Horizontal transportation equipment suitable for medium-high altitude humidity area
By designing a combined structure of slider, guide rod and spring, the problem of material falling in belt conveyors in medium and high altitude humidity areas was solved, and the safe and smooth transportation of materials was achieved.
Patent Information
- Application Number
- CN202423132173.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-12-18
AI Technical Summary
When using belt conveyors in high-altitude and high-humidity areas, materials may fall from both sides during the conveying process, resulting in incomplete conveying.
A horizontal transport device was designed, comprising a conveying component, a self-aligning component, a pushing component, a buffer component, and a blocking component. Through the cooperation of sliders, guide rods, limit holes, and springs, it can block off-center materials and absorb impact forces, ensuring smooth material transport.
It effectively prevents materials from falling from both sides of the conveying device, absorbs the impact force during the conveying process, and ensures the safe and smooth transport of materials.
Smart Images

Figure CN223479992U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of transportation equipment technology, specifically relating to a horizontal transportation device suitable for medium- and high-altitude humidity areas. Background Technology
[0002] For horizontal transport in medium- to high-altitude and humid regions, belt conveyors are an excellent choice. They can transport large quantities of bulk materials continuously and efficiently, and the appropriate type of conveyor belt can be selected based on the characteristics of the material (such as particle size and humidity).
[0003] However, in the current equipment, materials may fall off the sides during the conveying process, preventing complete material transport. Therefore, a horizontal transport device suitable for medium- and high-altitude humidity areas is needed to solve this problem. Utility Model Content
[0004] The purpose of this invention is to provide a horizontal transportation device suitable for medium- and high-altitude humidity areas, in order to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a horizontal transport device suitable for medium-to-high altitude and humidity areas, comprising a conveying assembly, a self-aligning assembly, a pushing assembly, a buffer assembly, and a blocking assembly. The conveying assembly includes a conveying frame with several limiting holes and several sliding holes inside. The self-aligning assembly includes a fixed idler roller, a rotating frame, and a movable idler roller. The rotating frame is hinged to the conveying frame via a pin, and the movable idler roller is rotatably connected within the rotating frame. The pushing assembly includes a first rotating rod, one end of which is hinged to the bottom of the rotating frame via a pin. The other end of the rotating rod is hinged to the slider via a pin. A guide rod is slidably connected inside the slider. The guide rod is connected to the limiting hole. The buffer assembly includes a first spring and a second spring. Both the first spring and the second spring are sleeved outside the guide rod. The two ends of the first spring and the second spring are respectively connected to the slider and the limiting hole. The blocking assembly includes a second rotating rod. One end of the second rotating rod is hinged to the slider via a pin. The other end of the second rotating rod is hinged to a stop rod via a pin. The stop rod is slidably connected inside the sliding hole. A conveyor belt overlaps with several fixed idlers and several moving idlers.
[0006] By setting up the above structure, the rotating conveyor belt can drive the raw material to be transported. During the transport process, the raw material may deviate, and the deviated raw material may squeeze the moving idlers on both sides. The squeezed moving idlers drive the slider to slide in the limiting hole through the first rotating rod. The sliding slider slides outside the guide rod. The moving slider compresses the first spring and stretches the second spring. At the same time, the moving slider pushes the stop bar upward through the second rotating rod. The upward moving stop bar can block the raw material that may slide off the conveyor belt, so that the raw material will not fall from both sides of the conveying device. At the same time, the deformed first spring and second spring can absorb the impact force generated during the transport of the raw material, so that the raw material can be transported smoothly and safely.
[0007] As a preferred option, several fixed idlers are rotatably connected to the middle position of the conveyor frame.
[0008] As a preferred embodiment, the number of the rotating frame and the moving idler roller is twice that of the fixed idler roller.
[0009] By setting up moving idlers and fixed idlers, and because the two moving idlers can rotate, the self-aligning structure, which allows the two moving idlers and one fixed idler to cooperate and communicate with each other, can perform self-aligning operations on raw materials of different sizes.
[0010] As a preferred embodiment, both the first spring and the second spring are disposed within the limiting hole, and the slider is disposed between the first spring and the second spring.
[0011] As a preferred embodiment, the cross-sectional shape of the stop bar is rectangular, and the shape of the sliding hole is rectangular.
[0012] As a preferred embodiment, the fixed idler roller is positioned between the two movable idler rollers, and the two movable idler rollers are positioned between the two stop bars.
