A smart agricultural irrigation shared power supply control cabinet

By setting up reinforcement seats and adjustment components in the base support assembly of the intelligent agricultural irrigation control cabinet, it forms multi-point contact with the slope, which solves the problem that the control cabinet cannot be stably parked on the slope, and achieves the normality and safety of irrigation power supply.

CN119695667BActive Publication Date: 2025-06-06CHENGDU SIHAI TECH CO LTD
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Patent Information

Application Number
CN202510211160.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-25
Publication Date
2025-06-06
Estimated Expiration
2045-02-25

AI Technical Summary

Technical Problem

When used on the slope, the intelligent agricultural irrigation control cabinet cannot be parked stably due to wheels, resulting in limited stability and affecting the normality of irrigation power supply.

Method used

An intelligent agricultural irrigation shared power supply control cabinet is designed. By setting reinforcement seats and adjustment components in the base support assembly, it can form multi-point contact with the slope surface, ensuring the stability and flexibility of the control cabinet on the slope surface.

Benefits of technology

By forming a firm engagement between the reinforcement seat and the slope, the control cabinet does not slide down, and the stable placement and flexible arrangement on the slope are achieved, ensuring the normality and safety of irrigation power supply.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an intelligent agricultural irrigation shared power supply control cabinet, comprising: a control cabinet body and an adjustment component. Through the setting of the adjustment component, the angle between the reinforcement seat and the slope can be adjusted after adjustment, so as to ensure that the control cabinet body can be stably placed on the inclined ground, reduce the shaking or tilting caused by inappropriate angles, and prevent the control cabinet body from sliding or overturning on the slope, thereby improving the overall stability, which is beneficial to the safety of the control cabinet body during irrigation operations. Through the setting of the base support component, the present invention can realize the multi-point contact between the bottom of the reinforcement seat and the slope, so that the slope can be flexibly arranged according to actual terrain conditions, ensuring that the control cabinet body is placed in the best working position, so as to ensure that the control cabinet body will not slide down after being parked on the slope, which helps to ensure that the control cabinet body can provide normal power supply for agricultural irrigation.
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Description

Technical Field

[0001] The present invention relates to the technical field of agricultural irrigation control cabinets, and in particular to an intelligent agricultural irrigation shared power supply control cabinet. Background Art

[0002] Smart agricultural irrigation is a technology that uses information technology and automated control systems to achieve precise control and management of farmland irrigation. Automatic control systems are indispensable in agricultural irrigation. Fig.10 As shown, the power supply control cabinet is a switchgear, control cabinet base, measuring instruments, protective electrical appliances and auxiliary equipment assembled in a closed or semi-closed metal cabinet according to the electrical wiring requirements. The control cabinet is often used in power supply to ensure the normal irrigation use of agriculture. Since the control cabinet needs to be installed and used in different positions, the lower part of the control cabinet is mostly moved by wheels to facilitate the use of the control cabinet. When the control cabinet is in use, the wheels on the control cabinet are required to move it to the installation and use position so that the control cabinet can be parked on the slope for use. At this time, the control cabinet cannot be stably parked on the slope for use due to the wheels, resulting in shaking and instability caused by the wheels, which causes the stability of the control cabinet during operation, limiting the use of the control cabinet. Summary of the invention

[0003] The purpose of the present invention is to provide an intelligent agricultural irrigation shared power supply control cabinet. Through the arrangement of the base support assembly, the bottom of the reinforcement seat can form multi-point contact with the slope, so that the reinforcement seat can penetrate into the surface of the slope to form a firm bite, which is conducive to the control cabinet body being tightened on the slope, so that the deep-seated slope can be flexibly arranged according to the actual terrain conditions to ensure that the control cabinet body is placed in the best working position to ensure that the control cabinet body will not slide down after being parked on the slope. This helps to ensure that the control cabinet body can provide normal power supply for agricultural irrigation, so as to solve the above-mentioned deficiencies in the technology.

