CN113615560A - Garden vegetation waters and spills device - Google Patents

Garden vegetation waters and spills device Download PDF

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Publication number
CN113615560A
CN113615560A CN202110961411.7A CN202110961411A CN113615560A CN 113615560 A CN113615560 A CN 113615560A CN 202110961411 A CN202110961411 A CN 202110961411A CN 113615560 A CN113615560 A CN 113615560A
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China
Prior art keywords
wheel
shaft
manual
bevel gear
walking
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CN202110961411.7A
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Chinese (zh)
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CN113615560B (en
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刘恬恬
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Individual
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Individual
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Publication of CN113615560A publication Critical patent/CN113615560A/en
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G25/00Watering gardens, fields, sports grounds or the like
    • A01G25/09Watering arrangements making use of movable installations on wheels or the like
    • A01G25/092Watering arrangements making use of movable installations on wheels or the like movable around a pivot centre
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A40/00Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
    • Y02A40/10Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in agriculture
    • Y02A40/22Improving land use; Improving water use or availability; Controlling erosion

Abstract

The invention discloses a garden vegetation watering device which comprises a vehicle body, a seat, a foot-operated device, a walking device, a water feeding device, a manual device and a spraying device, wherein the seat is an operation table of a person, the foot-operated device can provide power for the walking device and the water feeding device, and the manual device provides power for the steering of the spraying device.

Description

Garden vegetation waters and spills device
Technical Field
The invention relates to the technical field of watering devices, in particular to a garden vegetation watering device.
Background
There is the people of a large amount of body-building in the park every day, this device combines body-building and watering, can control the walking through foot-operated device, for the power is provided to the water supply after switching the gear, when the water of storage water tank the inside is more, water pump power will be big more, it is amazing personnel's enthusiasm to have encouraged, manual device still provides power for sprinkler's the turning to, make sprinkler rotate about can, rotate about through motor control spray line tilting, both tempered the health, still saved a large amount of numerous and diverse work of watering in the park.
Disclosure of Invention
Aiming at the technical problem, the invention provides a garden vegetation watering device which comprises a vehicle body, a seat, a foot-operated device, a walking device, a water feeding device, a manual device and a spraying device.
The vehicle body comprises a vehicle bottom, wheels, a water storage tank and a water outlet tank. The seat includes: the operation seat, the seat adjustment crank, the seat driving gear, seat driven gear, the lead screw, seat sliding base, the seat spout, operation seat fixed mounting is on seat sliding base, seat sliding base slidable mounting is on the seat spout, the seat adjustment crank rotates and installs on the bottom of the car, seat driving gear fixed mounting is on seat adjustment crank, the lead screw rotates and installs on seat sliding base, seat driven gear fixed mounting is on the lead screw, forms screw-thread fit with the seat driving gear.
The foot-operated device comprises: the water feeding device comprises a foot-operated crank, a walking clutch wheel, a water feeding clutch wheel, a clutch rod and a power rod frame, wherein the foot-operated crank is rotatably installed on a car bottom, the clutch rod is rotatably installed on the car bottom, the walking clutch wheel is fixedly installed on the clutch rod, the water feeding clutch wheel is fixedly installed on the clutch rod, and the power rod frame is fixedly installed on the car bottom.
The walking device comprises: the walking gear support frame is fixedly installed on the vehicle bottom, the walking gear shaft is rotatably installed on the walking gear support frame, the walking gear is fixedly installed on the walking gear shaft, the walking shaft I is connected to the vehicle wheel, and the walking shaft II is connected to the vehicle wheel.
The water feeding device comprises: go up water gear shaft, water feeding gear, pressurized water pump, hose, the gear shaft that goes up water rotates and installs on the automobile bottom, and water feeding gear fixed mounting is on the gear shaft that goes up water, and pressurized water pump fixed mounting is on the automobile bottom, and the hose connection is between pressurized water pump and storage water tank.
The manual device comprises: manual device support frame, manual output bevel gear axle, manual output bevel gear, manual belt pulley, manual belt, manual device support frame fixed mounting is on the bottom of the car, and manual output bevel gear axle rotates and installs on the bottom of the car, and manual output bevel gear fixed mounting is on manual output bevel gear axle, and manual belt pulley fixed mounting is on manual output bevel gear axle, and manual belt connects manual belt pulley and sprays the axle.
The spraying device comprises: the spraying shaft is rotatably arranged on the vehicle bottom, and the water pump is arranged in the water outlet tank.
Further, the foot-operated device further comprises: the water feeding power wheel and the walking power wheel are fixedly connected with the foot-operated output wheel through shafts, one end of the clutch power rod is movably connected with the clutch rod, and the other end of the clutch power rod is rotatably connected with the power rod frame.
