CN207180182U - A kind of high wet gas current waste heat recovery structure of drying machine - Google Patents

A kind of high wet gas current waste heat recovery structure of drying machine Download PDF

Info

Publication number
CN207180182U
CN207180182U CN201720477543.1U CN201720477543U CN207180182U CN 207180182 U CN207180182 U CN 207180182U CN 201720477543 U CN201720477543 U CN 201720477543U CN 207180182 U CN207180182 U CN 207180182U
Authority
CN
China
Prior art keywords
chamber
evaporator
cavity
outlet
drying
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201720477543.1U
Other languages
Chinese (zh)
Inventor
桂海燕
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
FOSHAN NANHAI JUTENG ENVIRONMENTAL PROTECTION EQUIPMENT Co Ltd
Original Assignee
FOSHAN NANHAI JUTENG ENVIRONMENTAL PROTECTION EQUIPMENT Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by FOSHAN NANHAI JUTENG ENVIRONMENTAL PROTECTION EQUIPMENT Co Ltd filed Critical FOSHAN NANHAI JUTENG ENVIRONMENTAL PROTECTION EQUIPMENT Co Ltd
Priority to CN201720477543.1U priority Critical patent/CN207180182U/en
Application granted granted Critical
Publication of CN207180182U publication Critical patent/CN207180182U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/10Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working

Abstract

The utility model discloses a kind of high wet gas current waste heat recovery structure of drying machine, including body, it is interior to be provided with drying cavity, processing chamber, processing chamber is divided into upper chamber, lower floor's chamber, top chamber, upper chamber is divided into inlet chamber and outlet chamber, is provided with condensation evaporator in processing chamber, top intracavitary is provided with heat absorption evaporator, heat absorption evaporator with code-bar, in put abutting plate and fix, heating module is provided with outlet chamber.Vortex fan is circulated by air in drying cavity and processing chamber, and when these air pass through condensation evaporator, for the effect of condensation, the moisture in air can be condensed into water droplet on condensation evaporator, so as to realize the function of dehumidifying.Code-bar, in put abut plate fixed form can play the Jing Yin effect of damping, dry air after dehumidifying passes through the heating of heating module again, becomes the air of heat, enters back into drying cavity and material is dried, the outlet of vortex fan is located at lower floor's intracavitary, can improve drying efficiency.The utility model is used for drying machine.