[0004] In order to achieve the above object, the present invention provides the following technical solution: an intelligent agricultural irrigation shared power supply control cabinet, comprising:

[0005] The control cabinet body comprises a control cabinet body and a plurality of movable wheels, and the movable wheels are used to drive the control cabinet body to move to a desired position to ensure that the control cabinet provides normal power supply to the agricultural irrigation. A storage groove for the sliding of the movable wheels is provided at the bottom of the control cabinet body; and the control cabinet body comprises a QR code, a camera, electrical components and an adjustment plate, and the adjustment plate is convenient for the height installation and support of the electric meter in the control cabinet body, and the QR code is a function for realizing a QR code charging when the device is in use.

[0006] The base support assembly is used to adjust and stably support the bottom of the control cabinet body and the slope, and flexibly arrange the control cabinet body on the slope. The base support assembly includes a mounting seat fixed to the bottom of the control cabinet body, a reinforcement seat installed at the bottom of the mounting seat to fix it to the slope, and a movable groove opened at the bottom end of the mounting seat. A mounting frame is sleeved on the reinforcement seat, and the top of the mounting frame is located in the movable groove. An adjustment assembly is provided on the mounting frame to drive the reinforcement seat to adjust the angle with the slope and keep the control cabinet body and the slope stable. An articulated seat is fixed at the middle part of the top of the mounting frame, a connecting seat is installed in the movable groove, a connecting rod is movably connected between the connecting seat and the articulated seat, a synchronization assembly is provided in the movable groove, and the synchronization assembly is used to drive the connecting seat to move along It reciprocates left and right in the movable groove, and a receiving component is provided in the synchronous component, which is used to drive the moving wheel to extend and retract into the storage groove, and move the moving wheel and the reinforcement seat synchronously on the control cabinet body and the mounting seat: and the bottom end of the reinforcement seat is a pointed tooth-shaped structure, and then the corresponding slope is tightened, and it can form multiple points of contact with the slope at the bottom of the reinforcement seat, so that the reinforcement seat can penetrate into the surface of the slope to form a firm bite effect, which can effectively prevent the sliding of the control cabinet body. At the same time, under the action of the base support assembly, it can be flexibly arranged according to the actual terrain conditions to ensure that the control cabinet body is placed in the best working position to ensure that the control cabinet body will not slide down after being parked on the slope, which helps to ensure that the control cabinet body can provide normal power supply for agricultural irrigation.

[0007] Preferably, the adjusting assembly includes a fixing cylinder fixed to one side of the mounting frame, an adjusting column fixed on the reinforcement seat, and a resistance plate slidably sleeved on the adjusting column, and the adjusting column is rotatably installed in the mounting frame and the pin slot, and a pin slot is fixed on the side of the resistance plate close to the adjusting column, and a plurality of pin slots are opened on the side of the fixing cylinder close to the pin slot, and the pin slot is plugged and unplugged from the plurality of pin slots: and the mounting frame is in a U-shaped structure, and the reinforcement seat is located in the mounting frame under the action of the adjusting column, and a distance is maintained between the reinforcement seat and the mounting frame, so that the reinforcement seat can rotate along the mounting frame, so that the angle between the reinforcement seat and the slope surface can be adjusted after adjustment, so as to ensure that the control cabinet body can be firmly placed on the inclined ground, reduce shaking or tilting caused by inappropriate angles, and prevent the control cabinet body from sliding or overturning on the slope surface, thereby improving the overall stability, which is beneficial to safety during irrigation operations.

[0008] Preferably, a guide block is fixed to a side of the interference disk adjacent to the latch column, and a guide groove for sliding the guide block is opened on the outside of the adjusting column: the moving position of the interference disk on the adjusting column is limited, and the interference disk can only slide left and right along the adjusting column, and the adjusting column cannot move, and when the interference disk rotates, it drives the adjusting column to rotate, so that the adjusting column rotates along the fixed tube and the installation frame. At the same time, when the guide block moves and interferes along the guide groove, the latch column can be stably plugged in or out of the latch groove, which is convenient for precise control between the latch column and the latch groove, reducing the time or difficulty of adjusting the reinforcement seat, and improving the convenience of the equipment.

