A conveyor platform equipped with a self-feeding device

By integrating a self-feeding device, including a main feeding rack and electrical control components, into the conveying platform, the problem of low efficiency of manual feeding is solved, and the effects of automated feeding and expanded conveying range are achieved.

CN120736201BActive Publication Date: 2025-10-31JIANGSU ZEBONE SMARTCITY INFORMATION SYST
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Patent Information

Application Number
CN202511269377.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-08
Publication Date
2025-10-31
Estimated Expiration
2045-09-08

AI Technical Summary

Technical Problem

Existing conveying platforms require manual operation for material feeding, resulting in low conveying efficiency and limited functionality.

Method used

A conveying platform with a self-feeding device was designed, including a main feeding rack, an electrically controlled tilting side guiding platform, an electrically controlled feeding back plate, and a side-mounted feeding arm, etc., to realize automated feeding and conveying.

Benefits of technology

It achieves automatic feeding without manual operation, improves conveying efficiency and functionality, expands the conveying range, and enhances the flexibility and sealing of material conveying.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of conveying and guiding technology, and in particular to a conveying platform equipped with a self-feeding device. The platform includes a main feeding rack, with a horizontally positioned central conveying platform movably mounted inside the main feeding rack. Electrically controlled tilting lateral guiding platforms, which cooperate with the horizontally positioned central conveying platform, are movably mounted on both sides of the main feeding rack. This invention integrates a self-feeding device into the main feeding rack, allowing for more efficient use of internal space by directly feeding materials within the rack. An electrically controlled feeding backplate is installed inside the main feeding rack, enabling rapid loading and unloading of materials onto the horizontally positioned central conveying platform without manual intervention, significantly improving feeding and conveying efficiency. Side-mounted feeding arms are installed on the inner wall of the upper storage box, allowing for rapid control of internal material guidance, further enhancing internal conveying efficiency.
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Description

Technical Field

[0001] This invention relates to the field of material conveying technology, and in particular to a conveying platform equipped with a self-feeding device. Background Technology

[0002] Conveying platforms are primarily used for the efficient and continuous handling and transmission of goods, improving logistics efficiency and reducing labor costs. They are conveying devices used to transport bulk materials or lightweight items such as cartons and bags, achieving material transfer through the continuous or intermittent movement of a conveyor belt. Suitable for various production and processing scenarios, they feature smooth conveying, low noise, simple structure, and low energy consumption.

[0003] Current conveying platforms can only be set up independently and cannot self-feed during the conveying process, requiring manual operation, which results in low conveying efficiency and limited functionality. Summary of the Invention

[0004] The technical problem that this invention aims to solve is that current conveying platforms can only be set up independently, and the material supply during the conveying process requires manual operation, resulting in low conveying efficiency and limited functionality.

[0005] The technical solution adopted by the present invention to solve its technical problem is: a conveying platform with a self-feeding device, including a main feeding rack, a horizontal central conveying platform movably assembled inside the main feeding rack, electrically controlled flip-type lateral guiding platforms movably assembled on both sides of the main feeding rack to cooperate with the horizontal central conveying platform, a bottom pull-out storage box installed inside the main feeding rack below the horizontal central conveying platform, an upper storage box installed inside the main feeding rack above the horizontal central conveying platform, an electrically controlled feeding back plate provided inside the main feeding rack, a side feeding arm installed on the inner wall of the upper storage box, and an electrically controlled feeding plate installed inside the main feeding rack at the front end of the horizontal central conveying platform.

[0006] The main feeding rack has outwardly protruding lateral assembly frames fixed on both sides of the horizontally placed central conveyor platform.

[0007] The electrically controlled tilting lateral guide platform includes a tilting adjustment frame movably mounted inside the lateral assembly frame, an electrically controlled conveyor belt mounted inside the tilting adjustment frame, and side-mounted electrically controlled support rods mounted on both sides of the main feeding rack.

[0008] The electrically controlled feeding back panel includes a longitudinal back panel, a wall-mounted conveyor belt installed on the longitudinal back panel, and a built-in telescopic support rod fixed on the main feeding rack.

[0009] The longitudinal back plate has a longitudinal transmission chamber that cooperates with the wall-mounted conveyor belt.

[0010] The inner wall of the upper storage box is symmetrically equipped with electrically controlled translation rails that cooperate with the side-mounted feeding arm.

[0011] The electrically controlled translation guide rails are all composed of embedded guide rails and electrically controlled translation lead screws installed inside the embedded guide rails.

