Conveying platform with self-feeding device
By integrating a self-feeding device on the conveying platform, including components such as the main feeding shelf and the electrically controlled flip-type lateral guide platform, the problem of manual feeding on the conveying platform is solved, and automatic feeding and conveying are achieved, thereby improving efficiency and functionality.
Patent Information
- Application Number
- CN202511269377.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-08
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2045-09-08
AI Technical Summary
The existing conveying platform cannot feed materials by itself during the conveying process and requires manual operation, resulting in low conveying efficiency and single functionality.
A conveying platform with a self-feeding device is designed, including a main feeding shelf, an electrically controlled flip side guide platform, an electrically controlled feeding backboard and a side feeding arm to realize automatic feeding and conveying.
It realizes automatic feeding without manual operation, improves transportation efficiency and functionality, expands the transportation range, and improves the flexibility and efficiency of material transportation.
Smart Images

Figure CN120736201A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of conveying and guiding materials, in particular to a conveying platform with a self-feeding device. Background Art
[0002] Conveyor platforms are primarily used for efficient and continuous handling and transport of goods, improving logistics efficiency and reducing labor costs. They are used for transporting bulk materials or lightweight items such as cartons and bags. They utilize continuous or intermittent conveyor belt motion to transfer materials, making them suitable for a variety of production and processing scenarios. They offer smooth conveying, low noise levels, a simple structure, and low energy consumption.
[0003] The current conveying platform can only be set up individually and cannot self-feed during the conveying process. It requires manual operation, resulting in low conveying efficiency and relatively simple functionality. Summary of the Invention
[0004] The technical problem to be solved by the present invention is that the current conveying platform can only be set up separately, and the feeding during the conveying process requires complete manual operation, resulting in low conveying efficiency and relatively simple functionality.
[0005] The technical solution adopted by the present invention to solve its technical problems is: a conveying platform with a self-feeding device, including a main supply rack, a horizontal middle conveying platform movably installed inside the main supply rack, and electric-controlled flip-type side guide platforms that cooperate with the horizontal middle conveying platform are movably installed on both sides of the main supply rack. A bottom-mounted pull-out storage box is installed below the horizontal middle conveying platform inside the main supply rack, an upper storage box is installed above the horizontal middle conveying platform inside the main supply rack, an electric-controlled feeding backboard is provided inside the main supply rack, side feeding arms are installed on the inner wall of the upper storage box, and an electric-controlled material diverting plate is installed at the front end of the horizontal middle conveying platform inside the main supply rack.
[0006] Side assembly frames protruding outward are fixed on both side walls of the main supply rack at positions corresponding to the horizontally placed middle conveying platform.
[0007] The electrically controlled flip-type lateral material guiding platform comprises a flip adjustment frame axially mounted inside a lateral assembly frame, an electrically controlled conveyor belt mounted inside the flip adjustment frame, and side-mounted electrically controlled support rods mounted on both side walls of the main material supply rack.
[0008] The electrically controlled feeding backboard comprises a longitudinal backboard, a wall-mounted feeding belt mounted on the longitudinal backboard, and a built-in telescopic support rod fixed on the main feeding shelf.
[0009] A longitudinal transmission chamber is provided inside the longitudinal back plate and matches with the wall-mounted conveyor belt.
[0010] An electric-controlled translation guide rail cooperating with the side-placed feeding arm is symmetrically mounted on the inner wall of the upper storage box.
[0011] The electrically controlled translation guide rails are composed of an embedded guide rail and an electrically controlled translation lead screw installed inside the embedded guide rail.
[0012] An outer supporting frame is elastically mounted on the outer wall of the wall-mounted conveyor belt.
[0013] The side feeding arm includes an internal thread translation block threadedly sleeved on an electrically controlled translation screw, an external assembly plate fixed on the outer side of the internal thread translation block, and an electrically controlled flip arm with its shaft mounted on the outer side of the external assembly plate.
[0014] An embedded lifting push rod is fixedly mounted inside the main feeding rack above the horizontal middle conveying platform.
