A method for planting rhizomes of bamboo shoots
Through the automated planting method, the problems of time-consuming and labor-intensive bamboo fungus planting and uneven nutrient absorption were solved, the matrix arrangement of bamboo fungus bags and uniform nutrient spraying were achieved, and the yield and planting efficiency of bamboo fungus were improved.
Patent Information
- Application Number
- CN202510165182.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-14
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2045-02-14
AI Technical Summary
Existing bamboo fungus cultivation methods are time-consuming and labor-intensive, and it is difficult to systematically control the bamboo fungus growth environment. In addition, the spacing between bamboo fungus pods and the uneven absorption of nutrients affect the yield.
An automated planting method is adopted, through the steps of covering film, spreading soil, outputting mushroom bags, transporting and covering soil, and using soil spreading modules and cultivation modules to realize the automated construction and matrix arrangement of bamboo fungus bags, ensuring uniform spraying of nutrients.
The automated planting of bamboo fungus bags and uniform nutrient absorption are achieved, thereby improving bamboo fungus yield and planting efficiency.
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Figure CN119699120B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of Rhizoma Dendrodii planting, and particularly relates to a Rhizoma Dendrodii planting method. BACKGROUND
[0002] Rhizoma Dendrodii, also known as bamboo sheng and bamboo stem, has four common edible varieties, namely, long skirt Rhizoma Dendrodii, short skirt Rhizoma Dendrodii, spiny support Rhizoma Dendrodii and red support Rhizoma Dendrodii. It is a kind of cryptogamic plant that parasitizes on the root of dead bamboo. It looks like a net-shaped dry white snake skin. It has a deep green cap, a snow-white cylindrical stem, a pink egg-shaped support, and a fine white net-shaped skirt at the top of the stem. Rhizoma Dendrodii has the characteristics of rich nutrition, strong aroma and delicious taste, and has been listed as one of the "Eight Treasures of Grass" since ancient times.
[0003] In the prior art, Rhizoma Dendrodii is usually planted by artificial method. This planting method results in high labor cost and is difficult to systematically control the growth environment of each Rhizoma Dendrodii. A Rhizoma Dendrodii planting box is disclosed in Chinese Patent No. CN115053756A, which comprises a main box body, a side separation net rack, a stress plate and a buffer pad. The side separation net rack is arranged above the main box body and is buckled with the main box body. In the use of the device in the patent, the mechanism provided can avoid the need to loosen the soil layer with a tool before placing the fungus, thereby saving the time wasted in the process.
[0004] However, in the above patent, the Rhizoma Dendrodii fungus bag to be cultivated needs to be placed by artificial method, which is time-consuming and labor-intensive. At the same time, the artificial placement method is difficult to control the distance between each Rhizoma Dendrodii fungus bag, which can easily lead to uneven absorption of nutrients by each Rhizoma Dendrodii fungus bag during subsequent spraying of nutrients, ultimately affecting the yield of Rhizoma Dendrodii. SUMMARY
[0005] In order to make up for the shortcomings of the prior art, the present application provides a Rhizoma Dendrodii planting method to solve the technical problem of time-consuming and labor-intensive in Rhizoma Dendrodii planting.
[0006] To achieve the above purpose, the specific technical scheme of the present application is as follows:
[0007] A Rhizoma Dendrodii planting method, comprising the following steps:
[0008] Step one, film mulching, a layer of plastic bottom film is laid on the cultivation support, the plastic bottom film is released by the winding assembly, and the plastic bottom film is driven by the conveyor belt assembly to lay on the cultivation support.
[0009] Step two, soil spreading, a layer of cultivation soil is spread on the plastic bottom film by the soil spreading module to form the cultivation environment of Rhizoma Dendrodii.
[0010] Step three, fungus bag output, place multiple bamboo fungus fungus bags in the blanking module. The blanking module includes a storage bin, a bamboo fungus output assembly, and an arrangement conveying assembly. Multiple bamboo fungus fungus bags are placed in the storage bin, and are output one by one to one side of the arrangement conveying assembly through the bamboo fungus output assembly.
