CN112093764A - Purified water filling method - Google Patents

Purified water filling method Download PDF

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Publication number
CN112093764A
CN112093764A CN202011103639.4A CN202011103639A CN112093764A CN 112093764 A CN112093764 A CN 112093764A CN 202011103639 A CN202011103639 A CN 202011103639A CN 112093764 A CN112093764 A CN 112093764A
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CN
China
Prior art keywords
filling
wall
water
purified water
rod
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Withdrawn
Application number
CN202011103639.4A
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Chinese (zh)
Inventor
李松华
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Zhuhai Yuxinghui Technology Co ltd
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Zhuhai Yuxinghui Technology Co ltd
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Application filed by Zhuhai Yuxinghui Technology Co ltd filed Critical Zhuhai Yuxinghui Technology Co ltd
Priority to CN202011103639.4A priority Critical patent/CN112093764A/en
Publication of CN112093764A publication Critical patent/CN112093764A/en
Withdrawn legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67CCLEANING, FILLING WITH LIQUIDS OR SEMILIQUIDS, OR EMPTYING, OF BOTTLES, JARS, CANS, CASKS, BARRELS, OR SIMILAR CONTAINERS, NOT OTHERWISE PROVIDED FOR; FUNNELS
    • B67C3/00Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus; Filling casks or barrels with liquids or semiliquids
    • B67C3/30Filling of barrels or casks

Abstract

The invention provides a purified water filling method, which uses a filling device, wherein the filling device comprises a filling machine body, a bearing unit and a control unit, the machine shell is of a C-shaped structure, the left side of the upper end of the filling machine body is provided with a water inlet, the bearing unit is arranged on the left side of the filling machine body, and the control unit is arranged on the inner wall of the lower end of the filling machine body; the invention can solve the problem that the prior pure water filling machine mostly adopts a normal-pressure filling machine which fills by the dead weight of liquid under atmospheric pressure, so that the stability of the machine during filling can not be ensured; this machine is when carrying out the filling, can't effectively fix the cask, consequently can cause the cask to produce when carrying out the filling and rock to make the pure water spill, cause unnecessary loss scheduling problem.

