CN106766831A - Tunnel sterilizing and drying machine and laminar flow control method - Google Patents

Tunnel sterilizing and drying machine and laminar flow control method Download PDF

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Publication number
CN106766831A
CN106766831A CN201611083412.1A CN201611083412A CN106766831A CN 106766831 A CN106766831 A CN 106766831A CN 201611083412 A CN201611083412 A CN 201611083412A CN 106766831 A CN106766831 A CN 106766831A
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CN
China
Prior art keywords
section
bringing
preheating
cooling
drying machine
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Pending
Application number
CN201611083412.1A
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Chinese (zh)
Inventor
熊森冰
曾宪喜
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Chutian Intelligent Robot (changsha) Co Ltd
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Chutian Intelligent Robot (changsha) Co Ltd
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Priority to CN201611083412.1A priority Critical patent/CN106766831A/en
Publication of CN106766831A publication Critical patent/CN106766831A/en
Pending legal-status Critical Current

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B21/00Arrangements or duct systems, e.g. in combination with pallet boxes, for supplying and controlling air or gases for drying solid materials or objects
    • F26B21/003Supply-air or gas filters
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B21/00Arrangements or duct systems, e.g. in combination with pallet boxes, for supplying and controlling air or gases for drying solid materials or objects
    • F26B21/004Nozzle assemblies; Air knives; Air distributors; Blow boxes
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B21/00Arrangements or duct systems, e.g. in combination with pallet boxes, for supplying and controlling air or gases for drying solid materials or objects
    • F26B21/02Circulating air or gases in closed cycles, e.g. wholly within the drying enclosure
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B21/00Arrangements or duct systems, e.g. in combination with pallet boxes, for supplying and controlling air or gases for drying solid materials or objects
    • F26B21/02Circulating air or gases in closed cycles, e.g. wholly within the drying enclosure
    • F26B21/04Circulating air or gases in closed cycles, e.g. wholly within the drying enclosure partly outside the drying enclosure

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Drying Of Solid Materials (AREA)

Abstract

A kind of tunnel sterilizing and drying machine of the invention and laminar flow control method, drying machine includes the preheating section, bringing-up section and the cooling section that are sequentially arranged and are connected, preheating section is provided with preheating section blast pipe, bringing-up section is provided with bringing-up section secondary air channel, cooling section is provided with surface cooler, and the delivery port of surface cooler is equiped with for the hot water of surface cooler to be guided into preheating section blast pipe and bringing-up section secondary air channel and the thermally induced flow exchange component of heat exchange is carried out in this place.Method is based on above-mentioned drying machine, start the system layer stream that thermally induced flow exchanges component and preheating section, bringing-up section and cooling section, the hot water of surface cooler on cooling section is exchanged into component through thermally induced flow and respectively enters preheating section blast pipe and bringing-up section secondary air channel, the hot-air after heat exchange is carried out in this place to, to the bottle effect in bringing-up section, the laminar-flow air in cooling section is to the bottle effect in cooling section after bottle effect, heated section of the heating in preheating section.The present invention has the advantages that energy-conserving and environment-protective, can reduce thermal explosion bottle rate.

