CN218710512U - Probiotics apparatus for producing of taking constant temperature desicator - Google Patents

Probiotics apparatus for producing of taking constant temperature desicator Download PDF

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Publication number
CN218710512U
CN218710512U CN202222692861.3U CN202222692861U CN218710512U CN 218710512 U CN218710512 U CN 218710512U CN 202222692861 U CN202222692861 U CN 202222692861U CN 218710512 U CN218710512 U CN 218710512U
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incubator
temperature
constant temperature
probiotic
production device
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CN202222692861.3U
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袁昊
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Changzhou Kexin Biotechnology Co ltd
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Changzhou Kexin Biotechnology Co ltd
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Abstract

The utility model discloses a probiotic production device with a constant temperature dryer, which comprises an incubator and a clapboard; an incubator: the inner wall of the rear side of the incubator is symmetrically provided with supports, the upper surfaces of the two supports are fixedly connected with the bottom surface of the culture dish, and the opening of the front side of the incubator is hinged with a chamber door through a hinge; a clapboard: the drying mechanisms are symmetrically arranged at the left end and the right end of the partition plate, and the temperature sensor is arranged on the top wall of the interior of the incubator; wherein: the front flank upper end of chamber door is equipped with temperature controller, and external power supply is connected to temperature controller's input electricity, and temperature sensor's output electricity connects temperature controller's input, and this take probiotic apparatus for producing of constant temperature desicator enables the even of the temperature of the inside upper end of incubator, and the influence that simultaneously can greatly reduced external temperature caused incubator internal temperature, the constant temperature drying effect of probiotic is better.

