortcomings of the existing technology, the present application provides a product separation auxiliary tooling suitable for the conveying process, which has the advantages of not being restricted by space, and solves the problem of being easily restricted by space.
[0005] To achieve the above-mentioned objectives, the present application provides the following technical solutions: a product lane separation auxiliary tooling suitable for use in a conveying process, comprising a support, wherein upright posts are fixed to the four sides of the rear end of the support, sleeve posts are slidably connected to the outer surfaces of the upright posts, a bottom plate is fixed to the rear ends of the four sleeve posts, a telescopic structure is provided inside the bottom plate, and an auxiliary component is provided at the front end of the support;
[0006] The auxiliary component includes a concave plate, a conveying structure fixedly mounted on the inner side of the concave plate, a rotating block fixedly mounted on the rear wall of the concave plate, a rotating motor fixedly mounted on the rear end of the rotating block, two support rods fixedly mounted on the rear wall of the concave plate, and a slide structure fixedly mounted on the upper and lower ends and the left side of the support for assisting the product to slide down.
[0007] The above technical solution can assist the assembly line conveyor belt in product diversion, and the device is not limited by the size of the space, which causes the scope of use to be limited, making its scope of use relatively wide.
[0008] Furthermore, a hidden slot hole is provided on the front wall of the support for fixing the rotating motor inside the support.
[0009] By adopting the above technical solution, the rotating motor can be fixed on the support so that the concave plate can rotate on the support.
[0010] Furthermore, the front wall of the support is provided with an annular sliding groove for allowing the two support rods to slide inside the annular sliding groove, and the hidden slot is located on the inner side of the annular sliding groove.
[0011] By adopting the above technical solution, the supporting force of the rotating motor on the concave plate can be enhanced, and the stability of the concave plate 51 during the rotation process can be further enhanced, and the two support rods will not cause any obstruction to the rotating motor.
[0012] Furthermore, the slide structure includes three slides, three groups of support blocks, a buffer pad fixedly installed on the front wall of the inner cavity of the slide, and a threaded rotating rod fixedly installed inside the slide, and the outer surface of the threaded rotating rod is threadedly connected to two fastening nuts.
[0013] The above technical solution is adopted to assist the product in sliding down, and the inclination angle of the slide can be adjusted according to needs, thereby enhancing the use range of the slide.
[0014] Furthermore, the three groups of support blocks are respectively fixed to the upper and lower walls and the left side wall of the support, and the opposite sides of the two support blocks in the same group are each provided with a circular hole for allowing the threaded rotating rod to pass through the interior thereof.
[0015] By adopting the above technical solution, the threaded rotating rod rotates in the circular holes of the two support blocks in the same group so that it can be connected to the support, thereby enabling the skateboard to be rotatably connected to the support, and the threaded rotating rod can rotate in the circular holes of the support blocks so that the inclination angle of the skateboard can be adjusted.
[0016] Furthermore, the telescopic structure includes a screw rod connected to the internal threads of the four columns, the outer surfaces of the left and right screw rods are provided with a transmission structure, and the outer surfaces of the two right screw rods are fixed with single-row gears. The telescopic structure also includes a drive motor fixed to the right end of the rear wall of the inner cavity of the base plate, and the output end of the drive motor is fixed with a double-row gear, and the outer surface of the double-row gear is meshed with two chains.
[0017] By adopting the above technical solution, the height of the auxiliary component can be adjusted so as to adapt to assembly line conveyor belts of different heights, thereby expanding the scope of use.
[0018] Furthermore, the rear ends of the four columns are each provided with a threaded groove for a screw rod to be threadedly connected thereto, the sleeve is a rectangle with a hollow interior and missing front and rear ends, and the front wall of the base plate is provided with four connecting holes.
[0019] By adopting the above technical solution, the screw rod can pass through the bottom plate and extend into the sleeve column, which is convenient for connecting the screw rod with the column, and the screw rod can drive the column to move in or out of the sleeve column through the thread groove.
[0020] Furthermore, the other ends of the inner sides of the two chains away from the double-row gears are respectively meshed with the outer surfaces of the upper and lower single-row gears.
