CN208440508U - Rapid cooling formula bottle die - Google Patents

Rapid cooling formula bottle die Download PDF

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Publication number
CN208440508U
CN208440508U CN201821050344.3U CN201821050344U CN208440508U CN 208440508 U CN208440508 U CN 208440508U CN 201821050344 U CN201821050344 U CN 201821050344U CN 208440508 U CN208440508 U CN 208440508U
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CN
China
Prior art keywords
cooling
cooling dome
hole
shaping mould
dome
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 - Fee Related
Application number
CN201821050344.3U
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Chinese (zh)
Inventor
刘素容
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.)
Chongqing Gigabyte Mould Co Ltd
Original Assignee
Chongqing Gigabyte Mould 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 Chongqing Gigabyte Mould Co Ltd filed Critical Chongqing Gigabyte Mould Co Ltd
Priority to CN201821050344.3U priority Critical patent/CN208440508U/en
Application granted granted Critical
Publication of CN208440508U publication Critical patent/CN208440508U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to glass containers to make mould applications, disclose rapid cooling formula bottle die, including rack, shaping mould is installed in rack, cooling hole is provided on shaping mould die wall, shaping mould is rotatablely connected on the rack, ratchet is fixed at the top of shaping mould, cooling dome is covered on shaping mould, gear is rotatably connected on cooling dome, gear is coaxially connected with turntable, pawl is articulated on turntable, elevating arc is fixedly connected in shaft, cooling dome inner wall is provided with cavity, cooling dome bottom is provided with suction hole, negative pressure blade is rotatably connected in cooling dome cavity, outlet filter hole is provided on cooling dome, it is provided on cooling dome and collects hole, negative pressure blade spline is connected with splined shaft, bearing is fixed at the top of splined shaft, slide bar is fixed on bearing, sliding bar is connected in the cavity of cooling dome, splined hole is provided in shaft;Compared with prior art, this programme is more slowly moved by shaping mould, and combines cooling effect three times, has achieved the purpose that be quickly cooled down.

