CN215230490U - Novel sterilization system - Google Patents

Novel sterilization system Download PDF

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Publication number
CN215230490U
CN215230490U CN202121663179.0U CN202121663179U CN215230490U CN 215230490 U CN215230490 U CN 215230490U CN 202121663179 U CN202121663179 U CN 202121663179U CN 215230490 U CN215230490 U CN 215230490U
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sterilization
sterilization machine
water
vibration
machine
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CN202121663179.0U
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张浩远
余银祥
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Luohe Weilong Biotechnology Co Ltd
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Luohe Weilong Biotechnology Co Ltd
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Abstract

The utility model discloses a novel sterilization system, which comprises a dynamic scale, a sterilization machine, a water separation cooling mechanism, a vibration dewatering mechanism and a drying mechanism, wherein the right end of the dynamic scale is provided with the sterilization machine, the discharge end of the dynamic scale is fixedly connected with the feed end of the sterilization machine, five temperature-measuring and heat-supplementing connecting pipes are equidistantly arranged on the front side of the sterilization machine, material conveyors are respectively arranged at the right ends of the sterilization machine and the water-selective cooling mechanism, the discharge end of the material conveyor connected with the sterilization machine is positioned right above the feed end of the water separation cooling mechanism, the novel sterilization system can carry out independent compensation adjustment aiming at the temperatures of different sterilization areas, and simultaneously can carry out temperature large-cycle adjustment on the whole inside of the sterilization area, but also can recycle the heat energy generated by the hot water discharged from the water separation tank, and can fully dry the sterilized materials.