[0013] By setting a sliding hole and a stop bar, the stop bar is slidably connected in the sliding hole, and the sliding hole can limit the stop bar so that the stop bar will not wobble when it moves, and the stop bar can move smoothly in the sliding hole under the action of external force.
[0014] As a preferred embodiment, the slider is slidably connected within the limiting hole.
[0015] By incorporating a guide rod, a slider, and a limiting hole, the limiting hole and the guide rod work together to provide double limiting for the slider, allowing the slider to move smoothly along the axial direction of the guide rod under the action of external force.
[0016] Compared with the prior art, the beneficial effects of this utility model are:
[0017] In this invention, a rotating conveyor belt can transport raw materials. During the transport process, the raw materials may deviate, potentially squeezing the moving rollers on both sides. The squeezed moving rollers drive a slider to slide within a limiting hole via a first rotating rod. The sliding slider slides outside a guide rod, compressing a first spring and stretching a second spring. Simultaneously, the moving slider pushes a stop bar upward via a second rotating rod. The upward-moving stop bar can block the raw materials that may slide off the conveyor belt, preventing them from falling from the sides of the conveying device. The deformed first and second springs can absorb the impact force generated during the transport process, ensuring that the raw materials are transported smoothly and safely.
[0018] This utility model, by providing a guide rod, a slider, and a limiting hole, allows the slider to be doubly limited by the cooperation of the limiting hole and the guide rod, so that the slider can move smoothly along the axial direction of the guide rod under the action of external force. Attached Figure Description
[0019] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0020] Figure 2 This is a partial three-dimensional structural diagram of the present invention;
[0021] Figure 3 This is a partial three-dimensional cross-sectional structural diagram of the present invention.
[0022] In the diagram: 1. Conveying assembly; 11. Conveying frame; 12. Limiting hole; 13. Sliding hole; 2. Self-aligning assembly; 21. Fixed idler roller; 22. Rotating frame; 23. Moving idler roller; 3. Pushing assembly; 31. First rotating rod; 32. Sliding block; 33. Guide rod; 4. Buffer assembly; 41. First spring; 42. Second spring; 5. Blocking assembly; 51. Second rotating rod; 52. Stop bar; 6. Conveyor belt. Detailed Implementation
[0023] The present invention will be further described below with reference to the embodiments.
[0024] The following embodiments are used to illustrate the present invention, but should not be used to limit the scope of protection of the present invention. The conditions in the embodiments can be further adjusted according to specific conditions, and simple improvements to the method of the present invention under the premise of the concept of the present invention are all within the scope of protection claimed by the present invention.
[0025] Please see Figure 1-3This utility model provides a horizontal transport device suitable for medium-to-high altitude and humidity areas, including a conveying assembly 1, a self-aligning assembly 2, a pushing assembly 3, a buffer assembly 4, and a blocking assembly 5. The conveying assembly 1 includes a conveying frame 11, which has several limiting holes 12 and several sliding holes 13. The self-aligning assembly 2 includes fixed idlers 21, a rotating frame 22, and movable idlers 23. Several fixed idlers 21 are rotatably connected to the middle position of the conveying frame 11. The number of rotating frames 22 and movable idlers 23 is twice that of the fixed idlers 21. The rotating frame 22 is hinged to the conveying frame 11 by a pin, and the movable idlers 23 are rotatably connected inside the rotating frame 22. The pushing assembly 3 includes a first rotating rod 31, one end of which is hinged to the bottom of the rotating frame 22 by a pin, and the other end of which is hinged to a slider 32 by a pin. A guide rod 33 is slidably connected inside the slider 32 and is connected to the limiting holes 12. The buffer assembly 4 includes a first spring 41 and a second spring. 42. The first spring 41 and the second spring 42 are both sleeved on the outside of the guide rod 33. The two ends of the first spring 41 and the second spring 42 are respectively connected to the slider 32 and the limiting hole 12. The first spring 41 and the second spring 42 are both disposed in the limiting hole 12. The slider 32 is disposed between the first spring 41 and the second spring 42. The blocking assembly 5 includes a second rotating rod 51. One end of the second rotating rod 51 is hinged to the slider 32 by a pin, and the other end of the second rotating rod 51 is connected to the stop rod 5 by a pin. 2. The stop rod 52 is slidably connected in the sliding hole 13. Several fixed rollers and several moving rollers 23 are connected to the conveyor belt 6. The cross-sectional shape of the stop rod 52 is set to rectangular, and the shape of the sliding hole 13 is set to rectangular. By setting the sliding hole 13 and the stop rod 52, since the stop rod 52 is slidably connected in the sliding hole 13, the sliding hole 13 can limit the stop rod 52, so that the stop rod 52 will not shake when it moves, and the stop rod 52 can move smoothly in the sliding hole 13 under the action of external force.