[0011] The arrangement conveying assembly sequentially rolls the output bamboo fungus fungus bags along the horizontal direction and sequentially falls into the transfer module below. The fallen bamboo fungus fungus bags are arranged in an array in the transfer module.
[0012] Step four, transfer conveying, the transfer module supports and clamps the bamboo fungus fungus bags when they fall. After receiving multiple bamboo fungus fungus bags, the transfer module moves along the length direction of the cultivation support, and releases the support and clamps of each bamboo fungus fungus bag when it moves to the designated position. The bamboo fungus fungus bags fall onto the plastic bottom film under the action of gravity.
[0013] Step five, covering, the soil spreading module repeatedly spreads soil, and spreads a layer of cultivation soil on the surface of each fallen bamboo fungus fungus bag.
[0014] Further, the arrangement conveying assembly in step three includes a conveying support, and a blanking guide rail and a blanking drive assembly installed on the conveying support. The blanking guide rail is provided with a plurality of blanking ports arranged in sequence along the length direction. Each blanking port is provided with a blanking flap. Each blanking flap covers the corresponding blanking port. When the bamboo fungus fungus bags roll from the blanking bin one by one, each blanking flap can be turned upward in sequence under the drive of the blanking drive assembly, so that the bamboo fungus fungus bags can fall into the transfer module from the blanking ports in sequence, and the opened blanking ports are closed by the corresponding blanking flaps after falling.
[0015] Further, the blanking drive assembly includes a plurality of gear sleeve groups installed on the shafts of the blanking flaps. Each gear sleeve group is provided with a first synchronous belt. The gear sleeve group includes a synchronous wheel, a transmission gear, and a turnover control gear. The transmission gear is fixed on the shaft of the blanking flap. The turnover control gear is rotationally connected and can be rotated under the drive of the transmission gear. The outer circumferential surface of the turnover control gear is provided with a driving part and a reset part. The driving part is provided with a tooth groove engaged with the transmission gear.
[0016] Further, in the initial state, the driving parts of the turnover control gears in each gear sleeve group are sequentially arranged in a circumferential array on the corresponding turnover control gears in the length direction of the blanking guide rail.
[0017] Further, the top and bottom of the storage bin are respectively provided with an input port and a first output port. The storage bin is provided with a storage cavity and a conveying cavity which are in communication with each other. The bamboo fungus output assembly is installed in the conveying cavity and is used for receiving the bamboo fungus package falling from the storage cavity into the conveying cavity one by one and conveying the bamboo fungus package to the first output port for output.
[0018] Further, the bamboo fungus output assembly in step three comprises a discharging driving motor and an output transfer piece. The output transfer piece is rotationally connected in the conveying cavity and can rotate under the driving of the discharging driving motor. The outer wall of the output transfer piece is provided with a transfer notch matched with the bamboo fungus package.
[0019] Further, the discharging driving motor and the first synchronous belt are provided with a power transmission assembly. The power transmission assembly can drive the first synchronous belt to perform belt transmission under the driving of the discharging driving motor, and drive the synchronous wheel in each gear sleeve set to rotate under the cooperation of the subsequent first synchronous belt.
[0020] Further, the soil scattering module in steps two and five comprises a supporting bracket, a second displacement assembly, and a soil scattering assembly installed on the supporting bracket. The supporting bracket is slidingly connected to the top of the cultivation bracket and can reciprocate along the length direction of the cultivation bracket under the driving of the second displacement assembly. The soil scattering assembly is used for storing and outputting the soil required for cultivation.
[0021] Further, the soil scattering assembly comprises a soil storage bin, a soil scattering roller and a soil scattering driving motor. The inner cavity of the soil scattering roller and the inner cavity of the soil storage bin are in communication. The soil scattering roller is provided with a soil scattering piece. The soil scattering piece rotates under the driving of the soil scattering driving motor and inputs the soil falling from the soil storage bin from the soil outlet at the bottom of the soil scattering roller.
