Seedbed translation unit for planting phalaenopsis amabilis
By designing a seedbed translation unit for Phalaenopsis orchid cultivation, and utilizing seedbed lifting and pushing components to achieve translation and lateral transportation of the seedbed, the problem of single movement direction in existing technologies is solved, thereby improving logistics and planting efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2026-03-27
AI Technical Summary
Existing mobile Phalaenopsis seedling beds can only be transported horizontally and cannot be moved laterally, resulting in a single direction of movement when transporting them between multiple greenhouses, which makes them less practical.
A seedbed translation unit is designed, comprising a first seedbed transport rail, a second seedbed transport rail, a seedbed placement frame, a seedbed lifting component, a translation crossbar, a seedbed drive unit, and a pusher component. Through the coordinated work of these components, the translation and lateral transport of the seedbed component are realized, and the auxiliary pusher component helps the seedbed to be further translated, ensuring that it enters the upper part of the second seedbed transport rail.
This technology enables multi-directional transportation of Phalaenopsis orchid seedbeds, improving logistics and planting efficiency and enhancing the practicality of the seedbeds.
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Figure CN224038027U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to butterfly orchid planting technical field, concretely is the seedbed translation unit for butterfly orchid planting. BACKGROUND
[0002] Butterfly orchid, this petted flower, belongs to orchid butterfly orchid genus, is perennial herb, enjoys " the reputation of the queen of orchids", its flower stem is long, elegant from the leaf axil, top end bears several even dozens of nimble flower, flower form is exquisite, petal texture is light, is like butterfly wing light, and, base's sepals and petals contrast each other, jointly outline the butterfly dancing, butterfly orchid's flower color is extremely rich, from pure as snow white, to full of energy goose yellow, to passionate pink and mysterious purple red, every kind is bright and beautiful, in addition, its leaf blade is fleshy and thick, presents long round or oval, the oil bright leaf surface is with the warm luster, four seasons evergreen, provides the steady and elegant contrast for flower.
[0003] The movable butterfly orchid seedbed can only be transported horizontally, cannot be translated, so that the movement direction is single when transporting in multiple greenhouses, cannot realize logistics circulation, and the practicality is poor. UTILITY MODEL CONTENT
[0004] (I) technical problem solved
[0005] In view of the deficiencies of the prior art, the utility model provides the seedbed translation unit for butterfly orchid planting to solve the problems in the above background.
[0006] (II) technical scheme
[0007] In order to achieve the above object, the utility model provides the following technical scheme: the seedbed translation unit for butterfly orchid planting, including first seedbed transport track, second seedbed transport track and the seedbed placing frame between first seedbed transport track and second seedbed transport track, the inside of first seedbed transport track is provided with first lifting assembly, the top of seedbed placing frame is provided with translation crosspiece, the inside of second seedbed transport track is provided with second lifting assembly and auxiliary flat push subassembly, the inside of first seedbed transport track and second seedbed transport track is provided with seedbed drive unit and seedbed transport unit, the both sides of first seedbed transport track are provided with push bed assembly, the upside of first seedbed transport track, seedbed placing frame and second seedbed transport track is placed with a plurality of seedbed assemblies, the top of seedbed assembly is placed with a plurality of butterfly orchid planting frame, the bottom of seedbed assembly is provided with seedbed displacement support assembly and fixed seat, a plurality of seedbed assemblies adopt contact type arrangement design.
[0008] Preferably, the first lifting assembly and the second lifting assembly have the same structure, the second lifting assembly comprises a cross beam, both ends of the cross beam are provided with fixing frames, one side of the fixing frame close to the cross beam is provided with a guide rail, the bottom end of the fixing frame is fixedly installed with a lifting cylinder, one end of the fixing frame close to the horizontal moving frame is provided with a connecting beam, and the end of the cross beam away from the connecting beam is fixedly installed with a limiting plate.