Description

Tunnel sterilizing and drying machine and laminar flow control method
Technical field
The invention mainly relates to food, pharmacy package packing machine field, more particularly to a kind of tunnel sterilizing and drying machine and layer Method of flow control.
Background technology
Tunnel sterilizing and drying machine is generally divided into Wind-cooling type dryer and water-cooling type dryer, and wherein water-cooling type tunnel type goes out Bacterium drying machine is generally divided into three job steps, and it is preheating section, bringing-up section, cooling section, and preheating section uses outer circulation pattern, i.e., from Fresh air is adopted in indoor or outdoor, and corresponding PROCESS FOR TREATMENT heel row is being carried out to container medicine bottle to outdoor, bringing-up section and cooling section Using interior circulation, i.e., a small amount of from the outside to mend wind, the most hot-air of high temperature section and cooling section major part cold air are circulated Utilize.Cooler device wherein is set in cooling fragment position, for lowering the temperature to circulated air.
There is following defect and deficiency in the drying machine of said structure:1st, the origin of heat of its preheating section is the heat sky of high temperature section Gas but pressure difference stabilization in order to ensure each section and distinguished and admirable is not wadded a quilt with cotton by the air door overflow of preheating section and high temperature section Disorderly, throttle opening can not be opened infinitely greatly, thus the thermal Finite for overflowing, cause the temperature of preheating section relatively low, medicine bottle enters high Due to there is larger temperature difference after temperature section, it is easy to cause the phenomenon of thermal explosion bottle, especially for the container medicine bottle of thin-walled, but Preheating section typically is inconvenient to set heater because being limited by its space, causes this phenomenon not can solve.2nd, table is cold The water of device outlet pipe is by having temperature higher after certain heat exchange(Usually 60 to 80 spend), and this high-temperature water is often Arranged to outdoor by external water pipe, do not carry out effective heat energy recycle;In addition the benefit of the air intake of preheating section and high temperature section Wind is also all to adopt cold wind from indoor or outdoor, on the premise of corresponding dry and sterilizing is met, necessarily increases heating tube Energy ezpenditure.Therefore such effective utilization for being unfavorable for the energy, fail to play the effect of energy-conserving and environment-protective.3rd, dryer bottle outlet Temperature requirement is especially low, notably may require that bottle outlet temperature less than room temperature, under normal circumstances for water-cooling type dryer, bottle outlet temperature General 8 degree higher than room temperature or so, the benefit wind for current dryer cooling section is that interior or outdoor are collected folk songs, this part it is distinguished and admirable It is that the cooling technique for directly carrying out bottle without the cooling effect of surface cooler is processed, to a certain extent to the final bottle outlet of bottle There is influence in temperature.
The content of the invention
The technical problem to be solved in the present invention is to overcome the deficiencies in the prior art, there is provided a kind of energy-conserving and environment-protective, can reduce heat The tunnel sterilizing and drying machine and laminar flow control method of bottle explosion rate.
In order to solve the above technical problems, the present invention uses following technical scheme:
A kind of tunnel sterilizing and drying machine, including preheating section, bringing-up section and the cooling section for being sequentially arranged and being connected, the preheating section Preheating section blast pipe is provided with, the bringing-up section is provided with bringing-up section secondary air channel, and the cooling section is provided with surface cooler, the surface cooler Delivery port is equiped with for the hot water of surface cooler to be guided into preheating section blast pipe and bringing-up section secondary air channel and heat is carried out in this place The thermally induced flow of exchange exchanges component.
As the further improvement of above-mentioned technical proposal:
The thermally induced flow exchanges component includes hot water mozzle and heat exchanger, and described hot water mozzle one end goes out with surface cooler Mouth of a river connection, the other end are extended in preheating section blast pipe and bringing-up section secondary air channel and are equiped with the heat exchanger respectively.
The hot water mozzle includes cooling section drainpipe, preheating section water inlet pipe, bringing-up section water inlet pipe, three-way connection, institute Stating heat exchanger includes preheating section heat exchanger and bringing-up section heat exchanger, and described cooling section drainpipe one end goes out with surface cooler The mouth of a river connection, the other end and three-way connection connection, described preheating section water inlet pipe one end is connected with three-way connection, the other end extend it is pre- It is connected in hot arc blast pipe and with preheating section heat exchanger, described bringing-up section water inlet pipe one end is connected with three-way connection, the other end Extend in bringing-up section secondary air channel and be connected with bringing-up section heat exchanger.
Flow control valve is provided with the preheating section water inlet pipe and bringing-up section water inlet pipe.