[0022] Further, the method further comprises step six, i.e., shifting. The plastic bottom film and the bamboo fungus package placed on the plastic bottom film are transferred and conveyed along the length direction of the cultivation bracket under the driving of the conveying belt assembly, so as to provide a shifting space for the falling of the subsequent bamboo fungus package.
[0023] Compared with the prior art, the present application has the following advantages:
[0024] 1. The application realizes the automation construction of the environment required for cultivating bamboo fungus bag by setting the soil scattering module and the cultivation module. Meanwhile, the bamboo fungus bags stacked and placed can be output one by one through the material falling module and arranged and dropped in turn along the width direction of the transfer module. The transfer module places the received bamboo fungus bags on the plastic bottom film, thereby realizing the automatic output of the bamboo fungus bags and arranging the bamboo fungus bags in a matrix form. The bamboo fungus bags arranged in a matrix form can uniformly absorb the nutrients in the subsequent nutrient spraying process, thereby ensuring the yield of bamboo fungus.
[0025] 2. The application sets the tooth groove with circumferential array arrangement on each turnover control gear for driving each blanking flap to turn and open, so that when the previous blanking flap turns up to the limit position and starts to turn down to close the blanking port corresponding thereto, the blanking flap at the adjacent position turns up and opens the corresponding blanking port under the drive of the corresponding transmission gear. The bamboo fungus bags rolled down subsequently can fall into the transfer module from the corresponding blanking port, and finally each fallen bamboo fungus bag is arranged along the lateral direction in the transfer module, thereby reducing the control requirement of the power source for controlling the opening or closing of the blanking flap. BRIEF DESCRIPTION OF DRAWINGS
[0026] Figure 1 It is the overall flowchart of the application;
[0027] Figure 2 It is the overall structure schematic diagram of the application;
[0028] Figure 3 It is the structure schematic diagram of the arrangement and conveying assembly in the application;
[0029] Figure 4 It is the relative position schematic diagram of the power transmission assembly and the gear set in the application;
[0030] Figure 5 It is Figure 4 the local enlarged view of part A in the application;
[0031] Figure 6 It is the structure schematic diagram of the gear set in the application ( Figure 5 the local enlarged view of part B in the application);
[0032] Figure 7 It is the relative position schematic diagram of the arrangement and conveying assembly, the transfer module and the soil scattering module in the application;
[0033] Figure 8 It is the structure schematic diagram of the soil scattering module in the application ( Figure 7 the local enlarged view of part C in the application).
[0034] Reference signs: 1, cultivation support; 2, soil scattering module; 2-1, support support; 2-2, soil storage bin; 2-3, soil scattering roller; 2-4, soil scattering piece; 3, material falling module; 4, transfer module; 5, cultivation module; 5-1, plastic bottom film; 5-2, winding assembly; 5-3, conveying belt assembly; 6, storage bin; 7, dendrobum output assembly; 8, arrangement conveying assembly; 8-1, conveying support; 8-2, blanking guide rail; 8-3, blanking port; 8-4, blanking baffle; 8-5, gear sleeve set; 8-5-1, synchronous wheel; 8-5-2, transmission gear; 8-5-3, turnover control gear; 9, driving part; 10, reset part; 11, power transmission assembly. DETAILED DESCRIPTION
[0035] In the description of the present application, it should be understood that the terms "one end", "the other end", "outer side", "upper", "inner side", "horizontal", "coaxial", "central", "end", "length", "outer end" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0036] The present application will be further described below in conjunction with the drawings.
[0037] As shown in Figure 1 and 2 , a dendrobum planting method, the specific steps are as follows:
[0038] Step one, film covering, a layer of plastic bottom film 5-1 is laid on the cultivation support 1, the plastic bottom film 5-1 is released by the winding assembly 5-2, and the plastic bottom film 5-1 is driven by the conveying belt assembly 5-3 to make it lay on the cultivation support 1.
[0039] Step two, soil scattering, a layer of cultivation soil is scattered on the plastic bottom film 5-1 by the soil scattering module 2 to form the cultivation environment of dendrobum.