Description

Novel sterilization system
Technical Field
The utility model relates to a mechanical technical field that disinfects specifically is a novel sterilization system.
Background
The sterilization refers to a measure that all microorganisms inside and outside any object can lose the growth and reproduction capacity of the microorganisms forever by adopting strong physical and chemical factors, and the common sterilization methods comprise chemical reagent sterilization, ray sterilization, dry heat sterilization, moist heat sterilization, filtration sterilization and the like;
during sterilization and disinfection, materials are usually put into water with higher temperature for more than half an hour for sterilization, and then are rapidly cooled, so that bacteria can be killed through rapid heat and cold changes, and the purpose of sterilization is achieved;
the existing sterilization system cannot perform independent compensation adjustment on the temperatures of different sterilization areas, cannot perform temperature large-cycle adjustment on the whole inside of the sterilization area, cannot reuse heat energy generated by hot water discharged outwards from a water separation tank, and cannot perform sufficient drying on sterilized materials well.
SUMMERY OF THE UTILITY MODEL
In view of the problem that exists among the prior art, the utility model discloses a novel sterilization system, the technical scheme of adoption is, including dynamic balance, sterilization machine, water selection cooling body, vibration dewatering mechanism and stoving mechanism, the right-hand member of dynamic balance is provided with the sterilization machine, and the discharge end of dynamic balance carries out fixed connection with the feed end of sterilization machine, the front side equidistance of sterilization machine is provided with five temperature measurement benefit hot connecting pipes, sterilization machine and water selection cooling body's right-hand member is provided with material conveyer respectively, with the discharge end of the material conveyer that the sterilization machine is connected is located water selection cooling body feed end directly over, with the discharge end of the material conveyer that water selection cooling body connects is located vibration dewatering mechanism feed end directly over, the discharge end of vibration dewatering mechanism is located stoving mechanism feed end directly over. Through the setting of dynamic balance, the sterilization machine, water selects cooling body, vibration dewatering mechanism and stoving mechanism, thereby constitute this sterilization system, five temperature measurement points through the inside setting of sterilization machine carry out the temperature measurement and detect, make the mixture of outside steam and water carry to sterilization machine inside through the temperature measurement concurrent heating connecting pipe of different subsections, thereby carry out the segmentation concurrent heating to the inside of sterilization machine, when the inside front and back section difference in temperature of sterilization machine is great, then the temperature measurement concurrent heating connecting pipe mends heat to the inside of sterilization machine simultaneously, make its inside water carry out the whole circulation.
As the utility model discloses a novel preferred technical scheme of sterilization system, the inside of water selection cooling body is provided with water selection pond and cooling bath, and is disjunctor structure between water selection pond and the cooling bath. The integrated structure design of the water separation tank and the cooling tank is adopted, so that the occupied space of the system is saved.
As the utility model discloses a novel preferred technical scheme of sterilization system, vibration dewatering mechanism is provided with two, and the inside of vibration dewatering mechanism is provided with vibrating motor, vibration respectively and removes pond and guide plate, the vibration removes the front and back both sides middle part in pond and is provided with two sets of vibrating motor of bilateral symmetry respectively, the vibration removes and is provided with two sets of guide plates respectively under the pond. Through vibrating motor operation, make the vibration remove the pond and take place the vibration to get rid of the big pearl that drips on the material, through the setting of guide plate, the big pearl that drips that will get rid of carries out the drainage.
As the utility model discloses a novel preferred technical scheme of sterilization system, stoving mechanism contains stoving case, conveying mesh belt, first drying fan, second drying fan, air exit and hot-blast connecting pipe, the inboard from the top down equidistance of stoving case is provided with three groups of conveying mesh belt, the right side top of stoving case is provided with three first drying fan, the left side bottom difference bilateral symmetry of stoving case is provided with second drying fan, the top center of stoving case is provided with the air exit, the front side right-hand member of stoving case is provided with hot-blast connecting pipe. Through the operation of first drying fan, at first dry to the material on the inboard top of stoving case and the middle part conveying mesh belt, through the operation of second drying fan, dry once more to the material that removes to on the bottom of the stoving case conveying mesh belt, through the setting of hot-blast connecting pipe to carry the hot-blast of outside heat exchanger conversion to the stoving incasement, discharge port through setting up on the stoving case with the hot-blast discharge of internal circulation a lot of.
As the utility model discloses a novel preferred technical scheme of sterilization system, the machine of disinfecting is the totally enclosed formula structure, the feed inlet and the discharge gate department at both ends are provided with water curtain sealing device respectively about the machine of disinfecting, the bottom of the machine of disinfecting is provided with the support frame. Through the sterilization machine for the totally enclosed structure, can prevent that the inside steam and the heat of sterilization machine from outwards flowing, through the water curtain sealing device that both ends set up about the sterilization machine, can reduce the outside loss of steam and the heat of sterilization machine feed inlet and discharge gate department, be provided with the bridge structure that goes out heat through the junction between support frame and the sterilization machine, make the bottom of sterilization machine have better thermal-insulated effect.
