CN105330132B - A kind of ultra-thin flat glass overflow former of metal structure - Google Patents

A kind of ultra-thin flat glass overflow former of metal structure Download PDF

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Publication number
CN105330132B
CN105330132B CN201510876837.7A CN201510876837A CN105330132B CN 105330132 B CN105330132 B CN 105330132B CN 201510876837 A CN201510876837 A CN 201510876837A CN 105330132 B CN105330132 B CN 105330132B
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China
Prior art keywords
pedestal
baffle
overflow
glass
metal
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CN201510876837.7A
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CN105330132A (en
Inventor
彭寿
方强
张治民
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Bengbu Glass Industry Design and Research Institute
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Bengbu Glass Industry Design and Research Institute
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Abstract

The present invention relates to a kind of ultra-thin flat glass overflow former of metal structure, including pedestal(1), pedestal one end is provided with first baffle(5), the other end be provided with second baffle(2), second baffle is provided with glass metal inlet(2a), pedestal top is provided with overflow launder(1b), overflow launder(1b)With glass metal inlet(2a)It is interconnected, provided with two symmetrical guide faces on the downside of pedestal(1c), the lower end of two guide faces is intersected and forms shaping rib(1d), it is characterised in that the pedestal(1)With guide face(1c)The integral structure being made for heating resisting metal.It is reliable and stable the beneficial effects of the present invention are simple in construction, not only increase former machining accuracy, the sheet thickness for being molded overflow is uniform, but also the efficiency of overflow shaping is accelerated, the production cycle of plate glass is shortened, the service life of pedestal is extended.

Description

A kind of ultra-thin flat glass overflow former of metal structure
Technical field
The present invention relates to the production equipment of manufacture ultra-thin flat glass, more particularly to a kind of ultra-thin panel of metal structure Glass overflow former.
Background technology
At present, in plate glass especially ultra-thin flat glass manufacture field, main moulding process has overflow downdraw, slotted eye Glass tube down-drawing, float glass process etc..In overflow downdraw, slotted eye glass tube down-drawing moulding process, all the glass metal of high temperature is drawn using former Plate glass plate is made.Existing former mainly includes pedestal, overflow launder, barricade and inlet etc. and constituted, and wherein pedestal is Solid fire proof material brick is constituted, in order to produce big width, ultra-thin flat glass, it is necessary to be strict with former physical dimension, by In the machining accuracy difference and surface roughness control difficulty of fire proof material brick, the development of technology is constrained.
The content of the invention
It is an object of the invention to solve, existing overflow former structure precision is poor and surface roughness controls difficult ask Topic, and a kind of ultra-thin flat glass overflow former of metal structure is provided.
The purpose of the present invention is achieved by the following technical programs:
A kind of ultra-thin flat glass overflow former of metal structure, including pedestal, pedestal one end is provided with first baffle, another One end is provided with second baffle, and second baffle is provided with glass metal inlet, and pedestal top is provided with overflow launder, overflow launder and glass metal Inlet is interconnected, and provided with two symmetrical guide faces on the downside of pedestal, the lower end of two guide faces is intersected and formed into Type rib, it is characterised in that the pedestal and the integral structure that guide face is that heating resisting metal is made.
The pedestal and its guide face are the integral structure that is made of heat resisting steel, wherein the pedestal that is contacted with glass metal and leading Stream interface is required to the processing by surface roughness, its surface roughness value is less than the surface roughness value of fire proof material brick, And pedestal and the guide face frictional force between glass metal respectively are ensure that, so as to improve the machining accuracy of whole pedestal, make to overflow The efficiency and precision for flowing shaping are improved.
On the basis of above-mentioned technical proposal, the present invention can also have technical scheme further below.
It is provided with the pedestal in cavity, cavity provided with the coolant circulated, to reduce the pedestal of whole metal Surface temperature, makes whole pedestal to bear the high temperature of glass metal, extends the service life of pedestal.
The coolant inlet connected with cavity is additionally provided with the second baffle, first baffle is provided with and connected with cavity Coolant outlet, cooling back installation is provided with outside pedestal, cooling back installation one end is mutually interconnected with coolant inlet Logical, its other end is interconnected with coolant outlet.
The cooling back installation includes drive device, drive device one end and coolant inlet by pipeline communication, The other end is connected with cooler, and cooler one end passes through pipe with drive device by pipeline communication, the other end and coolant outlet Road is connected.
The coolant is tin liquor.
The drive device is the commercially available linear electric motors in market.
It is reliable and stable the beneficial effects of the present invention are simple in construction, former machining accuracy is not only increased, makes overflow The sheet thickness of shaping is uniform, but also accelerates the efficiency of overflow shaping, shortens the production cycle of plate glass, extends The service life of pedestal.
The invention will be further described with embodiment for explanation below in conjunction with the accompanying drawings.
Brief description of the drawings
Fig. 1 is main structure diagram of the present invention;
Fig. 2 is Fig. 1 A-A section mplifying structure schematic diagrams.
Embodiment
As shown in figure 1, a kind of ultra-thin flat glass overflow former of the metal structure provided for the present invention, including pedestal 1, pedestal 1 is interior to be provided with cavity 1e, cavity 1e provided with the coolant 3 circulated, and the one end of pedestal 1 is provided with first baffle 6, first Baffle plate 6 is interconnected provided with coolant outlet 6a, coolant outlet 6a and cavity 1e, and the other end of pedestal 1 is provided with second Baffle plate 2, second baffle 2 is provided with the second baffle 2 below glass metal inlet 2a, glass metal inlet 2a and is additionally provided with cooling Liquid inlet 2b, coolant inlet 2a and cavity 1e are interconnected, and the outside of pedestal 1 is provided with cooling back installation 4, circulating cooling Device 4 includes drive device 4a, and drive device 4a one end is connected with coolant inlet 2 by pipeline 5, and drive device 4a is another End is connected with cooler 4b, and cooler 4b one end is connected with drive device 4a by pipeline 5, and the cooler 4b other ends draw with coolant Outlet 6a is connected by pipeline 5, and the upside of pedestal 1 is provided with overflow inclined-plane 1a, and the top of pedestal 1 is provided with and glass metal inlet 2a Intersect interconnected overflow launder 1b, lower end of the downside of pedestal 1 provided with two symmetrical guide face 1c, two guide face 1c And shaping rib 1d is formed, the pedestal 1 is the heat-resisting integral structure being just made with guide face 1c.
Glass metal is injected into overflow launder 1b through glass metal inlet 2a, at the same time, is started drive device 4a, is made cooling Liquid 3 is circulated through pipeline 5 between cavity 1e and cooler 4b, so as to reduce the temperature for the whole pedestal 1 that heating resisting metal is made Degree, overflows after glass metal fills overflow launder 1b, and the glass metal of spilling is under the characteristic effect of itself and Action of Gravity Field, through overflowing Flow inclined-plane 1a to flow along the corresponding both sides outer wall of pedestal 1, when glass metal flow to guide face 1c, due to pedestal and guide face 1c surfaces Roughness value is low so that the frictional force between glass metal and pedestal, guide face is also low, so as to accelerate the flow velocity of glass metal, together When also reduce the overflow thickness of glass metal, most make it that the glass metal of the corresponding sides of two guide face 1c is mutual through being molded rib 1d afterwards Bonding, forms glass plate in uniform thickness.