[0009] The auxiliary horizontal pushing assembly comprises a connecting strip, the connecting strip is fixedly installed on the outer side of the lower part of the cross beam, the outer side of the connecting strip is fixedly installed with a connecting plate, the upper part of the connecting plate is fixedly installed with a horizontal pushing cylinder, the end of the connecting plate away from the horizontal pushing cylinder is provided with a movable block, the connecting part between the horizontal pushing cylinder and the movable block is provided with a first connecting column, the outer side of the first connecting column is rotatably installed with a first rotating plate, the outer side of the lower part of the first rotating plate is fixedly installed with a first counterweight, the opening of the movable block is fixedly installed with a second connecting column, the second connecting column is rotatably installed with a second rotating plate, the outer side of the lower part of the second rotating plate is fixedly installed with a second counterweight, and the inner part of the connecting plate is provided with a guide groove.
[0010] The push bed assembly comprises a push bed frame, main sprockets and auxiliary sprockets are rotatably installed at both ends of the inner part of the push bed frame, a chain conveying belt is arranged between the main sprockets and the auxiliary sprockets, a driving motor is further arranged on the outer side of the push bed frame, the output end of the driving motor is in transmission connection with the main sprocket, a I-shaped movable plate is fixedly installed on the outer side of the chain conveying belt, and a push plate assembly is fixedly installed on the upper side of the I-shaped movable plate.
[0011] Through the above technical scheme, through the design of the horizontal moving frame, the first lifting assembly, the second lifting assembly and the push bed assembly, the horizontal moving operation of the seedbed assembly can be realized, and the auxiliary horizontal pushing assembly can help the seedbed assembly to further move horizontally, so that the seedbed assembly can enter the upper part of the second seedbed conveying track. During the working process of the auxiliary horizontal pushing assembly, the first rotating plate and the second rotating plate can be flipped during the movement of the fixed seat, which will not affect the horizontal moving of the seedbed assembly. When the fixed seat is not in contact with the first rotating plate and the second rotating plate, the first counterweight on the outer side of the first rotating plate can make the first rotating plate return to the initial position, the second counterweight on the outer side of the second rotating plate can make the second rotating plate return to the initial position, the second rotating plate can drive the fixed seat to move under the action of the horizontal pushing cylinder, thereby realizing the auxiliary horizontal pushing of the seedbed assembly, and limiting under the action of the limiting plate. During the horizontal pushing movement of the second rotating plate, the guide groove and the rotating wheel cooperate to realize the stable movement.
[0012] Preferably, the seedbed displacement support assembly comprises a support frame fixedly installed at the lower part of the seedbed assembly, rotatingly installed with rotating rods at the two sides of the support frame, and fixedly installed with support wheels at the outer sides of the rotating rods, the support wheels being designed to be inclined, the number of the seedbed displacement support assemblies being twice that of the seedbed assemblies, the top ends of the cross beams, connecting beams and translation cross frames being in inverted "U" shaped structure, and the cross beams, connecting beams and translation cross frames being adapted to the seedbed displacement support assemblies.
[0013] Through the above technical scheme, the two support wheels at the lower part of the support frame can be clamped on the upper side of the cross beam, connecting beam and translation cross frame.
[0014] Preferably, the seedbed displacement support assemblies are distributed at the lower part of the seedbed assembly with equal intervals, and the fixed seats and the horizontal center lines of the auxiliary flat pushing assemblies are designed to be parallel.
[0015] Through the above technical scheme, the fixed seats and the auxiliary flat pushing assemblies can realize the auxiliary flat pushing of the seedbed assembly, so that the seedbed assembly reaches the designated position on the upper part of the second seedbed transportation track.
[0016] Preferably, the cross section of the push plate assembly is in "T" shaped structure, and the push plate assembly is in abutting connection with the seedbed assembly.
[0017] Through the above technical scheme, during the translation operation, the output shaft of the driving motor drives the main sprocket to rotate, the main sprocket and the auxiliary sprocket cooperatively drive the chain conveyor belt to rotate, the chain conveyor belt drives the push plate assembly to translate through the I-shaped movable plate, and the seedbed assembly can be moved, and the seedbed assembly arranged in series can be pushed into the upper part of the second seedbed transportation track.
