CN205687789U - A kind of multimode formed glass tempering apparatus - Google Patents

A kind of multimode formed glass tempering apparatus Download PDF

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Publication number
CN205687789U
CN205687789U CN201620547045.5U CN201620547045U CN205687789U CN 205687789 U CN205687789 U CN 205687789U CN 201620547045 U CN201620547045 U CN 201620547045U CN 205687789 U CN205687789 U CN 205687789U
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CN
China
Prior art keywords
glass
ceramic roller
tempering
multimode
dip mold
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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.)
Withdrawn - After Issue
Application number
CN201620547045.5U
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Chinese (zh)
Inventor
何列
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.)
Jiangmen Yue Sheng Metal Products Co Ltd
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Jiangmen Yue Sheng Metal Products Co Ltd
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Priority to CN201620547045.5U priority Critical patent/CN205687789U/en
Application granted granted Critical
Publication of CN205687789U publication Critical patent/CN205687789U/en
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    • 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
    • Y02P40/00Technologies relating to the processing of minerals
    • Y02P40/50Glass production, e.g. reusing waste heat during processing or shaping
    • Y02P40/57Improving the yield, e-g- reduction of reject rates

Abstract

The utility model discloses a kind of multimode formed glass tempering apparatus, including the stock shelf being arranged in order, electricity annealing furnace, shaping area, pressing district, air-cooled district and discharging area, it is separately provided on stock shelf and electricity annealing furnace carrying the rope rolling of glass and pottery rolling, shaping area is provided with multiple room, being provided with in each room can the dip mold of telescopic displacement up and down, the position directly above of dip mold is provided with tempering mould, and described pressing district is provided with the pressing mechanism consistent with tempering film quantity.This utility model by being provided with multiple tempering film and the dip mold of equal number in shaping area, make once can multiple glass be pressed, substantially increase production efficiency, reduce the time needed for production, make glass lower limb flush by the pressing mechanism in pressing district by pressing under formed glass simultaneously, avoid the need for needing glass lower limb is polished process in subsequent handling, decrease manufacturing procedure, reduce production cost.