Thermal insulation casing is coated with outside the cooling section drainpipe, preheating section water inlet pipe and bringing-up section water inlet pipe.
The cooling section is provided with cooling section secondary air channel, and cooling section heat exchanger is equiped with the cooling section secondary air channel.
In the preheating section, bringing-up section and cooling section a shared active conveying bottle track is provided with by bottom position.
A kind of laminar flow control method based on above-mentioned tunnel sterilizing and drying machine, starts thermally induced flow and exchanges component and pre- The system layer stream of hot arc, bringing-up section and cooling section, exchanges the hot water of surface cooler on cooling section component and respectively enters through thermally induced flow Preheating section blast pipe and bringing-up section secondary air channel, carry out the hot-air after heat exchange to bottle effect, the warp in preheating section in this place The bottle in bringing-up section is acted on after the heating of bringing-up section, corresponding laminar-flow air is made to the bottle in cooling section in cooling section With.
As the further improvement of above-mentioned technical proposal:
Distinguished and admirable the first passing through after heat exchange is lowered the temperature filled into from outside cooling section is entered back into cooling section.
Compared with prior art, the advantage of the invention is that:
Tunnel sterilizing and drying machine of the invention, including preheating section, bringing-up section and the cooling section for being sequentially arranged and being connected, preheating section Preheating section blast pipe is provided with, bringing-up section is provided with bringing-up section secondary air channel, and cooling section is provided with surface cooler, and the delivery port of surface cooler is equiped with For the hot water of surface cooler to be guided into preheating section blast pipe and bringing-up section secondary air channel and the thermally induced flow of heat exchange is carried out in this place Exchange component.In the structure, exchange component through thermally induced flow from the hot water of surface cooler discharge and mended in preheating section blast pipe and bringing-up section Heat exchange is carried out with distinguished and admirable at airduct, preheating section and bringing-up section are entered after distinguished and admirable intensification, effectively the heat energy to surface cooler is carried out Recycle, decrease the load of bringing-up section heater, be so effectively reduced the loss of energy, be conducive to heat Recycling;The air quantity for preheating fragment position can be heated up, and substantially increase the laminar flow of preheating section container medicine bottle position chamber Air temperature, so as to improve the temperature of container medicine bottle, reduces the temperature difference into after bringing-up section, greatly reduces by temperature difference mistake Thermal explosion bottle probability caused by big.The laminar flow control method of tunnel sterilizing and drying machine of the invention, possesses above-mentioned tunnel sterilizing The corresponding technique effect of drying machine.
Brief description of the drawings
Fig. 1 is the structural representation of tunnel sterilizing and drying machine of the present invention.
Fig. 2 is the structural representation of each laminar flow section connection of tunnel sterilizing and drying machine of the present invention.
Each label is represented in figure:
1st, preheating section;11st, preheating section blast pipe;12nd, low efficient filter component is preheated;13rd, preliminary heating zone flow fan;14th, pre- hot blast Cover;15th, high efficiency particulate air filter is preheated;16th, exhaust outlet is preheated;2nd, bringing-up section;21st, bringing-up section secondary air channel;22nd, holder assembly is heated;23、 Resisting blower;24th, bringing-up section fan housing component;25th, hi-temp hi-effective filter;26th, return air mount structure;27th, exhaust blower component;3、 Cooling section;31st, surface cooler;32nd, cooling section secondary air channel;321st, cooling section heat exchanger;33rd, cooling section low efficient filter;34th, it is cold But laminar flow fan assembly;35th, cooling section fan housing component;36th, cooling section high efficiency particulate air filter;37th, from return air component;38th, blast is put down Weighing apparatus air draft component;4th, thermally induced flow exchanges component;41st, hot water mozzle;411st, cooling section drainpipe;412nd, preheating section water inlet pipe; 413rd, bringing-up section water inlet pipe;414th, three-way connection;42nd, heat exchanger;421st, preheating section heat exchanger;422nd, bringing-up section heat exchange Device;43rd, flow control valve;44th, thermal insulation casing;5th, active conveying bottle track.
Specific embodiment
The present invention is described in further details below with reference to Figure of description and specific embodiment.