Description

Purified water filling method
Technical Field
The invention relates to the technical field of purified water filling treatment, in particular to a purified water filling method.
Background
The purified water is pure and clean water without impurities, such as organic pollutants, inorganic salts, any additive and various impurities, and does not contain impurities or bacteria, is prepared by taking water meeting the sanitary standard of drinking water as raw water through an electrodialyzer method, an ion exchanger method, a reverse osmosis method, a distillation method and other appropriate processing methods, is sealed in a container, does not contain any additive, is colorless and transparent, and can be directly drunk; the purified water is required to be produced in batches by a purified water filling machine in the production process, the purified water filling machine is one of main devices produced by a purified water plant, and is suitable for filling various mineral water, purified water, wine and other food industries,
however, the following problems exist when purified water is filled at present: most of the existing purified water filling machines adopt normal-pressure filling machines, and the machines fill by liquid deadweight under atmospheric pressure, so that the stability of the machines during filling cannot be ensured; this machine is when carrying out the filling, can't effectively fix the cask, consequently can cause the cask to produce when carrying out the filling and rock to make the pure water spill, cause the unnecessary loss.
Disclosure of Invention
The technical problem to be solved
The purified water filling method provided by the invention can solve the problems pointed out in the background technology.
Two technical schemes
In order to achieve the above object, the present invention adopts the following technical solutions, wherein a filling apparatus is used, the filling apparatus includes a filling machine body, a bearing unit and a control unit, the casing is of a C-shaped structure, a water inlet is provided on the left side of the upper end of the filling machine body, the bearing unit is provided on the left side of the filling machine body, the control unit is provided on the inner wall of the lower end of the filling machine body, wherein:
the method for filling the purified water by using the filling equipment comprises the following steps;
placing a bucket, namely placing the bucket to be filled with purified water in a placing groove;
step two, filling operation is executed, a photosensitive sensor on the bearing unit is started, and the flow column operation is controlled by a positioning cylinder to enable purified water to be filled into the water barrel;
controlling water flow, namely controlling the flow of the filling water by the control unit according to the weight of the pure water filled in the bucket;
step four, completing filling, namely closing a filling opening after the purified water in the bucket is filled, and taking the filled bucket down from filling equipment;
the filling machine body comprises a casing, a supporting plate and a baffle plate, wherein: the inlet opening has been seted up in casing upper end left side, the inlet opening upper end is connected with the water tank, the linkage groove has been seted up to casing lower extreme inner wall, and the cavity has been seted up to the casing upper end, the spread groove has been seted up to cavity upper end inner wall, from left to right seted up the delivery port in proper order along the cavity lower extreme, connecting hole and spacing hole, the backup pad sets up on casing middle part below inner wall, the standing groove has been seted up on the backup pad left side, the fixed slot has been seted up along standing groove centre of a circle department, backup pad right side and spacing hole matched with sliding hole, baffle one end sets up.
The bearing unit includes photosensitive sensor, bracing piece, location cylinder, expanding spring, execution board and stagnant flow post, wherein: photosensitive sensor sets up in the fixed slot, the bracing piece sets up on backup pad upper end middle part right side outer wall, the upper end of the support bar is provided with the location cylinder, the expanding spring cover is established on location cylinder telescopic link outer wall, location cylinder telescopic link slides and sets up in the connecting hole, and location cylinder telescopic link end-to-end connection has the execution board, execution board lower extreme middle part articulates on cavity lower extreme inner wall, the only flow post is installed on execution board lower extreme left side outer wall, and only flow post sliding connection is in the water outlet.
The control unit includes contact dish, support spring lever, driving block, connecting plate, push rod, reset spring, execution feeler lever and control roll, wherein: contact dish slides and sets up in the standing groove, support spring pole one end sets up on contact dish lower extreme outer wall, the other end is connected with the transmission piece, the connecting plate slides and sets up in the linkage groove, set up the transmission hole with transmission piece matched with along connecting plate middle part left side, the push rod sets up on connecting plate upper end right side outer wall, and the push rod upside slides and sets up in spacing downthehole, the push rod downside slides and sets up in the sliding hole, be provided with reset spring along push rod right-hand member outer wall longitudinal symmetry, and the reset spring other end is connected on casing right-hand member inner wall, it sets up in the push rod to carry out the feeler lever, and carry out feeler lever upper end and slide and set up in the spread groove, the control roll passes through the bearing setting on the outer wall of carrying.
As a preferred technical scheme, a limiting cavity is formed in the flow stopping column, a flow stopping hole is formed in the left end of the limiting cavity, a push-out spring rod is arranged on the inner wall of the middle of the right end of the limiting cavity, and a flow stopping block matched with the water inlet hole is mounted at the other end of the push-out spring rod.
As a preferable technical scheme of the invention, the upper end of the contact disc is uniformly provided with contact teeth which are used for abutting against the lower end of the water barrel in the circumferential direction.
