CN107793014A - The cooling device of model solid glass apparatus for continuous formation - Google Patents

The cooling device of model solid glass apparatus for continuous formation Download PDF

Info

Publication number
CN107793014A
CN107793014A CN201610802947.3A CN201610802947A CN107793014A CN 107793014 A CN107793014 A CN 107793014A CN 201610802947 A CN201610802947 A CN 201610802947A CN 107793014 A CN107793014 A CN 107793014A
Authority
CN
China
Prior art keywords
cooling
coolant
cylinder pressure
mould
liquid bath
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.)
Pending
Application number
CN201610802947.3A
Other languages
Chinese (zh)
Inventor
秦文隆
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.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Priority to CN201610802947.3A priority Critical patent/CN107793014A/en
Publication of CN107793014A publication Critical patent/CN107793014A/en
Pending legal-status Critical Current

Links

Classifications

    • CCHEMISTRY; METALLURGY
    • C03GLASS; MINERAL OR SLAG WOOL
    • C03BMANUFACTURE, SHAPING, OR SUPPLEMENTARY PROCESSES
    • C03B23/00Re-forming shaped glass
    • C03B23/02Re-forming glass sheets
    • C03B23/023Re-forming glass sheets by bending
    • C03B23/03Re-forming glass sheets by bending by press-bending between shaping moulds
    • C03B23/0307Press-bending involving applying local or additional heating, cooling or insulating means

Abstract

The present invention discloses a kind of cooling device of model solid glass apparatus for continuous formation,Include the cooling cavities of the cooling zone outer rim located at model solid glass apparatus for continuous formation air-tight cavity,There is the first cooling liquid bath between cooling cavities and air-tight cavity,First cooling liquid bath has coolant inlet and cooling liquid outlet,Air-tight cavity upper end is provided with pressure device for cooling,Pressure device for cooling includes cylinder pressure and two guide rods located at cylinder pressure side,Cylinder pressure head end is provided with cooling block,Coolant pipeline is provided with the guide rod of cylinder pressure side two,The second cooling liquid bath is provided with cooling block,The second cooling liquid bath in coolant pipeline connection cooling block,One end of coolant pipeline is as coolant oral siphon road,The other end is as coolant outlet pipeline,By means of pushing for cylinder pressure,Make cooling block pressure touch tool upper end,Mould upper end is cooled down,With simultaneously to the cooling of mould upper and lower side,Avoid in mould three-dimensional glass product different because of upper and lower side cooldown rate,And the shortcomings that causing stress different and being damaged.