[0040] Step three, fungus bag output, a plurality of dendrobum fungus bags are placed in the material falling module 3. The material falling module 3 includes a storage bin 6, a dendrobum output assembly 7 and an arrangement conveying assembly 8. A plurality of dendrobum fungus bags are placed in the storage bin 6, and are output to one side of the arrangement conveying assembly 8 by the dendrobum output assembly 7.
[0041] The arrangement conveying assembly 8 rolls the output dendrobum fungus bags along the horizontal direction in turn, and falls to the transfer module 4 below in turn, and the falling dendrobum fungus bags are arranged in an array in the transfer module 4.
[0042] Step four, transfer transport, the transfer module 4 supports and clamps the bamboo fungus bag when the bamboo fungus bag falls. After receiving a plurality of bamboo fungus bags, the transfer module 4 moves along the length direction of the cultivation support 1, and releases the support and clamping of each bamboo fungus bag when moving to the designated position. The bamboo fungus bag falls on the plastic bottom film 5-1 under the action of gravity.
[0043] Step five, covering, the soil spreading module 2 repeats the soil spreading work, and spreads a layer of cultivation soil on the surface of each fallen bamboo fungus bag.
[0044] Step six, transfer and give way, the plastic bottom film 5-1 and the bamboo fungus bag placed on the plastic bottom film 5-1 are transferred along the length direction of the cultivation support 1 under the driving of the conveyor belt assembly 5-3, providing space for the subsequent falling of the bamboo fungus bag.
[0045] Step seven, repeat steps three to six to complete the planting and cultivation of all bamboo fungus bags.
[0046] The specific device structure is shown in Figure 2 、 3 and 4, the top and bottom of the storage bin 6 are respectively provided with an input port and a first output port. A plurality of bamboo fungus bags enter the storage bin 6 from the input port. The storage bin 6 is sequentially provided with a storage cavity and a conveying cavity from top to bottom. The second output port is arranged between the storage cavity and the conveying cavity. The bamboo fungus bags stored in the storage cavity will fall into the conveying cavity one by one through the second output port. The bamboo fungus output assembly 7 is installed in the conveying cavity, which is used to receive the bamboo fungus bags falling into the conveying cavity one by one, and output through the first output port.
[0047] The bamboo fungus output assembly 7 includes a discharging drive motor and an output transfer piece. The output transfer piece is rotationally connected in the conveying cavity and can rotate under the driving of the discharging drive motor. The outer wall of the output transfer piece is provided with a transfer notch matched with the bamboo fungus bag. When the transfer notch on the output transfer piece rotates to the position of the second output port, the bamboo fungus bag in the storage cavity falls into the transfer notch under the action of gravity. The output transfer piece continues to rotate and transfers the bamboo fungus bag in the transfer notch to the first output port.
[0048] As shown in Figure 3As shown, the arrangement conveying assembly 8 comprises a conveying support 8-1, and a discharging guide rail 8-2 and a discharging drive assembly installed on the conveying support 8-1. The discharging guide rail 8-2 is arranged in an inclined manner, so that the bamboo fungus bags can automatically roll down under the action of gravity when falling onto the discharging rail. A plurality of discharging ports 8-3 are arranged in sequence along the length direction on the discharging rail. Each discharging port 8-3 is provided with a discharging baffle 8-4. The edge of the discharging baffle 8-4 away from the storage bin 6 is rotatably connected with the edge of the slot of the discharging port 8-3, and can be opened one by one under the drive of the discharging drive assembly.
[0049] In the initial state, each discharging baffle 8-4 covers the corresponding discharging port 8-3. When the bamboo fungus bags roll down one by one from the discharging bin, each discharging baffle 8-4 can be turned upward one by one under the drive of the discharging drive assembly, so that the discharging port 8-3 is opened and closed after the corresponding bamboo fungus bag falls, so that the subsequent rolling bamboo fungus bags do not roll from the same discharging port 8-3.
