CN203530944U - Gate capable of automatically controlling irrigation water lever - Google Patents

Gate capable of automatically controlling irrigation water lever Download PDF

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Publication number
CN203530944U
CN203530944U CN201320542288.6U CN201320542288U CN203530944U CN 203530944 U CN203530944 U CN 203530944U CN 201320542288 U CN201320542288 U CN 201320542288U CN 203530944 U CN203530944 U CN 203530944U
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CN
China
Prior art keywords
float
gate
wire rope
fixedly connected
resettlement section
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Expired - Fee Related
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CN201320542288.6U
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Chinese (zh)
Inventor
王德全
纳佳华
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Ningxia University
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Ningxia University
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Priority to CN201320542288.6U priority Critical patent/CN203530944U/en
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Publication of CN203530944U publication Critical patent/CN203530944U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

A gate capable of automatically controlling the irrigation water lever comprises a supporting gate frame, a gate plate, a lifting rod, a bolt, a guide wheel, a steel wire rope and a buoyancy starting device. The supporting gate frame comprises two parallel supporting arms and a cross beam which is fixedly connected with the top ends of the two supporting arms, and the gate plate is arranged in the supporting gate frame. One end of the lifting rod is fixedly connected with the top of the gate plate, the other end of the lifting rod penetrates out from a guide hole of the cross beam and an installation hole allowing the bolt to insert in is formed in the lifting rod. The guide wheel is arranged on the upper surface of the cross beam, the steel wire rope is fixedly connected with the bolt, and the steel wire rope is connected with the buoyancy starting device after being guided by the guide wheel. The buoyancy starting device comprises a floater, a force application rod and a floater containing portion. The floater is arranged in the floater containing portion and a gap exists between the floater and the inner wall of the floater containing portion, one end of the force application rod is fixedly and perpendicularly connected with the upper surface of the floater, the other end of the force application rod penetrates out of the top of the floater containing portion to be connected with the steel wire rope and a water inlet through groove is formed in the lateral face of the floater containing portion.

