CN217608681U - Device for sowing, stalk covering and film covering of tricholoma matsutake - Google Patents

Device for sowing, stalk covering and film covering of tricholoma matsutake Download PDF

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Publication number
CN217608681U
CN217608681U CN202221815553.9U CN202221815553U CN217608681U CN 217608681 U CN217608681 U CN 217608681U CN 202221815553 U CN202221815553 U CN 202221815553U CN 217608681 U CN217608681 U CN 217608681U
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wheel
covering
unit
film
seeding
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CN202221815553.9U
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郝延杰
郝新美
尤晓胜
代惠芹
王子强
刘树泽
苏志坚
穆玉玲
陈景国
韩小伟
禚冬玲
刘凯凯
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Binzhou Academy Of Agricultural Sciences
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Binzhou Academy Of Agricultural Sciences
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Abstract

The utility model discloses a device for seeding, stalk covering and film covering of tricholoma matsutake, which comprises a supporting body, a hanging unit, a stalk covering unit, a film covering unit, at least one walking unit and at least one seeding unit; the suspension unit is used for being dragged by the traction device to move; the walking unit comprises a walking wheel which can move along with the supporting body to rotate; the seeding unit is in transmission connection with the travelling wheels and can perform seeding under the driving of the travelling wheels; the film coating unit can move along with the carrier to coat the film; cover the stalk unit and be used for locating on the supporting body and place in between seeding unit and the tectorial membrane unit, and cover the stalk unit and can follow the supporting body and remove and cover the stalk, the utility model discloses a device for red pine mushroom seeding, covering stalk and tectorial membrane once advances ground can accomplish the seeding of red pine mushroom, cover stalk and tectorial membrane process, reduces artifical input, improves seeding efficiency.

Description

Device for sowing, stalk covering and film covering of tricholoma matsutake
Technical Field
The utility model relates to the technical field of agricultural machinery, especially, relate to a device that is used for chinese pine antler to sow, covers stalk and tectorial membrane.
Background
The tricholoma matsutake is also called crinkled cap mushroom and wine red cap mushroom, commonly called kidney-tonifying mushroom and crinkled leg mushroom, is successfully cultivated in recent years, starts to be popularized and applied, has large flowers, bright color, tender meat, crisp cap handle, delicate fragrance, delicious taste, and the like, has the characteristics of beautiful color, fresh taste, tenderness, crispness, good mouthfeel, and the like, and the artificially cultivated tricholoma matsutake is rich in nutrition, aromatic in flavor, fragrant in lip and tooth, and rich in various essential amino acids and vitamins for human bodies. The artificially cultured tricholoma matsutake takes crop straws such as corn and the like as main planting raw materials and is matched with proper auxiliary materials, so that a solid foundation is laid for comprehensive utilization of the crop straws, waste is changed into valuable, straw burning is reduced, the ecological environment is protected, and the income of farmers is increased.
The tricholoma matsutake sowing is mainly divided into manual planting and mechanical planting, the manual planting is high in cost, low in efficiency and high in labor intensity, the functions of the existing tricholoma matsutake sowing machines are single, the sowing, stalk covering and film covering processes and the like need to be carried out by multiple machines with corresponding functions, the farmland is rolled for multiple times, and the efficiency is low.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a device that is used for the seeding of red pine mushroom, covers stalk and tectorial membrane to solve the problem that above-mentioned prior art exists, once advance can accomplish the seeding of red pine mushroom, cover stalk and tectorial membrane process, reduce artifical input, improve seeding efficiency.