Description

A kind of high wet gas current waste heat recovery structure of drying machine
Technical field
It the utility model is related to a kind of high wet gas current waste heat recovery structure of drying machine.
Background technology
Existing many drying machines, due to its unreasonable structure, many heats all as moisture is lost in air, this be by Its waste heat in the course of work in drying machine can not reclaim, and cause its power consumption very big.
Utility model content
The technical problems to be solved in the utility model is:It is high to provide a kind of drying machine small, that waste heat recovery can be realized that consumes energy Wet gas current waste heat recovery structure.
The solution that the utility model solves its technical problem is:
A kind of high wet gas current waste heat recovery structure of drying machine, including body, in addition to vortex fan, body is interior to be provided with drying Chamber, drying cavity side are provided with processing chamber, condensation evaporator are provided with processing chamber, and the side of condensation evaporator is provided with damp inlet, Damp inlet connection drying cavity and processing chamber, the opposite side of condensation evaporator are provided with the outlet of processing gas, the outlet of processing gas with The entrance connection of vortex fan, the outlet of vortex fan is connected with drying cavity;
Also include demarcation strip, the inside of body is separated into processing chamber and drying cavity by demarcation strip, and the demarcation strip is provided with Processing chamber is divided into upper chamber and lower floor's chamber, coagulated in upper chamber provided with described by several through holes, the interior point cavity plate that is provided with of processing chamber Reveal evaporator, condensation evaporator is located at the middle part of point cavity plate so that upper chamber is divided into inlet chamber and outlet chamber, and damp inlet is located at In inlet chamber, the outlet of processing gas is located in outlet chamber, and lower floor's intracavitary is provided with described vortex fan, and heated mould is provided with outlet chamber Block, the outlet of vortex fan are located at lower floor's intracavitary;
The top of processing chamber is provided with top chamber, and top chamber is located at the top of upper chamber, and the heat absorption that top intracavitary is provided with tabular is evaporated Device, heat absorption evaporator stand on top intracavitary, and the code-bar being vertically arranged, code-bar and top are equipped with two vertical sides of the evaporator that absorbs heat The wall of chamber is fixedly connected, push up the upper cavity wall of chamber and/or lower cavity wall be provided with put abutting plate, in put and abut plate and evaporated with heat absorption It is fixedly connected in the middle part of device;
Heat absorption evaporator, condensation evaporator, heating condenser are connected in series;
Recovery port is provided between top chamber and upper chamber, the recovery port connection top chamber and inlet chamber, recovery port is provided with can The controlling organization for controlling recovery port to open and close, recovery port are located at the side of heat absorption evaporator.
As the further improvement of above-mentioned technical proposal, demarcation strip, the demarcation strip are provided between processing chamber and drying cavity Several through holes are provided with, the damp inlet includes several described through holes.
As the further improvement of above-mentioned technical proposal, vortex fan is located at the lower section of condensation evaporator.
As the further improvement of above-mentioned technical proposal, upper spacer is provided with upper chamber, upper chamber is divided into by upper spacer Dehumidifier passage and element placed cavity, drying cavity, dehumidifier passage, element placed cavity are set gradually, drying cavity and dehumidifier passage institute The through hole connection stated, the lower section of upper spacer and divides between cavity plate and is provided with described damp inlet, the damp inlet communication member Chamber and dehumidifier passage, condensation evaporator are located in element placed cavity.
As the further improvement of above-mentioned technical proposal, in put to abut plate and be provided with and put between two that abut plate Hot-swappable fans are fixedly connected between the vertical columns of setting, described two vertical columns.
As the further improvement of above-mentioned technical proposal, the top of the processing chamber is provided with described top chamber.
As the further improvement of above-mentioned technical proposal, evaporator medial recess of absorbing heat, the side of depression is referred to as connecting side, Code-bar and in put abut plate be each provided at connecting side, in put abut plate with absorb heat evaporator abut.
As the further improvement of above-mentioned technical proposal, code-bar has two orthogonal joint faces being vertically arranged, One of joint face is connected with the vertical side for the evaporator that absorbs heat, another joint face and the top chamber in heat absorption evaporator side Wall connection.
The beneficial effects of the utility model are:A kind of high wet gas current waste heat recovery structure of drying machine, including body, in addition to Vortex fan, body is interior to be provided with drying cavity, and drying cavity side is provided with processing chamber, and condensation evaporator is provided with processing chamber, and condensation steams The side of hair device is provided with damp inlet, and the damp inlet connection drying cavity and processing chamber, the opposite side of condensation evaporator are provided with Gas outlet is handled, the outlet of processing gas is connected with the entrance of vortex fan, and the outlet of vortex fan is connected with drying cavity;This practicality is new Type is circulated in drying cavity and processing chamber with vortex fan by air, and these air pass through condensation evaporator When, for the effect of condensation, the moisture in air can be condensed into water droplet on condensation evaporator, so as to realize the function of dehumidifying.
