CN216314249U - Sprouting vegetable production device for greenhouse - Google Patents

Sprouting vegetable production device for greenhouse Download PDF

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Publication number
CN216314249U
CN216314249U CN202122931656.3U CN202122931656U CN216314249U CN 216314249 U CN216314249 U CN 216314249U CN 202122931656 U CN202122931656 U CN 202122931656U CN 216314249 U CN216314249 U CN 216314249U
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water
seedling
pipe body
bearing
water tank
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CN202122931656.3U
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严从生
张殿辉
刘芳
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Feixi Hexianfeng Ecological Planting Professional Cooperative
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Feixi Hexianfeng Ecological Planting Professional Cooperative
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Abstract

The utility model discloses a sprout vegetable production device for a greenhouse, which comprises a seedling water tank, a seedling tray assembly and a water delivery pipe body, wherein the seedling water tank is arranged in the seedling tray assembly; the device also comprises a supporting component and at least one water injection piece; the bottom end part of the bearing assembly is provided with a rack, the water injection piece comprises a water guide pipe body, a head rotating sleeve, an outer gear ring and a sealing baffle plate, the water guide pipe body is arranged on the side wall of the seedling growing water tank, and one end of the water guide pipe body extends into the seedling growing water tank; the other end of the water guide pipe body is communicated with the water delivery pipe body; the outer gear ring cover is established and is sheathe in and mesh mutually with the rack in the head rotates, the port department that water guide pipe body and head rotate the cover and be relative all is provided with sealing baffle, all has seted up the through-flow mouth on every sealing baffle. The utility model has simple structure, maintains water quantity and avoids water resource waste when the sprouting vegetable is planted and produced, is convenient for the sprouting vegetable to be planted and harvested, and has stronger practicability.

