CN219951658U - Novel fast transfer channel of nursery stock culture supporting bench - Google Patents

Novel fast transfer channel of nursery stock culture supporting bench Download PDF

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Publication number
CN219951658U
CN219951658U CN202223425577.6U CN202223425577U CN219951658U CN 219951658 U CN219951658 U CN 219951658U CN 202223425577 U CN202223425577 U CN 202223425577U CN 219951658 U CN219951658 U CN 219951658U
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China
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lifting
bridge
supporting
nursery stock
seedling culture
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CN202223425577.6U
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杨铁顺
郑建军
刘薇
闵宁
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Tianjin Dongxin Agricultural Facilities Engineering Co ltd
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Tianjin Dongxin Agricultural Facilities Engineering Co ltd
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Abstract

The utility model discloses a novel rapid transfer channel of a seedling culture tray, which belongs to the technical field of seedling culture and comprises a bridge channel mechanism and a lifting channel mechanism, wherein the lifting channel mechanism is arranged at the left side and the right side of the bridge channel mechanism and comprises a lifting driving device, a lifting table and a transverse pushing device; the upper end surface of the lifting table forms a jacking table top for supporting the seedling culture supporting table, and the lifting table is arranged on the lifting driving device; the transverse pushing device is provided with a pushing component, the moving direction of the pushing component is parallel to the extending direction of the bridge path mechanism, and the pushing component is used for pushing the seedling culture supporting platform to the bridge path mechanism; the bridge mechanism comprises a bridge-shaped supporting beam body and a bridge passing driving device; the bridge drive has a pulling member that moves along the bridge-shaped strut body. The moving channel can enable the seedling culturing place to form a vehicle, person and seedling three-dimensional moving system, thereby improving the working efficiency of transferring in large-scale planting of the seedlings.

