Plate output machine and plate storage warehouse

By designing a plate output machine, multiple cutting mechanisms and transmission shafts are used to achieve smooth transportation of the plates, and the output transportation mechanism avoids scratches of the plates, the problems of low and vulnerable plate discharge efficiency in the prior art are solved, and efficient and safe plate transport is achieved.

CN222820613UActive Publication Date: 2025-05-02WECAN M&E SHANGHAI
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Patent Information

Application Number
CN202421457975.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-24
Publication Date
2025-05-02
Estimated Expiration
2034-06-24

AI Technical Summary

Technical Problem

In the prior art, the sheet material discharge method is prone to scratches on the sheet material, and the transport time is long and the efficiency is low.

Method used

A plate output machine is designed, including at least one first feeding mechanism, a first transmission shaft, a first driving mechanism, at least one second feeding mechanism, a second transmission shaft, a second driving mechanism, an output transport mechanism and an output driving mechanism. By setting up a parallel feeding mechanism and a transmission shaft, the smooth transportation of the plate is achieved, and the second feeding mechanism is inserted into the output transportation mechanism to avoid impact of the plate during the transmission process.

Benefits of technology

It realizes smooth transportation of plates of different sizes and models, avoids scratches on the plate, reduces transportation time and improves transportation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a plate output machine and a plate storage warehouse. The plate output machine comprises at least one first discharging mechanism, a first transmission shaft, a first driving mechanism, at least one second discharging mechanism, a second transmission shaft, a second driving mechanism, an output conveying mechanism and an output driving mechanism. The at least one first discharging mechanism is arranged in parallel; the first transmission shaft penetrates through each first discharging mechanism and is connected with each first discharging mechanism. The first driving mechanism is connected with the target first discharging mechanism; the at least one second discharging mechanism is arranged in parallel; the second transmission shaft penetrates through each second discharging mechanism and is connected with the corresponding second discharging mechanism. The second driving mechanism is connected with the target second discharging mechanism; the second discharging mechanism is inserted into the output conveying mechanism. And the output driving mechanism is connected with the output conveying mechanism. According to the plate conveying device, the plates are prevented from being scratched, the plate conveying time is shortened, and the plate conveying efficiency is improved.
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Description

Technical Field

[0001] The present application relates to the field of mechanical technology, and in particular to a plate output machine and a plate storage warehouse. Background Art

[0002] With the development of society, the market is facing the development needs of consumers for personalization and customization. Especially in the panel furniture industry, customers' customization needs are getting higher and higher, so it is necessary to discharge panels of different sizes and models.

[0003] However, the inventors have found that most companies currently use manual handling to discharge the plates, which not only easily causes scratches on the plates, but also takes a long time to transport the plates and has low transportation efficiency. Utility Model Content

[0004] The present application provides a plate output machine and a plate storage warehouse, which are used to solve the problems that the current plate output method easily causes scratches on the plates, and the plate transportation time is long and the transportation efficiency is low.

[0005] In a first aspect, the present application provides a plate output machine, comprising: at least one first unloading mechanism, a first transmission shaft, a first driving mechanism, at least one second unloading mechanism, a second transmission shaft, a second driving mechanism, an output transport mechanism, and an output driving mechanism;

[0006] The first unloading mechanism is used to carry and transport the plate, and at least one of the first unloading mechanisms is arranged parallel to each other;

[0007] The first transmission shaft passes through each of the first material discharging mechanisms and is respectively connected to each of the first material discharging mechanisms, and the first transmission shaft is used to make at least one of the first material discharging mechanisms rotate synchronously;

[0008] The first driving mechanism is connected to a target first material discharging mechanism, and the first driving mechanism is used to output a driving torque to the target first material discharging mechanism; the target first material discharging mechanism is one of at least one of the first material discharging mechanisms;

[0009] The second unloading mechanism is used to carry and transport the plate, and at least one of the second unloading mechanisms is arranged parallel to each other;

[0010] The second transmission shaft passes through each of the second material discharging mechanisms and is respectively connected to each of the second material discharging mechanisms, and the second transmission shaft is used to make at least one of the second material discharging mechanisms rotate synchronously;

[0011] The second driving mechanism is connected to a target second material discharging mechanism, and the second driving mechanism is used to output a driving torque to the target second material discharging mechanism; the target second material discharging mechanism is one of at least one of the second material discharging mechanisms;

[0012] The second unloading mechanism is inserted into the output transport mechanism, and the output transport mechanism is used to carry and transport the plate output by the second unloading mechanism;

[0013] The output driving mechanism is connected to the output transport mechanism, and the output driving mechanism is used to provide driving torque to the output transport mechanism, and the driving torque is used to drive the output transport mechanism to transport the plate.