Description

The cooling device of model solid glass apparatus for continuous formation
Technical field
The present invention relates to the cooling device of model solid glass apparatus for continuous formation, has simultaneously cold to mould upper and lower side But, avoid in mould three-dimensional glass product because upper and lower side cooldown rate is different, and cause stress different and it is impaired the shortcomings that.
Background technology
Glass because with higher printing opacity characteristic, therefore display device (such as mobile phone, wrist-watch electronic product) multiselect its Shell as window part.It can be seen that handheld electric products surface is typically provided with glass shell, to protect the display of interiors of products Module.Glass shell is largely all the profile of flat board at present, so can form seam in the upper surface of electronic product.Again Person, because the periphery of electronic product must retain the mechanism section of one fixed width, to hold flat glass, therefore electronics The top surface of product also can not be just utilized completely.Therefore, the glass for being employed for electronic product of three-dimensional or bend glass gradually On glass housing.
Flat glass shell is easier to manufacture, and the manufacture of the glass shell with three-dimensional shape is then more not easy.At present, have The manufacture for having the glass shell of three-dimensional shape generally has two methods:The first is:The flat glass unit of multi-disc is manufactured, then The glass shell with three-dimensional shape is formed by the mode for pasting edge.It is for second:Manufacture certain thickness cuboid glass Glass, and after grinding multiple on the cuboid glass to be formed with multi-sided three-dimensional contouring.However, above-mentioned two method is equal Take time and effort, speed of production is very slow.Generally, due to glass material is a tabular, if to produce one has moulding Glass, the preferable practice is flat glass material to be arranged at into a upper mould piece and once between module, then in heating Module, lower module and glass material, so that glass material softens.When above-mentioned glass material softening, upper mould piece and lower mould Part can carry out mould assembling action, so that upper mould piece moulds the profile of glass material along a matched moulds direction and lower module jointly, so as to Produce corresponding moulded glass.TaiWan, China patent announces No. M452174, and " shaping for being used for manufacturing moulded glass is set It is standby " (the patent announcement data reference of the day for announcing 2013 year 05 month 01), it includes a parent form mold members, one first male mould Part, one second male mold members, a supporting post-rod and a depression bar.The first male mold members are arranged in a manner of retractable In the parent form mold members, the second male mold members are arranged between the parent form mold members and the first male mold members.The branch Jackstay is arranged in the parent form mold members, and the supporting post-rod is used for ejection in the second male mold members, so as to support this second Male mold members clamp a moulded glass jointly with the first male mold members.The depression bar is arranged at the first male mold members Side, the depression bar are pressed on the first male mold members under being used for, so that the first male mold members and the second male mold members A die-closed position is moved to respect to the parent form mold members, so as to being molded the moulded glass.
Applicant proposes No. M512584 " the continuously shaped dress of model solid glass of TaiWan, China patent being approved before Put ", its be for model solid glass product design the brand-new design of apparatus for continuous formation, its mainly by body of heater, interior feed track, Outer feed track, exchange system and compression system are formed, and the interior feed track is located at furnace interior, and are connected at the side of body of heater two Exchange system, outer feed track connect the exchange system of the side of body of heater two outside body of heater, and foregoing interior feed track is provided with slide rail, Using the track moved as support plate, the body of heater is closed, and imports protective gas, and has heating zone, high temperature according to processing procedure differentiation Shaping area, Huan Jiang areas and cooling zone, there is heat-resisting material and regarding warm needed for fabrication procedures in heating zone, Ji Huanjiang areas of high-temperature molding area The heating component of degree, cooling zone have cooling device, and compression system is located at high-temperature molding area, and plate glass to be formed is placed in mould In forming surface, mould is then placed on support plate, enters preheating of the body of heater through heating zone, the high temperature in high-temperature molding area make Glass Transition and by Sent out after the extrusion forming of compression system, the cooling in Zai Jinghuanjiang areas and the cooling of cooling zone outside body of heater, then be stripped and form, The effect of continuous, high efficiency and high quality shaping model solid glass can really be reached.
But the cooling device of existing model solid glass apparatus for continuous formation, in the continuously shaped dress of model solid glass The cooling zone outer rim for putting air-tight cavity sets cooling cavities, has cooling liquid bath between cooling cavities and air-tight cavity, and cooling liquid bath has cold But liquid entrance and cooling liquid outlet, because mould is placed in support plate upper end, therefore the bottom that cooling is placed in push pedal mold is only capable of, due to Mould upper end does not cool down simultaneously, causes in mould three-dimensional glass product because upper and lower side cooldown rate is different, and cause stress different and Impaired missing.The present invention proposes improvement design for this missing, makes model solid glass apparatus for continuous formation patent more perfect.
The content of the invention
The main object of the present invention is providing a kind of cooling device of model solid glass apparatus for continuous formation, including located at The cooling cavities of the cooling zone outer rim of model solid glass apparatus for continuous formation air-tight cavity, has between cooling cavities and air-tight cavity First cooling liquid bath, the first cooling liquid bath has coolant inlet and cooling liquid outlet, so as to cooling down the mould being placed on support plate Bottom, air-tight cavity upper end be provided with pressure device for cooling, pressure device for cooling include cylinder pressure and two guide rods located at cylinder pressure side, cylinder pressure head end Provided with cooling block, coolant pipeline is provided with two guide rods of cylinder pressure side, the second cooling liquid bath is provided with cooling block, is provided with guide rod Coolant pipeline connection cooling block in the second cooling liquid bath, one end of the coolant pipeline in two guide rods enters as coolant Water lines, the other end is as coolant outlet pipeline, by means of pushing for cylinder pressure, the upper end for having cooling block pressure touch, to mould Upper end cools down, to be cooled down to mould upper end, lower end simultaneously.
Present invention has the advantage that:The present invention borrows pushing for cylinder pressure, makes cooling block pressure touch tool upper end, on mould End cooling, has and mould upper and lower side is cooled down simultaneously, avoids in mould three-dimensional glass product because upper and lower side cooldown rate is different, and The shortcomings that causing stress different and being damaged.
Brief description of the drawings
Fig. 1 is front of embodiment of the present invention cut-away view;
Fig. 2 is upper end of embodiment of the present invention cut-away view;
Fig. 3 is heating zone cut-away view of the embodiment of the present invention;
