CN213792606U - Mini led white oil high temperature curing oven - Google Patents

Mini led white oil high temperature curing oven Download PDF

Info

Publication number
CN213792606U
CN213792606U CN202022445084.3U CN202022445084U CN213792606U CN 213792606 U CN213792606 U CN 213792606U CN 202022445084 U CN202022445084 U CN 202022445084U CN 213792606 U CN213792606 U CN 213792606U
Authority
CN
China
Prior art keywords
furnace body
white oil
channel
product
high temperature
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.)
Active
Application number
CN202022445084.3U
Other languages
Chinese (zh)
Inventor
刘国宝
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.)
Suzhou Shixinda Test Equipment Co ltd
Original Assignee
Suzhou Shixinda Test 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 Suzhou Shixinda Test Equipment Co ltd filed Critical Suzhou Shixinda Test Equipment Co ltd
Priority to CN202022445084.3U priority Critical patent/CN213792606U/en
Application granted granted Critical
Publication of CN213792606U publication Critical patent/CN213792606U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Heating, Cooling, Or Curing Plastics Or The Like In General (AREA)

Abstract

The utility model relates to a mini led white oil high-temperature curing furnace, which comprises a frame, wherein a first placing space and a second placing space are arranged in the frame; the furnace body is arranged in the first placing space, an opening is formed in the front end of the furnace body, and a first channel and a second channel are respectively arranged on the two sides of the furnace body and the first placing space; the heating assembly is arranged in the furnace body and is used for solidifying the white oil on the product; the bearing mechanism is arranged on the heating assembly and used for bearing a product; the automatic door opening assembly is arranged in the opening and used for opening/closing the furnace body; exhaust system locates in the frame for the circulation of the internal gas of furnace, the utility model discloses can be automatic with the even solidification of white oil to the product in, can also be with the volatile gas discharge that produces in the solidification, can send into the furnace once more after cold and hot exchanger the heat that produces in the white oil solidification product simultaneously in, accomplish energy cycle recycle, have higher practicality and spreading value.

