Agricultural machinery equipment manufacturing workshop scheduling warehouse platform
By designing a warehousing platform for scheduling agricultural machinery equipment manufacturing workshops that includes a bracket, a scanning mechanism, and a warehousing mechanism, and using an RFID radio frequency identifier and a motor drive system to achieve all-round scanning and stable warehousing of agricultural machinery equipment, the problems of inaccurate recognition and unstable movement in the existing technology are solved, and management efficiency and the accuracy of production plans are improved.
Patent Information
- Application Number
- CN202311619073.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-23
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2043-11-23
AI Technical Summary
The existing warehousing platform used for scheduling in agricultural machinery manufacturing workshops cannot achieve all-round scanning and identification, resulting in missing or inaccurate equipment information, affecting inventory management and production planning. In addition, the equipment moves unstably during the warehousing process, resulting in inaccurate identification and recording data.
A warehousing platform for scheduling agricultural machinery equipment in manufacturing workshops was designed, which includes a bracket, a scanning mechanism and a warehousing mechanism. RFID radio frequency identifiers and multiple motor drive systems were used to achieve all-round scanning and stable warehousing of agricultural machinery equipment. Synchronous motion was used to ensure the accuracy and stability of the identification and warehousing processes.
It achieves rapid and accurate identification and storage of agricultural machinery and equipment, improves management efficiency and accuracy, ensures stable movement of equipment during storage, and avoids waste of resources and delays in production plans.
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Figure CN117383165B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of agricultural equipment scheduling, specifically a storage platform for agricultural equipment manufacturing workshop scheduling. BACKGROUND
[0002] Agricultural equipment manufacturing workshops often involve large equipment and parts, which need to be effectively scheduled and managed to ensure efficient operation of the production line and smooth execution of production plans. In this context, it is necessary to design a storage platform for agricultural equipment manufacturing workshop scheduling;
[0003] Such a storage platform can be used to receive newly produced agricultural equipment, and to perform preliminary identification, classification and storage of the equipment for subsequent production processes and shipping arrangements. At the same time, the storage platform is an important part of workshop scheduling, which can help managers quickly and accurately understand the current inventory situation and make appropriate scheduling decisions;
[0004] However, the existing storage platform for agricultural equipment manufacturing workshop scheduling cannot scan and identify the agricultural equipment in all directions when identifying and scanning the equipment, which may result in missing or inaccurate information for some equipment. In this case, the manager cannot fully understand the inventory situation, equipment characteristics and status, which affects the subsequent scheduling decisions and production planning. Due to incomplete equipment information, the scheduler cannot accurately determine which equipment in the inventory is suitable for production, which equipment needs to be repaired or discarded, which may lead to scheduling errors, waste of resources or delay of production plans. If the equipment cannot be accurately identified and classified, it is difficult to put it into the appropriate production line in time, which may lead to idle resources, reduce production line utilization, and increase production costs. Moreover, the existing storage platform for agricultural equipment manufacturing workshop scheduling cannot ensure the stable movement of agricultural equipment during storage. In unstable movement, the position and state of the equipment may change, resulting in inaccurate identification and recording of data, affecting subsequent management and scheduling decisions. Therefore, we propose a storage platform for agricultural equipment manufacturing workshop scheduling to solve the existing problems. SUMMARY
[0005] The present application aims to provide a storage platform for agricultural equipment manufacturing workshop scheduling to solve the problems raised in the background.
[0006] In order to achieve the above object, the application provides the following technical scheme: a storage platform for agricultural equipment manufacturing workshop scheduling, comprising a support, a supporting seat, an agricultural equipment body, a scanning mechanism, a storage mechanism and a second telescopic cylinder, the supporting seat is arranged at the four corners below the support, the storage mechanism is arranged on the support, the agricultural equipment body is placed on the storage mechanism, a guide frame is arranged at the side edges of the support, a sliding block is slidably connected to the guide frame, the scanning mechanism is arranged on the side of the sliding block away from the guide frame, and the scanning mechanism and the agricultural equipment body are matched with each other.
[0007] Preferably, the bottom of the support is provided with a second telescopic cylinder, and the output end of the second telescopic cylinder is fixedly connected with a fixing frame.
