CN212327580U - Multifunctional filter flask for cultivating edible fungus strains - Google Patents

Multifunctional filter flask for cultivating edible fungus strains Download PDF

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Publication number
CN212327580U
CN212327580U CN202020838347.4U CN202020838347U CN212327580U CN 212327580 U CN212327580 U CN 212327580U CN 202020838347 U CN202020838347 U CN 202020838347U CN 212327580 U CN212327580 U CN 212327580U
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CN
China
Prior art keywords
cup
rod
leakage
support
fixed
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Expired - Fee Related
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CN202020838347.4U
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Chinese (zh)
Inventor
杨永杰
吴玉琴
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Minle Xueyu Hengchang Agricultural Technology Co ltd
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Minle Xueyu Hengchang Agricultural Technology Co ltd
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Abstract

The utility model discloses a multifunctional filtering bottle for cultivating edible fungus strains, which comprises a floating mechanism arranged on a bracket, wherein, pressure is applied to a sliding sleeve through a pressure spring, and a sealing gasket can be pressed at the bottom of a leakage cup by virtue of a holding rod, thereby ensuring the sealing property between the leakage cup and a filtering bottle body when hyphae are filtered; the support is provided with the micro-vibration mechanism, wherein the holding rod is rotatably connected with the sliding sleeve through a rotating shaft, after hyphae are filtered, the leaking cup is rotated and inverted to the material receiving cup, a part of hyphae with low adhesive force can fall into the material receiving cup, the leaking cup can be tightly pressed by the pressure of the pressure spring on the sliding sleeve, and then the material receiving cup is driven by the driver to slide up and down on the sliding rod, so that the material receiving cup and the leaking cup vibrate up and down simultaneously, and the hyphae attached to the filter paper in the leaking cup fall off in the material receiving cup.