As depicted in figs. 1 and 2, a kind of embodiment of tunnel sterilizing and drying machine of the present invention, including be sequentially arranged and be connected Preheating section 1, bringing-up section 2 and cooling section 3, preheating section 1 is provided with preheating section blast pipe 11, and bringing-up section 2 is provided with bringing-up section secondary air channel 21, cooling section 3 is provided with surface cooler 31, and the delivery port of surface cooler 31 is equiped with for the hot water of surface cooler 31 to be guided into preheating section Blast pipe 11 and bringing-up section secondary air channel 21 simultaneously carry out the thermally induced flow of heat exchange and exchange component 4 in this place.It is cold from table in the structure The hot water of the discharge of device 31 exchanges component 4 and carries out heat with distinguished and admirable at preheating section blast pipe 11 and bringing-up section secondary air channel 21 through thermally induced flow Exchange, preheating section 1 and bringing-up section 2 are entered after distinguished and admirable intensification, effectively the heat energy to surface cooler 31 is recycled, and is also subtracted Lack the load of the heater of bringing-up section 2, be so effectively reduced the loss of energy, be conducive to the recycling of heat;In advance The air quantity of the position of hot arc 1 can be heated up, and substantially increase the laminar flow air temperature of the container medicine bottle position chamber of preheating section 1, so that The temperature of container medicine bottle is improve, the temperature difference into after bringing-up section 2 is reduced, greatly reduced by heat caused by excessive temperature differentials Bottle explosion probability.
In the present embodiment, thermally induced flow exchanges component 4 includes hot water mozzle 41 and heat exchanger 42, hot water mozzle 41 1 End is connected with the delivery port of surface cooler 31, the other end extends preheating section blast pipe 11 respectively and bringing-up section secondary air channel 21 is interior and fills It is provided with heat exchanger 42.In the structure, the hot water discharged from the delivery port of surface cooler 31 flow to preheating section through hot water mozzle 41 In heat exchanger 42 in blast pipe 11 and bringing-up section secondary air channel 21, i.e., with this at it is distinguished and admirable carry out heat exchange, after distinguished and admirable intensification Into preheating section 1 and bringing-up section 2, effectively the heat energy to surface cooler 31 is recycled, and is decreased bringing-up section 2 and is heated The load of device, while reducing by thermal explosion bottle probability caused by excessive temperature differentials.
In the present embodiment, hot water mozzle 41 includes that cooling section drainpipe 411, preheating section water inlet pipe 412, bringing-up section are intake Pipe 413, three-way connection 414, heat exchanger 42 include preheating section heat exchanger 421 and bringing-up section heat exchanger 422, cooling section row The one end of water pipe 411 is connected with the delivery port of surface cooler 31, the other end and three-way connection 414 are connected, the one end of preheating section water inlet pipe 412 It is connected with three-way connection 414, the other end is extended in preheating section blast pipe 11 and is connected with preheating section heat exchanger 421, bringing-up section The one end of water inlet pipe 413 is connected with three-way connection 414, the other end is extended in bringing-up section secondary air channel 21 and with bringing-up section heat exchanger 422 connections.In the structure, the hot water discharged from the delivery port of surface cooler 31 is through cooling section drainpipe 411 at three-way connection 414 Shunting is formed, heated section of water inlet pipe 413 of a part of hot water carries out heat exchange, another part into bringing-up section heat exchanger 422 Then preheated section of water inlet pipe 412 carries out heat exchange to hot water into preheating section heat exchanger 421.
In the present embodiment, flow control valve 43 is provided with preheating section water inlet pipe 412 and bringing-up section water inlet pipe 413.Should Flow control valve 43 is used to control the size of preheating section water inlet pipe 412 and the water of bringing-up section water inlet pipe 413, that is, realize to feeding Each section of control of amount of heat.
In the present embodiment, coated outside cooling section drainpipe 411, preheating section water inlet pipe 412 and bringing-up section water inlet pipe 413 There is thermal insulation casing 44.The thermal insulation casing 44 is insulation material, can prevent heat losses, further increases the utilization rate of heat.
In the present embodiment, cooling section 3 is provided with cooling section secondary air channel 32, cooling section secondary air channel 32 and is equiped with cooling section heat Exchanger 321.What is flowed into the cooling section heat exchanger 321 is chilled water, is acted on similar to surface cooler 31, can be mended cooling section Cooling section 3 is sent into after the wind cooling of the feeding of airduct 32, to ensure that bottle outlet temperature is adapted with room temperature.
In the present embodiment, a shared active conveying bottle track is provided with by bottom position in preheating section 1, bringing-up section 2 and cooling section 3 5.In the structure, the continuous service of active conveying bottle track 5, bottle be placed on active conveying bottle track 5 preheated section 1 successively, bringing-up section 2 and cooling Section 3 carries out laminar flow treatment.
