CN111492927A - Method for improving seedling transplanting survival rate - Google Patents
Method for improving seedling transplanting survival rate Download PDFInfo
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- CN111492927A CN111492927A CN202010354169.2A CN202010354169A CN111492927A CN 111492927 A CN111492927 A CN 111492927A CN 202010354169 A CN202010354169 A CN 202010354169A CN 111492927 A CN111492927 A CN 111492927A
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01G—HORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
- A01G23/00—Forestry
- A01G23/02—Transplanting, uprooting, felling or delimbing trees
- A01G23/04—Transplanting trees; Devices for grasping the root ball, e.g. stump forceps; Wrappings or packages for transporting trees
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- Biodiversity & Conservation Biology (AREA)
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- Cultivation Receptacles Or Flower-Pots, Or Pots For Seedlings (AREA)
Abstract
The invention relates to a method for improving the survival rate of transplanted seedlings, which uses equipment for improving the survival rate of transplanted seedlings, and the equipment for improving the survival rate of transplanted seedlings comprises a base, an outer support unit, an inner support unit and a wrapping unit, wherein the outer support unit is arranged right above the base, the inner support unit is arranged in the outer support unit, and the wrapping unit is arranged on the outer support unit. The invention can solve the following problems existing in the prior seedling transplanting and transporting process when wrapping the soil balls at the roots of the seedlings: the soil ball is wrapped by a straw rope or a plastic film, so that the soil ball falls off due to vibration because of jolting of a vehicle in the transportation process, and then the root of the nursery stock loses the protection of the soil, so that the survival rate of nursery stock transplantation is influenced; the straw rope and the plastic film can wrap the soil ball very tightly in the using process, so that the seedling is difficult to untie, time and labor are wasted, and the survival rate of the seedling can be reduced without unting the planting.
Description
Technical Field
The invention relates to the field of seedling transplantation, in particular to a method for improving the survival rate of seedling transplantation.
Background
The seedlings cultivated by the sowing or nutrition propagation method have high seedling density, each seedling occupies small nutrition space, and the seedlings to be cultivated must be transplanted; transplanting the seedlings once or for many times according to the requirements of landscaping on the seedlings with various specifications and the requirements of cultivation modes; transplanting can enlarge the nutrition space for seedling growth, such as illumination space, ventilation space, branch growth space, root growth space, water absorption space and nutrition space; during transplanting, the pruning to the root system can stimulate the development of the root system of the seedling, so that fibrous roots are grown, the greening survival rate is improved, and during the transplanting process of the seedling, soil balls with proper sizes need to be reserved at the root of the seedling to ensure that the loss of water and nutrient substances is reduced during the transplanting process of the seedling.
At present, when the soil balls at the roots of the seedlings are wrapped in the process of transplanting and transporting the seedlings, the following problems still exist: a. in the process of transplanting and transporting the nursery stock, the influence on the soil ball wrapped by the nursery stock root can be avoided, most of the soil balls are wrapped by grass ropes or plastic films, the soil ball falls off due to vibration because of bumping of vehicles in the process of transporting, then the nursery stock root loses the protection of the soil, root fracture, water loss and the like can occur, and the survival rate of nursery stock transplanting is influenced; b. in the process of transplanting and planting the nursery stock, when the grass ropes or the plastic films are used for wrapping the soil balls at the roots of the nursery stock, the grass ropes and the plastic films can wrap the soil balls very tightly in the using process, so that the nursery stock is difficult to untie when being planted, wastes time and labor, and the survival rate of the nursery stock can be reduced without unting the planting.
Disclosure of Invention
The invention aims to provide a method for improving the survival rate of transplanted seedlings, so as to solve the problems in the background technology.