As a preferred technical scheme of the invention, the transmission block is a triangular structure used for driving the connecting plate to reciprocate left and right, and the left end of the transmission block is connected in the transmission hole in a sliding manner.
As a preferable technical scheme of the invention, the lower end of the water outlet is connected with a water outlet pipe for preventing purified water from splashing.
As a preferred technical scheme of the invention, the flow stopping block is of a semicircular structure matched with the water inlet hole; the water inlet hole can be sealed by the flow stopping block, so that the flow stopping effect is achieved.
Three beneficial effects
1. The invention greatly improves the filling treatment of purified water, and can solve the problem that the prior purified water filling machine mostly adopts a normal-pressure filling machine which fills by the dead weight of liquid under atmospheric pressure, so that the stability of the machine during filling can not be ensured; this machine is when carrying out the filling, can't effectively fix the cask, consequently can cause the cask to produce when carrying out the filling and rock to make the pure water spill, cause unnecessary loss scheduling problem.
2. The water bucket is provided with the bearing unit, the water inlet hole can be opened when the water bucket is filled with purified water, and the water inlet hole can be sealed after the water bucket is filled with the purified water, so that the cost waste caused by the overflow of the purified water is avoided.
3. The invention discloses a water dispenser, which is characterized in that a control unit is arranged on the basis of a bearing unit, and the water dispenser can assist the bearing unit to seal a water inlet hole when pure water is filled in a bucket, so that the stability of the water dispenser is enhanced.
4. The bucket is provided with the placing groove, when the bucket is filled with purified water, the bucket is limited by the placing groove, and the more purified water is stored in the bucket, the stronger the limiting effect of the placing groove on the bucket is, so that the purified water is prevented from being spilled out due to shaking of the bucket, and unnecessary loss is reduced.
Drawings
The invention is further illustrated with reference to the following figures and examples.
FIG. 1 is a process flow diagram of the present invention.
Fig. 2 is a schematic perspective view of the present invention.
Fig. 3 is a front cross-sectional view of the present invention.
Fig. 4 is a sectional view taken along line a-a of fig. 3 of the present invention.
Fig. 5 is a sectional view taken along line B-B of fig. 3 in accordance with the present invention.
Fig. 6 is a partial enlarged view of the present invention at C of fig. 3.
Fig. 7 is a cross-sectional view taken along line D-D of fig. 3 of the present invention.
Fig. 8 is a perspective view of the contact plate and the actuator teeth of the present invention.
Detailed Description
The embodiments of the invention will be described in detail below with reference to the drawings, but the invention can be implemented in many different ways as defined and covered by the claims.
A pure water filling method as shown in fig. 1 to 8, which uses a filling apparatus, the filling apparatus includes a filling machine body 1, a bearing unit 2 and a control unit 3, the casing 11 is a C-shaped structure, a water inlet 111 is provided on the left side of the upper end of the filling machine body 1, the bearing unit 2 is provided on the left side of the filling machine body 1, and the control unit 3 is provided on the inner wall of the lower end of the filling machine body 1, wherein:
the filling machine body 1 comprises a casing 11, a support plate 12 and a baffle 13, wherein: a water inlet hole 111 is formed in the left side of the upper end of the machine shell 11, a water tank is connected to the upper end of the water inlet hole 111, a linkage groove 112 is formed in the inner wall of the lower end of the machine shell 11, a cavity 113 is formed in the upper end of the machine shell 11, a connecting groove 114 is formed in the inner wall of the upper end of the cavity 113, a water outlet 115, a connecting hole 116 and a limiting hole 117 are sequentially formed along the lower end of the cavity 113 from left to right, and the lower end of the; the backup pad 12 sets up on the inner wall of casing 11 middle part below, has seted up standing groove 121 along backup pad 12 left side, has seted up fixed slot 122 along standing groove 121 centre of a circle department, backup pad 12 right side and spacing hole 117 matched with sliding hole 123, and 13 one end settings of baffle are on backup pad 12 upper end middle part left side outer wall, and the other end is connected on the outer wall of cavity 113 lower extreme.
The supporting unit 2 comprises a photosensitive sensor 21, a supporting rod 22, a positioning cylinder 23, a telescopic spring 24, an execution plate 25 and a flow stopping column 26, wherein: the photosensitive sensor 21 is arranged in the fixing groove 122, the support rod 22 is arranged on the outer wall of the right side of the middle part of the upper end of the support plate 12, the positioning cylinder 23 is arranged at the upper end of the support rod 22, the telescopic spring 24 is sleeved on the outer wall of the telescopic rod of the positioning cylinder 23, the telescopic rod of the positioning cylinder 23 is arranged in the connecting hole 116 in a sliding manner, the tail end of the telescopic rod of the positioning cylinder 23 is connected with the execution plate 25, the middle part of the lower end of the execution plate 25 is hinged on the inner wall of the lower end of the cavity 113, the flow stopping column 26 is arranged; limit chamber 261 has been seted up to stagnant flow post 26 inside, and the stagnant flow hole has been seted up to limit chamber 261 left end, is provided with on the inner wall of limit chamber 261 right-hand member middle part along releasing spring rod 262, and the stopping block 263 with inlet opening 111 matched with is installed to the releasing spring rod 262 other end, stopping block 263 is the semicircular structure with inlet opening 111 matched with.