[0050] As shown in Figure 3 , 4 and 5, the discharging drive assembly comprises a plurality of gear sleeve groups 8-5 installed on the rotating shafts of the discharging baffles 8-4. Each gear sleeve group 8-5 is provided with a first synchronous belt for driving the gear sleeve groups 8-5 to move simultaneously.
[0051] Further, the discharging drive motor and the first synchronous belt are provided with a power transmission assembly. The power transmission assembly can drive the first synchronous belt to perform belt transmission under the drive of the discharging drive motor, and under the cooperation of the subsequent first synchronous belt, so that each bamboo fungus bag output from the first output port can fall from each discharging port 8-3 in sequence.
[0052] In this embodiment, the power transmission assembly adopts a notched wheel mechanism. The discharging drive motor and the power input end of the notched wheel mechanism are provided with a second synchronous belt for power transmission. The first synchronous belt is connected with the power output end of the notched wheel mechanism, so as to realize the power transmission of the discharging drive motor, so that each gear sleeve group 8-5 can rotate synchronously under the drive of the discharging drive motor.
[0053] As shown in Figure 5 and 6As shown, the gear sleeve set 8-5 includes a rotating shaft, a synchronous wheel 8-5-1, a transmission gear 8-5-2 and a turnover control gear 8-5-3. Among them, the transmission gear 8-5-2 is fixed on the rotating shaft of the blanking baffle 8-4. The synchronous wheel 8-5-1 and the turnover control gear 8-5-3 are both rotatably connected to the conveying support 8-1 through the rotating shaft. When the synchronous wheel 8-5-1 rotates under the drive of the first synchronous belt, it will drive the turnover control gear 8-5-3 to rotate synchronously. The turnover control gear 8-5-3 can drive the transmission gear 8-5-2 to rotate synchronously when it rotates, thereby realizing the turnover opening of the blanking baffle 8-4.
[0054] As shown in Figure 5 The outer circumferential surface of the turnover control gear 8-5-3 is provided with a driving part 9 and a reset part 10. Among them, the driving part 9 is provided with a tooth groove meshing with the transmission gear 8-5-2. When the driving part 9 on the turnover control gear 8-5-3 is driven by the synchronous wheel 8-5-1 to move to the position of the transmission gear 8-5-2, it will drive the transmission gear 8-5-2 to rotate, thereby realizing the upward turnover of the blanking baffle 8-4 and opening the corresponding blanking port 8-3. When the driving part 9 on the turnover control gear 8-5-3 is separated from the transmission gear 8-5-2 and enters the reset part 10, the blanking baffle 8-4 loses the rotating support force brought by the transmission gear 8-5-2 and will turn downward under the action of gravity, sealing the corresponding blanking port 8-3, so that the subsequent roller bamboo fungus package can smoothly roll down from the rear blanking port 8-3.
[0055] In this embodiment, in the initial state, the driving part 9 of the turnover control gear 8-5-3 in each gear sleeve set 8-5 is arranged along the circumference of the corresponding turnover control gear 8-5-3 axis in the length direction of the blanking guide rail 8-2. During work, when the driving part 9 on the turnover control gear 8-5-3 at the initial position is separated from the corresponding transmission gear 8-5-2 after rotating to the end, the driving part 9 on the turnover control gear 8-5-3 at the adjacent position is meshed with the corresponding transmission gear 8-5-2, so that when the blanking baffle at the initial position turns upward to the limit position and starts to turn downward to close the corresponding blanking port 8-3, the blanking baffle 8-4 at the adjacent position turns upward under the drive of the corresponding transmission gear 8-5-2, opens the corresponding blanking port 8-3, so that the subsequent roller bamboo fungus package can fall from the blanking port 8-3 into the transfer module 4, and finally each falling bamboo fungus package is arranged along the transverse direction in the transfer module 4.
[0056] As shown in Figure 2 The transfer module 4 includes a blanking support, a blanking clamping assembly and a first displacement assembly. Among them, the blanking support is slidably connected with the cultivation support 1 through the first displacement assembly and can reciprocate along the length direction of the cultivation support 1 under the drive of the first displacement assembly.