[0009] Preferably, a threaded groove is further provided at one end of the adjusting column, a threaded contact disk is screwed in the threaded groove, and one end of the threaded contact disk extends to the outside of the threaded groove and contacts with one end of the contact disk: the adjusting column can be squeezed between the fixed tube and the threaded contact disk, so that good stability is maintained between the contact disk and the fixed tube, and the contact disk can be prevented from accidentally touching and loosening, which is beneficial to maintaining the stability of the position of the reinforcement seat after adjustment in the installation frame, and ensuring the stability of the control cabinet body and the slope.

[0010] Preferably, the synchronization component includes a forward and reverse threaded rod rotatably installed in the movable groove and a movable ring fixed at the top of the connecting seat, and the movable ring is sleeved on the outside of the forward and reverse threaded rod, a servo motor is installed on one side of the mounting seat, and the servo motor is used to drive the forward and reverse threaded rod to rotate, and a limiting groove is provided on one side of the movable groove adjacent to the movable ring, a limiting block is fixed on the outside of the movable ring, and the limiting block is located in the limiting groove: and the limiting groove and the limiting block are slidingly connected to ensure that the movable ring moves stably along the forward and reverse threaded rod, and an internal thread is provided in the movable ring to screw with the thread on the surface of the forward and reverse threaded rod, so that the movable ring moves left or right along the forward and reverse threaded rod, thereby being able to push the distance between the reinforcement seat and the slope surface to be adjusted, ensuring that the reinforcement seat and the slope surface remain stable.

[0011] Preferably, the receiving assembly includes a connecting frame installed on the moving wheel, a connecting frame fixed to the outside of the moving ring, and a slide groove opened in the mounting seat and communicating with the inside of the moving groove for the receiving frame to slide. A positioning groove opened on one side of the control cabinet body and communicating with the inside of the receiving groove for the receiving frame to insert is opened. A second contact plate is fixed on the top of the connecting frame, a first contact plate is fixed at one end of the connecting frame, and the first contact plate is located in the receiving groove and fits with the second contact plate. A reset assembly is provided on the connecting frame, and the reset assembly is used to drive the moving wheel to move along the guide in the receiving groove and support reset: and the connecting frame is slidably connected to the receiving groove, so that the movement of the connecting frame drives the moving wheel to move synchronously along the receiving groove, and The slope of the second contact plate matches that of the first contact plate, so that the movement of the receiving frame drives the first contact plate to move along the second contact plate, so that the second contact plate contacts and fits with the first contact plate, which is used to limit the upward or downward movement of the second contact plate, and then the moving wheel telescopically moves along the storage groove, which is convenient for storing the moving wheel in the storage groove, can reduce the range of the moving wheel exposed to the outside, and can prevent the moving wheel from being adsorbed by gravel inside when it is stationary, causing jamming. At the same time, storing the moving wheel can significantly improve the stability of the control cabinet body, reduce the shaking and instability factors caused by the moving wheel, and ensure the stability and safety of the control cabinet body during operation.

[0012] Preferably, the reset assembly includes a positioning column fixed in the receiving groove, a push rod fixed at the bottom end of the connecting frame, and a connecting plate fixed on one side of the moving wheel, and the push rod and the connecting plate are both sleeved on the positioning column, and a standing plate is fixed on the side of the receiving groove close to the moving wheel, and the standing plate is sleeved on the positioning column, and a spring is jointly installed between the standing plate and the push rod: and the top end of the positioning column is slidably inserted into the connecting frame, so that the inside of the connecting frame can move along the external guide of the positioning column, and the push rod is fixedly connected to the connecting plate, so that the moving wheel moves upward along the receiving groove, driving the connecting plate and the push rod to move upward along the positioning column, so that the push rod moves upward and drives the connecting frame to move upward along the storage groove.

[0013] Preferably, a fixing rod is fixedly connected between the fixing plate and the storage slot, and a through groove for inserting the fixing rod is opened at one end of the connecting plate: the connecting plate is restricted at two points in the storage slot, ensuring that the connecting plate can move stably in the storage slot, which is conducive to the stable extension and retraction of the moving wheel along the storage slot.

[0014] In the above technical solution, the technical effects and advantages provided by the present invention are:

[0015] 1. Through the setting of the base support assembly, the bottom of the reinforcement seat can form multiple points of contact with the slope, so that the reinforcement seat can penetrate into the surface of the slope to form a firm bite, which is conducive to the control cabinet body being tightened on the slope. The deep-seated slope can be flexibly arranged according to the actual terrain conditions to ensure that the control cabinet body is placed in the best working position to ensure that the control cabinet body will not slide down after being parked on the slope, which helps to ensure that the control cabinet body can provide normal power supply for agricultural irrigation.

[0016] 2. By setting the adjustment component, the angle between the reinforcement seat and the slope can be adjusted, which can ensure that the control cabinet body can be placed firmly on the inclined ground, reduce the shaking or tilting caused by inappropriate angles, and prevent the control cabinet body from sliding or overturning on the slope, thereby improving the overall stability and facilitating the safety of the control cabinet body during irrigation operations.

[0017] 3. Through the arrangement of the threaded contact disk, the fixed cylinder and the adjusting column, the adjusting column can be squeezed between the fixed cylinder and the threaded contact disk, so that the contact disk and the fixed cylinder maintain good stability, which can prevent the contact disk from accidentally touching and causing looseness, and is conducive to maintaining the stability of the position of the reinforcement seat after adjustment in the installation frame, ensuring the stability of the control cabinet body and the slope.

[0018] 4. Through the setting of the synchronous component, the reinforcement seat and the receiving component can be used to move synchronously, which can reduce unnecessary energy transfer and thus improve the force transmission efficiency of the equipment. At the same time, when the receiving component is moving, the moving wheel slides up and down along the storage groove, thereby reducing the time required for the moving wheel to extend and retract, improving the overall operating efficiency and further enhancing the flexibility of the control cabinet.

[0019] 5. By setting up the receiving components, the moving wheels can be stored in the storage grooves, and part of the moving wheels can be stored and shielded to reduce the exposed range of the moving wheels, which can prevent the moving wheels from being adsorbed by gravel when they are stationary and causing jamming. At the same time, storing the moving wheels can significantly improve the stability of the control cabinet body, reduce the shaking and instability factors caused by the moving wheels, and ensure the stability and safety of the control cabinet body during operation.

[0020] 6. Through the setting of the reset component, the coordination between the reset component and the receiving component can be achieved, which is conducive to the smooth upward or downward sliding of the moving wheel along the storage groove. At the same time, it is convenient to guide the moving wheel in the storage groove, so that the moving wheel can be reset and moved in the storage groove, reducing the time required for the extension and retraction of the moving wheel and improving the convenience of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings required for use in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in the present invention. For ordinary technicians in this field, other drawings can also be obtained based on these drawings.

[0022] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0023] Figure 2 It is a schematic diagram of the structure inside the control cabinet body of the present invention;

[0024] Figure 3 It is a structural schematic diagram of the assembly of the receiving component and the resetting component of the present invention;

[0025] Figure 4 It is a structural schematic diagram of the synchronization component of the present invention;

[0026] Figure 5 It is a structural schematic diagram of the assembly of the connecting rod and the connecting seat of the present invention;

[0027] Figure 6 An exploded view of the adjustment assembly of the present invention;

[0028] Figure 7 For the present invention Figure 3 A magnified view of the structure at A;

[0029] Figure 8 For the present invention Figure 6 A magnified view of the structure at B in FIG.

[0030] Fig. 9 It is a structural schematic diagram of the reset assembly of the present invention;

[0031] Fig.10 This is a schematic diagram of the structure of an existing control cabinet.