When the water bucket is placed on the placing groove 121, the photosensitive sensor 21 is turned on, when the photosensitive sensor 21 detects that the water bucket is placed on the placing groove 121, the positioning cylinder 23 is turned on, the positioning cylinder 23 pulls the execution plate 25 to swing rightwards with the hinge as a circle center, so that the execution plate 25 drives the flow stopping column 26 to move upwards, the flow stopping block 263 is retracted inwards under the action of the water inlet hole 111, and purified water in the water inlet hole 111 flows out of the water bucket through the water outlet pipe 1151; after the operation is completed, the positioning cylinder 23 cooperates with the extension spring 24 to push the actuating plate 25 to swing leftwards around the hinge, so that the actuating plate 25 drives the flow stopping column 26 to seal the water outlet 115, and the pushing spring rod 262 pushes the flow stopping block 263 out, so as to seal the water inlet 111.
The control unit 3 comprises a contact disc 31, a support spring lever 32, a transmission block 33, a connecting plate 34, a push rod 35, a return spring 36, an execution trolley 37 and a control roller 38, wherein: the contact disc 31 is arranged in the placing groove 121 in a sliding manner, and the upper end of the contact disc 31 is uniformly provided with contact teeth 311 which are used for abutting against the lower end of the water barrel in the circumferential direction; one end of the supporting spring rod 32 is arranged on the outer wall of the lower end of the contact disc 31, the other end of the supporting spring rod is connected with a transmission block 33, the connecting plate 34 is arranged in the linkage groove 112 in a sliding mode, the transmission block 33 is of a triangular structure used for driving the connecting plate 34 to reciprocate left and right, and the left end of the transmission block 33 is connected in the transmission hole 341 in a sliding mode; offer along connecting plate 34 middle part left side with driving block 33 matched with transmission hole 341, push rod 35 sets up on connecting plate 34 upper end right side outer wall, and push rod 35 upside slides and sets up in spacing hole 117, push rod 35 downside slides and sets up in sliding hole 123, be provided with reset spring 36 along push rod 35 right-hand member outer wall longitudinal symmetry, and the reset spring 36 other end is connected on casing 11 right-hand member inner wall, carry out feeler lever 37 and set up in push rod 35 upper end, and carry out feeler lever 37 upper end and slide and set up in spread groove 114, control roll 38 passes through the bearing setting on the outer wall of carrying out feeler lever 37 lower extreme middle part left side, and control roll 38 rolls and sets up on carrying out board 25 upper end outer wall.
When the water bucket works specifically, when the pure water filled in the water bucket is gradually increased, the contact disc 31 drives the transmission block 33 to move downwards through the support spring rod 32 under the action of the water bucket, the transmission block 33 drives the connecting plate 34 to move leftwards, the connecting plate 34 drives the execution contact rod 37 to move leftwards through the push rod 35, the execution contact rod 37 drives the control roller 38 to move leftwards, and therefore the positioning cylinder 23 is matched to push the flow stopping column 26 to move downwards through the execution plate 25 to seal the water outlet 115; after the work is finished, the push rod 35 drives the execution contact rod 37 and the connecting plate 34 to retract and reset under the action of the reset spring 36.
The method for filling the purified water by using the filling equipment comprises the following steps;
placing a bucket, namely placing the bucket to be filled with purified water in a placing groove 121;
step two, filling operation is executed, the photosensitive sensor 21 on the bearing unit 2 is started, and the positioning cylinder 23 controls the flow stopping column 26 to operate, so that purified water is filled into the water bucket; the photosensitive sensor 21 is turned on, when the photosensitive sensor 21 detects that the water bucket is placed on the placing groove 121, the positioning cylinder 23 is turned on, the positioning cylinder 23 pulls the execution plate 25 to swing rightwards with the hinge as a circle center, so that the execution plate 25 drives the flow stopping column 26 to move upwards, the flow stopping block 263 is retracted inwards under the action of the water inlet hole 111, and purified water in the water inlet hole 111 flows out of the water bucket through the water outlet pipe 1151.
Step three, controlling water flow, namely controlling the flow of the filling water by the control unit 3 according to the weight of the pure water filled in the bucket; when the purified water filled in the water barrel is gradually increased, the contact disc 31 drives the transmission block 33 to move downwards through the supporting spring rod 32 under the action of the water barrel, the transmission block 33 drives the connecting plate 34 to move leftwards, the connecting plate 34 drives the execution contact rod 37 to move leftwards through the push rod 35, the execution contact rod 37 drives the control roller 38 to move leftwards, and therefore the positioning air cylinder 23 is matched to push the flow stopping column 26 to move downwards through the execution plate 25 to seal the water outlet
Step four, completing filling, namely closing a filling opening after the purified water in the bucket is filled, and taking the filled bucket down from filling equipment; after the water bucket is filled with pure water and is taken down from the device, the positioning cylinder 23 pushes the execution plate 25 to swing leftwards by taking the hinge as a circle center under the action of the photosensitive sensor 21 and matching with the expansion spring 24, so that the execution plate 25 drives the flow stopping column 26 to seal the water outlet 115, and the push-out spring rod 262 pushes out the flow stopping block 263 so as to seal the water inlet 111; at the same time, the push rod 35 drives the actuating feeler 37 and the connecting plate 34 to move rightwards under the action of the return spring 36, so as to fill the water bucket with purified water again.
The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (6)