The utility model has the advantages that: the utility model carries out temperature measurement detection through five temperature measurement points arranged inside the sterilization machine, so that the mixture of external steam and water is conveyed into the sterilization machine through the temperature measurement heat compensation connecting pipes which are segmented differently, thereby carrying out segmented heat compensation on the inside of the sterilization machine, when the temperature difference between the front section and the rear section of the inside of the sterilization machine is large, the temperature measurement heat compensation connecting pipes simultaneously carry out heat compensation on the inside of the sterilization machine, so that the water inside the sterilization machine carries out integral circulation, through the integral structure design of the water separation tank and the cooling tank, thereby saving the occupied space of the system, through the bubbles which are obliquely arranged backwards at the bottom of the inner side of the water separation tank and the bottom of the cooling tank and at the feeding end, thereby preventing the material accumulation at the feeding end of the water separation cooling mechanism from occurring, through the operation of a first drying fan, firstly, the materials on the top of the inner side of a drying box and the conveying net belt in the middle part are dried for the first time, and through the operation of a second drying fan, the materials moving to the conveying net belt at the bottom of the drying box are dried again, heat energy generated by hot water discharged outwards from the water separation tank is converted into hot air through the external heat exchanger, and then the hot air is conveyed to the inside of the drying box through the hot air connecting pipe, so that energy is recycled, and finally the hot air which is circulated for multiple times is discharged through the discharge port arranged on the drying box.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of the top view of the sterilizer of the present invention;
FIG. 3 is a schematic structural view of the water separation cooling mechanism of the present invention;
FIG. 4 is a schematic structural view of the vibration dewatering mechanism of the present invention;
FIG. 5 is a schematic view of the structure of the drying mechanism of the present invention;
fig. 6 is the utility model discloses the stoving mechanism looks sideways at the structural schematic.
In the figure: the device comprises a dynamic scale 1, a sterilizer 2, a water-selecting cooling mechanism 3, a water-selecting pool 31, a cooling pool 32, a vibration dewatering mechanism 4, a vibration motor 41, a vibration dewatering pool 42, a guide plate 43, a drying mechanism 5, a drying box 51, a conveying mesh belt 52, a first drying fan 53, a second drying fan 54, an air outlet 55, a hot air connecting pipe 56, a support frame 6, a temperature-measuring and heat-supplementing connecting pipe 7, a material conveyor 8 and a water curtain sealing device 9.
Detailed Description
Example 1
As shown in figures 1 to 6, the utility model discloses a novel sterilization system, which adopts the technical proposal that the sterilization system comprises a dynamic scale 1, a sterilization machine 2, a water separation cooling mechanism 3, a vibration water removal mechanism 4 and a drying mechanism 5, the right end of the dynamic scale 1 is provided with the sterilization machine 2, the discharge end of the dynamic scale 1 is fixedly connected with the feed end of the sterilizer 2, five temperature-measuring and heat-compensating connecting pipes 7 are equidistantly arranged on the front side of the sterilizer 2, the right ends of the sterilizer 2 and the water-separation cooling mechanism 3 are respectively provided with a material conveyor 8, the discharge end of a material conveyor 8 connected with the sterilizing machine 2 is positioned right above the feed end of the water separation cooling mechanism 3, the discharge end of a material conveyor 8 connected with the water separation cooling mechanism 3 is positioned right above the feed end of the vibration dewatering mechanism 4, and the discharge end of the vibration dewatering mechanism 4 is positioned right above the feed end of the drying mechanism 5. Through dynamic balance 1, sterilization machine 2, water selects cooling body 3, the setting of vibration dewatering mechanism 4 and drying mechanism 5, thereby constitute this sterilization system, setting through dynamic balance 1, can collect and transmit output data, carry out the temperature measurement through five temperature measurement points that sterilization machine 2 is inside to be set up and detect, make the mixture of outside steam and water carry to sterilization machine 2 inside through the temperature measurement concurrent heating connecting pipe 7 of different segmentations, thereby carry out the segmentation concurrent heating to sterilization machine 2's inside, when sterilization machine 2's inside front and back section difference in temperature is great, then temperature measurement concurrent heating connecting pipe 7 carries out the concurrent heating to sterilization machine 2's inside, make its inside water carry out the whole circulation, through the setting of material conveyer 8, carry the material after processing to in the processingequipment.
The inside of the water separation cooling mechanism 3 is provided with a water separation pool 31 and a cooling pool 32, and a connected structure is arranged between the water separation pool 31 and the cooling pool 32. Through water selection pond 31 and cooling tank 32 integral type structural design to save the occupation of land space of this system, select pond 31 and cooling tank 32 inboard bottom and feed end department to the tympanic bulla that sets up to the rear to one side through water, thereby guarantee that the material can be even move to material conveyer 8 department, and can prevent effectively that the material accumulational condition from taking place to appear in water selection cooling body 3 feed end department.
The vibration dewatering mechanism 4 is provided with two, and the inside of vibration dewatering mechanism 4 is provided with vibrating motor 41, vibration dewatering pool 42 and guide plate 43 respectively, and the front and back both sides middle part of vibration dewatering pool 42 is bilateral symmetry respectively and is provided with two sets of vibrating motor 41, is provided with two sets of guide plate 43 under the vibration dewatering pool 42 respectively. Through vibrating motor 41 operation, make the vibration remove the pond 42 and take place the vibration, remove the inside corrugated bushing structure of two-layer setting from top to bottom in pond 43 through the vibration, can effectively get rid of the big drop on the material, through the setting of guide plate 43, carry out the drainage with the big drop who gets rid of.