Description

Novel fast transfer channel of nursery stock culture supporting bench
Technical Field
The utility model belongs to the technical field of seedling planting equipment, and particularly relates to novel rapid transfer channel equipment for a seedling culture tray.
Background
In the field of large-scale planting of seedlings, the area of each planting functional area is large, and the seedlings need to move among different functional areas in the growth process. At present, the trailer or other ground movable carts move among different planting functional areas, the transfer route is longer, the transfer efficiency is low, the labor consumption is large, the transfer route of the nursery stock transfer cart is inevitably overlapped with other vehicles and pedestrian channels, the transfer efficiency is reduced by avoiding each other, and certain potential safety hazards exist.
Disclosure of Invention
Aiming at the problems existing in the prior art, the utility model provides a novel rapid transfer passage of a seedling culture tray, which solves the problems of low seedling transfer efficiency, large labor consumption and influence on the passing of other vehicles or pedestrians in the field of large-scale planting of the current seedlings.
The utility model is realized in such a way that a novel fast transfer channel of a seedling culture supporting platform is characterized in that: the seedling culturing support comprises a bridge mechanism and a lifting mechanism, wherein the lifting mechanism is arranged on the left side and the right side of the bridge mechanism, and the bridge mechanism and the lifting mechanism form a channel for transferring the seedling culturing support between the left side and the right side of the bridge mechanism. The lifting channel mechanism comprises a lifting driving device, a lifting table and a transverse pushing device, wherein the lifting driving device has a function of driving a weight to vertically lift; the upper end surface of the lifting table forms a jacking table surface for supporting the seedling culture supporting table, the lifting table is arranged on the lifting driving device, and the lifting table is driven by the lifting driving device to vertically move; the transverse pushing device is provided with a pushing component, the moving direction of the pushing component is parallel to the extending direction of the bridge path mechanism, and the pushing component is used for pushing the seedling culture supporting platform to the bridge path mechanism; the bridge path mechanism comprises a bridge-shaped supporting beam body and a bridge passing driving device; the bridge-shaped supporting beam forms a supporting structure extending horizontally and linearly; the bridge passing driving device is provided with a traction component which moves along the bridge-shaped supporting beam body, and the traction component applies stress along the extending direction of the bridge-shaped supporting beam body to the seedling culture supporting table and drives the seedling culture supporting table to move along the extending direction of the bridge-shaped supporting beam body.
In the above technical solution, preferably, the lifting platform includes a platen, a side rail, a side supporting roller, a side driving motor, a lifting beam, and a lifting cylinder; the bedplate is arranged on the lifting driving device; the side rails are symmetrically arranged on the bedplate in a left-right mode; the side support rollers are arranged on the side rails at intervals, the roller shafts of the side support rollers are perpendicular to the side rails, and the outer sides of the side support rollers are provided with limiting ring parts protruding out of the roller surfaces; the side driving motor is connected with at least one of the side supporting rollers and drives the side supporting rollers, the lifting air cylinder is mounted on the bedplate, and the lifting air cylinder is provided with a vertically telescopic cylinder rod; the lifting beam is installed in the lifting cylinder, and the lifting beam is driven to vertically move by the lifting cylinder.
In the above technical solution, preferably, the side rail is perpendicular to an extending direction of the bridge-shaped supporting beam body; the lifting beam is parallel to the extending direction of the bridge-shaped supporting beam body, the lifting cylinders are symmetrically arranged on the two sides of the bedplate in a bilateral symmetry mode, and the lifting beam is installed on the cylinder rod of each lifting cylinder.
In the above technical solution, preferably, the upper plate surface of the platen is provided with stop members at two end sides of the side rail, the stop members are mounted on the platen through shaft seats, the shaft seats are mounted with the stop members through shafts with axes perpendicular to the side rail, and the stop members form a mounting structure with inner ends higher than outer ends by taking the shafts as fulcrums.
In the above technical scheme, preferably, the lifting driving device is a scissor type lifting platform, a vertical guide groove is formed in the side of the scissor type lifting platform, and the lifting platform is mounted on the lifting driving device and is laterally mounted with a vertical guide wheel combined with the vertical guide groove.
In the above technical scheme, preferably, the bridge-shaped supporting beam body comprises a cross beam and a bridge fixed on the upper portion of the cross beam, and the bridge is a circular tube beam body which is arranged in bilateral symmetry and is two parallel to each other.
In the above technical solution, preferably, the bridge passing driving device is a driving chain mounted on the beam, the extending direction of the driving chain is the same as that of the bridge, the driving chain is located below the bridge, and the pulling member is a pulling plate body mounted on the driving chain.
In the above technical scheme, preferably, the bridge path mechanism comprises a lifting portal frame and a lifting cylinder for driving an upper beam of the lifting portal frame to move up and down, wherein the lifting portal frame is transversely provided with a traction transition device, the traction transition device is provided with a pulling plate, the moving direction of the pulling plate is parallel to the extending direction of the bridge, and the pulling plate is used for pulling the seedling culture supporting platform onto the bridge.
In the above technical solution, preferably, the traversing pushing device and the pulling transition device are horizontally arranged linear modules, and the pushing component and the pulling plate are plates mounted on the sliding blocks of the linear modules.