1. A purified water filling method uses a filling device which comprises a filling machine body (1), a bearing unit (2) and a control unit (3), and is characterized in that: casing (11) are C shape structure, and inlet opening (111) have been seted up on filling organism (1) upper end left side, and bearing unit (2) set up in filling organism (1) left side, and the control unit (3) set up on filling organism (1) lower extreme inner wall, wherein:
the method for filling the purified water by using the filling equipment comprises the following steps;
placing a bucket, namely placing the bucket to be filled with purified water in a placing groove 121;
step two, filling operation is executed, a photosensitive sensor (21) on the bearing unit (2) is started, and the flow stopping column (26) is controlled by a positioning cylinder (23) to operate so that purified water is filled into the water bucket;
step three, controlling water flow, namely controlling the flow of the poured water by the control unit (3) according to the weight of the pure water poured into the bucket;
step four, completing filling, namely closing a filling opening after the purified water in the bucket is filled, and taking the filled bucket down from filling equipment;
the filling machine body (1) comprises a casing (11), a support plate (12) and a baffle plate (13), wherein: a water inlet hole (111) is arranged on the left side of the upper end of the casing (11), a water tank is connected with the upper end of the water inlet hole (111), a linkage groove (112) is arranged on the inner wall of the lower end of the casing (11), the upper end of the casing (11) is provided with a cavity (113), the inner wall of the upper end of the cavity (113) is provided with a connecting groove (114), a water outlet (115), a connecting hole (116) and a limiting hole (117) are sequentially formed along the lower end of the cavity (113) from left to right, the supporting plate (12) is arranged on the inner wall of the lower middle part of the casing (11), the left side of the supporting plate (12) is provided with a placing groove (121), a fixing groove (122) is formed in the circle center of the placing groove (121), the right side of the supporting plate (12) is provided with a sliding hole (123) matched with the limiting hole (117), one end of the baffle (13) is arranged on the outer wall of the left middle;
the supporting unit (2) comprises a photosensitive sensor (21), a supporting rod (22), a positioning cylinder (23), a telescopic spring (24), an execution plate (25) and a flow stopping column (26), wherein: the photosensitive sensor (21) is arranged in the fixing groove (122), the supporting rod (22) is arranged on the outer wall of the right side of the middle part of the upper end of the supporting plate (12), the positioning cylinder (23) is arranged at the upper end of the supporting rod (22), the telescopic rod outer wall of the positioning cylinder (23) is sleeved with the telescopic spring (24), the telescopic rod of the positioning cylinder (23) is arranged in the connecting hole (116) in a sliding mode, the tail end of the telescopic rod of the positioning cylinder (23) is connected with the execution plate (25), the middle part of the lower end of the execution plate (25) is hinged to the inner wall of the lower end of the cavity (113), the flow stopping column (26) is arranged on the outer wall of the left side of the lower end of;
the control unit (3) comprises a contact disc (31), a supporting spring rod (32), a transmission block (33), a connecting plate (34), a push rod (35), a return spring (36), an execution contact rod (37) and a control roller (38), wherein: the contact disc (31) is arranged in the placing groove (121) in a sliding manner, one end of a supporting spring rod (32) is arranged on the outer wall of the lower end of the contact disc (31), the other end of the supporting spring rod is connected with a transmission block (33), a connecting plate (34) is arranged in a linkage groove (112) in a sliding manner, a transmission hole (341) matched with the transmission block (33) is formed in the left side of the middle of the connecting plate (34), a push rod (35) is arranged on the outer wall of the right side of the upper end of the connecting plate (34), the upper side of the push rod (35) is arranged in a limiting hole (117) in a sliding manner, the lower side of the push rod (35) is arranged in a sliding hole (123) in a sliding manner, reset springs (36) are symmetrically arranged up and down along the outer wall of the right end of the push rod (35), the other end of the reset spring (36) is connected to the inner wall of the right end, the control roller (38) is arranged on the outer wall of the left side of the middle part of the lower end of the execution feeler lever (37) through a bearing, and the control roller (38) is arranged on the outer wall of the upper end of the execution plate (25) in a rolling way.
2. The purified water filling method according to claim 1, wherein: limit chamber (261) have been seted up to stagnant flow post (26) inside, and the stagnant flow hole has been seted up to limit chamber (261) left end, is provided with on the inner wall along limit chamber (261) right-hand member middle part, and the stagnant flow piece (263) with inlet opening (111) matched with is installed to the release spring rod (262) other end.
3. The purified water filling method according to claim 1, wherein: the upper end of the contact disc (31) is circumferentially and uniformly provided with contact teeth (311) which are used for abutting against the lower end of the purified water bucket.
4. The purified water filling method according to claim 1, wherein: the transmission block (33) is of a triangular structure used for driving the connecting plate (34) to reciprocate left and right, and the left end of the transmission block (33) is connected in the transmission hole (341) in a sliding mode.
5. The purified water filling method according to claim 2, wherein: the lower end of the water outlet (115) is connected with a water outlet pipe (1151) for preventing pure water from splashing.
6. The purified water filling method according to claim 1, wherein: the flow stopping block (263) is of a semicircular structure matched with the water inlet hole (111).
CN202011103639.4A 2020-10-15 2020-10-15 Purified water filling method Withdrawn CN112093764A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202011103639.4A CN112093764A (en) 2020-10-15 2020-10-15 Purified water filling method