Description

Mini led white oil high temperature curing oven
Technical Field
The utility model belongs to the technical field of the high temperature curing stove, especially, relate to a mini led white oil high temperature curing stove.
Background
In the LED industry, a layer of white oil is required to be coated on a bare glass substrate to play a role in protecting the glass substrate, and after the white oil is coated on the glass, the glass needs to be heated and baked to enable the glue to be cured and formed; the temperature of the normal process is 160 ℃, the traditional baking process is a hot air circulation heating mode at present, namely, after a heating wire is electrified and heated to a certain temperature, hot air is covered on a glass plate through air circulation air, and therefore the purpose of baking, curing and forming white oil on a glass substrate is achieved.
However, after a long time of production, it is found that such a baking mode has some problems, and the effect of curing the white oil on the glass panel is not good because the white oil is not uniformly heated and fixed in a poor uniformity manner by firstly covering the hot air on the glass panel with the air circulation wind, and volatile gas is generated in the process of curing the white oil, and if the volatile gas is not discharged, oil drops are formed on subsequent products, so that the products are damaged and cannot be used.
SUMMERY OF THE UTILITY MODEL
The utility model discloses the purpose is in order to overcome prior art not enough and provide one kind and can be with in the white oil uniform solidification product through the hot plate to automatically with the volatile gas discharge that produces in the solidification, can send into the furnace body again after the heat recovery that produces in the solidification simultaneously, accomplished energy cyclic recovery utilization's mini led white oil high temperature curing oven.
In order to achieve the above purpose, the utility model adopts the technical scheme that: a mini led white oil high temperature curing oven, includes:
the device comprises a rack, a first storage space and a second storage space are arranged in the rack;
the furnace body is arranged in the first placing space, an opening is formed in the front end of the furnace body, and a first channel and a second channel are respectively arranged on the two sides of the furnace body and the first placing space;
the heating assembly is arranged in the furnace body and is used for solidifying the white oil on the product;
the bearing mechanism is arranged on the heating assembly and used for bearing a product;
the automatic door opening assembly is arranged in the opening and used for opening/closing the furnace body;
the exhaust system is arranged in the rack and is used for circulating gas in the furnace body;
when the automatic door opening assembly opens the furnace body, a product with white oil is placed on the bearing mechanism, and the heating assembly solidifies the white oil on the product.
Further, the exhaust system comprises a fan, and the fan is arranged in the second placing space; a heater is arranged in the fan; an air outlet of the fan is communicated with the first channel; the right end and the left end of the furnace body are respectively provided with an air inlet and an air outlet; the air inlet hole is communicated with the first channel, and the air outlet hole is communicated with the second channel; a cold-heat exchanger is arranged on one side of the fan, a first air inlet, a second air inlet, a first air outlet and a second air outlet are formed in the cold-heat exchanger, the first air inlet is communicated with the outside air, and the second air inlet is communicated with the second channel; the first air outlet is communicated with the exhaust pipe, and the second air outlet is communicated with the fan. Further, the heating assembly includes a heating panel; a plurality of heating plates are embedded in the heating panel.
Further, the bearing mechanism comprises a plurality of rows of bearing assemblies, and each row of bearing assemblies consists of six transversely arranged bearing pieces.
Further, the automatic door opening assembly includes:
the two vertical sealing strips are respectively arranged on two sides of the opening;
the transverse sealing strips are arranged in the openings;
the fixed doors are sequentially arranged in the openings from top to bottom, and are arranged above the transverse sealing strips and the vertical sealing strips;
the driving mechanisms are arranged on the furnace body and used for driving the corresponding fixed doors to open/seal the furnace body;
the two vertical sealing strips are arranged on the fixed door, and the two ends of the back face of the fixed door are respectively provided with a sealing strip. Further, the driving mechanism comprises driving components positioned on two sides of the furnace body, and the driving components comprise driving cylinders; the front end of the driving cylinder is connected with the adapter; the adaptor is connected with the hinge; the fixed door is arranged on the hinge.
Because of above-mentioned technical scheme's application, compared with the prior art, the utility model have the following advantage:
the utility model discloses the mini led white oil high temperature curing stove of scheme, overall structure is compact, can be automatically with the even solidification of white oil to the product in, can also be with the volatile gas discharge that produces in the solidification, can send into the furnace body again behind cold and heat exchanger to the heat that produces in the white oil solidification product simultaneously, has accomplished energy cycle recycle, has higher practicality and spreading value.
Drawings
The technical scheme of the utility model is further explained by combining the attached drawings as follows:
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is an enlarged view of portion A of FIG. 1;
fig. 3 is a partial side view of the present invention;
FIG. 4 is an enlarged view of portion B of FIG. 3;
FIG. 5 is a schematic view of the internal structure of the present invention;
FIG. 6 is a schematic structural view of the carrying mechanism;
FIG. 7 is a schematic perspective view of the furnace body;
wherein: the automatic door opening device comprises a frame 1, a furnace body 2, a heating assembly 3, an automatic door opening assembly 4, a bearing piece 5, a first channel 21, a second channel 22, an exhaust hole 24, a vertical sealing strip 40, a transverse sealing strip 41, a fixed door 42, a driving cylinder 43, an adapter piece 44, a hinge 45, a fan 60, a heater 61, a cold-heat exchanger 62, a heat exchanger 63, an air outlet 64, a first air inlet 620, a second air inlet 621, an exhaust pipe 622 and a second air outlet 623.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
