HPK chain plate conveying system capable of uniformly feeding alternative fuel and preventing material returning

By introducing support components and clamping components into the chain plate conveying system, the problems of unstable chain plate conveying system and object drop are solved, stable conveying and efficient clamping are achieved, and the system usage effect is improved.

CN223213109UActive Publication Date: 2025-08-12SHANDONG HAIYIN NEW ENVIRONMENTAL TECH CO LTD
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Patent Information

Application Number
CN202422322371.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-24
Publication Date
2025-08-12
Estimated Expiration
2034-09-24

AI Technical Summary

Technical Problem

The existing chain plate conveying system is unstable during operation and is prone to offset due to pushing or impact. The object is easily dropped during the conveying process, which cannot meet the needs of use.

Method used

The design of support and clamping assembly is adopted. The support assembly is stably placed in the conveyor body through friction layers and support structures. The clamping assembly stably clamps the object through springs and limiting blocks, and precise adjustment is achieved in combination with bevel gears and threaded rods.

Benefits of technology

It improves the stability of the conveying system, prevents offset and fall, improves the conveying efficiency, and meets the needs of staff.

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Abstract

The utility model provides an alternative fuel uniform feeding anti-material-returning HPK chain plate conveying system which comprises a conveying main body, a chain plate conveying assembly, a chain plate conveying assembly, a chain plate conveying assembly and a chain plate conveying assembly, and the conveying main body is provided with a group of clamping assemblies; the two supporting assemblies are symmetrical to each other; the supporting assembly comprises a supporting block fixedly installed on the lower end face of the conveying body, two symmetrical supporting structures are installed on the supporting block, each supporting structure comprises a rotating opening formed in the side wall of the supporting block, a rotating rod is rotationally connected into the rotating opening, a rotating block is fixedly connected to the rotating rod, and the rotating block is fixedly connected to the supporting block. A sliding opening is formed in the rotating block, a supporting column is slidably connected into the sliding opening, and one end of the supporting column is in threaded connection with a threaded rod. According to the conveying device, the conveying device can be placed more stably, the conveying device is prevented from deviating under the conditions of pushing and the like, meanwhile, objects placed on the conveying device can be clamped, and workers can take the objects conveniently.
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Description

Technical Field

[0001] The utility model relates to the technical field of chain plate conveying, in particular to an HPK chain plate conveying system for uniformly feeding and preventing backflow of alternative fuels. Background Art

[0002] Chain conveyor is a transmission device that uses standard chain plates as the bearing surface and is powered by a motor reducer. Chain conveyor is composed of a power unit, drive shaft, roller, tensioning device, sprocket, chain, bearing, lubricant, chain plate, etc. The two main parts that drive the transportation of materials are: chain, which uses its cyclic reciprocating motion to provide traction power; metal plate, which serves as the carrier during the transportation process.

[0003] The existing chain conveyor system is not stable after placement. During operation, the main body is often offset due to the push of staff or other factors, thereby affecting the conveying effect of the conveying system. At the same time, when the conveying system is conveying objects, the objects are placed directly on the conveyor plate and are not stably placed, which may cause them to fall, and cannot meet the use needs of staff. Utility Model Content

[0004] In view of the deficiencies in the prior art, the utility model provides an HPK chain plate conveying system with uniform feeding and anti-reverse material of an alternative fuel.

[0005] The embodiment of the utility model provides an alternative fuel uniform feeding and backflow prevention HPK chain plate conveying system, comprising:

[0006] A conveying body, on which a set of clamping components is installed;

[0007] Two mutually symmetrical support assemblies; the support assembly includes a support block fixedly mounted on the lower end surface of the conveying main body, and two mutually symmetrical support structures are installed on the support block, and the support structure includes a rotating opening opened on the side wall of the support block, a rotating rod is rotatably connected in the rotating opening, the rotating rod is fixedly connected to the rotating block, a sliding opening is opened on the rotating block, and a support column is slidably connected in the sliding opening, one end of the support column is threadedly connected to a threaded rod, and the other end of the threaded rod is rotatably connected in the sliding opening, a bevel gear 1 is fixedly mounted on the threaded rod, a rotating rod is rotatably passed through the rotating block, and a bevel gear 2 is fixedly mounted on one end of the rotating rod, and the bevel gear 1 is meshed with the bevel gear 2.

[0008] Furthermore, the clamping assembly includes two mutually symmetrical fixed blocks installed on the conveying main body, and a stabilizing block is fixedly installed between the two fixed blocks, a circular groove is opened on the stabilizing block, and two mutually symmetrical sliders are slidably connected in the circular groove, and two mutually symmetrical slide grooves are opened on the stabilizing block, and the two ends of the two sliders are respectively slidably connected in the two slide grooves, and the two fixed blocks are each opened with a notch, and the two notches are slidably connected with a sliding rod, one end of the two sliding rods is respectively slidably connected to the two sliders, and the outer walls of the two sliding rods are respectively provided with a spring, one end of the two springs is respectively fixedly connected to the two sliders, and the other ends of the two springs are respectively fixedly connected to the two fixed blocks, a platform is installed on the conveying main body, and a limiting block is installed on one end of the two sliders.