Laminar flow control method based on above-mentioned tunnel sterilizing and drying machine of the invention, starts thermally induced flow and exchanges component 4 And the system layer stream of preheating section 1, bringing-up section 2 and cooling section 3, the hot water of surface cooler 31 on cooling section 3 is exchanged through thermally induced flow Component 4 respectively enters preheating section blast pipe 11 and bringing-up section secondary air channel 21, and the hot-air after heat exchange is carried out in this place to preheating To the bottle effect in bringing-up section 2 after bottle effect, heated section 2 of heating in section 1, corresponding laminar flow is empty in cooling section 3 Gas is acted on the bottle in cooling section 3.Component 4 is exchanged in preheating section blast pipe 11 through thermally induced flow from the hot water of the discharge of surface cooler 31 Heat exchange is carried out with distinguished and admirable with bringing-up section secondary air channel 21, preheating section 1 and bringing-up section 2 is entered after distinguished and admirable intensification, effectively to table The heat energy of cooler 31 is recycled, and decreases the load of the heater of bringing-up section 2, is so effectively reduced energy Loss, be conducive to the recycling of heat;The air quantity of the position of preheating section 1 can be heated up, and substantially increase the container of preheating section 1 The laminar flow air temperature of medicine bottle position chamber, so as to improve the temperature of container medicine bottle, reduces the temperature into after bringing-up section 2 Difference, greatly reduces by thermal explosion bottle probability caused by excessive temperature differentials.
In the present embodiment, distinguished and admirable the first passing through after heat exchange is lowered the temperature filled into from outside cooling section 3 is entered back into cooling section 3. Installing cooling section heat exchanger 321, cooling section in cooling section secondary air channel 32, cooling section secondary air channel 32 are set i.e. on cooling section 3 What is flowed into heat exchanger 321 is chilled water, and effect is similar to surface cooler 31, the wind cooling that can be sent into cooling section secondary air channel 32 Cooling section 3 is sent into afterwards, to ensure that bottle outlet temperature is adapted with room temperature.
The laminar flow control of preheating section 1 is as follows:
The distinguished and admirable use outer circulation pattern of preheating section 1, from preheated section of heat exchanger 421 of air that preheating section blast pipe 11 enters Effect forms hot-air, enters residing for preliminary heating zone flow fan 13 by after the preliminary filtering for preheating low efficient filter component 12 Vacuum chamber, enters pre- air bells cap 14 and uniform vertical blows to preheating high efficiency filter under the absorption load of preliminary heating zone flow fan 13 Device 15, the mobile container medicine bottle in the top of active conveying bottle track 5 is vertically blowed to by the laminar-flow air of high efficiency filter, and heat-exploding is carried out to it The pre-heating technique of bottle is processed, and hereafter laminar winds are given by preheating exhaust outlet 16 into the slag air draft hull assembly 6 of each section of bottom To discharge preheating section 1.
The laminar flow control of bringing-up section 2 is as follows:
The distinguished and admirable use interior circulation pattern of bringing-up section 2, the air for entering from the position of bringing-up section secondary air channel 21 a little(Heated section of heat The effect of exchanger 422 forms hot-air)With substantial amounts of circulate in the wind through heating holder assembly 22 heating after in resisting blower Entered under 23 absorption load in bringing-up section fan housing component 24 and vertically blow to hi-temp hi-effective filter 25, by high efficiency filter Laminar-flow air vertically blow to the mobile container medicine bottle in the top of active conveying bottle track 5, be dried and sterilize the technique for removing thermal source to it Treatment, hereafter laminar winds are by entering next work cycle after the return air mount structure 26 of bringing-up section 2.Wherein due to bringing-up section 2 Beginning portion position air humidity it is larger, exhaust blower component 27 generally is set in bottom and is discharged the hot and humid air in part High temperature section 2.
The laminar flow control of cooling section 3 is as follows:
The distinguished and admirable use interior circulation pattern of cooling section 3, a small amount of extraneous air enters and through cooling section from cooling section secondary air channel 32 Cold air is formed after the cooling of heat exchanger 321, by after the preliminary filtering of cooling section low efficient filter 33 and substantial amounts of inside Blow to during circulated air enters cooling section fan housing component 35 under the absorption load of cooling layer flow fan component 34 and vertically cooling section High efficiency particulate air filter 36, the mobile container medicine bottle in the top of active conveying bottle track 5 is vertically blowed to by the laminar-flow air of high efficiency filter, and it is entered The PROCESS FOR TREATMENT that cools of row, hereafter laminar winds cooling section from the presence of return air component 37 by the cooling of surface cooler 31 Enter next work cycle afterwards.In addition whole machine pressure balance air draft component 38 is provided with the afterbody of cooling section 3, it is whole for balancing Machine(Especially preheating section 1 and cooling section 3)Inside blast size.
Although the present invention is disclosed as above with preferred embodiment, but is not limited to the present invention.It is any to be familiar with ability The technical staff in domain, in the case where technical solution of the present invention scope is not departed from, all using the technology contents pair of the disclosure above Technical solution of the present invention makes many possible variations and modification, or the Equivalent embodiments for being revised as equivalent variations.Therefore, it is every Without departing from the content of technical solution of the present invention, according to the technology of the present invention essence to any simple modification made for any of the above embodiments, Equivalent variations and modification, all should fall in the range of technical solution of the present invention protection.