[0012] The wall-mounted conveyor belt is elastically fitted with an outer support frame.

[0013] The side-mounted feeding arm includes an internal threaded translation block threaded onto an electrically controlled translation screw, an external assembly plate fixed to the outer surface of the internal threaded translation block, and an electrically controlled tilting arm with its shaft mounted on the outer surface of the external assembly plate.

[0014] The main feeding rack is equipped with an embedded lifting rod fixedly mounted above the horizontal central conveyor platform.

[0015] The beneficial effects of this invention are:

[0016] (1) The conveying platform with a self-feeding device of the present invention is integrated inside the main feeding rack. By directly feeding materials inside the main feeding rack, the internal space is utilized more rationally.

[0017] (2) An electrically controlled feeding back panel is installed inside the main feeding rack. Through the electrically controlled feeding back panel, materials can be quickly loaded and unloaded on the horizontal central conveying platform without manual operation, greatly improving the feeding and conveying efficiency.

[0018] (3) A side-mounted feeding arm is installed on the inner wall of the upper storage box, which can quickly control the internal materials for internal material guidance, making the internal conveying efficiency more efficient.

[0019] (4) The entire device not only has the traditional conveying function, but also extends the conveying stroke through the electrically controlled tilting side guide platform on both sides, thereby increasing the conveying range and greatly improving its applicability.

[0020] (5) By adjusting the sliding of the electronically controlled back panel, a rear passage can be formed behind the main feeding rack, which facilitates the loading and unloading of materials. At the same time, the opening and closing of the rear opening of the upper storage box can be controlled to ensure its internal sealing when idle, greatly improving its functionality. Attached Figure Description

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0022] Figure 1 This is a schematic diagram of the structure of the present invention.

[0023] Figure 2 This is a schematic diagram of the internal structure of the present invention.

[0024] Figure 3This is a schematic diagram of the side-mounted feeding arm in this invention.

[0025] Figure 4 This is a schematic diagram of the structure of the electrically controlled feeding back plate and the side-mounted feeding arm in the present invention.

[0026] Figure 5 This is a schematic diagram of the outward flipping movement of the side-mounted feeding arm in this invention.

[0027] Figure 6 This is a schematic diagram of the inward material conveying process of the side-mounted feeding arm in this invention.

[0028] In the diagram: 1. Main feeding rack; 2. Horizontal central conveyor platform; 3. Electrically controlled tilting side guide platform; 31. Tilting adjustment frame; 32. Electrically controlled conveyor belt; 33. Side-mounted electrically controlled support rod; 4. Bottom-mounted pull-out storage box; 5. Top-mounted storage box; 6. Electrically controlled feeding back panel; 61. Longitudinal back panel; 62. Wall-mounted conveyor belt; 63. Built-in telescopic support rod; 64. Outer support frame; 611. Longitudinal transmission chamber; 7. Side-mounted feeding arm; 71. Internally threaded translation block; 72. External assembly plate; 73. Electrically controlled tilting arm; 8. Electrically controlled material feeding plate; 9. Electrically controlled translation guide rail; 91. Embedded guide rail; 92. Electrically controlled translation screw; 10. Embedded lifting top rod. Detailed Implementation

[0029] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the invention, and therefore only show the components relevant to the invention.

[0030] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0031] Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6The conveying platform shown includes a main feeding rack 1, a horizontal central conveying platform 2 movably mounted inside the main feeding rack 1, electrically controlled flip-type side guide platforms 3 movably mounted on both sides of the main feeding rack 1 to cooperate with the horizontal central conveying platform 2, a bottom pull-out storage box 4 installed inside the main feeding rack 1 below the horizontal central conveying platform 2, an upper storage box 5 installed inside the main feeding rack 1 above the horizontal central conveying platform 2, an electrically controlled feeding back plate 6 installed inside the main feeding rack 1, a side feeding arm 7 installed on the inner wall of the upper storage box 5, and an electrically controlled feeding plate 8 installed at the front end of the horizontal central conveying platform 2 inside the main feeding rack 1.

[0032] Working principle: People place the materials to be loaded on the electrically controlled tilting side guide platform 3, and then the electrically controlled tilting side guide platform 3 drives the materials to be guided onto the horizontal central conveyor platform 2. When the materials move to the required loading position, the electrically controlled material feeding plate 8, which is obliquely arranged on the horizontal central conveyor platform 2, guides the materials to the electrically controlled feeding back plate 6. The electrically controlled feeding back plate 6 lifts the materials upward, and then the side feeding arm 7 guides the materials on the electrically controlled feeding back plate 6 into the upper storage box 5.