Further, the walking device also comprises a walking belt input wheel, a walking belt output wheel, a walking belt, a ratchet shaft, a reversing input bevel gear, a reversing output bevel gear, a reversing intermediate bevel gear, a walking input bevel gear, a walking intermediate bevel gear, a walking output bevel gear, a walking bevel gear, a differential bevel gear I, a differential bevel gear II, a differential bevel gear III, a differential bevel gear IV, a ratchet I, a pawl spring I, a pawl groove I, a ratchet II, a pawl spring II and a pawl groove II, wherein the walking belt input wheel is fixedly arranged on the walking gear shaft, the walking belt output wheel is connected with the walking belt input wheel through a belt, the reversing input bevel gear is fixedly connected with the walking belt output wheel through a shaft, the ratchet I is fixedly arranged on the ratchet shaft, the pawl groove I is fixedly arranged on the reversing input bevel gear, the first pawl is slidably mounted on the first pawl groove, the first pawl spring is connected with the first pawl and the first pawl groove, the second ratchet wheel is fixedly mounted on a ratchet shaft, the second pawl groove is fixedly mounted on a reversing output bevel gear, the second pawl is slidably mounted on the second pawl groove, the second pawl spring is connected with the second pawl and the second pawl groove, the reversing output bevel gear is rotatably mounted on a vehicle bottom, a reversing intermediate bevel gear is rotatably mounted on the vehicle bottom, a walking input bevel gear is fixedly mounted on the ratchet shaft, the walking intermediate bevel gear is rotatably mounted on the vehicle bottom, the walking output bevel gear is fixedly connected with the walking intermediate bevel gear through a shaft, the walking bevel gear is mounted on the first walking shaft, the first differential bevel gear is mounted on the first walking shaft, the second differential bevel gear and the third differential bevel gear are rotatably mounted on the second walking bevel gear, and the fourth differential bevel gear is mounted on the second walking shaft.
Further, the water feeding device further comprises: the water feeding driving pulley is fixedly arranged on the water feeding pulley fixing frame, the water feeding belt is connected with the water feeding belt pulley and the water feeding driven pulley, the connecting rod chute I is fixedly arranged on the water feeding pulley shaft, the water feeding pulley shaft is rotatably arranged on the vehicle bottom, the driven sprocket is fixedly arranged on the water feeding pulley shaft, the chain is connected with the driving sprocket and the driven sprocket, the water feeding driving pulley is fixedly arranged on the water feeding pulley shaft, the water feeding driven pulley is rotatably arranged on the water feeding pulley fixing frame, the water feeding belt is connected with the water feeding driving pulley and the water feeding driven pulley, the connecting rod chute I is fixedly arranged on the water feeding driven pulley, the connecting rod chute II is fixedly arranged on the water feeding driven pulley, a connecting rod slider is slidably mounted on a connecting rod chute II, a connecting rod slider is slidably mounted on a connecting rod chute I, one end of a connecting rod is rotatably connected to the connecting rod slider I, the middle of the connecting rod is rotatably connected to the connecting rod slider II, the other end of the connecting rod is rotatably mounted on a pressurized-water rod connecting shaft, the pressurized-water rod connecting shaft is slidably mounted on a pressurized-water rod limiting frame, and the pressurized-water rod is slidably mounted on a pressurized-water pump and connected with the pressurized-water rod connecting shaft.
Further, the manual device further comprises: the manual driving wheel frame is rotatably arranged on a manual device supporting frame, one manual driving wheel is rotatably arranged on the manual wheel frame, the manual crank is arranged on the manual device supporting frame, the other manual driving wheel is rotatably arranged on the manual driving wheel frame, the manual input wheel belt is connected with the manual driving wheel frame and the manual driving wheel frame, the manual driving wheel is rotatably arranged on the manual driving wheel frame, the driven wheel shaft is rotatably arranged on the manual device supporting frame, the manual driven wheel is fixedly arranged on the driven wheel shaft, the manual output belt wheel is connected with the manual driving wheel and the manual driven wheel, and the manual input bevel gear is fixedly arranged on the driven wheel shaft.
Further, the spraying device further comprises: spraying platform rotates the belt, spray platform power shaft, spray platform power wheel, spray platform steering gear, spray the platform, the spraying mouth mount, sector gear, steering motor, spray steering gear, the spray tube, spray the hose, it installs on the bottom of the car to spray platform power shaft rotation, it installs on spraying platform power shaft to spray platform power wheel fixed mounting, it connects spraying platform power wheel and sprays the axle to spray platform rotation belt, it installs on spraying platform power shaft to spray platform steering gear fixed mounting, it installs on spraying epaxially to spray platform rotation, spraying mouth mount fixed mounting sprays epaxially, sector gear rotates and installs on the spraying mouth mount, it installs on spraying platform to turn to motor fixed mounting, it installs on turning to motor output shaft to spray steering gear fixed mounting, spray tube fixed mounting is on sector gear, spray hose connection spray tube and water pump.
Compared with the prior art, the invention has the beneficial effects that: (1) the device has manual and foot-operated functions, and fully achieves the purpose of physical exercise; (2) the device combines fitness and watering, and has freshness; (3) the spraying pipe of the device has a steering function; (4) the device saves the task amount of the garden watering work.
Drawings
FIG. 1 is an overall schematic view of the present invention.
FIG. 2 is a schematic view of the foot-propelled device of the present invention.
Fig. 3 is a schematic view of the walking device of the present invention.
