CN217905351U - Low-carbon energy-saving seedling growth device - Google Patents
Low-carbon energy-saving seedling growth device Download PDFInfo
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- CN217905351U CN217905351U CN202222043569.9U CN202222043569U CN217905351U CN 217905351 U CN217905351 U CN 217905351U CN 202222043569 U CN202222043569 U CN 202222043569U CN 217905351 U CN217905351 U CN 217905351U
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- carbon energy
- water pump
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Abstract
The utility model relates to a device of growing seedlings especially relates to an energy-conserving forestry of low carbon device of growing seedlings. The utility model provides a can carry out the forestry of low carbon energy-saving that fertilizies to sapling automatically and grow seedlings device. The utility model provides a low-carbon energy-saving seedling growth device, which comprises a water storage tank, a cultivation barrel, a connecting pipe, a water pump, a water outlet pipe, a spray head and the like; the storage water tank symmetric connection has the bucket of cultivating, and the symmetry intercommunication has the connecting pipe on the storage water tank, and storage water tank internally mounted has the water pump, and the kneck intercommunication of water pump has the outlet pipe, and the intercommunication has the shower nozzle on the outlet pipe. Promote the stopper through rivers and slide forward and make the catch bar slide forward, and then the catch bar slides forward and promotes the connecting rod and upwards slide, and the baffle no longer blocks the discharge gate thereupon, and liquid fertile flows to cultivating in the bucket through the discharge gate thereupon to reached and carried out the purpose of fertiliziing to the sapling, the water pump function makes the shower nozzle spout the rainwater simultaneously, thereby has realized the cultivation to the sapling.
Description
Technical Field
The utility model relates to a device of growing seedlings especially relates to an energy-conserving forestry of low carbon device of growing seedlings.
Background
Forestry is one of the important components of national economy, and forestry planting is the important component in forestry production development, and in the forestry planting, in order to improve the survival rate of seedling, usually will carry out special cultivation work to the sapling.
Patent grant publication number is CN 215011980U's patent, has announced a be used for forestry sapling breeding device, the power distribution box comprises a box body, the apron is installed on the top of box, and the equidistance is seted up flutedly on the apron, and the connecting plate is installed to the cell wall of recess, installs preceding snap ring on the connecting plate, and the shifting chute has been seted up to the cell wall of recess, and the internally mounted of shifting chute has the movable plate, installs the back snap ring relative with preceding snap ring on the movable plate, and the side pressure subassembly of being connected with the movable plate is still installed to the cell wall of recess symmetry, wherein still the equidistance on the apron install with correspond the adjusting part that the movable plate is connected. The device is not convenient for fertilize the sapling automatically, needs artifical manual watering a plurality of saplings, has increased artificial intensity of labour.
Therefore, the low-carbon energy-saving seedling raising device capable of automatically fertilizing the seedlings is urgently needed to be designed.
SUMMERY OF THE UTILITY MODEL
The utility model aims to overcome be not convenient for carry out automatic fertilization to the sapling among the above-mentioned device, need consume the shortcoming of great manpower, the technical problem of the utility model: the utility model provides a can fertilize low carbon energy-conserving forestry device of growing seedlings to sapling automatically.
The technical implementation scheme of the utility model is: the utility model provides an energy-conserving forestry device of growing seedlings of low carbon, including the storage water tank, cultivate the bucket, the outlet pipe, shower nozzle and water pump, storage water tank symmetric connection has the bucket of cultivating, storage water tank internally mounted has the water pump, the kneck intercommunication of water pump has the outlet pipe, the intercommunication has the shower nozzle on the outlet pipe, still including the connecting pipe, the catch bar, the connecting rod, U type deflector, place the case, a baffle, elastic component and stopper, the symmetry intercommunication has the connecting pipe on the storage water tank, the gliding style is connected with the catch bar on the connecting pipe, catch bar end connection has the stopper, be connected with the elastic component between stopper and the connecting pipe, the elastic component cover is established on the catch bar, be connected with on the storage water tank and place the case, it has the discharge gate to place case both sides open, it is connected with the baffle to place the symmetry slidingtype on the case, the baffle shelters from the discharge gate, be connected with the connecting rod on the baffle, catch bar contacts, be connected with U type deflector on the connecting rod, it is inboard to promote the rod tip is located U type deflector.
Further, still including slide rail, slider, scrape pole, filter screen and connecting plate, the water storage tank top is connected with the connecting plate, and the symmetric connection has the slide rail on the connecting plate, and the slidingtype is connected with the slider in the slide rail, is connected with between two sliders and scrapes the pole, and embedded being connected with the filter screen on the connecting plate scrapes pole and filter screen contact.
Furthermore, the device also comprises a pull rod, wherein one slide block is connected with the pull rod.
Furthermore, the device also comprises a cover plate, and the cover plate is placed on the placing box.
Furthermore, the specification of baffle and the specification looks adaptation of discharge gate.
Further, the rear end part of the connecting rod is obliquely arranged.
