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CN209305933U - A kind of filling valve arrangement - Google Patents

A kind of filling valve arrangement Download PDF

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Publication number
CN209305933U
CN209305933U CN201821671664.0U CN201821671664U CN209305933U CN 209305933 U CN209305933 U CN 209305933U CN 201821671664 U CN201821671664 U CN 201821671664U CN 209305933 U CN209305933 U CN 209305933U
Authority
CN
China
Prior art keywords
valve body
spool
boss
filling
block
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.)
Withdrawn - After Issue
Application number
CN201821671664.0U
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Chinese (zh)
Inventor
刘冬华
张航天
刘炳香
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.)
Guangzhou Tech Long Packaging Machinery Co Ltd
Original Assignee
Guangzhou Tech Long Packaging Machinery 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 Guangzhou Tech Long Packaging Machinery Co Ltd filed Critical Guangzhou Tech Long Packaging Machinery Co Ltd
Priority to CN201821671664.0U priority Critical patent/CN209305933U/en
Application granted granted Critical
Publication of CN209305933U publication Critical patent/CN209305933U/en
Withdrawn - After Issue legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

A kind of filling valve arrangement forms the type chamber being connected to from the top down and spool is movably housed, and is respectively equipped with enterprising port and lower air inlet on upper valve body and middle valve body in sequentially connected upper valve body, middle valve body and lower valve body;And inlet port and outlet port are then set in lower valve body, boss is also set up on middle valve body, drive block is then housed on valve body, and boss and drive block are mounted on sealing ring, to be multiple by cavity spacer;Gas enters from enterprising port or lower air inlet respectively and spool is driven to close or open discharge port, and when enterprising port and lower air inlet all stop ventilation, the lower driving spring being set between drive block and boss then makes spool end and discharge port keeps certain gap, is formed filling at a slow speed.The precision of opening and closing both can be improved by the filling valve arrangement, while having also utilized the architectural characteristic of each components and formed accurate filling at a slow speed, effectively improved the filling accuracy of entire pouring process, and greatly improve job stability.

