CN205196397U - Edible mushroom cultivation bag acanthopore oxygen -increasing machine - Google Patents

Edible mushroom cultivation bag acanthopore oxygen -increasing machine Download PDF

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Publication number
CN205196397U
CN205196397U CN201520958770.7U CN201520958770U CN205196397U CN 205196397 U CN205196397 U CN 205196397U CN 201520958770 U CN201520958770 U CN 201520958770U CN 205196397 U CN205196397 U CN 205196397U
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China
Prior art keywords
nail
acanthopore
pocket
discharge grid
frame
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn - After Issue
Application number
CN201520958770.7U
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Chinese (zh)
Inventor
武旭
石建森
李莉
刘虹
李青
郝丽峰
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EXPERIMENTAL RESEARCH CENTER SHANXI ACADEMY OF AGRICULTURAL SCIENCES
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EXPERIMENTAL RESEARCH CENTER SHANXI ACADEMY OF AGRICULTURAL SCIENCES
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Priority to CN201520958770.7U priority Critical patent/CN205196397U/en
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Publication of CN205196397U publication Critical patent/CN205196397U/en
Withdrawn - After Issue legal-status Critical Current
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Abstract

The utility model discloses an edible mushroom cultivation bag acanthopore oxygen -increasing machine, including frame, bent axle, connecting rod, tacking, go up acanthopore nail, acanthopore nail, side acanthopore nail, compression spring, pocket backup pad, top discharge bars, bottom discharge bars, pocket diving board, magnet, armature, nail hole, travel switch, flashboard groove, crosspiece, flashboard, baffle, extension spring, motor, reduction gear, pocket import, pocket export down. The utility model discloses an automatic operation that the feeding of follow cultivation bag, acanthopore, pocket withdrawed from, the utility model discloses convenient operation, labour saving and time saving, the labor safety problem has been solved to full scale production process personnel contactless equipment, the utility model discloses the acanthopore degree of depth is even, acanthopore oxygenation is effectual, and work efficiency is high.

Description

Edible mushroom cultivating bag piercing aerator
Technical field
The utility model belongs to production equipment technical field, is specifically related to a kind of full-automatic edible mushroom cultivating bag piercing aerator.
Background technology
Plant in production process at edible mushroom bag, especially mushroom bag is planted, and has a necessary program acanthopore oxygenation.This program is carried out in the stage that mycelia is substantially covered with or covers with completely in composts or fertilisers of cultivating mushroom bag.Acanthopore be because cultivation bag in composts or fertilisers of cultivating capture by the mycelia of densification, the mycelia in cultivation bag centre is difficult to breathe air again, if not acanthopore oxygenation, mycelia can become very thin unable, the nutriment in composts or fertilisers of cultivating can not be absorbed fully, directly can have influence on the Quality and yield of fruiting.At present, more original acanthopore method on plank, fixes some row's iron nails, iron nail point upward, and being turn-taked by cultivation bag is squeezed in acanthopore on iron nail, although practical, efficiency is very low, also easily makes hand injured.Also have much about the report of edible mushroom piercing aerator, but the higher but complex structure of the automaticity that these equipment have, the lower just some mechanical of some automaticities instead of manually, has that speed is slow, acanthopore is uneven, have the problems such as potential danger to operating personnel.
Summary of the invention
The purpose of this utility model is the deficiency existed for prior art, a kind of edible mushroom cultivating bag piercing aerator is provided, the utility model achieves the automated job of edible mushroom cultivating bag acanthopore, solves labor safety problem, and has the advantage that acanthopore is even, operating efficiency is high.
For achieving the above object, the utility model by the following technical solutions.
A kind of edible mushroom cultivating bag piercing aerator, comprises frame, bent axle, connecting rod, nail-plate, upper acanthopore nail, lower acanthopore nail, side acanthopore nail, Compress Spring, pocket gripper shoe, top discharge grid, bottom discharge grid, pocket diving board, magnet, armature, nail, travel switch, flashboard slot, strut rail, flashboard, baffle plate, extension spring, motor, decelerator, pocket import, pocket outlet.Described bent axle is located at the bottom of frame, bent axle is connected with decelerator and motor through belt pulley, one end of connecting rod is connected on the top of bent axle, the other end and the nail-plate of connecting rod are hinged, longitudinally fix two rows and above lower acanthopore nail above nail-plate, lower acanthopore nail tip place is provided with the pocket gripper shoe that Compress Spring that is parallel with nail-plate, that follow closely periphery by lower acanthopore is connected with nail-plate.Below frame top, being fixed with two rows and longitudinally follow closely being much of acanthopore with nail-plate above, upper acanthopore nail tip place is provided with the pocket diving board that Compress Spring that is parallel with frame top, that follow closely periphery by upper acanthopore is connected with frame top.In the upper rack left and right sides, symmetrical place is provided with magnet, the frame of the upper and lower both sides of magnet is provided with nail, the outside of magnet is provided with armature, and the two ends, inner side of armature are fixed with a row side acanthopore nail respectively, follow closely peripheral Compress Spring connection armature and the frame of nail periphery by side acanthopore.Be provided with travel switch in the below of magnet side, travel switch connects the circuit of magnet and controls the switch of magnet circuit.Inside frame below pocket import, a flashboard slot is respectively established on both sides respectively, is provided with strut rail, is provided with flashboard in flashboard slot outside the top of two flashboard slots, and the lower end of flashboard is provided with baffle plate, is provided with extension spring between strut rail and baffle plate.Frame both sides above pocket import, below pocket outlet are hinged with top discharge grid and bottom discharge grid respectively, the pin joint position comparatively bottom discharge grid height 20-40mm of top discharge grid, under normality, top discharge grid and bottom discharge grid are inclined-plane deployed condition, and top discharge grid and bottom discharge grid can upwards rotate by non-resistance.
Described nail-plate is palisade, the fixing lower acanthopore nail in palisade prominence, described pocket gripper shoe is palisade, follow closely corresponding position in palisade prominence and lower acanthopore and be provided with nail, the palisade projection of described nail-plate and pocket gripper shoe and recessed with top discharge grid with the projection of bottom discharge grid and recessed cross-shaped.
Described pocket diving board is provided with follows closely corresponding nail with upper acanthopore.
Operation principle of the present utility model, when bent axle moves upward from least significant end, pocket gripper shoe has a pocket, and flashboard moves upward under extension spring returning elastic, pocket import is closed; Pocket bent axle promote to move upward touch bottom discharge grid and top discharge grid time, to be that the center of circle is upward with jointed shaft erect upper and lower discharging grid, plays the barrier effect that pocket rolls to outlet when the grid of bottom discharge simultaneously erect.After pocket is upwards by upper and lower discharging grid, upper and lower discharging grid under gravity self-return are deployed condition; Pocket continues to move upward when touching pocket diving board, and the Compress Spring be connected with pocket diving board and pocket gripper shoe is compressed, and upper and lower acanthopore nail passes to pocket acanthopore from the nail of pocket diving board and pocket gripper shoe; When bent axle moves up to top, upper and lower acanthopore completes, now nail-plate advances to travel switch level place, the sensor-based system controlling magnet circuit ON of travel switch, magnet produces magnetic force and inhales armature, drives the side acanthopore be fixed on armature to nail into the acanthopore of the pocket left and right sides under armature effect.When bent axle moves downward from top, after nail-plate leaves travel switch level place downwards, the sensor-based system controlling magnet circuit of travel switch disconnects, the side acanthopore be connected with armature is followed closely under the rebound effect of Compress Spring, the side acanthopore nail return of the pocket left and right sides, then pocket is under the rebound effect of the Compress Spring of upper and lower acanthopore nail periphery, pocket gripper shoe and pocket diving board return, and pocket is squeezed between pocket gripper shoe and pocket diving board; When bent axle continues to move downward, nail-plate and the downward touchless of pocket gripper shoe of grating structure have passed top discharge grid and bottom discharge grid, pocket is then retained down by top discharge grid and bottom discharge grid, because top discharge grid and bottom discharge grid are that inclined-plane launches shape, now pocket is just automatic rolls out from pocket subexit; When bent axle continues to move downward, the be dynamically connected baffle plate of flashboard projection of nail-plate band moves down, and extension spring is stretched, when nail-plate moves to nearly low side, flashboard is eventually pulled completely down, and pocket import is opened completely, and a pocket rolls in the pocket gripper shoe of piercing aerator automatically.Complete the acanthopore operation of a pocket.
The beneficial effects of the utility model: (1) edible mushroom cultivating bag piercing aerator of the present utility model achieves the automated job exited from cultivation bag charging, acanthopore, pocket; (2) the utility model structure is simple, and device fabrication cost is low; (3) the utility model is easy to operate, time saving and energy saving, and whole production process personnel not contact arrangement, solves labor safety problem; (4) the utility model acanthopore uniform depth, acanthopore oxygenation effect are good, and operating efficiency is high.
Accompanying drawing explanation
Fig. 1 is the utility model structural representation.
Structural representation when Fig. 2 is cultivation bag acanthopore of the present utility model.
Fig. 3 is tack plate structure vertical view of the present utility model.
Fig. 4 is pocket supporting plate structure vertical view of the present utility model.
Fig. 5 is top discharge grid structure vertical view of the present utility model.
Fig. 6 is bottom discharge grid structure vertical view of the present utility model.
Fig. 7 is lastics bag plate structure vertical view of the present utility model.
Fig. 8 is the utility model flashboard lifting structure front view.
Fig. 9 is the utility model flashboard lifting structure right view.
Embodiment
Below in conjunction with accompanying drawing, the utility model is further elaborated.
As shown in Figure 1, 2, a kind of edible mushroom cultivating bag piercing aerator, comprises frame 1, bent axle 2, connecting rod 3, nail-plate 4, upper acanthopore nail 5a, lower acanthopore nail 5b, side acanthopore nail 5c, Compress Spring 6, pocket gripper shoe 7, top discharge grid 9, bottom discharge grid 10, pocket diving board 11, magnet 12, armature 13, nail 14, travel switch 15, flashboard slot 16, strut rail 17, flashboard 18, baffle plate 19, extension spring 20, motor 21, decelerator 22, pocket import 23, pocket outlet 24.Bent axle 2 is located at the bottom of frame 1, bent axle 2 is connected with decelerator 22 and motor 21 through belt pulley, worked by motor 21 driving crank 2, one end of connecting rod 3 is connected on the top of bent axle 2, the other end and the nail-plate 4 of connecting rod 3 are hinged, longitudinally fix two rows and above lower acanthopore nail 5b above nail-plate 4, lower acanthopore nail 5b point place is provided with pocket gripper shoe 7, and pocket gripper shoe 7 and nail-plate 4 link together by the Compress Spring 6 being followed closely 5b periphery by lower acanthopore.Below frame 1 top, be fixed with two rows and above upper acanthopore nail 5a, 5b symmetry is longitudinally followed closely in the position of upper acanthopore nail 5a with lower acanthopore, pocket diving board 11 and frame 1 top link together by the Compress Spring 6 being followed closely 5a periphery by upper acanthopore.In the left and right sides, frame 1 top, symmetrical place is provided with magnet 12, the frame 1 of both sides is descended to be provided with nail 14 on magnet 12, the outside of magnet 12 is provided with armature 13, the two ends, inner side of armature 13 are fixed with a row side acanthopore nail 5c respectively, it is corresponding that side acanthopore nail 5c and frame 1 are provided with nail 14, and armature 13 and frame 1 link together by the Compress Spring 6 being followed closely 5c periphery by side acanthopore.Be provided with travel switch 15 in the below of magnet 12 side, travel switch 15 connects the circuit of magnet 12 and controls the switch of magnet 12 circuit.Top discharge grid 9 are hinged with inside frame 1 above pocket import 23, bottom discharge grid 10 are hinged with inside frame 1 below pocket outlet 24, the pin joint position comparatively high 20-40mm of bottom discharge grid 10 of top discharge grid 9, under normality, top discharge grid 9 and bottom discharge grid 10 are in inclined-plane deployed condition, and top discharge grid 9 and bottom discharge grid 10 can upwards rotate by non-resistance.
As shown in Figure 3, nail-plate 4 of the present utility model is palisade, the fixing lower acanthopore nail 5b in palisade prominence.
As shown in Figure 4, pocket gripper shoe 7 of the present utility model is palisade, is provided with nail 14 in palisade prominence.
As shown in Figure 5,6, top discharge grid 9 of the present utility model and bottom discharge grid 10 are palisade.
As shown in Figure 7, lastics bag plate 11 of the present utility model is provided with nail 14.
As shown in Figure 8,9, a flashboard slot 16 is respectively established on both sides inside frame 1 below pocket import 23 place of the present utility model respectively, be connected outside the top of two flashboard slots 16 and become strut rail 17, flashboard 18 is provided with in flashboard slot 16, the lower end of flashboard 18 is provided with protruding baffle 19, is provided with extension spring 20 between strut rail 17 and baffle plate 19.