Fig. 4 is high-temperature molding of embodiment of the present invention area cut-away view
Fig. 5 is cooling zone of embodiment of the present invention cut-away view;
Fig. 6 is that the embodiment of the present invention presses device for cooling cut-away view.
In figure:
1 body of heater;2 exchange systems;Gas-tight door in 20;21 outer gas-tight doors;22 airtight spaces;23 gearshifts;3 air-tight cavities;30 gas Close cavity;300 air layers;Feed track in 31;32 heating zones;33 high-temperature molding areas;34 cooling zones;35 insulation layers;36 thermal fields;37 Heating component;39 slide rails;4 outer feed tracks;5 compression systems;50 cylinder pressures;51 pressuring shafts;52 pressured columns;6 support plates;7 moulds;9 is cold But device;90 cooling cavities;900 first cooling liquid baths;901 coolant inlets;902 cooling liquid outlets;91 pressure device for cooling;910 Cylinder pressure;911 guide pillars;912 cooling blocks;913 coolant pipelines;914 second cooling liquid baths.
Embodiment
The invention will be further described with specific embodiment below in conjunction with the accompanying drawings, so that those skilled in the art can be with It is better understood from the present invention and can be practiced, but illustrated embodiment is not as a limitation of the invention.
A kind of relevant brand-new design of cooling device that apparatus for continuous formation is designed for model solid glass product of the present invention, Model solid glass apparatus for continuous formation is referred to shown in Fig. 1, Fig. 2, and it is mainly included:
Body of heater 1, it is closed, two ends of the outside of body of heater 1 are provided with exchange system 2, and the inside of body of heater 1 is provided with air-tight cavity 3;
Exchange system 2, located at the end of body of heater 1 two, outer feed track 4 is provided between the end exchange system 2 of body of heater 1 two, each exchange system 2 includes There are the interior gas-tight door 20 located at the side of body of heater 1 and the outer gas-tight door 21 located at the outer side of feed track 4, interior gas-tight door 20 and outer gas-tight door 21 Between form airtight space 22, and support plate 6 is pushed into or removed body of heater 1 provided with gearshift 23;
Air-tight cavity 3, inside body of heater 1, include air tight housing 30, there is interior feed track 31, interior conveying in air tight housing 30 Road 31 connects gas-tight door 20 in the end exchange system 2 of body of heater 1 two, and is provided with slide rail 39(Refer to Fig. 3 and Fig. 4), to be used as support plate 6 Mobile track, the air-tight cavity 3 is air hermetic, and imports protective gas(Generally inert gas, such as nitrogen;Protection gas is provided The device of body is prior art, few superfluous words), and have heating zone 32, high-temperature molding area 33 and cooling zone 34 according to processing procedure differentiation, rise At least one layer of insulation layer 35 is provided with warm area 32 and high-temperature molding area 33(It is two layers to illustrate embodiment), and the center of insulation layer 35 Thermal field 36 is formed, the heating component 37 regarding temperature needed for fabrication procedures is provided with thermal field 36(The devices such as temperature control are existing skill Art, few superfluous words), cooling zone 34 has cooling device 9, and high-pressure molding area 33 is provided with compression system 5;
Outer feed track 4, connect the end exchange system 2 of body of heater 1 two;
Compression system 5, refer to shown in Fig. 4, compression system 5 is mainly made up of cylinder pressure 50, pressuring shaft 51 and pressured column 52;
The present invention so formed, plate glass to be formed are placed in the forming surface of mould 7, and mould 7 is then placed in 6 on support plate, support plate 6 Enter air-tight cavity 3, the preheating through heating zone 32 through exchange system 2(Temperature change is avoided to damage soon very much), and high-temperature molding area 33 High temperature, make Glass Transition in mould, and be molded by means of the pressurization of compression system 5, then after the cooling of cooling zone 34, be through exchanging System 2 is sent out outside body of heater 1, then is stripped and is formed.So there is the work(of the shaping model solid glass of continuous, high efficiency and high quality Effect.
Refer to shown in Fig. 2, the present invention is located at the exchange system 2 of the side of body of heater 1 two, and each exchange system 2 includes located at stove The interior gas-tight door 20 of the side of body 1 and the outer gas-tight door 21 located at the outer side of feed track 4, gas is formed between interior gas-tight door 20 and outer gas-tight door 21 Close space 22, before support plate 6 is sent to body of heater 1, the interior gas-tight door 20 and outer gas-tight door 21 of the head end of body of heater 1 are closing, are treated airtight Vacuumized in space 22 and import protective gas to after identical environment in air-tight cavity 3(The process vacuumized can be by mould 7 Air particularly oxygen and impurity detaches in the lump), the side of gas-tight door 20 opens and support plate 6 is pushed into air-tight cavity 3 in body of heater side, works as load Before plate 6 will send out air-tight cavity 3, the interior gas-tight door 20 and outer gas-tight door 21 of body of heater tail end are closing, and in airtight space 22 Vacuumize and import protective gas to identical environment in air-tight cavity 3, the side of gas-tight door 20 opens in body of heater side is pushed into gas by support plate 6 In close space 22, so have and avoid being mixed into the outer air of stove in air-tight cavity 3, to improve the work(of three-dimensional glass assembly Forming Quality Effect.
The cooling device 9 of model solid glass apparatus for continuous formation of the present invention, applies to foregoing model solid glass product Cooling zone 34 in apparatus for continuous formation, refer to shown in Fig. 5 and Fig. 6, it is continuously shaped that it is mainly included in model solid glass The cooling cavities 90 that the outer rim of cooling zone 34 of device air-tight cavity 3 is set, has the first coolant between cooling cavities 90 and air-tight cavity 3 Groove 900, the first cooling liquid bath 900 have coolant inlet 901 and cooling liquid outlet 902, are placed in so as to cooling on support plate 6 The bottom of mould 7, the upper end of air-tight cavity 3 of the present invention are additionally provided with pressure device for cooling 91, and pressure device for cooling 91 includes cylinder pressure 910 and located at cylinder pressure Two guide rods 911 of 910 sides, the head end of cylinder pressure 910 are provided with cooling block 912, coolant pipeline are provided with the guide rod 911 of 910 side of cylinder pressure two 913, cooling block 912 is interior to be provided with the second cooling liquid bath 914, and the coolant pipeline 913 being provided with foregoing guide rod 911 simultaneously connects cooling Second cooling liquid bath 914, one end of coolant pipeline 913 in two guide rods 911 are another as coolant oral siphon road in block 912 End is used as coolant outlet pipeline, by means of pushing for cylinder pressure 910, makes cooling block 912 press touch to have 7 upper ends, cold to the upper end of mould 7 But, so have and the upper and lower side of mould 7 cooled down simultaneously, avoid in mould 7 three-dimensional glass product because upper and lower side cooldown rate is different, And the shortcomings that causing stress different and being damaged, so reach purpose of design of the present invention.
Embodiment described above is only to absolutely prove preferred embodiment that is of the invention and being lifted, protection model of the invention Enclose not limited to this.The equivalent substitute or conversion that those skilled in the art are made on the basis of the present invention, in the present invention Protection domain within.Protection scope of the present invention is defined by claims.