[0014] In the above scheme, the first unloading mechanism includes: a first unloading belt, a first unloading driving wheel, a first unloading driven wheel, a first unloading main bracket, a first unloading slave bracket, a first unloading support plate, at least one first unloading support seat and a first unloading support frame;

[0015] The first unloading belt is used for carrying and transporting the plate;

[0016] The first unloading belt is sleeved on the first unloading driving wheel and the first unloading driven wheel, the first unloading driving wheel is connected to the first transmission shaft, the first unloading driving wheel is rotatably connected to the first unloading main bracket, and the first unloading driven wheel is rotatably connected to the first unloading slave bracket;

[0017] One end of the first material cutting support plate is connected to the first material cutting main bracket, and the other end of the first material cutting support plate is connected to the first material cutting slave bracket; the bottom of the first material cutting support plate is connected to at least one of the first material cutting support seats, and the first material cutting support seat is fixed on the first material cutting support frame.

[0018] In the above solution, the first transmission shaft includes: at least one first rotating shaft and at least one first coupling;

[0019] One of the first couplings is connected to one side of one of the first material unloading driving wheels;

[0020] One end of the first rotating shaft is connected to a first coupling on a first material unloading driving wheel of one of the two adjacent first material unloading mechanisms;

[0021] The other end of the first rotating shaft is connected to the first coupling on the first material unloading driving wheel of the other one of the two adjacent first material unloading mechanisms.

[0022] In the above scheme, the first driving mechanism includes: a first driving belt, a first driving main bracket, a first driving driving wheel, a first driving slave bracket, a first driving driven wheel, a first belt driver, and a first driving motor;

[0023] The first driving belt is sleeved on the first driving active wheel and the first driving driven wheel, the first driving active wheel is connected to the first transmission shaft, the first driving active wheel is rotatably connected to the first driving main bracket, and the first driving driven wheel is rotatably connected to the first driving slave bracket;

[0024] One end of the first driving support plate is connected to the first driving main support, and the other end of the first driving support plate is connected to the first driving slave support;

[0025] One end of the first belt driver is connected to the first driving active wheel, and the other end of the first belt driver is connected to the first driving motor; the first driving driven wheel is connected to the first transmission shaft.

[0026] In the above scheme, the second unloading mechanism includes: a second unloading belt, a second unloading driving wheel, a second unloading driven wheel, a second unloading main bracket, a second unloading slave bracket, a second unloading support plate, and a second unloading support frame;

[0027] The second unloading belt is used for carrying and transporting the plate;

[0028] The second unloading belt is sleeved on the second unloading driving wheel and the second unloading driven wheel, the second unloading driving wheel is connected to the second transmission shaft, the second unloading driving wheel is rotatably connected to the second unloading main bracket, and the second unloading driven wheel is rotatably connected to the second unloading slave bracket;

[0029] One end of the second material cutting support plate is connected to the second material cutting main bracket, and the other end of the second material cutting support plate is connected to the second material cutting slave bracket; the bottom of the second material cutting support plate is fixed on the second material cutting support frame.

[0030] In the above solution, the second transmission shaft includes: at least one second rotating shaft and at least one second coupling;

[0031] A second coupling is connected to one side of the second unloading driving wheel;

[0032] One end of the second rotating shaft is connected to a second coupling on a second material unloading driving wheel of one of the two adjacent second material unloading mechanisms;

[0033] The other end of the second rotating shaft is connected to the second coupling on the second material unloading driving wheel of the other of the two adjacent second material unloading mechanisms.

[0034] In the above scheme, the second driving mechanism includes: a second driving belt, a second driving main bracket, a second driving driving wheel, a second driving slave bracket, a second driving driven wheel, a second belt driver, and a second driving motor;

[0035] The second driving belt is sleeved on the second driving active wheel and the second driving driven wheel, the second driving active wheel is connected to the second transmission shaft, the second driving active wheel is rotatably connected to the second driving main bracket, and the second driving driven wheel is rotatably connected to the second driving slave bracket;

[0036] One end of the second driving support plate is connected to the second driving main support, and the other end of the second driving support plate is connected to the second driving slave support;

[0037] One end of the second belt driver is connected to the second driving active wheel, and the other end of the second belt driver is connected to the second driving motor; the second driving driven wheel is connected to the second transmission shaft.

[0038] In the above solution, the output transport mechanism includes: at least one output roller and at least one output seat;

[0039] The two ends of the output roller are rotatably connected to one of the output seats, respectively, and the output seat is fixed on the second material unloading support frame;

[0040] The output roller is parallel to the second unloading belt, and the top of the output roller is on the same horizontal plane as the upper surface of the second unloading belt.

