CN202156997U - Multi-station numerical control glass molding machine with rotary air-supplying device - Google Patents

Multi-station numerical control glass molding machine with rotary air-supplying device Download PDF

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Publication number
CN202156997U
CN202156997U CN2011203016662U CN201120301666U CN202156997U CN 202156997 U CN202156997 U CN 202156997U CN 2011203016662 U CN2011203016662 U CN 2011203016662U CN 201120301666 U CN201120301666 U CN 201120301666U CN 202156997 U CN202156997 U CN 202156997U
Authority
CN
China
Prior art keywords
numerical control
air
ring groove
pore
overcoat
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
CN2011203016662U
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Chinese (zh)
Inventor
邓家辉
梁瑞华
蔡志相
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.)
Jingmen City Chuda Mechanical & Electrical Co Ltd
Original Assignee
Jingmen City Chuda Mechanical & Electrical 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 Jingmen City Chuda Mechanical & Electrical Co Ltd filed Critical Jingmen City Chuda Mechanical & Electrical Co Ltd
Priority to CN2011203016662U priority Critical patent/CN202156997U/en
Application granted granted Critical
Publication of CN202156997U publication Critical patent/CN202156997U/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

The utility model relates to a multi-station numerical control glass molding machine with a rotary air-supplying device, comprising a numerical control multi-station glass molding machine and a rotary air-supplying device; and an inner sleeve (1) is sheathed on a central vertical post (3) of a glass bottle-making machine, an air hole (1-1) is arranged in the inner side of the inner sleeve (1), an annular groove (1-2) is arranged at the outer side of the inner sleeve (1), the air hole (1-1) and the annular groove (1-2) of the inner sleeve (1) are communicated, an air duct (3-1) of the central vertical post of the glass molding machine is communicated with the glass molding machine annular groove (1-2) through the air hole (1-1), an outer sleeve (2) is movably sheathed on the inner sleeve (1) by a bearing, two ends of the outer sleeve (2) are respectively connected with an upper rotary disc and a lower rotary disc, and a group of air holes (2-1) are arranged in the outer sleeve (2) and are respectively communicated with the annular groove (1-2). The numerical control multi-station glass molding machine with the rotary air-supplying device has the advantages that four mold switching cylinders are air-distributed simultaneously by air in an annular air chamber, so that the mold switching cylinders can work simultaneously and the working efficiency is improved.

Description

The numerical control multi-station glass shaper of band rotation air feeder
Technical field
The utility model relates to glass bottle-making machine field, is specifically related to a kind of numerical control multi-station glass shaper with the rotation air feeder.
Background technology
At present, the mould switch cylinder gas distribution of glass bottle-making machine is fixing, single distribution scheme.Its weak point is and can not when shaper rotates, gives four mould switch cylinder air feed simultaneously, makes and embraces pincers drive mould closes.
The utility model content
The purpose of the utility model be exactly mould switch cylinder gas distribution to present glass bottle-making machine be fixing; Single distribution scheme; Can not, give by shaper four mould switch cylinder air feed when rotating simultaneously; Make and embrace the deficiency that pincers drive mould closes, and a kind of numerical control multi-station glass shaper with the rotation air feeder is provided.
The utility model comprises the numerical control multi-station glass shaper, the numerical control multi-station glass shaper by base, support, column, rotating disk, just blow mechanism, rotating disk driving mechanism, mould slide plate and form, just blowing mechanism by just blow carriage, just blow cylinder, positive blowing nozzle, chain stay carriage, chain stay formed; The rotating disk driving mechanism is made up of positioning element, slider part, fork parts, connecting rod, and positioning element is made up of positioning cylinder, location tieing, and slider part is made up of slide block cylinder, slide block, slideway; The fork parts are made up of fork, pull bar, drag link sleeve, pull bar cylinder, and it rotates air feeder in addition, and the rotation air feeder is made up of interior cover and overcoat; Interior being sleeved on the center stand column of glass bottle machine, between the top rotary table and lower rotary table of glass bottle-making machine shaper, the inboard of interior cover has pore; The outside has ring groove; The pore of interior cover communicates with ring groove, and the center stand column air flue of glass bottle-making machine communicates with ring groove through pore, and overcoat puts interior through the bearing movable set; The overcoat two ends respectively with top rotary table with link to each other with lower rotary table; Put outward and be provided with one group of pore, one group of pore communicates with ring groove respectively, and it also has the seal stack circle; Have one group of ring groove on the inwall of overcoat, the seal stack circle is set with in one group of ring groove of its external sleeve.
The utility model has the advantages that: during use; One group of pore with overcoat communicates with the inlet mouth of glass bottle-making machine mould switch cylinder respectively earlier, aerating in the inlet mouth of the air flue top of center stand column earlier, and gas enters in the ring groove through air flue and pore; Make and form the sealing ring-shaped air chamber in the ring groove; Gas gets into respectively in the cylinder of a mould switch through one group of pore of overcoat after opening cylinder, and cylinder is started working, and embraces pincers and makes mould closes.Three mould switch cylinders are opened in addition, and mould is in open mode.When the lower rotary table of glass bottle-making machine rotates a station, drive overcoat and rotate, second mould switch cylinder operation embraced pincers for second and made mould closes.Its excess-three cylinder makes to embrace to clamp and opens, and four mould switch cylinders are worked successively, makes the mould switch cylinder work automatically simultaneously of glass bottle-making machine, accomplishes the auto-closing of mould.Thereby increase work efficiency widely.
Description of drawings
Accompanying drawing 1 is the utility model structural representation.
Accompanying drawing 2 is the rotation air feeder structural representation of accompanying drawing 1.
Embodiment
As shown in Figure 1, the utility model comprises the numerical control multi-station glass shaper, the numerical control multi-station glass shaper by base, support, column, rotating disk, just blow mechanism, rotating disk driving mechanism, mould slide plate and form; Just blowing mechanism by just blow carriage, just blow cylinder, positive blowing nozzle, chain stay carriage, chain stay formed, the rotating disk driving mechanism is made up of positioning element, slider part, fork parts, connecting rod, positioning element by positioning cylinder, locate tieing and form; Slider part is made up of slide block cylinder, slide block, slideway, and the fork parts are made up of fork, pull bar, drag link sleeve, pull bar cylinder, and it rotates air feeder in addition; The rotation air feeder is made up of with overcoat 2 interior cover 1; Interior cover 1 is sleeved on the center stand column 3 of glass bottle-making machine, and between the top rotary table and lower rotary table of glass bottle-making machine shaper, the inboard of interior cover 1 has pore 1-1; The outside has ring groove 1-2; The pore 1-1 of interior cover 1 communicates with ring groove 1-2, and the center stand column air flue 3-1 of glass bottle-making machine communicates with ring groove 1-2 through pore 1-1, and overcoat 2 passes through the bearing movable set on interior cover 1; Overcoat 2 two ends respectively with top rotary table with link to each other with lower rotary table; Overcoat 2 is provided with one group of pore 2-1, and one group of pore 2-1 communicates with ring groove 1-2 respectively, and it also has seal stack circle 4; Have one group of ring groove on the inwall of overcoat 2, seal stack circle 4 is set with in one group of ring groove of its external sleeve 2.
Mode of operation: during use, one group of pore 2-1 with overcoat communicates with the inlet mouth of glass bottle-making machine mould switch cylinder respectively earlier, and elder generation is to the air flue 3-1 top inlet mouth aerating of center stand column; Gas enters in the ring groove 1-2 through air flue 3-1 and pore 1-1; Make to form the sealing ring-shaped air chamber in the ring groove, gas gets into respectively in the mould switch cylinder through one group of pore 2-1 of overcoat after opening cylinder, and cylinder is started working; Make mould closes, all the other moulds open.When dial rotation one station of glass bottle-making machine, drive overcoat 2 and rotate, make second mould switch cylinder operation, second mould closes, all the other moulds open.Four mould switch cylinders are worked successively, make the mould switch cylinder work automatically simultaneously of glass bottle-making machine, accomplish the auto-closing of mould.