[0009] Furthermore, friction layers are installed on the lower end surfaces of the two support blocks.

[0010] Furthermore, a knob is installed at one end of the rotating rod.

[0011] Furthermore, the lower ends of the four support columns are all equipped with feet.

[0012] Furthermore, a protective layer is installed between the two limiting blocks.

[0013] Compared with the prior art, the present invention has the following beneficial effects:

[0014] The staff of the utility model can place the conveying body more stably through the support component, so that it will not be offset due to pushing, collision, etc. during work, affecting the conveying efficiency. At the same time, the objects on the conveying body can be stably placed and clamped through the clamping component, so that the objects will not fall due to external influences, meeting the use needs of the staff. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a schematic diagram of the three-dimensional structure of an HPK chain conveying system for uniformly feeding and preventing backflow of alternative fuels described in an embodiment of the present utility model.

[0016] Figure 2 This is a three-dimensional structural cross-sectional view of the support assembly of an HPK chain plate conveying system for uniformly feeding and preventing backflow of alternative fuels described in an embodiment of the present utility model.

[0017] Figure 3 This is a three-dimensional structural cross-sectional view of a clamping assembly of an HPK chain conveying system for uniformly feeding and preventing backflow of alternative fuels described in an embodiment of the present utility model.

[0018] In the above drawings: 1 conveying body, 2 support block, 3 rotating mouth, 4 rotating rod, 5 rotating block, 6 sliding mouth, 7 supporting column, 8 threaded rod, 9 bevel gear 1, 10 rotating rod, 11 bevel gear 2, 12 fixed block, 13 stabilizing block, 14 circular groove, 15 slider, 16 slide groove, 17 notch, 18 slide rod, 19 spring, 20 platform, 21 limiting block, 22 pad. DETAILED DESCRIPTION

[0019] The technical solution of the present invention is further described below with reference to the accompanying drawings and embodiments.

[0020] like Figure 1-Figure 3 As shown, the embodiment of the utility model proposes an alternative fuel uniform feeding and anti-reverse material HPK chain plate conveying system, comprising:

[0021] The conveying body 1 is provided with a set of clamping components, which include two symmetrical fixed blocks 12 mounted on the conveying body 1, a stabilizing block 13 fixedly mounted between the two fixed blocks 12, a circular groove 14 is provided on the stabilizing block 13, two symmetrical sliders 15 are slidably connected in the circular groove 14, and two symmetrical slides 16 are provided on the stabilizing block 13. The two ends of the two sliders 15 are respectively slidably connected in the two slides 16. Through the above structure, when the slider 15 slides in the circular groove 14, it is also restricted by the two slides 16, so the slider 1 5 can stably slide in the circular groove 14 and the slide groove 16 without shaking. The fixed block 12 is provided with a notch 17. The two notches 17 are slidably connected with a slide rod 18. One end of the two slide rods 18 is slidably connected to the two sliders 15. The outer walls of the two slide rods 18 are sleeved with a spring 19. The slide rod 18 can prevent the spring 19 from bending upward when being squeezed. The slide rod 18 acts as a limit. One end of the two springs 19 is fixedly connected to the two sliders 15, and the other end of the two springs 19 is fixedly connected to the two fixed blocks 12.

[0022] A platform 20 is installed on the conveying body 1, and a limiting block 21 is installed on one end of the two sliders 15. Through the above structure, when an object is placed on the platform 20, the two limiting blocks 21 will be pushed to move backward, and under the rebound and reset action of the spring 19, the limiting blocks 21 will be pushed back and the object will be clamped stably. A protective layer is installed between the two limiting blocks 21. The protective effect of the protective layer can reduce the clamping friction of the object by the limiting blocks 21, thereby ensuring that the quality of the object is not damaged. Two mutually symmetrical supporting components, the supporting component includes a supporting block 2 fixedly installed on the lower end surface of the conveying body 1, and friction layers are installed on the lower end surfaces of the two supporting blocks 2. The friction effect of the friction layer can make the supporting block 2 more stably placed in the specified position, and two mutually symmetrical supporting structures are installed on the supporting block 2. The supporting structure includes a rotating mouth 3 opened on the side wall of the supporting block 2, and a rotating rod 4 is rotatably connected in the rotating mouth 3. The rotating block 5 is fixedly connected to the rotating rod 4, and a sliding mouth 6 is opened on the rotating block 5. A support column 7 is slidably connected in the sliding mouth 6;