Claims (3)

1. an edible mushroom cultivating bag piercing aerator, it is characterized in that, edible mushroom cultivating bag piercing aerator comprises frame (1), bent axle (2), connecting rod (3), nail-plate (4), upper acanthopore nail (5a), lower acanthopore nail (5b), side acanthopore nail (5c), Compress Spring (6), pocket gripper shoe (7), top discharge grid (9), bottom discharge grid (10), pocket diving board (11), magnet (12), armature (13), nail (14), travel switch (15), flashboard slot (16), strut rail (17), flashboard (18), baffle plate (19), extension spring (20), motor (21), decelerator (22), pocket import (23), pocket outlet (24), described bent axle (2) is located at the bottom of frame (1), bent axle (2) is connected with decelerator (22) and motor (21) through belt pulley, one end of connecting rod (3) is connected on the top of bent axle (2), the other end and the nail-plate (4) of connecting rod (3) are hinged, two rows and above lower acanthopore nail (5b) are longitudinally fixed in nail-plate (4) top, and lower acanthopore nail (5b) sharp place is provided with the pocket gripper shoe (7) that Compress Spring (6) that is parallel with nail-plate (4), that follow closely (5b) periphery by lower acanthopore is connected with nail-plate (4), below frame (1) top, being fixed with two rows and longitudinally follow closely (5a) being much of acanthopore with nail-plate (4) above, upper acanthopore nail (5a) sharp place is provided with the pocket diving board (11) that Compress Spring (6) that is parallel with frame (1) top, that follow closely (5a) periphery by upper acanthopore is connected with frame (1) top, in frame (1) left and right sides, top, symmetrical place is provided with magnet (12), the frame (1) of the upper and lower both sides of magnet (12) is provided with nail (14), the outside of magnet (12) is provided with armature (13), the two ends, inner side of armature (13) are fixed with row side acanthopore nail (5c) respectively, are followed closely the frame (1) of (5c) peripheral Compress Spring (6) connection armature (13) and nail (14) periphery by side acanthopore, be provided with travel switch (15) in the below of magnet (12) side, travel switch (15) connects the circuit of magnet (12) and controls the switch of magnet (12) circuit, a flashboard slot (16) is respectively established respectively on the both sides, frame (1) inner side of pocket import (23) below, strut rail (17) is provided with outside the top of two flashboard slots (16), flashboard (18) is provided with in flashboard slot (16), the lower end of flashboard (18) is provided with baffle plate (19), is provided with extension spring (20) between strut rail (17) and baffle plate (19), frame (1) both sides below pocket import (23) top, pocket outlet (24) are hinged with top discharge grid (9) and bottom discharge grid (10) respectively, pin joint position comparatively bottom discharge grid (10) the high 20-40mm of top discharge grid (9), under normality, top discharge grid (9) and bottom discharge grid (10) are in inclined-plane deployed condition, and top discharge grid (9) and bottom discharge grid (10) can upwards rotate by non-resistance.
2. a kind of edible mushroom cultivating bag piercing aerator according to claim 1, is characterized in that, described nail-plate (4) is palisade, fixing lower acanthopore nail (5b) in palisade prominence; Described pocket gripper shoe (7) is palisade, follows closely (5b) corresponding position be provided with nail (14) in palisade prominence and lower acanthopore; Described nail-plate (4) and the palisade projection of pocket gripper shoe (7) and recessed with top discharge grid (9) with the projection of bottom discharge grid (10) and recessed cross-shaped.
3. a kind of edible mushroom cultivating bag piercing aerator according to claim 1, is characterized in that, described pocket diving board (11) is provided with follows closely nail corresponding to (5a) (14) with upper acanthopore.
CN201520958770.7U 2015-11-27 2015-11-27 Edible mushroom cultivation bag acanthopore oxygen -increasing machine Withdrawn - After Issue CN205196397U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520958770.7U CN205196397U (en) 2015-11-27 2015-11-27 Edible mushroom cultivation bag acanthopore oxygen -increasing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520958770.7U CN205196397U (en) 2015-11-27 2015-11-27 Edible mushroom cultivation bag acanthopore oxygen -increasing machine

Publications (1)

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CN205196397U true CN205196397U (en) 2016-05-04

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105325176A (en) * 2015-11-27 2016-02-17 山西省农业科学院试验研究中心 Edible fungi cultivation bag punctured aerator

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105325176A (en) * 2015-11-27 2016-02-17 山西省农业科学院试验研究中心 Edible fungi cultivation bag punctured aerator
CN105325176B (en) * 2015-11-27 2017-12-22 山西省农业科学院试验研究中心 Edible mushroom cultivating bag piercing aerator

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GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20160504

Effective date of abandoning: 20171222

AV01 Patent right actively abandoned

Granted publication date: 20160504

Effective date of abandoning: 20171222

AV01 Patent right actively abandoned
AV01 Patent right actively abandoned