Description

Sprouting vegetable production device for greenhouse
Technical Field
The utility model relates to the technical field of vegetable planting, in particular to a sprout vegetable production device for a greenhouse.
Background
The traditional sprouting vegetable is soybean sprout, and new varieties such as mung bean sprout, black bean sprout, pea sprout, broad bean sprout and the like are gradually developed in the market. Although bean sprouts are cold in nature and sweet in taste, they have different efficacies. The mung bean sprout is easy to digest, has the effects of clearing away heat and toxic materials, promoting urination and removing dampness, and is suitable for people with damp-heat stagnation, dry mouth, thirst, red heat in urine, constipation, conjunctival congestion, swelling and pain, and the like. The soybean sprout has effects of invigorating spleen and nourishing liver, contains high vitamin B2, and is helpful for preventing angular inflammation when eaten properly in spring. The black bean sprouts nourish kidney, contain rich mineral substances such as calcium, phosphorus, iron, potassium and the like and various vitamins, and have higher content than the green bean sprouts.
With the increase of the demand of people for the sprouting vegetables, the sprouting vegetables are produced and developed rapidly, but are mostly produced in a small workshop manner, the factory production and the intensive production are less, and in addition, the biological yield and the economic yield of the sprouting vegetables are improved. Most of the existing bud vegetable seedlings are planted in a greenhouse and are planted on the ground or in a planting groove; planting and watering on the ground are troublesome, and collecting finished products and replacing soil in the planting groove are troublesome.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a sprout vegetable production device for a greenhouse, which aims to solve the problems in the background technology.
In order to achieve the purpose, the utility model provides the following technical scheme:
a production device of sprout vegetables for a greenhouse comprises a seedling growing water tank, a seedling growing disc assembly and a water delivery pipe body, wherein the seedling growing disc assembly is arranged at the port of the seedling growing water tank, one side of the seedling growing disc assembly is rotatably connected with the inner side wall of the seedling growing water tank through a connecting seat, and the water delivery pipe body is arranged on the side wall of the seedling growing water tank and is connected with an external irrigation water pipe; the seedling tray assembly is characterized by further comprising a bearing assembly and at least one water injection piece, wherein the bearing assembly is arranged on the side wall of the seedling tray assembly and is opposite to the connecting seat, the bearing assembly is used for bearing the end part, far away from the connecting seat, of the seedling tray assembly, and the bearing assembly can move downwards under the action of bearing the gravity of the seedling tray assembly; the bottom end part of the bearing assembly is provided with a rack, the water injection piece comprises a water guide pipe body, a head rotating sleeve, an outer gear ring and a sealing baffle plate, the water guide pipe body is arranged on the side wall of the seedling growing water tank, and one end of the water guide pipe body extends into the seedling growing water tank; the other end of the water guide pipe body is communicated with the water delivery pipe body; the head rotates the cover and rotates and establish the tip that stretches into in the basin of growing seedlings at the aqueduct body, and outer ring gear cover is established and is put in and mesh mutually with the rack in the head rotation, the port department that aqueduct body and head rotation cover are relative all is provided with sealing baffle, has all seted up the through-flow mouth on every sealing baffle, and the through-flow mouth on two sealing baffle can be linked together head rotation cover and aqueduct body when relative, can rotate the passageway closure between cover and the aqueduct body with the head when the through-flow mouth on two sealing baffle misplaces completely.
On the basis of the technical scheme, the utility model also provides the following optional technical scheme:
in one alternative: the bearing assembly comprises a fixing plate, at least one guide rod, a bearing plate and an elastic piece, the fixing plate is fixed on the inner side wall of the seedling raising water tank and is arranged opposite to the connecting seat, the guide rod is arranged on the fixing plate and penetrates through the fixing plate in a sliding mode, the bearing plate is arranged at the top end portion of the guide rod and is used for bearing the end portion, far away from the connecting seat, of the seedling raising plate assembly, and the elastic piece is arranged between the fixing plate and the bearing plate and is connected with the fixing plate and the bearing plate.
In one alternative: the seedling raising tray assembly comprises a bearing frame, an earth accommodating structure, a bearing part and a frame, one end of the bearing frame is rotatably connected with the connecting seat and is used for bearing the earth accommodating structure, and the bearing part is arranged at the end part, far away from the connecting seat, of the bearing frame and can be hung and buckled on the bearing assembly; the soil containing structure is detachably arranged on the bearing frame and filled with soil for planting sprouting vegetables; the frame is established on earth holding structure and encircles cloth at earth holding structure edge part, and the frame encloses into a planting basin body that is used for sprouting vegetable to grow with earth holding structure.
In one alternative: the earth holding structure comprises a frame cage body and a door body, the frame cage body is surrounded by steel bars, a frame cage port is formed in the bottom of the frame cage body, the door body is arranged in the frame cage port and used for plugging the frame cage port, one end of the door body is hinged to the side portion of the frame cage port, and the other end of the door body is connected with the bottom of the frame cage body through a locking structure.