The above-mentioned right has been adopted the utility model discloses the description of structure can know, the utility model discloses a design departure point, theory and advantage are: 1. promote the stopper through rivers and slide forward and make the catch bar slide forward, and then the catch bar slides forward and promotes the connecting rod and upwards slide, and the baffle no longer blocks the discharge gate thereupon, and liquid fertile flows to cultivating in the bucket through the discharge gate thereupon to reached and carried out the purpose of fertiliziing to the sapling, the water pump function makes the shower nozzle spout the rainwater simultaneously, thereby has realized the cultivation to the sapling.
2. Remove to strike off leaf and impurity on the filter screen through scraping the pole, and then can prevent that impurity and leaf from falling into the storage water tank and blockking up connecting pipe and water pump water inlet.
Drawings
Fig. 1 is a schematic view of the three-dimensional structure of the present invention.
Fig. 2 is a schematic view of the three-dimensional structure of the parts of the cultivation barrel, the connecting pipe, the push rod and the like.
Fig. 3 is the schematic view of the sectional view of the three-dimensional structure of the parts such as the elastic member and the limiting block.
Fig. 4 is a schematic view of the enlarged three-dimensional structure at a position a of the present invention.
Fig. 5 is a schematic view of the three-dimensional enlarged structure of the utility model B.
In the drawings above: 1: storage water tank, 2: cultivation bucket, 3: connecting pipe, 301: push rod, 302: connecting rod, 303: u-shaped guide plate, 4: water outlet pipe, 5: a spray head, 6: slide rail, 7: a slide block, 8: scraping bar, 9: filter screen, 10: connecting plate, 11: placing box, 1101: cover plate, 12: baffle, 1201: discharge port, 13: water pump, 14: a pull rod, 15: elastic member, 16: and a limiting block.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Example 1
The utility model provides a low carbon energy-conserving forestry device of growing seedlings, refer to fig. 1, fig. 2, fig. 3 and fig. 5, including storage water tank 1, cultivate bucket 2, connecting pipe 3, catch bar 301, connecting rod 302, U type deflector 303, outlet pipe 4, shower nozzle 5, place case 11, apron 1101, baffle 12, water pump 13, elastic component 15 and stopper 16, storage water tank 1 symmetric connection has and cultivates bucket 2, storage water tank 1 front side upper portion bilateral symmetry intercommunication has connecting pipe 3, connecting pipe 3 internal sliding type is connected with catch bar 301, catch bar 301 rear end has stopper 16 through the bolt rigid coupling, be connected with elastic component 15 between stopper 16 and the connecting pipe 3, elastic component 15 cover is established on catch bar 301, storage water tank 1 front portion has through the bolt rigid coupling to place case 11, place apron 1101 on the case 11, place case 11 left and right sides and all open the discharge gate, place case 11 upper bilateral sliding type and be connected with baffle 12, baffle 12 shelters from discharge gate 1201, baffle 12's specification and the specification adaptation of discharge gate 1201, baffle 12 upper portion has connecting rod 302 through the bolt rigid coupling to have connecting rod 302, connecting rod 302 rear end intercommunication has the U type deflector 303, there is located the connector 13 inboard of outlet pipe 13 through the U type deflector 303, the U type deflector 303.
When needs cultivate the sapling, at first the staff places this device in the plane, the staff puts into soil and cultivates bucket 2 afterwards, and cultivate the sapling, then the staff opens apron 1101, and pour the chemical fertilizer into storage water tank 1 in, the staff closes apron 1101 thereupon, under the effect of apron 1101, can prevent that the rainwater from falling into the chemical fertilizer, in rainy day, the rainwater falls into storage water tank 1, and then make and store up the rainwater in storage water tank 1, when the rainwater holds to a take the altitude, the rainwater flows into in connecting pipe 3, rivers promote stopper 16 and slide forward, stopper 16 drives catch bar 301 and slides forward, elastic component 15 is compressed thereupon, catch bar 301 slides forward makes connecting rod 302 upwards slide, baffle 12 no longer blocks discharge gate 1201 thereupon, liquid fertilizer flows to cultivating in the bucket 2 through discharge gate 1201 thereupon, thereby reached the mesh of fertilizeing the sapling, because the rear end portion of connecting rod 302 is the slope setting, and then be convenient for catch bar 301 promotes connecting rod 302 and moves.
The staff starts water pump 13 afterwards, water pump 13 operates and extracts the rainwater to outlet pipe 4 in, the rainwater flows into shower nozzle 5 thereupon, shower nozzle 5 spouts the rainwater to the sapling thereupon, thereby watering to the sapling has been realized, then the staff closes water pump 13, when the height of rainwater is less than connecting pipe 3, elastic component 15 resets thereupon and drives stopper 16 to reset, and then make catch bar 301 reset and slide in U type deflector 303 inboard, catch bar 301 stimulates U type deflector 303 and moves backward, make connecting rod 302 slide backward and reset, baffle 12 resets thereupon and drives connecting rod 302 to reset, because the specification of baffle 12 and the specification looks adaptation of discharge gate 1201, and then make baffle 12 can better block liquid fertile outflow.
