CN219681204U - Sterilization device for microbial agent production equipment - Google Patents

Sterilization device for microbial agent production equipment Download PDF

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Publication number
CN219681204U
CN219681204U CN202320975968.0U CN202320975968U CN219681204U CN 219681204 U CN219681204 U CN 219681204U CN 202320975968 U CN202320975968 U CN 202320975968U CN 219681204 U CN219681204 U CN 219681204U
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sterilization
bearing
piston
pipeline
rod
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CN202320975968.0U
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Chinese (zh)
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侯素芳
高艳东
张伟
王艺涵
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Hebi Huien Biological Technology Co ltd
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Hebi Huien Biological Technology Co ltd
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Abstract

The utility model discloses a sterilization device for microbial inoculum production equipment, which relates to the technical field of sterilization devices and comprises a compression box, wherein a piston is arranged in the compression box and is in sliding connection with the inner side surface of the compression box, the upper end of the piston is fixedly connected with a bracket, the bracket is movably connected with the lower end of a connecting rod through a bearing, the upper end of the connecting rod is in rotary connection with a crankshaft through the bearing, the crankshaft is in rotary connection with a mounting frame through the bearing, the mounting frame is fixedly connected with the left part and the right part of the compression box, the left end of the crankshaft is fixedly connected with a driving wheel through a driving belt, the right end of the driving wheel is in rotary connection with the compression box through the bearing, the left side of the compression box is provided with a mixing tank, bacteria are killed by adopting a compound sterilization method, the steam temperature is improved through high pressure, so that the sterilization efficiency is improved, condensation treatment is carried out on steam, and condensate water is convenient to recycle.