Referring to the attached drawings 1-7, the mini led white oil high temperature curing oven of the present invention comprises a frame 1, an oven body 2, a heating assembly 3, a bearing mechanism, an automatic door opening assembly 4 and an exhaust system; a first placing space and a second placing space which are distributed up and down are arranged in the rack 1; the furnace body 2 is arranged in the first placing space, an opening is formed in the front end of the furnace body 2, and the automatic door opening assembly 4 is arranged in the opening and used for opening or closing the furnace body; a first channel 21 and a second channel 22 are respectively arranged on the furnace body 2 and two sides of the first placing space; the heating assembly is arranged in the furnace body 2 and is used for solidifying the white oil on the product; the bearing mechanism is arranged on the heating assembly and used for bearing a product; the exhaust system is arranged in the frame 1 and is used for ensuring the circulation of gas in the furnace body 2; after the furnace body 2 is opened by the automatic door opening assembly 4, a product with white oil is placed on the bearing mechanism, the white oil is solidified on the product by the heating assembly, and gas in the furnace body 2 is circulated through the exhaust system.
As a further preferred embodiment, the heating assembly 3 comprises a heating panel 30; fifteen heating plates 31 are embedded in the heating panel 30, fifteen heating plates 31 are distributed in the heating panel 30 in four rows, and high-temperature curing can be stably carried out on the product by utilizing the heating plates 31.
As a further preferred embodiment, the carrying mechanism comprises four rows of carrying assemblies, each row of carrying assemblies is composed of six transversely arranged carrying pieces 5, and a plurality of carrying pieces are used for carrying the product, so that the stability of the product during high-temperature curing is ensured.
As a further preferred embodiment, the automatic door opening assembly 4 includes a vertical sealing strip 40, a lateral sealing strip 41, a fixed door 42, and a driving mechanism; the two vertical sealing strips 40 are respectively vertically arranged on two sides of the opening; a plurality of the transverse sealing strips 41 are arranged in the opening; the plurality of fixed doors 42 are sequentially arranged in the opening from top to bottom, and the fixed doors 42 are arranged above the transverse sealing strips 41 and the vertical sealing strips 40; the plurality of driving mechanisms are arranged on the furnace body 2 and are used for driving the corresponding fixed doors 42 to open/seal the furnace body; each of the transverse sealing strips 41 is located at the back between the two fixed doors 42, two ends of the back of each fixed door 42 are respectively arranged on the two vertical sealing strips 40, and the transverse sealing strips 41 and the vertical sealing strips 40 can play a role in sealing the furnace body. The driving mechanism comprises driving components positioned at two sides of the furnace body 2, and the driving components comprise driving cylinders 43; the front end of the driving cylinder is connected with the adaptor 44; the adaptor 44 is connected with a hinge 45; the fixed door 42 is provided on a hinge 45.
In the time of actual work, when the product that will treat the solidification is added in furnace body 2 as required, it begins work to drive actuating cylinder, it drives hinge 45 and rotates forward to drive actuating cylinder drive connecting piece, then utilize hinge 45 to drive corresponding fixed door 42 and move forward, thereby open in the furnace body 2, the manual work is put into on bearing the piece with the product of treating the solidification, then fixed door 42 self-closing again, thereby can realize the high temperature curing processing of product, repeat above-mentioned operation in proper order, can open a plurality of fixed doors and put into in proper order a plurality of products and carry out high temperature estimation curing processing on bearing the piece, and after product processing is accomplished, open fixed door equally, then take out the product can.
As a further preferred embodiment, the exhaust system comprises a fan 60, and the fan 60 is arranged in the second placing space; a heater 61 is arranged in the fan 60; an air outlet 64 of the fan 60 is communicated with the first channel 21; a plurality of air inlets (not shown in the figure) and a plurality of air outlets 24 are respectively arranged at the right end and the left end of the furnace body 2; the air inlet hole is communicated with the first channel 21, and the air outlet hole 24 is communicated with the second channel 22; a cold-heat exchanger 62 is arranged on the left side of the fan 60, the cold-heat exchanger 62 is provided with a first air inlet 620, a second air inlet 621, a first air outlet and a second air outlet 623, the first air inlet 621 is communicated with the outside air, and the second air inlet 621 is communicated with the second channel 22; the first air outlet (not shown) is communicated with the exhaust pipe 622, and the second air outlet 623 is communicated with the fan 60.
During operation, the fan generates wind power and then sends the wind power out of the air outlet 64, the sent wind is heated by the heater and then enters the first channel 21, enters the furnace body through the plurality of air inlets and is finally discharged from the air outlet 24, so that circulation of gas in the furnace body is ensured, the temperature of the gas heated by the heater is high, the low temperature of white oil solidification in the furnace body caused by low temperature is avoided, and the stability of white oil solidification is ensured.
Because the white oil is solidified on the product at high temperature, volatile waste gas is released, and the volatile waste gas is discharged from the exhaust hole, and because the temperature of the discharged waste gas is higher, a cold-heat exchanger is also arranged to fully utilize the heat, and the process is as follows: the gas of the higher temperature of exhausting from the exhaust hole passes through the second passageway, then enters into cold heat exchanger via the second air inlet in, outside gas also enters into cold heat exchanger through first air inlet simultaneously, the temperature of two gases exchanges like this, the higher gas of temperature that comes out from first gas outlet directly enters into the fan, can guarantee like this that the gas in the fan guarantees higher temperature, make full use of the heat of exhaust gas, and the gas of the lower temperature that comes out from the second gas outlet directly discharges from furnace body upper portion.
The utility model discloses a mini led white oil high temperature curing stove, overall structure is compact, can be automatic with the even solidification of white oil to the product in, can also be with the volatile gas discharge that produces in the solidification, can send into the furnace body again behind cold and hot exchanger to the heat that produces in the white oil solidification product simultaneously, has accomplished energy cycle recycle, has higher practicality and spreading value.
The above is only a specific application example of the present invention, and does not constitute any limitation to the protection scope of the present invention. All the technical solutions formed by equivalent transformation or equivalent replacement fall within the protection scope of the present invention.