In order to achieve the above object, the utility model provides a following scheme:
the utility model provides a device for seeding, stalk covering and film covering of tricholoma matsutake, which comprises a supporting body, a hanging unit, a stalk covering unit, a film covering unit, at least one walking unit and at least one seeding unit;
the suspension unit is arranged at one end of the bearing body and is connected with a traction device, and the traction device can pull the bearing body to move;
the walking unit is used for being arranged on the supporting body and being capable of being in contact with the ground, and comprises walking wheels, the walking wheels are used for being arranged on the supporting body in a manner of being capable of rotating around the central line of the walking wheels, and the walking wheels can move along with the supporting body to rotate;
the seeding unit is arranged on the middle part of the bearing body, is in transmission connection with the traveling wheels and can be driven by the traveling wheels to sow;
the film coating unit is arranged at one end of the carrier, which is far away from the hanging unit, and can move along with the carrier to coat the film;
the straw covering unit is arranged on the bearing body and arranged between the sowing unit and the film covering unit, and the straw covering unit can move along with the bearing body to cover straws.
Preferably, the seeding unit includes first storage container, gets kind of a mechanism and carries out seeding mechanism, first storage container is used for storing the fungus piece, get kind of a mechanism be used for with walking wheel transmission is connected and can be in under the rotation drive of walking wheel the fungus piece is followed take out and transmit to in the first storage container carry out seeding mechanism, carry out seeding mechanism be used for with walking wheel transmission is connected and can receive the fungus piece can with the fungus piece is sowed to the garrulous straw in.
Preferably, the seed taking mechanism comprises a first driven wheel, a second driven wheel and a transmission piece; the first driven wheel is arranged on the bearing body and placed above the first storage container in a manner of rotating around the center line of the first driven wheel, and the second driven wheel is arranged on the bearing body and placed below the first storage container in a manner of rotating around the center line of the second driven wheel; the center line of the first driven wheel is parallel to the center line of the second driven wheel, and the distance from the first driven wheel to the ground is greater than the distance from the second driven wheel to the ground; the transmission piece is sleeved on the first driven wheel and the second driven wheel; the first driven wheel is in transmission connection with the walking wheel and can rotate under the driving of the walking wheel, the first driven wheel can drive the transmission piece to rotate by rotating, and the second driven wheel can be driven to rotate by rotating the transmission piece; the transmission part is fixedly provided with a seed taking disc, the seed taking disc is used for bearing the fungus block, and the seed taking disc can extend into the first storage container from the bottom of the first storage container along with the rotation of the transmission part and leaves from the top opening of the first storage container.
Preferably, the first driven wheel is a first chain wheel, the second driven wheel is a second chain wheel, the transmission part is a chain, one end of each seed taking plate is used for being fixedly arranged on the chain, and the other end of each seed taking plate is used for extending in the direction far away from the chain.
Preferably, the sowing unit further comprises a second storage container for storing the mushroom pieces and a seat for carrying an operator, the second storage container being arranged above the first storage container; the pellet is movable by the operator from the second storage container into the first storage container.
Preferably, the executing seeding mechanism comprises a falling channel, a lowering piece and a rotary table, the falling channel is fixedly arranged on the supporting body and can receive the fungus blocks from the seed taking mechanism, the rotary table is in transmission connection with the traveling wheels and can be rotationally arranged on the supporting body around the central line of the rotary table under the driving of the traveling wheels, at least one feeding cup is fixedly arranged on the rotary table, the rotary table is arranged below the falling channel and can sequentially receive the fungus blocks from the falling channel in turn and sequentially transfer the received fungus blocks to the lowering piece in turn along with the rotation of the rotary table, and the lowering piece is in transmission connection with the traveling wheels and can sequentially lower the received fungus blocks from the feeding cups to the crushed straws under the driving of the traveling wheels.
Preferably, cover the stalk unit including covering the stalk piece, the both ends that cover the stalk piece are used for fixing respectively and locate on the supporting body, the middle part that covers the stalk piece is used for contacting with garrulous straw and can remove garrulous straw and will place in subaerial fungus piece covers.
Preferably, the film covering unit comprises a film feeding assembly, a ditching wheel, a film pressing wheel and a first soil covering wheel, the ditching wheel can move along with the supporting body and is rotatably arranged on the supporting body around the central line of the ditching wheel, the ditching wheel is used for forming a groove on the ground, the film feeding assembly is used for conveying a film to the position above a fungus block, the film pressing wheel is used for pressing the edge of the film into the groove, and the first soil covering wheel can fill soil into the groove and press the edge of the film; the ditching wheel is used for being closer to the suspension unit than the first soil covering wheel, the film pressing wheel is used for being arranged between the ditching wheel and the first soil covering wheel, and the film conveying assembly can convey the film between the ditching wheel and the film pressing wheel.