Description

Sterilization device for microbial agent production equipment
Technical Field
The utility model relates to the technical field of sterilization devices, in particular to a sterilization device for microbial agent production equipment.
Background
Sterilization refers to a measure of adopting strong physical and chemical factors to ensure that all microorganisms inside and outside any object lose the growth and reproduction capacity of the microorganisms forever; common methods for sterilization include radiation sterilization, damp heat sterilization, filtration sterilization and the like; different methods can be adopted according to different requirements, for example, the culture medium sterilization generally adopts damp-heat sterilization, and the air adopts filtration sterilization; the thorough degree of sterilization is limited by the sterilization time and the strength of the sterilizing agent; the resistance of microorganisms to sterilizing agents depends on the population density originally present, the resistance imparted by the species or environment to the species; sterilization is a necessary condition for obtaining pure culture, and is also a necessary technology in the food industry and the pharmaceutical field.
The existing wet heat sterilization usually adopts steam for sterilization, the steam sterilization speed depends on the temperature of the steam, and the temperature of the steam in normal air pressure is lower than the temperature of the steam under high pressure, so that the sterilization efficiency can be improved under high pressure.
Disclosure of Invention
The utility model aims to overcome the existing defects, provides a sterilizing device for microbial agent production equipment, kills bacteria by adopting a compound sterilizing method, improves the sterilizing efficiency by improving the steam temperature through high pressure, and is convenient for recycling condensed water by condensing the steam, so that the problems in the background art can be effectively solved.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a microbial inoculum is sterilization apparatus for production facility, includes the compression case, the inside of compression case sets up the piston, the piston passes through the lower extreme swing joint of bearing and connecting rod with compression case, the upper end fixed connection support of piston, the support passes through the bearing and rotates with the bent axle and be connected, the bent axle passes through the bearing and rotates with the mounting bracket and be connected, the left and right sides portion of mounting bracket fixed connection compression case, the left end fixed connection drive wheel of bent axle, the drive wheel passes through the drive belt and connects from the driving wheel, the right-hand member from the driving wheel passes through the bearing and rotates with the compression case to be connected, the left side of compression case sets up the blending tank, the upper end of blending tank is linked through the inlet pipe, the left end fixed connection dwang from the driving wheel, the left end of dwang passes the round hole of seting up on the blending tank and extends to the inside of blending tank to install preliminary sterilization mechanism, the right-hand member of bent axle is connected power mechanism, the lower extreme left part of compression case passes through pipeline one-way valve, install the check valve in the pipeline one, the lower extreme right part of compression case passes through pipeline two condensation mechanisms, install the pressure valve in the pipeline two.
The design compression box and the piston to compress steam, thereby make the temperature of steam improve, thereby reduce required sterilization time greatly, thereby reduce sterilization time, design the blending tank, thereby make steam and wait to sterilize gaseous mixture, thereby make steam distribution's comparatively even, thereby improve the bactericidal effect, when controlling means during operation, carry gas and steam waiting to disinfect together into the blending tank in mix, drive the bent axle through power unit and rotate, thereby drive the connecting rod and reciprocate, thereby drive the piston and reciprocate, when the piston moves up, inhale the compression incasement with the mixed steam in the blending tank through pipeline one, when the piston moves down, compress mixed steam, thereby make the temperature of mixed steam increase, the pressure valve in the compression incasement is opened after reaching the upper limit, will accomplish the mixed air propulsion pipeline second of disinfecting, get into condensing mechanism, drive the drive wheel rotation simultaneously, thereby drive the follow driving wheel rotation through the conveyer belt, thereby drive preliminary sterilization mechanism work.
Further, the power mechanism comprises a motor, the right end of the mounting frame is fixedly connected with the motor, the input end of the motor is controlled by an external control switch group to be electrically connected with the output end of an external power supply, and the output shaft of the motor penetrates through a round hole formed in the mounting frame to be fixedly connected with the right end of the crankshaft.
The motor is controlled to work through an external control switch group, so that the crankshaft is driven to rotate.
Further, preliminary sterilization mechanism contains the sterilization lamp stick, the dwang is located the inside equiangular fixed connection sterilization lamp stick of waiting of blending tank, and the input of sterilization lamp stick is connected with external power source's output electricity through outside control switch group control.
The design sterilization lamp stick to the pluralism is compound disinfects the work, through rotating the sterilization lamp stick, thereby stirs the mixed steam in the blending tank, thereby makes the more even of mixing, through outside control switch group control sterilization lamp stick work.
Further, the sterilizing device further comprises an electric heating rod, the electric heating rods are arranged on the inner wall of the mixing tank at equal intervals, and the input end of the electric heating rod is controlled by the external control switch group to be electrically connected with the output end of the external power supply.
The electric heating rod is designed, so that the temperature in the mixing tank is kept, and the steam is prevented from being cooled and liquefied.
Further, the condensing mechanism comprises a return pipe, the pipeline is communicated with the condensing pipe through the return pipe, and the lower end of the return pipe is communicated with the liquid discharge pipe.
The mixed steam after sterilization enters a condensing pipe to be condensed with water drops, and the water drops slide along the inner wall of the condensing pipe and enter a return pipe.
Compared with the prior art, the utility model has the beneficial effects that: the sterilizing device for the microbial agent production equipment has the following advantages:
1. the compression box and the piston are designed to compress the steam, so that the temperature of the steam is increased, the required sterilization time is greatly shortened, and the sterilization time is shortened;
2. the mixing tank is designed, so that steam and gas to be sterilized are mixed, steam is distributed uniformly, and the sterilizing effect is improved;