Description

A kind of multimode formed glass tempering apparatus
Technical field
This utility model relates to design and manufacturing technology field, a kind of many mold formings of reinforced glass production facility Glass fibre reinforced plastic equipment.
Background technology
Glass tempering furnace in conventional art is generally rotary kerosene annealing furnace, first passes through and is placed on by glass by hand In lower mold, in rotary kerosene annealing furnace, all sides are placed with multiple lower mold, and glass to be formed is sent along with the rotation of lower mold Entering in annealing furnace heating, when the heated glass reaching tempering temperature passes through top die position, top die falls, and glass is pressed Making type, the glass after molding picks and places on three station rotary platforms by manual, and three station rotary platforms rotate can be by glass Band to air-cooled district carries out being quenched tempering, and the glass after quenching tempering enters next step via manual picking and placeing on product conveying belt Packaging process, this rotary kerosene annealing furnace feeding area near discharging area and is in annealing furnace, and the temperature in stove is continuous Come out, cause the operating ambient temperature residing for feeding workman and blanking workman the highest, and noise be big, the building ring of workman Border extreme difference, meanwhile, one block of glass once can only be pressed by rotary kerosene annealing furnace, and its production efficiency ratio is relatively low, And be difficult to keep concordant just through compressing its lower limb of glass out, need subsequent handling to carry out grinding process.
Utility model content
In order to overcome the deficiencies in the prior art, this utility model provides a kind of multimode formed glass tempering apparatus, and it has Compact conformation is reasonable, production efficiency is high, good work environment, be capable of the feature of full-automatic production.
The technical scheme that this utility model is used is mainly: a kind of multimode formed glass tempering apparatus, including from a left side to Stock shelf, electricity annealing furnace, shaping area, pressing district, air-cooled district and the discharging area that the right side is arranged in order, described stock shelf and electricity annealing furnace On be separately provided for carry glass rope rolling and pottery rolling;Described shaping area includes a support, support is provided with and makes pottery Porcelain rolling row and contour ceramic roller, ceramic roller along its axially arranged have left side ceramic roller, right side ceramic roller and one or more groups Middle ceramic roller, left and right side ceramic roller axially do not abut with middle ceramic roller the most respectively along it and/or multiple middle ceramic roller it Between do not abut along it and be formed with multiple room, each room is provided with can the dip mold of telescopic displacement up and down, support On be positioned at the right side of dip mold be provided with two can oscilaltion, for blocking the locating dowel of glass, the surface of dip mold Position is provided with tempering mould;Described pressing district is provided with transition bracket, and the upper surface of described transition bracket is provided with and ceramic roller Parallel asbestos cord rolling, what described asbestos cord rolled is provided above the pressing mechanism consistent with tempering film quantity.
As the improvement of technique scheme, described support is provided with the multiple elevating mechanisms corresponding with dip mold, institute Stating elevating mechanism to be arranged in all sides of dip mold, upwards can hold up glass to tempering mould position, each elevating mechanism includes four Root lifting column, every two lifting columns are fixed on a batten, and batten is connected to the outfan of cylinder, and it is program control that cylinder is fixed on left and right On regulation platform.
As the further improvement of technique scheme, described electricity annealing furnace is provided with accelerating region near side, shaping area, Described accelerating region includes sensor and accelerates drive mechanism, and described acceleration drive mechanism outfan connects the pottery of accelerating region Rolling.
Further, described stock shelf be positioned at rope the side of rolling down the multiple detent mechanisms consistent with tempering film quantity are installed, often Individual detent mechanism be provided with one can sense the close sensor of glass and two can oscilaltion, for blocking determining of glass Position bar.
Further, described tempering mould is fixedly connected on the outfan driving cylinder, and described driving cylinder is fixed on fixed mount On.
Further, described left and right side ceramic roller and middle ceramic roller are axially adjustable ceramic roller.
Further, the both sides that described support is positioned at ceramic roller are provided with many piece second ceramic rollers concordant with ceramic roller, Second ceramic roller axially penetrates through in whole support along it.
Further, described ceramic roller and two second ceramic rollers being located at least in ceramic roller both sides are provided with sprocket wheel, pottery Roller and the second ceramic roller being provided with sprocket wheel are connected by the drive shaft driving being positioned on support by chain.
The beneficial effects of the utility model are:
This utility model by being disposed over position i.e. tempering mould by the cover half of glass molding, and the dynamic model of molding sets Put at lower position i.e. dip mold, coordinate ceramic roller, locating dowel so that pass through the glass of electricity annealing furnace heating through shaping area Time, glass is risen and blocks positioning action by first locating dowel, and then dip mold rises and coordinates tempering mould pressed glass to make glass molding, Locating dowel declines simultaneously, and after glass molding, dip mold falls, and the glass of molding falls back on ceramic roller, by ceramic roller by molding Glass is transported to flatten district, and the pressing mechanism flattened in district makes glass lower limb flush by pressing under formed glass, thus avoids needing To need glass lower limb is polished process in subsequent handling, the glass after molding enters the quenching of air-cooled district from flattening district Tempering, the glass after tempering delivers to discharging area by conveyer belt, it is achieved that to the automated production of blanking after feeding, simultaneously can be by Electricity annealing furnace and shaping area be isolated in particular room so that feeding workman and quenching tempering after pickup workman with high-temperature region every From, greatly improved the working environment of workman;This utility model by being provided with multiple tempering film and phase in shaping area simultaneously Dip mold with quantity so that once multiple glass can be pressed, substantially increase production efficiency, reduce life Time needed for product, decrease production cost, drastically increase the production capacity of enterprise.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the structural representation of stock shelf;
Fig. 3 is the structural representation of shaping area;
Fig. 4 is the mounting structure schematic diagram of dip mold, locating dowel and lifting column;
Fig. 5 is the schematic diagram that dip mold is installed in ceramic roller room.
Detailed description of the invention
With detailed description of the invention, this utility model is described in further detail below in conjunction with the accompanying drawings.
Referring to figs. 1 through Fig. 5, a kind of multimode formed glass tempering apparatus of the present utility model, it includes the most successively The stock shelf 1 of arrangement, electricity annealing furnace 2, shaping area 3, flatten district 4, air-cooled district 5 and discharging area 6, described herein from left to right refer to The direction obtained with Fig. 1 view, hereinafter described direction, left, right, front and rear is all as the criterion with this visual angle.Stock shelf 1 and electricity tempering Being separately provided on stove 2 carrying the rope rolling 11 of glass and pottery rolling, rope rolling 11 can be asbestos cord rolling or rubber rolling, rope The end of rolling 11 is sprocket wheel, and the lower section of stock shelf 1 arranges a driving motor 12, drives and is provided with equally on the output shaft of motor 12 Sprocket wheel, connects the driving realizing driving motor 12 to rope rolling 11 by chain;Electricity annealing furnace 2 is used for heating glass, for Making can synchronously arrive at shaping area 3 from electricity annealing furnace 2 multiple pieces of glass out, electricity annealing furnace 2 is near shaping area 3 one as far as possible Side is provided with accelerating region, and described accelerating region includes sensor and accelerates drive mechanism 21, and described acceleration drive mechanism 21 exports End connects the pottery rolling of accelerating region, when multiple pieces of glass all enters accelerating region by sensor sensing then in electricity annealing furnace 2, accelerates Drive mechanism works, and drives the pottery rolling fast scroll of accelerating region, owing to multiple pieces of glass may during conveying in electricity annealing furnace Produce range difference in the conveying direction, and the pottery of electricity annealing furnace 2 to roll its rotating ratio relatively low, the range difference between multiple pieces of glass Multiple pieces of glass can be caused to arrive the time difference considerable influence production efficiency of shaping area, be therefore provided by accelerating region so that many Block glass can quickly be carried after entering accelerating region, is substantially reduced the time difference that range difference produces so that multiple pieces of glass can Almost to synchronously arrive at shaping area 3, thus further increase production efficiency.
In this utility model, so that multiple pieces of glass can synchronize to enter electricity annealing furnace 2, stock shelf 1 is positioned at rope and rolls down Side is provided with the multiple detent mechanisms consistent with tempering film 8 quantity, and each detent mechanism is provided with one, and can to sense glass close Sensor 13 and two can oscilaltion, for blocking the location bar 14 of glass, multiple pieces of glass is being put into feeding by workman Have time difference during frame 1, be provided by detent mechanism so that multiple pieces of glass close to during detent mechanism by sensor sensing 13 Arriving, now location bar 14 rises the multiple pieces of glass blocking successively arrival, after all glass all arrive location bar 14, positions bar 14 Decline and make multiple pieces of glass can synchronize to enter electricity annealing furnace 2.
Concrete, shaping area 3 includes support 31, support 31 is provided with pottery rolling row and contour ceramic roller 32 and Being positioned at many second ceramic rollers 39 of ceramic roller both sides, the second ceramic roller 39 axially penetrates through in whole support 31 along it, by setting Being equipped with the second ceramic roller 39 makes glass transition more steady, and ceramic roller 32 axially includes left side ceramic roller 321, right side pottery along it Porcelain roller 322 and middle ceramic roller 323, middle ceramic roller 323 can be provided with one or more groups, middle ceramic roller in the present embodiment 323 are provided with one group, and ceramic roller 32 and two second ceramic rollers 39 being located at least in ceramic roller 32 both sides are provided with sprocket wheel, pottery Roller 32 and the second ceramic roller 39 being provided with sprocket wheel are connected by the drive shaft driving being positioned on support 31 by chain, and chain is with electric The outfan of machine connects, and motor passes motion to left and right side ceramic roller 321,322 and middle ceramic roller by drive shaft 323, it is possible to ensure that the rotating speed of left and right side ceramic roller 321,322 and middle ceramic roller 323 is consistent.Left and right side ceramic roller 321, 322 do not abut and/or do not abut along it between multiple middle ceramic roller 323 along it with middle ceramic roller 323 the most respectively And be formed with multiple room, each room is provided with can the dip mold 7 of telescopic displacement up and down, support 31 is positioned at dip mold 7 Right side be provided with two can oscilaltion, for blocking the locating dowel 34 of glass, locating dowel 34 is by pneumatic control on it Lower lifting, certainly, locating dowel 34 can also have three or more.