[0021] By adopting the above technical solution, the double-row gear can drive the upper and lower single-row gears to rotate through the two chains, so that the two single-row gears can drive the two right-side screw rods to rotate.
[0022] Compared with the existing technology, the technical solution of this application has the following beneficial effects:
[0023] The product separation auxiliary tooling suitable for the conveying process is equipped with auxiliary components to assist the assembly line conveyor belt in product separation. The device is not limited by the size of the space, which causes the phenomenon of limited scope of use, so that its scope of use is relatively wide. It can also slow down the sliding speed of the product to reduce the impact force of the product falling due to excessive sliding speed. The inclination angle of the slide plate can be adjusted according to needs, and the height of the auxiliary component can also be adjusted to adapt to assembly line conveyor belts of different heights, which can enhance the scope of use. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 This is a schematic diagram of the structure of this application;
[0025] Figure 2 This is a schematic diagram of the structure of the support and concave plate of this application;
[0026] Figure 3 This is a schematic diagram of the structure of the slide plate and the threaded rotating rod of this application;
[0027] Figure 4 This is a structural diagram for applying for a telescopic structure.
[0028] In the figure: 1. support; 2. column; 3. sleeve column; 4. bottom plate; 51. concave plate; 52. conveying structure; 53. rotating block; 54. rotating motor; 55. support rod; 56. slide plate; 57. buffer pad; 58. threaded rotating rod; 59. fastening nut; 510. support block; 511. screw rod; 512. transmission structure; 513. single-row gear; 514. driving motor; 515. double-row gear; 516. chain. DETAILED DESCRIPTION
[0029] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0030] See also Figures 1 to 4In this embodiment, a product separation auxiliary tooling suitable for the conveying process includes a support 1, and columns 2 are fixed on all sides of the rear end of the support 1. The outer surface of the column 2 is slidably connected with a sleeve column 3. The rear ends of the four sleeve columns 3 are fixed with a bottom plate 4. The bottom plate 4 is a frame plate and is hollow inside. A telescopic structure is provided inside the bottom plate 4, and an auxiliary component is provided at the front end of the support 1.
[0031] See also Figures 1 to 3 The auxiliary components in this embodiment include a concave plate 51, a conveying structure 52 fixedly mounted on the inner side of the concave plate 51, a rotating block 53 fixedly mounted on the rear wall of the concave plate 51, a rotating motor 54 fixedly mounted on the rear end of the rotating block 53, two support rods 55 fixedly mounted on the rear wall of the concave plate 51, and a slide structure fixedly mounted on the upper and lower ends and the left side of the support 1 for assisting the product to slide down.
[0032] Among them, the front wall of the support 1 is provided with a hidden slot hole for fixing the rotating motor 54 inside the support 1, so that the rotating motor 54 can be fixed inside the support 1 so that the concave plate 51 can rotate on the support 1 and the distance between the support 1 and the concave plate 51 can be shortened.
[0033] In addition, the front wall of the support 1 is provided with an annular groove for the two support rods 55 to slide inside, and the hidden slot is located inside the annular groove, which can enhance the supporting force of the rotating motor 54 on the concave plate 51.
[0034] See also Figure 1 and Figure 3 The slide structure in this embodiment includes three slides 56, three groups of support blocks 510, a buffer pad 57 fixedly installed on the front wall of the inner cavity of the slide 56, and a threaded rotating rod 58 fixedly installed inside the slide 56. The outer surface of the threaded rotating rod 58 is threadedly connected to two fastening nuts 59.
[0035] At the same time, the three groups of support blocks 510 are respectively fixed to the upper and lower walls and the left side wall of the support 1. The opposite sides of the two support blocks 510 in the same group are provided with circular holes for the threaded rotating rod 58 to pass through the interior. The threaded rotating rod 58 rotates in the circular holes of the two support blocks 510 in the same group so that it can be connected to the support 1, thereby enabling the slide plate 56 to be rotatably connected to the support 1, and the threaded rotating rod 58 can rotate in the circular holes of the support blocks 510 so that the inclination angle of the slide plate 56 can be adjusted.