Claims (2)

1. a kind of ultra-thin flat glass overflow former of metal structure, including pedestal(1), pedestal one end is provided with first baffle (6), the other end be provided with second baffle(2), second baffle is provided with glass metal inlet(2a), pedestal top is provided with overflow launder (1b), overflow launder(1b)With glass metal inlet(2a)It is interconnected, provided with two symmetrical guide faces on the downside of pedestal (1c), the lower end of two guide faces is intersected and forms shaping rib(1d), it is characterised in that:
The pedestal(1)With guide face(1c)The integral structure being made for heating resisting metal, wherein the pedestal contacted with glass metal And guide face is required to the processing by surface roughness, its surface roughness value is set to be less than the surface roughness of fire proof material brick Value, and ensure that pedestal and the guide face frictional force between glass metal respectively;
The pedestal(1)It is interior to be provided with cavity(1e), cavity(1e)It is interior provided with the coolant circulated(3);
Second baffle(2)On be additionally provided with and cavity(1e)The coolant inlet of connection(2b), first baffle(6)It is provided with and sky Chamber(1e)The coolant outlet of connection(6a), pedestal(1)Outside is provided with cooling back installation(4), cooling back installation(4)One End and coolant inlet(2b)It is interconnected, its other end and coolant outlet(6a)It is interconnected;
Cooling back installation(4)Including drive device(4a), drive device(4a)One end and coolant inlet(2b)Pass through pipe Road(5)Connection, the other end are connected with cooler(4b), cooler(4b)One end and drive device(4a)Pass through pipeline(5)Connect, separately One end and coolant outlet(6a)Pass through pipeline(5)Connection;
Coolant(3)For tin liquor.
2. a kind of ultra-thin flat glass overflow former of metal structure according to claim 1, it is characterised in that driving Device(4a)For linear electric motors.
CN201510876837.7A 2015-12-03 2015-12-03 A kind of ultra-thin flat glass overflow former of metal structure Active CN105330132B (en)

Priority Applications (1)

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Application Number Priority Date Filing Date Title
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CN105330132A CN105330132A (en) 2016-02-17
CN105330132B true CN105330132B (en) 2017-08-29

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106673406B (en) * 2017-01-20 2019-09-03 东旭科技集团有限公司 A kind of glass production device

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4214886A (en) * 1979-04-05 1980-07-29 Corning Glass Works Forming laminated sheet glass
CN1665748A (en) * 2002-07-08 2005-09-07 旭硝子株式会社 Apparatus for manufacturing sheet glass
CN102849925A (en) * 2012-06-14 2013-01-02 湖北新华光信息材料有限公司 Optical glass strip material molding plug
CN205133390U (en) * 2015-12-03 2016-04-06 蚌埠玻璃工业设计研究院 Metallic structure's ultra -thin plate glass overflow former

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4214886A (en) * 1979-04-05 1980-07-29 Corning Glass Works Forming laminated sheet glass
CN1665748A (en) * 2002-07-08 2005-09-07 旭硝子株式会社 Apparatus for manufacturing sheet glass
CN102849925A (en) * 2012-06-14 2013-01-02 湖北新华光信息材料有限公司 Optical glass strip material molding plug
CN205133390U (en) * 2015-12-03 2016-04-06 蚌埠玻璃工业设计研究院 Metallic structure's ultra -thin plate glass overflow former

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