[0008] Preferably, the scanning mechanism comprises a mounting frame, a first telescopic cylinder, an adjusting frame, a guide wheel, a first transmission rod, a first driving motor, a mounting piece, a second transmission rod, a transmission bearing and a scanning frame, the fixing frame is arranged on the side of the sliding block away from the guide frame, the scanning frame is arranged on the fixing frame, the mounting piece is arranged on one side of the support, the first driving motor is arranged on one side of the mounting piece, the output end of the first driving motor is movably connected with the first transmission rod, the transmission bearing is arranged on one side of the fixing frame away from the mounting piece, the transmission bearing is movably connected with the first transmission rod on one side, and the second transmission rod is movably connected with the transmission bearing on the side away from the first transmission rod.
[0009] Preferably, a rotating wheel is arranged on the scanning frame in a ring shape at equal distances, the scanning frame is movably connected with a rotating frame through the rotating wheel, the rotating frame is arranged with RFID radio frequency identifiers in a ring shape at equal distances, and the RFID radio frequency identifiers are matched with the agricultural equipment body.
[0010] Preferably, the scanning frame is symmetrically provided with mounting frames on one side, the adjusting frame is movably connected to one of the mounting frames, the first telescopic cylinder is movably connected to the side of the adjusting frame away from the mounting frame, and the first telescopic cylinder is movably connected with the mounting frame on the other side.
[0011] Preferably, the storage mechanism comprises a synchronous wheel, a transmission belt, a reinforcing piece, a bearing seat, a rotating rod, a first transmission wheel, a second transmission wheel, a synchronous belt and a second driving motor, the reinforcing pieces are symmetrically arranged on the support, the bearing seats are symmetrically arranged on the reinforcing pieces, the rotating rod is arranged between the bearing seats, the synchronous wheels are arranged on the sides of the bearing seats, and the synchronous wheels are matched with each other through the transmission belt.
[0012] Preferably, the reinforcing piece is provided with the second driving motor on one side, the output end of the second driving motor is fixedly connected with the second transmission wheel, the first transmission wheel is arranged on the rotating rod between the bearing seat and the synchronous wheel, and the first transmission wheel and the second transmission wheel are matched with each other through the synchronous belt.
[0013] Compared with the prior art, the application has the following beneficial effects:
[0014] 1. By controlling the starting of the first drive motor to work, the first drive motor can drive the second transmission rod to rotate, and the first transmission rod drives the first transmission rod to rotate synchronously through the transmission bearing, so as to drive the guide wheel to rotate, thereby driving the rotating frame to rotate on the rotating wheel on the scanning frame, and the above-mentioned components can work together to realize the scanning operation, and the rotating frame is provided with an RFID radio frequency identifier at equal intervals in a ring shape, and the RFID radio frequency identifier and the agricultural equipment body are matched with each other to realize identification and scanning operation, the scanning mechanism realizes all-around scanning and identification of the agricultural equipment through horizontal movement of the drive motor, rotation of the rotating wheel and scanning of the RFID radio frequency identifier, and cooperates with the second drive cylinder to realize coordinated movement of the fixed frame along the guide frame and the sliding block, so as to realize all-around scanning and identification of the agricultural equipment, assist the agricultural equipment to realize identification and warehousing, and quickly and accurately record information of the agricultural equipment, thereby improving the accuracy and efficiency of management.
[0015] 2. By controlling the starting of the second drive motor to work, the second drive motor drives the rotation of the rotating rod through the second transmission wheel fixedly connected to the output end, the first transmission wheel on the rotating rod cooperates with the second transmission wheel through the synchronous belt, so as to realize synchronous movement between them, and at the same time, the movement of the rotating rod also drives the synchronous wheel on the bearing seat to cooperate with each other through the transmission belt, so that the synchronous wheel can move synchronously, and such design can realize power transmission of the second drive motor to the whole warehousing mechanism, realize synchronous movement between the components, and complete the warehousing operation, thereby ensuring stable movement of the agricultural equipment in the warehousing process and avoiding problems caused by asynchronization between different components. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a structure schematic view of the whole in the present application;
[0017] Figure 2 It is a structure schematic view of the rotating frame and the rotating wheel in the present application;
[0018] Figure 3 It is a structure schematic view of the scanning mechanism in the present application;
[0019] Figure 4 It is a structure schematic view of the warehousing mechanism in the present application;
[0020] Figure 5 It is a top view structure schematic view of the warehousing mechanism in the present application;
[0021] Figure 6 It is Figure 5 a sectional structure schematic view of A-A in the present application;
[0022] Figure 7 It is Figure 6 a local enlarged structure schematic view of A in the present application.
