CN220897370U - Rotary planting frame - Google Patents

Rotary planting frame Download PDF

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Publication number
CN220897370U
CN220897370U CN202322831893.1U CN202322831893U CN220897370U CN 220897370 U CN220897370 U CN 220897370U CN 202322831893 U CN202322831893 U CN 202322831893U CN 220897370 U CN220897370 U CN 220897370U
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China
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planting
plate
plates
liquid
sides
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CN202322831893.1U
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Chinese (zh)
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李天乐
李天平
周春辉
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Weifang Yingxin Information Technology Co ltd
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Weifang Yingxin Information Technology Co ltd
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Abstract

The utility model relates to the technical field of crop planting, and discloses a rotary planting frame, which comprises: the device comprises a supporting side plate and a rotating shaft arranged in the center of the inner side surface, wherein annular plates are additionally arranged on two sides of the surface of the rotating shaft, and connecting arc rods are arranged around the surface of the annular plates; the planting plates are arranged around the surface of the annular plate, the centers of the two sides of the planting plates are hinged with the corresponding connecting arc rods, and planting grooves are formed in the two sides and the center of the top of the planting plates; the driving motor is arranged at the center of the outer side of the supporting side plate, and a rotor of the driving motor penetrates through the side wall of the supporting side plate to extend inwards and is coaxially connected with the corresponding end of the rotating shaft. This frame is planted to rotation type is through placing the household utensils that plants the crops in planting inslot portion of planting board earlier after, and driving motor drives the pivot rotatory time, and the pivot then drives the annular plate of both sides and equidirectional the rotation, adopts this kind of mode, avoids rotating-structure drive planting board and crop rotation to take place the shake from the container.