In one alternative: the hasp structure includes bolt post and locking sleeve, the bolt post is fixed in the position that frame cage body bottom is close to the edge, locking sleeve slides and establishes and keep away from its and frame cage port articulated distolateral, locking sleeve can close when detaining to frame cage port in the rope that absorbs water and peg graft inside the bolt post.
In one alternative: the soil containing structure also comprises a plurality of water absorbing ropes, and one end of each water absorbing rope is connected to the door body; the water absorption rope other end can extend to the bottom of the seedling raising water tank, and the water absorption rope can absorb the water in the seedling raising water tank to the soil in the seedling raising tray assembly.
Compared with the prior art, the utility model has the following beneficial effects:
1. the device is rotationally connected with a seedling raising water tank through one end part of a seedling raising disc assembly, the other end of the seedling raising disc assembly is hung and buckled on the side edge of the seedling raising water tank, and the seedling raising disc assembly is turned out from the seedling raising water tank, so that the seedling raising disc assembly is convenient for planting, producing and harvesting of bud seedling vegetables;
2. the device opens and closes a channel between the water guide pipe body and the head rotating sleeve when the device is or is not under the pressure bearing of the seedling tray component through the water guide pipe body, the head rotating sleeve, the outer gear ring, the sealing baffle and the bearing component, so that the water retention capacity can be realized when the bud seedling vegetable is planted, the water is prevented from entering the seedling water tank when the bud seedling vegetable is not planted, and the water resource waste is avoided;
3. the utility model has simple structure, maintains water quantity and avoids water resource waste when the sprouting vegetable is planted and produced, is convenient for the sprouting vegetable to be planted and harvested, and has stronger practicability.
Drawings
Fig. 1 is a schematic view of the overall structure of the device in one embodiment of the present invention.
Fig. 2 is a schematic structural view of a water injection member according to an embodiment of the present invention.
Fig. 3 is a schematic view of a soil containment structure in an embodiment of the present invention.
Notations for reference numerals: the seedling raising water tank 1, the seedling raising tray component 2, the connecting seat 3, the water delivery pipe body 4, the water injection part 5, the water delivery pipe body 51, the head rotating sleeve 52, the outer gear ring 53, the sealing baffle 54, the through-flow opening 55, the fixing plate 6, the guide rod 7, the bearing plate 8, the elastic part 9, the rack 10, the bearing frame 21, the soil containing structure 22, the frame cage body 221, the frame cage port 222, the door body 223, the water absorption rope 224, the bolt column 225, the locking sleeve 226, the bearing part 23 and the frame 24.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments; in the drawings or the description, the same reference numerals are used for similar or identical parts, and the shape, thickness or height of each part may be enlarged or reduced in practical use. The examples are given solely for the purpose of illustration and are not intended to limit the scope of the utility model. Any obvious modifications or variations can be made to the present invention without departing from the spirit or scope of the present invention.
In one embodiment, as shown in fig. 1 and 2, the sprout production device for greenhouse comprises a seedling growing water tank 1, a seedling growing disc assembly 2 and a water delivery pipe body 4, wherein the seedling growing disc assembly 2 is arranged at the port of the seedling growing water tank 1, one side of the seedling growing disc assembly 2 is rotatably connected with the inner side wall of the seedling growing water tank 1 through a connecting seat 3, and the water delivery pipe body 4 is arranged on the side wall of the seedling growing water tank 1 and is connected with an external irrigation water pipe; the seedling raising tray assembly is characterized by further comprising a bearing assembly and at least one water injection piece 5, wherein the bearing assembly is arranged on the side wall of the seedling raising tray assembly 2 and is opposite to the connecting seat 3, the bearing assembly is used for bearing the end part, far away from the connecting seat 3, of the seedling raising tray assembly 2, and the bearing assembly can move downwards under the action of bearing the gravity of the seedling raising tray assembly 2; the bottom end part of the bearing component is provided with a rack 10, the water injection part 5 comprises a water guide pipe body 51, a head rotating sleeve 52, an outer gear ring 53 and a sealing baffle plate 54, the water guide pipe body 51 is arranged on the side wall of the seedling raising water tank 1, and one end of the water guide pipe body extends into the seedling raising water tank 1; the other end of the water guide pipe body 51 is communicated with the water delivery pipe body 4; the head rotating sleeve 52 is rotatably arranged at the end part of the water guide pipe body 51 extending into the seedling raising water tank 1, the outer gear ring 53 is sleeved on the head rotating sleeve 52 and meshed with the rack 10, sealing baffles 54 are arranged at the opposite end parts of the water guide pipe body 51 and the head rotating sleeve 52, a through flow port 55 is formed in each sealing baffle 54, the head rotating sleeve 52 can be communicated with the water guide pipe body 51 when the through flow ports 55 on the two sealing baffles 54 are opposite, and a channel between the head rotating sleeve 52 and the water guide pipe body 51 can be sealed when the through flow ports 55 on the two sealing baffles 54 are completely staggered.