Also include demarcation strip, the inside of body is separated into processing chamber and drying cavity by demarcation strip, and the demarcation strip is provided with Processing chamber is divided into upper chamber and lower floor's chamber, coagulated in upper chamber provided with described by several through holes, the interior point cavity plate that is provided with of processing chamber Reveal evaporator, condensation evaporator is located at the middle part of point cavity plate so that upper chamber is divided into inlet chamber and outlet chamber, and damp inlet is located at In inlet chamber, the outlet of processing gas is located in outlet chamber, and lower floor's intracavitary is provided with described vortex fan, and heated mould is provided with outlet chamber Block, the outlet of vortex fan are located at lower floor's intracavitary;
The top of processing chamber is provided with top chamber, and top chamber is located at the top of upper chamber, and the heat absorption that top intracavitary is provided with tabular is evaporated Device, heat absorption evaporator stand on top intracavitary, and the code-bar being vertically arranged, code-bar and top are equipped with two vertical sides of the evaporator that absorbs heat The wall of chamber is fixedly connected, push up the upper cavity wall of chamber and/or lower cavity wall be provided with put abutting plate, in put and abut plate and evaporated with heat absorption It is fixedly connected in the middle part of device;Totally be fixed on top intracavitary with the code-bar evaporator that will absorb heat, and in put and abut plate and heat absorption can be steamed The middle part of hair device is fixed, and so as to reduce vibration, and is improved the integral rigidity of heat absorption evaporator, is reduced noise.
Heat absorption evaporator, condensation evaporator, heating condenser are connected in series;
Recovery port is provided between top chamber and upper chamber, the recovery port connection top chamber and inlet chamber, recovery port is provided with can The controlling organization for controlling recovery port to open and close, recovery port are located at the side of heat absorption evaporator.So, when material is excessively moist, steam Excessive concentration, when condensation evaporator has little time to carry out condensation to malaria, open recovery port and allow malaria to enter top Chamber, for the heat of this damp and hot air by heat absorption evaporator, the heat so reclaimed can be used for heating condenser to carry out air Heat again, the energy can be saved, if while absorb heat evaporimeter frosting, can also utilize moist high temperature air it is defrosted.This Utility model is used for drying machine.
Brief description of the drawings
, below will be to needed for embodiment description in order to illustrate more clearly of the technical scheme in the embodiment of the utility model The accompanying drawing to be used is briefly described.Obviously, described accompanying drawing is part of the embodiment of the present utility model, rather than entirely Portion's embodiment, those skilled in the art on the premise of not paying creative work, can also obtain it according to these accompanying drawings His design and accompanying drawing.
Fig. 1 is the overlooking the structure diagram of the utility model embodiment
Fig. 2 is the main structure diagram of the utility model embodiment;
Fig. 3 is the right side structural representation of the utility model embodiment.
Embodiment
Design, concrete structure and caused technique effect of the present utility model are carried out below with reference to embodiment and accompanying drawing Clearly and completely describe, to be completely understood by the purpose of this utility model, feature and effect.Obviously, described embodiment It is part of the embodiment of the present utility model, rather than whole embodiments, based on embodiment of the present utility model, the skill of this area The other embodiment that art personnel are obtained on the premise of not paying creative work, belong to the model of the utility model protection Enclose.In addition, all connection/annexations being previously mentioned in text, not singly refer to component and directly connect, and refer to can be according to specific reality Situation is applied, by adding or reducing couple auxiliary, to form more excellent draw bail.Each technology in the utility model is special Sign, can be with combination of interactions on the premise of not conflicting conflict.
Referring to figs. 1 to Fig. 3, this is embodiment of the present utility model, specifically:
A kind of high wet gas current waste heat recovery structure of drying machine, including body, in addition to vortex fan 104, it is provided with body Drying cavity 101, the side of drying cavity 101 are provided with processing chamber, are provided with condensation evaporator 102 in processing chamber, and the one of condensation evaporator 102 Side is provided with damp inlet, and the damp inlet connection drying cavity 101 and processing chamber, the opposite side of condensation evaporator 102 are provided with place Qi-regulating is exported, and the outlet of processing gas is connected with the entrance of vortex fan 104, and the outlet of vortex fan 104 is connected with drying cavity 101; The utility model is circulated in drying cavity and processing chamber with vortex fan by air, and these air pass through condensation During evaporator, for the effect of condensation, the moisture in air can be condensed into water droplet on condensation evaporator, so as to realize dehumidifying Function.
Also include demarcation strip 103, the inside of body is separated into processing chamber and drying cavity 101, the separation by demarcation strip 103 Plate 103 is provided with several through holes, and processing chamber is interior to be divided into upper chamber and lower floor's chamber, upper chamber provided with point cavity plate 105 by processing chamber Interior to be provided with described condensation evaporator 102, condensation evaporator 102 is located at the middle part of point cavity plate 105 so that upper chamber is divided into air inlet Chamber and outlet chamber, damp inlet are located in inlet chamber, and the outlet of processing gas is located in outlet chamber, and lower floor's intracavitary is provided with described vortex Blower fan 104, outlet chamber is interior to be provided with heating module, and the outlet of vortex fan 104 is located at lower floor's intracavitary;The heating module includes adding Reheater condenser 120, heating condenser 120 are located in outlet chamber, condensation evaporator 102, heating condenser 120, the outlet of processing gas It is sequentially arranged, condensation evaporator 102 is connected with heating condenser 120;