3. the design sterilization lamp stick to the pluralism is compound to disinfect work, through rotating the sterilization lamp stick, thereby stirs the mixed steam in the blending tank, thereby makes the more even of mixing.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
fig. 2 is a schematic diagram of the internal structure of the present utility model.
In the figure: 1 mixing tank, 2 feeding pipe, 3 rotating rod, 4 sterilizing lamp rod, 5 electric heating rod, 6 driven wheel, 7 compression box, 8 piston, 9 connecting rod, 10 bracket, 11 crankshaft, 12 motor, 13 driving wheel, 14 driving belt, 15 pipe I, 16 one-way valve, 17 pipe II, 18 pressure valve, 19 return pipe, 20 condensing pipe.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-2, the present embodiment provides a technical solution: the utility model provides a microbial inoculum is sterilization apparatus for production facility, including compression case 7, the inside of compression case 7 sets up piston 8, piston 8 and compression case 7's inboard surface sliding connection, piston 8's upper end fixed connection support 10, support 10 passes through the lower extreme swing joint of bearing and connecting rod 9, the upper end of connecting rod 9 passes through the bearing and rotates with bent axle 11 to be connected, bent axle 11 passes through the bearing and rotates with the mounting bracket to be connected, mounting bracket fixed connection compression case 7 controls the portion, bent axle 11's left end fixed connection drive wheel 13, the drive wheel 13 passes through drive belt 14 and connects from driving wheel 6, from driving wheel 6's right-hand member passes through the bearing and rotates with compression case 7 to be connected, compression case 7's left side sets up hybrid tank 1, the upper end of hybrid tank 1 is linked through inlet pipe 2, from driving wheel 6's left end fixed connection dwang 3, the round hole that sets up on the dwang 3 passes hybrid tank 1 extends to hybrid tank 1's inside, and install preliminary sterilizing mechanism, bent axle 11's right-hand member connects power device, compression case 7's lower extreme left part passes through pipeline 15 switch-on hybrid tank 1, install check valve 16 in 15, compression case 7's lower extreme right-hand member passes through pipeline 17 two, switch-on pressure valve 18.
The design compression box 7 and piston 8 to compress steam, thereby make the temperature of steam improve, thereby reduce required sterilization time greatly, thereby reduce sterilization time, design blending tank 1, thereby make steam and wait to sterilize gas to mix, thereby make steam distribution's comparatively even, thereby improve the bactericidal effect, when controlling means during operation, carry gas and steam waiting to sterilize together into blending tank 1 in mix, drive crankshaft 11 through power unit and rotate, thereby drive connecting rod 9 and reciprocate, thereby drive piston 8 and reciprocate, when piston 8 moves up, inhale the mixed steam in the blending tank 1 in compression box 7 through pipeline one 15, when piston 8 moves down, compress mixed steam, thereby make the temperature of mixed steam increase, after the pressure in the compression box 7 reaches the upper limit, pressure valve 18 opens, will accomplish the mixed air propulsion pipeline two 17 of sterilizing, get into condensing mechanism, drive wheel 13 simultaneously and rotate, thereby drive driven wheel 6 through drive driving rod 3 and rotate, thereby drive preliminary sterilization mechanism work.
The power mechanism comprises a motor 12, the right end of the mounting frame is fixedly connected with the motor 12, the input end of the motor 12 is controlled by an external control switch group to be electrically connected with the output end of an external power supply, and the output shaft of the motor 12 passes through a round hole formed in the mounting frame to be fixedly connected with the right end of the crankshaft 11.
The motor 12 is controlled to work by an external control switch group, so that the crankshaft 11 is driven to rotate.
The preliminary sterilization mechanism comprises a sterilization lamp rod 4, a rotating rod 3 is positioned in the mixing tank 1 and fixedly connected with the sterilization lamp rod 4 at equal angles, and the input end of the sterilization lamp rod 4 is controlled by an external control switch group to be electrically connected with the output end of an external power supply.
The sterilizing lamp rod 4 is designed, so that the sterilizing lamp rod 4 is subjected to sterilizing operation in a diversified mode, mixed steam in the mixing tank 1 is stirred, the mixing is more uniform, and the sterilizing lamp rod 4 is controlled to operate through an external control switch group.
The sterilizing device further comprises an electric heating rod 5, the electric heating rods 5 are arranged on the inner wall of the mixing tank 1 at equal intervals, and the input end of the electric heating rod 5 is controlled by an external control switch group to be electrically connected with the output end of an external power supply.
The electric heating rod 5 is designed so as to maintain the temperature in the mixing tank 1 and avoid the cooling and liquefying of steam.
The condensing mechanism comprises a return pipe 19, a second pipeline 17 is connected with a condensing pipe 20 through the return pipe 19, and the lower end of the return pipe 19 is connected with a liquid discharge pipe
The mixed steam after sterilization enters the condensing tube 20 to be condensed with water drops, and the water drops slide along the inner wall of the condensing tube 20 to enter the return tube 19.
The working principle of the sterilization device for the microbial agent production equipment provided by the utility model is as follows:
the gas and the steam to be sterilized are conveyed into the mixing tank 1 to be mixed, the sterilizing lamp rod 4 is controlled to work through the external control switch group, the motor 12 is controlled to work through the external control switch group, the crankshaft 11 is driven to rotate, the connecting rod 9 is driven to move up and down, the piston 8 is driven to move up and down, when the piston 8 moves up, the mixed steam in the mixing tank 1 is sucked into the compression box 7 through the first pipeline 15, the mixed steam is compressed when the piston 8 moves down, the temperature of the mixed steam is increased, the pressure in the compression box 7 reaches the upper limit, the pressure valve 18 is opened, the sterilized mixed air is pushed into the second pipeline 17, the condensed water drops enter the condensing pipe 20, the water drops slide into the return pipe 19 along the inner wall of the condensing pipe 20, the driving wheel 13 is driven to rotate, the driven wheel 6 is driven to rotate through the driving belt 14, and the rotating rod 3 is driven to stir, and the sterilizing lamp rod 4 is rotated.
It should be noted that, the sterilizing lamp bar 4 disclosed in the above embodiment adopts a jun Rui sterilizing lamp, the electric heating bar 5 adopts a spring-combined electric heating bar, and the sterilizing lamp bar 4, the electric heating bar 5 and the motor 12 are controlled to work by an external control switch group by adopting a method commonly used in the prior art.
The foregoing description is only illustrative of the present utility model and is not intended to limit the scope of the utility model, and all equivalent structures or equivalent processes or direct or indirect application in other related technical fields are included in the scope of the present utility model.