The position directly above of each dip mold 7 is provided with tempering mould 8, and tempering mould 8 is equivalent to a cover half, and dip mold 7 is suitable In a dynamic model, by tempering mould 8 and dip mold 7 can realize glass compressing.So that tempering mould 8 can adapt to not The glass of stack pile so that glass will not interfere with tempering mould 8 when passing through below tempering mould 8, can be fixed by tempering mould 8 Being connected to drive the outfan of cylinder 81, drive cylinder 81 to be arranged on fixed mount 82, fixed mount 82 is arranged on above support 31, So when being introduced into molding procedure, can be by tempering mould 8 upwards lifting, it is to avoid it interferes with glass and ceramic roller, meanwhile, For the glass of different-thickness, scalable tempering mould 8 is apart from the height of ceramic roller, to adapt to the glass of different-thickness different model Glass.
For the glass of different model, the size of its required dip mold 7 has difference, therefore can be made pottery by described left and right side Porcelain roller 321,322 and middle ceramic roller 323 are set to axially adjustable ceramic roller, i.e. left and right side ceramic roller 321,322 and centre Ceramic roller 323 is axially movable along it, to regulate between left and right side ceramic roller 321,322 and middle ceramic roller 323 or in two Between the size in room that formed between ceramic roller 323, to adapt to the different model glass different demands to dip mold 7.
In this utility model, support 31 being provided with the multiple elevating mechanisms corresponding with dip mold 7, described elevating mechanism is arranged Being listed in all sides of dip mold 7, upwards can hold up glass to tempering mould 8 position, each elevating mechanism includes four lifting columns 33, Every two lifting columns 33 are fixed on a batten 35, and batten 35 is connected to the outfan of cylinder 36, and cylinder 36 is fixed on left and right journey On control regulation platform 37.
Glass enters behind shaping area 3, and control centre can control locating dowel 34 and rise, locating dowel 34 can by pneumatic control, by The glass that ceramic roller drives can abut with locating dowel 34, and locating dowel 34 realizes the location to glass, located after, glass just position In the position directly above of dip mold 7, now, dip mold 7 can rise under the promotion of cylinder 38 and abut glass, and glass is pushed into In tempering mould 8, and it is pressed molding under the common effect of dip mold 7 and tempering mould 8, in order to avoid dip mold 7 is rising When up being pushed up by glass, glass causes it to break away because of gravity deflection, support 31 is provided with corresponding with dip mold 7 multiple Elevating mechanism, elevating mechanism is arranged in all sides of dip mold 7, upwards can hold up glass to tempering mould 8 position, each elevator Structure includes four lifting columns 33, and every two lifting columns 33 are fixed on a batten 35, and batten 35 is connected to the output of cylinder 36 End, cylinder 36 is fixed on the program control regulation in left and right platform 37.After glass is blocked location by locating dowel 34, glass is placed exactly in liter The position directly above of fall post 33, lifting column 33 is raised above holding up to tempering mould 8 position glass under the effect of cylinder 36, Then dip mold 7 rises glass enforcement compressing.Certainly, lifting column 33 is it can also be provided that three and be uniformly distributed in down 7 weeks sides of pressing mold, lifting column 33 effectively can avoid directly by upwards picking-up reliable for glass without there is sideslip phenomenon The possibility that glass occurs to break away is held up by dip mold 7.In view of the difference of glass model, cylinder 36 can be fixed on left and right program control On regulation platform 37, the program control regulation in left and right platform 37 lifting controllable post 33 moving axially along pre-ceramic roller 321, so that pin Glass to different model, lifting column 33 can be by upwards picking-up safe for glass.
In this utility model, the glass after the molding of shaping area 3 enters and flattens district 4, and pressing district 4 is provided with transition and props up Frame, the upper surface of described transition bracket is provided with the asbestos cord rolling parallel with ceramic roller, being provided above and steel of asbestos cord rolling Change the pressing mechanism 41 that film 8 quantity is consistent, flatten mechanism 41 and make glass lower limb by pressing under the glass also in softer state Flushing, thus avoid the need for needing glass lower limb is polished process in subsequent handling, the glass after molding is from pressing District 4 enters air-cooled district 5 and is quenched tempering, and the glass after tempering delivers to discharging area 6 by conveyer belt, it is achieved that arrive blanking after feeding Automated production.
In this utility model, by being provided with the dip mold 7 of multiple tempering film 8 and equal number in shaping area 3 so that one Secondary multiple glass can be pressed, substantially increase production efficiency, reduce the time needed for production, decrease life Produce cost, drastically increase the production capacity of enterprise.
The foregoing is only preferred embodiment of the present utility model, not in order to limit this utility model, as long as with Essentially identical means realize within the technical scheme of this utility model purpose broadly falls into protection domain of the present utility model.