[0032] Description of reference numerals:

[0033] 1. Control cabinet body; 11. Moving wheels; 12. Storage slot;

[0034] 2. Base support assembly; 21. Mounting seat; 22. Moving slot; 23. Mounting frame; 24. Reinforcement seat; 25. Connecting seat; 26. Connecting rod; 27. Articulated seat;

[0035] 3. Synchronous assembly; 31. Positive and negative threaded rod; 32. Moving ring; 33. Limit block; 34. Limit groove; 35. Servo motor;

[0036] 4. receiving assembly; 41. slide slot; 42. receiving frame; 43. first contact plate; 44. second contact plate; 45. connecting frame; 46. positioning slot;

[0037] 5. Reset assembly; 51. Positioning column; 52. Connecting plate; 53. Push rod; 54. Spring; 55. Standing plate; 56. Standing rod;

[0038] 6. Adjustment assembly; 61. Adjustment column; 62. Fixing cylinder; 63. Resistance plate; 64. Latch column; 65. Latch groove; 66. Threaded groove; 67. Threaded resistance plate; 68. Guide groove; 69. Guide block. DETAILED DESCRIPTION

[0039] In order to enable those skilled in the art to better understand the technical solution of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings.

[0040] The present invention provides Figure 1-Figure 10 The intelligent agricultural irrigation shared power supply control cabinet shown includes: a control cabinet body 1 and a plurality of moving wheels 11, and the moving wheels 11 are used to drive the control cabinet body 1 to move to a desired position to ensure that the control cabinet provides normal power supply to the agricultural irrigation, and a storage groove 12 for the moving wheels 11 to slide is provided at the bottom of the control cabinet body 1;

[0041] The base support assembly 2 is used to adjust and stably support the bottom of the control cabinet body 1 and the slope, and flexibly arrange the control cabinet body 1 on the slope. The base support assembly 2 includes a mounting seat 21 fixed to the bottom of the control cabinet body 1, a reinforcement seat 24 installed at the bottom of the mounting seat 21 to fix it to the slope, and a movable groove 22 opened at the bottom end of the mounting seat 21. A mounting frame 23 is sleeved on the reinforcement seat 24, and the top of the mounting frame 23 is located in the movable groove 22. An adjustment assembly 6 is provided on the mounting frame 23 to drive the reinforcement seat 24 to adjust the angle with the slope. The control cabinet body 1 and the slope are kept stable, a hinge seat 27 is fixed at the middle of the top of the installation frame 23, a connecting seat 25 is installed in the movable groove 22, and a connecting rod 26 is movably connected between the connecting seat 25 and the hinge seat 27. A synchronization component 3 is provided in the movable groove 22, and the synchronization component 3 is used to drive the connecting seat 25 to move back and forth left and right in the movable groove 22. A receiving component 4 is provided in the synchronization component 3, which is used to drive the moving wheel 11 to extend and retract into the storage groove 12, and to synchronously move the moving wheel 11 and the reinforcement seat 24 on the control cabinet body 1 and the mounting seat 21.

[0042] The synchronization component 3 includes a forward and reverse threaded rod 31 rotatably installed in the movable groove 22 and a movable ring 32 fixed on the top of the connecting seat 25, and the movable ring 32 is sleeved on the outside of the forward and reverse threaded rod 31. A servo motor 35 is installed on one side of the mounting seat 21, and the servo motor 35 is used to drive the forward and reverse threaded rod 31 to rotate. A limiting groove 34 is provided on one side of the movable groove 22 adjacent to the movable ring 32, and a limiting block 33 is fixed on the outside of the movable ring 32, and the limiting block 33 is located in the limiting groove 34.