Preferably, the film covering unit further comprises a soil covering roller and a second soil covering wheel, the second soil covering wheel is used for filling soil into the groove, the soil filled into the groove by the second soil covering wheel can press the soil filled into the groove by the first soil covering wheel and the edge of the film, and the soil covering roller is used for compacting the soil above the film and the film.
Preferably, the walking unit further comprises a supporting wheel, the supporting wheel is arranged on the carrying body in a manner of being capable of rotating around the central line of the supporting wheel, and the supporting wheel can move along with the carrying body to rotate.
The utility model discloses for prior art gain following technological effect:
the utility model provides a device that is used for red pine mushroom seeding, covers stalk and tectorial membrane once advances to ground can accomplish the seeding of red pine mushroom, covers the stalk and the tectorial membrane process, reduces artifical the input, improves seeding efficiency, specifically: hang the unit through the setting and be connected the supporting body with draw gear, realize under draw gear's traction, the supporting body can remove, can take place to rotate along with the removal of supporting body through setting up the walking wheel, and set up the walking wheel and be connected with the seeding unit transmission, realize when the supporting body is pulled and is removed, the seeding unit can be accomplished the seeding (what this seeding represented promptly here is that the seeding is cultivated the used fungus piece of red pine antler), after the seeding unit seeding, cover the stalk unit and can cover the fungus piece with subaerial garrulous straw after smashing, be favorable to the growth of bacterial, then cover black membrane and compaction to fungus piece top through the tectorial membrane unit, provide suitable environment for the growth of bacterial.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required to be used in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is a schematic view of the overall structure of the device for seeding, stalk covering and film covering of the tricholoma matsutake provided by the utility model;
FIG. 2 is a left side view of the device for seeding, stalk covering and film covering of tricholoma matsutake provided in FIG. 1;
FIG. 3 is a top view of the device for seeding, stalk covering and film covering of Tricholoma matsutake provided in FIG. 1.
In the figure: 100-a device for sowing, stalk covering and film covering of tricholoma matsutake, 1-a carrier, 2-a sowing unit, 21-a support frame, 22-a second storage container, 23-a falling channel, 24-a seed taking disc, 25-a transmission part, 26-a first storage container, 27-a seat, 3-a stalk covering unit, 4-a film covering unit, 41-a ditching wheel, 42-a flattening frame, 43-a film support, 44-a compression roller, 45-a roller, 46-a second soil covering wheel, 47-a first soil covering wheel, 48-a film pressing wheel, 5-a feeding cup, 6-a walking unit, 61-a walking wheel, 62-a support wheel, 64-a depth adjusting device and 7-a hanging unit.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
The utility model aims at providing a device that is used for red pine mushroom seeding, covers stalk and tectorial membrane to solve the problem that above-mentioned prior art exists, once advance can accomplish the seeding of red pine mushroom, cover stalk and tectorial membrane process, reduce artifical the input, improve seeding efficiency.
In order to make the aforementioned objects, features and advantages of the present invention more comprehensible, the present invention is described in detail with reference to the accompanying drawings and the following detailed description.
The utility model provides a device 100 for seeding, stalk covering and film covering of tricholoma matsutake, which comprises a supporting body 1, a hanging unit 7, a stalk covering unit 3, a film covering unit 4, at least one walking unit 6 and at least one seeding unit 2; the hanging unit 7 is arranged at one end of the bearing body 1 and is connected with a traction device, and the traction device can pull the bearing body 1 to move; the walking unit 6 is arranged on the supporting body 1 and can be in contact with the ground, the walking unit 6 comprises walking wheels 61, the walking wheels 61 are arranged on the supporting body 1 in a manner of being capable of rotating around the central line of the walking wheels 61, and the walking wheels 61 can move along with the supporting body 1 to rotate; the seeding unit 2 is arranged on the middle part of the supporting body 1, and the seeding unit 2 is in transmission connection with the traveling wheels 61 and can be driven by the rotation of the traveling wheels 61 to sow; the film coating unit 4 is arranged at one end of the carrier 1 far away from the hanging unit 7, and the film coating unit 4 can move along with the carrier 1 to coat films; cover stalk unit 3 and be used for locating on supporting body 1 and place in between seeding unit 2 and tectorial membrane unit 4, and cover stalk unit 3 and can follow supporting body 1 and remove and cover the stalk.