Claims (1)

1. a kind of cooling device of model solid glass apparatus for continuous formation, it is characterised in that including located at model solid glass The cooling cavities of the cooling zone outer rim of apparatus for continuous formation air-tight cavity, there is the first coolant between cooling cavities and air-tight cavity Groove, the first cooling liquid bath have coolant inlet and cooling liquid outlet, and the bottom so as to cooling down the mould being placed on support plate is airtight Chamber upper end is provided with pressure device for cooling, and pressure device for cooling includes cylinder pressure and two guide rods located at cylinder pressure side, and cylinder pressure head end is provided with cooling block, Coolant pipeline is provided with two guide rods of cylinder pressure side, the second cooling liquid bath, the coolant pipe being provided with guide rod are provided with cooling block The second cooling liquid bath in road connection cooling block, one end of the coolant pipeline in two guide rods is as coolant oral siphon road, separately One end by means of pushing for cylinder pressure, makes the upper end of cooling block pressure touch tool, the upper end of mould is cooled down as coolant outlet pipeline, To be cooled down to mould upper end, lower end simultaneously.
CN201610802947.3A 2016-09-06 2016-09-06 The cooling device of model solid glass apparatus for continuous formation Pending CN107793014A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201610802947.3A CN107793014A (en) 2016-09-06 2016-09-06 The cooling device of model solid glass apparatus for continuous formation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201610802947.3A CN107793014A (en) 2016-09-06 2016-09-06 The cooling device of model solid glass apparatus for continuous formation

Publications (1)