[0018] Preferably, the seedbed driving units are symmetrically distributed about the vertical center lines of the first seedbed transportation track and the second seedbed transportation track, the seedbed transportation units are designed with equal intervals, and the seedbed driving units and the seedbed transportation units are in contact connection with the seedbed assembly.
[0019] Through the above technical scheme, through the design of the seedbed driving units and the seedbed transportation units, the seedbed assembly can be transported horizontally, the logistics circulation between multiple greenhouses can be realized, and the logistics efficiency can be improved.
[0020] Compared with the prior art, the seedbed translation unit for butterfly orchid planting has the following beneficial effects:
[0021] The seedbed translation unit for phalaenopsis planting can realize the translation operation of the seedbed assembly, the auxiliary flat pushing assembly can assist the seedbed assembly to further translate, so that the seedbed assembly enters the upper part of the second seedbed transportation track, and the seedbed assembly can be transversely transported by cooperating with the seedbed driving unit and the seedbed transportation unit, so that the logistics circulation between multiple greenhouses is realized, the logistics efficiency is improved, and the planting efficiency is also greatly improved. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is a whole structure schematic view of the utility model;
[0023] Figure 2 It is a seedbed placing rack installation structure schematic view of the utility model;
[0024] Figure 3 It is a second lifting assembly installation structure schematic view of the utility model Figure 1 ;
[0025] Figure 4 It is a seedbed displacement support assembly installation structure schematic view of the utility model Figure 1 ;
[0026] Figure 5 It is a seedbed displacement support assembly installation structure schematic view of the utility model Figure 2 ;
[0027] Figure 6 It is a structure schematic view of the utility model Figure 5 in A place amplification structure schematic view;
[0028] Figure 7 It is a second lifting assembly three-dimensional structure schematic view of the utility model;
[0029] Figure 8 It is a second lifting assembly installation structure schematic view of the utility model Figure 2 ;
[0030] Figure 9 It is a push bed assembly three-dimensional structure schematic view of the utility model;
[0031] Figure 10 It is a auxiliary flat pushing assembly three-dimensional structure schematic view of the utility model Figure 1 ;
[0032] Figure 11 It is a auxiliary flat pushing assembly three-dimensional structure schematic view of the utility model Figure 2 .
[0033] Wherein: 1, the first seedbed transport rail; 2, seedbed rack; 3, the second seedbed transport rail; 4, the first lifting assembly; 5, the translation cross frame; 6, the second lifting assembly; 601, the fixed frame; 602, guide rail; 603, lifting cylinder; 604, crossbeam; 605, limit plate; 606, connecting beam; 7, auxiliary flat push assembly; 701, connecting strip; 702, connecting plate; 703, flat push cylinder; 704, movable block; 705, first connecting column; 706, first rotating plate; 707, first counterweight; 708, second connecting column; 709, second rotating plate; 710, second counterweight; 711, guide slot; 712, rotating shaft; 713, rotating wheel; 8, seedbed drive unit; 9, seedbed transport unit; 10, bed pushing assembly; 1001, bed pushing frame; 1002, drive motor; 1003, main sprocket; 1004, auxiliary sprocket; 1005, chain conveyor belt; 1006, I-shaped movable plate; 1007, push plate assembly; 11, seedbed assembly; 12, butterfly orchid planting frame; 13, seedbed displacement support assembly; 1301, support frame; 1302, rotating rod; 1303, support wheel; 14, fixed seat. DETAILED DESCRIPTION
[0034] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0035] Embodiment one:
[0036] As Figures 1-11 shown, the seedbed translation unit for butterfly orchid planting provided by the utility model comprises a first seedbed transport rail 1, a second seedbed transport rail 3 and a plurality of seedbed racks 2 located between the first seedbed transport rail 1 and the second seedbed transport rail 3, the inner side of the first seedbed transport rail 1 is provided with a first lifting assembly 4, the top end of the seedbed rack 2 is provided with a translation cross frame 5, the inner side of the second seedbed transport rail 3 is provided with a second lifting assembly 6 and an auxiliary flat push assembly 7, the inner sides of the first seedbed transport rail 1 and the second seedbed transport rail 3 are provided with a seedbed drive unit 8 and a seedbed transport unit 9, the two sides of the first seedbed transport rail 1 are provided with a bed pushing assembly 10, the upper sides of the first seedbed transport rail 1, the seedbed rack 2 and the second seedbed transport rail 3 are placed with a plurality of seedbed assemblies 11, the top end of the seedbed assembly 11 is placed with a plurality of butterfly orchid planting frames 12, the bottom end of the seedbed assembly 11 is provided with a seedbed displacement support assembly 13 and a fixed seat 14, and the plurality of seedbed assemblies 11 adopt a contact type arrangement design.