Therefore, the utility model provides a device 100 that is used for the seeding of red pine mushroom, covers stalk and tectorial membrane once advances ground can accomplish the seeding of red pine mushroom, covers stalk and tectorial membrane process, reduces artifical the input, improves seeding efficiency, specifically: the supporting body 1 is connected with the traction device through the suspension unit 7, the supporting body 1 can move under the traction action of the traction device, the walking wheels 61 can rotate along with the movement of the supporting body 1, the walking wheels 61 are in transmission connection with the sowing unit 2, the sowing unit 2 can complete sowing (the sowing represents sowing and cultivation of tricholoma rubrum) while the supporting body 1 is pulled to move, the straw covering unit 3 can cover ground crushed straws on the mushroom blocks after the sowing unit 2 is sowed, the growth of strains is facilitated, then the black film is covered and compacted above the mushroom blocks through the film covering unit 4, and a suitable environment is provided for the growth of the strains; wherein, preferably, the hanging unit 7 is connected with a tractor, and the depth adjusting device 64 is used for adjusting the whole machine to a reasonable state.
Further, the sowing unit 2 comprises a first storage container 26, a seed taking mechanism and an executing sowing mechanism, the first storage container 26 is used for storing the fungus blocks, the seed taking mechanism is used for being in transmission connection with the walking wheels 61 and can take out the fungus blocks from the first storage container 26 and transmit the fungus blocks to the executing sowing mechanism under the driving of the rotation of the walking wheels 61, the executing sowing mechanism is used for being in transmission connection with the walking wheels 61 and can receive the fungus blocks and can sow the fungus blocks to the broken straws, the structure is simple, the automation degree is high, and manpower can be saved.
Further, the seed taking mechanism comprises a first driven wheel, a second driven wheel and a transmission piece 25; the first driven wheel is arranged on the bearing body 1 and above the first storage container 26 in a manner of rotating around the central line of the first driven wheel, and the second driven wheel is arranged on the bearing body 1 and below the first storage container 26 in a manner of rotating around the central line of the second driven wheel; the center line of the first driven wheel is parallel to the center line of the second driven wheel, and the distance from the first driven wheel to the ground is greater than the distance from the second driven wheel to the ground; the transmission member 25 is sleeved on the first driven wheel and the second driven wheel; the first driven wheel is in transmission connection with the traveling wheel 61 and can rotate under the driving of the traveling wheel 61, the transmission member 25 can be driven to rotate by the rotation of the first driven wheel, and the second driven wheel can be driven to rotate by the rotation of the transmission member 25; a seed taking disc 24 is fixedly arranged on the transmission member 25, the seed taking disc 24 is used for bearing fungus blocks, the seed taking disc 24 can extend into the first storage container 26 from the bottom of the first storage container 26 along with the rotation of the transmission member 25 and leave from the top opening of the first storage container 26, after a part of the fungus blocks stored in the first storage container 26 are taken away by the seed taking disc 24, a part of the remaining fungus blocks fall onto the seed taking disc 24 newly entering the first storage container 26 under the action of gravity and are taken away, and the operation is repeated.
Furthermore, the first driven wheel is a first chain wheel, the second driven wheel is a second chain wheel, the transmission part 25 is a chain, one end of each seed taking plate 24 is used for being fixedly arranged on the chain, and the other end of each seed taking plate is used for extending in the direction away from the chain.