Description

A kind of filling valve arrangement
Technical field
The utility model relates to filling apparatus, more particularly to a kind of structure of filling valve.
Background technique
Filling valve is a kind of equipment being installed on bottle placer for pouring into liquid in packing container, in filling process In, the different filling stages needs to change the discharge port size of filling valve to control filling accuracy.Existing filling valve mainly leads to It crosses spring driving spool movement and closes discharge port, compressed air is then utilized to push spool to spring when needing to open discharge port It is mobile, so that the end of spool is left discharge port by compressed spring.Although the filling valve of this kind of structure can satisfy discharge port Opening and closing work, if but when one section of spring works after when elastic force being caused to generate variation, the closing velocity of discharge port and sealing Property will be affected, and then influence filling precision and work accuracy.
Summary of the invention
It is filling to improve the purpose of this utility model is to provide a kind of higher more stable filling valve arrangement of control precision Precision and quality.
Filling valve arrangement described in the utility model, including sequentially connected upper valve body, middle valve body and lower valve from the top down Body is provided with interconnected type chamber in upper valve body, middle valve body and lower valve body, and the feed inlet of communicate-type chamber is provided in lower valve body and is gone out Material mouth, it is intracavitary that spool is slidably mounted on type;Diaphragm flexible equipped with annular between spool and lower valve body, the annular of diaphragm Inner side and outer side is fixedly installed on spool and lower valve body respectively, feed inlet be set in lower valve body be located at diaphragm and discharge port it Between;The inner wall of middle valve body is extended with step-like boss to spool direction, and boss is connect by fixed seal ring with seal spool, Spool, which is located between boss and upper valve body, is fixedly installed with drive block, and the diameter of drive block is greater than spool and passes through movement thereon The inner wall of sealing ring and middle valve body is tightly connected, and spool is cased between drive block and upper valve body can be along the top that spool moves Block is equipped with upper driving spring between jacking block and drive block, lower driving spring is housed between drive block and boss, lower driving spring Maximum compression elastic force is greater than the sum of elastic force and weight of spool of upper driving spring, and lower spring-compressed to its elastic force is equal to upper bullet When the sum of spring force and the weight of spool, gap between spool end and discharge port be less than spool movement routine and discharge port it Between maximal clearance;In addition, the enterprising port of communicate-type chamber is provided on upper valve body, on middle valve body between boss and drive block It is provided with the lower air inlet of communicate-type chamber, is also provided with the pressure relief vent of discharge gas on middle valve body between boss and lower valve body.
Filling valve arrangement described in the utility model, upper valve body, middle valve body and lower valve body constitute complete filling valve valve Body, their internal type chambers connections are simultaneously flowed for spool installation and liquid, and the drive block on spool, the boss on middle valve body and Entire type chamber is divided into four parts by the diaphragm in lower valve body, and the first type chamber is second type chamber between upper valve body and drive block That third type chamber is between drive block and boss between boss and diaphragm, the 4th type chamber be lower valve body inner septum to discharge port it Between, and wherein, the space of the first type chamber and second type chamber will receive spool and the thereon movement of drive block and change size, third The space of type chamber and the 4th type chamber is fixed, meanwhile, the 4th type chamber is connected to the inlet port and outlet port in lower valve body, liquid from into Material mouth, which enters after the 4th type chamber, pours into packing container along discharge port.In the incipient stage of filling work, compressed air is from lower air inlet Mouthful enter second type chamber and to drive block apply be directed toward the first type chamber thrust so that upper driving spring be further compressed and under Driving spring is stretched, and then, jacking block is pushed into offset in upper valve body, and the end of spool will leave going out in lower valve body Material mouth, after discharge port is opened, liquid along discharge port pours into packing container after entering the 4th type chamber from feed inlet, at this time filling Speed is more quick;And with liquid it is filling reach set amount after, need to slow down filling speed to control filling accuracy, this When stop be passed through compressed air, spool and drive block are fallen after rise under the effect of gravity, until fall after rise to a certain degree when, lower driving The screen resilience of spring is equal to the sum of spool weight and lower driving spring spring, and spool is to be held in current location, and spool at this time Gap between end and discharge port reduces, and filling speed is slack-off;Until after having poured into the liquid of sufficient amount in packing container, on Air inlet is passed through compressed air to the first type chamber, pushes drive block and spool to continue mobile to discharge port and closes discharge port, Complete entire pouring process;In addition, the intracavitary additional air of third type will be arranged from pressure relief vent during spool is mobile It walks.The open and close of the filling valve arrangement is by compressed air-driven, and when stopping being passed through compressed air, discharge port can it is upper, It is voluntarily maintained under the action of lower driving spring in certain opening amplitude, to form at a slow speed filling;This can both pass through The driving of compressed air and improve opening and closing precision, while also utilizing the architectural characteristic of each components and being formed and accurately filled at a slow speed Dress, effectively improves the filling accuracy of entire pouring process, and greatly improve job stability.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of filling valve arrangement.
Fig. 2 is the partial enlarged view of filling valve arrangement shown in Fig. 1.
Specific embodiment