[0043] When the control cabinet is installed and the irrigation system is powered normally, the control cabinet body 1 is first pushed to roll under the contact between the moving wheel 11 and the ground and drive the control cabinet body 1 to move. When the control cabinet body 1 moves to a suitable position and is partially on a slope, the servo motor 35 drives the positive and negative threaded rods 31 to rotate, and then the positive and negative threaded rods 31 rotate and engage with the moving ring 32 to make the moving ring 32 move relatively or oppositely along the positive and negative threaded rods 31. At this time, the moving ring 32 moves to drive the limit block 33 to move synchronously along the limit groove 34. At the same time, the moving ring 32 moves to drive the receiving component 4 and the reset component 5 to move, which is used to move the moving wheel 11 upward along the storage groove 12, and the moving ring 32 moves to drive the connecting seat 25 to move and drive the connecting ring 32 to move. The connecting rod 26 moves, and the articulated seat 27 moves downward along the moving groove 22 under the movement of the connecting rod 26, so that the articulated seat 27 moves downward to push the installation frame 23 to approach the ground along the bottom of the installation seat 21, and as the installation frame 23 moves, it pushes the reinforcement seat 24 to contact the slope, and then the bottom of the reinforcement seat 24 forms multiple points of contact with the slope, so that the reinforcement seat 24 can penetrate into the surface of the slope to form a firm bite, which is conducive to the control cabinet body 1 being tightened on the slope. Subsequently, the reinforcement seat 24 penetrates into the slope and can be flexibly arranged according to the actual terrain conditions to ensure that the control cabinet body 1 is placed in the best working position to ensure that the control cabinet body 1 will not slide down after being parked on the slope, which helps to ensure that the control cabinet body 1 can provide normal power supply for agricultural irrigation.

[0044] refer to Figure 1-Figure 8 As shown, the adjustment component 6 includes a fixed cylinder 62 fixed on one side of the mounting frame 23, an adjustment column 61 fixed on the reinforcement seat 24, and a contact plate 63 slidably sleeved on the adjustment column 61, and the adjustment column 61 is rotatably mounted in the mounting frame 23 and the latch groove 65, a latch column 64 is fixed on the side of the contact plate 63 close to the adjustment column 61, a plurality of latch grooves 65 are provided on the side of the fixed cylinder 62 close to the latch column 64, and the latch column 64 is pluggably connected to the plurality of latch grooves 65; a guide block 69 is also fixed on the side of the contact plate 63 adjacent to the latch column 64, and a guide groove 68 for the guide block 69 to slide is provided on the outside of the adjustment column 61.

[0045] A thread groove 66 is further formed at one end of the adjusting column 61 . A threaded abutment plate 67 is threadedly disposed in the thread groove 66 . One end of the threaded abutment plate 67 extends to the outside of the thread groove 66 and abuts against one end of the abutment plate 63 .

[0046] Through the above technical solution:

[0047] When the reinforcement seat 24 moves under the mounting seat 21, the user first observes the slope of the parking position of the control cabinet body 1 and the reinforcement seat 24. When the reinforcement seat 24 needs to be adjusted, the threaded contact plate 67 is rotated to engage it with the thread groove 66, and then the threaded contact plate 67 moves linearly along the thread groove 66. At this time, the threaded contact plate 67 moves and loses contact with the contact plate 63, so that the contact plate 63 loses the clamping between the threaded contact plate 67 and the fixed cylinder 62, and the contact plate 63 is pulled to move it along the adjustment column 61, and the movement of the contact plate 63 drives the guide block 69 to move along the guide groove 68, and the movement of the contact plate 63 drives the latch column 64 to be pulled out along one of the latch grooves 65, so that the rotation of the contact plate 63 drives the adjustment column 61 to rotate along the fixed cylinder 62 and the mounting frame 23. The rotation of the reinforcement seat 24 drives the reinforcement seat 24 to rotate along the installation frame 23, and the angle between the reinforcement seat 24 and the slope is adjusted accordingly, so that the control cabinet body 1 can be placed firmly on the inclined ground, reducing the shaking or tilting caused by inappropriate angles, and preventing the control cabinet body 1 from sliding or overturning on the slope, thereby improving the overall stability, which is beneficial to the safety of the control cabinet body 1 during irrigation operation. Then, the contact plate 63 is pushed to slide along the adjustment column 61 to drive the latch column 64 to be re-inserted and fixed between another latch groove 65, so that the reinforcement seat 24 and the installation frame 23 are restricted for the first time, so that the threaded contact plate 67 is rotated in the opposite direction to screw it into the thread groove 66, and then the threaded contact plate 67 moves into the thread groove 66 and forms a contact with one end of the contact plate 63, so as to ensure that the position of the reinforcement seat 24 after adjustment is stable.