[0041] In the above solution, the output drive mechanism includes: an output drive shaft, at least one output drive belt, an output driven wheel, an output chain, and an output drive motor;

[0042] The output drive belt is sleeved on the output drive shaft and the output roller;

[0043] The output driven wheel is coaxially connected to the output drive shaft;

[0044] The output chain is sleeved on the output driven wheel and the output driving motor.

[0045] In a second aspect, the present application provides a plate material storage warehouse, comprising: a frame and the plate output machine mentioned above;

[0046] The first unloading mechanism of the plate output machine is located inside the frame;

[0047] The second unloading mechanism of the plate output machine is located outside the frame.

[0048] The present application provides a plate output machine and a plate storage warehouse, which realize the transportation of plates of different sizes and models by setting at least one first unloading mechanism parallel to each other; and by setting a first transmission shaft, at least one first unloading mechanism rotates synchronously to ensure the smoothness of the transportation of the plates.

[0049] By setting at least one second unloading mechanism parallel to each other, the transportation of plates of different sizes and models can be realized; by setting a second rotating shaft, at least one second unloading mechanism can be rotated synchronously to ensure the smoothness of the transportation of the plates.

[0050] By inserting the second unloading mechanism into the output transport mechanism, the second unloading mechanism is not impacted when transferring the plate to the output transport mechanism, thereby preventing the plate from being scratched or damaged. Therefore, the present application achieves the technical effect of smoothly transporting plates of different sizes and models and delivering them to a designated location by using the output mechanism and the unloading mechanism, thereby not only preventing the plate from being scratched, but also reducing the transport time of the plate and improving the transport efficiency of the plate. BRIEF DESCRIPTION OF THE DRAWINGS

[0051] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and, together with the description, serve to explain the principles of the present application.

[0052] Figure 1 A schematic diagram of the structure of a plate output machine provided in this application;

[0053] Figure 2 A schematic diagram of the side structure of a plate output machine provided in the present application;

[0054] Figure 3 A schematic structural diagram of a plate output machine and a plate storage bin provided in this application.

[0055] Reference numerals:

[0056] 1: The first unloading mechanism;

[0057] 2: First transmission shaft;

[0058] 3: The first driving mechanism;

[0059] 4: The second unloading mechanism;

[0060] 5: Second transmission shaft;

[0061] 6: second driving mechanism;

[0062] 7: Output transport mechanism;

[0063] 8: Output drive mechanism;

[0064] 9: Framework;

[0065] 11: The first unloading belt;

[0066] 12: First unloading driving wheel;

[0067] 13: First unloading driven wheel;

[0068] 14: The first blanking main bracket;

[0069] 15: First unloading from the bracket;

[0070] 16: first blanking support plate;

[0071] 17: First blanking support seat;

[0072] 18: first blanking support frame;

[0073] 21: first rotating shaft;

[0074] 22: first coupling;

[0075] 31: first driving belt;

[0076] 32: first driving main bracket;

[0077] 33: first driving wheel;

[0078] 34: first drive slave bracket;

[0079] 35: first driving driven wheel;

[0080] 36: first belt drive;

[0081] 37: first driving support plate;

[0082] 41: second unloading belt;

[0083] 42: second unloading driving wheel;

[0084] 43: second unloading driven wheel;

[0085] 44: Second blanking main support;

[0086] 45: second unloading from the bracket;

[0087] 46: second blanking support plate;

[0088] 47: second material unloading support frame;

[0089] 51: second rotating shaft;

[0090] 52: second coupling;

[0091] 61: second driving belt;

[0092] 62: second driving main bracket;

[0093] 63: second driving wheel;

[0094] 64: second drive slave bracket;

[0095] 65: second driving driven wheel;

[0096] 66: second belt drive;

[0097] 67: second driving motor;

[0098] 68: second driving support plate;

[0099] 71: output roller;

[0100] 72: output socket;

[0101] 81: output drive shaft;

[0102] 82: output drive belt;

[0103] 83: output driven wheel;

[0104] 84: output chain;

[0105] 85: output drive motor;

[0106] 91: Column;

[0107] 92: beam.

[0108] The above drawings have shown clear embodiments of the present application, which will be described in more detail later. These drawings and text descriptions are not intended to limit the scope of the present application in any way, but to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments. DETAILED DESCRIPTION

[0109] Exemplary embodiments will be described in detail herein, examples of which are shown in the accompanying drawings. When the following description refers to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the embodiments of the present application. Instead, they are merely examples of devices and methods consistent with some aspects of the embodiments of the present application as detailed in the appended claims.