FIG. 4 is a schematic view of a walking needle cannula of the present invention.
FIG. 5 is a schematic view of the water supply apparatus of the present invention.
FIG. 6 is a schematic view of the water supply apparatus of the present invention.
FIG. 7 is a schematic view of the manual apparatus of the present invention.
FIG. 8 is a schematic view of a spraying apparatus according to the present invention.
FIG. 9 is a schematic view of a spraying apparatus according to the present invention.
Reference numerals: 1-a vehicle body; 2-a seat; 3-a foot-operated device; 4-a walking device; 5-a water feeding device; 6-manual means; 7-a spraying device; 101-vehicle bottom; 102-a wheel; 103-a water storage tank; 104-water outlet tank; 201-operating the seat; 202-seat adjustment crank; 203-a seat pinion gear; 204-seat driven gear; 205-lead screw; 206-seat slide base; 207-seat runner; 301-foot crank; 302-foot-operated input wheel; 303-connecting a belt; 304-a foot-operated output wheel; 305-a water feeding power wheel; 306-a walking power wheel; 307-running clutch wheels; 308-a water feeding clutch wheel; 309-clutch lever; 310-clutch power rod; 311-power bar frame; 401-a walking gear support frame; 402-a walking gear shaft; 403-a walking gear; 404-a running belt input wheel; 405-a walking belt output wheel; 406-a running belt; 407-a ratchet shaft; 408-a reverse input bevel gear; 409-reversing output bevel gear; 410-reversing intermediate bevel gears; 411-walk input bevel gear; 412-walk intermediate bevel gear; 413-a walking output bevel gear; 414-walking bevel gear; 415-first walking axis; 416-differential bevel gear one; 417-differential bevel gear two; 418-differential bevel gear three; 419-differential bevel gear four; 420-a second walking shaft; 421-ratchet one; 422-pawl one; 423-pawl spring one; 424-pawl slot one; 425-ratchet two; 426-pawl two; 427-pawl spring two; 428-pawl slot two; 501-a water feeding gear shaft; 502-water supply gear; 503-a drive sprocket; 504-a chain; 505 — a driven sprocket; 506-a water feeding driving belt pulley; 507-a water feeding belt; 508-upper water belt wheel shaft; 509-water feeding belt wheel fixing frame; 510-a water-feeding driven pulley; 511-connecting rod chute one; 512-connecting rod chute two; 513-connecting rods; 514-connecting rod slider one; 515-connecting rod sliding block two; 516-a water pressing rod limiting frame; 517-water pressing rod connecting shaft; 518-water pressing rod; 519-a water pressure pump; 520-a hose; 601-manual device support frame; 602-manual wheel carrier; 603-a first manual power wheel; 604-a manual crank; 605-manual input wheel belt; 606-a manual power wheel II; 607-manual driving wheel; 608-manual output pulley; 609-a manual driven wheel; 610-driven axle; 611-manual input bevel gear; 612-manual output bevel gear shaft; 613-manual output bevel gear; 614-manual pulley; 615-manual belt; 701-a spraying shaft; 702-spraying table rotating belt; 703-spraying table power shaft; 704-a spray station power wheel; 705-spray table steering gear; 706-a spray station; 707-spray nozzle fixing frame; 708-sector gear; 709-steering motor; 710-spray steering gear; 711-a spray pipe; 712-a spray hose; 713-water pump.
Detailed Description
The present invention will be further described with reference to specific examples, which are illustrative of the invention and are not to be construed as limiting the invention.
Example (b): as shown in fig. 1, 2, 3, 4, 5, 6, 7, 8 and 9, the garden vegetation watering device comprises a vehicle body 1, a seat 2, a foot-operated device 3, a walking device 4, a water feeding device 5, a manual device 6 and a spraying device 7.
As shown in fig. 1, a specific structure of a vehicle body 1 includes: the vehicle comprises a vehicle bottom 101, wheels 102, a water storage tank 103 and a water outlet tank 104, water is filled in the water storage tank 103, the water in the water storage tank is absorbed into the water outlet tank 104 by the water feeding device 5, the more water is in the water storage tank 104, and the larger the spraying amount of the spraying device 7 is.
The specific structure of the seat 2 is shown in fig. 1, and includes: the operation seat 201, seat adjustment crank 202, seat driving gear 203, seat driven gear 204, lead screw 205, seat sliding base 206, seat spout 207, operation seat 201 fixed mounting is on seat sliding base 206, seat sliding base 206 slidable mounting is on seat spout 207, seat adjustment crank 202 rotates and installs on vehicle bottom 101, seat driving gear 203 fixed mounting is on seat adjustment crank 202, lead screw 205 rotates and installs on seat sliding base 206, seat driven gear 204 fixed mounting is on lead screw 205, form screw-thread fit with seat driving gear 203, through hand seat adjustment crank 202, can adjust the position of operation seat 201 according to everyone's actual conditions, help the people to adjust to the most comfortable position apart from foot-operated device 3 and hand-operated device 6.