[0033] The electrically controlled material feeding plate 8 consists of a material feeding plate hinged to the inner wall of the main material feeding rack 1 and an inner support rod that controls the material feeding plate.

[0034] By reversing the above operations, the materials are controlled to be guided downward from the upper storage box 5 to the horizontal central conveyor platform 2, thereby completing the unloading operation.

[0035] To facilitate lateral assembly, the main feeding rack 1 has outwardly protruding lateral assembly frames fixed on both sides of the corresponding horizontal central conveyor platform 2.

[0036] To facilitate the electrically controlled tilting adjustment, the electrically controlled tilting side guide platform 3 includes a tilting adjustment frame 31 that is movably mounted inside the side assembly frame, an electrically controlled conveyor belt 32 installed inside the tilting adjustment frame 31, and side-mounted electrically controlled support rods 33 installed on both sides of the main feeding rack 1.

[0037] The side-mounted electrically controlled support rod 33 controls the tilting adjustment frame 31 by extending and retracting, thereby adjusting the tilting angle of the tilting adjustment frame 31 and the electrically controlled conveyor belt 32, making it easy to adjust the angle and extend the stroke. When not in use, the side-mounted electrically controlled support rod 33 retracts to drive the tilting adjustment frame 31, which has an internal electrically controlled conveyor belt 32, to tilt upward and fit against the outside of the main feeding rack 1.

[0038] To facilitate back-side translation, the electrically controlled feeding back panel 6 includes a longitudinal back panel 61, a wall-mounted conveyor belt 62 mounted on the longitudinal back panel 61, and a built-in telescopic support rod 63 fixed to the main feeding rack 1.

[0039] The wall-mounted conveyor belt 62 is existing technology and is an electrically controlled conveyor belt.

[0040] The built-in telescopic support rod 63 controls the longitudinal back plate 61 to move horizontally behind the main feeding rack 1 by telescopic movement, thereby controlling the opening and closing of the opening behind the upper storage box 5.

[0041] To facilitate transmission adjustment, a longitudinal transmission chamber 611 is provided inside the longitudinal back plate 61 to cooperate with the wall-mounted conveyor belt 62.

[0042] By setting up the longitudinal transmission chamber 611, the wall-mounted conveyor belt 62 can be easily installed and adjusted.

[0043] To facilitate lateral assembly and adjustment, electrically controlled translation rails 9 are symmetrically installed on the inner wall of the upper storage box 5 to cooperate with the side-mounted feeding arm 7.

[0044] To facilitate the translation of the lead screw, the electrically controlled translation guide rail 9 consists of an embedded guide rail 91 and an electrically controlled translation lead screw 92 installed inside the embedded guide rail 91.

[0045] The electrically controlled translation screw 92 drives the side-mounted feeding arm 7 to translate inside the upper storage box 5 by rotating.

[0046] To facilitate bottom support and easy flexible flipping, an outer support frame 64 is elastically fitted on the outer wall of the wall-mounted conveyor belt 62.

[0047] The wall-mounted conveyor belt 62 drives the outer support frame 64 to rotate and rise inside the longitudinal transmission chamber 611.

[0048] The outer support frame 64 is hinged to the outer wall of the wall-mounted conveyor belt 62, and is elastically squeezed and reset by the extrusion spring on the outer wall of the wall-mounted conveyor belt 62.

[0049] To facilitate translation and flipping of material feeding, the side-mounted feeding arm 7 includes an internally threaded translation block 71 threaded onto an electrically controlled translation screw 92, an external mounting plate 72 fixed to the outer surface of the internally threaded translation block 71, and an electrically controlled flipping arm 73 mounted on the outer surface of the external mounting plate 72.

[0050] The electrically controlled translation screw 92 drives the internal thread translation block 71 to translate along the embedded guide rail 91 by rotation. The internal thread translation block 71 drives the external assembly plate 72 and the electrically controlled flip arm 73 on its outer side to translate inside the upper storage box 5.

