CN205855298U - A kind of chip select mechanism of drip irrigation zone - Google Patents

A kind of chip select mechanism of drip irrigation zone Download PDF

Info

Publication number
CN205855298U
CN205855298U CN201620564668.3U CN201620564668U CN205855298U CN 205855298 U CN205855298 U CN 205855298U CN 201620564668 U CN201620564668 U CN 201620564668U CN 205855298 U CN205855298 U CN 205855298U
Authority
CN
China
Prior art keywords
electric pushrod
controller
discharge nozzle
hopper
motor
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201620564668.3U
Other languages
Chinese (zh)
Inventor
贺岳年
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
ZHOUSHAN ANGE MACHINERY CO Ltd
Original Assignee
ZHOUSHAN ANGE MACHINERY CO Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by ZHOUSHAN ANGE MACHINERY CO Ltd filed Critical ZHOUSHAN ANGE MACHINERY CO Ltd
Priority to CN201620564668.3U priority Critical patent/CN205855298U/en
Application granted granted Critical
Publication of CN205855298U publication Critical patent/CN205855298U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Electromagnetic Pumps, Or The Like (AREA)

Abstract

A kind of chip select mechanism of drip irrigation zone, belong to fire extinguisher technical field, including hopper, support, vibrating motor, controller, bracing frame, support plate, first electric pushrod, second electric pushrod, first motor, clamping plate, 3rd electric pushrod, pressure transducer, pipeline, discharge nozzle, first cylinder and electrodynamic valve, vibrating motor each side installed by described hopper, vibrating motor is arranged on support, support is arranged on hopper side, discharge nozzle is installed under hopper, electrodynamic valve is installed on discharge nozzle, pipeline is positioned at below discharge nozzle, bracing frame is positioned at above pipeline, support plate is installed under bracing frame, support plate each side installs the first electric pushrod, second electric pushrod is installed under the first electric pushrod;The utility model has the advantages that: the positive and negative of flat water dropper can be automatically adjusted.