Further, the sowing unit 2 further comprises a second storage container 22 and a seat 27, the second storage container 22 is used for storing the mushroom pieces, the second storage container 22 is used for being arranged above the first storage container 26 (specifically, the second storage container 22 can be supported by arranging a support frame 21 on the carrier body 1), and the seat 27 is used for carrying an operator; the fungus block can be moved from the second storage container 22 to the first storage container 26 by an operator, and when the fungus block needs to be supplemented into the first storage container 26, the operator can directly supplement the fungus block stored in the second storage container 22 into the first storage container 26, so that the operation is simple, and time and labor are saved.
Furthermore, the seed sowing execution mechanism comprises a falling channel 23, a downward-placing part and a rotary table, wherein the falling channel 23 is fixedly arranged on the supporting body 1, the falling channel 23 can receive the fungus blocks from the seed taking mechanism, the rotary table is in transmission connection with the travelling wheel 61 and can be rotationally arranged on the supporting body 1 around the central line of the rotary table under the driving of the travelling wheel 61, at least one feeding cup 5 is fixedly arranged on the rotary table, the rotary table is arranged below the falling channel 23, each feeding cup 5 can sequentially receive the fungus blocks from the falling channel 23 in turn along with the rotation of the rotary table and sequentially transmit the received fungus blocks to the downward-placing part in turn, the downward-placing part is in transmission connection with the travelling wheel 61 and can sequentially lower the received fungus blocks from each feeding cup 5 to the crushed straws under the driving of the travelling wheel 61, wherein preferably, the rotation frequency of the feeding cup 5 is consistent with the falling frequency of the fungus blocks from the falling channel 23, and the fungus blocks are ensured to smoothly enter the feeding cup 5; in the embodiment, a perforated plate is arranged below each feeding cup 5, a through hole is formed in the perforated plate, when the feeding cup 5 is not rotated to the through hole, the bottom of the feeding cup 5 is blocked by the perforated plate to prevent fungus blocks from falling off, when the feeding cup 5 is rotated to the through hole, the feeding cup 5 can be communicated with the piece-placing part through the through hole, and the fungus blocks can pass through the through hole and reach the piece-placing part; it should be noted that the downward-placing part can be of an existing duckbilled type structure (refer to a duckbilled opening and closing structure in an existing vegetable transplanting machine), can move up and down with the advancing of the bearing body 1 through power transmitted by the traveling wheels 61, and can be inserted into the crushed straws and opened when moving down, so that the fungus blocks enter the straws.
Further, cover stalk unit 3 including covering the stalk piece, the both ends that cover the stalk piece are used for fixedly locating on supporting body 1 respectively, the middle part that covers the stalk piece is used for contacting with garrulous straw and can remove garrulous straw and will arrange subaerial fungus piece in and cover, it can be any kind and can play the article of the effect of dragging to garrulous straw to cover the stalk piece, wherein comparatively preferentially, it adopts the chain structure (like the iron chain) to cover the stalk piece, moreover, the steam generator is simple in structure and reliable, the dismounting is convenient, can cover the fungus piece that falls into in the straw gently with the straw, be favorable to the growth of bacterial.
Further, the film covering unit 4 comprises a film feeding assembly, a ditching wheel 41, a film pressing wheel 48 and a first soil covering wheel 47, wherein the ditching wheel 41 can move along with the supporting body 1 and is rotatably arranged on the supporting body 1 around the central line of the ditching wheel 41, the ditching wheel 41 is used for forming a groove on the ground, the film feeding assembly is used for conveying a film to the position above a fungus block, the film pressing wheel 48 is used for pressing the edge of the film into the groove, and the first soil covering wheel 47 can fill soil into the groove and press the edge of the film; the ditching wheel 41 is used to be closer to the suspension unit 7 than the first soil covering wheel 47, the film pressing wheel 48 is used to be placed between the ditching wheel 41 and the first soil covering wheel 47, and the film feeding assembly can feed the film between the ditching wheel 41 and the film pressing wheel 48. In this embodiment, the film covering unit 4 adopts the existing common film covering mode, specifically, the film feeding assembly comprises a film support 43, a flattening frame 42 and a pressing roller 44, wherein the film support 43 is used to support the film, the flattening frame 42 is used to flatten the film, and the pressing roller 44 is used to press the film downwards into the groove.