[0051] The electrically controlled tilting arm 73 includes an embedded adjusting motor fixed inside the outer assembly plate 72 and a tilting limit frame fixed on the adjusting shaft outside the embedded adjusting motor. The embedded adjusting motor controls the tilting limit frame to tilt by rotating. When the embedded adjusting motor drives the tilting limit frame to tilt forward, the electrically controlled translation screw 92 rotates, which in turn drives the electrically controlled tilting arm 73 to squeeze the material inside from front to back, squeezing the material onto the outer support frame 64 on the outer wall of the wall-mounted conveyor belt 62. When the embedded adjusting motor drives the tilting limit frame to tilt backward, the electrically controlled translation screw 92 rotates, which in turn drives the electrically controlled tilting arm 73 to squeeze the material on the outer support frame 64 from back to front, squeezing the material into the upper storage box 5.

[0052] In order to cooperate with the compression control of the outer support frame 64, an embedded lifting rod 10 is fixedly installed inside the main feeding rack 1 above the horizontal central conveyor platform 2.

[0053] When the built-in telescopic support rod 63 extends and retracts, it controls the longitudinal back plate 61 to move horizontally behind the main feeding rack 1. When the wall-mounted conveyor belt 62 drives the materials down to above the horizontal central conveying platform 2 via the outer support frame 64 on the outer wall, the built-in telescopic support rod 63 retracts, causing the longitudinal back plate 61 to approach the rear wall of the main feeding rack 1. Then the outer support frame 64 moves horizontally to above the horizontal central conveying platform 2. At this time, the embedded lifting rod 10 extends, thereby squeezing the outer support frame 64, so that the outer support frame 64 forms an inclined structure. At this time, the materials located on the outer support frame 64 will slide onto the horizontal central conveying platform 2.

[0054] Based on the above-described preferred embodiments of the present invention, and through the foregoing description, those skilled in the art can make various changes and modifications without departing from the inventive concept. The technical scope of this invention is not limited to the contents of the specification, but must be determined according to the scope of the claims.

Claims

1. A conveying platform equipped with a self-feeding device, comprising a main feeding rack (1), characterized in that: The main feeding rack (1) is equipped with a horizontal central conveyor platform (2) inside. The main feeding rack (1) is equipped with electrically controlled flip-type side guide platforms (3) that cooperate with the horizontal central conveyor platform (2) on both sides. The main feeding rack (1) is equipped with a bottom pull-out storage box (4) located below the horizontal central conveyor platform (2) inside. The main feeding rack (1) is equipped with an upper storage box (5) located above the horizontal central conveyor platform (2) inside. The main feeding rack (1) is equipped with an electrically controlled feeding back plate (6) inside. The upper storage box (5) is equipped with a side feeding arm (7) on the inner wall of the upper storage box (5). The main feeding rack (1) is equipped with an electrically controlled feeding plate (8) located at the front end of the horizontal central conveyor platform (2) inside. The upper storage box (5) is symmetrically equipped with electrically controlled translation rails (9) that cooperate with the side-mounted feeding arm (7) on the inner wall. The electrically controlled feeding back panel (6) includes a longitudinal back panel (61), a wall-mounted conveyor belt (62) installed on the longitudinal back panel (61), and a built-in telescopic support rod (63) fixed on the main feeding rack (1). The longitudinal back plate (61) has a longitudinal transmission chamber (611) that cooperates with the wall-mounted conveyor belt (62). Each of the electrically controlled translation guide rails (9) consists of an embedded guide rail (91) and an electrically controlled translation lead screw (92) installed inside the embedded guide rail (91); The outer wall of the wall-mounted conveyor belt (62) is elastically fitted with an outer support frame (64). The side-mounted feeding arm (7) includes an internal threaded translation block (71) threaded onto an electrically controlled translation screw (92), an external assembly plate (72) fixed on the outer side of the internal threaded translation block (71), and an electrically controlled flipping arm (73) mounted on the outer side of the external assembly plate (72).

2. The conveying platform with a self-feeding device according to claim 1, characterized in that: The main feeding rack (1) has outwardly protruding lateral assembly frames fixed on both sides of the horizontally placed central conveying platform (2).

3. A conveying platform equipped with a self-feeding device according to claim 2, characterized in that: The electrically controlled tilting side guide platform (3) includes a tilting adjustment frame (31) movably mounted inside the side assembly frame, an electrically controlled conveyor belt (32) mounted inside the tilting adjustment frame (31), and side-mounted electrically controlled support rods (33) mounted on both sides of the main feeding rack (1).

4. A conveying platform equipped with a self-feeding device according to claim 1, characterized in that: The main feeding rack (1) is fixedly equipped with an embedded lifting rod (10) located above the horizontal central conveying platform (2).

Citation Information

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