Description

Rotary planting frame
Technical Field
The utility model relates to the technical field of crop planting, in particular to a rotary planting frame.
Background
Crops are a variety of plants cultivated in agriculture. The plant growth regulator comprises two major types of grain crops and economic crops (oil crops, vegetable crops, flowers, grasses and trees). The people take food as a day, so that the relationship between people and food is expressed, and the reasonable diet collocation can bring health to the people. The growth of crops is independent of scientific technology production technology and novel industrial mechanical equipment capable of assisting agricultural production. Crops are plants (e.g., grains, vegetables, cotton, flax, etc.) that can be grown in bulk or harvested over a large area for profit or ration. The crops include: grain crops, oil crops, vegetable crops, fruits, wild fruits, feed crops, medicinal crops and the like. In order to increase the yield of crops or adjust the planting environment of crops, equipment such as a planting frame, a planting box and the like is used. Wherein the planting frame can be used for planting mushrooms, vegetables, raising seedlings and the like.
The common planting frame, its both sides are bearing structure (such as bracing piece or backup pad etc.) to evenly install the planting board from the top down between two sets of bearing structure, and the distance between the adjacent planting board is unanimous, will plant the household utensils of crops on planting board again, this is common planting frame structure and application. Traditional planting frame, it plants and is connected with structure such as bolt usually between board and the bearing structure, leads to planting the board and is inconvenient to dismantle and adjust the use for be located the crops on the planting board of lower part, be inconvenient for manage, simultaneously because the shielding on upper strata, make the crops of lower part unable sufficient photosynthesis that carries on, lead to partial crop survival rate to reduce. And part of the planting frame is provided with gears at the corresponding positions of the upper part and the lower part of the inner side surface of the supporting structure, a chain is additionally arranged on the corresponding gears, and the side edges of the planting plates are connected with the corresponding positions of the inner side surfaces of the chain to drive the plurality of groups of planting plates to rotate so as to facilitate management and photosynthesis. However, due to the fact that the corresponding fixing structure is not additionally arranged on the planting plate, when the gears drive the chains, the chains shake, so that the planting plate shakes to a certain extent, crops on the planting plate drop, and the rotary planting frame is provided.
Disclosure of utility model
Aiming at the defects of the prior art, the utility model provides a rotary planting frame to solve the technical problems.
In order to achieve the above purpose, the present utility model provides the following technical solutions: a rotary planter, comprising:
The device comprises a supporting side plate and a rotating shaft arranged in the center of the inner side surface, wherein annular plates are additionally arranged on two sides of the surface of the rotating shaft, and connecting arc rods are arranged around the surface of the annular plates;
The planting plates are arranged around the surface of the annular plate, the centers of the two sides of the planting plates are hinged with the corresponding connecting arc rods, and planting grooves are formed in the two sides and the center of the top of the planting plates;
the driving motor is arranged at the center of the outer side of the supporting side plate, and a rotor of the driving motor penetrates through the side wall of the supporting side plate to extend inwards and is coaxially connected with the corresponding end of the rotating shaft. After the ware with the crops planted is placed in the planting groove of the planting plate, when the driving motor drives the rotating shaft to rotate, the rotating shaft drives the annular plates on two sides to rotate in the same direction, the annular plates drive the planting plate to rotate through the connecting arc rods, shaking occurs when the rotating structure is prevented from driving the planting plate to rotate, the phenomenon that the ware with the crops planted falls occurs, and the safety and stability of the crops are guaranteed.
Preferably, the center position of the bottom of the inner cavity of the planting groove of the planting plate and the periphery of the inner cavity are uniformly and longitudinally provided with water draining holes, the two sides of the top end of the planting groove are additionally provided with arc-shaped clamping plates, and sliding blocks are arranged on the inner sides of the front end and the rear end of each arc-shaped clamping plate. The sliding block drives the connected arc clamping plates to move in the same direction, so that the arc clamping plates clamp and fix the vessels of crops placed in the planting groove, and meanwhile, the draining holes of the planting groove can drain excessive liquid.
Preferably, the center position of one side of the sliding block is transversely additionally provided with a bidirectional screw rod, the corresponding ends of the adjacent bidirectional screw rods are coaxially connected, and the outer ends of the bidirectional screw rods positioned on one side of the top of the planting plate are provided with anti-skid rotary heads. When the plurality of groups of bidirectional screws are driven to rotate by the anti-skid rotary belt, the plurality of groups of sliding blocks move in opposite directions on the surfaces of the bidirectional screws.
Preferably, a top plate is transversely arranged at the central position of the upper part of the inner side surface of the top of the supporting side plate, spray heads are additionally arranged at the two sides and the central position of the bottom of the top plate, holes are formed in the two sides and the central position of the top plate, and the holes are communicated with the liquid inlet ends of the corresponding spray heads. The top plate can supply liquid for the spray header through the holes of the liquid supply structure, so that the liquid outlet end of the spray header can spray crops.
Preferably, the lower parts of the central positions of the supporting side plates are respectively provided with a supporting inclined plate, the central positions of the lower parts of the inner side surfaces of the supporting side plates are transversely additionally provided with a liquid collecting plate, and the liquid outlet ends of the lower parts of the back surfaces of the liquid collecting plates are communicated and connected with a liquid discharge pipe. The support sloping plate provides stability for the support side plate, and the liquid collecting plate collects the dropped liquid and discharges the liquid through the liquid discharge pipe.