In the implementation process of the embodiment, when the seedling tray assembly 2 for growing bud seedling vegetables is rotatably placed on the supporting assembly, as the supporting assembly is pressed to move downwards, the rack 10 moves downwards along with the downward movement and drives the head rotating sleeve 52 to rotate through the meshing with the outer gear ring 53, the head rotating sleeve 52 can drive the sealing baffle plates 54 arranged on the head rotating sleeve 52 to rotate, and thus the through-flow openings 55 on the two sealing baffle plates 54 gradually face each other; the water guide pipe body 51 is communicated with the head rotating sleeve 52, so that the water in the water guide pipe body 4 can flow into the seedling raising water tank 1, and sufficient water supply is ensured; when the sprouting vegetable is grown, the seedling tray component 2 is shifted to rotate around the connecting seat 3, so that the seedling tray component 2 can rotate to be separated from the inside of the seedling water tank 1, and at the moment, the bearing component does not bear pressure and moves upwards to reset the through-flow openings 55 on the two sealing baffles 54 to be staggered with each other; the rack 10 moves upwards and drives the head rotating sleeve 52 to rotate through the meshing with the outer gear ring 53, so that the through holes 55 on the two sealing baffles 54 are completely staggered, the water guide pipe body 51 and the head rotating sleeve 52 are blocked, the water in the water guide pipe body 4 is prevented from continuously flowing into the seedling raising water tank 1, and the water can be saved; as an embodiment, the left, right, up and down positions of the components shown in the drawings are only one arrangement, and the specific positions are set according to specific requirements;
in one embodiment, as shown in fig. 1, the supporting assembly includes a fixing plate 6, at least one guide rod 7, a supporting plate 8 and an elastic member 9, the fixing plate 6 is fixed on the inner side wall of the seedling raising water tank 1 and is disposed opposite to the connecting seat 3, the guide rod 7 is disposed on the fixing plate 6 and slides through the fixing plate 6, the supporting plate 8 is disposed at the top end portion of the guide rod 7 and is used for supporting the end portion of the seedling raising tray assembly 2 far away from the connecting seat 3, and the elastic member 9 is disposed between and connected with the fixing plate 6 and the supporting plate 8; in this embodiment, when the support plate 8 is pressed by the seedling tray assembly 2, the elastic member 9 is compressed to move the support plate 8 downward, and the downward movement of the support plate 8 pushes the guide rod 7 and the rack 10 to move downward; when the bearing plate 8 does not bear the pressure from the seedling tray assembly 2, the bearing plate 8 can reset and drive the guide rod 7 and the rack 10 to move upwards for resetting under the elastic action of the elastic piece 9; wherein, the rack 10 is a spring or an arch rod;
in one embodiment, as shown in fig. 1 and 3, the seedling raising tray assembly 2 includes a supporting frame 21, a soil containing structure 22, a supporting portion 23 and a frame 24, wherein one end of the supporting frame 21 is rotatably connected with the connecting base 3 and is used for supporting the soil containing structure 22, and the supporting portion 23 is arranged at the end portion of the supporting frame 21 far away from the connecting base 3 and can be hung on the supporting assembly; the soil containing structure 22 is detachably mounted on the bearing frame 21 and filled with soil for planting sprouting vegetables; the frame 24 is arranged on the soil accommodating structure 22 and is annularly distributed on the edge part of the soil accommodating structure 22, the frame 24 and the soil accommodating structure 22 enclose a planting pot body for sprouting vegetable growth, and in the embodiment, when the bearing part 23 is hung and buckled on the bearing component, the bearing component is pressed due to the gravity action of the whole seedling raising disc component 2 and the soil weight in the soil accommodating structure 22; the soil containing structure 22 is arranged inside the seedling growing water tank 1 and is convenient to turn over, so that the harvest of the bud seedling vegetable is convenient;
in one embodiment, as shown in fig. 3, the soil accommodating structure 22 includes a cage body 221 and a door body 223, the cage body 221 is enclosed by steel bars, a cage port 222 is formed at the bottom of the cage body 221, the door body 223 is disposed in the cage port 222 and is used for plugging the cage port 222, one end of the door body 223 is hinged to a side portion of the cage port 222, and the other end is connected to the bottom of the cage body 221 through a locking structure; the door body 223 can be detached and fixed through the lock catch structure, so that the opening and closing of the cage port 222 are realized; the opening of the cage port 222 facilitates the replacement of the soil inside the cage body 221; the growing environment for planting the sprouting vegetables every time is improved.
In one embodiment, as shown in fig. 3, the locking structure comprises a latch 225 and a locking sleeve 226, the latch 225 is fixed at a position close to the edge of the bottom of the frame cage body 221, the locking sleeve 226 is slidably arranged at the end side of the door body 223 far away from the hinge joint with the frame cage port 222, and the locking sleeve 226 can be inserted into the latch 225 when the water absorption rope 224 is buckled in the frame cage port 222; the locking sleeve 226 slides on the door body 223, so that the locking sleeve 226 can be inserted into the latch column 225, and the door body 223 is detached and fixed;
in one embodiment, as shown in fig. 1 and 3, the soil accommodating structure 22 further includes a plurality of water absorbing ropes 224, and one end of each water absorbing rope 224 is connected to the door body 223; the other end of the water absorption rope 224 can extend to the bottom of the seedling raising water tank 1, and the water absorption rope 224 can absorb water in the seedling raising water tank 1 into soil in the seedling raising tray assembly 2; by providing the water absorbing cord 224, when the water in the seedling raising water tank 1 is low, the water can be absorbed into the soil to keep the soil moist.
The above description is only for the specific embodiments of the present disclosure, but the scope of the present disclosure is not limited thereto, and any person skilled in the art can easily conceive of the changes or substitutions within the technical scope of the present disclosure, and all the changes or substitutions should be covered within the scope of the present disclosure. Therefore, the protection scope of the present disclosure shall be subject to the protection scope of the claims.