Claims (6)

1. A mini led white oil high temperature curing oven is characterized by comprising:
the device comprises a rack, a first storage space and a second storage space are arranged in the rack;
the furnace body is arranged in the first placing space, an opening is formed in the front end of the furnace body, and a first channel and a second channel are respectively arranged on the two sides of the furnace body and the first placing space;
the heating assembly is arranged in the furnace body and is used for solidifying the white oil on the product;
the bearing mechanism is arranged on the heating assembly and used for bearing a product;
the automatic door opening assembly is arranged in the opening and used for opening/closing the furnace body;
the exhaust system is arranged in the rack and is used for circulating gas in the furnace body;
when the automatic door opening assembly opens the furnace body, a product with white oil is placed on the bearing mechanism, and the heating assembly solidifies the white oil on the product.
2. The mini led white oil high temperature curing oven of claim 1, wherein: the exhaust system comprises a fan, and the fan is arranged in the second placing space; a heater is arranged in the fan; an air outlet of the fan is communicated with the first channel; the right end and the left end of the furnace body are respectively provided with an air inlet and an air outlet; the air inlet hole is communicated with the first channel, and the air outlet hole is communicated with the second channel; a cold-heat exchanger is arranged on one side of the fan, a first air inlet, a second air inlet, a first air outlet and a second air outlet are formed in the cold-heat exchanger, the first air inlet is communicated with the outside air, and the second air inlet is communicated with the second channel; the first air outlet is communicated with the exhaust pipe, and the second air outlet is communicated with the fan.
3. The mini led white oil high temperature curing oven of claim 1, wherein: the heating assembly comprises a heating panel; a plurality of heating plates are embedded in the heating panel.
4. The mini led white oil high temperature curing oven of claim 1, wherein: the bearing mechanism comprises a plurality of rows of bearing components, and each row of bearing components consists of six bearing parts arranged transversely.
5. The mini led white oil high temperature curing oven of claim 1, wherein the automatic door opening assembly comprises:
the two vertical sealing strips are respectively arranged on two sides of the opening;
the transverse sealing strips are arranged in the openings;
the fixed doors are sequentially arranged in the openings from top to bottom, and are arranged above the transverse sealing strips and the vertical sealing strips;
the driving mechanisms are arranged on the furnace body and used for driving the corresponding fixed doors to open/seal the furnace body;
the two vertical sealing strips are arranged on the fixed door, and the two ends of the back face of the fixed door are respectively provided with a sealing strip.
6. The mini led white oil high temperature curing oven of claim 5, wherein: the driving mechanism comprises driving components positioned on two sides of the furnace body, and the driving components comprise driving cylinders; the front end of the driving cylinder is connected with the adapter; the adaptor is connected with the hinge; the fixed door is arranged on the hinge.
CN202022445084.3U 2020-10-28 2020-10-28 Mini led white oil high temperature curing oven Active CN213792606U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022445084.3U CN213792606U (en) 2020-10-28 2020-10-28 Mini led white oil high temperature curing oven

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022445084.3U CN213792606U (en) 2020-10-28 2020-10-28 Mini led white oil high temperature curing oven

Publications (1)

Publication Number Publication Date
CN213792606U true CN213792606U (en) 2021-07-27

Family

ID=76962618

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022445084.3U Active CN213792606U (en) 2020-10-28 2020-10-28 Mini led white oil high temperature curing oven

Country Status (1)

Country Link
CN (1) CN213792606U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112156952A (en) * 2020-10-28 2021-01-01 苏州市鑫达试验设备有限公司 Mini led white oil high temperature curing oven

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112156952A (en) * 2020-10-28 2021-01-01 苏州市鑫达试验设备有限公司 Mini led white oil high temperature curing oven

Similar Documents

Publication Publication Date Title
CN106440836B (en) A kind of ceramic energy saving stove of efficient relay recycling cooling residual heat
CN213792606U (en) Mini led white oil high temperature curing oven
CN209947542U (en) Baking oven with quick cooling function for enameled wire production
CN103265167B (en) A kind of toughened glass homogenizing furnace
CN101697295A (en) Method and equipment for utilizing catalytic heat energy by microwire enamelling machine
CN107642951A (en) Hybrid heat pump drying system
CN203755016U (en) Hot air stretching setting machine
CN103017501A (en) Wet object drying method and wet object drying device
CN205180341U (en) Energy -conserving dehumidification integral type flue -cured tobacco device of intelligence convenient to installation
CN112156952A (en) Mini led white oil high temperature curing oven
CN207105868U (en) A kind of PCB energy-saving baking ovens
CN208685019U (en) A kind of box aluminum alloy heat forming furnace
CN216448574U (en) Drying system for large-scale work piece
CN105361233A (en) Intelligent energy-saving and humidity-removing integrated flue-cured tobacco device convenient to mount
CN202283022U (en) High-efficient air-source low-carbon tobacco drying device
CN215704956U (en) Vacuum wood grain transfer device of aluminium alloy
CN214537348U (en) Reverse-flow type activated carbon roasting regeneration activation tunnel kiln
CN210532862U (en) Internal circulation high-efficiency energy-saving oven
CN210718070U (en) Multistage infrared heating hot-blast furnace
CN210119100U (en) Hot air oven and oven heating device adopting same
CN203148169U (en) Full-automatic vacuum drying production line
CN203346267U (en) Novel tempered glass homogeneous furnace
CN103131839A (en) Furnace body of continuous annealing furnace
CN112082332A (en) High-temperature circulating oven with dehumidification function
CN208269640U (en) A kind of infrared ray continuous tunnel furnace

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant