CN109964738B - Double-sided solid inoculation machine for mushrooms - Google Patents

Double-sided solid inoculation machine for mushrooms Download PDF

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Publication number
CN109964738B
CN109964738B CN201910362293.0A CN201910362293A CN109964738B CN 109964738 B CN109964738 B CN 109964738B CN 201910362293 A CN201910362293 A CN 201910362293A CN 109964738 B CN109964738 B CN 109964738B
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China
Prior art keywords
punching
fungus
bag
package
seed
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CN201910362293.0A
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Chinese (zh)
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CN109964738A (en
Inventor
卢国宝
蔡惠军
戴根旺
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Zhangzhou City Xingbao Machinery Co ltd
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Zhangzhou City Xingbao Machinery Co ltd
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G18/00Cultivation of mushrooms
    • A01G18/50Inoculation of spawn

Abstract

The invention relates to the technical field of edible fungus production, in particular to a mushroom double-sided solid inoculation machine, which comprises a frame, a chain conveying mechanism and a main control cabinet, wherein the chain conveying mechanism is arranged on the frame, a fungus bag groove for placing fungus bags is arranged on the chain conveying mechanism, a purification and disinfection mechanism is fixed on the frame, a first punching mechanism, a second punching mechanism, a first inoculation seed pressing mechanism, a second inoculation seed pressing mechanism, a bag turning mechanism and a bag discharging mechanism are also arranged on the frame, the first punching mechanism, the first inoculation seed pressing mechanism, the bag turning mechanism, the second punching mechanism, the second inoculation seed pressing mechanism and the bag discharging mechanism are sequentially arranged along the chain conveying mechanism, and fungus bag disinfection mechanisms are arranged at the front ends of the first punching mechanism and the second punching mechanism; the double-sided inoculation device is simple in structure, convenient to use, capable of carrying out double-sided inoculation and high in working efficiency.

Description

Double-sided solid inoculation machine for mushrooms
Technical Field
The invention relates to the technical field of edible fungus production, in particular to a mushroom double-sided solid inoculating machine.
Background
The inoculation of edible fungi is a key link in the production of edible fungi, if the technology is not too closed in the inoculation process, the conditions of strain infection, mixed fungus pollution and the like can be caused, so that the problems of low survival rate and low production yield are caused. Especially when mushroom inoculates, current inoculation equipment is mainly single face circle body inoculation machine, and it adopts the cylinder to drive, and the energy consumption is high to waste gas causes clean room pollution easily, and the fault rate is high, and is short-lived.
Disclosure of Invention
In order to solve the technical problems, the invention provides the mushroom double-sided solid inoculating machine which is simple in structure, convenient to use, capable of carrying out double-sided inoculation and high in working efficiency.
The technical scheme adopted by the invention is as follows: the mushroom double-sided solid inoculating machine comprises a frame, a chain conveying mechanism and a main control cabinet, wherein the chain conveying mechanism is arranged on the frame, a mushroom bag groove for placing mushroom bags is arranged on the chain conveying mechanism, a purification and disinfection mechanism is fixed on the frame, a first punching mechanism, a second punching mechanism, a first inoculation seed pressing mechanism, a second inoculation seed pressing mechanism, a bag turning mechanism and a bag discharging mechanism are also arranged on the frame, the first punching mechanism, the first inoculation seed pressing mechanism, the bag turning mechanism, the second punching mechanism, the second inoculation seed pressing mechanism and the bag discharging mechanism are sequentially arranged along the chain conveying mechanism, and the front ends of the first punching mechanism and the second punching mechanism are provided with a mushroom bag disinfection mechanism; the fungus bag sterilizing mechanism mainly comprises a sterilizing control cylinder and a fungus bag arc-shaped sterilizing brush fixed on a piston of the sterilizing control cylinder; the chain conveying mechanism is used for conveying fungus bags; the first punching mechanism is used for punching the fungus bag for the first time; the first inoculation and seed pressing mechanism is used for carrying out first inoculation and seed pressing on the fungus bags; the fungus bag overturning mechanism is used for overturning fungus bags; the second punching mechanism is used for punching the fungus bag for the second time; the second inoculation and seed pressing mechanism is used for carrying out second inoculation and seed pressing on the fungus bags; the bag discharging mechanism is used for conveying inoculated fungus bags to a blanking point, the fungus bag sterilizing mechanism is used for sterilizing the surfaces of the fungus bags, and the purifying and sterilizing mechanism is used for purifying and sterilizing air in the inoculating machine.
Preferably, the first punching mechanism and the second punching mechanism are identical in structure and mainly comprise a punching motor, a punching connecting rod, a punching fixing plate and a punching lifting plate, the punching fixing plate is fixed on the frame, the punching lifting plate is arranged above the punching fixing plate, punching guide rods are further arranged on two sides of the punching fixing plate, the guide rods are fixed on the frame, the punching lifting plate is slidably mounted on the punching guide rods, a plurality of punching rod needles are arranged on the punching lifting plate, a reset spring is arranged between the punching lifting plate and the punching fixing plate, the punching motor is fixed at the bottom of the frame, the punching motor is connected with a reduction gear set, a punching crank is arranged on an output shaft of the reduction gear set, and the punching crank is connected with the punching lifting plate through the punching connecting rod.
Preferably, the first inoculation presses kind of mechanism and the second inoculation presses kind of mechanism's structure the same, all mainly by fixed plate, bacterial storage silo, seeding pipe, pushing rod and press kind of pole to constitute, the fixed plate is fixed in the frame, bacterial storage silo is fixed on the fixed plate, install rabbling mechanism in the bacterial storage silo, be connected with the agitator motor on the rabbling mechanism, one side of bacterial storage silo is provided with a plurality of seeding pipes, the seeding pipe is linked together with bacterial storage silo, still install the pushing rod in the bacterial storage silo, the pushing rod is connected with pushing motor through cam mechanism, install the seed guide pipe in the seeding pipe, the seed guide pipe is installed on the seed guide lifter, still install the seeding push rod in the seed guide pipe, the seeding push rod is connected with the seeding motor through cam mechanism, another side pressure of bacterial storage silo is planted the lifter, the seed lifter is installed on the fixed plate through pressing kind of sliding, be provided with a plurality of seed guide plates, the seed guide gear is installed to press the rack, the drive rack is installed through pressing the cam mechanism, the rack is installed to one side respectively.
Preferably, the package turning mechanism comprises a package turning fixing plate, a fungus package rotating cylinder and a fungus package clamping plate, wherein the package turning fixing plate is fixed on the frame, mounting holes are respectively formed in two sides of the package turning fixing plate, fungus package clamping frames are arranged in the mounting holes, package clamping rails are arranged on one sides of the mounting holes, the fungus package clamping frames are slidably mounted on the package clamping rails, fungus package clamping plates are rotatably mounted on the fungus package clamping frames, fungus package rotating cylinders are mounted on one sides of the fungus package clamping frames, package turning racks are mounted on piston rods of the fungus package rotating cylinders, the package turning racks are meshed with the package turning gears, and package clamping driving mechanisms for driving the fungus package clamping frames to move are further arranged on the package turning fixing plate.
Preferably, the bag clamping driving mechanism mainly comprises a central rotating shaft, a rotating connecting plate, a movable pull rod and a bag clamping air cylinder, wherein the central rotating shaft is arranged on the bag overturning fixing plate, the middle part of the rotating connecting plate is rotatably arranged on the central rotating shaft, two sides of the rotating connecting plate are respectively provided with a bag clamping air cylinder, piston rods of the bag clamping air cylinders are hinged to the rotating connecting plate, two sides of the rotating connecting plate are hinged to a movable pull rod, and the free ends of the movable pull rods are hinged to the fungus bag clamping frames.
Compared with the prior art, the invention has the beneficial effects that: the invention has simple structure and convenient operation, adopts full-automatic operation, utilizes the chain conveying mechanism to convey fungus bags, sequentially conveys the fungus bags to the punching and inoculation seed pressing stations, then utilizes the bag turning mechanism to turn over the fungus bags, repeatedly performs punching and inoculation seed pressing operation once, has high inoculation speed and high working efficiency, and is also provided with the purifying and sterilizing mechanism and the fungus bag sterilizing mechanism to respectively sterilize an inoculation environment and the fungus bags, thereby effectively avoiding strain infection caused by mixed bacteria.
Drawings
Fig. 1 is a schematic diagram of the overall structure of the present invention.
Fig. 2 is a schematic diagram of the internal structure of the present invention.
Fig. 3 is a schematic structural view of the bag turning mechanism in the present invention.
Fig. 4 is a front view of the roll-over mechanism of the present invention.
Fig. 5 is a side view of the roll-over mechanism of the present invention.
Fig. 6 is a schematic structural view of a first punching mechanism and a second punching mechanism in the present invention.
Fig. 7 is a schematic structural diagram of a first seed pressing mechanism and a second seed pressing mechanism according to the present invention.
FIG. 8 is a schematic diagram of a first seed pressing mechanism and a second seed pressing mechanism according to the present invention.
FIG. 9 is a side view of a first seed pressing mechanism and a second seed pressing mechanism according to the present invention.
FIG. 10 is a second side view of the first seed pressing mechanism and the second seed pressing mechanism according to the present invention.
Detailed Description
The following describes in further detail the embodiments of the present invention with reference to the drawings and examples. The following examples are illustrative of the invention and are not intended to limit the scope of the invention.
As shown in fig. 1 and 2, the mushroom double-sided solid inoculating machine comprises a frame 1, a chain conveying mechanism 2 and a main control cabinet 3, wherein the chain conveying mechanism 2 and the main control cabinet 3 are arranged on the frame 1, a fungus bag groove 4 for placing fungus bags is arranged on the chain conveying mechanism 2, a purification and disinfection mechanism 5 is fixed on the frame 1, a first punching mechanism 6, a second punching mechanism 7, a first inoculation seed pressing mechanism 8, a second inoculation seed pressing mechanism 9, a bag turning mechanism 10 and a bag discharging mechanism 11 are also arranged on the frame 1, the first punching mechanism 6, the first inoculation seed pressing mechanism 8, the bag turning mechanism 10, the second punching mechanism 7, the second inoculation seed pressing mechanism 9 and the bag discharging mechanism 11 