[0037] Specifically, the first lifting assembly 4 and the second lifting assembly 6 are the same in structure, the second lifting assembly 6 comprises a cross beam 604, both ends of the cross beam 604 are provided with a fixing frame 601, one side of the fixing frame 601 close to the cross beam 604 is provided with a guide rail 602, the bottom end of the fixing frame 601 is fixedly installed with a lifting cylinder 603, one end of the fixing frame 601 close to the horizontal moving frame 5 is provided with a connecting beam 606, the end of the cross beam 604 away from the connecting beam 606 is fixedly installed with a limiting plate 605;
[0038] The auxiliary horizontal pushing assembly 7 comprises a connecting strip 701, the connecting strip 701 is fixedly installed on the outer side of the lower part of the cross beam 604, the outer side of the connecting strip 701 is fixedly installed with a connecting plate 702, the upper part of the connecting plate 702 is fixedly installed with a horizontal pushing cylinder 703, one end of the connecting plate 702 away from the horizontal pushing cylinder 703 is provided with a movable block 704, the connecting place of the horizontal pushing cylinder 703 and the movable block 704 is provided with a first connecting column 705, the outer side of the first connecting column 705 is rotatably installed with a first rotating plate 706, the outer side of the lower part of the first rotating plate 706 is fixedly installed with a first counterweight 707, the opening of the movable block 704 is fixedly installed with a second connecting column 708, the second connecting column 708 is rotatably installed with a second rotating plate 709, the outer side of the lower part of the second rotating plate 709 is fixedly installed with a second counterweight 710, the inside of the connecting plate 702 is provided with a guide groove 711, the both sides of the movable block 704 located in the inside of the connecting plate 702 are rotatably installed with a rotating shaft 712, the outer side of the rotating shaft 712 is fixedly installed with a rotating wheel 713;
[0039] The push bed assembly 10 comprises a push bed frame 1001, both ends of the inside of the push bed frame 1001 are rotatably installed with a main sprocket 1003 and a secondary sprocket 1004, the main sprocket 1003 and the secondary sprocket 1004 are provided with a chain conveying belt 1005, the outer side of the push bed frame 1001 is further provided with a driving motor 1002, the output end of the driving motor 1002 is in transmission connection with the main sprocket 1003, the outer side of the chain conveying belt 1005 is fixedly installed with an I-shaped movable plate 1006, the upper side of the I-shaped movable plate 1006 is fixedly installed with a push plate assembly 1007.
[0040] The advantage is that the design of the horizontal frame 5, the first lifting assembly 4, the second lifting assembly 6 and the pusher assembly 10 can realize the translation operation of the seedbed assembly 11, and the auxiliary horizontal pusher assembly 7 can help the seedbed assembly 11 to further translate, ensuring that the seedbed assembly 11 can enter the upper part of the second seedbed transport track 3. During the operation of the auxiliary horizontal pusher assembly 7, the first rotating plate 706 and the second rotating plate 709 can be flipped during the movement of the fixed seat 14, which will not affect the translation movement of the seedbed assembly 11. When the fixed seat 14 is not in contact with the first rotating plate 706 and the second rotating plate 709, the first counterweight 707 outside the first rotating plate 706 will make the first rotating plate 706 return to the initial position, and the second counterweight 710 outside the second rotating plate 709 will make the second rotating plate 709 return to the initial position. The second rotating plate 709 can move the fixed seat 14 under the action of the horizontal pusher cylinder 703, thereby realizing the auxiliary horizontal push of the seedbed assembly 11 and being limited by the limiting plate 605. During the horizontal push movement of the second rotating plate 709, the guide groove 711 and the rotating wheel 713 cooperate to realize the stable movement.