The drying mechanism 5 comprises a drying box 51, a conveying mesh belt 52, a first drying fan 53, a second drying fan 54, an air outlet 55 and a hot air connecting pipe 56, three groups of conveying mesh belts 52 are arranged on the inner side of the drying box 51 at equal distances from top to bottom, three first drying fans 53 are arranged on the top of the right side of the drying box 51, the second drying fans 54 are respectively arranged on the bottom of the left side of the drying box 51 in a bilateral symmetry manner, the air outlet 55 is arranged in the center of the top of the drying box 51, and the hot air connecting pipe 56 is arranged at the right end of the front side of the drying box 51. The operation of the first drying fan 53 firstly dries the materials on the top and the middle part of the inner side of the drying box 51 on the conveying net belt 52, the operation of the second drying fan 54 dries the materials on the conveying net belt 52 moving to the bottom of the drying box 51 again, in the operation process of the first drying fan 53 and the second drying fan 54, the heat energy generated by the hot water discharged outside from the water separation tank 31 is converted into hot air through an external heat exchanger, and then the hot air is conveyed to the inside of the drying box 51 through a hot air connecting pipe 56, so that the energy is reused, and finally the hot air circulated for multiple times is discharged through a discharge port 55 arranged on the drying box 51.
The sterilization machine 2 is of a full-sealed structure, water curtain sealing devices 9 are respectively arranged at the feed inlet and the discharge outlet at the left end and the right end of the sterilization machine 2, and a support frame 6 is arranged at the bottom of the sterilization machine 2. Be the totally enclosed structure through sterilization machine 2, can prevent sterilization machine 2 inside steam and the outside outflow of heat, sterilization machine 2's the outside heat preservation adopts the aluminium silicate respectively simultaneously, nanometer gasbag and polyurethane structure, thereby further improve sterilization machine 2's heat preservation effect, be provided with the bridge structure that goes out heat through the junction between support frame 6 and the sterilization machine 2, make sterilization machine 2's bottom have better heat-insulating effect, and then prevent heat transfer to other metals that directly link with sterilization machine 2 outside, water curtain sealing device 9 through sterilization machine 2 left and right sides both ends setting, can reduce sterilization machine 2 feed inlet and the outside loss of steam and heat of discharge gate department.
The utility model discloses a theory of operation: firstly, materials are measured and calculated by a dynamic scale 1, so that the yield data of the materials are obtained, the materials fall into a sterilization machine 2, temperature measurement detection is carried out through five temperature measurement points arranged in the sterilization machine 2, a mixture of external steam and water is conveyed into the sterilization machine 2 through temperature measurement and heat compensation connecting pipes 7 which are segmented differently, so that segmented heat compensation is carried out on the inside of the sterilization machine 2, when the temperature difference between the front section and the rear section of the inside of the sterilization machine 2 is large, the temperature measurement and heat compensation connecting pipes 7 simultaneously carry out heat compensation on the inside of the sterilization machine 2, so that the water in the inside of the sterilization machine is integrally circulated, the outward loss of the steam and the heat at the feed inlet and the discharge outlet of the sterilization machine 2 can be reduced through water curtain sealing devices 9 arranged at the left end and the right end of the sterilization machine 2, a heat-extinguishing bridge structure is arranged at the connecting part between the sterilization machine 2 and a supporting frame 6, so that the bottom of the sterilization machine 2 has a better heat insulation effect, meanwhile, the outer heat-insulating layer of the sterilization machine 2 is respectively of aluminum silicate, nano airbag and polyurethane structures, so that the heat-insulating effect of the sterilization machine 2 is further improved, the material is conveyed into the water separation cooling mechanism 3 through the material conveyor 8 connected to the right side of the sterilization machine 2, the integral structure design of the water separation tank 31 and the cooling tank 32 is adopted, so that the occupied space of the system is saved, the material can uniformly move towards the material conveyor 8 through the bubbles obliquely arranged at the bottom of the inner sides of the water separation tank 31 and the cooling tank 32 and at the feeding end, the material accumulation at the feeding end of the water separation cooling mechanism 3 can be effectively prevented, when the material is conveyed into the vibration water removal tank 42, the vibration water removal tank 42 vibrates through the operation of the vibration motor 41, and the corrugated leakage plate structures arranged at the upper layer and the lower layer inside the water removal tank 43 are removed through vibration, can effectively get rid of the big drop on the material, setting through guide plate 43, the big drop that will get rid of carries out the drainage, when the material falls on the conveying mesh belt 52 of stoving case 51 inboard top, through the operation of first drying fan 53, at first dry the material on stoving case 51 inboard top and middle part conveying mesh belt 52, through the operation of second drying fan 54, remove to the material on the conveying mesh belt 52 of stoving case 51 bottom and dry again, in the operation of first drying fan 53 and second drying-machine 54, through external heat exchanger with the outside heat exchanger heat energy conversion that hot water produced of discharging outside of water separation tank 31 to hot-blast, then carry to the inside of stoving case 51 through hot-blast connecting pipe 56, thereby make the energy obtain the reuse, at last through the discharge port 55 that sets up on stoving case 51 with the hot-blast discharge of inside circulation many times.
The utility model relates to a circuit connection is the conventional means that technical staff adopted in this field, and accessible limited number of tests obtains the technological inspiration, belongs to the widely used prior art.
Components not described in detail herein are prior art.
Although the present invention has been described in detail with reference to the specific embodiments, the present invention is not limited to the above embodiments, and various changes can be made without departing from the spirit of the present invention within the knowledge range of those skilled in the art, and modifications or variations without creative efforts are still within the scope of the present invention.