Description

Probiotics apparatus for producing of taking constant temperature desicator
Technical Field
The utility model relates to a benefit fungus production technical field specifically is a take benefit fungus apparatus for producing of living of constant temperature desicator.
Background
The probiotics is an active microorganism which is beneficial to a host and formed by changing the flora at a certain part of the host through colonization in a human body, and the single microorganism or mixed microorganism with clear composition is generated by regulating the immune function of the host mucous membrane and the system or regulating the flora balance in the intestinal tract to promote nutrient absorption, so that the single microorganism or mixed microorganism which is beneficial to health is generated.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to overcome current defect, provide a take probiotic apparatus for producing of constant temperature desiccator, make the even of the temperature of the inside upper end of incubator, influence that simultaneously can greatly reduced external temperature caused incubator internal temperature, the constant temperature drying effect of probiotic is better, can effectively solve the problem in the background art.
In order to achieve the above object, the utility model provides a following technical scheme: a probiotic production device with a constant temperature dryer comprises an incubator and a baffle plate;
an incubator: the inner wall of the rear side of the incubator is symmetrically provided with supports, the upper surfaces of the two supports are fixedly connected with the bottom surface of the culture dish, and the opening of the front side of the incubator is hinged with a chamber door through a hinge;
a clapboard: the drying mechanisms are symmetrically arranged at the left end and the right end of the partition plate, and the temperature sensor is arranged on the top wall of the interior of the incubator;
wherein: the front flank upper end of chamber door is equipped with temperature controller, and external power supply is connected to temperature controller's input electricity, and temperature sensor's output electricity connection temperature controller's input makes the even of the temperature of the inside upper end of incubator, and the influence that simultaneously can greatly reduced external temperature caused incubator internal temperature, the constant temperature drying effect of benefit fungus is better.
Further, drying mechanism includes heater strip, deckle board and fan, the deckle board sets up respectively in the opening that baffle upper surface bilateral symmetry set up, and the bottom surface bilateral symmetry of baffle is equipped with the fan that corresponds with the deckle board, and the equal symmetry in inside of two deckle boards is equipped with the heater strip, and the equal electric connection temperature controller's of input of heater strip and fan output guarantees that hot-air can evenly be full of the upper end of incubator.
Further, the bottom surface center department of baffle is equipped with the honeycomb panel, and the inside of honeycomb panel is snakelike cooling duct that is equipped with, and the middle part of baffle evenly is provided with the through-hole that corresponds with the honeycomb panel, conveniently separates the moisture in the hot-air.
Further, the inside bottom bilateral symmetry of incubator is equipped with the riser, and the through hole department that the outside side of the back of two risers evenly set up all is equipped with the net cover, and the inside of net cover all is filled with the montmorillonite drier, can guarantee the drying of air.
Further, still include the ponding case, ponding case sliding connection is between two risers, the leading flank lower extreme of incubator be equipped with ponding case complex bar mouth, the ponding case corresponds with the honeycomb panel position, conveniently collects the water droplet.
Further, the wall body of incubator is inside to be hollow cavity, and hollow cavity is inside to be filled with the heat preservation cotton, improves the heat preservation effect of incubator wall body.
Furthermore, a handle is arranged on the front side face of the box door, so that the opening and closing of the box door can be controlled conveniently.
Compared with the prior art, the beneficial effects of the utility model are that: this take probiotic apparatus for producing of constant temperature desicator has following benefit:
1. set for the temperature through temperature controller, temperature sensor control fan and heater strip work, temperature sensor can the inside temperature of real-time supervision incubator and to temperature controller feedback information, the fan upwards carries the air of incubator lower extreme through the frame plate and the inside clearance of incubator, temperature controller heats the inside air of frame plate according to the power of the inside temperature control heater strip of incubator, the air after the heating distributes to the middle part of incubator from the gap department of frame plate and incubator roof, because expend with heat and contract with cold, the hot-air can expand and gather in the inside upper end of incubator, heat up gradually along with the incubator is inside, the hot-air is full of the incubator gradually, guarantee the even of the inside temperature of incubator.
2. The hot-air makes the inside moisture evaporation of probiotic, the hot-air that has moisture moves down through the through-hole at baffle middle part, simultaneously with external cooling water and cooling tube intercommunication, cool down the honeycomb panel, the hot-air that has moisture is when the contact with the honeycomb panel temperature shock drop, make the moisture in the air condense into the water droplet and drip to the water accumulation incasement portion, the air after the cooling circulates through the fan again after the montmorillonite drier drying agent at riser middle part is dry, the inside packing of wall body of incubator has the heat preservation cotton, can greatly reduced outside temperature to the influence of incubator inside air, guarantee the constant temperature drying of probiotic.
Drawings
FIG. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic view of the internal sectional structure of the present invention.
In the figure: 1 incubator, 2 drying mechanism, 21 heating wire, 22 frame plate, 23 fan, 3 support, 4 culture dish, 5 heat preservation cotton, 6 temperature sensor, 7 chamber door, 8 temperature controller, 9 handle, 10 baffle, 11 honeycomb panel, 111 cooling pipeline, 12 water storage tank, 13 riser, 14 montmorillonite drier.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts all belong to the protection scope of the present invention.
Referring to fig. 1-2, the present embodiment provides a technical solution: a probiotics production device with a constant temperature dryer comprises an incubator 1 and a clapboard 10;