[0023] In the figure: 1, support; 2, support seat; 3, agricultural equipment body; 4, scanning mechanism; 401, mounting frame; 402, first telescopic cylinder; 403, adjusting frame; 404, guide wheel; 405, first transmission rod; 406, first drive motor; 407, mounting; 408, second transmission rod; 409, transmission bearing; 410, scanning frame; 411, fixed frame; 5, warehouse entry mechanism; 501, synchronous wheel; 502, transmission belt; 503, reinforcing member; 504, bearing seat; 505, rotating rod; 506, first transmission wheel; 507, second transmission wheel; 508, synchronous belt; 509, second drive motor; 6, RFID reader; 7, guide frame; 8, sliding block; 9, rotating frame; 10, rotating wheel; 11, second telescopic cylinder. DETAILED DESCRIPTION
[0024] To make the objectives, technical solutions and advantages of the present application clearer, further detailed description will be made to the present application with reference to the specific embodiments and the accompanying drawings. It should be understood that these descriptions are only exemplary and are not intended to limit the scope of the present application. In addition, in the following description, the description of the known structures and technologies is omitted to avoid unnecessary confusion of the concept of the present application.
[0025] As Figures 1-7 shown, the present application proposes a warehouse entry platform for agricultural equipment manufacturing workshop scheduling, which comprises a support 1, a support seat 2, an agricultural equipment body 3, a scanning mechanism 4, a warehouse entry mechanism 5 and a second telescopic cylinder 11. The support seat 2 is arranged at the four corners below the support 1, and the warehouse entry mechanism 5 is arranged on the support 1. The agricultural equipment body 3 is placed on the warehouse entry mechanism 5. The guide frame 7 is arranged at the side edges around the support 1. The sliding block 8 is slidably connected to the guide frame 7. The scanning mechanism 4 is arranged on the side of the sliding block 8 away from the guide frame 7. The scanning mechanism 4 cooperates with the agricultural equipment body 3.
[0026] In an optional embodiment, the bottom of the support 1 is provided with the second telescopic cylinder 11. The output end of the second telescopic cylinder 11 is fixedly connected with the fixed frame 411.
[0027] In an alternative embodiment, the scanning mechanism 4 comprises a mounting frame 401, a first telescopic cylinder 402, an adjusting frame 403, a guide wheel 404, a first transmission rod 405, a first drive motor 406, a mounting piece 407, a second transmission rod 408, a transmission bearing 409, and a scanning frame 410, the sliding block 8 is provided with a fixed frame 411 away from one side of the guide frame 7, the fixed frame 411 is provided with the scanning frame 410, and the bracket 1 is provided with the mounting piece 407 on one side, the mounting piece 407 is provided with the first drive motor 406 on one side, the first drive motor 406 is movably connected with the first transmission rod 405 on the output end, the fixed frame 411 is provided with the transmission bearing 409 on one side of the mounting piece 407, and the transmission bearing 409 is movably connected with the first transmission rod 405 on one side, and the transmission bearing 409 is movably connected with the second transmission rod 408 on the side away from the first transmission rod 405.
[0028] In an alternative embodiment, the scanning frame 410 is movably connected with the rotating frame 9 through the rotating wheel 10, and the rotating frame 9 is provided with the RFID radio frequency identifier 6 at equal intervals in a ring shape, and the RFID radio frequency identifier 6 cooperates with the agricultural equipment body 3.
[0029] In an alternative embodiment, the scanning frame 410 is provided with the mounting frame 401 on one side, the mounting frame 401 is movably connected with the adjusting frame 403 on one side, the adjusting frame 403 is movably connected with the first telescopic cylinder 402 on the side away from the mounting frame 401, and the first telescopic cylinder 402 is movably connected with the mounting frame 401 on one side; the first drive motor 406 is controlled to work, the first drive motor 406 can drive the second transmission rod 408 to rotate, the first transmission rod 405 is driven by the transmission bearing 409 to rotate synchronously, thereby driving the guide wheel 404 to rotate, thereby driving the rotating frame 9 to rotate on the rotating wheel 10 of the scanning frame 410, these components can work cooperatively to realize scanning operation, the rotating frame 9 is provided with the RFID radio frequency identifier 6 at equal intervals in a ring shape, and the RFID radio frequency identifier 6 cooperates with the agricultural equipment body 3 to realize identification and scanning operation, the scanning mechanism realizes all-around scanning and identification of the agricultural equipment through horizontal movement of the drive motor, rotation of the rotating wheel, and scanning of the RFID radio frequency identifier, cooperates with the second drive cylinder 11 to make the fixed frame 411 move along the guide frame 7 and the sliding block 8, realizes all-around scanning and identification of the agricultural equipment, assists the agricultural equipment to be identified and stored, can quickly and accurately record information of the agricultural equipment, and improves accuracy and efficiency of management.
[0030] In an optional embodiment, the warehousing mechanism 5 comprises a synchronous wheel 501, a transmission belt 502, a reinforcing member 503, a bearing seat 504, a rotating rod 505, a first transmission wheel 506, a second transmission wheel 507, a synchronous belt 508 and a second driving motor 509, the reinforcing member 503 is symmetrically arranged on the bracket 1, the reinforcing member 503 is symmetrically provided with the bearing seat 504, the bearing seat 504 is provided with the rotating rod 505, the rotating rod 505 is provided with the synchronous wheel 501 on the side of the bearing seat 504, and the synchronous wheels 501 are matched with each other through the transmission belt 502.
[0031] In an optional embodiment, the reinforcing member 503 is provided with the second driving motor 509, the output end of the second driving motor 509 is fixedly connected with the second transmission wheel 507, the first transmission wheel 506 is arranged on the rotating rod 505 between the bearing seat 504 and the synchronous wheel 501, the first transmission wheel 506 and the second transmission wheel 507 are matched with each other through the synchronous belt 508, the second driving motor 509 is controlled to work, the rotating rod 505 is driven to rotate through the second transmission wheel 507 fixedly connected with the output end, the first transmission wheel 506 on the rotating rod 505 is matched with the second transmission wheel 507 through the synchronous belt 508, synchronous movement between them is realized, at the same time, the synchronous wheel 501 on the bearing seat 504 is matched with each other through the transmission belt 502, the synchronous wheel 501 can move synchronously, power of the second driving motor 509 can be transmitted to the whole warehousing mechanism 5, synchronous movement between the components is realized, the warehousing operation is completed, stable movement of the agricultural equipment in the warehousing process is ensured, and problems caused by asynchronization between different components are avoided.
[0032] The working principle of the present application is that: when using the device, first place the agricultural equipment on the transmission belt 502 of the warehousing mechanism 5, control the first drive motor 406 to work, the first drive motor 406 can drive the second transmission rod 408 to rotate, and the first transmission rod 405 is driven by the transmission bearing 409 to rotate synchronously, thereby driving the guide wheel 404 to rotate, thereby driving the rotating frame 9 to rotate on the rotating wheel 10 on the scanning frame 410, these components can work together to realize scanning operation, and the rotating frame 9 is provided with an RFID radio frequency identifier 6 at equal intervals in a ring shape, the RFID radio frequency identifier 6 and the agricultural equipment body 3 cooperate with each other to identify and scan, the scanning mechanism realizes the full-range scanning and identification of the agricultural equipment through the horizontal movement of the drive motor, the rotation of the rotating wheel and the scanning of the RFID radio frequency identifier, cooperates with the second drive cylinder 11 to make the fixed frame 411 move along the coordinated movement of the guide frame 7 and the sliding block 8, realizes the full-range scanning and identification of the agricultural equipment, and assists the agricultural equipment to identify and store, the agricultural equipment after scanning is completed, the second drive motor 509 is controlled to work, which drives the rotating rod 505 to rotate through the second transmission wheel 507 fixedly connected to the output end, the first transmission wheel 506 on the rotating rod 505 cooperates with the second transmission wheel 507 through the synchronous belt 508, thereby realizing the synchronous movement therebetween, at the same time, the movement of the rotating rod 505 also drives the synchronous wheel 501 on the bearing seat 504 to cooperate with each other through the transmission belt 502, so that the synchronous wheel 501 can move synchronously, such design can realize the power transmission of the second drive motor 509 to the entire warehousing mechanism 5, realizes the synchronous movement between components, thereby completing the warehousing operation.