Description

Automatically control the gate of irrigation level
Technical field
The utility model relates to a kind of field irrigation equipment technical field, particularly a kind of gate of automatic control irrigation level.
Background technology
For a long time, rural area field irrigation adopts the mode of hand excavation, landfill always, and when irrigating, suitable in order to ensure duty, needs people to keep at water inlet for a long time.Not only can not control well irrigation water capacity, also delay for a long time people's time, sometimes, because duty is too much, just be discharged to gutter, cause the waste of water resource.
Summary of the invention
In view of this, be necessary to provide a kind of gate of automatic control irrigation level.
A kind of gate of automatic control irrigation level, comprise and support doorframe, door-plate, lifting arm, latch, directive wheel, wire rope, buoyancy starting device, support doorframe and comprise two parallel support arms and the crossbeam being fixedly connected with the top of two support arms, on crossbeam, offer bullport, and bullport is between two support arms; On the relative face of two support arms, offer chute from top to bottom, in the chute that is stuck in two support arms corresponding to the dual-side of door-plate, and door-plate can slide in chute, and the height value of door-plate is less than the height value of support arm; One end of lifting arm is fixedly connected with the top of door-plate, and the other end of lifting arm passes from the bullport of crossbeam, and lifting arm is vertical with the top of crossbeam and door-plate, is provided with the fixing hole inserting for latch on lifting arm; Directive wheel is arranged on the upper surface of crossbeam, one end of wire rope is fixedly connected with latch, wire rope is after directive wheel guiding, the other end of wire rope is fixedly connected with buoyancy starting device, and one end being fixedly connected with buoyancy starting device of wire rope is higher than one end being fixedly connected with latch of wire rope; Buoyancy starting device comprises float, force application rod, float resettlement section, float be arranged in float resettlement section and the inwall of float and float resettlement section gapped, one end of force application rod is fixedly connected with the upper surface of float is vertical, the other end of force application rod is connected with wire rope from the top of float resettlement section passes, and the side opening of float resettlement section is provided with into water groove.
Preferably, float resettlement section is fixedly connected with one of them support arm.
Preferably, the gate of automatically controlling irrigation level also comprises sleeve block, and sleeve block is arranged on the upper surface of crossbeam, and sleeve block is coaxial with bullport, offers the bullport passing for latch on the sidewall of sleeve block.
Preferably, buoyancy starting device also comprises float height fixture, and float height fixture is arranged on the top of float resettlement section, force application rod from the top of float resettlement section passes again through float height fixture.
Preferably, float height fixture is nut, is provided with screw thread on force application rod.
Preferably, float is cystosepiment.
Preferably, the gate of automatically controlling irrigation level also comprises screen pack, on the relative sidewall of the water inlet groove that the side of float resettlement section is offered, offers from the bottom to top guiding groove, and screen pack is embedded in the guiding groove of water groove.
In the gate of above-mentioned automatic control irrigation level, buoyancy starting device is set, pass through latch, directive wheel, wire rope is connected buoyancy starting device with lifting arm, increase along with the farmland irrigating water yield, float in buoyancy starting device is subject to the effect of inflow in buoyancy and float resettlement section, and raise gradually, float drives force application rod to raise, force application rod pulls wire rope so that the latch being inserted in the fixing hole of lifting arm is extracted, door-plate is because deadweight can be sunk, gate is closed, stop current, so do not need people to keep for a long time at water inlet, just can automatically complete gate closure, to realize the automatic control to field irrigation water level.
Accompanying drawing explanation
Fig. 1 is the structural representation of gate of the automatic control irrigation level of a better embodiment.
Fig. 2 is the package assembly schematic diagram of lifting arm in Fig. 1, latch and sleeve block.
Fig. 3 is the structural representation that is provided with the buoyancy starting device of screen pack in Fig. 1.
In figure: gate 10, support doorframe 11, support arm 111, crossbeam 112, bullport 113, chute 114, door-plate 12, lifting arm 13, fixing hole 131, latch 14, directive wheel 15, wire rope 16, buoyancy starting device 17, float 171, force application rod 172, float resettlement section 173, water inlet groove 174, float height fixture 175, guiding groove 176, sleeve block 18, bullport 181, the screen pack 19 of automatically controlling irrigation level.
The specific embodiment
Please refer to Fig. 1 and Fig. 2, the gate 10 of automatically controlling irrigation level comprises support doorframe 11, door-plate 12, lifting arm 13, latch 14, directive wheel 15, wire rope 16, buoyancy starting device 17.
Support doorframe 11 and comprise two support arms 111 that are parallel to each other and the crossbeam 112 being fixedly connected with the top of two support arms 111, on crossbeam 112, offer bullport 113, and bullport 113 is between two support arms 111; On the relative face of two support arms 111, offer chute 114 from top to bottom, in the chute that is stuck in two support arms 111 114 corresponding to the dual-side of door-plate 12, and door-plate 12 can slide in chute 114, and the height value of door-plate 12 is less than the height value of support arm 111; One end of lifting arm 13 is fixedly connected with the top of door-plate 12, and the other end of lifting arm 13 passes from the bullport 113 of crossbeam 112, and lifting arm 13 is vertical with the top of crossbeam 112 and door-plate 12, is provided with the fixing hole 131 inserting for latch 14 on lifting arm 13; Directive wheel 15 is arranged on the upper surface of crossbeam 112, one end of wire rope 16 is fixedly connected with latch 14, wire rope 16 is after directive wheel 15 guiding, the other end of wire rope 16 is fixedly connected with buoyancy starting device 17, and one end being fixedly connected with buoyancy starting device 17 of wire rope 16 is higher than one end being fixedly connected with latch 14 of wire rope 16.Wherein, wire rope 16 parallel with crossbeam 112 with the part between directive wheel 15 at latch 14, so can guarantee that wire rope 16 can pull out latch 14 from fixing hole 131 smoothly.
Buoyancy starting device 17 comprises float 171, force application rod 172, float resettlement section 173, float 171 be arranged in float resettlement section 173 and float 171 gapped with the inwall of float resettlement section 173, vertical being fixedly connected with of upper surface of one end of force application rod 172 and float 171, the other end of force application rod 172 is fixedly connected with wire rope 16 from the top of float resettlement section 173 passes, and the side opening of float resettlement section 173 is provided with into water groove 174.Wherein, buoyancy starting device 17 is according to the actual needs of field irrigation, can be arranged on different positions, for example, buoyancy starting device 17 can be arranged in farmland and the water inlet in close farmland, or buoyancy starting device 17 is fixedly connected with supporting doorframe 11, and for example, the float resettlement section 173 of buoyancy starting device 17 is fixedly connected with one of them support arm 111.Float 171 is the composite plastic of cystosepiment or lightweight.Float resettlement section 173 can be for rectangular-shaped, cylindric.
Further, the gate 10 of automatically controlling irrigation level also comprises sleeve block 18, and sleeve block 18 is arranged on the upper surface of crossbeam 112, and sleeve block 18 is coaxial with bullport 113, offers the bullport 181 passing for latch 14 on the sidewall of sleeve block 18; Buoyancy starting device also comprises float height fixture 175, float height fixture 175 is arranged on the top of float resettlement section 173, force application rod 172 from the top of float resettlement section 173 passes again through float height fixture 175, for example, float height fixture 175 is nut, on force application rod 172, be provided with screw thread, so by internal and external threads, coordinate to adjust the height of float 171 in float resettlement section 173; Automatically the gate 10 of controlling irrigation level also comprises screen pack 19, referring to Fig. 3, on the relative sidewall of the water inlet groove 174 of float resettlement section 173, offer from the bottom to top guiding groove 176, screen pack 19 is embedded in the guiding groove 176 of water groove 174, to realize the filtration to the foreign material in irrigation water.
In the gate 10 of above-mentioned automatic control irrigation level, buoyancy starting device 17 is set, by latch 14, directive wheel 15, wire rope 16 is connected buoyancy starting device 17 with lifting arm 13, increase along with the farmland irrigating water yield, float 171 in buoyancy starting device 17 is subject to the effect of inflow in buoyancy and float resettlement section 173, and raise gradually, float 171 drives force application rod 172 to raise, force application rod 172 pulls wire rope 16 so that the latch 14 being inserted in the fixing hole 131 of lifting arm 13 is extracted, door-plate 12 is because deadweight can be sunk, gate is closed, stop current, so do not need people to keep for a long time at water inlet, just can automatically complete gate closure, to realize the automatic control to field irrigation water level.