The specific structure of the foot-operated device 3 is shown in fig. 2, and comprises: foot crank 301, foot input wheel 302, connecting belt 303, foot output wheel 304, upper water power wheel 305, walking power wheel 306, walking clutch wheel 307, upper water clutch wheel 308, clutch rod 309, clutch power rod 310 and power rod frame 311, wherein the foot crank 301 is rotatably installed on the vehicle bottom 101, the clutch rod 309 is rotatably installed on the vehicle bottom 101, the walking clutch wheel 307 is fixedly installed on the clutch rod 309, the upper water clutch wheel 308 is fixedly installed on the clutch rod 309, the power rod frame 311 is fixedly installed on the vehicle bottom 101, the foot input wheel 302 is fixedly connected to the foot crank 301, the foot output wheel 304 is rotatably installed on the vehicle bottom 101 and is connected with the foot input wheel 302 through the connecting belt 303, the upper water clutch wheel 305 and the walking power wheel 306 are fixedly connected with the foot output wheel 304 through shafts, one end of the clutch power rod 310 is movably connected with the clutch rod 309, and the other end is rotatably connected with the power rod frame 311, the crank 301 is driven by foot pedal to transmit power to the upper water power wheel 305 and the walking power wheel 306, the clutch power rod 310 is driven by hand, the walking clutch wheel 307 is meshed with the walking power wheel 306, the walking clutch wheel 307 is connected to the walking device 4 in a power mode, the clutch power rod 310 is driven again to enable the upper water clutch wheel 308 to be meshed with the upper water power wheel 305, and the upper water clutch wheel 308 is connected to the upper water device 5 in a power mode.
The specific structure of the traveling device 4 is as shown in fig. 3 and 4, and includes: a walking gear support frame 401, a walking gear shaft 402, a walking gear 403, a walking belt input wheel 404, a walking belt output wheel 405, a walking belt 406, a ratchet shaft 407, a reversing input bevel gear 408, a reversing output bevel gear 409, a reversing intermediate bevel gear 410, a walking input bevel gear 411, a walking intermediate bevel gear 412, a walking output bevel gear 413, a walking bevel gear 414, a walking shaft I415, a differential bevel gear I416, a differential bevel gear II 417, a differential bevel gear III 418, a differential bevel gear IV 419, a walking shaft II 420, a ratchet I421, a ratchet I422, a ratchet spring I423, a ratchet groove I424, a ratchet II 425, a ratchet II 426, a ratchet spring II 427 and a ratchet groove II 428, wherein the walking gear support frame 401 is fixedly installed on the vehicle bottom 101, the walking gear shaft 402 is rotatably installed on the walking gear support frame 401, and the walking gear 403 is fixedly installed on the walking gear shaft 402, the first traveling shaft 415 is connected to the wheels 102, the second traveling shaft 420 is connected to the wheels 102, the traveling belt input wheel 404 is fixedly arranged on the traveling gear shaft 402, the traveling belt output wheel 405 is connected with the traveling belt input wheel 404 through a belt, the reversing input bevel gear 408 is fixedly connected with the traveling belt output wheel 405 through a shaft, the first ratchet wheel 421 is fixedly arranged on the ratchet shaft 407, the first pawl groove 424 is fixedly arranged on the reversing input bevel gear 408, the first pawl 422 is slidably arranged on the first pawl groove 424, the first pawl spring 423 is connected with the first pawl 422 and the first pawl groove 424, the second ratchet wheel 425 is fixedly arranged on the ratchet shaft 407, the second pawl groove 428 is fixedly arranged on the reversing output bevel gear 409, the second pawl 426 is slidably arranged on the second pawl groove 428, the second pawl spring 427 is connected with the second pawl 426 and the second pawl groove 428, the reversing output bevel gear 409 is rotatably arranged on the vehicle bottom 101, and the reversing intermediate bevel gear 410 is rotatably arranged on the vehicle bottom 101, a walking input bevel gear 411 is fixedly arranged on a ratchet shaft 407, a walking middle bevel gear 412 is rotatably arranged on a vehicle bottom 101, a walking output bevel gear 413 is fixedly connected with the walking middle bevel gear 412 through a shaft, a walking bevel gear 414 is arranged on a walking shaft I415, a differential bevel gear I416 is arranged on the walking shaft I415, a differential bevel gear II 417 and a differential bevel gear III 418 are rotatably arranged on the walking bevel gear 414, a differential bevel gear IV 419 is arranged on a walking shaft II 420, the walking gear 403 rotates to drive the reversing input bevel gear 408 to rotate, when the reversing input bevel gear 408 rotates clockwise, a pawl I422 blocks the ratchet I421 to drive the ratchet I421 to rotate clockwise, the ratchet II 425 rotates, the walking input bevel gear 411 rotates, finally, power is transmitted to wheels, the reversing output bevel gear 409 idles and cannot drive the ratchet II 425 to rotate, when the reversing input bevel gear 408 rotates anticlockwise, the reversing input bevel gear 408 idles without driving the first ratchet 421 to rotate, the reversing output bevel gear 409 rotates clockwise, the reversing output bevel gear 409 drives the second ratchet 425 to rotate clockwise under the action of the second pawl 426, and finally power is transmitted to the wheels.