In the above technical solution, preferably, a roller conveying device for conveying the nursery stock culture pallet is provided at a side of the lifting path mechanism and at an end side of the side rail.
The utility model has the advantages that:
according to the rapid transfer channel for the seedling culture tray provided by the technical scheme of the utility model, the bridge type channel for transferring the seedling culture tray is formed between adjacent seedling planting areas and spans vehicles or human-shaped channels between the seedling culture areas, so that the seedling culture places form a vehicle, human and seedling three-dimensional moving system, the moving efficiency of the three is effectively improved, and the working efficiency of seedling transfer is directly improved.
Drawings
FIG. 1 is a schematic view of the structure of the hoistway mechanism according to the present utility model;
fig. 2 is a diagram showing the positional relationship between the elevating platform and the bridge mechanism in the present utility model.
Detailed Description
The present utility model will be described in further detail with reference to the following examples in order to make the objects, technical solutions and advantages of the present utility model more apparent. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the utility model.
In order to solve the problems of low seedling transfer efficiency, large labor consumption and influence on the passing of other vehicles or pedestrians in the field of large-scale seedling planting at present, the utility model provides a novel rapid seedling culture tray transfer channel, which can enable a seedling culture place to form a vehicle, person and seedling three-dimensional moving system, so that the work efficiency of transferring seedlings among different functional areas in the seedling planting process is improved. For further explanation of the structure of the present utility model, the detailed description is as follows in connection with the accompanying drawings:
referring to fig. 1 and 2, a novel rapid transfer channel for a seedling culture tray comprises a lifting channel mechanism 1 and a bridge channel mechanism 2. The bridge mechanism and the lifting mechanism are integrally formed into a gantry type structure. The bridge road mechanism is arranged between two adjacent seedling planting areas in a crossing way and is positioned above a lane or a sidewalk, and the two lifting road mechanisms are respectively positioned in the two seedling planting areas. The left side and the right side of the bridge mechanism are provided with lifting channel mechanisms, and the bridge mechanism and the lifting channel mechanisms form a channel for transferring the seedling culture tray between the left side and the right side of the bridge mechanism. The seedling culture supporting platform is supported by the lifting channel mechanism and drives the vertical movement, and the bridge channel mechanism is used as a support bracket body for the horizontal and transverse movement of the seedling culture supporting platform lifted by the lifting channel mechanism. The nursery stock culture supporting table is a plane table plate.
The lifting channel mechanism comprises a lifting driving device 1-1, a lifting table and a transverse pushing device.
The lifting driving device is a power component for vertically moving the seedling culture tray. The lifting driving device has the function of driving the weight to vertically lift. In this embodiment, the lifting drive is a scissor lift. The scissor type lifting platform is the prior known equipment, and the side of the scissor type lifting platform is provided with a vertical guide groove which is formed by vertical channel steel 1-2 close to four corners of the lifting platform. The lifting platform is arranged on the lifting driving device, the side part of the lifting platform is provided with the vertical guide wheels 1-3 combined with the vertical guide grooves, and the guide wheels roll vertically in the grooves of the vertical channel steel, so that the stability of the lifting platform in the lifting process driven by the lifting driving device is realized.
The lifting platform is a component for supporting the seedling culture supporting platform and is used as a supporting platform plate for vertically moving the seedling culture supporting platform 3. The up end of elevating platform forms the jacking mesa that is used for propping up to hold in palm the nursery stock and cultivates the saddle, and the elevating platform is installed in lifting drive arrangement, and the elevating platform is driven vertical removal by lifting drive arrangement.
The lifting platform comprises a bedplate 1-4, side rails 1-5, side supporting rollers 1-6, side driving motors 1-7, lifting beams 1-8 and lifting cylinders 1-9.
The bedplate is a rectangular horizontal bedplate and is arranged on the lifting driving device. In this embodiment, specifically, the vertical guide wheel is mounted on the platen.
The side rail is a structural member for supporting the seedling culture supporting table on the lifting table. The rails on the two sides are symmetrically arranged on the bedplate. In this embodiment, the side rail is perpendicular to the extending direction of the bridge mechanism. The seedling culture tray can horizontally move from the end parts of the side rails to the bedplate for bearing. In order to facilitate the horizontal movement of the seedling culture pallet to the support above the side rails, side support rollers are mounted on the side rails, and one of the side support rollers is driven by a side drive motor as an active roller to power the horizontal movement of the seedling culture pallet.
The side support rollers are arranged on the side rails at intervals, the roller shafts of the side support rollers are perpendicular to the side rails, and the outer sides of the side support rollers are provided with limiting ring parts protruding out of the roller surfaces. The width between the limiting ring parts on the left side and the right side is slightly larger than the width of the seedling culture supporting table, so that the seedling culture supporting table is laterally limited in the horizontal moving process or stable in the bearing state.
The upper plate surface of the bedplate is provided with stop parts 1-10 at two end sides of the side rail, the stop parts are arranged on the bedplate through shaft seats 1-11, the shaft seats are provided with stop parts in a seesaw mode through rotating shafts with axes perpendicular to the side rail, and the stop parts form an installation structure with inner side ends higher than outer side ends by taking the rotating shafts as fulcrums. Specifically, a shaft seat is arranged in the middle position of the moving-in side of the bedplate, the axis of the rotating shaft is perpendicular to the side rail, the stop component is a rectangular strip block, and in a natural state, the inner side end of the stop component is higher than the outer side end of the stop component. The state can not prevent the seedling culture tray table from moving inwards of the bedplate, but can form a block for the edge of the seedling culture tray table moving into and supported on the bedplate, so that limit positions on the other two sides are formed.
The lifting cylinder is installed in the platen, and the lifting cylinder has vertical flexible jar pole. Specifically, the lifting beam is installed in the lifting cylinder, and the lifting beam is driven by the lifting cylinder to vertically move. The lifting beam is parallel to the extending direction of the bridge-shaped supporting beam body. Two lifting cylinders are symmetrically arranged on the two sides of the bedplate, and lifting beams are installed on cylinder rods of the lifting cylinders. The lifting cylinder is fixedly arranged at the lower part of the bedplate, and two holes for the cylinder rod of the lifting cylinder to pass upwards are formed in the bedplate. When the cylinder rod of the lifting cylinder is contracted downwards to a lower forming limit position, the height of the upper end surface of the lifting beam is lower than the height of the supporting roller surface of the side supporting roller.
The traversing pushing device is provided with pushing components 1-12, the moving direction of the pushing components is parallel to the extending direction of the bridge mechanism, the pushing components are used for pushing the seedling culture supporting platform to the bridge mechanism, and the traversing pushing device starts to push the seedling culture supporting platform to move transversely after the seedling culture supporting platform is lifted to a preset height and separated from the side supporting roller by lifting Liang Dingqi. In this embodiment, the traversing pushing device is a linear module arranged horizontally, and is mounted on the upper plate surface of the platen, and the pushing component is a plate mounted on the sliding block of the linear module. The plate is a stainless steel plate which is vertical and can push the nursery stock culture tray.
The bridge mechanism comprises a bridge-shaped supporting beam body and a bridge passing driving device.
The bridge-shaped supporting beam forms a supporting structure extending horizontally and linearly and is used for supporting the seedling culture supporting platform, and a transversely extending groove frame row structure can be formed. The bridge-shaped supporting beam body comprises a beam 2-1 and a bridge 2-2 fixed on the upper part of the beam, and the beam is used as a supporting beam member and can be a house beam structure of a seedling culture facility. The bridge is a plurality of mutually parallel round pipe beam bodies which are symmetrically arranged left and right and are perpendicular to the cross beam.
The bridge driving device is provided with a traction component which moves along the bridge-shaped supporting beam body, and the traction component applies stress along the extending direction of the bridge-shaped supporting beam body to the seedling culture supporting table and drives the seedling culture supporting table to move along the extending direction of the bridge-shaped supporting beam body. The bridge passing driving device is a driving chain 2-3 arranged on the cross beam, the extending direction of the driving chain is the same as that of the bridge, the driving chain is positioned below the bridge, and the traction component is a traction plate body 2-4 arranged on the driving chain. The transmission chain is a known assembly device, and drives the chain to rotate and drive through a driving sprocket. The traction plate body is a stainless steel plate extending above the end face of the bridge bearing, and pushes the side edge of the seedling culture supporting platform to move on the bridge.
After the lifting channel mechanism is lifted to a preset height, the seedling culture supporting table is lifted Liang Dingqi and is higher than the limiting ring part of the side supporting roller. The traversing pushing device pushes the seedling culture supporting platform to the bridge for bearing. In order to enable the seedling culture tray to completely move into the bridge bearing and be driven to move by the bridge passing driving device. In this embodiment, a pulling transition device is provided as a relay of the traversing pushing device.
The bridge mechanism comprises a lifting portal frame 2-5, a lifting cylinder 2-6 for driving an upper beam of the lifting portal frame to move up and down, and upright posts positioned on two sides of a bridge and arranged on the beam, wherein the lifting cylinder is arranged on the upright posts, and an upward cylinder rod of the cylinder is arranged on the upper beam to form the lifting portal frame. The upper transverse installation of lift portal frame pulls excessive device, pulls excessive device and has the arm-tie 2-7, and the direction of movement of arm-tie is parallel with the extending direction of bridge, and the arm-tie is used for pulling the nursery stock culture saddle to the bridge on to and install the extension frame that horizontal straight line extends on the entablature, and this extension frame is last to be fixed to pull excessive device. The traction transition device is a linear module which is horizontally arranged, and the pulling plate is a plate arranged on the sliding block of the linear module. After the seedling culture tray is pushed to a part which enters the bridge by the transverse pushing device, the traction transition device moves downwards and acts on the side part of the seedling culture tray through the pulling plate, and the seedling culture tray is completely moved onto the bridge through the hooking action.
A roller conveying device 4 for conveying the nursery stock culture pallets is arranged at the side of the lifting path mechanism and at the end side of the side rail. The roller conveying device is a known conveying device, and is two rows of supporting rollers, wherein the two rows of supporting rollers and the side supporting rollers of the conveying device have the same width and the same supporting height, and the roller conveying device also has a power roller driven by a motor, and the power roller is a supporting roller close to the lifting channel mechanism. The roller conveying device is used for horizontally supporting and moving the seedling culture tray and pushing the seedling culture tray into the lifting channel mechanism in a butt joint manner.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, and alternatives falling within the spirit and principles of the utility model.