[0110] The following specific embodiments are used to describe in detail the technical solutions of the embodiments of the present application and how the technical solutions of the embodiments of the present application solve the current problems. The following specific embodiments can be combined with each other, and the same or similar concepts or processes may not be repeated in some embodiments. The embodiments of the embodiments of the present application will be described below in conjunction with the accompanying drawings.

[0111] See also Figure 1 and Figure 2 , the embodiment of the present application provides a plate output machine, including: at least one first unloading mechanism 1, a first transmission shaft 2, a first driving mechanism 3, at least one second unloading mechanism 4, a second transmission shaft 5, a second driving mechanism, an output transport mechanism 7 and an output driving mechanism 8;

[0112] The first unloading mechanism 1 is used to carry and transport the plate, and at least one first unloading mechanism 1 is arranged parallel to each other;

[0113] The first transmission shaft 2 passes through each first material discharging mechanism 1 and is respectively connected to each first material discharging mechanism 1. The first transmission shaft 2 is used to make at least one first material discharging mechanism 1 rotate synchronously;

[0114] The first driving mechanism 3 is connected to the target first material discharging mechanism 1, and the first driving mechanism 3 is used to output driving torque to the target first material discharging mechanism 1; the target first material discharging mechanism 1 is one of the at least one first material discharging mechanism 1;

[0115] The second unloading mechanism 4 is used to carry and transport the plate, and at least one second unloading mechanism 4 is arranged parallel to each other;

[0116] The second transmission shaft 5 passes through each second unloading mechanism 4 and is respectively connected to each second unloading mechanism 4. The second transmission shaft 5 is used to make at least one second unloading mechanism 4 rotate synchronously;

[0117] The second driving mechanism is connected to the target second unloading mechanism 4, and the second driving mechanism is used to output driving torque to the target second unloading mechanism 4; the target second unloading mechanism 4 is one of the at least one second unloading mechanism 4;

[0118] The second unloading mechanism 4 is inserted into the output transport mechanism 7, and the output transport mechanism 7 is used to carry and transport the plate output by the second unloading mechanism 4;

[0119] The output driving mechanism 8 is connected to the output transporting mechanism 7 . The output driving mechanism 8 is used to provide a driving torque to the output transporting mechanism 7 . The driving torque is used to drive the output transporting mechanism 7 to transport the plate.

[0120] In this example, at least one mutually parallel first unloading mechanism 1 is provided to realize the transportation of plates of different sizes and models.

[0121] By providing the first transmission shaft 2, at least one first unloading mechanism 1 is allowed to rotate synchronously, so as to ensure the smoothness of the transportation of the plate.

[0122] By arranging at least one second unloading mechanism 4 parallel to each other, the transportation of plates of different sizes and models can be realized.

[0123] By setting a second rotating shaft, at least one second unloading mechanism 4 can rotate synchronously to ensure the smoothness of the transportation of the plate.

[0124] By inserting the second unloading mechanism 4 into the output transport mechanism 7, the second unloading mechanism 4 is protected from impact during the process of transferring the sheet material to the output transport mechanism 7, thereby preventing the sheet material from being scratched or damaged.

[0125] The plate is transported by the output transport mechanism 7 to a designated location, thereby not only preventing the plate from being scratched, but also reducing the transport time of the plate and improving the transport efficiency of the plate.

[0126] The present application achieves the technical effect of smoothly transporting plates of different sizes and models and delivering them to designated locations by using an output mechanism and a feeding mechanism. Therefore, it not only avoids scratches on the plates, but also reduces the delivery time of the plates and improves the delivery efficiency of the plates.

[0127] In a preferred embodiment, the first unloading mechanism 1 comprises: a first unloading belt 11, a first unloading driving wheel 12, a first unloading driven wheel 13, a first unloading main bracket 14, a first unloading slave bracket 15, a first unloading support plate 16, at least one first unloading support seat 17 and a first unloading support frame 18;

[0128] The first unloading belt 11 is used for carrying and transporting the plate;

[0129] The first unloading belt 11 is sleeved on the first unloading driving wheel 12 and the first unloading driven wheel 13, the first unloading driving wheel 12 is connected to the first transmission shaft 2, the first unloading driving wheel 12 is rotatably connected to the first unloading main bracket 14, and the first unloading driven wheel 13 is rotatably connected to the first unloading slave bracket 15;

[0130] One end of the first material unloading support plate 16 is connected to the first material unloading main bracket 14, and the other end of the first material unloading support plate 16 is connected to the first material unloading secondary bracket 15; the bottom of the first material unloading support plate 16 is connected to at least one first material unloading support seat 17, and the first material unloading support seat 17 is fixed on the first material unloading support frame 18.