Claims (10)

1. a kind of tunnel sterilizing and drying machine, including the preheating section for being sequentially arranged and being connected(1), bringing-up section(2)And cooling section (3), the preheating section(1)It is provided with preheating section blast pipe(11), the bringing-up section(2)It is provided with bringing-up section secondary air channel(21), it is described Cooling section(3)It is provided with surface cooler(31), it is characterised in that:The surface cooler(31)Delivery port be equiped with for by surface cooler (31)Hot water be guided to preheating section blast pipe(11)With bringing-up section secondary air channel(21)And the thermally induced flow of heat exchange is carried out in this place Exchange component(4).
2. tunnel sterilizing and drying machine according to claim 1, it is characterised in that:The thermally induced flow exchanges component(4)Bag Include hot water mozzle(41)And heat exchanger(42), the hot water mozzle(41)One end and surface cooler(31)Delivery port connect Connect, the other end extends preheating section blast pipe respectively(11)With bringing-up section secondary air channel(21)It is interior and be equiped with the heat exchanger (42).
3. tunnel sterilizing and drying machine according to claim 2, it is characterised in that:The hot water mozzle(41)Including cold But section drainpipe(411), preheating section water inlet pipe(412), bringing-up section water inlet pipe(413), three-way connection(414), the heat exchange Device(42)Including preheating section heat exchanger(421)With bringing-up section heat exchanger(422), the cooling section drainpipe(411)One end With surface cooler(31)Delivery port connection, the other end and three-way connection(414)Connection, the preheating section water inlet pipe(412)One end With three-way connection(414)Connection, the other end extend preheating section blast pipe(11)It is interior and with preheating section heat exchanger(421)Connection, The bringing-up section water inlet pipe(413)One end and three-way connection(414)Connection, the other end extend bringing-up section secondary air channel(21)It is interior and with Bringing-up section heat exchanger(422)Connection.
4. tunnel sterilizing and drying machine according to claim 3, it is characterised in that:The preheating section water inlet pipe(412)With Bringing-up section water inlet pipe(413)On be provided with flow control valve(43).
5. tunnel sterilizing and drying machine according to claim 4, it is characterised in that:The cooling section drainpipe(411), it is pre- Hot arc water inlet pipe(412)With bringing-up section water inlet pipe(413)Outside is coated with thermal insulation casing(44).
6. tunnel sterilizing and drying machine according to any one of claim 1 to 5, it is characterised in that:The cooling section(3) It is provided with cooling section secondary air channel(32), the cooling section secondary air channel(32)Inside it is equiped with cooling section heat exchanger(321).
7. tunnel sterilizing and drying machine according to any one of claim 1 to 5, it is characterised in that:The preheating section (1), bringing-up section(2)And cooling section(3)It is interior to be provided with a shared active conveying bottle track by bottom position(5).
8. tunnel sterilizing and drying machine according to claim 7, it is characterised in that:The preheating section(1), bringing-up section(2) And cooling section(3)It is interior to be provided with a shared active conveying bottle track by bottom position(5).
9. a kind of laminar flow control method of the tunnel sterilizing and drying machine based on any one of claim 1 to 8, its feature It is:Start thermally induced flow and exchange component(4)And preheating section(1), bringing-up section(2)And cooling section(3)System layer stream, will cool down Section(3)Upper surface cooler(31)Hot water through thermally induced flow exchange component(4)Respectively enter preheating section blast pipe(11)Mended with bringing-up section Airduct(21), the hot-air after heat exchange is carried out in this place to preheating section(1)Interior bottle effect, heated section(2)Heating Afterwards to bringing-up section(2)Interior bottle effect, cooling section(3)Interior corresponding laminar-flow air is to cooling section(3)Interior bottle effect.
10. the laminar flow control method of tunnel sterilizing and drying machine according to claim 9, it is characterised in that:From cooling section (3)Distinguished and admirable the first passing through after heat exchange is lowered the temperature that outside fills into enters back into cooling section(3)It is interior.
CN201611083412.1A 2016-11-30 2016-11-30 Tunnel sterilizing and drying machine and laminar flow control method Pending CN106766831A (en)