Description

Multifunctional filter flask for cultivating edible fungus strains
Technical Field
The utility model belongs to the edible mushroom culture device field especially relates to a multi-functional buchner flask for edible mushroom species cultivates.
Background
When edible fungi are cultivated, pure mycelia are cultivated in a test tube cultivating solution to form mother bell mycelia, then mother strain mycelia in the cultivating solution are filtered out, the mother strain mycelia are placed in a solid culture medium to form stock strain mycelia, the stock strain mycelia can be directly grown, and the stock strain mycelia can be propagated to form cultivated species; present filtration mode, filtration is accomplished through the suction filtration mode of buchner flask and buchner funnel, should be when filtering at that time, need put into filter paper at buchner funnel, the hypha can stay on filter paper after the suction filtration is accomplished, because filter paper hugs closely with buchner funnel, some hypha can attach in the filtration pore of filter paper in addition, adopt tweezers to take out filter paper with hypha usually, this mode is because filter paper and buchner funnel are hugged closely not only be difficult for taking out the hypha, take out the process with tweezers with filter paper with hypha very easily damage hypha moreover.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a: provides a multifunctional filter flask for edible fungus strain cultivation, which is convenient for taking off hyphae and avoids the hyphae from being damaged in the taking-off process.
The utility model adopts the technical scheme as follows:
a multi-functional buchner flask for domestic fungus bacterial is cultivated, including the buchner flask body, the suction nozzle has on the buchner flask body, its characterized in that: the device also comprises a bracket, a leakage cup, a floating mechanism and a micro-vibration mechanism; the support comprises a support and a support rod vertically fixed in the middle of the support, the suction bottle body is positioned on the support, the upper end of the suction bottle body is provided with a bottle mouth, a circle of sealing gasket is fixed on the end surface of the bottle mouth, the floating mechanism comprises a sliding sleeve, a holding rod and a pressure spring, the sliding sleeve is sleeved on the support rod and is in slidable connection with the support rod, the pressure spring is sleeved on the support rod, the upper end of the support rod is fixedly provided with a limit cap, the upper end of the pressure spring is in contact with the limit cap, the lower end of the pressure spring is in contact with the sliding sleeve, and one end of the holding rod is in rotatable connection; the leakage cup is fixed at the free end of the holding rod, can be coaxial with the bottle mouth of the filter flask, and is provided with a plurality of leakage holes at the bottom; the micro-vibration mechanism comprises a sliding rod, a receiving cup and a driver, the lower end of the sliding rod is fixed on the support, the distance from the center of the sliding rod to the center of the supporting rod is consistent with the distance from the center of the leaking cup to the center of the supporting rod, a floating sleeve is fixed at the lower end of the receiving cup, the floating sleeve is arranged on the sliding rod in a sleeved mode and can slide on the sliding rod up and down, the driver can float on the sliding rod in a sleeved mode and float up and down, and the leaking cup can rotate, invert and press the inner bottom of the receiving cup.
The further technical scheme is as follows: the bottle mouth is provided with a limit ring sleeve, the leakage cup and the bottle mouth are coaxial, and when the lower end of the leakage cup is contacted with the sealing gasket, the lower end of the leakage cup is positioned in the limit ring sleeve.
The further technical scheme is as follows: the driver comprises a motor and a cam, a push plate is fixed on the floating sleeve, the motor is fixed on the support, the cam is coaxially fixed on an output shaft of the motor and is in contact with the bottom of the push plate, and when the funnel cup rotates and is inverted and pressed on the inner bottom of the material receiving cup, the motor drives the cam to rotate and enables the material receiving cup to float up and down under the action of a pressure spring.
The further technical scheme is as follows: the sealing gasket is made of plastic materials.
The further technical scheme is as follows: the free end of the push plate is sleeved on the support rod and is in sliding connection with the support rod.
In the utility model, a floating mechanism is arranged on the bracket, wherein, the pressure spring applies pressure to the sliding sleeve and the holding rod is used for pressing the sealing gasket at the bottom of the leakage cup, thus ensuring the sealing property between the leakage cup and the body of the filter flask when filtering hyphae;
the support is provided with the micro-vibration mechanism, wherein the holding rod is rotatably connected with the sliding sleeve through a rotating shaft, after hyphae are filtered, the leaking cup is rotated and inverted to the material receiving cup, a part of hyphae with low adhesive force can fall into the material receiving cup, the leaking cup can be tightly pressed by the pressure of the pressure spring on the sliding sleeve, and then the material receiving cup is driven by the driver to slide up and down on the sliding rod, so that the material receiving cup and the leaking cup vibrate up and down simultaneously, and the hyphae attached to the filter paper in the leaking cup fall off in the material receiving cup.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of the bottle mouth position structure of the present invention;
fig. 3 is a schematic structural view of the leaking cup of the present invention when being located in the receiving cup.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the invention.