an incubator 1: the supports 3 are symmetrically arranged on the left and right of the inner wall of the rear side of the incubator, the upper surfaces of the two supports 3 are fixedly connected with the bottom surface of the culture dish 4, probiotics can be conveniently cultured, a chamber door 7 is hinged to an opening of the front side of the incubator 1 through a hinge, a hollow cavity is formed inside the wall body of the incubator 1, and heat insulation cotton 5 is filled inside the hollow cavity, so that the heat insulation effect inside the incubator 1 is better, and a handle 9 is arranged on the front side surface of the chamber door 7, so that the chamber door 7 can be conveniently opened and closed;
separator 10: the drying device is arranged at the bottom end inside the incubator 1, the drying mechanisms 2 are symmetrically arranged at the left end and the right end of the partition board 10, the temperature sensor 6 is arranged on the top wall inside the incubator 1, the drying mechanisms 2 comprise heating wires 21, frame plates 22 and fans 23, the frame plates 22 are respectively arranged at the notches which are symmetrically arranged at the left end and the right end of the upper surface of the partition board 10, the fans 23 corresponding to the frame plates 22 are symmetrically arranged at the left end and the right end of the bottom surface of the partition board 10, the heating wires 21 are symmetrically arranged inside the two frame plates 22, the honeycomb plates 11 are arranged at the center of the bottom surface of the partition board 10, the cooling pipelines 111 are arranged inside the honeycomb plates 11 in a snake shape, through holes corresponding to the honeycomb plates 11 are uniformly arranged in the middle of the partition board 10, the vertical plates 13 are symmetrically arranged at the bottom end inside the incubator 1, grid covers are respectively arranged at the through holes which are uniformly arranged away from the outer side surface, montmorillonite drying agents 14 are filled inside the grid covers, and the water accumulating tank 12 is further included, the water accumulation box 12 is connected between the two vertical plates 13 in a sliding manner, the lower end of the front side face of the incubator 1 is provided with a strip-shaped opening matched with the water accumulation box 12, the water accumulation box 12 corresponds to the honeycomb plate 11 in position, the temperature sensor 6 can monitor the temperature inside the incubator 1 in real time, the fan 23 works to convey the air at the lower end of the incubator 1 upwards through the gap between the frame plate 22 and the inner part of the incubator 1, the heating wire 21 works to heat the air inside the frame plate 22, the heated air is diffused to the middle part of the incubator 1 from the gap between the frame plate 22 and the top wall of the incubator 1, due to expansion caused by heat and contraction caused by cold, the hot air expands and gathers at the upper end of the inner part of the incubator 1, along with the gradual temperature rise inside the incubator 1, the incubator 1 is gradually filled with the hot air, the uniform temperature inside the incubator 1 is ensured, the hot air enables the moisture inside the probiotics to evaporate, and the hot air with the moisture moves downwards through the through hole in the middle part of the partition plate 10, meanwhile, external cooling water is communicated with the cooling pipeline 111 to cool the honeycomb plate 11, the temperature of hot air with moisture is suddenly reduced while the hot air is in contact with the honeycomb plate 11, so that the moisture in the air is condensed into water drops and drops into the water accumulating tank 12, the cooled air is dried by the montmorillonite drying agent 14 in the middle of the vertical plate 13 and then circulated by the fan 23 again, the influence of the external air temperature on the air in the incubator 1 can be greatly reduced, and the constant-temperature drying of probiotics is ensured;
wherein: the upper end of the front side face of the box door 7 is provided with a temperature controller 8, the input end of the temperature controller 8 is electrically connected with an external power supply, the output end of the temperature sensor 6 is electrically connected with the input end of the temperature controller 8, and the input ends of the heating wires 21 and the fan 23 are electrically connected with the output end of the temperature controller 8, so that the normal operation of a circuit is ensured.
The utility model provides a pair of take probiotic apparatus for producing of constant temperature desicator's theory of operation as follows: putting probiotics in a culture dish 4 at the upper end of a bracket 3, closing a box door 7, setting temperature through a temperature controller 8, controlling a fan 23 and a heating wire 21 to work by the temperature sensor 6, monitoring the temperature in the incubator 1 in real time and feeding back information to the temperature controller 8 by the temperature sensor 6, upwards conveying air at the lower end of the incubator 1 through a gap between a frame plate 22 and the inside of the incubator 1 by the fan 23, heating the air in the frame plate 22 by the temperature controller 8 according to the power of the temperature regulation and control heating wire 21 in the incubator 1, emitting the heated air to the middle of the incubator 1 from a gap between the frame plate 22 and the top wall of the incubator 1, expanding and contracting due to heat and cold, expanding and gathering the hot air at the upper end in the incubator 1, and gradually increasing the temperature along with the inside of the incubator 1, the incubator 1 is filled with hot air gradually, guarantee the even of incubator 1 inside temperature, hot air makes the inside moisture evaporation of probiotic, the hot air that has moisture moves down through the through-hole at baffle 10 middle part, simultaneously with outside cooling water and cooling tube 111 intercommunication, cool down honeycomb panel 11, the temperature shock falls when having the hot air of moisture with honeycomb panel 11 contact, make the moisture in the air condense into the water droplet and drip to the water accumulation box 12 inside, the air after the cooling circulates through fan 23 again after the montmorillonite drier 14 drying of riser 13 middle part, incubator 1's wall body inside packing has heat preservation cotton 5, can greatly reduced outside air temperature to the influence of incubator 1 inside air, guarantee the constant temperature drying of probiotic.
It is to be noted that the temperature sensor 6, the heating wire 21 and the fan 23 disclosed in the above embodiments can be freely configured according to actual application scenarios, the temperature sensor 6 is suggested to use an NTC series temperature sensor, the heating wire 21 is suggested to use a heating wire of YDX-6842, the fan 23 is suggested to use a fan of CZ8025S, the temperature controller 8 is suggested to use a temperature controller of AI-207D1G, and the temperature controller 8 controls the temperature sensor 6, the heating wire 21 and the fan 23 to work by using methods commonly used in the prior art.
The above-mentioned only be the embodiment of the present invention, not consequently the restriction of the patent scope of the present invention, all utilize the equivalent structure or equivalent flow transform made of the content of the specification and the attached drawings, or directly or indirectly use in other relevant technical fields, all including in the same way the patent protection scope of the present invention.