The specific structure of the water feeding device 5 is shown in fig. 5 and 6, and comprises: a water feeding gear shaft 501, a water feeding gear 502, a driving sprocket 503, a chain 504, a driven sprocket 505, a water feeding driving pulley 506, a water feeding belt 507, a water feeding belt pulley shaft 508, a water feeding pulley fixing frame 509, a water feeding driven pulley 510, a connecting rod sliding groove 511, a connecting rod sliding groove 512, a connecting rod 513, a connecting rod sliding block 514, a connecting rod sliding block 515, a water pressing rod limiting frame 516, a water pressing rod connecting shaft 517, a water pressing rod 518, a water pressing pump 519 and a hose 520, wherein the water feeding gear shaft 501 is rotatably arranged on the vehicle bottom 101, the water feeding gear 502 is fixedly arranged on the water feeding gear shaft 501, the water pressing pump 519 is fixedly arranged on the vehicle bottom 101, the hose 520 is connected between the water pressing pump 519 and the water storage tank 103, the driving sprocket 503 is fixedly arranged on the water feeding gear shaft 501, the water feeding pulley shaft 508 is rotatably arranged on the vehicle bottom 101, the driven sprocket 505 is fixedly arranged on the water feeding belt pulley shaft 508, the chain 504 is connected with a driving sprocket 503 and a driven sprocket 505, the water feeding driving pulley 506 is fixedly arranged on a water feeding pulley shaft 508, the water feeding driven pulley 510 is rotatably arranged on a water feeding pulley fixing frame 509, a water feeding belt 507 is connected with the water feeding driving pulley 506 and the water feeding driven pulley 510, a connecting rod sliding groove I511 is fixedly arranged on the water feeding driven pulley 510, a connecting rod sliding groove II 512 is fixedly arranged on the water feeding driven pulley 510, a connecting rod sliding block I514 is slidably arranged on the connecting rod sliding groove II 512, a connecting rod sliding block II 515 is slidably arranged on the connecting rod sliding groove I511, one end of a connecting rod 513 is rotatably connected on the connecting rod sliding block I514, the middle part is rotatably connected on the connecting rod sliding block II 515, the other end is rotatably arranged on a water pressing rod connecting shaft 517, the water pressing rod connecting shaft 517 is slidably arranged on a water pressing rod limiting frame 516, and the water pressing rod 518 is slidably arranged on a water pressing pump 519, the water pumping device is connected with a water pumping rod connecting shaft 517, when the water feeding gear 502 rotates, power is transmitted to the water feeding driven pulley 510, the water feeding driven pulley 510 rotates, the first connecting rod sliding block 514 slides on the second connecting rod sliding groove 512, the second connecting rod sliding block 515 slides on the first connecting rod sliding groove 511 to drive the water pumping rod connecting shaft 517 to slide up and down in the water pumping rod limiting frame 516, the water pumping rod 518 reciprocates up and down to pump water in the water storage tank 103 into the water outlet tank 104, and in order to save manpower and increase water pumping efficiency, an electric device can be added in the water pumping pump 519 to assist water pumping.
The specific structure of the manual device 6 is shown in fig. 7, and includes: a manual device supporting frame 601, a manual wheel frame 602, a manual power wheel I603, a manual crank 604, a manual input wheel belt 605, a manual power wheel II 606, a manual driving wheel 607, a manual output belt pulley 608, a manual driven wheel 609, a driven wheel shaft 610, a manual input bevel gear 611, a manual output bevel gear shaft 612, a manual output bevel gear 613, a manual belt pulley 614 and a manual belt 615, wherein the manual device supporting frame 601 is fixedly arranged on the vehicle bottom 101, the manual output bevel gear shaft 612 is rotatably arranged on the vehicle bottom 101, the manual output bevel gear 613 is fixedly arranged on the manual output bevel gear shaft 612, the manual belt pulley 614 is fixedly arranged on the manual output bevel gear shaft 612, the manual belt 615 is connected with the manual belt pulley 614 and the spraying shaft 701, the manual wheel frame 602 is rotatably arranged on the manual device supporting frame 601, the manual power wheel I603 is rotatably arranged on the manual wheel frame 602, a manual crank 604 is arranged on a manual power wheel I603, a manual power wheel II 606 is rotationally arranged on a manual wheel frame 602, a manual input wheel belt 605 is connected with the manual power wheel I603 and the manual power wheel II 606, a manual driving wheel 607 is rotationally arranged on the manual wheel frame 602, a driven wheel shaft 610 is rotationally arranged on a manual device support frame 601, a manual driven wheel 609 is fixedly arranged on a driven wheel shaft 610, a manual output belt pulley 608 is connected with a manual driving wheel 607 and a manual driven wheel 609, a manual input bevel gear 611 is fixedly arranged on the driven wheel shaft 610, the manual wheel frame 602 can rotationally adjust the position to facilitate a person to get in and out the seat 201 and find the proper position of the manual crank 604, the manual crank 604 is rotated, the manual power wheel I603 rotates, the manual power wheel II 606 rotates through the manual input wheel belt 605, the manual output belt 608 synchronously rotates, the driven wheel shaft 610 rotates through the manual driven wheel 609, finally, power is transmitted to the manual pulley 614.