[0036] In addition, fixing holes are provided on the left sides of the upper and lower slides 56 and on the upper end of the left slide 56, and the threaded rotating rod 58 can be fixed in the slide 56 through the fixing holes, so that the slide 56 can be rotatably connected to the support block 510 through the threaded rotating rod 58, and the slide 56 is concave in shape, which can block the product to prevent the product from sliding off the side of the slide 56.
[0037] See also Figure 4 The telescopic structure in this embodiment includes a screw rod 511 connected to the internal threads of the four columns 2, and a transmission structure 512 is provided on the outer surfaces of the left and right screw rods 511. A single row of gears 513 are fixed to the outer surfaces of the two right screw rods 511. The telescopic structure also includes a drive motor 514 fixed to the right end of the rear wall of the inner cavity of the bottom plate 4, and a double row of gears 515 are fixed to the output end of the drive motor 514. Two chains 516 are meshed on the outer surface of the double row of gears 515.
[0038] Secondly, the rear ends of the four columns 2 are provided with threaded grooves for the screw rods 511 to be threadedly connected thereto, so that the screw rods 511 can drive the columns 2 to move up and down through the threaded grooves. The sleeve column 3 is a rectangle with a hollow interior and missing front and rear ends, so that the columns 2 can move in or out of the sleeve column 3. The front wall of the base plate 4 is provided with four connecting holes, and the rear ends of the four screw rods 511 are rotatably connected to the rear wall of the inner cavity of the base plate 4 through bearings, so that the screw rods 511 can pass through the base plate 4 and extend into the sleeve column 3.
[0039] In addition, the other end of the inner side of the two chains 516 away from the double-row gear 515 is respectively engaged with the outer surface of the upper and lower single-row gears 513, so that the double-row gear 515 can drive the upper and lower single-row gears 513 to rotate through the two chains 516, so that the double-row gear 515 can drive the two right-side screw rods 511 to rotate through the two single-row gears 513, and the two right-side screw rods 511 drive the other side screw rods 511 to rotate through the two transmission structures 512.
[0040] It should be noted that the conveying structure 52, the transmission structure 512 and the electronic components appearing in the text are all commonly known to the public in the prior art, and the control method of this embodiment is controlled by a controller. The electrical components appearing in the text are all connected to the controller and the power supply. The control circuit of the controller can be implemented by simple programming by technicians in this field. The provision of power supply is also well known in the art, and the present invention is mainly used to protect mechanical manufacturing, so the present invention will no longer explain the control method and circuit connection in detail.
[0041] The working principle of the above embodiment is:
[0042] When in use, the output end of the rotating motor 54 drives the rotating block 53 to rotate, so that the rotating block 53 can drive the concave plate 51 to rotate on the support 1, thereby driving the conveying structure 52 to rotate, so as to change the conveying direction of the conveying structure 52, so that the finished products removed from the outlet end of the loss line conveyor belt can be moved to the profit conveying structure 52, and the conveying structure 52 conveys them to the slide plate 56 in the corresponding direction, thereby assisting the assembly line conveyor belt to perform product diversion, and the device is not limited by the size of the space, which causes the phenomenon of limited scope of use, so that its scope of use is relatively wide;
[0043] Furthermore, the product moving into the slide plate 56 can have its sliding speed slowed down by the cushion 57, thereby reducing the risk of damage to the product due to excessive sliding speed and the large impact of falling. By removing the two fastening nuts 59 from the outer surface of the threaded rotating rod 58, the threaded rotating rod 58 can be rotated within the two supporting blocks 510, thereby adjusting the inclination angle of the slide plate 56. After adjustment, the fastening nuts 59 are sleeved onto the outer surface of the threaded rotating rod 58 and abutted against the supporting blocks 510, thereby securing the slide plate 56 after the angle adjustment.