A kind of filling valve arrangement, including sequentially connected upper valve body 1, middle valve body 2 and lower valve body 3 from the top down, upper valve body, It is provided with interconnected type chamber in middle valve body and lower valve body, the feed inlet 5 and discharge port 6 of communicate-type chamber, valve are provided in lower valve body It is intracavitary that core 4 is slidably mounted on type;Diaphragm flexible 7 equipped with annular between spool and lower valve body, the annular inboard of diaphragm It is fixedly installed on spool and lower valve body respectively with outside, feed inlet is set in lower valve body between diaphragm and discharge port; The inner wall of middle valve body is extended with step-like boss 20 to spool direction, and boss is connect by fixed seal ring 8 with seal spool, Spool, which is located between boss and upper valve body, is fixedly installed with drive block 9, and the diameter of drive block is greater than spool and passes through shifting thereon The inner wall of dynamic seal ring 10 and middle valve body is tightly connected, and spool is cased between drive block and upper valve body and can move along spool Jacking block 11 is equipped with upper driving spring 12 between jacking block and drive block, lower driving spring 13, lower drive are housed between drive block and boss The maximum compression elastic force of spring of moving is greater than the elastic force and the sum of weight of spool of upper driving spring, and lower spring-compressed is to its elastic force When equal to the sum of upper spring elastic force and the weight of spool, gap between spool end and discharge port be less than spool movement routine with Maximal clearance between discharge port;Be located in addition, be provided with the enterprising port 14 of communicate-type chamber on upper valve body, on middle valve body boss with It is provided with the lower air inlet 15 of communicate-type chamber between drive block, is also provided with discharge gas between boss and lower valve body on middle valve body Pressure relief vent 16.
As shown in Figure 1, 2, filling valve body includes upper, middle and lower valve body, and the type that spool is installed on valve body is intracavitary, valve body quilt Drive block, boss and diaphragm are divided into four parts, and between upper valve body and drive block, second type chamber B is located to be driven the first type chamber A Between motion block and boss, for third type chamber C between boss and diaphragm, the 4th type chamber D is located at lower valve body inner septum to discharge port Between.In the incipient stage of filling work, compressed air enters second type chamber and apply to drive block from lower air inlet is directed toward the The thrust of one type chamber, so that upper driving spring is further compressed and lower driving spring is stretched, and then, jacking block is pushed into Offset in upper valve body, and the discharge port that the end of spool will be left in lower valve body, after discharge port is opened, liquid from feed inlet into Enter and pour into packing container along discharge port after the 4th type chamber, filling speed at this time is more quick;And as the filling of liquid reaches It after set amount, needs to slow down filling speed to control filling accuracy, stops being passed through compressed air at this time, spool and drive block are Fall after rise under the effect of gravity, until fall after rise to a certain degree when, the screen resilience of lower driving spring is equal to spool weight and lower driving The sum of spring spring, spool are held in current location, and the gap between spool end and discharge port reduces at this time, filling speed It spends slack-off;Until enterprising port is passed through compressed air to the first type chamber after having poured into the liquid of sufficient amount in packing container, push Drive block and spool continue mobile to discharge port and close discharge port, complete entire pouring process;In addition, mobile in spool In the process, the intracavitary additional air of third type will drain from pressure relief vent.
The filling valve arrangement, is provided with the through-hole that axial direction is overlapped with spool 4 on upper valve body 1, equipped with adjusting inside upper valve body Locking nub 17 is equipped with adjustment axis 18 on adjusting block, adjusts the tip of the axis and passes through the through-hole of upper valve body and be bolted with adjusting nut 19;It adjusts One end of locking nub towards spool is provided with the chamber being recessed inwardly, and the end of spool is located in adjusting block chamber, and adjusting block is located at chamber The edge of room opening offsets with the jacking block being placed on spool, and the end of spool is also cased with gasket 21 and is bolted with stop nut 22, And gasket is set between stop nut and jacking block.Adjusting block can change it on upper valve body by adjustment axis and adjusting nut Axial position also just change the mobile range of spool, finally to change adjusting block to the restraining position of jacking block The maximal clearance between spool end and discharge port is changed, that is, changes the maximum opening amplitude and Quick-filling speed of discharge port Degree;In addition to this, the variation of adjusting block position also change upper and lower driving spring can deformation space can deformation amplitude, also Change the filling speed at a slow speed of filling valve.So entire filling speed and filling can be effectively controlled in setting with this configuration Precision, and its structure is simple, is easily achieved.
The filling valve arrangement, spool 4, which is located between drive block 9 and upper valve body 1, is equipped with the different platform of diameter Rank 23, and the diameter that the diameter at jacking block 11 is less than at the step of spool position is installed on spool;Jacking block is towards the side of step Equipped with the lug boss 24 extended to step.Setting with this configuration, so that after spool is moved to a certain degree to upper valve body, valve The lug boss on step and jacking block on core offsets, to avoid causing upper drive due to causing excessive compression to upper driving spring Spring of moving damage is effectively protected the safety of components and the stability of equipment work.
Guide ring 25 is separately installed on the boss 20 of the filling valve arrangement, drive block 9 and middle valve body 2, on boss The inside of guide ring be in contact with spool 4, the outside of the guide ring on drive block is in contact with the inner wall of middle valve body.By leading The mobile accuracy and stability of spool are improved to the setting of ring.In addition, between upper valve body 1 and middle valve body 2, upper valve body and adjusting block It is mounted on sealing ring 26 between 17, and sealing valve port circle 27 is housed with the contact position of 3 discharge port 6 of lower valve body on spool 4, passes through The setting of these sealing rings improves the sealing performance of filling valve.