Description

A kind of chip select mechanism of drip irrigation zone
Technical field
This utility model relates to the chip select mechanism of a kind of drip irrigation zone, belongs to fire extinguisher technical field.
Background technology
Buried drip irrigation is compared common drip surface and is had the efficiency height that drips, and directly acts on plant root, service life The outstanding advantages such as long is it is considered to be the future thrust of drip irrigation technique.Drip irrigation zone is all artificial by flat in producing at present After the positive and negative of head regulates, it is transported to next link, chip select inefficiency, wastes time and energy.In order to solve above-mentioned difficulties, need Develop the chip select mechanism of the drip irrigation zone of a positive and negative that can be automatically adjusted flat water dropper.
Summary of the invention
The purpose of this utility model is to provide the chip select mechanism of a kind of drip irrigation zone.
Problem to be solved in the utility model be current drip irrigation zone produce in be all the positive and negative artificially regulating flat water dropper Problem.
For realizing the purpose of this utility model, the technical solution adopted in the utility model is:
The chip select mechanism of a kind of drip irrigation zone, including hopper, support, vibrating motor, controller, bracing frame, support plate, the first electricity Dynamic push rod, the second electric pushrod, the first motor, clamping plate, the 3rd electric pushrod, pressure transducer, pipeline, discharge nozzle, first Cylinder and electrodynamic valve, described hopper each side installs vibrating motor, and vibrating motor is arranged on support, and support is arranged on material Bucket side, installs discharge nozzle under hopper, discharge nozzle is installed electrodynamic valve, and pipeline is positioned at below discharge nozzle, and bracing frame is positioned at defeated Above line sending, installing support plate under bracing frame, support plate each side installs the first electric pushrod, installs the under the first electric pushrod Two electric pushrods, the second electric pushrod front end is installed the first pressure transducer, is installed two the first cylinders, the first cylinder under support plate Piston rod under the first motor, on the output shaft of the first motor install the 3rd electric pushrod, the 3rd electric pushrod front end install folder Plate, controller is arranged on bracing frame, controller by wire respectively with vibrating motor, the first motor, the first electric pushrod, the Two electric pushrods, the 3rd electric pushrod are connected with electrodynamic valve.
Built-in first electromagnetic valve of described first cylinder, the first electromagnetic valve is connected with controller by wire.
The utility model has the advantages that: be placed in hopper by flat water dropper, controller controls vibrating motor and starts, and makes material Bucket rocks;Controller controls electrodynamic valve and opens, and the width of discharge nozzle can make that flat water dropper side is ventricumbent drops;Flat Head drops on pipeline, and controller controls pipeline and is transported under support plate by flat water dropper;Some flat water droppers are major part courts Under, some flat water droppers be little upside down, when flat water dropper be big the most upside down time, controller controls the first electric pushrod and does flexible Motion, makes pressure transducer move down, makes pressure transducer be less than the highest point of flat water dropper;It is electronic that controller controls second Push rod does stretching motion, makes pressure transducer close to each other, and pressure transducer moves forward to certain distance, when flat water dropper is Time the most upside down, pressure transducer does not touch flat water dropper;Controller controls the first cylinder and does stretching motion, make clamping plate to Lower movement, makes clamping plate be positioned at the flat water dropper left and right sides;Controller controls the 3rd electric pushrod and does stretching motion, makes clamping plate forward Mobile, make clamping plate clamp flat water dropper;Controller controls the first electric motor starting, makes clamping plate clip flat water dropper and rotates, makes flat The big placement head-up of water dropper.
Accompanying drawing explanation
Fig. 1 is the chip select mechanism overall structure figure of a kind of drip irrigation zone of this utility model;
In figure: 1, hopper 2, support 3, vibrating motor 4, controller 5, bracing frame 6, support plate the 7, first electricity Dynamic push rod the 8, second electric pushrod the 9, first motor 10, clamping plate the 11, the 3rd electric pushrod 12, pressure transducer 13, pipeline 14, discharge nozzle the 15, first cylinder 16, electrodynamic valve.
Detailed description of the invention
Below in conjunction with the accompanying drawings and this utility model is further described by embodiment.
The chip select mechanism of a kind of drip irrigation zone of this utility model, including hopper 1, support 2, vibrating motor 3, controller 4, supports Frame 5, support plate the 6, first electric pushrod the 7, second electric pushrod the 8, first motor 9, clamping plate the 10, the 3rd electric pushrod 11, pressure pass Sensor 12, pipeline 13, discharge nozzle the 14, first cylinder 15 and electrodynamic valve 16, vibrating motor each side installed by described hopper 1 3, vibrating motor 3 is arranged on support 2, is placed into by flat water dropper in hopper 1, and controller 4 controls vibrating motor 3 and starts, and makes Hopper 1 rocks;Support 2 is arranged on hopper 1 side, 1 time installation discharge nozzle 14 of hopper, and discharge nozzle 14 is installed electrodynamic valve 16, control Device 4 processed controls electrodynamic valve 16 and opens, and the width of discharge nozzle 14 can make that flat water dropper side is ventricumbent drops;Pipeline 13 Below discharge nozzle 14, flat water dropper drops on pipeline 13, and controller 4 controls pipeline 13 and is transported to flat water dropper prop up Plate 6 times;Bracing frame 5 is positioned at above pipeline 13, and bracing frame installs support plate 65 times, and it is electronic that support plate 6 each side installs first Push rod 7, the first electric pushrod 7 times installs the second electric pushrod 8, and the second electric pushrod 8 front end installs the first pressure transducer 12, Some flat water droppers be big the most upside down, some flat water droppers be little upside down, when flat water dropper be big the most upside down time, controller 4 Control the first electric pushrod 7 and do stretching motion, make pressure transducer 12 move down, make pressure transducer 12 less than flat water dropper Highest point;Controller 4 controls the second electric pushrod 8 and does stretching motion, makes pressure transducer 12 close to each other, pressure transducer 12 move forward to certain distance, when flat water dropper be big the most upside down time, pressure transducer 12 does not touch flat water dropper;? Plate installs two the first cylinders 15, the first built-in first electromagnetic valve of cylinder 15 for 6 times, and the first electromagnetic valve is by wire and controller 4 Being connected, controller 4 controls the first cylinder 15 and does stretching motion, makes clamping plate 10 move down, and makes clamping plate 10 be positioned at flat water dropper left Right both sides;First motor 9 under the piston rod of the first cylinder 15, controller 4 controls the first motor 9 and starts, makes clamping plate 10 clip flat Flat water dropper rotates, and makes the big placement head-up of flat water dropper, the output shaft of the first motor 9 is installed the 3rd electric pushrod 11, the Clamping plate 10 are installed in three electric pushrod 11 front ends, and controller 4 controls the 3rd electric pushrod 11 and does stretching motion, makes clamping plate 10 to reach Dynamic, make clamping plate 10 clamp flat water dropper;Controller 4 is arranged on bracing frame 5, controller 4 by wire respectively with vibrating motor 3, first motor the 9, first electric pushrod the 7, second electric pushrod the 8, the 3rd electric pushrod 11 is connected with electrodynamic valve 16.
This utility model using method: flat water dropper is placed in hopper 1, controller 4 controls vibrating motor 3 and starts, Hopper 1 is made to rock;Controller 4 controls electrodynamic valve 16 and opens, and the width of discharge nozzle 14 can make a flat water dropper side ventricumbent Drop;Flat water dropper drops on pipeline 13, and controller 4 controls pipeline 13 and flat water dropper is transported to support plate 6 times;Have Flat water dropper be big the most upside down, some flat water droppers be little upside down, when flat water dropper be big the most upside down time, controller 4 controls First electric pushrod 7 does stretching motion, makes pressure transducer 12 move down, and makes pressure transducer 12 less than flat water dropper Eminence;Controller 4 controls the second electric pushrod 8 and does stretching motion, makes pressure transducer 12 close to each other, pressure transducer 12 to Before move to certain distance, when flat water dropper be big the most upside down time, pressure transducer 12 does not touch flat water dropper;Controller 4 control the first cylinder 15 does stretching motion, makes clamping plate 10 move down, makes clamping plate 10 be positioned at the flat water dropper left and right sides;Control Device 4 controls the 3rd electric pushrod 11 and does stretching motion, makes clamping plate 10 move forward, and makes clamping plate 10 clamp flat water dropper;Controller 4 Control the first motor 9 to start, make clamping plate 10 clip flat water dropper and rotate, make the big placement head-up of flat water dropper.