Description

Rapid cooling formula bottle die
Technical field
The utility model relates to glass containers to make mould applications, in particular to a kind of rapid cooling formula bottle die.
Background technique
For example all kinds of bottles of glass container, glass, bottle for cosmetics, jam product tank, vase and beverage bottle etc., it is such manufacturing First frit must be introduced in glass mold during glassware and glass container, then carried out according to different technique Blowing, compacting or centrifugal forming, and the gas in die cavity is discharged with faster speed as far as possible in forming process, otherwise Being stranded in the gas in die cavity can enter in glassware or glass container, and glassware is caused visible bubble occur, Presentation quality is influenced, or even has an effect on molding.
In order to solve problem above, the utility model patent that Chinese Patent Application No. is 201520778800.6, discloses A kind of bottle die, it includes shaping mould, bottle die cavity body is arranged in shaping mould, shaping mould is divided into A half module and B half module, forms Axial cold hole of hanging down is set on mould, and cold hole of hanging down is connected to by first row stomata with bottle die cavity body, the neck part of bottle die cavity body Gas vent via hole is set on outer shaping mould, and gas vent via hole includes first exhaust section and second exhaust section, first exhaust Duan Yiduan and second exhaust section one end extend to the end face of shaping mould, and the first exhaust section other end and the second exhaust section other end connect Logical, soket head cap screw is arranged in first exhaust section one end, and first exhaust section passes through the neck part of second row stomata and bottle die cavity body It is connected to, also sets up handle aperture on the end face of shaping mould.Above scheme structure is simple, passes through cold hole of hanging down, first row stomata, second row The setting of stomata and gas vent via hole etc. forms reasonable cooling layout, is able to produce out the bottle of good quality, and grasp Facilitate.
Above scheme solves the problems, such as that mould intracavity gas, which exists in the prior art, to be detained by reasonably cooling layout, But above scheme there is problems: when being quickly cooled down mold, only flowed in each hole by cooling gas, and Mold body can not move, but also the dissipated heat speed of mold is still relatively slow, still reach to the purpose less than rapid cooling.
Utility model content
The utility model be intended to provide it is a kind of molding die can repeatedly be cooled down, and molding die can be made with slower Speed movement, reaches the rapid cooling formula bottle die for being quickly cooled down purpose.
It is quickly cooled down formula bottle die, including rack in this programme, shaping mould is installed in rack, is opened on shaping mould die wall There is cooling hole, shaping mould is rotatablely connected on the rack, is fixed with ratchet at the top of shaping mould, cooling dome is covered on shaping mould, cooling Cover clearance fit on the rack, is rotatably connected to gear on cooling dome, gear is coaxially connected with turntable, is articulated with and is used on turntable The pawl being meshed with ratchet is also rotatably connected to shaft on cooling dome, the fan tooth engaged with gear is fixedly connected in shaft Wheel, cooling dome inner wall are provided with cavity, and cooling dome bottom is provided with the suction hole being connected to cavity, is rotatably connected in cooling dome cavity Negative pressure blade is provided with outlet filter hole on cooling dome, is provided on cooling dome and collects hole, outlet filter hole and collects Kong Junyu cavity Connection, negative pressure blade spline are connected with splined shaft, and splined shaft runs through cooling dome, and bearing is fixed at the top of splined shaft, is consolidated on bearing Surely there is slide bar, sliding bar is connected in the cavity of cooling dome, and bearing is slidably connected on the outer wall of cooling dome, bearing and cooling It is connected with spring between cover outer wall, the splined hole for splined shaft insertion is provided in shaft.
The technical principle of this programme are as follows: rack plays the role of the entire bottle die of support, rotates splined shaft, and splined shaft is first The rotation of negative pressure blade is driven, the rotation of negative pressure blade will be discharged the gas in cavity from outlet filter hole, will generate in cavity negative Pressure, gas will be flowed into cavity from suction hole, to form air flow of the suction hole to outlet filter hole, suction hole air-breathing When, extraneous air will be entered in cooling dome by the gap between cooling dome and rack, and air will first and molding mould surface Contact, once cools down shaping mould, and then air will enter in suction hole by the cooling hole of shaping mould, and to molding Mould carry out secondary cooling, air flow in cavity and from outlet filter hole discharge, air will also take away shaping mould pass to it is cold But the heat covered, formation cool down three times;After forming negative pressure in cavity, external atmosphere pressure will press slide bar and slide into cavity, sliding Bar will be slided with dynamic bearing to the direction close to cooling dome, and bearing will drive direction of the spline axially adjacent to cooling dome to slide, flower Key axis will be inserted into the splined hole of shaft, and splined shaft will drive shaft rotation, and shaft will drive elevating arc rotation, and elevating arc will Band moving gear intermittently rotates, and elevating arc will intermittently be rotated with moving gear, and gear rotates in which will drive turntable intermittent, and turntable will Band pawl intermittently rotates, and pawl will be engaged intermittently with ratchet, and ratchet will drive molding mode spacing to rotate for a long time Certain angle forms four coolings to shaping mould, the speed of shaping mould rotation to enhance the air flowing around shaping mould Degree is slower, also will not affect that bottle forms;Dust near the also inhalable shaping mould of suction hole, gas will be from outlet filter hole Outflow, solid particle, which will be flowed into, to be collected in hole, and is flowed out from hole is collected, and operator can be collected solid particle.
Compared with prior art, this programme has the beneficial effect that
1, after this programme is by forming negative pressure in cavity, so that splined shaft drives shaft rotation, and shaping mould can be realized It more slowly moves, enhances the air flowing around shaping mould, and enter in cooling dome in conjunction with outside air, shaping mould is carried out Cooling effect three times, accelerate the cooling time of shaping mould, so that shaping mould, which can be quickly cooled to, needs temperature, reach The purpose of rapid cooling.
2, this programme forms negative pressure, then the operation for rotating shaping mould by first making in cooling dome, can prevent because of elder generation Pattern is rotated into, the dust generated around shaping mould flows out the gap between cooling dome and rack, avoids operator's Operating environment is affected.