The specific structure of the spraying device 7 is shown in fig. 8 and 9, and comprises: a spraying shaft 701, a spraying platform rotating belt 702, a spraying platform power shaft 703, a spraying platform power wheel 704, a spraying platform steering gear 705, a spraying platform 706, a spraying port fixing frame 707, a sector gear 708, a steering motor 709, a spraying steering gear 710, a spraying pipe 711, a spraying hose 712 and a water pump 713, wherein the spraying shaft 701 is rotatably installed on the vehicle bottom 101, the water pump 713 is placed in the water outlet tank 104, the spraying platform power shaft 703 is rotatably installed on the vehicle bottom 101, the spraying platform power wheel 704 is fixedly installed on the spraying platform power shaft 703, the spraying platform rotating belt 702 is connected with the spraying platform power wheel 704 and the spraying shaft 701, the spraying platform steering gear 705 is fixedly installed on the spraying platform power shaft 703, the spraying platform 706 is rotatably installed on the spraying shaft 701, the spraying port fixing frame 707 is fixedly installed on the spraying shaft 701, the sector gear 708 is rotatably installed on the spraying port fixing frame 707, the steering motor 709 is fixedly installed on the spraying platform 706, the spraying steering gear 710 is fixedly arranged on an output shaft of the steering motor 709, the spraying pipe 711 is fixedly arranged on the sector gear 708, the spraying hose 712 is connected with the spraying pipe 711 and the water pump 713, the power of the manual device 6 is transmitted to the spraying shaft 701, four grooves are arranged on the spraying shaft 701, three spraying table rotating belts 702, three spraying table power shafts 703, three spraying table power wheels 704 and three spraying table steering gears 705 are respectively connected with the grooves on the spraying shaft 701, the power is transmitted to the spraying table steering gear 705 to steer the spraying table 706, the left and right directions of the spraying pipe 711 are further controlled, the steering motor 709 is connected with a power supply to drive the spraying steering gear 710 to rotate, the up and down directions of the spraying pipe 711 are further controlled, as an excitation, when the water in the water outlet tank 104 is more, the power of the water pump 713 is more, namely the faster the water is stepped on by a person, the more water is pumped from the water storage tank 103 to the water outlet tank 104, and the farther the water sprayed by the spraying pipe 711 is, the interest is increased.

Claims (6)

1. The utility model provides a gardens vegetation waters and spills device, includes (1), seat (2), foot-propelled device (3), running gear (4), watering device (5), manual device (6), sprinkler (7), its characterized in that:
the (1) comprises: the vehicle comprises a vehicle bottom (101), wheels (102), a water storage tank (103) and a water outlet tank (104);
the seat 2 comprises: the seat adjusting mechanism comprises an operating seat (201), a seat adjusting crank (202), a seat driving gear (203), a seat driven gear (204), a lead screw (205), a seat sliding base (206) and a seat sliding groove (207), wherein the operating seat (201) is fixedly arranged on the seat sliding base (206), the seat sliding base (206) is slidably arranged on the seat sliding groove (207), the seat adjusting crank (202) is rotatably arranged on a vehicle bottom (101), the seat driving gear (203) is fixedly arranged on the seat adjusting crank (202), the lead screw (205) is rotatably arranged on the seat sliding base (206), and the seat driven gear (204) is fixedly arranged on the lead screw (205) and forms threaded fit with the seat driving gear (203);
the foot-operated device (3) comprises: the foot-operated crank (301), the walking clutch wheel (307), the water feeding clutch wheel (308), the clutch lever (309) and the power lever frame (311), wherein the foot-operated crank (301) is rotatably installed on the vehicle bottom (101), the clutch lever (309) is rotatably installed on the vehicle bottom (101), the walking clutch wheel (307) is fixedly installed on the clutch lever (309), the water feeding clutch wheel (308) is fixedly installed on the clutch lever (309), and the power lever frame (311) is fixedly installed on the vehicle bottom (101);
the walking device (4) comprises: the walking mechanism comprises a walking gear support frame (401), a walking gear shaft (402), a walking gear (403), a walking shaft I (415) and a walking shaft II (420), wherein the walking gear support frame (401) is fixedly installed on a vehicle bottom (101), the walking gear shaft (402) is rotatably installed on the walking gear support frame (401), the walking gear (403) is fixedly installed on the walking gear shaft (402), the walking shaft I (415) is connected to a wheel (102), and the walking shaft II (420) is connected to the wheel (102);
the water feeding device (5) comprises: the water feeding gear shaft (501), the water feeding gear (502), the water pressing pump (519) and the hose (520) are arranged, the water feeding gear shaft (501) is rotatably arranged on the vehicle bottom (101), the water feeding gear (502) is fixedly arranged on the water feeding gear shaft (501), the water pressing pump (519) is fixedly arranged on the vehicle bottom (101), and the hose (520) is connected between the water pressing pump (519) and the water storage tank (103);
the manual device (6) comprises: the automatic spraying device comprises a manual device supporting frame (601), a manual output bevel gear shaft (612), a manual output bevel gear (613), a manual belt pulley (614) and a manual belt (615), wherein the manual device supporting frame (601) is fixedly installed on a vehicle bottom (101), the manual output bevel gear shaft (612) is rotatably installed on the vehicle bottom (101), the manual output bevel gear (613) is fixedly installed on the manual output bevel gear shaft (612), the manual belt pulley (614) is fixedly installed on the manual output bevel gear shaft (612), and the manual belt pulley (615) is connected with the manual belt pulley (614) and a spraying shaft (701);
the spraying device (7) comprises: the spraying device comprises a spraying shaft (701) and a water pump (713), wherein the spraying shaft (701) is rotatably installed on the car bottom (101), and the water pump (713) is placed in a water outlet tank (104).