[0131] In this example, by providing the first unloading driving wheel 12 and the first unloading driven wheel 13, the technical effect of driving the first unloading belt 11 is achieved;

[0132] By setting the first unloading main bracket 14 and the first unloading slave bracket 15, the technical effect of fixing the first unloading driving wheel 12 and the first unloading driven wheel 13 is achieved;

[0133] By setting the first unloading support plate 16 to fix the distance between the first unloading main bracket 14 and the first unloading slave bracket 15, it is ensured that the first unloading belt 11 is kept in a taut state, ensuring that the plate has sufficient supporting force.

[0134] By providing the first unloading support seat 17 , the first unloading support plate 16 can be firmly fixed on the first unloading support frame 18 , avoiding direct contact between the first unloading support plate 16 and the first unloading support frame 18 , causing the first unloading belt 11 to contact the first unloading support frame 18 .

[0135] In a preferred embodiment, the first transmission shaft 2 includes: at least one first rotating shaft 21 and at least one first coupling 22;

[0136] A first coupling 22 is connected to one side of a first unloading driving wheel 12;

[0137] One end of the first rotating shaft 21 is connected to the first coupling 22 on the first material unloading driving wheel 12 of one of the two adjacent first material unloading mechanisms 1;

[0138] The other end of the first rotating shaft 21 is connected to the first coupling 22 on the first material unloading driving wheel 12 of the other one of the two adjacent first material unloading mechanisms 1 .

[0139] In this example, the user only needs to disassemble or disassemble the first coupling 22 as needed to achieve the technical effect of adjusting the number of the first rotating shaft 21 and the first coupling 22, so as to increase or decrease the number of the first unloading mechanism 1 to realize the transportation of plates of different sizes and models.

[0140] In a preferred embodiment, the first driving mechanism 3 includes: a first driving belt 31, a first driving main bracket 32, a first driving driving wheel 33, a first driving slave bracket 34, a first driving driven wheel 35, a first belt driver 36, and a first driving motor (not shown in the figure);

[0141] The first driving belt 31 is sleeved on the first driving driving wheel 33 and the first driving driven wheel 35, the first driving driving wheel 33 is connected to the first transmission shaft 2, the first driving driving wheel 33 is rotatably connected to the first driving main bracket 32, and the first driving driven wheel 35 is rotatably connected to the first driving slave bracket 34;

[0142] One end of the first driving support plate 37 is connected to the first driving main support 32, and the other end of the first driving support plate 37 is connected to the first driving slave support 34;

[0143] One end of the first belt driver 36 is connected to the first driving active wheel 33 , and the other end of the first belt driver 36 is connected to the first driving motor; the first driven driving wheel 35 is connected to the first transmission shaft 2 .

[0144] In this example, the technical effect of driving the first drive belt 31 is achieved by setting the first drive active wheel 33 and the first drive driven wheel 35; the technical effect of fixing the first drive active wheel 33 and the first drive driven wheel 35 is achieved by setting the first drive main bracket 32 ​​and the first drive slave bracket 34.

[0145] By setting the first driving support plate 38 to fix the distance between the first driving main bracket 32 ​​and the first driving slave bracket 34, it is ensured that the first driving belt 31 is continuously kept in a taut state, ensuring that the driving torque of the first driving motor can be transmitted to the first transmission shaft 2 to the greatest extent.

[0146] The first driving motor is arranged to transmit the driving torque to the first driving active wheel 33 through the first belt driver 36 , and then to the first driving driven wheel 35 through the first driving belt 31 , so as to output the driving torque to the first transmission shaft 2 .

[0147] Specifically, one driving wheel of the first belt drive 36 is coaxially connected to the first driving driving wheel 33, and the other driving wheel of the first belt drive 36 is coaxially connected to the motor shaft of the first motor. The first motor transmits torque to the first driving driving wheel 33 through the belt of the first belt drive 36.

[0148] In a preferred embodiment, the second unloading mechanism 4 includes: a second unloading belt 41, a second unloading driving wheel 42, a second unloading driven wheel 43, a second unloading main bracket 44, a second unloading slave bracket 45, a second unloading support plate 46 and a second unloading support frame 47;

[0149] The second unloading belt 41 is used for carrying and transporting the plate;

[0150] The second unloading belt 41 is sleeved on the second unloading driving wheel 42 and the second unloading driven wheel 43. The second unloading driving wheel 42 is connected to the second transmission shaft 5. The second unloading driving wheel 42 is rotatably connected to the second unloading main bracket 44. The second unloading driven wheel 43 is rotatably connected to the second unloading slave bracket 45.