In order to achieve the purpose, the invention provides the following technical scheme:
the utility model provides a method for improving nursery stock transplantation survival rate, its equipment that has used an improvement nursery stock transplantation survival rate, this equipment that improves nursery stock transplantation survival rate includes base, outer unit, the interior unit that props and parcel unit, adopts above-mentioned equipment that improves nursery stock transplantation survival rate to carry out the protection operation to the soil ball of nursery stock root parcel when concrete method as follows:
step one, preparation operation: debugging equipment for improving the seedling transplanting survival rate;
step two, seedling grading: when seedlings are lifted, soil balls with proper sizes are reserved at the roots of the seedlings, the seedlings are classified after being lifted, and the seedlings with different specifications are respectively transplanted, so that the seedlings in the same operation area are neat in size, uniform in growth and convenient to manage;
step three, pruning the nursery stock: properly trimming some branches and leaves of the nursery stock from the second step, and then reducing overlong and split roots of the nursery stock;
step four, wrapping the soil balls: wrapping the soil balls at the roots of the nursery stocks which are trimmed in the third step by using a wrapping unit;
step five, transplanting the seedlings: transporting the nursery stock wrapped with the roots in the fourth step to an operation area for planting;
step six, supporting and fixing: supporting and fixing the nursery stock planted in the fifth step;
an outer support unit is arranged right above the base, an inner support unit is arranged inside the outer support unit, and a wrapping unit is arranged on the outer support unit; wherein:
the outer support unit comprises an outer support connecting rod, outer support supporting rods, a lifting platform, a bottom supporting plate, outer support pry rods, outer support vertical rods and outer support pedals, the four sides of the upper surface of the base are all provided with the outer support connecting rods through hinges, the lifting platform is arranged in the middle of the upper surface of the base, the lifting platform is uniformly provided with the four outer support supporting rods along the circumferential direction of the lifting platform, the outer support connecting rods are connected with the outer side surfaces of the outer support supporting rods through hinges, the bottom supporting plate is arranged at the upper end of the lifting platform, the side surfaces of the lifting platform are connected with one end of each outer support pry rod through hinges, the outer support vertical rods are arranged between the base and the outer support;
the parcel unit includes elasticity cloth No. one, No. two elasticity cloth, wrap up in membrane and No. three elasticity cloth, the bed plate is provided with elasticity cloth No. one along its circumference direction, the installation slide has been seted up to outer branch bilateral symmetry, the installation slider is installed to installation slide inner slide, No. two elasticity cloth is connected with the installation slider on one side, it is connected with the wrapping up in membrane to be located between the adjacent elasticity cloth No. two that prop between the branch outward, the connection slide has been seted up at outer branch top of propping, be provided with buckle subassembly in the connection slide, it is provided with No. three elasticity cloth to be located between the adjacent buckle subassembly that props between the branch outward, buckle subassembly inboard and No. three elasticity cloth inboard all are provided with the elastic sealing.
As a further scheme of the invention: the internal stay unit comprises an internal stay T plate, an adjusting screw rod, an adjusting shaft rod and an internal stay soft plate, the inner side of the external stay support rod is provided with an adjusting slide way, the internal stay T plate is evenly arranged in the adjusting slide way, the bottom end of the internal stay T plate is passed through the adjusting screw rod, the upper end of the adjusting screw rod is connected with the lower end of the adjusting shaft rod through a universal joint, the upper end of the external stay support rod is passed through the upper end of the adjusting shaft rod, and the inner side of the internal stay T plate is connected with the internal stay soft plate through a proper.
As a further scheme of the invention: the outer supporting connecting rod comprises a first-stage connecting rod, limiting blocks, a second-stage connecting rod and limiting holes, a V-shaped opening is formed in the middle of the first-stage connecting rod, the limiting blocks are symmetrically arranged on the upper end of the V-shaped opening in a left-right mode, supporting springs are connected between the limiting blocks, a rectangular cavity is formed in the second-stage connecting rod, a plurality of limiting holes are evenly formed in the left side and the right side of the rectangular cavity, and the limiting.
As a further scheme of the invention: the lifting platform is divided into an upper platform body and a lower platform body, and a buffer spring is connected between the upper platform body and the lower platform body.
As a further scheme of the invention: the buckle subassembly includes a fixture block, No. two fixture blocks, dop and No. three kicking blocks, installs a fixture block and No. two fixture blocks respectively through round pin axle longitudinal symmetry in the connection slide, and a fixture block is located No. two fixture block right sides, lies in the connection slide and all installs the dop between a fixture block and No. two fixture blocks and between two No. two fixture blocks with one side, is provided with three No. three kicking blocks respectively through supporting spring in the connection slide, and lies in the one end and the No. three kicking block one-to-one of dop in the connection slide.
As a further scheme of the invention: the soft board that props in is divided into the tertiary, props the branch inboard from lower to upper evenly and is provided with the soft board that props in the tertiary, and the length that props the soft board in the tertiary shortens in proper order from lower to upper.
Compared with the prior art, the invention has the following advantages:
can solve the problems that the prior process of transplanting and transporting the nursery stock still has the following problems when wrapping the soil balls at the root of the nursery stock: a. in the process of transplanting and transporting the nursery stock, the influence on the soil ball wrapped by the nursery stock root can be avoided, most of the soil balls are wrapped by grass ropes or plastic films, the soil ball falls off due to vibration because of bumping of vehicles in the process of transporting, then the nursery stock root loses the protection of the soil, root fracture, water loss and the like can occur, and the survival rate of nursery stock transplanting is influenced; b. in the process of transplanting and planting the nursery stock, when the grass ropes or the plastic films are used for wrapping the soil balls at the roots of the nursery stock, the grass ropes and the plastic films can wrap the soil balls very tightly in the using process, so that the nursery stock is difficult to untie when being planted, wastes time and labor, and the survival rate of the nursery stock can be reduced without unting the planting.
When the device disclosed by the invention is used for wrapping the soil balls at the roots of the seedlings, the wrapping of the soil balls at the roots of the seedlings and the release of the seedlings from the wrapped state can be quickly realized by using the external-support pedal by the external-support unit, so that the time and the labor are saved in the process of transplanting the seedlings by workers, and the labor is reduced; the inner supporting unit can enable the inner supporting soft plate to be tightly attached to the surface of the seedling soil ball according to the shape of the seedling soil ball, so that the loose of the soil ball caused by collision is reduced and the effect of protecting the root of the seedling is lost in the transportation process of the seedling;
the packaging unit designed by the invention is used by combining the packaging film and the elastic cloth, so that the water loss of soil balls at the roots of the seedlings can be reduced, the roots of the seedlings can normally breathe, and the survival rate of seedling transplantation is improved;
the outer supporting connecting rod can adjust the opening or closing state of the outer supporting rod according to the size of the soil ball wrapped by the root of the seedling, so that the inner supporting unit is more attached to the surface of the soil ball, and the soil ball is protected more effectively;
drawings
The invention is further illustrated with reference to the following figures and examples.
FIG. 1 is a flow chart of the operation of the present invention;
FIG. 2 is a schematic perspective view of the present invention;
FIG. 3 is a schematic elevational cross-sectional plan view of the present invention;
FIG. 4 is a side cross-sectional plan view of the present invention;
FIG. 5 is a schematic top cross-sectional plan view of the present invention;
FIG. 6 is an enlarged plan view of the invention at A of FIG. 2;
fig. 7 is an enlarged plan view of the invention at B of fig. 3.
Detailed Description
In order to make the technical means, the creation features, the achievement purposes and the effects of the invention easy to understand, the invention is further explained with reference to fig. 1 to 7.
The utility model provides a method for improving nursery stock transplantation survival rate, its equipment that has used an improvement nursery stock transplantation survival rate, this equipment that improves nursery stock transplantation survival rate includes base 1, outer support unit 2, interior support unit 3 and parcel unit 4, adopts above-mentioned equipment that improves nursery stock transplantation survival rate to protect the operation when the soil ball of nursery stock root parcel as follows specifically:
step one, preparation operation: debugging equipment for improving the seedling transplanting survival rate;
step two, seedling grading: when seedlings are lifted, soil balls with proper sizes are reserved at the roots of the seedlings, the seedlings are classified after being lifted, and the seedlings with different specifications are respectively transplanted, so that the seedlings in the same operation area are neat in size, uniform in growth and convenient to manage;
step three, pruning the nursery stock: properly trimming some branches and leaves of the nursery stock from the second step, and then reducing overlong and split roots of the nursery stock;
step four, wrapping the soil balls: the nursery stock trimmed in the third step is wrapped by the soil ball at the root by using a wrapping unit 4;
step five, transplanting the seedlings: transporting the nursery stock wrapped with the roots in the fourth step to an operation area for planting;
step six, supporting and fixing: supporting and fixing the nursery stock planted in the fifth step;
an outer support unit 2 is arranged right above the base 1, an inner support unit 3 is arranged inside the outer support unit 2, and a wrapping unit 4 is arranged on the outer support unit 2; wherein:
the outer supporting unit 2 comprises an outer supporting connecting rod 21, outer supporting rods 22, a lifting platform 23, a bottom supporting plate 24, outer supporting pry bars 25, outer supporting vertical rods 26 and outer supporting pedals 27, the four sides of the upper surface of the base 1 are provided with the outer supporting connecting rods 21 through hinges, the lifting platform 23 is arranged in the middle of the upper surface of the base 1, the lifting platform 23 is uniformly provided with the four outer supporting rods 22 along the circumferential direction of the lifting platform, the outer sides of the outer supporting connecting rods 21 and the outer sides of the outer supporting rods 22 are connected through hinges, the bottom supporting plate 24 is arranged at the upper end of the lifting platform 23, the side surface of the lifting platform 23 is connected with one end of each outer supporting pry bar 25 through a hinge, the outer supporting vertical rods 26 are arranged between the base 1 and the outer supporting pry bars; during specific work, pedal 27 is stepped on downwards to the external stay, because lever effect, external stay crow bar 25 can be the basic point with external stay montant 26 top, hold up elevating platform 23, then the elevating platform will prop branch 22 bottom upwards and draw up outward, then under the effect of external stay connecting rod 21, external stay branch 22 can be opened to all around, then place the nursery stock root of wrapping up the soil ball on bottom plate board 24, then loosen external stay pedal 26, because the action of gravity of soil ball, elevating platform 23 moves down and drives external stay branch 22 and draw in, live the soil ball parcel of nursery stock root, it is simple to realize nursery stock root soil ball parcel, equipment convenient operation.
The outer supporting connecting rod 21 comprises a primary connecting rod 211, limiting blocks 212, a secondary connecting rod 213 and limiting holes 214, a V-shaped opening is formed in the middle of the primary connecting rod 211, the limiting blocks 212 are arranged on the upper end of the V-shaped opening in a bilateral symmetry mode, supporting springs are connected between the limiting blocks 212, a rectangular cavity is formed in the secondary connecting rod 213, a plurality of limiting holes 214 are uniformly formed in the left side and the right side of the rectangular cavity, and the limiting blocks 212 are installed in the limiting holes 214; during specific work, the limiting block 212 is extruded into the limiting hole 214 according to the size of a soil ball wrapped by the root of a seedling, then the position of the first-stage connecting rod 211 in the second-stage connecting rod 213 is adjusted to the position of actual need according to actual need, so that the limiting block 212 is aligned to the limiting hole 214, and then under the action of the supporting spring, the limiting block 212 is clamped in the limiting hole 214, and the length of the outer supporting connecting rod 21 can be freely changed.
The lifting platform 23 is divided into an upper platform 231 and a lower platform 232, and a buffer spring is connected between the upper platform 231 and the lower platform 232; during specific work, the lower table body 232 can play a role in supporting the outer supporting unit 2, the upper table body 231 is matched with the buffer spring to play a role in protecting soil balls at the roots of the nursery stocks, and the outer supporting rod 22 can be assisted to be opened and closed.
The buckle assembly 221 comprises a first card block 2211, a second card block 2212, a clamp head 2213 and a third top support block 2214, the first card block 2211 and the second card block 2212 are symmetrically arranged in the connecting slide rail in front and back directions through a pin shaft respectively, the first card block 2211 is positioned on the right side of the second card block 2212, clamp heads 2213 are arranged between the first card block 2211 and the second card block 2212 which are positioned on the same side in the connecting slide rail and between the two second card blocks 2212, the three third top support blocks 2214 are arranged in the connecting slide rail respectively through support springs, and one end of the clamp head 2213 positioned in the connecting slide rail corresponds to the third top support blocks 2214 one to one;
during operation, when the card head 2213 is inserted into the connecting slide, the first card block 2211 and the second card block 2212 are pushed open until the card head 2213 completely enters the connecting slide, and the chuck 2213 completely compresses the supporting spring behind the top supporting block 2214, and then the force for extruding the chuck is removed, under the action of the supporting spring, the first card 2211 and the second card 2212 return to the original positions, the third supporting block 2214 presses the card 2213 onto the first card 2211 and the second card 2212 under the action of the supporting spring to fix the first card 2211 and the second card 2212, then, the space between the two second clamping blocks 2212 is inserted into the clamping head 2213, so that the third elastic cloth 44 and the elastic sealing strip 222 on the inner side of the buckle assembly 221 are jointly fixed, when the nursery stock needs to be taken down, the two second clamping blocks 2212 are inserted into the clamping heads 2213 to be taken down, so that the clamping heads 2213 on the side surfaces of the third elastic cloth 44 can be easily taken down, and the nursery stock is fixed and taken down conveniently and quickly.
The inner supporting unit 3 comprises an inner supporting T plate 31, an adjusting screw rod 32, an adjusting shaft rod 33 and an inner supporting soft plate 34, an adjusting slide way is formed in the inner side of an outer supporting rod 22, a plurality of inner supporting T plates 31 are uniformly arranged in the adjusting slide way, the bottom end of each inner supporting T plate 31 is penetrated by the adjusting screw rod 32, the upper end of each adjusting screw rod 32 is connected with the lower end of the adjusting shaft rod 33 through a universal joint, the upper end of each outer supporting rod 22 is penetrated by the upper end of the adjusting shaft rod 33, and the inner side of each inner supporting T plate 31 is connected with the inner supporting soft plate 34 through a; during specific work, the adjusting shaft rod 33 is rotated, the adjusting screw rod 32 is driven to rotate through the universal joint, so that the distance between the inner supporting T plates 31 is changed, the density degree of the inner supporting soft plates 34 is adjusted, the inner supporting soft plates 34 can adapt to the sizes of soil balls wrapped by different nursery stock roots, and the nursery stock is protected better in the transportation process.
The inner supporting soft plates 34 are divided into three stages, the three stages of inner supporting soft plates 34 are uniformly arranged on the inner side of the outer supporting strut 22 from bottom to top, and the lengths of the three stages of inner supporting soft plates 34 are sequentially shortened from bottom to top; when the three-stage inner supporting soft plate is in specific work, the length of the three-stage inner supporting soft plate 34 is sequentially shortened from bottom to top, so that the diameter of the nursery stock supporting rod is changed from the diameter of the nursery stock supporting rod to the diameter of the soil ball wrapped by the root, the inner supporting soft plate 34 is more attached to the area where the nursery stock is wrapped, and the nursery stock can be protected more effectively in the transportation process.
The wrapping unit 4 comprises a first elastic cloth 41, a second elastic cloth 42, a wrapping film 43 and a third elastic cloth 44, the first elastic cloth 41 is arranged on the bottom support plate 24 along the circumferential direction of the bottom support plate, mounting slide ways are symmetrically formed in the left side and the right side of the outer support supporting rods 22, mounting slide blocks are mounted on the inner slide ways of the mounting slide ways, one side of the second elastic cloth 42 is connected with the mounting slide blocks, the wrapping film 43 is connected between the second elastic cloth 42 positioned between the adjacent outer support supporting rods 22, a connecting slide way is formed in the top of each outer support supporting rod 22, a buckle assembly 221 is arranged in each connecting slide way, the third elastic cloth 44 is arranged between the buckle assemblies 221 positioned between the adjacent outer support supporting rods 22, and elastic sealing strips 222 are arranged on the inner sides of the buckle assemblies 221; during the operation, when the external support unit 2 is opened, the second elastic cloth 42, the wrapping film 43 and the third elastic cloth 44 are contracted at the first elastic cloth 41, when the external support unit 2 is folded, the second elastic cloth 42 slides upwards in the installation slide way along with the installation slide block until the external support unit 2 is folded, the second elastic cloth 42 drives the wrapping film 43 and the third elastic cloth 44 to move upwards in the process of sliding upwards in the installation slide way along with the installation slide block until the external support unit 2 is folded, the clamping heads 2213 on the side of the third elastic cloth 44 are inserted into the connection slide way, so that the clamping heads 2213 are fixed by the first clamping block 2211 and the second clamping block 2212, then the clamping heads 2213 at the rear end of the elastic sealing strip 222 on the inner side of the clamping assembly 221 are also inserted into the connection slide way, the second clamping block 2212 is fixed, the fixation of the wrapping film 43 is realized, the wrapping unit 4 is prevented from being loosened in the transportation process of the nursery stock, the soil ball has serious water loss and the survival rate of transplanted seedlings is reduced.
The foregoing illustrates and describes the principles, general features, and advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are given by way of illustration of the principles of the present invention, and that various changes and modifications may be made without departing from the spirit and scope of the invention as defined by the appended claims. The scope of the invention is defined by the appended claims and equivalents thereof.
Claims (6)
1. The utility model provides a method for improving nursery stock survival rate of transplanting, its equipment that has used an improvement nursery stock survival rate of transplanting, this equipment that improves nursery stock survival rate of transplanting includes base (1), outer support unit (2), internal stay unit (3) and parcel unit (4), its characterized in that: the specific method for protecting the soil balls wrapped by the seedling roots by adopting the equipment for improving the seedling transplanting survival rate is as follows:
step one, preparation operation: debugging equipment for improving the seedling transplanting survival rate;
step two, seedling grading: when seedlings are lifted, soil balls with proper sizes are reserved at the roots of the seedlings, the seedlings are classified after being lifted, and the seedlings with different specifications are respectively transplanted, so that the seedlings in the same operation area are neat in size, uniform in growth and convenient to manage;
step three, pruning the nursery stock: properly trimming some branches and leaves of the nursery stock from the second step, and then reducing overlong and split roots of the nursery stock;
step four, wrapping the soil balls: the nursery stock trimmed in the third step is wrapped by the soil ball at the root by using a wrapping unit (4);
step five, transplanting the seedlings: transporting the nursery stock wrapped with the roots in the fourth step to an operation area for planting;
step six, supporting and fixing: supporting and fixing the nursery stock planted in the fifth step;
an outer support unit (2) is arranged right above the base (1), an inner support unit (3) is arranged inside the outer support unit (2), and a wrapping unit (4) is arranged on the outer support unit (2); wherein:
the outer supporting unit (2) comprises an outer supporting connecting rod (21), outer supporting rods (22), a lifting platform (23), a bottom supporting plate (24), an outer supporting pry bar (25), outer supporting vertical rods (26) and an outer supporting pedal (27), wherein the outer supporting connecting rods (21) are arranged on four sides of the upper surface of the base (1) through hinges, the lifting platform (23) is arranged in the middle of the upper surface of the base (1), the lifting platform (23) is uniformly provided with the four outer supporting rods (22) along the circumferential direction of the lifting platform, the outer supporting connecting rods (21) are connected with the outer side surfaces of the outer supporting rods (22) through hinges, the bottom supporting plate (24) is arranged at the upper end of the lifting platform (23), the side surface of the lifting platform (23) is connected with one end of the outer supporting pry bar (25) through hinges, the outer supporting vertical rods (26) are arranged between the base (1) and the outer supporting pry bar (25), and;
the wrapping unit (4) comprises a first elastic cloth (41) and a second elastic cloth (42), wrapping up in membrane (43) and No. three elastic cloth (44), bottom plate (24) are provided with elastic cloth (41) along its circumferential direction, the installation slide has been seted up to outer branch (22) bilateral symmetry, the installation slider is installed to installation slide inner slide, No. two elastic cloth (42) are connected with the installation slider on one side, be connected with between No. two elastic cloth (42) that lie in between adjacent outer branch (22) and wrap up in membrane (43), the connection slide has been seted up at outer branch (22) top, be provided with buckle subassembly (221) in the connection slide, be provided with No. three elastic cloth (44) between buckle subassembly (221) that lie in between adjacent outer branch (22), buckle subassembly (221) inboard and No. three elastic cloth (44) inboard all is provided with elastic sealing strip (222).
2. The method for improving the survival rate of transplanted seedlings according to claim 1, which is characterized in that: interior unit (3) of propping is including propping T board (31) in, adjust lead screw (32), regulating shaft pole (33) and interior soft board (34) that props, the regulation slide has been seted up to outer branch (22) inboard of propping, evenly be provided with in the regulation slide and prop T board (31) in a plurality of, and prop T board (31) bottom in by adjusting lead screw (32) and pass, it is connected with regulating shaft pole (33) lower extreme through the universal joint to adjust lead screw (32) upper end, prop branch (22) upper end outward and pass by regulating shaft pole (33) upper end, prop T board (31) inboard in through the right spring coupling and prop soft board (34).