[0048] refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 7 and Fig. 9 As shown, the receiving assembly 4 includes a connecting frame 45 installed on the moving wheel 11, a receiving frame 42 fixed to the outside of the moving ring 32, and a slide groove 41 opened in the mounting seat 21 and communicating with the inside of the moving groove 22 for the receiving frame 42 to slide. A positioning groove 46 connected to the inside of the storage groove 12 for the receiving frame 42 to be inserted is opened on one side of the control cabinet body 1. A second contact plate 44 is fixed to the top of the connecting frame 45, and a first contact plate 43 is fixed to one end of the receiving frame 42, and the first contact plate 43 is located in the storage groove 12 and fits with the second contact plate 44. A reset assembly 5 is provided on the connecting frame 45, and the reset assembly 5 is used to drive the moving wheel 11 to move along the guide in the storage groove 12 and support the reset.

[0049] The reset assembly 5 includes a positioning column 51 fixed in the storage groove 12, a push rod 53 fixed at the bottom end of the connecting frame 45, and a connecting plate 52 fixed on one side of the moving wheel 11, and the push rod 53 and the connecting plate 52 are both sleeved on the positioning column 51, and a standing plate 55 is fixed on the side of the storage groove 12 close to the moving wheel 11, and the standing plate 55 is sleeved on the positioning column 51, and a spring 54 is installed between the standing plate 55 and the push rod 53; a standing rod 56 is also fixedly connected between the standing plate 55 and the storage groove 12, and a through groove for the standing rod 56 to be inserted is opened at one end of the connecting plate 52.

[0050] Through the above technical solution:

[0051] When the moving ring 32 moves and drives the reinforcement seat 24 to move downward along the mounting seat 21, the moving ring 32 drives the receiving frame 42 to move along the slide groove 41 and the positioning groove 46, and then the receiving frame 42 moves to drive the first contact plate 43 to move along the receiving groove 12, and the slope of the moving first contact plate 43 and the second contact plate 44 are matched, so that there is a distance between the first contact plates 43 and the first contact plates 43. At this time, the elastic force of the spring 54 itself contracts, giving an upward pulling force to one end of the push rod 53, driving the push rod 53 and the connecting plate 52 to move upward along the outside of the positioning column 51, and the connecting plate 52 moves to move the through groove opened at its top upward along the outside of the standing rod 56, so that the push rod 53 moves upward and pushes the connecting frame 45 to move along the inside of the receiving groove 12 The first contact plate 43 moves upward, and as the connecting frame 45 moves downward and fits with the first contact plate 43 again, the first contact plate 43 moves rightward along the side of the second contact plate 44, and then the second contact plate 44 moves upward along the bottom of the first contact plate 43 and drives the moving wheel 11 to move upward along the storage groove 12, so that the moving wheel 11 is stored in the storage groove 12, and the moving wheel 11 can be partially stored and shielded to reduce the exposure range of the moving wheel 11, and the moving wheel 11 can be prevented from being adsorbed by gravel inside when it is stationary, causing it to get stuck. At the same time, storing the moving wheel can significantly improve the stability of the control cabinet body 1, reduce the shaking and instability factors caused by the moving wheel 11, and ensure the stability and safety of the control cabinet body 1 during operation.