2. The landscape vegetation watering device of claim 1, wherein: the foot-operated device (3) further comprises: foot-operated input wheel (302), connect belt (303), foot-operated output wheel (304), power wheel (30) of sailing, walking power wheel (306), separation and reunion power pole (310), foot-operated input wheel (302) fixed connection is on foot-operated crank (301), foot-operated output wheel (304) rotate and install on vehicle bottom (101), be connected with foot-operated input wheel (302) through connecting belt (303), power wheel (305) of sailing, walking power wheel (306) are through axle and foot-operated output wheel (304) fixed connection, the one end and the separation and reunion pole (309) swing joint of separation and reunion power pole (310), the other end rotates with power pole frame (311) and is connected.
3. The landscape vegetation watering device of claim 1, wherein: the traveling device (4) further comprises a traveling belt input wheel (404), a traveling belt output wheel (405), a traveling belt (406), a ratchet shaft (407), a reversing input bevel gear (408), a reversing output bevel gear (409), a reversing intermediate bevel gear (410), a traveling input bevel gear (411), a traveling intermediate bevel gear (412), a traveling output bevel gear (413), a traveling bevel gear (414), a differential bevel gear I (416), a differential bevel gear II (417), a differential bevel gear III (418), a differential bevel gear IV (419), a ratchet I (421), a pawl I (422), a pawl spring I (423), a pawl groove I (424), a ratchet II (425), a pawl II (426), a pawl spring II (427) and a pawl groove II (428), the traveling belt input wheel (404) is fixedly installed on the traveling gear shaft (402), the traveling belt output wheel (405) is connected with the traveling belt input wheel (404) through a belt, a reversing input bevel gear (408) is fixedly connected with a walking belt output wheel (405) through a shaft, a ratchet wheel I (421) is fixedly installed on a ratchet wheel shaft (407), a pawl groove I (424) is fixedly installed on the reversing input bevel gear (408), a pawl I (422) is installed on the pawl groove I (424) in a sliding manner, a pawl spring I (423) is connected with the pawl I (422) and the pawl groove I (424), a ratchet wheel II (425) is fixedly installed on the ratchet wheel shaft (407), a pawl groove II (428) is fixedly installed on a reversing output bevel gear (409), a pawl II (426) is installed on the pawl groove II (428) in a sliding manner, a pawl spring II (427) is connected with the pawl II (426) and the pawl groove II (428), the reversing output bevel gear (409) is rotatably installed on a vehicle bottom (101), a reversing intermediate bevel gear (410) is rotatably installed on the vehicle bottom (101), a walking input bevel gear (411) is fixedly installed on the ratchet wheel shaft (407), the walking middle bevel gear (412) is rotatably installed on the vehicle bottom (101), the walking output bevel gear (413) is fixedly connected with the walking middle bevel gear (412) through a shaft, the walking bevel gear (414) is installed on the walking shaft I (415), the differential bevel gear I (416) is installed on the walking shaft I (415), the differential bevel gear II (417) and the differential bevel gear III (418) are rotatably installed on the walking bevel gear (414), and the differential bevel gear IV (419) is installed on the walking shaft II (420).
4. The landscape vegetation watering device of claim 1, wherein: the water feeding device (5) further comprises: a driving sprocket (503), a chain (504), a driven sprocket (505), a water feeding driving pulley (506), a water feeding belt (507), a water feeding belt pulley shaft (508), a water feeding belt pulley fixing frame (509), a water feeding driven pulley (510), a connecting rod sliding groove I (511), a connecting rod sliding groove II (512), a connecting rod (513), a connecting rod sliding block I (514), a connecting rod sliding block II (515), a water pressing rod limiting frame (516), a water pressing rod connecting shaft (517) and a water pressing rod (518), wherein the driving sprocket (503) is fixedly arranged on the water feeding gear shaft (501), the water feeding belt pulley shaft (508) is rotatably arranged on a vehicle bottom (101), the driven sprocket (505) is fixedly arranged on the water feeding belt pulley shaft (508), the chain (504) is connected with the driving sprocket (503) and the driven sprocket (505), the water feeding driving pulley (506) is fixedly arranged on the water feeding belt pulley shaft (508), the upper water driven pulley (510) is rotatably arranged on an upper water pulley fixing frame (509), an upper water belt (507) is connected with an upper water driving pulley (506) and the upper water driven pulley (510), a first connecting rod sliding groove (511) is fixedly arranged on the upper water driven pulley (510), a second connecting rod sliding groove (512) is fixedly arranged on the upper water driven pulley (510), a first connecting rod sliding block (514) is slidably arranged on the second connecting rod sliding groove (512), a second connecting rod sliding block (515) is slidably arranged on the first connecting rod sliding groove (511), one end of a connecting rod (513) is rotatably connected on the first connecting rod sliding block (514), the middle part of the connecting rod sliding block is rotatably connected on the second connecting rod sliding block (515), the other end of the connecting rod is rotatably arranged on a water pressing rod connecting shaft (517), a water pressing rod connecting shaft (517) is slidably arranged on a water pressing rod limiting frame (516), and a water pressing rod (518) is slidably arranged on a water pressing pump (519), is connected with a connecting shaft (517) of the water pressing rod.