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Application Number Priority Date Filing Date Title
CN202011103639.4A CN112093764A (en) 2020-10-15 2020-10-15 Purified water filling method

Publications (1)

Publication Number Publication Date
CN112093764A true CN112093764A (en) 2020-12-18

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CN202011103639.4A Withdrawn CN112093764A (en) 2020-10-15 2020-10-15 Purified water filling method

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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2000168835A (en) * 1998-12-04 2000-06-20 Iwatani Internatl Corp Draft beer barrel
CA2305030A1 (en) * 1999-04-29 2000-10-29 L'oreal Device for triggering a distribution unit, specifically a valve, and assembly equipped with the said triggering device
CN2740587Y (en) * 2004-09-24 2005-11-16 杭州中亚机械有限公司 Weighing loader
CN203451198U (en) * 2013-08-05 2014-02-26 江苏泰尔新材料股份有限公司 Single-end wax liquid filling device
CN208829245U (en) * 2018-05-13 2019-05-07 臻富(福建)果汁食品有限公司 A kind of bottle placer filling valve of beverage production
CN210366944U (en) * 2019-06-21 2020-04-21 陕西一群锶享家水业有限公司 Automatic filling head for purified water
CN211196680U (en) * 2019-11-28 2020-08-07 鼎迅消防科技有限公司 Efficient heptafluoropropane medicament fills dress machine

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2000168835A (en) * 1998-12-04 2000-06-20 Iwatani Internatl Corp Draft beer barrel
CA2305030A1 (en) * 1999-04-29 2000-10-29 L'oreal Device for triggering a distribution unit, specifically a valve, and assembly equipped with the said triggering device
CN2740587Y (en) * 2004-09-24 2005-11-16 杭州中亚机械有限公司 Weighing loader
CN203451198U (en) * 2013-08-05 2014-02-26 江苏泰尔新材料股份有限公司 Single-end wax liquid filling device
CN208829245U (en) * 2018-05-13 2019-05-07 臻富(福建)果汁食品有限公司 A kind of bottle placer filling valve of beverage production
CN210366944U (en) * 2019-06-21 2020-04-21 陕西一群锶享家水业有限公司 Automatic filling head for purified water
CN211196680U (en) * 2019-11-28 2020-08-07 鼎迅消防科技有限公司 Efficient heptafluoropropane medicament fills dress machine

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Application publication date: 20201218

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