Claims (7)

1. The utility model provides a take probiotic apparatus for producing of constant temperature desicator which characterized in that: comprises an incubator (1) and a clapboard (10);
incubator (1): the inner wall of the rear side of the incubator is symmetrically provided with supports (3) at the left and right sides, the upper surfaces of the two supports (3) are fixedly connected with the bottom surface of the culture dish (4), and an opening at the front side of the incubator (1) is hinged with a chamber door (7) through a hinge;
separator (10): the drying mechanism is arranged at the bottom end inside the incubator (1), the drying mechanisms (2) are symmetrically arranged at the left end and the right end of the partition plate (10), and the temperature sensor (6) is arranged on the top wall inside the incubator (1);
wherein: the refrigerator door is characterized in that a temperature controller (8) is arranged at the upper end of the front side face of the refrigerator door (7), an external power supply is electrically connected with the input end of the temperature controller (8), and the input end of the temperature controller (8) is electrically connected with the output end of the temperature sensor (6).
2. The probiotic production device with the constant temperature dryer according to claim 1, characterized in that: drying mechanism (2) are including heater strip (21), deckle board (22) and fan (23), deckle board (22) set up respectively in the opening department that baffle (10) upper surface bilateral symmetry set up, and the bottom surface bilateral symmetry of baffle (10) is equipped with fan (23) that correspond with deckle board (22), and the equal symmetry in inside of two deckle boards (22) is equipped with heater strip (21), and the output of temperature controller (8) is connected to the equal electricity of input of heater strip (21) and fan (23).
3. The probiotic production device with the constant temperature dryer according to claim 1, characterized in that: the honeycomb plate (11) is arranged at the center of the bottom surface of the partition plate (10), the cooling pipeline (111) is arranged inside the honeycomb plate (11) in a snake shape, and through holes corresponding to the honeycomb plate (11) are uniformly formed in the middle of the partition plate (10).
4. The probiotic production device with the constant temperature dryer of claim 3, characterized in that: the inside bottom bilateral symmetry of incubator (1) is equipped with riser (13), and the back of the body lateral surface that back to each other of two risers (13) evenly sets up's logical mouth department all is equipped with the net cover, and the inside of net cover all is filled with montmorillonite drier (14).
5. The probiotic production device with the constant temperature dryer of claim 4, characterized in that: still include water accumulation box (12), water accumulation box (12) sliding connection is between two riser (13), and the leading flank lower extreme of incubator (1) is equipped with the bar mouth with water accumulation box (12) complex, and water accumulation box (12) correspond with honeycomb panel (11) position.
6. The probiotic production device with the constant temperature dryer according to claim 1, characterized in that: the wall body of incubator (1) is inside to be hollow cavity, and hollow cavity is inside to be filled with heat preservation cotton (5).
7. The probiotic production device with the constant temperature dryer according to claim 1, characterized in that: the front side surface of the box door (7) is provided with a handle (9).
CN202222692861.3U 2022-10-13 2022-10-13 Probiotics apparatus for producing of taking constant temperature desicator Active CN218710512U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222692861.3U CN218710512U (en) 2022-10-13 2022-10-13 Probiotics apparatus for producing of taking constant temperature desicator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222692861.3U CN218710512U (en) 2022-10-13 2022-10-13 Probiotics apparatus for producing of taking constant temperature desicator

Publications (1)

Publication Number Publication Date
CN218710512U true CN218710512U (en) 2023-03-24

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222692861.3U Active CN218710512U (en) 2022-10-13 2022-10-13 Probiotics apparatus for producing of taking constant temperature desicator

Country Status (1)

Country Link
CN (1) CN218710512U (en)

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