[0015] The beneficial effects of the present invention are: (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 more reasonably utilized; (2) An electrically controlled feeding backboard is installed inside the main feeding rack. Through the electrically controlled feeding backboard, materials can be quickly loaded and unloaded on the horizontal middle conveying platform without manual operation, which greatly improves the feeding and conveying efficiency; (3) A side 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 transportation efficiency more efficient; (4) The entire device not only has the traditional conveying function, but also can extend the conveying stroke through the electrically controlled flip-type side guide platforms on both sides, thereby increasing the conveying range and greatly improving its applicability; (5) Through the electronically controlled translation adjustment of the feeding backboard, not only can a rear channel be formed on the rear side of the main feeding shelf to facilitate the loading and unloading of materials, but also the opening and closing of the rear side of the upper storage box can be controlled to ensure its internal sealing when idle, greatly improving its functionality. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The present invention will be further described below with reference to the accompanying drawings and examples.
[0017] Figure 1 It is a structural schematic diagram of the present invention.
[0018] Figure 2 It is a schematic diagram of the internal structure of the present invention.
[0019] Figure 3 It is a structural schematic diagram of the side feeding arm in the present invention.
[0020] Figure 4It is a structural diagram of the electrically controlled feeding back plate and the side feeding arm in the present invention under the coordinated state.
[0021] Figure 5 It is a structural schematic diagram of the outward turning movement of the side-mounted feeding arm in the present invention.
[0022] Figure 6 It is a structural schematic diagram of the process of the side-mounted feeding arm guiding the material inward in the present invention.
[0023] In the figure, 1. Main feeding rack, 2. Horizontal middle conveying platform, 3. Electric-controlled flip-type lateral material guide platform, 31. Flip adjustment frame, 32. Electric-controlled conveyor belt, 33. Side-mounted electric-controlled support rod, 4. Bottom-mounted pull-out storage box, 5. Upper storage box, 6. Electric-controlled feeding back plate, 61. Longitudinal back plate, 62. Wall-mounted conveyor belt, 63. Built-in telescopic support rod, 64. Outer support frame, 611. Longitudinal transmission chamber, 7. Side feeding arm, 71. Internal thread translation block, 72. External assembly plate, 73. Electric-controlled flip arm, 8. Electric-controlled material diverter plate, 9. Electric-controlled translation guide rail, 91. Embedded guide rail, 92. Electric-controlled translation screw, 10. Embedded lifting rod. DETAILED DESCRIPTION
[0024] The present invention will now be described in further detail with reference to the accompanying drawings, which are simplified schematic diagrams that illustrate the basic structure of the present invention in a schematic manner.
[0025] In the description of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "connected" and "connection" should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integral connection; mechanical connection, electrical connection; direct connection, or indirect connection through an intermediary. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances.
[0026] Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 and Figure 6The conveying platform shown has a self-feeding device, including a main supply rack 1, a horizontal middle conveying platform 2 movably installed inside the main supply rack 1, and electric-controlled flip-type side guide platforms 3 that cooperate with the horizontal middle conveying platform 2 and are movably installed on both sides of the main supply rack 1. A bottom-mounted pull-out storage box 4 is installed below the horizontal middle conveying platform 2 inside the main supply rack 1, and an upper storage box 5 is installed above the horizontal middle conveying platform 2 inside the main supply rack 1. An electric-controlled feeding backboard 6 is provided inside the main supply rack 1, and a side feeding arm 7 is installed on the inner wall of the upper storage box 5. An electric-controlled material diverting plate 8 is installed at the front end of the horizontal middle conveying platform 2 inside the main supply rack 1.
[0027] Working principle: People place the materials that need to be loaded on the electrically controlled flip-type lateral material guide platform 3, and then the electrically controlled flip-type lateral material guide platform 3 drives the materials to be introduced into the horizontal middle conveying platform 2. When the materials move to the position where they need to be loaded, the electrically controlled material diverter plate 8 arranged obliquely on the horizontal middle conveying platform 2 guides the materials onto the electrically controlled feeding backboard 6. The electrically controlled feeding backboard 6 lifts the materials upward, and then the side feeding arm 7 guides the materials on the electrically controlled feeding backboard 6 into the upper storage box 5. The electrically controlled material-diverting plate 8 is composed of a material-diverting plate hingedly connected to the inner wall of the main material supply rack 1 and an inner support rod for controlling the material-diverting plate.
[0028] By performing the reverse operation of the above operation, the materials are controlled to be introduced downward from the upper storage box 5 to the horizontal middle conveying platform 2, thereby completing the unloading operation.