Claims (2)

1. a chip select mechanism for drip irrigation zone, including hopper (1), support (2), vibrating motor (3), controller (4), bracing frame (5), support plate (6), the first electric pushrod (7), the second electric pushrod (8), the first motor (9), clamping plate (10), the 3rd electric pushrod (11), pressure transducer (12), pipeline (13), discharge nozzle (14), the first cylinder (15) and electrodynamic valve (16), it is characterized in that: Vibrating motor (3) each side installed by described hopper (1), and vibrating motor (3) is arranged on support (2), and support (2) is arranged on Hopper (1) side, installs discharge nozzle (14), discharge nozzle (14) is installed electrodynamic valve (16) under hopper (1), pipeline (13) is positioned at Discharge nozzle (14) lower section, bracing frame (5) is positioned at pipeline (13) top, installs support plate (6), support plate (6) left and right under bracing frame (5) The first electric pushrod (7) is respectively installed in both sides, installs the second electric pushrod (8), the second electric pushrod under the first electric pushrod (7) (8) the first pressure transducer (12) is installed in front end, installs two the first cylinders (15), the work of the first cylinder (15) under support plate (6) First motor (9) under stopper rod, the output shaft of the first motor (9) is installed the 3rd electric pushrod (11), the 3rd electric pushrod (11) Front end install clamping plate (10), controller (4) is arranged on bracing frame (5), controller (4) by wire respectively with vibrating motor (3), the first motor (9), the first electric pushrod (7), the second electric pushrod (8), the 3rd electric pushrod (11) and electrodynamic valve (16) It is connected.
The chip select mechanism of a kind of drip irrigation zone the most according to claim 1, is characterized in that: described first cylinder (15) built-in One electromagnetic valve, the first electromagnetic valve is connected with controller (4) by wire.
CN201620564668.3U 2016-06-14 2016-06-14 A kind of chip select mechanism of drip irrigation zone Expired - Fee Related CN205855298U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620564668.3U CN205855298U (en) 2016-06-14 2016-06-14 A kind of chip select mechanism of drip irrigation zone

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620564668.3U CN205855298U (en) 2016-06-14 2016-06-14 A kind of chip select mechanism of drip irrigation zone

Publications (1)

Publication Number Publication Date
CN205855298U true CN205855298U (en) 2017-01-04

Family

ID=57638946

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620564668.3U Expired - Fee Related CN205855298U (en) 2016-06-14 2016-06-14 A kind of chip select mechanism of drip irrigation zone

Country Status (1)

Country Link
CN (1) CN205855298U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110707029A (en) * 2019-10-24 2020-01-17 江苏佳晟精密设备科技有限公司 Automatic change controlgear

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110707029A (en) * 2019-10-24 2020-01-17 江苏佳晟精密设备科技有限公司 Automatic change controlgear

Similar Documents

Publication Publication Date Title
CN101584294A (en) Non-pump constant flow low pressure drip irrigation device
CN204655841U (en) A kind of extinguishing device of hydraulic suction dredge
CN205855298U (en) A kind of chip select mechanism of drip irrigation zone
EP3957515A3 (en) Power supply control system, power supply control method, and program
CN204267210U (en) A kind of platform intergration formula floating-body wave power generation device and system
CN202626838U (en) Automatic spraying and preserving system device for high-pier blind spot-free plastic film
CN103822388B (en) A kind of heat supply generating of wave comprehensive utilization and seawater desalination system
CN201401295Y (en) Flange device facilitating welding
CN202857456U (en) Water-saving drop irrigation device with photovoltaic power generation as power source and used for long-distance water supply in desert
CN205848199U (en) A kind of drip irrigation zone chip mounter
CN202857457U (en) Spray irrigation device with wind-solar hybrid electricity generation as power source and used for long-distance water supply in desert
CN105179329A (en) Efficient hydraulic ram
CN201899905U (en) Conical piston defoaming device
CN204212905U (en) A kind of mounting structure of novel water power plant horizontal hydraulic unit
CN202946461U (en) Siphonage pipeline pumping system
CN204437355U (en) Braking club formula flow control device
CN206280202U (en) A kind of Hydraulic Power Transmission System TRT based on deceleration strip
CN205852950U (en) A kind of drip irrigation belt punching machine
CN201670718U (en) Pole plate vacuum pumping oil filling device
CN101586583A (en) Pumping device without power
CN103362726B (en) Surge pumped storage and method
CN204177571U (en) Civil engineering work hydraulic pressure soil box experiment table
CN203272040U (en) Concrete pump hydraulic system
CN204346650U (en) The tightness measuring device of hand sprayer air pump
CN202986126U (en) Quick wringing setting hydraulic press

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20170104

Termination date: 20180614