Preferably, install the rose box under the back lower part central point of collecting plate put, and the top feed liquor end of rose box and the fluid-discharge tube feed liquor end intercommunication of collecting plate, inner chamber upper portion, center and lower part of rose box all add and are equipped with the filter, and the back lower part center feed liquor end intercommunication of rose box has the water pump, the top feed liquor end intercommunication of water pump has the separation catheter, and the feed liquor end intercommunication of shower head feed liquor end that the play liquid end of separation catheter passed through the hole of roof respectively. The liquid collecting plate injects liquid into the filter box through the liquid discharge pipe, filters soil and the like in the liquid through the filter plate, and conveys the filtered liquid into the spray header through the water pump and the separation liquid guide pipe, so that the sprayed liquid can be recycled.
Compared with the prior art, the utility model provides the rotary planting frame, which has the following beneficial effects:
1. This frame is planted to rotation type, through will plant the household utensils that have crops earlier and place the planting inslot portion of planting the board after, driving motor drives the pivot rotatory time, and the pivot then drives the annular plate of both sides and syntropy rotate, and the annular plate then drives the planting board through the connection arc pole and rotate, adopts this kind of mode, takes place to shake when avoiding rotating-structure to drive the planting board rotatory from the container, leads to planting the household utensils that has crops to drop the phenomenon and takes place, has guaranteed the security and the stability of crops.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a rear right side view of the device of the present utility model;
FIG. 3 is a schematic view of the internal structure of a plant plate according to the present utility model, partially cut away.
In the figure: 1. supporting the side plates; 2. an annular plate; 3. planting plates; 4. a planting groove; 5. an arc clamping plate; 6. a bidirectional screw; 7. a driving motor; 8. a top plate; 9. a spray header; 10. a liquid collecting plate; 11. a filter box; 12. and (3) a water pump.
Description of the embodiments
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
The utility model provides a technical scheme, a rotary planting frame, comprising: referring to fig. 1, a supporting side plate 1 and a rotating shaft arranged in the center of the inner side surface are provided with annular plates 2 on both sides of the surface of the rotating shaft, and connecting arc rods are arranged around the surface of the annular plates 2;
Referring to fig. 3, planting plates 3 are disposed around the surface of the annular plate 2, and the centers of two sides of the planting plates 3 are hinged with corresponding connecting arc rods, and planting grooves 4 are formed in the two sides and the center of the top of the planting plates 3;
Referring to fig. 2, the driving motor 7 is disposed at the center of the outer side of the supporting side plate 1, and a rotor of the driving motor 7 extends inward through the sidewall of the supporting side plate 1 and is coaxially connected with the corresponding end of the rotating shaft. After the ware planted with crops is placed in the planting groove 4 of the planting plate 3, when the driving motor 7 drives the rotating shaft to rotate, the rotating shaft drives the annular plates 2 on two sides to rotate in the same direction, the annular plates 2 drive the planting plate 3 to rotate through the connecting arc rods, shake occurs when the rotating structure is prevented from driving the planting plate 3 to rotate, the phenomenon that the ware planted with crops falls occurs, and the safety and stability of the crops are guaranteed.
Referring to fig. 3, draining holes are uniformly and longitudinally formed in the center and the periphery of the bottom of the inner cavity of the planting groove 4 of the planting plate 3, arc-shaped clamping plates 5 are additionally arranged on two sides of the top end of the planting groove 4, and sliding blocks are arranged on the inner sides of the front end and the rear end of the arc-shaped clamping plates 5. The sliding block drives the connected arc clamping plates 5 to move in the same direction, so that the arc clamping plates 5 clamp and fix the vessels of crops placed in the planting groove 4, and meanwhile, excessive liquid can be discharged from the draining holes of the planting groove 4. The center position of one side of the sliding block is transversely additionally provided with a bidirectional screw rod 6, the corresponding ends of the adjacent bidirectional screw rods 6 are coaxially connected, and the outer ends of the bidirectional screw rods 6 positioned at one side of the top of the planting plate 3 are provided with anti-skid rotary heads. When the plurality of groups of bidirectional screws 6 are driven to rotate by the anti-skid rotating belt, the plurality of groups of sliding blocks move in opposite directions on the surfaces of the bidirectional screws 6.
Referring to fig. 2, a top plate 8 is transversely mounted at a central position of an upper portion of an inner side surface of a top of the supporting side plate 1, spray heads 9 are additionally arranged at two sides and a central position of a bottom of the top plate 8, holes are formed at two sides and the central position of the top plate 8, and the holes are communicated with liquid inlet ends of the corresponding spray heads 9. The top plate 8 can supply liquid for the spray header 9 through the holes of the liquid supply structure, so that the liquid outlet end of the spray header 9 can spray crops. The lower parts of the central positions of the support side plates 1 are respectively provided with a support inclined plate, the central positions of the lower parts of the inner side surfaces of the support side plates 1 are transversely additionally provided with a liquid collecting plate 10, and the liquid outlet ends of the lower parts of the back surfaces of the liquid collecting plates 10 are communicated and connected with liquid discharge pipes. The support sloping plate provides stability for supporting the side plate 1, and the liquid collecting plate 10 collects the dropped liquid and discharges the liquid through the