As shown in fig. 1-3, the multifunctional filter flask for cultivating edible fungus strains comprises a filter flask body 1, wherein the filter flask body 1 is provided with a suction nozzle 11, and further comprises a support 2, a leakage cup 3, a floating mechanism and a micro-vibration mechanism; the support 2 comprises a support 21 and a support rod 22 vertically fixed in the middle of the support 21, the filter flask body 1 is positioned on the support 21, the upper end of the filter flask body 1 is provided with a bottle mouth 12, a circle of sealing gasket 13 is fixed on the end surface of the bottle mouth 12, the floating mechanism comprises a sliding sleeve 31, a holding rod 32 and a pressure spring 33, the sliding sleeve 31 is sleeved on the support rod 22 and is slidably connected with the support rod, the pressure spring 33 is sleeved on the support rod 22, the upper end of the support rod 22 is fixedly provided with a limit cap 34, the upper end of the pressure spring 33 is in contact with the limit cap 34, the lower end of the pressure spring 33 is in contact with the sliding sleeve 31, and one end of the holding rod 32 is rotatably connected with the sliding; the leakage cup 3 is fixed at the free end of the holding rod 32, the leakage cup 3 can be coaxial with the bottle mouth 12 of the filter flask, and a plurality of leakage holes are formed in the bottom of the leakage cup 3; the micro-vibration mechanism comprises a sliding rod 36, a material receiving cup 41 and a driver, the lower end of the sliding rod 36 is fixed on the support 21, the distance from the center of the sliding rod 36 to the center of the support rod 22 is consistent with the distance from the center of the material leaking cup 3 to the center of the support rod 22, a floating sleeve 42 is fixed at the lower end of the material receiving cup 41, the floating sleeve 42 is sleeved on the sliding rod 36 and can slide up and down on the sliding rod 36, the driver can enable the floating sleeve 42 to float up and down on the sliding rod 36, and the material leaking cup 3 can rotate, invert and press the inner bottom of the material receiving cup 41.
When the culture medium leakage device is used, after the lower end of the leakage cup 3 is aligned with the bottle mouth 12 of the filter flask body 1, the lower end of the leakage cup 3 is pressed on the bottle mouth 12, the leakage cup 3 can press the sealing gasket 13 at the bottle mouth 12 under the action of the pressure spring 33, filter paper is placed in the leakage cup 3, culture medium with mother hyphae is poured into the leakage cup 3, the interior of the filter flask body 1 is vacuumized through the suction nozzle 11, the culture medium of the leakage cup 3 falls into the filter flask body 1 through the filter paper and a leakage hole at the bottom of the leakage cup 3, the hyphae is left on the filter paper, the sliding sleeve 31 is rotated to enable the leakage cup 3 to be located at the material receiving cup 41, the leakage cup 3 is rotated to be placed in the material receiving cup 41 in an inverted mode, the pressure spring 33 can press the leakage cup 3 in the material receiving cup 41, the material receiving cup 41 is driven by the driver to slide up and down on the filter paper 36, and the material in the leakage cup 3 falls off from the material.
In the utility model, a floating mechanism is arranged on the bracket 2, wherein, the pressure spring 33 applies pressure to the sliding sleeve 31 and the holding rod 32 is used for pressing the sealing gasket 13 at the bottom of the leakage cup 3, thus ensuring the sealing property between the leakage cup 3 and the filtering flask body 1 when filtering hyphae; the support 2 is provided with a micro-vibration mechanism, wherein the holding rod 32 and the sliding sleeve 31 are rotatably connected through a rotating shaft 35, after hypha is filtered, the leakage cup 3 is rotated and inverted to the receiving cup 41, a part of hypha with low adhesive force falls into the receiving cup 41, the leakage cup 3 can be tightly pressed against the receiving cup 41 due to the pressure of the pressure spring 33 on the sliding sleeve 31, the receiving cup 41 is driven by the driver to slide up and down on the sliding rod 36, the receiving cup 41 and the leakage cup 3 vibrate up and down simultaneously, and the hypha attached to the filter paper in the leakage cup 3 falls off in the receiving cup 41.
The bottle mouth 12 is provided with a limit ring sleeve 14, when the leakage cup 3 and the bottle mouth 12 are coaxial and the lower end of the leakage cup 3 is contacted with a sealing gasket 13, the lower end of the leakage cup 3 is positioned in the limit ring sleeve 14, the limit ring sleeve 14 can limit the leakage cup 3 in the horizontal direction, and the stability of the leakage cup 3 is improved.
The driver comprises a motor 51 and a cam 52, a push plate 53 is fixed on the floating sleeve 42, the motor 51 is fixed on the support 21, the cam 52 is coaxially fixed on an output shaft of the motor 51, the cam 52 is contacted with the bottom of the push plate 53, when the funnel cup 3 rotates, inverts and presses the inner bottom of the receiving cup 41, the motor 51 drives the cam 52 to rotate and enables the receiving cup 41 to float up and down under the action of a pressure spring 33, the motor 51 drives the cam 52 to rotate, the cam 52 rotates to enable the floating sleeve 42 to be intermittently jacked up by the push plate 53 due to the contact of the cam 52 and the bottom of the push plate 53, and the funnel cup 3 is tightly jacked against the receiving cup 41 under the pressure of the pressure spring 33 on the sliding sleeve 31, so that the receiving cup 41 and the funnel cup 3 vibrate up and down.
The sealing gasket 13 is made of plastic material, and has good sealing performance.
The free end of the push plate 53 is sleeved on the supporting rod 22 and is in sliding connection with the supporting rod, so that the floating sleeve 42 can slide up and down more stably.
The above description is only exemplary of the present invention and should not be taken as limiting the scope of the present invention, as any modifications, equivalents, improvements and the like made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.