5. The landscape vegetation watering device of claim 1, wherein: the manual device (6) further comprises: the manual driving device comprises a manual wheel carrier (602), a manual driving wheel I (603), a manual crank (604), a manual input wheel belt (605), a manual driving wheel II (606), a manual driving wheel (607), a manual output belt pulley (608), a manual driven wheel (609), a driven wheel shaft (610) and a manual input bevel gear (611), wherein the manual wheel carrier (602) is rotatably arranged on the manual device supporting frame (601), the manual driving wheel I (603) is rotatably arranged on the manual wheel carrier (602), the manual crank (604) is arranged on the manual driving wheel I (603), the manual driving wheel II (606) is rotatably arranged on the manual wheel carrier (602), the manual input wheel belt (605) is connected with the manual driving wheel I (603) and the manual driving wheel II (606), the manual driving wheel (607) is rotatably arranged on the manual wheel carrier (602), the driven wheel shaft (610) is rotatably arranged on the manual device supporting frame (601), the manual driven wheel (609) is fixedly arranged on the driven wheel shaft (610), the manual output belt pulley (608) is connected with the manual driving wheel (607) and the manual driven wheel (609), and the manual input bevel gear (611) is fixedly arranged on the driven wheel shaft (610).
6. The landscape vegetation watering device of claim 1, wherein: the spraying device (7) further comprises: a spraying table rotating belt (702), a spraying table power shaft (703), a spraying table power wheel (704), a spraying table steering gear (705), a spraying table (706), a spraying port fixing frame (707), a sector gear (708), a steering motor (709), a spraying steering gear (710), a spraying pipe (711) and a spraying hose (712), wherein the spraying table power shaft (703) is rotatably arranged on a vehicle bottom (101), the spraying table power wheel (704) is fixedly arranged on the spraying table power shaft (703), the spraying table rotating belt (702) is connected with the spraying table power wheel (704) and a spraying shaft (701), the spraying table steering gear (705) is fixedly arranged on the spraying table power shaft (703), the spraying table (706) is rotatably arranged on the spraying shaft (701), the spraying port fixing frame (707) is fixedly arranged on the spraying shaft (701), the sector gear (708) is rotatably arranged on the spraying port fixing frame (707), the steering motor (709) is fixedly arranged on the spraying platform (706), the spraying steering gear (710) is fixedly arranged on an output shaft of the steering motor (709), the spraying pipe (711) is fixedly arranged on the sector gear (708), and the spraying hose (712) is connected with the spraying pipe (711) and the water pump (713).
CN202110961411.7A 2021-08-20 2021-08-20 Garden vegetation watering device Active CN113615560B (en)

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CN111492953A (en) * 2020-04-23 2020-08-07 中国农业科学院农田灌溉研究所 Meticulous intelligent irrigation equipment of horticulture crop
CN112823606A (en) * 2019-11-20 2021-05-21 田瑾 Gardens are planted with equipment that waters
CN112930848A (en) * 2021-02-03 2021-06-11 杭州利昊建设有限公司 Garden lawn curing means
CN213881238U (en) * 2020-08-13 2021-08-06 付刚 Small-size agricultural machine irrigation equipment

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CN201403293Y (en) * 2009-05-25 2010-02-17 闫平安 Agricultural multifunctional machine
CN201973191U (en) * 2011-03-31 2011-09-14 李增泉 Double-rack driving mechanism
CN202680140U (en) * 2012-01-20 2013-01-23 中国灌溉排水发展中心 Movable spray irrigation equipment
CN102823477A (en) * 2012-09-07 2012-12-19 杨永杰 Convenient agricultural watering vehicle
CN203388018U (en) * 2013-08-05 2014-01-15 刘睿铭 Centrifugal energy-saving irrigation device
CN203896743U (en) * 2014-06-20 2014-10-29 辽宁工业大学 Grass trimming trolley
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CN112823606A (en) * 2019-11-20 2021-05-21 田瑾 Gardens are planted with equipment that waters
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CN213881238U (en) * 2020-08-13 2021-08-06 付刚 Small-size agricultural machine irrigation equipment
CN112930848A (en) * 2021-02-03 2021-06-11 杭州利昊建设有限公司 Garden lawn curing means

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