Provided with top chamber 108, top chamber 108 is located at the top of upper chamber, and tabular is provided with the chamber 108 of top at the top of processing chamber Absorbed heat evaporator 109, and heat absorption evaporator 109 is stood in the chamber 108 of top, is equipped with two vertical sides of the evaporator 109 that absorbs heat perpendicular The code-bar 110 directly set, code-bar 110 are fixedly connected with pushing up the wall of chamber 108, are pushed up and are set in the upper cavity wall and/or lower cavity wall of chamber 108 Put in having abut plate 111, in put abut plate 111 with heat absorption evaporator 109 middle part be fixedly connected;It will be absorbed heat evaporator with code-bar Totally be fixed on top intracavitary, and in put and abut plate and the middle part for the evaporator that absorbs heat can be fixed, so as to reduce vibration, and improve The integral rigidity of heat absorption evaporator, reduces noise.
Heat absorption evaporator 109, condensation evaporator 102, heating condenser 120 are connected in series;
Recovery port 114 is provided between top chamber 108 and upper chamber, the connection of the recovery port 114 top chamber 108 and inlet chamber, is returned Close up 114 controlling organizations opened and closed provided with controllable recovery port 114, and recovery port 114 is located at the side of heat absorption evaporator 109. So, when material is excessively moist, vapour concentration is too high, when condensation evaporator has little time to carry out condensation to malaria, opens Recovery port allows malaria to enter top chamber, and by heat absorption evaporator, the heat so reclaimed can for the heat of this damp and hot air Air is heated again for heating condenser, the energy can be saved, if while absorb heat evaporimeter frosting, can also utilize tide The air of wet high temperature defrosts to it.
The utility model is circulated in drying cavity and processing chamber with vortex fan by air, and these air During by condensation evaporator, for the effect of condensation, the moisture in air can be condensed into water droplet on condensation evaporator, so as to real The function of now dehumidifying.The utility model is used for drying machine.
Also include demarcation strip 103, the inside of body is separated into right side processing chamber and in left side drying cavity by demarcation strip 103 101, the demarcation strip 103 is provided with several through holes, point cavity plate 105 is provided with processing chamber processing chamber is divided into upper chamber with Layer chamber, upper chamber is interior to be provided with described condensation evaporator 102, and the middle part that condensation evaporator 102 is located at point cavity plate 105 causes upper strata Chamber is divided into inlet chamber and outlet chamber, and damp inlet is located in inlet chamber, and the outlet of processing gas is located in outlet chamber, and lower floor's intracavitary is provided with Described vortex fan 104, outlet chamber is interior to be provided with heating module.When malaria passes through through hole, small water droplet can be initially formed, so Small water droplet condenses on condensation evaporator and forms water droplet afterwards, can so improve dehumidification rate.And the dry air after dehumidifying Pass through the heating of heating module again, become the air of heat, enter back into drying cavity and material is dried, the outlet of vortex fan Lower floor's intracavitary is located at, because the density of hot-air is low, can up flow automatically, drying efficiency can be improved.
Upper spacer 106 is provided with upper chamber, upper chamber is divided into dehumidifier passage 107 and element placed cavity by upper spacer 106, Drying cavity 101, dehumidifier passage 107, element placed cavity are set gradually, and drying cavity 101 uses described through hole to connect with dehumidifier passage 107 It is logical, the lower section of upper spacer 106 and divide between cavity plate and be provided with described damp inlet, the damp inlet communication member chamber and dehumidifier Passage 107, condensation evaporator 102 are located in element placed cavity.Dehumidifier can be so balanced, the material allowed in drying cavity can be Even drying.
The heat absorption medial recess of evaporator 109, the side of depression are referred to as connecting side, and code-bar 110 is put abutting plate 111 with and is all provided with In connecting side, in put and abut plate 111 and abutted with the evaporator 109 that absorbs heat.So allow heat absorption evaporator to take the shape of the letter U, heat absorption can be improved and steamed The endotherm area of device is sent out, space can be also saved, reduce the appearance and size of drying machine.
For the ease of installing hot-swappable fans, in put to abut plate 111 and be provided with to put in and abut two of plate 111 intervals The vertical columns 112 of setting, hot-swappable fans 113 are fixedly connected between described two vertical columns 112.Coordinate the heat absorption of U-shaped Evaporator, heat absorption efficiency can be improved.
Because the density of cold air is big, so the automatic flow down of meeting, the top of the processing chamber is provided with described top chamber 108, so, cold air would not be collected at the outside of top chamber.
Code-bar 110 has two orthogonal joint faces being vertically arranged, one of joint face and heat absorption evaporator 109 vertical side connection, another joint face are connected with the wall of the top chamber 108 in the heat absorption side of evaporator 109.So exist Put in being allowed during installation and abut plate 111 and prop up heat absorption evaporator, then code-bar 110 holds heat absorption evaporator, can thus allow heat absorption Evaporator is firmly secured in processing chamber in the extreme.
Better embodiment of the present utility model is illustrated above, but the utility model be not limited to it is described Embodiment, those skilled in the art can also make a variety of equivalent changes on the premise of without prejudice to the utility model spirit Type or replacement, these equivalent modifications or replacement are all contained in the application claim limited range.