Claims (10)

1. Novel fast transfer passage of nursery stock culture saddle, its characterized in that: the seedling culturing support platform comprises a bridge mechanism and a lifting mechanism, wherein the lifting mechanism is arranged at the left side and the right side of the bridge mechanism, and the bridge mechanism and the lifting mechanism form a channel for transferring the seedling culturing support platform between the left side and the right side of the bridge mechanism;
the hoistway mechanism includes:
the lifting driving device has a function of driving the weight to vertically lift;
the lifting table is arranged on the lifting driving device and is driven by the lifting driving device to move vertically;
the transverse pushing device is provided with a pushing component, the moving direction of the pushing component is parallel to the extending direction of the bridge path mechanism, and the pushing component is used for pushing the seedling culture supporting platform to the bridge path mechanism;
the bridge mechanism comprises:
the bridge-shaped supporting beam body forms a supporting structure extending horizontally and straightly;
and the bridge passing driving device is provided with a traction component which moves along the bridge-shaped supporting beam body, and the traction component applies stress along the extending direction of the bridge-shaped supporting beam body to the seedling culture supporting table and drives the seedling culture supporting table to move along the extending direction of the bridge-shaped supporting beam body.
2. The novel rapid transfer path of a nursery stock growing tray of claim 1, wherein: the lifting platform comprises a bedplate, a side rail, a side supporting roller, a side driving motor, a lifting beam and a lifting cylinder;
the bedplate is arranged on the lifting driving device; the side rails are symmetrically arranged on the bedplate in a left-right mode; the side support rollers are arranged on the side rails at intervals, the roller shafts of the side support rollers are perpendicular to the side rails, and the outer sides of the side support rollers are provided with limiting ring parts protruding out of the roller surfaces; the side driving motor is connected with at least one of the side supporting rollers and drives the side supporting rollers, the lifting air cylinder is mounted on the bedplate, and the lifting air cylinder is provided with a vertically telescopic cylinder rod; the lifting beam is installed in the lifting cylinder, and the lifting beam is driven to vertically move by the lifting cylinder.
3. The novel nursery stock culture pallet rapid transfer tunnel of claim 2, wherein: the side rails are perpendicular to the extending direction of the bridge-shaped supporting beam body; the lifting beam is parallel to the extending direction of the bridge-shaped supporting beam body, two lifting cylinders are symmetrically arranged on the two sides of the bedplate in a bilateral symmetry mode, and the lifting beam is installed on a cylinder rod of each lifting cylinder.
4. A novel nursery stock growing tray rapid transfer path as claimed in claim 3, characterised in that: the upper plate surface of the bedplate is provided with stop parts at two end sides of the side rail, the stop parts are installed on the bedplate through shaft seats, the shaft seats are provided with the stop parts through rotating shafts with axes perpendicular to the side rail, and the stop parts take the rotating shafts as supporting points to form an installation structure with inner side ends higher than outer side ends.
5. The novel rapid transfer path of a nursery stock growing tray of claim 4, wherein: the lifting driving device is a scissor type lifting table, a vertical guide groove is formed in the side of the scissor type lifting table, and the lifting table is installed on the lifting driving device and is provided with a vertical guide wheel combined with the vertical guide groove on the side portion.
6. The novel rapid transfer path of a nursery stock growing tray of claim 5, wherein: the bridge-shaped supporting beam body comprises a cross beam and a bridge fixed on the upper portion of the cross beam, and the bridge is a circular tube beam body which is arranged in a bilateral symmetry mode and is parallel to the cross beam.
7. The novel rapid transfer path of a nursery stock growing tray of claim 6, wherein: the bridge passing driving device is a transmission chain arranged on the cross beam, the extending direction of the transmission chain is the same as that of the bridge, the transmission chain is positioned below the bridge, and the traction component is a traction plate body arranged on the transmission chain.
8. The novel nursery stock growing tray rapid transfer path of claim 7, wherein: the bridge road mechanism comprises a lifting portal frame and a lifting cylinder for driving an upper beam of the lifting portal frame to move up and down, wherein a traction transition device is transversely arranged on the lifting portal frame and provided with a pulling plate, the moving direction of the pulling plate is parallel to the extending direction of the bridge, and the pulling plate is used for pulling the seedling culture supporting platform onto the bridge.
9. The novel nursery stock growing tray rapid transfer path of claim 8, wherein: the transverse pushing device and the traction transition device are linear modules which are horizontally arranged, and the pushing component and the pulling plate are plates which are arranged on the sliding blocks of the linear modules.
10. The novel nursery stock growing tray rapid transfer path of claim 9, wherein: and a roller conveying device for conveying the seedling culture tray is arranged at the side of the lifting channel mechanism and at the end side of the side rail.
CN202223425577.6U 2022-12-20 2022-12-20 Novel fast transfer channel of nursery stock culture supporting bench Active CN219951658U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223425577.6U CN219951658U (en) 2022-12-20 2022-12-20 Novel fast transfer channel of nursery stock culture supporting bench

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223425577.6U CN219951658U (en) 2022-12-20 2022-12-20 Novel fast transfer channel of nursery stock culture supporting bench

Publications (1)

Publication Number Publication Date
CN219951658U true CN219951658U (en) 2023-11-03

Family

ID=88554055

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223425577.6U Active CN219951658U (en) 2022-12-20 2022-12-20 Novel fast transfer channel of nursery stock culture supporting bench

Country Status (1)

Country Link
CN (1) CN219951658U (en)

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