[0033] It should be understood that the above specific embodiments of the present application are used to exemplify or explain the principles of the present application, and do not constitute a limitation on the present application. Therefore, any modification, equivalent replacement, improvement, etc. made without departing from the spirit and scope of the present application shall be included in the protection scope of the present application. In addition, the appended claims of the present application are intended to cover all changes and modifications falling within the scope and boundary of the appended claims, or the equivalent forms of such scope and boundary.
Claims
1. A warehousing platform for scheduling agricultural machinery and equipment manufacturing workshops, characterized by: The invention comprises a bracket (1), a support seat (2), an agricultural machinery equipment body (3), a scanning mechanism (4), a storage mechanism (5) and a second telescopic cylinder (11), wherein the support seats (2) are provided at the four corners below the bracket (1), and the storage mechanism (5) is provided on the bracket (1), and the agricultural machinery equipment body (3) is placed on the storage mechanism (5), and the bracket (1) is provided with a guide frame (7) at the side edges around the bracket (1), and a sliding block (8) is slidably connected to the guide frame (7), and a scanning mechanism (4) is provided on the side of the sliding block (8) away from the guide frame (7), and the scanning mechanism (4) and the agricultural machinery equipment body (3) cooperate with each other; The scanning mechanism (4) comprises a mounting frame (401), a first telescopic cylinder (402), an adjusting frame (403), a guide wheel (404), a first transmission rod (405), a first drive motor (406), a mounting member (407), a second transmission rod (408), a transmission bearing (409) and a scanning frame (410), wherein a fixing frame (411) is provided on the side of the sliding block (8) away from the guide frame (7), and the scanning frame (410) is provided on the fixing frame (411), and a fixing frame (411) is provided on one side of the bracket (1). A mounting member (407) is provided, a first drive motor (406) is provided on one side of the mounting member (407), an output end of the first drive motor (406) is movably connected to a first transmission rod (405), and a transmission bearing (409) is provided on a fixed frame (411) on one side of the mounting member (407), one side of the transmission bearing (409) is movably connected to the first transmission rod (405), and a side of the transmission bearing (409) away from the first transmission rod (405) is movably connected to a second transmission rod (408); Rotating wheels (10) are arranged in an equidistant ring on the scanning frame (410), the scanning frame (410) is movably connected to the rotating frame (9) via the rotating wheels (10), RFID radio frequency identifiers (6) are arranged in an equidistant ring on the rotating frame (9), and the RFID radio frequency identifiers (6) cooperate with the agricultural machinery equipment body (3); A second telescopic cylinder (11) is provided at the bottom of the bracket (1), and an output end of the second telescopic cylinder (11) is fixedly connected to a fixing frame (411); A mounting frame (401) is symmetrically provided on one side of the scanning frame (410), an adjustment frame (403) is movably connected to the mounting frame (401) on one side, a first telescopic cylinder (402) is movably connected to the side of the adjustment frame (403) away from the mounting frame (401), and one side of the first telescopic cylinder (402) is movably connected to the mounting frame (401) on the other side.
2. The warehousing platform for scheduling agricultural machinery equipment manufacturing workshops according to claim 1, characterized in that: The storage mechanism (5) comprises a synchronous wheel (501), a transmission belt (502), a reinforcement member (503), a bearing seat (504), a rotating rod (505), a first transmission wheel (506), a second transmission wheel (507), a synchronous belt (508) and a second drive motor (509). The reinforcement members (503) are symmetrically arranged on the bracket (1), the bearing seats (504) are symmetrically arranged on the reinforcement members (503), the rotating rod (505) is arranged between the bearing seats (504), and synchronous wheels (501) are arranged on both sides of the rotating rod (505) on one side of the bearing seat (504), and the synchronous wheels (501) cooperate with each other through the transmission belt (502).
3. The warehousing platform for scheduling agricultural machinery equipment manufacturing workshops according to claim 2, characterized in that: A second drive motor (509) is provided on one side of the reinforcement member (503), and an output end of the second drive motor (509) is fixedly connected to a second transmission wheel (507), and a first transmission wheel (506) is provided on the rotating rod (505) between the bearing seat (504) and the synchronous wheel (501), and the first transmission wheel (506) and the second transmission wheel (507) cooperate with each other through a synchronous belt (508).
Citation Information
Patent Citations
RFID-based three-dimensional warehouse stocktaking equipment identification device
CN113361296A
Automatic transportation scanning device
CN115809675A