are sequentially arranged along the chain conveying mechanism 2, and fungus bag disinfection mechanisms 12 are arranged at the front ends of the first punching mechanism 6 and the second punching mechanism 7; the fungus bag sterilizing mechanism 12 mainly comprises a sterilizing control cylinder 13 and a fungus bag arc-shaped sterilizing brush 14 fixed on a piston of the sterilizing control cylinder; the chain conveying mechanism 2 is used for conveying fungus bags; the first punching mechanism 6 is used for punching the fungus bag for the first time; the first inoculation and seed pressing mechanism 8 is used for carrying out first inoculation and seed pressing on the fungus bags; the fungus bag turning mechanism 10 is used for turning fungus bags; the second punching mechanism 7 is used for punching the fungus bag for the second time; the second inoculation and seed pressing mechanism 9 is used for carrying out second inoculation and seed pressing on the fungus bags; the package discharging mechanism 11 is used for conveying inoculated fungus packages to a blanking point, the fungus package sterilizing mechanism 12 is used for sterilizing the surfaces of the fungus packages, and the purifying and sterilizing mechanism 5 is used for purifying and sterilizing air in the inoculating machine.
When the invention is used, fungus bags are placed on the fungus bag groove 4 in sequence, and the fungus bags are conveyed forward in sequence by the chain conveying mechanism 2. When the fungus bag moves to the lower part of the fungus bag sterilizing mechanism 12, the sterilizing control cylinder 13 controls the fungus bag arc-shaped sterilizing brush 14 to move, so that the fungus bag arc-shaped sterilizing brush 14 slides along the surface of the fungus bag for sterilizing; after the sterilization is finished, the fungus bag continues to move to the lower part of the first perforating mechanism 6 to carry out perforating operation on the fungus bag; after the punching is completed, the seed is continuously moved to the lower part of the first inoculation seed pressing mechanism 8 for sowing and pressing; then the fungus bag continues to move to the lower part of the bag turning mechanism 10, and the bag turning mechanism 10 turns the fungus bag for 180 degrees; then sequentially conveying the materials to a fungus bag sterilizing mechanism 12, a second punching mechanism 7 and a second inoculation seed pressing mechanism 9 for sterilizing, punching, inoculation seed pressing operation, and finally conveying the materials to a blanking point through a bag discharging mechanism 11.
As shown in fig. 6, the first punching mechanism 6 and the second punching mechanism 7 have the same structure and mainly comprise a punching motor 15, a punching connecting rod 16, a punching fixing plate 17 and a punching lifting plate 18, the punching fixing plate 17 is fixed on the frame 1, the punching lifting plate 18 is arranged above the punching fixing plate 17, punching guide rods 19 are further arranged on two sides of the punching fixing plate 17, the punching lifting plate 18 is slidably mounted on the punching guide rods 19, the guide rods 19 are fixed on the frame 1, a plurality of punching pins 20 are arranged on the punching lifting plate 18, a reset spring 21 is arranged between the punching lifting plate 18 and the punching fixing plate 17, the punching motor 15 is fixed at the bottom of the frame 1, the punching motor 15 is connected with a reduction gear set 22, a punching crank 23 is arranged on an output shaft of the reduction gear set 22, and the punching crank 23 is connected with the punching lifting plate 18 through the punching connecting rod 16. When punching, the punching motor 15 drives the punching connecting rod 16 to move up and down, so that the punching lifting plate 18 moves down, the punching rod needle 20 pierces the fungus bag and inserts the fungus bag to form a round hole, then the reset spring 21 is used for resetting the punching rod needle 20, and the number of the punching rod needles 20 can be selected according to the length of the fungus bag.
As shown in fig. 7 to 10, the first inoculation seed pressing mechanism 8 and the second inoculation seed pressing mechanism 9 have the same structure and mainly comprise a fixed plate 25, a seed storage bin 26, a seed tube 27, a pushing rod 28 and a seed pressing rod 29, wherein the fixed plate 25 is fixed on a frame 1, the seed storage bin 26 is fixed on the fixed plate 25, a stirring mechanism is arranged in the seed storage bin 26, a stirring motor 30 is connected on the stirring mechanism, one side of the seed storage bin 26 is provided with a plurality of seed tubes 27, the seed tube 27 is communicated with the seed storage bin 26, the pushing rod 28 is further arranged in the seed storage bin 26, the pushing rod 28 is connected with the pushing motor 38 through a cam mechanism, a seed guide tube 31 is slidably arranged in the seed tube 27, the seed guide tube 31 is arranged on the seed guide lifting plate 32, a seed pushing rod 33 is further arranged in the seed guide tube 31, the seed lifting plate 33 is connected with a seed sowing motor 34 through a cam mechanism, the seed lifting plate 35 is arranged on the other side of the seed storage bin 26, the seed lifting plate 35 is slidably arranged on the fixed plate 25 through a seed pressing rod 36, the seed lifting motor 35 is provided with a plurality of seed guide rods 37, the seed lifting rods are respectively arranged on the bottom of the frame 40 and are respectively meshed with the frame 41, and the seed lifting mechanism is respectively arranged on one side of the frame 41.