liquid discharge pipe. The filter tank 11 is installed under the center position of the lower part of the back of the liquid collecting plate 10, the liquid inlet end at the top of the filter tank 11 is communicated with the liquid outlet end of the liquid discharge pipe of the liquid collecting plate 10, the filter plates are additionally arranged on the upper part, the center and the lower part of the inner cavity of the filter tank 11, the liquid outlet end at the center of the lower part of the back of the filter tank 11 is communicated with the water pump 12, the liquid outlet end at the top of the water pump 12 is communicated with the separation liquid guide pipe, and the liquid outlet ends of the separation liquid guide pipes are respectively communicated with the liquid inlet end of the spray header 9 through holes of the top plate 8. The liquid collecting plate 10 injects liquid into the filter box 11 through the liquid discharge pipe, filters soil and the like in the liquid through the filter plate, and conveys the filtered liquid into the spray header 9 through the water pump 12 and the separation liquid guide pipe, so that the sprayed liquid can be recycled.
The scheme is as follows: after the ware planted with crops is placed in the planting groove 4 of the planting plate 3, when the plurality of groups of bidirectional screws 6 are driven to rotate through the anti-skidding rotary belt, the plurality of groups of sliding blocks move in opposite directions on the surface of the bidirectional screws 6, the sliding blocks drive the arc clamping plates 5 connected with the sliding blocks to move in the same direction, the arc clamping plates 5 clamp the ware placed in the planting groove 4, when the driving motor 7 drives the rotating shaft to rotate, the rotating shaft drives the annular plates 2 on two sides to rotate in the same direction, and the annular plates 2 drive the planting plate 3 to rotate through connecting arc rods. The drain hole of planting groove 4 can discharge too much liquid, and the collector plate 10 then collects the liquid of drip, pours into the inside of rose box 11 with liquid through the fluid-discharge tube to filter soil etc. in the liquid through the filter, again with the liquid that filters through water pump 12 and separation catheter, carry to the inside of shower head 9, the liquid end of shower head 9 can spray to crops.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. A rotary planter, comprising:
The device comprises a supporting side plate (1) and a rotating shaft arranged in the center of the inner side surface, wherein annular plates (2) are additionally arranged on two sides of the surface of the rotating shaft, and connecting arc rods are arranged around the surface of the annular plates (2);
The planting plates (3) are arranged around the surface of the annular plate (2), the centers of the two sides of the planting plates (3) are hinged with corresponding connecting arc rods, and planting grooves (4) are formed in the two sides and the center of the top of the planting plates (3);
The driving motor (7) is arranged at the center of the outer side of the supporting side plate (1), and a rotor of the driving motor (7) penetrates through the side wall of the supporting side plate (1) to extend inwards and is coaxially connected with the corresponding end of the rotating shaft.
2. A rotatable planter according to claim 1, wherein: the planting groove (4) of planting board (3) bottom central point put and evenly vertically offered the waterlogging caused by excessive rainfall hole all around, and the top both sides of planting groove (4) all add and be equipped with arc splint (5), the sliding block is all installed to the front and back end inboard of arc splint (5).
3. A rotatable planter according to claim 2, wherein: the center of one side of the sliding block is transversely provided with a bidirectional screw rod (6), the corresponding ends of the adjacent bidirectional screw rods (6) are coaxially connected, and the outer ends of the bidirectional screw rods (6) positioned on one side of the top of the planting plate (3) are provided with anti-skid rotary heads.
4. A rotatable planter according to claim 1, wherein: the top plate (8) is transversely installed at the central position of the upper part of the inner side surface of the top of the supporting side plate (1), the spray heads (9) are additionally arranged on the two sides of the bottom of the top plate (8) and at the central position, holes are formed in the two sides of the top plate (8) and at the central position, and the holes are communicated with the liquid inlet ends of the corresponding spray heads (9).
5. A rotatable planter according to claim 4, wherein: the lower parts of the central positions of the supporting side plates (1) are respectively provided with a supporting inclined plate, the central positions of the lower parts of the inner side surfaces of the supporting side plates (1) are transversely additionally provided with a liquid collecting plate (10), and the liquid outlet ends of the lower parts of the back surfaces of the liquid collecting plates (10) are communicated and connected with a liquid discharge pipe.
6. A rotatable planter according to claim 5, wherein: the filter box (11) is installed under the center position of the lower part of the back of the liquid collecting plate (10), the liquid inlet end at the top of the filter box (11) is communicated with the liquid outlet end of the liquid outlet pipe of the liquid collecting plate (10), the filter plates are additionally arranged on the upper part, the center and the lower part of the inner cavity of the filter box (11), the liquid outlet end at the center of the lower part of the back of the filter box (11) is communicated with a water pump (12), the liquid outlet end at the top of the water pump (12) is communicated with a separation liquid guide pipe, and the liquid outlet ends of the separation liquid guide pipe are respectively communicated with the liquid inlet end of a spray header (9) through holes of the top plate (8).
CN202322831893.1U 2023-10-23 2023-10-23 Rotary planting frame Active CN220897370U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322831893.1U CN220897370U (en) 2023-10-23 2023-10-23 Rotary planting frame

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322831893.1U CN220897370U (en) 2023-10-23 2023-10-23 Rotary planting frame

Publications (1)

Publication Number Publication Date
CN220897370U true CN220897370U (en) 2024-05-07

Family

ID=90915353

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322831893.1U Active CN220897370U (en) 2023-10-23 2023-10-23 Rotary planting frame

Country Status (1)

Country Link
CN (1) CN220897370U (en)

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