Claims (8)

1. a multimode formed glass tempering apparatus, it is characterised in that: include stock shelf, the electricity tempering being from left to right arranged in order It is separately provided for carrying glass on stove, shaping area, pressing district, air-cooled district and discharging area, described stock shelf and electricity annealing furnace Rope rolling and pottery rolling;Described shaping area includes a support, support is provided with and pottery rolling row and contour ceramic roller, pottery Porcelain roller axially arranged has left side ceramic roller, right side ceramic roller and one or more groups middle ceramic roller, left and right side ceramic roller along it Do not abut and/or do not abut along it between multiple middle ceramic roller along it with middle ceramic roller the most respectively and be formed many Individual room, each room is provided with can the dip mold of telescopic displacement up and down, the right side that support is positioned at dip mold is provided with two Root can oscilaltion, for blocking the locating dowel of glass, the position directly above of dip mold is provided with tempering mould;Described pressing district Being provided with transition bracket, the upper surface of described transition bracket is provided with the asbestos cord rolling parallel with ceramic roller, and described asbestos cord rolls Be provided above the pressing mechanism consistent with tempering film quantity.
A kind of multimode formed glass tempering apparatus the most according to claim 1, it is characterised in that: it is provided with on described support The multiple elevating mechanisms corresponding with dip mold, described elevating mechanism is arranged in all sides of dip mold, can upwards be held up extremely by glass Tempering mould position, each elevating mechanism includes that four lifting columns, every two lifting columns are fixed on a batten, and batten is connected to gas The outfan of cylinder, cylinder is fixed on the program control regulation in left and right platform.
A kind of multimode formed glass tempering apparatus the most according to claim 1, it is characterised in that: described electricity annealing furnace is close Side, shaping area is provided with accelerating region, and described accelerating region includes sensor and accelerates drive mechanism, described acceleration drive mechanism Outfan connects the pottery rolling of accelerating region.
A kind of multimode formed glass tempering apparatus the most according to claim 1, it is characterised in that: described stock shelf is positioned at rope The side of rolling down is provided with the multiple detent mechanisms consistent with tempering film quantity, and each detent mechanism is provided with one and can sense glass and lean on Near sensor and two can oscilaltion, for blocking the location bar of glass.
A kind of multimode formed glass tempering apparatus the most according to claim 1, it is characterised in that: described tempering mould is fixing even Being connected on the outfan driving cylinder, described driving cylinder is fixed on fixed mount.
A kind of multimode formed glass tempering apparatus the most according to claim 1, it is characterised in that: described left and right side pottery Roller and middle ceramic roller are axially adjustable ceramic roller.
7. according to the arbitrary described a kind of multimode formed glass tempering apparatus of claim 1 to 6, it is characterised in that: described support On be positioned at the both sides of ceramic roller and be provided with many piece second ceramic rollers concordant with ceramic roller, the second ceramic roller along its axially penetrate through in Whole support.
A kind of multimode formed glass tempering apparatus the most according to claim 7, it is characterised in that: described ceramic roller and at least It is positioned at two second ceramic rollers of ceramic roller both sides and sprocket wheel is installed, ceramic roller and be provided with the second ceramic roller of sprocket wheel and pass through chain Bar connects by the drive shaft driving being positioned on support.
CN201620547045.5U 2016-06-06 2016-06-06 A kind of multimode formed glass tempering apparatus Withdrawn - After Issue CN205687789U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620547045.5U CN205687789U (en) 2016-06-06 2016-06-06 A kind of multimode formed glass tempering apparatus

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620547045.5U CN205687789U (en) 2016-06-06 2016-06-06 A kind of multimode formed glass tempering apparatus

Publications (1)

Publication Number Publication Date
CN205687789U true CN205687789U (en) 2016-11-16

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CN201620547045.5U Withdrawn - After Issue CN205687789U (en) 2016-06-06 2016-06-06 A kind of multimode formed glass tempering apparatus

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106045288A (en) * 2016-06-06 2016-10-26 江门市悦升金属制品有限公司 Glass toughening equipment capable of realizing multi-mold forming

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106045288A (en) * 2016-06-06 2016-10-26 江门市悦升金属制品有限公司 Glass toughening equipment capable of realizing multi-mold forming
CN106045288B (en) * 2016-06-06 2019-06-18 江门市悦升金属制品有限公司 A kind of multimode formed glass tempering apparatus

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GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20161116

Effective date of abandoning: 20190618

AV01 Patent right actively abandoned