[0029] In order to cooperate with the lateral assembly, outwardly protruding lateral assembly frames are fixed on the two side walls of the main supply rack 1 corresponding to the positions of the horizontally placed middle conveying platform 2.
[0030] In order to cooperate with the electric-controlled flip adjustment, the electric-controlled flip lateral material guiding platform 3 includes a flip adjustment frame 31 axially mounted inside the lateral assembly frame, an electric-controlled conveyor belt 32 installed inside the flip adjustment frame 31, and side-mounted electric-controlled support rods 33 installed on the two side walls of the main supply rack 1.
[0031] The side-mounted electrically controlled struts 33 control the tilting of 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 easier to adjust the angle and extend the travel. During idle time, the side-mounted electrically controlled struts 33 retract to cause the tilting adjustment frame 31, with the electrically controlled conveyor belt 32 mounted therein, to tilt upward and fit against the outside of the main supply rack 1.
[0032] In order to cooperate with the back translation, the electrically controlled feeding backboard 6 includes a longitudinal backboard 61 , a wall-mounted conveyor belt 62 installed on the longitudinal backboard 61 and a built-in telescopic support rod 63 fixed on the main feeding shelf 1 .
[0033] The wall-mounted conveyor belt 62 is a prior art and is an electrically controlled conveyor belt.
[0034] The built-in telescopic support rod 63 controls the longitudinal back plate 61 to move horizontally at the rear side of the main supply rack 1 by telescoping, thereby controlling the opening and closing of the rear side opening of the upper storage box 5.
[0035] In order to cooperate with transmission adjustment, a longitudinal transmission chamber 611 is opened inside the longitudinal back plate 61 to cooperate with the wall-mounted conveyor belt 62.
[0036] By providing the longitudinal transmission chamber 611 , the installation and adjustment of the wall-mounted conveyor belt 62 can be facilitated.
[0037] In order to cooperate with the lateral assembly adjustment, an electric-controlled translation guide rail 9 that cooperates with the side feeding arm 7 is symmetrically installed on the inner wall of the upper storage box 5.
[0038] In order to cooperate with the translation of the lead screw, the electrically controlled translation guide rail 9 is composed of an embedded guide rail 91 and an electrically controlled translation lead screw 92 installed inside the embedded guide rail 91 .
[0039] The electrically controlled translation screw 92 drives the side feeding arm 7 to translate inside the upper storage box 5 by rotating.
[0040] In order to cooperate with the bottom support and facilitate elastic turning, an outer support frame 64 is elastically assembled on the outer wall of the wall-mounted conveyor belt 62.
[0041] The wall-mounted conveyor belt 62 drives the outer support frame 64 to flip and rise and fall inside the longitudinal transmission chamber 611 .
[0042] The outer support frame 64 is hingedly connected to the outer wall of the wall-mounted conveyor belt 62 and is elastically squeezed and reset by the squeezing spring pieces on the outer wall of the wall-mounted conveyor belt 62.
[0043] In order to cooperate with the translation and flipping of materials, the side feeding arm 7 includes an internal threaded translation block 71 threadedly mounted on the electric control translation screw 92, an external assembly plate 72 fixed on the outer side of the internal threaded translation block 71 and an electric control flip arm 73 with an axis installed on the outer side of the external assembly plate 72.
[0044] The electrically controlled translation screw 92 drives the internal threaded translation block 71 to translate along the embedded guide rail 91 by rotating, and the internal threaded 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.
[0045] The electric-controlled flip arm 73 includes an embedded adjusting motor fixed inside the external assembly plate 72 and a flip limit frame fixed on the adjusting shaft outside the embedded adjusting motor. The embedded adjusting motor controls the flipping of the flip limit frame by rotating. When the embedded adjusting motor drives the flip limit frame to flip forward, the electric-controlled translation screw 92 rotates, and at this time, it can drive the electric-controlled flip arm 73 to squeeze the internal material from front to back, and squeeze 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 flip limit frame to flip backward, the electric-controlled translation screw 92 rotates, and at this time, it can drive the electric-controlled flip arm 73 to squeeze the material on the outer support frame 64 from back to front, and squeeze the material into the interior of the upper storage box 5.