[0026] The fixed idler roller 21 is located between the two movable idler rollers 23, and the two movable idler rollers 23 are located between the two stop bars 52. By setting the movable idler rollers 23 and the fixed idler rollers 21, since the two movable idler rollers 23 can rotate, the self-aligning structure of the two movable idler rollers 23 and the fixed idler roller 21 can perform self-aligning operations on raw materials of different sizes.
[0027] The slider 32 is slidably connected in the limiting hole 12. With the guide rod 33, slider 32 and limiting hole 12 provided, the limiting hole 12 and guide rod 33 cooperate with each other to doubly limit the slider 32, so that the slider 32 can move smoothly along the axial direction of guide rod 33 under the action of external force.
[0028] The working principle and usage process of this utility model are as follows: When the device is used to transport construction materials for a new energy project, the device is controlled to operate. The rotating conveyor belt 6 can drive the materials to be transported. During the transport process, the materials may deviate, and the deviated materials may squeeze the moving rollers 23 on both sides. The squeezed moving rollers 23 drive the slider 32 to slide within the limiting hole 12 through the first rotating rod 31. The sliding slider 32 slides outside the guide rod 33. The moving slider 32 compresses the first spring 41 and stretches the second spring 42. At the same time, the moving slider 32 pushes the stop rod 52 upward through the second rotating rod 51. The upward-moving stop rod 52 can block the materials that may slide off the conveyor belt 6, so that the materials will not fall from both sides of the conveying device. At the same time, the deformed first spring 41 and second spring 42 can absorb the impact force generated during the material transport process, so that the materials can be transported smoothly.
[0029] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A horizontal transport device suitable for medium-to-high altitude and humidity areas, comprising a conveying assembly (1), a self-aligning assembly (2), a pushing assembly (3), a buffer assembly (4), and a blocking assembly (5), characterized in that: The conveying assembly (1) includes a conveying frame (11), which has several limiting holes (12) and several sliding holes (13). The self-aligning assembly (2) includes a fixed idler roller (21), a rotating frame (22) and a moving idler roller (23). The rotating frame (22) is hinged to the conveying frame (11) by a pin, and the moving idler roller (23) is rotatably connected inside the rotating frame (22). The pushing assembly (3) includes a first rotating rod (31), one end of which is hinged to the bottom of the rotating frame (22) by a pin, and the other end of which is hinged to a slider (32) by a pin. A guide rod (33) is slidably connected inside the slider (32). The buffer assembly (4) is connected in the limiting hole (12). The buffer assembly (4) includes a first spring (41) and a second spring (42). The first spring (41) and the second spring (42) are both sleeved on the outside of the guide rod (33). The two ends of the first spring (41) and the second spring (42) are respectively connected to the slider (32) and the limiting hole (12). The blocking assembly (5) includes a second rotating rod (51). One end of the second rotating rod (51) is hinged to the slider (32) through a pin. The other end of the second rotating rod (51) is hinged to the stop rod (52) through a pin. The stop rod (52) is slidably connected in the sliding hole (13). A conveyor belt (6) overlaps the outside of several fixed rollers and several moving rollers (23).
2. The horizontal transport equipment suitable for medium-to-high altitude and humidity areas according to claim 1, characterized in that: Several fixed rollers (21) are rotatably connected to the middle position of the conveyor frame (11).
3. A horizontal transport device suitable for medium-to-high altitude and humidity areas according to claim 1, characterized in that: The number of rotating frames (22) and moving rollers (23) is twice that of fixed rollers (21).
4. A horizontal transport device suitable for medium-to-high altitude and humidity areas according to claim 1, characterized in that: The first spring (41) and the second spring (42) are both located inside the limiting hole (12), and the slider (32) is located between the first spring (41) and the second spring (42).
5. A horizontal transport device suitable for medium-to-high altitude and humidity areas according to claim 1, characterized in that: The cross-sectional shape of the stop bar (52) is rectangular, and the shape of the sliding hole (13) is rectangular.
6. A horizontal transport device suitable for medium-to-high altitude and humidity areas according to claim 1, characterized in that: The fixed idler (21) is located between the two movable idlers (23), and the two movable idlers (23) are located between the two stop bars (52).
7. A horizontal transport device suitable for medium-to-high altitude and humidity areas according to claim 1, characterized in that: The slider (32) is slidably connected in the limiting hole (12).