Claims (8)

1. a kind of high wet gas current waste heat recovery structure of drying machine, including body, it is characterised in that:Also include vortex fan(104), Drying cavity is provided with body(101), drying cavity(101)Side is provided with processing chamber, and condensation evaporator is provided with processing chamber(102), Condensation evaporator(102)Side be provided with damp inlet, the damp inlet connects drying cavity(101)And processing chamber, condensation steam Send out device(102)Opposite side be provided with processing gas outlet, processing gas outlet and vortex fan(104)Entrance connection, vortex fan (104)Outlet and drying cavity(101)Connection;
Also include demarcation strip(103), demarcation strip(103)The inside of body is separated into processing chamber and drying cavity(101), described point Dividing plate(103)Several through holes are provided with, is provided with processing chamber and divides cavity plate(105)Processing chamber is divided into upper chamber and lower floor's chamber, Described condensation evaporator is provided with upper chamber(102), condensation evaporator(102)It is located at a point cavity plate(105)Middle part cause Layer chamber is divided into inlet chamber and outlet chamber, and damp inlet is located in inlet chamber, and the outlet of processing gas is located in outlet chamber, and lower floor's intracavitary is set There is described vortex fan(104), outlet chamber is interior to be provided with heating module, vortex fan(104)Outlet be located at lower floor's intracavitary;Institute Stating heating module includes heating condenser(120), heat condenser(120)It is located in outlet chamber, condensation evaporator(102)Plus Reheater condenser(120), processing gas outlet be sequentially arranged, condensation evaporator(102)With heating condenser(120)Connection;
The top of processing chamber is provided with top chamber(108), push up chamber(108)The top of upper chamber is located at, pushes up chamber(108)It is interior to be provided with tabular Heat absorption evaporator(109), absorb heat evaporator(109)Stand on top chamber(108)Interior, absorb heat evaporator(109)Two vertical sides On be equipped with the code-bar being vertically arranged(110), code-bar(110)With pushing up chamber(108)Wall be fixedly connected, push up chamber(108)It is upper Cavity wall and/or lower cavity wall put abutting plate in being provided with(111), in put abutting plate(111)With the evaporator that absorbs heat(109)Middle part consolidate Fixed connection;
Absorb heat evaporator(109), condensation evaporator(102), heating condenser(120)It is connected in series;
Push up chamber(108)Recovery port is provided between upper chamber(114), the recovery port(114)Connection top chamber(108)And air inlet Chamber, recovery port(114)It is provided with controllable recovery port(114)The controlling organization of keying, recovery port(114)It is located at heat absorption evaporator (109)Side.
A kind of 2. high wet gas current waste heat recovery structure of drying machine according to claim 1, it is characterised in that:Processing chamber is with drying Dry chamber(101)Between be provided with demarcation strip(103), the demarcation strip(103)Several through holes are provided with, the damp inlet includes Several described through holes.
A kind of 3. high wet gas current waste heat recovery structure of drying machine according to claim 1, it is characterised in that:Vortex fan (104)It is located at condensation evaporator(102)Lower section.
A kind of 4. high wet gas current waste heat recovery structure of drying machine according to claim 1, it is characterised in that:Set in upper chamber There is upper spacer(106), upper spacer(106)Upper chamber is divided into dehumidifier passage(107)With element placed cavity, drying cavity(101)、 Dehumidifier passage(107), element placed cavity set gradually, drying cavity(101)With dehumidifier passage(107)Connected with described through hole, Upper spacer(106)Lower section and divide cavity plate(105)Between be provided with described damp inlet, the damp inlet communication member chamber and Dehumidifier passage(107), condensation evaporator(102)It is located in element placed cavity.
A kind of 5. high wet gas current waste heat recovery structure of drying machine according to claim 1, it is characterised in that:In put abutting plate (111)It is provided with and abutting plate is put in(111)Two spaced vertical columns(112), described two fixations stand Post(112)Between be fixedly connected with hot-swappable fans(113).
A kind of 6. high wet gas current waste heat recovery structure of drying machine according to claim 1, it is characterised in that:The processing chamber Top be provided with described top chamber(108).
A kind of 7. high wet gas current waste heat recovery structure of drying machine according to claim 1, it is characterised in that:Absorb heat evaporator (109)Medial recess, the side of depression are referred to as connecting side, code-bar(110)Abutting plate is put with(111)Connecting side is each provided at, in Put abutting plate(111)With the evaporator that absorbs heat(109)Abut.
A kind of 8. high wet gas current waste heat recovery structure of drying machine according to claim 7, it is characterised in that:Code-bar(110) With two orthogonal joint faces being vertically arranged, one of joint face and heat absorption evaporator(109)Vertical side connect Connect, another joint face is with being in heat absorption evaporator(109)The top chamber of side(108)Wall connection.
CN201720477543.1U 2017-04-28 2017-04-28 A kind of high wet gas current waste heat recovery structure of drying machine Expired - Fee Related CN207180182U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720477543.1U CN207180182U (en) 2017-04-28 2017-04-28 A kind of high wet gas current waste heat recovery structure of drying machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720477543.1U CN207180182U (en) 2017-04-28 2017-04-28 A kind of high wet gas current waste heat recovery structure of drying machine