[0046] In order to cooperate with the extrusion control of the outer support frame 64, an embedded lifting rod 10 is fixedly installed above the horizontal middle conveying platform 2 inside the main supply rack 1.
[0047] When the built-in telescopic support rod 63 is extended and retracted, the longitudinal back plate 61 is controlled to move horizontally on the rear side of the main supply rack 1. When the wall-mounted conveyor belt 62 drives the materials to drop to the top of the horizontal middle conveying platform 2 through the outer support frame 64 on the outer wall, the built-in telescopic support rod 63 is retracted to drive the longitudinal back plate 61 close to the rear wall of the main supply rack 1, and then the outer support frame 64 is moved horizontally to the top of the horizontal middle conveying platform 2. At this time, the embedded lifting top rod 10 is extended, thereby squeezing the outer support frame 64, so that the outer support frame 64 forms an inclined structure. At this time, the materials on the outer support frame 64 will slide onto the horizontal middle conveying platform 2.
[0048] With the above-described preferred embodiments of the present invention as a guide, and with reference to the above description, relevant personnel are fully capable of making various changes and modifications without departing from the technical scope of this invention. The technical scope of this invention is not limited to the contents of the specification and must be determined according to the scope of the claims.
Claims
1. A conveying platform with a self-feeding device, comprising a main feeding shelf (1), characterized in that: The main feeding rack (1) is movably equipped with a horizontal middle conveying platform (2), and both sides of the main feeding rack (1) are movably equipped with electric-controlled flip-type side guide platforms (3) that cooperate with the horizontal middle conveying platform (2). The main feeding rack (1) is provided with a bottom-mounted pull-out storage box (4) below the horizontal middle conveying platform (2), and an upper storage box (5) is installed above the horizontal middle conveying platform (2). The main feeding rack (1) is provided with an electric-controlled feeding backboard (6), and a side feeding arm (7) is installed on the inner wall of the upper storage box (5). The main feeding rack (1) is provided with an electric-controlled material diverting plate (8) at the front end of the horizontal middle conveying platform (2). An electric-controlled translation guide rail (9) that cooperates with the side-mounted feeding arm (7) is symmetrically mounted on the inner wall of the upper storage box (5).
2. The conveying platform with a self-feeding device according to claim 1, characterized in that: Side assembly frames protruding outwards are fixed on both side walls of the main supply rack (1) at positions corresponding to the horizontally placed middle conveying platform (2).
3. The conveying platform with a self-feeding device according to claim 2, characterized in that: The electrically controlled flip-type lateral material guiding platform (3) comprises a flip adjustment frame (31) axially mounted inside a lateral assembly frame, an electrically controlled conveyor belt (32) mounted inside the flip adjustment frame (31), and side-mounted electrically controlled support rods (33) mounted on both side walls of the main material supply rack (1).
4. The conveying platform with a self-feeding device according to claim 1, characterized in that: The electrically controlled feeding backboard (6) comprises a longitudinal backboard (61), a wall-mounted feeding belt (62) mounted on the longitudinal backboard (61), and a built-in telescopic support rod (63) fixed on the main feeding shelf (1).
5. The conveying platform with a self-feeding device according to claim 4, characterized in that: A longitudinal transmission chamber (611) is provided inside the longitudinal back plate (61) and is matched with the wall-mounted conveyor belt (62).
6. The conveying platform with a self-feeding device according to claim 1, characterized in that: The electrically controlled translation guide rails (9) are composed of an embedded guide rail (91) and an electrically controlled translation lead screw (92) installed inside the embedded guide rail (91).
7. The conveying platform with a self-feeding device according to claim 4, characterized in that: An outer support frame (64) is elastically mounted on the outer wall of the wall-mounted conveyor belt (62).
8. The conveying platform with a self-feeding device according to claim 6, characterized in that: The side-mounted feeding arm (7) comprises an internal thread translation block (71) threadedly mounted on an electrically controlled translation screw (92), an external assembly plate (72) fixed to the outer side of the internal thread translation block (71), and an electrically controlled flip arm (73) whose shaft is mounted on the outer side of the external assembly plate (72).
9. The conveying platform with a self-feeding device according to claim 1, characterized in that: An embedded lifting rod (10) is fixedly mounted inside the main supply rack (1) above the horizontally placed middle conveying platform (2).
Citation Information
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