Publication Number Publication Date
CN107793014A true CN107793014A (en) 2018-03-13

Family

ID=61530508

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201610802947.3A Pending CN107793014A (en) 2016-09-06 2016-09-06 The cooling device of model solid glass apparatus for continuous formation

Country Status (1)

Country Link
CN (1) CN107793014A (en)

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1566002A (en) * 2003-06-10 2005-01-19 上海器皿模具厂 Multifunctional servo driven glass press with gears
CN1978353A (en) * 2005-12-08 2007-06-13 亚洲光学股份有限公司 Glass moulding device and its multi-layer sleeve
CN202702491U (en) * 2012-06-15 2013-01-30 蔡祥山 Automatic opening and closing mold of foam molding machine with buckling device
CN104176910A (en) * 2014-08-06 2014-12-03 佛山华兴玻璃有限公司 Method and device for automatically carrying out thermoregulation control on molding mould of I.S. machine
CN104445878A (en) * 2013-09-17 2015-03-25 东芝机械株式会社 Device for forming glass product
CN104684855A (en) * 2012-09-28 2015-06-03 东芝机械株式会社 Molding device and molding method
CN205170648U (en) * 2015-09-28 2016-04-20 秦文隆 Continuous forming device of three -dimensional glass of model
CN205528422U (en) * 2016-01-30 2016-08-31 深圳大宇精雕科技有限公司 Discharging device of hot bender

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1566002A (en) * 2003-06-10 2005-01-19 上海器皿模具厂 Multifunctional servo driven glass press with gears
CN1978353A (en) * 2005-12-08 2007-06-13 亚洲光学股份有限公司 Glass moulding device and its multi-layer sleeve
CN202702491U (en) * 2012-06-15 2013-01-30 蔡祥山 Automatic opening and closing mold of foam molding machine with buckling device
CN104684855A (en) * 2012-09-28 2015-06-03 东芝机械株式会社 Molding device and molding method
CN104445878A (en) * 2013-09-17 2015-03-25 东芝机械株式会社 Device for forming glass product
CN104176910A (en) * 2014-08-06 2014-12-03 佛山华兴玻璃有限公司 Method and device for automatically carrying out thermoregulation control on molding mould of I.S. machine
CN205170648U (en) * 2015-09-28 2016-04-20 秦文隆 Continuous forming device of three -dimensional glass of model
CN205528422U (en) * 2016-01-30 2016-08-31 深圳大宇精雕科技有限公司 Discharging device of hot bender

Similar Documents

Publication Publication Date Title
CN205170648U (en) Continuous forming device of three -dimensional glass of model
CN206736078U (en) Air hermetic continuous hot-press shaped device
CN205328855U (en) Continuous forming device of three -dimensional model glass
TWM536234U (en) Airtight continuous forming device for molding three-dimensional glass
CN207657165U (en) Air hermetic continuous hot-press molding machine
CN206188641U (en) Continuous forming device's of three -dimensional glass of model cooling device
CN208349851U (en) Transfer plate
CN107793014A (en) The cooling device of model solid glass apparatus for continuous formation
CN206188642U (en) Continuous forming device of three -dimensional glass of airtight type model
CN206188640U (en) Continuous forming device's of three -dimensional glass of model air -tight chamber thermal -break layer
TWM545272U (en) Airtight continuous hot press forming device
CN206736077U (en) The air-tight cavity of air hermetic continuous hot-press shaped device
TWI641564B (en) Transfer board
CN208038302U (en) The support device of air hermetic continuous hot-press molding machine
TWI613159B (en) Airtight cavity thermal insulation layer of molded three-dimensional glass continuous forming device
CN207422873U (en) The heating component of air hermetic continuous hot-press molding machine
TWI620721B (en) Cooling device for molding stereoscopic glass continuous forming device
TWM556733U (en) Pressure device for hermetic-type continuous hot press molding device
CN210764977U (en) Lower die with transfer part
CN106554147A (en) Model solid glass apparatus for continuous formation
TWM560387U (en) Supporting device of airtight continuous hot press molding device
TWI667206B (en) Heated heating field device under molded three-dimensional glass continuous forming device
CN107793016A (en) Air hermetic model solid glass apparatus for continuous formation
TWI685471B (en) Mould with transfer part
CN109895440A (en) The pressurizing device of air hermetic continuous hot-press molding machine

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
WD01 Invention patent application deemed withdrawn after publication
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20180313