Claims (2)

1. the numerical control multi-station glass shaper of band rotation air feeder, it comprises the numerical control multi-station glass shaper, the numerical control multi-station glass shaper by base, support, column, rotating disk, just blow mechanism, rotating disk driving mechanism, mould slide plate and form; Just blowing mechanism by just blow carriage, just blow cylinder, positive blowing nozzle, chain stay carriage, chain stay formed, the rotating disk driving mechanism is made up of positioning element, slider part, fork parts, connecting rod, positioning element by positioning cylinder, locate tieing and form; Slider part is made up of slide block cylinder, slide block, slideway; The fork parts are made up of fork, pull bar, drag link sleeve, pull bar cylinder, it is characterized in that it rotates air feeder in addition, and the rotation air feeder is made up of interior cover (1) and overcoat (2); Interior cover (1) is sleeved on the center stand column (3) of glass bottle-making machine; Between the top rotary table and lower rotary table of glass bottle-making machine shaper, the inboard of interior cover (1) has pore (1-1), and the outside has ring groove (1-2); The pore (1-1) of interior cover (1) communicates with ring groove (1-2); The center stand column air flue (3-1) of glass bottle-making machine communicates with ring groove (1-2) through pore (1-1), overcoat (2) through the bearing movable set on interior cover (1), overcoat (2) two ends respectively with top rotary table with link to each other with lower rotary table; Overcoat (2) is provided with one group of pore (2-1), and one group of pore (2-1) communicates with ring groove (1-2) respectively.
2. the numerical control multi-station glass shaper of band rotation air feeder according to claim 1; It is characterized in that it also has seal stack circle (4); Have one group of ring groove on the inwall of overcoat (2), seal stack circle (4) is set with in one group of ring groove of its external sleeve (2).
CN2011203016662U 2011-08-18 2011-08-18 Multi-station numerical control glass molding machine with rotary air-supplying device Expired - Lifetime CN202156997U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011203016662U CN202156997U (en) 2011-08-18 2011-08-18 Multi-station numerical control glass molding machine with rotary air-supplying device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2011203016662U CN202156997U (en) 2011-08-18 2011-08-18 Multi-station numerical control glass molding machine with rotary air-supplying device

Publications (1)

Publication Number Publication Date
CN202156997U true CN202156997U (en) 2012-03-07

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN2011203016662U Expired - Lifetime CN202156997U (en) 2011-08-18 2011-08-18 Multi-station numerical control glass molding machine with rotary air-supplying device

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CN (1) CN202156997U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105906193A (en) * 2015-02-23 2016-08-31 肖特瑞士股份公司 Device and method for shaping glass bodies
CN106439486A (en) * 2016-11-30 2017-02-22 无锡市创恒机械有限公司 Rotary aerated device

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105906193A (en) * 2015-02-23 2016-08-31 肖特瑞士股份公司 Device and method for shaping glass bodies
CN105906193B (en) * 2015-02-23 2020-04-28 肖特瑞士股份公司 Apparatus and method for shaping glass bodies
US10851010B2 (en) 2015-02-23 2020-12-01 Schott Schweiz Ag Device and method for forming glass bodies
CN106439486A (en) * 2016-11-30 2017-02-22 无锡市创恒机械有限公司 Rotary aerated device

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GR01 Patent grant
CX01 Expiry of patent term

Granted publication date: 20120307

CX01 Expiry of patent term