Claims (5)

1. The sterilizing device for the microbial agent production equipment is characterized in that: including compression case (7), the inside of compression case (7) sets up piston (8), the inside surface sliding connection of piston (8) and compression case (7), the upper end fixed connection support (10) of piston (8), support (10) pass through the lower extreme swing joint of bearing and connecting rod (9), the upper end of connecting rod (9) passes through bearing and bent axle (11) rotation to be connected, the portion about bent axle (11) pass through bearing and mounting bracket rotation to be connected, mounting bracket fixed connection compression case (7), the left end fixed connection drive wheel (13) of bent axle (11), driven wheel (13) are connected from driving wheel (6) through drive belt (14), the right-hand member of driven wheel (6) passes through bearing and compression case (7) rotation to be connected, the left side of compression case (7) sets up blending tank (1), the upper end of blending tank (1) is connected through inlet pipe (2), the left end fixed connection dwang (3) of driven wheel (6), the left end of dwang (3) passes blending tank (1) and is connected to the inside of a compression mechanism (1) of a round hole (15) on the blending tank (1) to the side of a primary pipeline (1), a one-way valve (16) is arranged in the first pipeline (15), the right part of the lower end of the compression box (7) is communicated with a condensing mechanism through a second pipeline (17), and a pressure valve (18) is arranged in the second pipeline (17).
2. The sterilization apparatus for a microbial agent production facility according to claim 1, wherein: the power mechanism comprises a motor (12), the right end of the mounting frame is fixedly connected with the motor (12), the input end of the motor (12) is controlled by an external control switch group to be electrically connected with the output end of an external power supply, and the output shaft of the motor (12) penetrates through a round hole formed in the mounting frame to be fixedly connected with the right end of the crankshaft (11).
3. The sterilization apparatus for a microbial agent production facility according to claim 1, wherein: the primary sterilization mechanism comprises a sterilization lamp rod (4), the rotation rod (3) is positioned in the mixing tank (1) and is fixedly connected with the sterilization lamp rod (4) at equal angles, and the input end of the sterilization lamp rod (4) is controlled by an external control switch group to be electrically connected with the output end of an external power supply.
4. The sterilization apparatus for a microbial agent production facility according to claim 1, wherein: the sterilizing device further comprises an electric heating rod (5), the electric heating rods (5) are arranged on the inner wall of the mixing tank (1) at equal intervals, and the input end of the electric heating rod (5) is controlled by an external control switch group to be electrically connected with the output end of an external power supply.
5. The sterilization apparatus for a microbial agent production facility according to claim 1, wherein: the condensing mechanism comprises a return pipe (19), the second pipeline (17) is connected with a condensing pipe (20) through the return pipe (19), and the lower end of the return pipe (19) is connected with a liquid discharge pipe.
CN202320975968.0U 2023-04-26 2023-04-26 Sterilization device for microbial agent production equipment Active CN219681204U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320975968.0U CN219681204U (en) 2023-04-26 2023-04-26 Sterilization device for microbial agent production equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320975968.0U CN219681204U (en) 2023-04-26 2023-04-26 Sterilization device for microbial agent production equipment

Publications (1)

Publication Number Publication Date
CN219681204U true CN219681204U (en) 2023-09-15

Family

ID=87970910

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320975968.0U Active CN219681204U (en) 2023-04-26 2023-04-26 Sterilization device for microbial agent production equipment

Country Status (1)

Country Link
CN (1) CN219681204U (en)

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