Further, the film covering unit 4 further comprises a soil covering roller 45 and a second soil covering wheel 46, the second soil covering wheel 46 is used for filling soil into the groove, the soil filled into the groove by the second soil covering wheel 46 can press the soil filled into the groove by the first soil covering wheel 47 and the edge of the film, and the soil covering roller 45 is used for compacting the soil and the film above the film, so that a proper environment can be provided for the growth of strains.
Furthermore, the walking unit 6 further comprises a supporting wheel 62, the supporting wheel 62 is arranged on the supporting body 1 in a manner of being capable of rotating around the central line of the supporting wheel 62, the supporting wheel 62 can move along with the supporting body 1 to rotate, and the height of the supporting wheel 62 is adjustable, so that the machine tool can be prevented from being sunk into the soil due to overweight.
The utility model discloses a concrete example is applied to explain the principle and the implementation mode of the utility model, and the explanation of the above example is only used to help understand the method and the core idea of the utility model; meanwhile, for the general technical personnel in the field, according to the idea of the present invention, there are changes in the concrete implementation and the application scope. In summary, the content of the present specification should not be construed as a limitation of the present invention.

Claims (10)

1. The utility model provides a device that is used for red pine mushroom to sow, covers stalk and tectorial membrane which characterized in that: comprises a bearing body, a hanging unit, a stalk covering unit, a film covering unit, at least one walking unit and at least one sowing unit;
the suspension unit is arranged at one end of the bearing body and is connected with a traction device, and the traction device can pull the bearing body to move;
the walking unit is arranged on the supporting body and can be in contact with the ground, the walking unit comprises a walking wheel, the walking wheel is arranged on the supporting body in a manner of rotating around the central line of the walking wheel, and the walking wheel can move along with the supporting body to rotate;
the seeding unit is arranged on the middle part of the bearing body, is in transmission connection with the traveling wheels and can be driven by the traveling wheels to sow;
the film coating unit is arranged at one end of the carrier, which is far away from the hanging unit, and can move along with the carrier to coat the film;
the straw covering unit is arranged on the bearing body and arranged between the sowing unit and the film covering unit, and the straw covering unit can move along with the bearing body to cover straws.
2. The device for seeding, stalk covering and film covering of tricholoma matsutake as claimed in claim 1, wherein: the seeding unit includes first storage container, gets kind of mechanism and execution seeding mechanism, first storage container is used for storing the fungus piece, get kind of mechanism be used for with walking wheel drive connects and can be in under the rotation drive of walking wheel the fungus piece is followed take out and transmit extremely among the first storage container execution seeding mechanism, execution seeding mechanism be used for with walking wheel drive connects and can receive the fungus piece can with the fungus piece is sowed to the garrulous straw in.
3. The device for seeding, stalk mulching and film covering of tricholoma matsutake according to claim 2, characterized in that: the seed taking mechanism comprises a first driven wheel, a second driven wheel and a transmission part; the first driven wheel is arranged on the bearing body and placed above the first storage container in a manner of rotating around the center line of the first driven wheel, and the second driven wheel is arranged on the bearing body and placed below the first storage container in a manner of rotating around the center line of the second driven wheel; the center line of the first driven wheel is parallel to the center line of the second driven wheel, and the distance from the first driven wheel to the ground is larger than that from the second driven wheel to the ground; the transmission part is sleeved on the first driven wheel and the second driven wheel; the first driven wheel is in transmission connection with the walking wheel and can rotate under the driving of the walking wheel, the first driven wheel can drive the transmission piece to rotate by rotating, and the second driven wheel can be driven to rotate by rotating the transmission piece; the transmission part is fixedly provided with a seed taking disc, the seed taking disc is used for bearing the fungus block, and the seed taking disc can extend into the first storage container from the bottom of the first storage container along with the rotation of the transmission part and leaves from the top opening of the first storage container.