[0041] Specifically, the seedbed displacement support assembly 13 includes a support frame 1301 fixedly installed at the lower part of the seedbed assembly 11, and rotating rods 1302 are rotatably installed at the two sides of the support frame 1301. Support wheels 1303 are fixedly installed outside the rotating rods 1302, and the support wheels 1303 are designed to be inclined. The number of the seedbed displacement support assembly 13 is twice the number of the seedbed assembly 11. The top of the horizontal beam 604, the connecting beam 606 and the horizontal frame 5 is in an inverted "U" shape structure, and the horizontal beam 604, the connecting beam 606 and the horizontal frame 5 are matched with the seedbed displacement support assembly 13.
[0042] The advantage is that the two support wheels 1303 at the lower part of the support frame 1301 can be clamped on the upper side of the horizontal beam 604, the connecting beam 606 and the horizontal frame 5.
[0043] Specifically, the seedbed displacement support assembly 13 is distributed at the lower part of the seedbed assembly 11 in equal intervals, and the horizontal center line of the fixed seat 14 and the auxiliary horizontal pusher assembly 7 is designed to be parallel.
[0044] The advantage is that the fixed seat 14 matched with the auxiliary horizontal pusher assembly 7 can realize the auxiliary horizontal push of the seedbed assembly 11, so that the seedbed assembly 11 reaches the specified position at the upper part of the second seedbed transport track 3.
[0045] Specifically, the cross section of the push plate assembly 1007 is in a "T" shape structure, and the push plate assembly 1007 is in a non-interference connection with the seedbed assembly 11.
[0046] The advantage is that during the translation operation, the output shaft of the drive motor 1002 drives the main sprocket 1003 to rotate. The main sprocket 1003 and the secondary sprocket 1004 work together to drive the chain conveyor belt 1005 to rotate. The chain conveyor belt 1005 drives the push plate assembly 1007 to translate through the I-shaped movable plate 1006, which can push the seedbed assembly 11 to move. The seedbed assembly 11, with its arranged design, can be pushed into the upper part of the second seedbed transport rail 3 in sequence.
[0047] Example 2:
[0048] like Figures 1-11 As shown, for lateral transport, the seedbed translation unit for Phalaenopsis orchid cultivation includes a first seedbed transport rail 1, a second seedbed transport rail 3, and several seedbed placement racks 2 located between the first seedbed transport rail 1 and the second seedbed transport rail 3. A first lifting component 4 is provided on the inner side of the first seedbed transport rail 1, and a translation crossbar 5 is provided at the top of the seedbed placement rack 2. A second lifting component 6 and an auxiliary translation component 7 are provided on the inner side of the second seedbed transport rail 3. Seedbed drive units 8 and seedbed transport units 9 are provided on the inner sides of both the first seedbed transport rail 1 and the second seedbed transport rail 3. Push bed components 10 are provided on both sides of the first seedbed transport rail 1. Several seedbed components 11 are placed on the upper side of the first seedbed transport rail 1, the seedbed placement rack 2, and the second seedbed transport rail 3. Several Phalaenopsis orchid planting frames 12 are placed on the top of the seedbed components 11. Seedbed shifting support components 13 and fixing seats 14 are provided at the bottom of the seedbed components 11. The several seedbed components 11 are arranged in a contact type.