Further, it is fixed with sliding slot on cooling dome, motor is slidably connected on sliding slot, the output shaft and splined shaft of motor are solid Fixed connection, bearing are fixedly connected on the output shaft of motor, and bearing is slidably connected on the chute, and spring is connected to motor and sliding slot Between top.Start motor, motor drives splined shaft to rotate, improves the automation of whole device by output shaft;Splined shaft band After dynamic negative pressure blade rotates so that generating negative pressure in cavity, external atmosphere pressure will drive motor to slide on the chute by pressing slide bar It is dynamic, so that motor sliding is more stable.
Further, motor is stepper motor.The setting of stepper motor facilitates operator and controls splined shaft rotation.
Further, filter mantle is covered on negative pressure blade.The setting of filter mantle can prevent solid particle and negative pressure in air Blade contact reduces abrasion of the solid particle to negative pressure blade, to extend the service life of negative pressure blade.
Further, filter hole is evenly equipped on filter mantle.The uniformly distributed setting of filter hole ensure that gas can more uniformly flow Enter into filter mantle.
Further, it is fixed with collecting box on cooling dome, collects hole and is connected to collecting box.Enter the solid collected in hole Grain will continue to flow out in collecting box from collection hole, and collecting box is collected solid particle.
Detailed description of the invention
Fig. 1 is the schematic diagram that the utility model is quickly cooled down formula bottle die embodiment.
Specific embodiment
It is further described below by specific embodiment:
Appended drawing reference in Figure of description include: rack 1, cooling dome 2, suction hole 3, shaping mould 4, turntable 5, gear 6, Pawl 7, elevating arc 9, shaft 10, collecting box 11, collects hole 12, splined shaft 13, bearing 14, stepper motor 15, slide bar at ratchet 8 16, spring 17, negative pressure blade 18, outlet filter hole 19, filter mantle 20, sliding slot 21.
Embodiment is substantially as shown in Fig. 1: being quickly cooled down formula bottle die, including rack 1, is equipped with molding in rack 1 Mould 4 is provided with cooling hole on 4 die wall of shaping mould, and shaping mould 4 is rotatably connected in rack 1, and 4 top horizontal of shaping mould key connection has spine 8 are taken turns, is covered with cooling dome 2 on shaping mould 4,2 clearance fit of cooling dome is rotatably connected to gear 6, tooth in rack 1 on cooling dome 2 Wheel 6 is coaxially connected with turntable 5, and the pawl 7 for being meshed with ratchet 8 is articulated on turntable 5, is also rotatablely connected on cooling dome 2 There is shaft 10, flat key is connected with the elevating arc 9 engaged with gear 6 in shaft 10, and 2 inner wall of cooling dome is provided with cavity, 2 bottom of cooling dome Portion is provided with the suction hole 3 being connected to cavity, and negative pressure blade 18 is rotatably connected in 2 cavity of cooling dome, is covered on negative pressure blade 18 Filter mantle 20 is evenly equipped with filter hole on filter mantle 20, outlet filter hole 19 is provided on cooling dome 2, is provided on cooling dome 2 and collects hole 12, it has been bolted collecting box 11 on cooling dome 2, has collected hole 12 and is connected to collecting box 11, outlet filter hole 19 and collection Hole 12 is connected to cavity, and 18 spline of negative pressure blade is connected with splined shaft 13, and splined shaft 13 runs through cooling dome 2, welds on cooling dome 2 It is connected to sliding slot 21, stepper motor 15 is slidably connected on sliding slot 21, output shaft and 13 phase of splined shaft of stepper motor 15 are welded, step Flat key is connected with bearing 14 on into the output shaft of motor 15, and bearing 14 is slidably connected on sliding slot 21, stepper motor 15 and sliding slot It is connected with spring 17 between 21 tops, slide bar 16 is welded on bearing 14, slide bar 16 is slidably connected in the cavity of cooling dome 2, Bearing 14 is slidably connected on the outer wall of cooling dome 2, is connected with spring 17 between 2 outer wall of bearing 14 and cooling dome, in shaft 10 It is provided with the splined hole being inserted into for splined shaft 13.
Start stepper motor 15, stepper motor 15 drives splined shaft 13 to rotate, and splined shaft 13 first drives 18 turns of negative pressure blade Dynamic, the rotation of negative pressure blade 18 will be discharged the gas in cavity from outlet filter hole 19, will generate negative pressure in cavity, and gas will be from Suction hole 3 is flowed into cavity, to form the air flow that suction hole 3 arrives outlet filter hole 19, when 3 air-breathing of suction hole, outside The air on boundary will be entered in cooling dome 2 by the gap between cooling dome 2 and rack 1, and air meets elder generation and 4 surface of shaping mould Touching, once cools down shaping mould 4, and then air will enter in suction hole 3 by the cooling hole of shaping mould 4, and at Pattern 4 carries out secondary cooling, and air is flowed in cavity and is discharged from outlet filter hole 19, and air will also take away shaping mould 4 and pass The heat of cooling dome 2 is passed, formation cools down three times;After forming negative pressure in cavity, external atmosphere pressure will press slide bar 16 to cavity Interior sliding, slide bar 16 will be slided with dynamic bearing 14 to the direction close to cooling dome 2, and bearing 14 will drive splined shaft 13 to downslide Dynamic, splined shaft 13 will be inserted into the splined hole of shaft 10, and splined shaft 13 will drive shaft 10 to rotate, and shaft 10 will drive and fan tooth 9 rotation of wheel, elevating arc 9 will intermittently be rotated with moving gear 6, and elevating arc 9 will intermittently be rotated with moving gear 6, and gear 6 will drive Turntable 5 intermittently rotates, and turntable 5 will intermittently be rotated with pawl 7, and pawl 7 will be engaged intermittently with ratchet 8, and ratchet 8 is by band The dynamic interval of shaping mould 4 rotates certain angle for a long time, to enhance the air flowing around shaping mould 4, formed at Four coolings of pattern 4;Dust near the also inhalable shaping mould 4 of suction hole 3, gas will be flowed out from outlet filter hole 19, Gu Body particle, which will be flowed into, to be collected in hole 12, and is flowed out in collecting box 11 from hole 12 is collected, and collecting box 11 carries out solid particle It collects.
The above are merely the embodiments of the present invention, the common sense such as well known specific structure and characteristic are not made herein in scheme Excessive description.It should be pointed out that for those skilled in the art, under the premise of not departing from the utility model structure, also Several modifications and improvements can be made, these also should be considered as the protection scope of the utility model, these all will not influence this reality With the effect and patent practicability of novel implementation.This application claims protection scope should be with the content of its claim Standard, the records such as specific embodiment in specification can be used for explaining the content of claim.