Claims (5)

1. A novel sterilization system is characterized by comprising a dynamic scale (1), a sterilization machine (2), a water-selective cooling mechanism (3), a vibration water-removing mechanism (4) and a drying mechanism (5), wherein the right end of the dynamic scale (1) is provided with the sterilization machine (2), the discharge end of the dynamic scale (1) is fixedly connected with the feed end of the sterilization machine (2), five temperature-measuring and heat-supplementing connecting pipes (7) are equidistantly arranged on the front side of the sterilization machine (2), the right ends of the sterilization machine (2) and the water-selective cooling mechanism (3) are respectively provided with a material conveyor (8), the discharge end of the material conveyor (8) connected with the sterilization machine (2) is positioned right above the feed end of the water-selective cooling mechanism (3), the discharge end of the material conveyor (8) connected with the water-selective cooling mechanism (3) is positioned right above the feed end of the vibration water-removing mechanism (4), the discharge end of the vibration dewatering mechanism (4) is positioned right above the feed end of the drying mechanism (5).
2. The novel sterilization system according to claim 1, wherein: the water separation cooling mechanism (3) is internally provided with a water separation pool (31) and a cooling pool (32), and a connected structure is arranged between the water separation pool (31) and the cooling pool (32).
3. The novel sterilization system according to claim 1, wherein: vibration dewatering mechanism (4) are provided with two, and the inside of vibration dewatering mechanism (4) is provided with vibrating motor (41), vibration dewatering pond (42) and guide plate (43) respectively, the vibration is removed pond (42) around both sides middle part respectively bilateral symmetry and is provided with two sets of vibrating motor (41), be provided with two sets of guide plate (43) respectively under vibration dewatering pond (42).
4. The novel sterilization system according to claim 1, wherein: drying mechanism (5) contain stoving case (51), conveying mesh belt (52), first drying fan (53), second drying fan (54), air exit (55) and hot-blast connecting pipe (56), the inboard equidistance from the top down of stoving case (51) is provided with three groups conveying mesh belt (52), the right side top of stoving case (51) is provided with three first drying fan (53), the left side bottom difference bilateral symmetry of stoving case (51) is provided with second drying fan (54), the top center of stoving case (51) is provided with air exit (55), the front side right-hand member of stoving case (51) is provided with hot-blast connecting pipe (56).
5. The novel sterilization system according to claim 1, wherein: the sterilization machine (2) is of a full-sealed structure, water curtain sealing devices (9) are respectively arranged at the feed inlet and the discharge outlet at the left end and the right end of the sterilization machine (2), and a support frame (6) is arranged at the bottom of the sterilization machine (2).
CN202121663179.0U 2021-07-21 2021-07-21 Novel sterilization system Active CN215230490U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121663179.0U CN215230490U (en) 2021-07-21 2021-07-21 Novel sterilization system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121663179.0U CN215230490U (en) 2021-07-21 2021-07-21 Novel sterilization system

Publications (1)

Publication Number Publication Date
CN215230490U true CN215230490U (en) 2021-12-21

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Application Number Title Priority Date Filing Date
CN202121663179.0U Active CN215230490U (en) 2021-07-21 2021-07-21 Novel sterilization system

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CN (1) CN215230490U (en)

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