Claims (4)

1. a kind of filling valve arrangement, it is characterised in that: including sequentially connected upper valve body (1) from the top down, middle valve body (2) and under Valve body (3) is provided with interconnected type chamber in upper valve body, middle valve body and lower valve body, the charging of communicate-type chamber is provided in lower valve body Mouth (5) and discharge port (6), it is intracavitary that spool (4) is slidably mounted on type;Equipped with the flexible of annular between spool and lower valve body Diaphragm (7), the annular inboard of diaphragm and outside are fixedly installed on spool and lower valve body respectively, and feed inlet is set in lower valve body Between diaphragm and discharge port;The inner wall of middle valve body is extended with step-like boss (20) to spool direction, and boss passes through solid Determine sealing ring (8) to connect with seal spool, spool, which is located between boss and upper valve body, to be fixedly installed with drive block (9), is driven The diameter of block is greater than spool and is tightly connected thereon by the inner wall of mobile sealing ring (10) and middle valve body, and spool is located at drive block Upper driving spring (12) can be equipped between jacking block and drive block along the jacking block (11) that spool moves by being cased between upper valve body, be driven Lower driving spring (13) are housed between motion block and boss, the maximum compression elastic force of lower driving spring is greater than the elastic force of upper driving spring The sum of with the weight of spool, and when lower spring-compressed to its elastic force is equal to the sum of upper spring elastic force and the weight of spool, spool end Gap between end and discharge port is less than the maximal clearance between spool movement routine and discharge port;In addition, being provided on upper valve body The enterprising port (14) of communicate-type chamber is provided with the lower air inlet of communicate-type chamber on middle valve body between boss and drive block (15), the pressure relief vent (16) of discharge gas is also provided on middle valve body between boss and lower valve body.
2. filling valve arrangement according to claim 1, it is characterised in that: be provided with axial direction and spool (4) weight on upper valve body (1) The through-hole of conjunction, upper valve body inside are equipped with adjusting block (17), adjustment axis (18) are housed on adjusting block, adjust the tip of the axis and pass through upper valve The through-hole of body is simultaneously bolted with adjusting nut (19);One end of adjusting block towards spool is provided with the chamber being recessed inwardly, the end of spool Portion is located in adjusting block chamber, and the edge that adjusting block is located at chamber opening offsets with the jacking block being placed on spool, the end of spool It is also cased with gasket (21) and is bolted with stop nut (22), and gasket is set between stop nut and jacking block.
3. filling valve arrangement according to claim 1 or 2, it is characterised in that: spool (4) is located at drive block (9) and upper valve The different step (23) of diameter is equipped between body (1), and the diameter installed at jacking block (11) on spool is less than spool position Diameter at step;Jacking block is equipped with the lug boss (24) extended to step towards the side of step.
4. filling valve arrangement according to claim 1 or 2, it is characterised in that: the boss of drive block (9) and middle valve body (2) (20) it is separately installed on guide ring (25), the inside of the guide ring on boss is in contact with spool (4), the guiding on drive block The outside of ring is in contact with the inner wall of middle valve body.
CN201821671664.0U 2018-10-16 2018-10-16 A kind of filling valve arrangement Withdrawn - After Issue CN209305933U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821671664.0U CN209305933U (en) 2018-10-16 2018-10-16 A kind of filling valve arrangement

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821671664.0U CN209305933U (en) 2018-10-16 2018-10-16 A kind of filling valve arrangement

Publications (1)

Publication Number Publication Date
CN209305933U true CN209305933U (en) 2019-08-27

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ID=67670898

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821671664.0U Withdrawn - After Issue CN209305933U (en) 2018-10-16 2018-10-16 A kind of filling valve arrangement

Country Status (1)

Country Link
CN (1) CN209305933U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109466827A (en) * 2018-10-16 2019-03-15 广州达意隆包装机械股份有限公司 A kind of filling valve arrangement
WO2021253831A1 (en) * 2020-06-16 2021-12-23 苏州悦肤达医疗科技有限公司 Vacuum liquid-filling needle and pressure relief valve therefor

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109466827A (en) * 2018-10-16 2019-03-15 广州达意隆包装机械股份有限公司 A kind of filling valve arrangement
CN109466827B (en) * 2018-10-16 2023-11-21 广州达意隆包装机械股份有限公司 Filling valve structure
WO2021253831A1 (en) * 2020-06-16 2021-12-23 苏州悦肤达医疗科技有限公司 Vacuum liquid-filling needle and pressure relief valve therefor

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AV01 Patent right actively abandoned

Granted publication date: 20190827

Effective date of abandoning: 20231121

AV01 Patent right actively abandoned

Granted publication date: 20190827

Effective date of abandoning: 20231121

AV01 Patent right actively abandoned
AV01 Patent right actively abandoned