[0049] The seedbed drive units 8 are symmetrically distributed about the vertical center lines of the first seedbed transport rail 1 and the second seedbed transport rail 3. The seedbed transport units 9 are designed with equal spacing. Both the seedbed drive units 8 and the seedbed transport units 9 are in contact with the seedbed assembly 11. The advantage is that the design of the seedbed drive units 8 and the seedbed transport units 9 enables lateral transport of the seedbed assembly 11, allowing for logistics circulation between multiple greenhouses and improving logistics efficiency.
[0050] Working principle: in use, first, the first lifting assembly 4 on the inner side of the first seedbed transportation rail 1 is lifted, so that the seedbed assembly 11 on the upper side of the first seedbed transportation rail 1 is at the same level as the seedbed assembly 11 on the first seedbed placing rack 2, then the second lifting assembly 6 and the auxiliary horizontal pushing assembly 7 on the inner side of the second seedbed transportation rail 3 are lifted, and then the pushing bed assembly 10 on both sides of the first seedbed transportation rail 1 pushes the seedbed assembly 11 on the upper side of the first seedbed transportation rail 1 to move towards the first seedbed placing rack 2, so that the seedbed assembly 11 on the upper side of the first seedbed transportation rail 1 pushes the seedbed assembly 11 on the first seedbed placing rack 2 to move towards the second seedbed transportation rail 3, in the process of translation, the seedbed assembly 11 on the upper side of the first seedbed transportation rail 1 is moved from the first lifting assembly 4 to the translation cross 5 on the first seedbed placing rack 2 through the lower seedbed displacement support assembly 13, and the seedbed assembly 11 on the upper side of the first seedbed placing rack 2 is moved from the translation cross 5 to the second lifting assembly 6 through the seedbed displacement support assembly 13, when the seedbed assembly 11 on the side close to the second seedbed transportation rail 3 of the first seedbed placing rack 2 reaches the middle part of the second lifting assembly 6 through the translation cross 5, the auxiliary horizontal pushing assembly 7 pushes the seedbed assembly 11 to completely enter the upper side of the second seedbed transportation rail 3 in cooperation with the fixed seat 14 at the lower part of the seedbed assembly 11, when the seedbed assembly 11 completely enters the upper side of the second seedbed transportation rail 3, the second lifting assembly 6 and the auxiliary horizontal pushing assembly 7 on the inner side of the second seedbed transportation rail 3 are lowered, at this time, the seedbed assembly 11 is in contact with the seedbed driving unit 8 and the seedbed transportation unit 9 on the first seedbed transportation rail 1, and the seedbed driving unit 8 drives the seedbed assembly 11 to enter the upper part of the first seedbed transportation rail.
[0051] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A seedbed translation unit for Phalaenopsis plantations, comprising a first seedbed transportation track (1), a second seedbed transportation track (3) and a plurality of seedbed placement racks (2) located between the first seedbed transportation track (1) and the second seedbed transportation track (3), characterized in that: The inner side of the first seedbed transportation track (1) is provided with a first lifting assembly (4), the top end of the seedbed placing rack (2) is provided with a translation cross frame (5), the inner side of the second seedbed transportation track (3) is provided with a second lifting assembly (6) and an auxiliary horizontal pushing assembly (7), the inner sides of the first seedbed transportation track (1) and the second seedbed transportation track (3) are provided with a seedbed driving unit (8) and a seedbed transportation unit (9), the two sides of the first seedbed transportation track (1) are provided with a seedbed pushing assembly (10), the upper sides of the first seedbed transportation track (1), the seedbed placing rack (2) and the second seedbed transportation track (3) are placed with a plurality of seedbed assemblies (11), the top end of the seedbed assembly (11) is placed with a plurality of butterfly orchid planting frames (12), the bottom end of the seedbed assembly (11) is provided with a seedbed displacement support assembly (13) and a fixing seat (14), and a plurality of the seedbed assemblies (11) are designed in a contact type.