4. The device for seeding, stalk covering and film covering of tricholoma matsutake as claimed in claim 3, wherein: the first driven wheel is a first chain wheel, the second driven wheel is a second chain wheel, the transmission part is a chain, one end of each seed taking disc is fixedly arranged on the chain, and the other end of each seed taking disc is used for extending towards the direction far away from the chain.
5. The device for seeding, stalk covering and film covering of tricholoma matsutake as claimed in claim 2, wherein: the seeding unit further comprises a second storage container and a seat, wherein the second storage container is used for storing the bacterium blocks, the second storage container is arranged above the first storage container, and the seat is used for bearing an operator; the pellet is movable by the operator from the second storage container into the first storage container.
6. The device for seeding, stalk covering and film covering of tricholoma matsutake as claimed in claim 2, wherein: the executing seeding mechanism comprises a falling channel, a lowering piece and a rotary table, the falling channel is fixedly arranged on the bearing body and can receive the fungus blocks from the seed taking mechanism, the rotary table is in transmission connection with the traveling wheels and can be rotationally arranged on the bearing body around the central line of the rotary table under the driving of the traveling wheels, at least one feeding cup is fixedly arranged on the rotary table, the rotary table is arranged below the falling channel and can sequentially receive the fungus blocks from the falling channel in turn along with the rotation of the rotary table and sequentially transfer the received fungus blocks to the lowering piece in turn, and the lowering piece is in transmission connection with the traveling wheels and can sequentially lower the received fungus blocks from the feeding cups to the crushed straws under the driving of the traveling wheels.
7. The device for seeding, stalk covering and film covering of tricholoma matsutake as claimed in claim 1, wherein: cover the stalk unit including covering the stalk piece, the both ends that cover the stalk piece are used for fixing respectively and locate on the supporting body, the middle part that covers the stalk piece is used for contacting with garrulous straw and can remove garrulous straw will be arranged in subaerial fungus piece covers.
8. The device for seeding, stalk covering and film covering of tricholoma matsutake as claimed in claim 1, wherein: the film covering unit comprises a film feeding assembly, a ditching wheel, a film pressing wheel and a first soil covering wheel, the ditching wheel can move along with the supporting body and is arranged on the supporting body in a rotating mode around the central line of the ditching wheel, the ditching wheel is used for forming a groove on the ground, the film feeding assembly is used for conveying a film to the position above a fungus block, the film pressing wheel is used for pressing the edge of the film into the groove, and the first soil covering wheel can fill soil into the groove and press the edge of the film; the ditching wheel is used for being closer to the suspension unit than the first soil covering wheel, the film pressing wheel is used for being arranged between the ditching wheel and the first soil covering wheel, and the film feeding assembly can convey the film between the ditching wheel and the film pressing wheel.
9. The device for seeding, stalk covering and film covering of tricholoma matsutake as claimed in claim 8, wherein: the film covering unit further comprises a soil covering roller and a second soil covering wheel, the second soil covering wheel is used for filling soil into the groove, the soil filled into the groove by the second soil covering wheel can press the soil filled into the groove by the first soil covering wheel and the edge of the film, and the soil covering roller is used for compacting the soil above the film and the film.
10. The device for seeding, stalk covering and film covering of tricholoma matsutake as claimed in claim 1, wherein: the walking unit further comprises a supporting wheel, the supporting wheel is arranged on the bearing body in a rotating mode around the central line of the supporting wheel, and the supporting wheel can move along with the bearing body to rotate.
CN202221815553.9U 2022-07-14 2022-07-14 Device for sowing, stalk covering and film covering of tricholoma matsutake Active CN217608681U (en)

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Application Number Priority Date Filing Date Title
CN202221815553.9U CN217608681U (en) 2022-07-14 2022-07-14 Device for sowing, stalk covering and film covering of tricholoma matsutake

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221815553.9U CN217608681U (en) 2022-07-14 2022-07-14 Device for sowing, stalk covering and film covering of tricholoma matsutake

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CN217608681U true CN217608681U (en) 2022-10-21

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