Claims (6)

1. A production device of sprout vegetables for a greenhouse comprises a seedling growing water tank, a seedling growing disc assembly and a water delivery pipe body, wherein the seedling growing disc assembly is arranged at the port of the seedling growing water tank, one side of the seedling growing disc assembly is rotatably connected with the inner side wall of the seedling growing water tank through a connecting seat, and the water delivery pipe body is arranged on the side wall of the seedling growing water tank and is connected with an external irrigation water pipe; the device is characterized by also comprising a supporting component and at least one water injection piece;
the supporting assembly is arranged on the side wall of the seedling tray assembly and is opposite to the connecting seat, the supporting assembly is used for supporting the end part, far away from the connecting seat, of the seedling tray assembly, and the supporting assembly can move downwards under the action of bearing the gravity of the seedling tray assembly; the bottom end part of the bearing component is provided with a rack;
the water injection piece comprises a water guide pipe body, a head rotating sleeve, an outer gear ring and a sealing baffle plate, wherein the water guide pipe body is arranged on the side wall of the seedling culture water tank, and one end of the water guide pipe body extends into the seedling culture water tank;
the other end of the water guide pipe body is communicated with the water delivery pipe body; the head rotating sleeve is rotatably arranged at the end part of the water guide pipe body extending into the seedling raising water tank, and the outer gear ring is sleeved on the head rotating sleeve and meshed with the rack;
sealing baffles are arranged at the opposite end parts of the water guide pipe body and the head rotating sleeve, and a through flow port is formed in each sealing baffle;
when the through-flow openings on the two sealing baffles are opposite, the head rotating sleeve can be communicated with the water guide pipe body, and when the through-flow openings on the two sealing baffles are completely staggered, a channel between the head rotating sleeve and the water guide pipe body can be sealed.
2. The greenhouse sprouting vegetable production device as claimed in claim 1, wherein the supporting component comprises a fixing plate, at least one guide rod, a supporting plate and an elastic member;
the fixed plate is fixed on the inner side wall of the seedling raising water tank and is arranged opposite to the connecting seat, and the guide rod is arranged on the fixed plate and penetrates through the fixed plate in a sliding manner;
the bearing plate is arranged at the top end part of the guide rod and used for bearing the end part of the seedling tray assembly, which is far away from the connecting seat, and the elastic part is arranged between the fixing plate and the bearing plate and connected with the fixing plate and the bearing plate.
3. The greenhouse sprouting vegetable production device as claimed in claim 2, wherein the sprouting tray assembly comprises a bearing frame, a soil containing structure, a bearing part and a frame;
one end of the bearing frame is rotatably connected with the connecting seat and is used for bearing the soil accommodating structure, and the bearing part is arranged at the end part of the bearing frame, which is far away from the connecting seat, and can be hung and buckled on the bearing component;
the soil containing structure is detachably arranged on the bearing frame and filled with soil for planting sprouting vegetables;
the frame is established on earth holding structure and encircles cloth at earth holding structure edge part, and the frame encloses into a planting basin body that is used for sprouting vegetable to grow with earth holding structure.
4. The greenhouse sprouting vegetable production device as claimed in claim 3, wherein the soil containing structure comprises a cage body and a door body;
the door body is arranged in the frame cage port and used for plugging the frame cage port;
door body one end and frame cage port avris portion are articulated and the other end is connected with frame cage body bottom through hasp structure.
5. The sprouting vegetable production device for the greenhouse as claimed in claim 4, wherein the locking structure comprises a bolt column and a locking sleeve, the bolt column is fixed at the position close to the edge at the bottom of the frame cage body, the locking sleeve is arranged at the end side of the door body far away from the hinged position of the door body and the port of the frame cage in a sliding manner, and the locking sleeve can be inserted into the bolt column when the water absorbing rope is buckled into the port of the frame cage.
6. The greenhouse sprouting vegetable production device as claimed in claim 4, wherein the soil containing structure further comprises a plurality of water absorbing ropes, and one end of each water absorbing rope is connected to the door body; the water absorption rope other end can extend to the bottom of the seedling raising water tank, and the water absorption rope can absorb the water in the seedling raising water tank to the soil in the seedling raising tray assembly.
CN202122931656.3U 2021-11-26 2021-11-26 Sprouting vegetable production device for greenhouse Active CN216314249U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122931656.3U CN216314249U (en) 2021-11-26 2021-11-26 Sprouting vegetable production device for greenhouse

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122931656.3U CN216314249U (en) 2021-11-26 2021-11-26 Sprouting vegetable production device for greenhouse

Publications (1)

Publication Number Publication Date
CN216314249U true CN216314249U (en) 2022-04-19

Family

ID=81153798

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122931656.3U Active CN216314249U (en) 2021-11-26 2021-11-26 Sprouting vegetable production device for greenhouse

Country Status (1)

Country Link
CN (1) CN216314249U (en)

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