When the seed is inoculated and pressed, the fungus bag firstly moves to the lower part of the sowing pipe 27, the stirring mechanism of the fungus seed storage bin 26 is used for stirring, meanwhile, the pushing rod 28 pushes the fungus seed into the sowing pipe 27 under the action of the pushing motor 38, and then the sowing push rod 33 presses the fungus seed into the round hole. Wherein the seed guide tube 31 mainly plays a role of guiding so that the sowing push rod 33 can be accurately inserted into the circular hole. After inoculation is completed, the fungus bag moves to the lower part of the seed pressing rod 37, and the seed pressing rod 37 is driven to move downwards by the seeding seed pressing motor 41, so that the fungus strain around the round hole is pressed into the round hole. Wherein, the seeding push rod 33 and the seed pressing rod 37 are controlled to move by a seeding and seed pressing motor 41, which has compact structure, small occupied space and convenient control.
As shown in fig. 3 to 5, the bag turning mechanism 10 comprises a bag turning fixing plate 43, a fungus bag rotating cylinder 44 and a fungus bag clamping plate 45, the bag turning fixing plate 43 is fixed on the frame 1, mounting holes 46 are respectively formed in two sides of the bag turning fixing plate 43, fungus bag clamping frames 47 are arranged in the mounting holes 46, a bag clamping guide rail 48 is arranged on one side of each mounting hole 46, the fungus bag clamping frames 47 are slidably mounted on the bag clamping guide rail 48, the fungus bag clamping plates 45 are rotatably mounted on the fungus bag clamping frames 47, a bag turning gear 49 is mounted on a rotating shaft of the fungus bag clamping plates 45 on one side, a fungus bag turning rack 50 is mounted on a piston rod of the fungus bag rotating cylinder 44, the bag turning rack 50 is meshed with the bag turning gear 49, and a bag clamping driving mechanism for driving the fungus bag clamping frames to move is further arranged on the bag turning fixing plate 43.
The bag clamping driving mechanism mainly comprises a central rotating shaft 51, a rotating connecting plate 52, a movable pull rod 53 and a bag clamping air cylinder 54, wherein the central rotating shaft 51 is arranged on the bag overturning fixed plate 43, the middle part of the rotating connecting plate 52 is rotatably arranged on the central rotating shaft 51, two sides of the rotating connecting plate 52 are respectively provided with a bag clamping air cylinder 54, piston rods of the bag clamping air cylinders 54 are hinged to the rotating connecting plate 52, two sides of the rotating connecting plate 52 are hinged with a movable pull rod 53, and free ends of the movable pull rods 53 are hinged to the fungus bag clamping frames 47.
After the first inoculation and seed pressing are completed, the fungus bag needs to be overturned, the bag clamping cylinder 54 acts to enable the rotary connecting plate 52 to rotate, and then the two fungus bag clamping frames 47 move relatively, the fungus bag clamping plates 45 clamp the fungus bag, meanwhile, the fungus bag rotating cylinder 44 drives the fungus bag clamping plates 45 to rotate 180 degrees through the bag overturning rack 50 and the bag overturning gear 49 to overturn the fungus bag, then the fungus bag clamping plates 45 move reversely, the fungus bag is loosened, and the fungus bag falls in the fungus bag groove to move, so that the operation is simple and convenient.
Unless specifically stated or limited otherwise, the terms "disposed," "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected, mechanically connected, electrically connected, directly connected, or connected through intermediaries, and may be communication between two elements, so that the specific meaning of the terms in the present invention will be understood by those skilled in the art according to the specific circumstances; the model of each part is not limited, so long as the beneficial effects can be achieved, the telescopic motor is not improved by any technology, the telescopic motor is common equipment in the market, the telescopic motor is provided with a control module and an electric wire, the telescopic motor can be used after being installed, and the internal structure of the telescopic motor is not changed.
The foregoing is merely a preferred embodiment of the present invention, and it should be noted that it will be apparent to those skilled in the art that modifications and variations can be made without departing from the technical principles of the present invention, and these modifications and variations should also be regarded as the scope of the invention.