[0151] One end of the second material unloading support plate 46 is connected to the second material unloading main bracket 44 , and the other end of the second material unloading support plate 46 is connected to the second material unloading secondary bracket 45 ; the bottom of the second material unloading support plate 46 is fixed on the second material unloading support frame 47 .

[0152] In this example, the second unloading driving wheel 42 and the second unloading driven wheel 43 are provided to achieve the technical effect of driving the second unloading belt 41;

[0153] By providing the second unloading main bracket 44 and the second unloading slave bracket 45, the technical effect of fixing the second unloading driving wheel 42 and the second unloading driven wheel 43 is achieved;

[0154] The second unloading support plate 46 is provided to fix the distance between the second unloading main support 44 and the second unloading slave support 45, so as to ensure that the second unloading belt 41 is kept in a taut state and the plate has sufficient supporting force.

[0155] By providing the second unloading support seat 47 , the second unloading support plate 46 can be firmly fixed on the second unloading support frame 47 , avoiding direct contact between the second unloading support plate 46 and the second unloading support frame 47 , causing the second unloading belt 41 to contact with the second unloading support frame 47 .

[0156] In a preferred embodiment, the second transmission shaft 5 includes: at least one second rotating shaft 51 and at least one second coupling 52;

[0157] A second coupling 52 is connected to one side of a second unloading driving wheel 42;

[0158] One end of the second rotating shaft 51 is connected to a second coupling 52 on a second material unloading driving wheel 42 of one of the two adjacent second material unloading mechanisms 4;

[0159] The other end of the second rotating shaft 51 is connected to the second coupling 52 on the second material unloading driving wheel 42 of the other second material unloading mechanism 4 among the two adjacent second material unloading mechanisms 4 .

[0160] In this example, by setting the second rotating shaft 51 and the second coupling 52, the user can disassemble or add the second coupling 52 as needed to adjust the number of second rotating shafts 51 and then adjust the number of second unloading mechanisms 4, thereby expanding the types of sizes and models of plates that can be transported by this application.

[0161] In a preferred embodiment, the second driving mechanism includes: a second driving belt 61, a second driving main bracket 62, a second driving driving wheel 63, a second driving slave bracket 64, a second driving driven wheel 65, a second belt driver 66, and a second driving motor 67;

[0162] The second driving belt 61 is sleeved on the second driving driving wheel 63 and the second driving driven wheel 65, the second driving driving wheel 63 is connected to the second transmission shaft 5, the second driving driving wheel 63 is rotatably connected to the second driving main bracket 62, and the second driving driven wheel 65 is rotatably connected to the second driving slave bracket 64;

[0163] One end of the second driving support plate 68 is connected to the second driving main bracket 62, and the other end of the second driving support plate 68 is connected to the second driving slave bracket 64;

[0164] One end of the second belt driver 66 is connected to the second driving active wheel 63 , and the other end of the second belt driver 66 is connected to the second driving motor 67 ; the second driving driven wheel 65 is connected to the second transmission shaft 5 .

[0165] In this example, the technical effect of driving the second drive belt 61 is achieved by setting the second drive active wheel 63 and the second drive driven wheel 65; the technical effect of fixing the second drive active wheel 63 and the second drive driven wheel 65 is achieved by setting the second drive main bracket 62 and the second drive slave bracket 64.

[0166] By setting the second driving support plate 68 to fix the distance between the second driving main bracket 62 and the second driving slave bracket 64, it is ensured that the second driving belt 61 is kept in a taut state, ensuring that the driving torque of the second driving motor 67 can be transmitted to the second transmission shaft 5 to the greatest extent.

[0167] The second drive motor 67 is provided to transmit the drive torque to the second drive driving wheel 63 through the second belt driver 66 , and then transmit it to the second drive driven wheel 65 through the second drive belt 61 , so as to output the drive torque to the second transmission shaft 5 .

[0168] Specifically, one driving wheel of the second belt drive 66 is coaxially connected to the second driving driving wheel 63, and the other driving wheel of the second belt drive 66 is coaxially connected to the motor shaft of the second motor. The second motor transmits torque to the second driving driving wheel 63 through the belt of the second belt drive 66.

[0169] In a preferred embodiment, the output transport mechanism 7 includes: at least one output roller 71 and at least one output seat 72;

[0170] The two ends of the output roller 71 are rotatably connected to an output seat 72, and the output seat 72 is fixed on the second unloading support frame 47;

[0171] The output roller 71 is parallel to the second unloading belt 41 , and the top of the output roller 71 is on the same horizontal plane as the upper surface of the second unloading belt 41 .

[0172] In this example, the plate is transported by the output roller 71 and output to a designated location.