Claims (7)

1. a gate of automatically controlling irrigation level, it is characterized in that: comprise and support doorframe, door-plate, lifting arm, latch, directive wheel, wire rope, buoyancy starting device, support doorframe and comprise two parallel support arms and the crossbeam being fixedly connected with the top of two support arms, on crossbeam, offer bullport, and bullport is between two support arms; On the relative face of two support arms, offer chute from top to bottom, in the chute that is stuck in two support arms corresponding to the dual-side of door-plate, and door-plate can slide in chute, and the height value of door-plate is less than the height value of support arm; One end of lifting arm is fixedly connected with the top of door-plate, and the other end of lifting arm passes from the bullport of crossbeam, and lifting arm is vertical with the top of crossbeam and door-plate, is provided with the fixing hole inserting for latch on lifting arm; Directive wheel is arranged on the upper surface of crossbeam, one end of wire rope is fixedly connected with latch, wire rope is after directive wheel guiding, the other end of wire rope is fixedly connected with buoyancy starting device, and one end being fixedly connected with buoyancy starting device of wire rope is higher than one end being fixedly connected with latch of wire rope; Buoyancy starting device comprises float, force application rod, float resettlement section, float be arranged in float resettlement section and the inwall of float and float resettlement section gapped, one end of force application rod is fixedly connected with the upper surface of float is vertical, the other end of force application rod is connected with wire rope from the top of float resettlement section passes, and the side opening of float resettlement section is provided with into water groove.
2. the gate of automatic control irrigation level according to claim 1, is characterized in that: float resettlement section is fixedly connected with one of them support arm.
3. the gate of automatic control irrigation level according to claim 1, it is characterized in that: the gate of automatically controlling irrigation level also comprises sleeve block, sleeve block is arranged on the upper surface of crossbeam, and sleeve block is coaxial with bullport, offers the bullport passing for latch on the sidewall of sleeve block.
4. the gate of automatic control irrigation level according to claim 1, it is characterized in that: buoyancy starting device also comprises float height fixture, float height fixture is arranged on the top of float resettlement section, force application rod from the top of float resettlement section passes again through float height fixture.
5. the gate of automatic control irrigation level according to claim 4, is characterized in that: float height fixture is nut, is provided with screw thread on force application rod.
6. the gate of automatic control irrigation level according to claim 1, is characterized in that: float is cystosepiment.
7. the gate of automatic control irrigation level according to claim 1, it is characterized in that: the gate of automatically controlling irrigation level also comprises screen pack, on the relative sidewall of the water inlet groove that the side of float resettlement section is offered, offer from the bottom to top guiding groove, screen pack is embedded in the guiding groove of water groove.
CN201320542288.6U 2013-09-03 2013-09-03 Gate capable of automatically controlling irrigation water lever Expired - Fee Related CN203530944U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320542288.6U CN203530944U (en) 2013-09-03 2013-09-03 Gate capable of automatically controlling irrigation water lever

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320542288.6U CN203530944U (en) 2013-09-03 2013-09-03 Gate capable of automatically controlling irrigation water lever

Publications (1)

Publication Number Publication Date
CN203530944U true CN203530944U (en) 2014-04-09

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Family Applications (1)

Application Number Title Priority Date Filing Date
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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104563071A (en) * 2014-12-30 2015-04-29 杨立军 Paddy field water gap adjusting system
CN107500153A (en) * 2017-10-13 2017-12-22 大连奥乐齐日用品有限公司 A kind of buoyancy crane
CN109113036A (en) * 2017-06-22 2019-01-01 中国科学院地理科学与资源研究所 A kind of wate gate for irrigation
CN110593227A (en) * 2019-09-11 2019-12-20 兰州理工大学 Hydraulic-driven automatic drainage system for farmland in hilly area
CN111264344A (en) * 2020-03-31 2020-06-12 郑州市水利工程监理中心 Irrigation closed system

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104563071A (en) * 2014-12-30 2015-04-29 杨立军 Paddy field water gap adjusting system
CN109113036A (en) * 2017-06-22 2019-01-01 中国科学院地理科学与资源研究所 A kind of wate gate for irrigation
CN107500153A (en) * 2017-10-13 2017-12-22 大连奥乐齐日用品有限公司 A kind of buoyancy crane
CN110593227A (en) * 2019-09-11 2019-12-20 兰州理工大学 Hydraulic-driven automatic drainage system for farmland in hilly area
CN111264344A (en) * 2020-03-31 2020-06-12 郑州市水利工程监理中心 Irrigation closed system

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GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140409

Termination date: 20150903

EXPY Termination of patent right or utility model