Claims (5)

1. The mushroom double-sided solid inoculating machine is characterized in that: the device comprises a frame, a chain conveying mechanism and a main control cabinet, wherein the chain conveying mechanism is arranged on the frame, a fungus bag groove for placing fungus bags is arranged on the chain conveying mechanism, a purification and disinfection mechanism is fixed on the frame, a first punching mechanism, a second punching mechanism, a first inoculation seed pressing mechanism, a second inoculation seed pressing mechanism, a bag turning mechanism and a bag discharging mechanism are also arranged on the frame, the first punching mechanism, the first inoculation seed pressing mechanism, the bag turning mechanism, the second punching mechanism, the second inoculation seed pressing mechanism and the bag discharging mechanism are sequentially arranged along the chain conveying mechanism, and fungus bag disinfection mechanisms are arranged at the front ends of the first punching mechanism and the second punching mechanism; the fungus bag sterilizing mechanism mainly comprises a sterilizing control cylinder and a fungus bag arc-shaped sterilizing brush fixed on a piston of the sterilizing control cylinder; the chain conveying mechanism is used for conveying fungus bags; the first punching mechanism is used for punching the fungus bag for the first time; the first inoculation and seed pressing mechanism is used for carrying out first inoculation and seed pressing on the fungus bags; the fungus bag overturning mechanism is used for overturning fungus bags; the second punching mechanism is used for punching the fungus bag for the second time; the second inoculation and seed pressing mechanism is used for carrying out second inoculation and seed pressing on the fungus bags; the bag discharging mechanism is used for conveying inoculated fungus bags to a blanking point, the fungus bag sterilizing mechanism is used for sterilizing the surfaces of the fungus bags, and the purifying and sterilizing mechanism is used for purifying and sterilizing air in the inoculating machine.
2. The lentinula edodes double-sided solid inoculating machine according to claim 1, wherein: the structure of first mechanism and the second mechanism of punching is the same, all mainly by the motor of punching, punch the connecting rod, punch the fixed plate and punch the lifter plate and constitute, the fixed plate of punching is fixed in the frame, the lifter plate of punching sets up the top at the fixed plate of punching, the both sides of fixed plate of punching still are provided with the guide bar that punches, the guide bar is fixed in the frame, lifter plate slidable mounting punches on the guide bar that punches, be provided with a plurality of stick needles that punch on the lifter plate of punching, set up reset spring between lifter plate and the fixed plate of punching, the motor of punching is fixed in the frame bottom, the motor of punching is connected with reduction gear set, the crank of punching is installed to reduction gear set's output shaft, the crank of punching is connected with the lifter plate of punching through the connecting rod that punches.
3. The lentinula edodes double-sided solid inoculating machine according to claim 1, wherein: the seed pressing mechanism is characterized in that the first seed pressing mechanism and the second seed pressing mechanism are identical in structure and mainly comprise a fixed plate, a strain storage bin, a seeding pipe, a pushing rod and a seed pressing rod, the fixed plate is fixed on a frame, the strain storage bin is fixed on the fixed plate, a stirring mechanism is installed in the strain storage bin, the stirring mechanism is connected with a stirring motor, one side of the strain storage bin is provided with a plurality of seeding pipes, the seeding pipe is communicated with the strain storage bin, the pushing rod is further installed in the strain storage bin, the pushing rod is connected with the pushing motor through a cam mechanism, a seed guiding pipe is slidably installed in the seeding pipe, the seed guiding pipe is installed on a seed guiding lifting plate, a seeding push rod is further installed in the seed guiding pipe and is connected with the seeding motor through a cam mechanism, the seed pressing lifting plate is slidably installed on the fixed plate through a seed pressing motor, a plurality of seed pressing lifting plates are provided with a plurality of seed pressing motors, the seed pressing racks are respectively connected with one side of the seed pressing lifting plates, and the seed pressing racks are respectively meshed with the two sides of the frame.
4. The lentinula edodes double-sided solid inoculating machine according to claim 1, wherein: the utility model provides a fungus package mechanism is including turning over a package fixed plate, fungus package rotation cylinder and fungus package splint constitution, turn over a package fixed plate and fix in the frame, the both sides of turning over a package fixed plate are provided with the mounting hole respectively, be provided with fungus package holder in the mounting hole, press from both sides the package guide rail to install in one side of mounting hole, fungus package holder slidable mounting is on pressing from both sides the package guide rail, fungus package splint are installed in the rotation on the fungus package holder, one of them side install in the pivot of fungus package splint and turn over a package gear, install fungus package rotation cylinder on the fungus package holder, install on the piston rod of fungus package rotation cylinder and turn over a package rack, turn over a package rack and mesh with turn over a package gear, turn over a package fixed plate still to be provided with and be used for driving fungus package holder to remove press from both sides package actuating mechanism.
5. The lentinula edodes double-sided solid inoculating machine according to claim 4, wherein: the bag clamping driving mechanism mainly comprises a central rotating shaft, a rotating connecting plate, a movable pull rod and a bag clamping air cylinder, wherein the central rotating shaft is arranged on a bag overturning fixing plate, the middle part of the rotating connecting plate is rotatably arranged on the central rotating shaft, two sides of the rotating connecting plate are respectively provided with a bag clamping air cylinder, piston rods of the bag clamping air cylinders are hinged to the rotating connecting plate, two sides of the rotating connecting plate are hinged to a movable pull rod, and the free ends of the movable pull rods are hinged to a fungus bag clamping frame.
CN201910362293.0A 2019-04-30 2019-04-30 Double-sided solid inoculation machine for mushrooms Active CN109964738B (en)