Example 2
On the basis of embodiment 1, as shown in fig. 1-4, the water storage tank further comprises a slide rail 6, a slide block 7, a scraping rod 8, a filter screen 9, a connecting plate 10 and a pull rod 14, wherein the top of the water storage tank 1 is fixedly connected with the connecting plate 10 through a bolt, the front and back of the top of the connecting plate 10 are symmetrically fixedly connected with the slide rail 6 through a bolt, the slide blocks 7 are connected in the two slide rails 6 in a sliding manner, the scraping rod 8 is connected between the two slide blocks 7, the filter screen 9 is connected on the connecting plate 10 in an embedded manner, the scraping rod 8 is in contact with the filter screen 9, and the pull rod 14 is fixedly connected on the right side of the slide block 7 on the rear side through a bolt.
When rainy day, the rainwater drops through filter screen 9 and concentrates the collection in storage water tank 1, block up connecting pipe 3 and 13 water inlets of water pump in order to prevent leaf or impurity to drop in storage water tank 1, the staff holds pull rod 14 and stimulates left, pull rod 14 drives slider 7 at rear portion and slides left, slider 7 drives thereupon and scrapes the impurity and the leaf on pole 8 to filter screen 9 surface and strike off, and then can prevent to pile up on the filter screen 9, influence the rainwater and get into storage water tank 1.
The above-mentioned only be the embodiment of the utility model, not consequently the restriction the patent scope of the utility model, all utilize the equivalent structure or equivalent flow transform that the content of the specification was done, or directly or indirectly use in other relevant technical field, all the same reason is included in the patent protection scope of the utility model.
Claims (6)
1. A low-carbon energy-saving seedling culture device for forestry comprises a water storage tank (1), a cultivation barrel (2), a water outlet pipe (4), a spray head (5) and a water pump (13), wherein the water storage tank (1) is symmetrically connected with the cultivation barrel (2), the water pump (13) is installed inside the water storage tank (1), a connector of the water pump (13) is communicated with the water outlet pipe (4), the water outlet pipe (4) is communicated with the spray head (5), the seedling culture device is characterized by further comprising a connecting pipe (3), a push rod (301), a connecting rod (302), a U-shaped guide plate (303), a placing box (11), a baffle (12), an elastic piece (15) and a limiting block (16), the water storage tank (1) is symmetrically communicated with the connecting pipe (3), the connecting pipe (3) is slidably connected with the push rod (301) on the connecting pipe (3), the end part of the push rod (301) is connected with the limiting block (16), an elastic piece (15) is connected between the limiting block (16) and the connecting pipe (3), the elastic piece (15) is sleeved on the push rod (301), the water storage tank (1) is connected with the placing box (11), the placing box (1201), two sides of the placing box (11) are opened with discharge holes (1201), the baffle (12), and the baffle (12) is symmetrically connected with the baffle (12), the baffle (12) is connected with a connecting rod (302), the push rod (301) is in contact with the connecting rod (302), the connecting rod (302) is connected with a U-shaped guide plate (303), and the end part of the push rod (301) is located on the inner side of the U-shaped guide plate (303).
2. A low-carbon energy-saving seedling growth device for forestry as claimed in claim 1, further comprising slide rails (6), slide blocks (7), scraping rods (8), filter screens (9) and connecting plates (10), wherein the top of the water storage tank (1) is connected with the connecting plates (10), the slide rails (6) are symmetrically connected to the connecting plates (10), the slide rails (6) are internally connected with the slide blocks (7) in a sliding manner, the scraping rods (8) are connected between the two slide blocks (7), the filter screens (9) are connected to the connecting plates (10) in an embedded manner, and the scraping rods (8) are in contact with the filter screens (9).
3. A low-carbon energy-saving seedling raising device as claimed in claim 2, further comprising a pull rod (14), wherein one of the slide blocks (7) is connected with the pull rod (14).
4. A low-carbon energy-saving seedling raising device for forestry as claimed in claim 3, further comprising a cover plate (1101), wherein the cover plate (1101) is placed on the placing box (11).
5. A low-carbon energy-saving seedling raising device as claimed in claim 4, wherein the specification of the baffle plate (12) is matched with that of the discharge port (1201).
6. A low-carbon energy-saving seedling raising device as claimed in claim 5, wherein the rear end of the connecting rod (302) is obliquely arranged.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222043569.9U CN217905351U (en) | 2022-08-04 | 2022-08-04 | Low-carbon energy-saving seedling growth device |
Applications Claiming Priority (1)
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CN202222043569.9U CN217905351U (en) | 2022-08-04 | 2022-08-04 | Low-carbon energy-saving seedling growth device |
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CN217905351U true CN217905351U (en) | 2022-11-29 |
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CN202222043569.9U Active CN217905351U (en) | 2022-08-04 | 2022-08-04 | Low-carbon energy-saving seedling growth device |
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- 2022-08-04 CN CN202222043569.9U patent/CN217905351U/en active Active
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