3. The method for improving the survival rate of transplanted seedlings according to claim 1, which is characterized in that: outer brace rod (21) include one-level connecting rod (211), stopper (212), second grade connecting rod (213) and spacing hole (214), seted up V type opening in the middle of one-level connecting rod (211), V type opening upper end bilateral symmetry is provided with stopper (212), is connected with supporting spring between stopper (212), the inside rectangle cavity that is provided with of second grade connecting rod (213), the spacing hole of a plurality of (214) has evenly been seted up to the rectangle cavity left and right sides, stopper (212) are installed in spacing hole (214).
4. The method for improving the survival rate of transplanted seedlings according to claim 1, which is characterized in that: the lifting platform (23) is divided into an upper platform body (231) and a lower platform body (232), and a buffer spring is connected between the upper platform body (231) and the lower platform body (232).
5. The method for improving the survival rate of transplanted seedlings according to claim 1, which is characterized in that: the buckle assembly (221) comprises a first clamping block (2211), a second clamping block (2212), a clamping head (2213) and a third top supporting block (2214), the first clamping block (2211) and the second clamping block (2212) are symmetrically arranged in the connecting slide rail front and back through a pin shaft respectively, the first clamping block (2211) is located on the right side of the second clamping block (2212), the clamping heads (2213) are arranged between the first clamping block (2211) and the second clamping block (2212) which are located on the same side in the connecting slide rail and between the two second clamping blocks (2212), three third top supporting blocks (2214) are arranged in the connecting slide rail through supporting springs respectively, and one end of the clamping head (2213) located in the connecting slide rail corresponds to the third top supporting block (2214) one to one another.
6. The method for improving the survival rate of transplanted seedlings according to claim 2, which is characterized in that: the inner supporting soft board (34) is divided into three stages, the inner side of the outer supporting support rod (22) is uniformly provided with the three stages of inner supporting soft boards (34) from bottom to top, and the length of the three stages of inner supporting soft boards (34) is sequentially shortened from bottom to top.
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Cited By (2)
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CN113100009A (en) * | 2021-04-25 | 2021-07-13 | 徐怀升 | Gardens are with auxiliary fixture who plants nursery stock |
CN114431102A (en) * | 2022-01-13 | 2022-05-06 | 上海应用技术大学 | Tree is transplanted with ventilative packing apparatus of soil ball |
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US1599841A (en) * | 1925-07-25 | 1926-09-14 | Harry A Sager | Tree remover |
US4402148A (en) * | 1980-12-08 | 1983-09-06 | Schiffelbein Richard A | Method of digging and transporting trees |
JP2008061605A (en) * | 2006-09-08 | 2008-03-21 | Kohjin Co Ltd | Tree support |
CN103518588A (en) * | 2013-10-18 | 2014-01-22 | 江苏天亮园林建设有限公司 | Small sapling transplanting method |
CN207560737U (en) * | 2017-10-12 | 2018-07-03 | 泉州市金胜生态农业有限公司 | A kind of flower plants and nursery stock transplantation device |
CN207911592U (en) * | 2018-01-23 | 2018-09-28 | 天津卉木苗木种植专业合作社 | The quick detachable protection chassis of nursery stock transplanting |
CN208863290U (en) * | 2018-09-05 | 2019-05-17 | 山东美华环境科技有限公司 | Transport base is used in a kind of rare tree species transplanting |
CN209527375U (en) * | 2018-12-18 | 2019-10-25 | 郑州康诺生物科技有限公司 | A kind of green plant transplanting protective device of Gardening Nursery |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
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CN113100009A (en) * | 2021-04-25 | 2021-07-13 | 徐怀升 | Gardens are with auxiliary fixture who plants nursery stock |
CN113100009B (en) * | 2021-04-25 | 2022-05-13 | 徐怀升 | Gardens are with auxiliary fixture who plants nursery stock |
CN114431102A (en) * | 2022-01-13 | 2022-05-06 | 上海应用技术大学 | Tree is transplanted with ventilative packing apparatus of soil ball |
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