Publications (1)

Publication Number Publication Date
CN207180182U true CN207180182U (en) 2018-04-03

Family

ID=61733602

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201720477543.1U Expired - Fee Related CN207180182U (en) 2017-04-28 2017-04-28 A kind of high wet gas current waste heat recovery structure of drying machine

Country Status (1)

Country Link
CN (1) CN207180182U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106989571A (en) * 2017-04-28 2017-07-28 佛山市南海聚腾环保设备有限公司 A kind of high wet gas current waste heat recovery structure of drying machine

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106989571A (en) * 2017-04-28 2017-07-28 佛山市南海聚腾环保设备有限公司 A kind of high wet gas current waste heat recovery structure of drying machine

Similar Documents

Publication Publication Date Title
CN206583244U (en) A kind of energy saving heat pump dryer
CN102517857A (en) Heat-exchange system with waste heat recovery function for dry clothes condensation and cloths dryer
CN104805661B (en) Intelligent air can dehumidify clothes-drying device
CN104532522A (en) Air open circle heat pump type drying wardrobe
CN206891051U (en) A kind of drying machine
CN102505439A (en) Clothes drying method and clothes dryer
CN207180182U (en) A kind of high wet gas current waste heat recovery structure of drying machine
CN109855395A (en) A kind of air heat pump drying box host
CN207674830U (en) A kind of closed loop heat pump drying dehumidification system
CN106091472A (en) A kind of quasiconductor degree of depth dehumidifier
CN109855396A (en) A kind of air heat pump dryer
CN106989571A (en) A kind of high wet gas current waste heat recovery structure of drying machine
CN206891135U (en) A kind of hydrofuge structure of drying machine
CN206891050U (en) A kind of dehumidifying heat pump structure
CN105928352A (en) Flower drying and flower essential oil extracting device and process
CN106016975A (en) Box type drying device
CN206974030U (en) A kind of air source heat pump drying system
CN206974124U (en) A kind of air heat source and thermal pump drying machine force aid system
CN106931737A (en) A kind of dehumidifying heat pump structure
CN107024085A (en) A kind of drying machine
CN104807107B (en) The application method of intelligent air energy dehydrating unit
CN207180308U (en) A kind of air heat source and thermal pump drying system
CN209893835U (en) Air heat pump stoving case host computer
CN209655466U (en) A kind of sealed dehumidifier
CN106969435A (en) Air energy hygroscopic machine

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20180403

Termination date: 20200428

CF01 Termination of patent right due to non-payment of annual fee