[0173] In this embodiment, the rolling direction of at least one output roller 71 is perpendicular to the rotation direction of the second unloading belt 41, so that when the plate on the second unloading belt 41 receives the rolling driving force of the output roller 71, it can move in a direction perpendicular to the second unloading belt 41 to move the plate to a preset unloading position.

[0174] In a preferred embodiment, the output drive mechanism 8 includes: an output drive shaft 81, at least one output drive belt 82, an output driven wheel 83, an output chain 84, and an output drive motor 85;

[0175] The output drive belt 82 is sleeved on the output drive shaft 81 and the output roller 71;

[0176] The output driven wheel 83 is coaxially connected to the output drive shaft 81;

[0177] The output chain 84 is sleeved on the output driven wheel 83 and the output driving motor 85 .

[0178] In this example, the output drive motor 85 transmits the torque to the output driven wheel 83 through the output chain 84, and outputs it to the output drive shaft 81 through the output driven wheel 83. The output drive shaft 81 rotates to drive the output drive belt 82, and the output drive belt 82 rotates to rotate the output roller 71, thereby achieving the technical effect of moving the plate through the output roller 71.

[0179] See also Figure 3 , the present application also provides a plate material storage warehouse, comprising: a frame 9 and the above-mentioned plate output machine;

[0180] The first unloading mechanism 1 of the plate output machine is located inside the frame 9;

[0181] The second unloading mechanism 4 of the plate output machine is located outside the frame 9 .

[0182] In this example, the frame 9 is a frame structure constructed by interlacing a plurality of columns 91 and a plurality of beams 92 . The frame structure has at least one storage space, and each storage space is used to store at least one plate.

[0183] It should be noted that, in this article, the terms "include", "comprises" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, an element defined by the sentence "comprises a ..." does not exclude the existence of other identical elements in the process, method, article or device including the element.

[0184] Those skilled in the art will readily come to other embodiments of the present application after considering the specification and practicing the utility model disclosed herein. The present application embodiment is intended to cover any variation, use or adaptation of the present application embodiment, which follows the general principles of the present application embodiment and includes common knowledge or customary technical means in the art that are not disclosed in the present application embodiment. The specification and embodiments are to be regarded as exemplary only, and the true scope and spirit of the present application embodiment are indicated by the following claims.

[0185] It should be understood that the embodiments of the present application are not limited to the precise structures described above and shown in the drawings, and various modifications and changes can be made without departing from the scope thereof. The scope of the embodiments of the present application is limited only by the appended claims.

Claims

1. A plate output machine, characterized in that: include: at least one first unloading mechanism, a first transmission shaft, a first drive mechanism, at least one second unloading mechanism, a second transmission shaft, a second drive mechanism, an output transport mechanism and an output drive mechanism; The first unloading mechanism is used to carry and transport the plate, and at least one of the first unloading mechanisms is arranged parallel to each other; The first transmission shaft passes through each of the first material discharging mechanisms and is respectively connected to each of the first material discharging mechanisms, and the first transmission shaft is used to make at least one of the first material discharging mechanisms rotate synchronously; The first driving mechanism is connected to a target first material discharging mechanism, and the first driving mechanism is used to output a driving torque to the target first material discharging mechanism; the target first material discharging mechanism is one of at least one of the first material discharging mechanisms; The second unloading mechanism is used to carry and transport the plate, and at least one of the second unloading mechanisms is arranged parallel to each other; The second transmission shaft passes through each of the second material discharging mechanisms and is respectively connected to each of the second material discharging mechanisms, and the second transmission shaft is used to make at least one of the second material discharging mechanisms rotate synchronously; The second driving mechanism is connected to a target second material discharging mechanism, and the second driving mechanism is used to output a driving torque to the target second material discharging mechanism; the target second material discharging mechanism is one of at least one of the second material discharging mechanisms; The second unloading mechanism is inserted into the output transport mechanism, and the output transport mechanism is used to carry and transport the plate output by the second unloading mechanism; The output driving mechanism is connected to the output transport mechanism, and the output driving mechanism is used to provide driving torque to the output transport mechanism, and the driving torque is used to drive the output transport mechanism to transport the plate.

2. The sheet material output machine according to claim 1, characterized in that: The first unloading mechanism comprises: a first unloading belt, a first unloading driving wheel, a first unloading driven wheel, a first unloading main bracket, a first unloading slave bracket, a first unloading support plate, at least one first unloading support seat and a first unloading support frame; The first unloading belt is used for carrying and transporting the plate; The first unloading belt is sleeved on the first unloading driving wheel and the first unloading driven wheel, the first unloading driving wheel is connected to the first transmission shaft, the first unloading driving wheel is rotatably connected to the first unloading main bracket, and the first unloading driven wheel is rotatably connected to the first unloading slave bracket; One end of the first material cutting support plate is connected to the first material cutting main bracket, and the other end of the first material cutting support plate is connected to the first material cutting slave bracket; the bottom of the first material cutting support plate is connected to at least one of the first material cutting support seats, and the first material cutting support seat is fixed on the first material cutting support frame.