2. The seedbed translation unit for Phalaenopsis propagation according to claim 1, wherein: The first lifting assembly (4) and the second lifting assembly (6) are the same in structure, the second lifting assembly (6) comprises a cross beam (604), both ends of the cross beam (604) are provided with a fixing frame (601), one side of the fixing frame (601) close to the cross beam (604) is provided with a guide rail (602), the bottom end of the fixing frame (601) is fixedly installed with a lifting cylinder (603), one end of the fixing frame (601) close to the translation cross frame (5) is provided with a connecting beam (606), and the end of the cross beam (604) away from the connecting beam (606) is fixedly installed with a limiting plate (605). The auxiliary horizontal pushing assembly (7) comprises a connecting strip (701), the connecting strip (701) is fixedly installed on the outer side of the lower part of the cross beam (604), the outer side of the connecting strip (701) is fixedly installed with a connecting plate (702), the upper part of the connecting plate (702) is fixedly installed with a horizontal pushing cylinder (703), one end of the connecting plate (702) away from the horizontal pushing cylinder (703) is provided with a movable block (704), the connecting place of the horizontal pushing cylinder (703) and the movable block (704) is provided with a first connecting column (705), the outer side of the first connecting column (705) is rotatably installed with a first rotating plate (706), the outer side of the lower part of the first rotating plate (706) is fixedly installed with a first counterweight block (707), the opening of the movable block (704) is fixedly installed with a second connecting column (708), the second connecting column (708) is rotatably installed with a second rotating plate (709), the outer side of the lower part of the second rotating plate (709) is fixedly installed with a second counterweight block (710), the inside of the connecting plate (702) is provided with a guide groove (711), the two sides of the movable block (704) located in the inside of the connecting plate (702) are rotatably installed with rotating shafts (712), and the outer side of the rotating shaft (712) is fixedly installed with a rotating wheel (713). The push bed assembly (10) comprises a push bed frame (1001), both ends of the inside of the push bed frame (1001) are rotatably installed with a main sprocket (1003) and a secondary sprocket (1004), a chain conveyor belt (1005) is arranged between the main sprocket (1003) and the secondary sprocket (1004), and the outside of the push bed frame (1001) is further provided with a driving motor (1002); the output end of the driving motor (1002) is in transmission connection with the main sprocket (1003); the outside of the chain conveyor belt (1005) is fixedly installed with an I-shaped movable plate (1006); and the upper side of the I-shaped movable plate (1006) is fixedly installed with a push plate assembly (1007).
3. The seedbed translation unit for Phalaenopsis propagation according to claim 1, wherein: The seedbed shifting support assembly (13) comprises a support frame (1301), the support frame (1301) is fixedly installed at the lower part of the seedbed assembly (11), both sides of the support frame (1301) are rotatably installed with a rotating rod (1302), the outside of the rotating rod (1302) is fixedly installed with a support wheel (1303), the support wheel (1303) is designed to be inclined, and the number of the seedbed shifting support assembly (13) is twice that of the seedbed assembly (11).
4. The seedbed translation unit for Phalaenopsis propagation according to claim 2, wherein: The top end of the cross beam (604), the connecting beam (606) and the translation cross frame (5) is designed in an inverted "U" shape, and the cross beam (604), the connecting beam (606) and the translation cross frame (5) are matched with the seedbed shifting support assembly (13).
5. The seedbed translation unit for Phalaenopsis propagation according to claim 1, wherein: The seedbed shifting support assembly (13) is arranged at the lower part of the seedbed assembly (11) in an equidistant manner, and the fixed seat (14) and the horizontal center line of the auxiliary horizontal pushing assembly (7) are designed in parallel.
6. The seedbed translation unit for Phalaenopsis propagation according to claim 2, wherein: The cross section of the push plate assembly (1007) is designed in a "T" shape, and the push plate assembly (1007) is in abutting connection with the seedbed assembly (11).
7. The seedbed translation unit for Phalaenopsis propagation according to claim 1, wherein: The seedbed driving unit (8) is symmetrically arranged about the vertical center lines of the first seedbed conveying track (1) and the second seedbed conveying track (3), the seedbed conveying unit (9) is designed in an equidistant manner, and the seedbed driving unit (8) and the seedbed conveying unit (9) are in contact connection with the seedbed assembly (11).