[0052] The above only describes certain exemplary embodiments of the present invention by way of illustration. Undoubtedly, a person skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. An intelligent agricultural irrigation shared power supply control cabinet, characterized in that: include: A control cabinet body and a plurality of moving wheels, wherein the moving wheels are used to drive the control cabinet body to move to a desired position to ensure that the control cabinet provides normal power supply to the agricultural irrigation, and a storage groove for the moving wheels to slide is provided at the bottom of the control cabinet body; The base support assembly is used to adjust and stably support the bottom of the control cabinet body and the slope, and flexibly arrange the control cabinet body on the slope, the base support assembly includes a mounting seat fixed to the bottom of the control cabinet body, a reinforcement seat installed at the bottom of the mounting seat to fix it to the slope, and a movable groove opened at the bottom end of the mounting seat, the reinforcement seat is sleeved with a mounting frame, and the top of the mounting frame is located in the movable groove, the mounting frame is provided with an adjustment assembly, which is used to drive the reinforcement seat to adjust the angle with the slope, and keep the control cabinet body and the slope stable, the middle part of the top of the mounting frame is fixed with an articulated seat, the connecting seat is installed in the movable groove, the connecting seat and the articulated seat are movably connected with a connecting rod, a synchronous assembly is provided in the movable groove, and the synchronous assembly is used to drive the connecting seat to reciprocate left and right in the movable groove, and a receiving assembly is provided in the synchronous assembly, which is used to drive the moving wheel to retract into the storage groove, and the moving wheel and the reinforcement seat are synchronously moved on the control cabinet body and the mounting seat; The synchronization component includes a positive and negative threaded rod rotatably installed in the moving groove and a moving ring fixed on the top of the connecting seat, and the moving ring is sleeved on the outside of the positive and negative threaded rod, a servo motor is installed on one side of the mounting seat, and the servo motor is used to drive the positive and negative threaded rod to rotate, the moving groove is adjacent to one side of the moving ring to open a limit groove, and a limit block is fixed on the outside of the moving ring, and the limit block is located in the limit groove; The receiving assembly includes a connecting frame installed on the moving wheel, a receiving frame fixed to the outside of the moving ring, and a sliding groove opened in the mounting seat and communicating with the inside of the moving groove for the receiving frame to slide. A positioning groove opened on one side of the control cabinet body and communicating with the inside of the storage groove for the receiving frame to insert into. A second contact plate is fixed to the top of the connecting frame, a first contact plate is fixed to one end of the receiving frame, and the first contact plate is located in the storage groove and fits with the second contact plate. A reset assembly is provided on the connecting frame, and the reset assembly is used to drive the moving wheel to move along the guide in the storage groove and support reset.

2. According to claim 1, the intelligent agricultural irrigation shared power supply control cabinet is characterized by: The adjustment assembly includes a fixing cylinder fixed on one side of the mounting frame, an adjusting column fixed on the reinforcement seat, and a contact plate slidably sleeved on the adjusting column, and the adjusting column is rotatably mounted in the mounting frame and the latch groove, a latch column is fixed on one side of the contact plate close to the adjusting column, a plurality of latch grooves are formed on one side of the fixing cylinder close to the latch groove, and the latch column is pluggably connected to the plurality of latch grooves.

3. According to claim 2, the intelligent agricultural irrigation shared power supply control cabinet is characterized by: A guide block is fixed on one side of the abutment plate adjacent to the latch column, and a guide groove for the guide block to slide is provided on the outside of the adjustment column.

4. According to claim 3, the intelligent agricultural irrigation shared power supply control cabinet is characterized in that: A thread groove is further formed at one end of the adjusting column, a threaded abutment disk is threadedly disposed in the thread groove, and one end of the threaded abutment disk extends to the outside of the thread groove and abuts against one end of the abutment disk.

5. According to claim 4, the intelligent agricultural irrigation shared power supply control cabinet is characterized in that: The reset assembly includes a positioning column fixed in the storage groove, a push rod fixed at the bottom end of the connecting frame, and a connecting plate fixed on one side of the moving wheel, and the push rod and the connecting plate are both sleeved on the positioning column, a standing plate is fixed on the side of the storage groove close to the moving wheel, and the standing plate is sleeved on the positioning column, and a spring is installed between the standing plate and the push rod.

6. The intelligent agricultural irrigation shared power supply control cabinet according to claim 5, characterized in that: A standing rod is fixedly connected between the standing plate and the receiving groove, and a through groove for inserting the standing rod is formed at one end of the connecting plate.

Citation Information

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