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CN109964738B true CN109964738B (en) 2024-04-02

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Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111727816A (en) * 2020-06-24 2020-10-02 徐兴勇 A puncher for domestic fungus package processing
CN111903433A (en) * 2020-09-10 2020-11-10 砀山野居农作物种植专业合作社 Edible mushroom inoculation device
CN112238511B (en) * 2020-09-18 2022-08-05 苏文华 Fungus species is planted and is used basswood drilling equipment

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Publication number Priority date Publication date Assignee Title
BRPI0403142A (en) * 2004-07-27 2006-03-14 Marcelo Polato inoculation plug - fungus introduction system into log holes - for mushroom cultivation
CN104718994A (en) * 2015-04-12 2015-06-24 连云港国鑫食用菌成套设备有限公司 Automatic inoculation machine suitable for mushroom sticks
CN205017916U (en) * 2015-10-14 2016-02-10 漳州市兴宝机械有限公司 Domestic fungus inoculation machine transplanting of rice stick device
CN105613040A (en) * 2016-01-05 2016-06-01 荆门市五三新欣食用菌研发种植基地 Automatic bacteria stick inoculating machine
CN106576906A (en) * 2016-12-05 2017-04-26 丽水市林业科学研究院 Mushroom stick type full-automatic inoculation machine for domestic fungus
CN209914633U (en) * 2019-04-30 2020-01-10 漳州市兴宝机械有限公司 Double-sided solid inoculation machine for mushrooms

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
BRPI0403142A (en) * 2004-07-27 2006-03-14 Marcelo Polato inoculation plug - fungus introduction system into log holes - for mushroom cultivation
CN104718994A (en) * 2015-04-12 2015-06-24 连云港国鑫食用菌成套设备有限公司 Automatic inoculation machine suitable for mushroom sticks
CN205017916U (en) * 2015-10-14 2016-02-10 漳州市兴宝机械有限公司 Domestic fungus inoculation machine transplanting of rice stick device
CN105613040A (en) * 2016-01-05 2016-06-01 荆门市五三新欣食用菌研发种植基地 Automatic bacteria stick inoculating machine
CN106576906A (en) * 2016-12-05 2017-04-26 丽水市林业科学研究院 Mushroom stick type full-automatic inoculation machine for domestic fungus
CN209914633U (en) * 2019-04-30 2020-01-10 漳州市兴宝机械有限公司 Double-sided solid inoculation machine for mushrooms

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