3. The sheet material output machine according to claim 2, characterized in that: The first transmission shaft comprises: at least one first rotating shaft and at least one first coupling; One of the first couplings is connected to one side of one of the first material unloading driving wheels; One end of the first rotating shaft is connected to a first coupling on a first material unloading driving wheel of one of the two adjacent first material unloading mechanisms; The other end of the first rotating shaft is connected to the first coupling on the first material unloading driving wheel of the other one of the two adjacent first material unloading mechanisms.

4. The sheet material output machine according to claim 1, characterized in that: The first driving mechanism comprises: a first driving belt, a first driving main bracket, a first driving driving wheel, a first driving slave bracket, a first driving driven wheel, a first belt driver, and a first driving motor; The first driving belt is sleeved on the first driving active wheel and the first driving driven wheel, the first driving active wheel is connected to the first transmission shaft, the first driving active wheel is rotatably connected to the first driving main bracket, and the first driving driven wheel is rotatably connected to the first driving slave bracket; One end of the first driving support plate is connected to the first driving main support, and the other end of the first driving support plate is connected to the first driving slave support; One end of the first belt driver is connected to the first driving active wheel, and the other end of the first belt driver is connected to the first driving motor; the first driving driven wheel is connected to the first transmission shaft.

5. The sheet material output machine according to claim 1, characterized in that: The second unloading mechanism comprises: a second unloading belt, a second unloading driving wheel, a second unloading driven wheel, a second unloading main bracket, a second unloading slave bracket, a second unloading support plate, and a second unloading support frame; The second unloading belt is used for carrying and transporting the plate; The second unloading belt is sleeved on the second unloading driving wheel and the second unloading driven wheel, the second unloading driving wheel is connected to the second transmission shaft, the second unloading driving wheel is rotatably connected to the second unloading main bracket, and the second unloading driven wheel is rotatably connected to the second unloading slave bracket; One end of the second material cutting support plate is connected to the second material cutting main bracket, and the other end of the second material cutting support plate is connected to the second material cutting slave bracket; the bottom of the second material cutting support plate is fixed on the second material cutting support frame.

6. The sheet material output machine according to claim 5, characterized in that: The second transmission shaft comprises: at least one second rotating shaft and at least one second coupling; A second coupling is connected to one side of the second unloading driving wheel; One end of the second rotating shaft is connected to a second coupling on a second material unloading driving wheel of one of the two adjacent second material unloading mechanisms; The other end of the second rotating shaft is connected to the second coupling on the second material unloading driving wheel of the other of the two adjacent second material unloading mechanisms.

7. The sheet material output machine according to claim 1, characterized in that: The second driving mechanism comprises: a second driving belt, a second driving main bracket, a second driving driving wheel, a second driving slave bracket, a second driving driven wheel, a second belt driver, and a second driving motor; The second driving belt is sleeved on the second driving active wheel and the second driving driven wheel, the second driving active wheel is connected to the second transmission shaft, the second driving active wheel is rotatably connected to the second driving main bracket, and the second driving driven wheel is rotatably connected to the second driving slave bracket; One end of the second driving support plate is connected to the second driving main support, and the other end of the second driving support plate is connected to the second driving slave support; One end of the second belt driver is connected to the second driving active wheel, and the other end of the second belt driver is connected to the second driving motor; the second driving driven wheel is connected to the second transmission shaft.

8. The sheet material output machine according to claim 5, characterized in that: The output transport mechanism comprises: at least one output roller and at least one output seat; The two ends of the output roller are rotatably connected to one of the output seats, respectively, and the output seat is fixed on the second material unloading support frame; The output roller is parallel to the second unloading belt, and the top of the output roller is on the same horizontal plane as the upper surface of the second unloading belt.

9. The sheet material output machine according to claim 8, characterized in that: The output drive mechanism comprises: an output drive shaft, at least one output drive belt, an output driven wheel, an output chain, and an output drive motor; The output drive belt is sleeved on the output drive shaft and the output roller; The output driven wheel is coaxially connected to the output drive shaft; The output chain is sleeved on the output driven wheel and the output driving motor.

10. A sheet material storage warehouse, characterized in that: include: A frame and a sheet material delivery machine as claimed in any one of claims 1 to 9; The first unloading mechanism of the plate output machine is located inside the frame; The second unloading mechanism of the plate output machine is located outside the frame.