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CN107114121A (en) * 2017-06-17 2017-09-01 发贵科技(贵州)有限公司 A kind of sterilization and inoculation integrated equipment system of the production of planting edible mushroom
CN108247979A (en) * 2017-12-28 2018-07-06 天津浩迪得丰科技有限公司 A kind of recycled plastic granulating machine
CN109078199A (en) * 2017-06-14 2018-12-25 发贵科技(贵州)有限公司 A kind of sterilizing tunnel oven equipment of automatic inspection rejects
CN110926178A (en) * 2019-12-13 2020-03-27 江苏迎阳无纺机械有限公司 Hot air oven with waste heat recovery function

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CN204359098U (en) * 2014-11-25 2015-05-27 楚天科技股份有限公司 A kind of tunnel sterilizing and drying machine
CN205482162U (en) * 2016-04-12 2016-08-17 中国医药集团重庆医药设计院 Energy -saving tunnel oven
CN105928359A (en) * 2016-06-06 2016-09-07 楚天科技股份有限公司 Box structure for tunnel sterilizing dryer and laminar flow control method of box
CN206291702U (en) * 2016-11-30 2017-06-30 楚天智能机器人(长沙)有限公司 Tunnel sterilizing and drying machine

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109078199A (en) * 2017-06-14 2018-12-25 发贵科技(贵州)有限公司 A kind of sterilizing tunnel oven equipment of automatic inspection rejects
CN107114121A (en) * 2017-06-17 2017-09-01 发贵科技(贵州)有限公司 A kind of sterilization and inoculation integrated equipment system of the production of planting edible mushroom
CN107114121B (en) * 2017-06-17 2019-09-10 发贵科技(贵州)有限公司 A kind of sterilizing of the production of planting edible mushroom-inoculation integrated equipment system
CN108247979A (en) * 2017-12-28 2018-07-06 天津浩迪得丰科技有限公司 A kind of recycled plastic granulating machine
CN110926178A (en) * 2019-12-13 2020-03-27 江苏迎阳无纺机械有限公司 Hot air oven with waste heat recovery function
CN110926178B (en) * 2019-12-13 2024-06-11 江苏迎阳无纺机械有限公司 Hot air oven with waste heat recovery function

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