[0044] Moreover, the output end of the driving motor 514 drives the double-row gear 515 to rotate, so that the double-row gear 515 drives the two single-row gears 513 to rotate through the two chains 516, so that the two single-row gears 513 can drive the two right-side screw rods 511 to rotate, so that the two right-side screw rods 511 drive the two left-side screw rods 511 to rotate through the transmission structure 512, so that the two groups of screw rods 511 can rotate at the same time, so that the two groups of screw rods 511 can be threadedly connected with the thread groove of the column 2, so as to drive the column 2 to move in or out of the sleeve column 3, so that the four columns 2 can drive the support 1 to move upward, so that the position height of the concave plate 51 and the conveying structure 52 can be adjusted, so that the height of the auxiliary components can be adjusted, so as to adapt to assembly line conveyor belts of different heights, so as to enhance the scope of use and practicality.
Claims
1. A product lane-dividing auxiliary tooling suitable for a conveying process, comprising a support (1), characterized in that: The rear end of the support (1) is fixed with columns (2) all around, the outer surface of the columns (2) is slidably connected with sleeve columns (3), the rear ends of the four sleeve columns (3) are fixed with base plates (4), the interior of the base plates (4) is provided with a telescopic structure, and the front end of the support (1) is provided with an auxiliary component; The auxiliary component comprises a concave plate (51), a conveying structure (52) fixedly mounted on the inner side of the concave plate (51), a rotating block (53) fixedly mounted on the rear wall of the concave plate (51), a rotating motor (54) fixedly mounted on the rear end of the rotating block (53), two support rods (55) fixedly mounted on the rear wall of the concave plate (51), and a slideway structure fixedly mounted on the upper and lower ends and the left side of the support (1) for assisting the product to slide down.
2. The product lane separation auxiliary tooling suitable for the conveying process according to claim 1, characterized in that: The front wall of the support (1) is provided with a hidden slot hole for the rotating motor (54) to be fixed inside the support (1).
3. The product lane separation auxiliary tooling suitable for the conveying process according to claim 2, characterized in that: The front wall of the support (1) is provided with an annular sliding groove for allowing two support rods (55) to slide inside the annular sliding groove, and the hidden slot hole is located on the inner side of the annular sliding groove.
4. The product lane separation auxiliary tooling suitable for the conveying process according to claim 1 is characterized by: The slideway structure comprises three slides (56), three groups of support blocks (510), a buffer pad (57) fixedly mounted on the front wall of the inner cavity of the slide (56), and a threaded rotating rod (58) fixedly mounted inside the slide (56), wherein the outer surface of the threaded rotating rod (58) is threadedly connected to two fastening nuts (59).
5. The product lane separation auxiliary tooling suitable for the conveying process according to claim 4, characterized in that: The three groups of support blocks (510) are respectively fixed to the upper and lower walls and the left side wall of the support (1), and the two support blocks (510) in the same group are provided with a circular hole on the opposite side for the threaded rotating rod (58) to pass through the inside.
6. The product lane separation auxiliary tooling suitable for the conveying process according to claim 1, characterized in that: The telescopic structure includes a screw rod (511) connected to the internal threads of the four columns (2), the outer surfaces of the left and right screw rods (511) are provided with a transmission structure (512), and the outer surfaces of the two right screw rods (511) are fixed with a single row of gears (513). The telescopic structure also includes a driving motor (514) fixed to the right end of the rear wall of the inner cavity of the bottom plate (4), and a double row of gears (515) is fixed to the output end of the driving motor (514), and the outer surface of the double row of gears (515) is meshed with two chains (516).
7. The product lane separation auxiliary tooling suitable for the conveying process according to claim 6, characterized in that: The rear ends of the four uprights (2) are each provided with a threaded groove for a screw rod (511) to be threadedly connected thereto. The sleeve (3) is a rectangle with a hollow interior and missing front and rear ends. The front wall of the base plate (4) is provided with four communicating holes.
8. The product lane separation auxiliary tooling suitable for the conveying process according to claim 6, characterized in that: The other ends of the inner sides of the two chains (516) away from the double-row gears (515) are respectively engaged with the outer surfaces of the upper and lower single-row gears (513).