[0057] The blanking support is provided with a plurality of storage gaps for receiving the bamboo shoot fungus bags falling from the upper blanking openings 8-3. The blanking clamping assembly is installed at the bottom of the storage gap. Initially, the blanking clamping assembly is in a clamping state, which can clamp and support the bamboo shoot fungus bags falling into the storage gap. When the bamboo shoot fungus bags fall into each storage gap, the blanking support moves to the upper side of the specified position of the cultivation support 1 through the first displacement assembly. The blanking clamping assembly is converted to a loosening state, so that the bamboo shoot fungus bags in each storage gap can fall smoothly onto the plastic bottom film 5-1.
[0058] In this embodiment, the blanking clamping assembly includes two clamping rods and a clamping driving assembly. The two clamping rods are symmetrically arranged in the storage gap and can approach or move away from each other under the driving of the clamping driving assembly, thereby clamping and supporting or loosening the bamboo shoot fungus bags falling into the storage gap.
[0059] Further, the two sides of each storage gap are provided with guide plates for guiding the bamboo shoot fungus bags falling from the blanking opening 8-3, ensuring that the bamboo shoot fungus bags can fall smoothly into the corresponding storage gap.
[0060] As shown in Figure 7 and 8 , the soil scattering module 2 includes a support bracket 2-1, a second displacement assembly, and a soil storage bin 2-2, a soil scattering roller 2-3 and a soil scattering driving motor installed on the support bracket 2-1. The support bracket 2-1 is slidingly connected to the top of the cultivation support 1 and can reciprocate along the length direction of the cultivation support 1 under the driving of the second displacement assembly.
[0061] As shown in Figure 8 , the soil scattering roller 2-3 and the soil storage bin 2-2 are installed on the support bracket 2-1 from bottom to top, and the inner cavity of the soil scattering roller 2-3 and the inner cavity of the soil storage bin 2-2 are connected. The inner cavity of the soil storage bin 2-2 stores soil for cultivating bamboo shoot fungus bags. The soil is output to the side of the watering roller under the action of gravity. The soil scattering roller 2-3 is provided with a soil scattering piece 2-4. The soil scattering piece 2-4 rotates under the driving of the soil scattering driving motor and inputs the soil falling from the soil storage bin 2-2 from the soil outlet at the bottom of the soil scattering roller 2-3, so that the soil in the soil storage bin 2-2 can be evenly laid on the plastic bottom film 5-1.
[0062] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, and are not intended to limit the present application; although the present application has been described in detail with reference to the above embodiments, those skilled in the art should understand that the technical solutions recorded in the above embodiments can be modified, or some or all of the technical features can be replaced by equivalents; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.
Claims
1. A method for growing bamboo fungus, characterized in that: The following steps are involved: Step 1: Laminating: Laying a layer of plastic base film on the culture support. The plastic base film is released by a winding assembly and driven by a conveyor belt assembly to be laid on the culture support. Step 2: Spreading soil: Spreading a layer of cultivation soil on the plastic base film through the soil spreading module to form a cultivation environment for bamboo fungus; Step 3: Output the mushroom bags, placing multiple bamboo fungus bags in the blanking module; the blanking module includes a storage bin, a bamboo fungus output component and an arrangement and conveying component; multiple bamboo fungus bags are placed in the storage bin, and are output one by one to one side of the arrangement and conveying component through the bamboo fungus output component; The arrangement and conveying component rolls the output bamboo fungus bags in the horizontal direction in sequence, and drops them into the transfer module below in sequence. The falling bamboo fungus bags are arranged in an array in the transfer module; Step 4: Transfer and transport: the transfer module supports and clamps the bamboo fungus bag when it falls; after receiving multiple bamboo fungus bags, the transfer module moves along the length of the cultivation support, and releases the support and clamping of each bamboo fungus bag when it moves to the designated position; the bamboo fungus bag falls onto the plastic base film under the action of gravity; Step 5: Cover with soil. The soil spreading module repeats the soil spreading work and sprinkles a layer of cultivation soil on the surface of each fallen bamboo fungus bag; The arrangement conveying assembly in step three includes a conveying bracket, and a discharge guide rail and a discharge drive