Claims (6)

1. being quickly cooled down formula bottle die, including rack, shaping mould is installed in rack, is provided with cooling hole on shaping mould die wall, It is characterized in that, shaping mould rotation connection is on the rack, it is fixed with ratchet at the top of shaping mould, cooling dome is covered on shaping mould, it is cold But cover clearance fit on the rack, is rotatably connected to gear on cooling dome, and gear is coaxially connected with turntable, is pivotally connected on turntable useful In being also rotatably connected to shaft on the pawl being meshed with ratchet, cooling dome, the fan engaged with gear is fixedly connected in shaft Gear, cooling dome inner wall are provided with cavity, and cooling dome bottom is provided with the suction hole being connected to cavity, rotation connection in cooling dome cavity There is negative pressure blade, outlet filter hole is provided on cooling dome, be provided on cooling dome and collect hole, outlet filter hole and collection Kong Junyu are empty Chamber connection, negative pressure blade spline are connected with splined shaft, and splined shaft runs through cooling dome, are fixed with bearing at the top of splined shaft, on bearing Be fixed with slide bar, sliding bar is connected in the cavity of cooling dome, and bearing is slidably connected on the outer wall of cooling dome, bearing with it is cold But it is connected with spring between cover outer wall, the splined hole for splined shaft insertion is provided in shaft.
2. rapid cooling formula bottle die according to claim 1, it is characterised in that: be fixed with cunning on the cooling dome Slot slidably connects motor on sliding slot, and the output shaft of motor is fixedly connected with splined shaft, and bearing is fixedly connected on the output of motor On axis, bearing is slidably connected on the chute, and spring is connected between motor and sliding slot top.
3. rapid cooling formula bottle die according to claim 2, it is characterised in that: the motor is stepper motor.
4. rapid cooling formula bottle die according to claim 3, it is characterised in that: be covered with filtering on the negative pressure blade Cover.
5. rapid cooling formula bottle die according to claim 4, it is characterised in that: be evenly equipped with filtering on the filter mantle Hole.
6. rapid cooling formula bottle die according to claim 5, it is characterised in that: be fixed with collection on the cooling dome Case is collected hole and is connected to collecting box.
CN201821050344.3U 2018-06-29 2018-06-29 Rapid cooling formula bottle die Expired - Fee Related CN208440508U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821050344.3U CN208440508U (en) 2018-06-29 2018-06-29 Rapid cooling formula bottle die

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821050344.3U CN208440508U (en) 2018-06-29 2018-06-29 Rapid cooling formula bottle die

Publications (1)

Publication Number Publication Date
CN208440508U true CN208440508U (en) 2019-01-29

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821050344.3U Expired - Fee Related CN208440508U (en) 2018-06-29 2018-06-29 Rapid cooling formula bottle die

Country Status (1)

Country Link
CN (1) CN208440508U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108569837A (en) * 2018-06-29 2018-09-25 重庆技嘉模具有限公司 It is quickly cooled down formula bottle die
CN113292230A (en) * 2021-05-13 2021-08-24 高雅玻璃(苏州)有限公司 Mold cooling method for glass production

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108569837A (en) * 2018-06-29 2018-09-25 重庆技嘉模具有限公司 It is quickly cooled down formula bottle die
CN113292230A (en) * 2021-05-13 2021-08-24 高雅玻璃(苏州)有限公司 Mold cooling method for glass production
CN113292230B (en) * 2021-05-13 2022-10-04 高雅玻璃(苏州)有限公司 Mold cooling method for glass production

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GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20190129

Termination date: 20190629