Claims (5)

1. A multi-functional buchner flask for domestic fungus bacterial is cultivated, including buchner flask body (1), suction mouth (11), its characterized in that have on buchner flask body (1): the device also comprises a bracket (2), a leakage cup (3), a floating mechanism and a micro-vibration mechanism; the support (2) comprises a support (21) and a support rod (22) vertically fixed in the middle of the support (21), the filter flask body (1) is located on the support (21), a bottle mouth (12) is formed in the upper end of the filter flask body (1), a circle of sealing gasket (13) is fixed on the end face of the bottle mouth (12), the floating mechanism comprises a sliding sleeve (31), a holding rod (32) and a pressure spring (33), the sliding sleeve (31) is sleeved on the support rod (22) and is in slidable connection with the support rod, the pressure spring (33) is sleeved on the support rod (22), a limiting cap (34) is fixed at the upper end of the support rod (22), the upper end of the pressure spring (33) is in contact with the limiting cap (34), the lower end of the pressure spring (33) is in contact with the sliding sleeve (31), and one end of the holding rod (32) is in rotatable connection with the sliding sleeve (31) through a; the leakage cup (3) is fixed at the free end of the holding rod (32), the leakage cup (3) can be coaxial with the bottle mouth (12) of the filter flask, and a plurality of leakage holes are formed in the bottom of the leakage cup (3); the microseism mechanism comprises a sliding rod (36), a receiving cup (41) and a driver, wherein the lower end of the sliding rod (36) is fixed on a support (21), the distance from the center of the sliding rod (36) to the center of a supporting rod (22) is consistent with the distance from the center of a leakage cup (3) to the center of the supporting rod (22), a floating sleeve (42) is fixed at the lower end of the receiving cup (41), the floating sleeve (42) is sleeved on the sliding rod (36) and can slide up and down on the sliding rod (36), the driver can float up and down on the sliding rod (36), and the leakage cup (3) can rotate, invert and press the inner bottom of the receiving cup (41).
2. The multi-functional filter flask for edible mushroom spawn cultivation according to claim 1, wherein: the bottle mouth (12) is provided with a limit ring sleeve (14), the leakage cup (3) and the bottle mouth (12) are coaxial, and when the lower end of the leakage cup (3) is contacted with the sealing gasket (13), the lower end of the leakage cup (3) is positioned in the limit ring sleeve (14).
3. The multi-functional filter flask for edible mushroom spawn cultivation according to claim 1 or 2, characterized in that: the driver comprises a motor (51) and a cam (52), a push plate (53) is fixed on the floating sleeve (42), the motor (51) is fixed on the support (21), the cam (52) is coaxially fixed on an output shaft of the motor (51), the cam (52) is in contact with the bottom of the push plate (53), and when the leakage cup (3) rotates and is inverted and is pressed on the inner bottom of the material receiving cup (41), the motor (51) drives the cam (52) to rotate and enables the material receiving cup (41) to float up and down under the action of a pressure spring (33).
4. The multi-functional filter flask for edible mushroom spawn cultivation according to claim 1, wherein: the sealing gasket (13) is made of plastic materials.
5. The multi-functional filter flask for edible mushroom spawn cultivation according to claim 3, characterized in that: the free end of the push plate (53) is sleeved on the support rod (22) and is connected with the support rod in a sliding mode.
CN202020838347.4U 2020-05-19 2020-05-19 Multifunctional filter flask for cultivating edible fungus strains Expired - Fee Related CN212327580U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020838347.4U CN212327580U (en) 2020-05-19 2020-05-19 Multifunctional filter flask for cultivating edible fungus strains

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020838347.4U CN212327580U (en) 2020-05-19 2020-05-19 Multifunctional filter flask for cultivating edible fungus strains

Publications (1)

Publication Number Publication Date
CN212327580U true CN212327580U (en) 2021-01-12

Family

ID=74082503

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020838347.4U Expired - Fee Related CN212327580U (en) 2020-05-19 2020-05-19 Multifunctional filter flask for cultivating edible fungus strains

Country Status (1)

Country Link
CN (1) CN212327580U (en)

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Granted publication date: 20210112