assembly installed on the conveying bracket; a plurality of discharge openings arranged in sequence along the length direction are opened on the discharge guide rail; each discharge opening is provided with a discharge blocking piece; each discharge blocking piece is sealed on the corresponding discharge opening; when the bamboo fungus bags roll down one by one from the discharge bin, each discharge blocking piece can be turned upward in sequence under the drive of the discharge drive assembly, so that the bamboo fungus bags can fall from the discharge opening to the transfer module in sequence, and the opened discharge opening is closed by the corresponding discharge blocking piece after falling; The unloading drive assembly includes a plurality of gear sets mounted on the rotating shaft of the unloading baffle; a first synchronous belt is provided between each gear set; the gear set includes a synchronous wheel, a transmission gear, and a flip control gear; the transmission gear is fixed to the rotating shaft of the unloading baffle; the synchronous wheel and the flip control gear are both rotatably connected to the conveying bracket via a rotating shaft; the flip control gear can rotate under the drive of the synchronous wheel; a driving portion and a reset portion are provided on the outer circumference of the flip control gear; the driving portion is provided with a tooth groove that meshes with the transmission gear; In the initial state, in the length direction of the unloading guide rail, the driving parts of the flip control gears in each gear set are arranged in a circular array on the corresponding flip control gears. When the driving part on the flip control gear at the initial position rotates to the end and disengages from the corresponding transmission gear, the driving part on the flip control gear at the adjacent position engages with the corresponding transmission gear.
2. A bamboo fungus planting method according to claim 1, characterized in that: The top and bottom of the storage bin in step three are respectively provided with an input port and a first output port; the storage bin is provided with a storage cavity and a conveying cavity that are interconnected; the bamboo fungus output assembly is installed in the conveying cavity, which is used to receive the bamboo fungus bags that fall from the storage cavity into the conveying cavity one by one, and output them by transporting them to the first output port.
3. A bamboo fungus planting method according to claim 2, characterized in that: The bamboo fungus output component in step three includes a feeding drive motor and an output transfer member; the output transfer member is rotatably connected in the conveying cavity and can rotate under the drive of the feeding drive motor; a transfer slot that cooperates with the bamboo fungus bag is opened on the outer wall of the output transfer member.
4. A bamboo fungus planting method according to claim 3, characterized in that: A power transmission component is provided between the unloading drive motor and the first first synchronous belt; the power transmission component can drive the first first synchronous belt to perform belt transmission operation under the drive of the unloading drive motor, and drive the synchronous wheels in each gear set to rotate with the cooperation of the subsequent first synchronous belt.
5. A bamboo fungus planting method according to claim 1, characterized in that: The soil spreading module in steps 2 and 5 includes a support bracket, a second displacement assembly, and a soil spreading assembly mounted on the support bracket; the support bracket is slidably connected to the top of the cultivation bracket and can reciprocate along the length of the cultivation bracket under the drive of the second displacement assembly; The soil spreading component is used to store and output the soil required for cultivation.
6. A bamboo fungus planting method according to claim 5, characterized in that: The soil spreading assembly includes a soil storage bin, a soil spreading roller and a soil spreading drive motor; the inner cavity of the soil spreading roller is connected to the inner cavity of the soil storage bin; a soil spreading piece is provided in the soil spreading roller; the soil spreading piece rotates under the drive of the soil spreading drive motor and inputs the soil falling from the soil storage bin into the soil outlet at the bottom of the soil spreading roller.
7. A bamboo fungus planting method according to claim 1, characterized in that: The method also includes step six, transferring and making way, in which the plastic base film and the bamboo fungus bag placed on the plastic base film are transferred and transported along the length direction of the cultivation support under the drive of the conveyor belt assembly, providing a making way space for the subsequent bamboo fungus bag to fall.
Citation Information
Patent Citations
Bamboo fungus planting box
CN115053756A
Automatic bamboo fungus planting machine
CN119769354A