[0023] The lower ends of the four support columns 7 are all equipped with pads 22. Through the stable support of the four pads 22, the device will not be offset when the staff accidentally pushes or collides during work, thereby ensuring the transportation efficiency. One end of the support column 7 is threadedly connected to a threaded rod 8, and the other end of the threaded rod 8 is rotatably connected to the slide 6. A bevel gear 9 is fixedly installed on the threaded rod 8. A rotating rod 10 is rotatably passed through the rotating block 5. There is a friction limiter between the rotating block 5 and the rotating rod 10. Therefore, after the rotation is completed, there will be no self-rotation. The rotating rod A knob is installed at one end of 10. By rotating the knob, the staff can easily rotate the rotating rod 10, thereby driving the bevel gear 2 11 to rotate. Bevel gear 2 11 is fixedly installed at one end of the rotating rod 10, and bevel gear 1 9 is engaged with bevel gear 2 11. Through the above structure, when the knob is rotated, the rotating rod 10 will be driven to rotate, thereby driving the bevel gear 2 11 to rotate, and causing the bevel gear 1 9 engaged therewith to rotate, thereby driving the threaded rod 8 to rotate, so that the support column 7 threadedly connected thereto slides in the sliding mouth 6, thereby completing the adjustment of the support column 7.

[0024] The detailed working process of this utility model is as follows:

[0025] The staff first places the device in the specified position through the support block 2 on the conveying body 1. The friction layer on the support block 2 completes the initial stabilization of the conveying body 1. Then the staff rotates the rotating rod 4 to drive the rotating block 5 to rotate and rotate to the specified angle. At this time, the staff can rotate the knob to drive the rotating rod 10 to rotate, and make the bevel gear 2 11 fixed on the rotating rod 10 rotate, drive the bevel gear 1 9 to rotate, thereby making the threaded rod 8 rotate and drive the support column 7 to adjust its position in the slide 6 until the pad 22 is close to the placement surface. Repeat the above operation to make all four pads 22 close to the placement surface, completing the stable support of the conveying body 1. Then the staff opens the conveying body 1 and places the object on the platform 20. The object squeezes the limiting block 21 and pushes it back, and the object is restricted under the rebound of the spring 19, and it is convenient for the staff to take it out, meeting the staff's use needs.

[0026] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of the utility model and are not limiting. Although the utility model is described in detail with reference to the preferred embodiments, ordinary technicians in this field should understand that the technical solution of the utility model can be modified or replaced by equivalents without departing from the purpose and scope of the technical solution of the utility model, which should be included in the scope of the claims of the utility model.

Claims

1. An alternative fuel uniform feeding and anti-return HPK chain conveying system, characterized by: include: A conveying body (1), wherein a group of clamping components are installed on the conveying body (1); Two mutually symmetrical support components; the support component comprises a support block (2) fixedly mounted on the conveying body (1), two mutually symmetrical support structures are mounted on the support block (2), the support structure comprises a rotating opening (3) opened on the side wall of the support block (2), a rotating rod (4) is rotatably connected in the rotating opening (3), a rotating block (5) is fixedly connected on the rotating rod (4), a sliding opening (6) is opened on the rotating block (5), a support column (7) is slidably connected in the sliding opening (6), one end of the support column (7) is threadedly connected to a threaded rod (8), the other end of the threaded rod (8) is rotatably connected in the sliding opening (6), a bevel gear 1 (9) is fixedly mounted on the threaded rod (8), a rotating rod (10) is rotatably passed through the rotating block (5), and a bevel gear 2 (11) is fixedly mounted on one end of the rotating rod (10).

2. The HPK chain conveyor system for uniformly feeding and preventing backflow of alternative fuels according to claim 1 is characterized in that: in: The clamping assembly comprises two mutually symmetrical fixed blocks (12) mounted on the conveying body (1), a stabilizing block (13) is fixedly mounted between the two fixed blocks (12), a circular groove (14) is provided on the stabilizing block (13), two mutually symmetrical sliders (15) are slidably connected in the circular groove (14), the stabilizing block (13) is provided with two mutually symmetrical sliding grooves (16), the two ends of the two sliders (15) are respectively slidably connected in the two sliding grooves (16), and the two fixed blocks (12) are both provided with notches (17). The two notches (17) are both slidably connected with a slide rod (18), one end of the two slide rods (18) is respectively slidably connected to the two sliders (15), the outer walls of the two slide rods (18) are both sleeved with a spring (19), one end of the two springs (19) is respectively fixedly connected to the two sliders (15), the other end of the two springs (19) is respectively fixedly connected to the two fixed blocks (12), a platform (20) is installed on the conveying body (1), and a limiting block (21) is installed on one end of the two sliders (15).

3. The HPK chain conveyor system for uniformly feeding and preventing backflow of alternative fuels according to claim 1 is characterized in that: in: A friction layer is installed on both of the support blocks (2).

4. The HPK chain conveyor system for uniformly feeding and preventing backflow of alternative fuels according to claim 1 is characterized in that: in: One end of the rotating rod (10) is provided with a knob.

5. The HPK chain conveyor system for uniformly feeding and preventing backflow of alternative fuels according to claim 1 is characterized in that: in: The lower ends of the four support columns (7) are all provided with pads (22).

6. The HPK chain conveyor system for uniformly feeding and preventing backflow of alternative fuels according to claim 2 is characterized in that: in: A protective layer is installed between the two limiting blocks (21).