JPH0329642B2 - - Google Patents

Info

Publication number
JPH0329642B2
JPH0329642B2 JP59051635A JP5163584A JPH0329642B2 JP H0329642 B2 JPH0329642 B2 JP H0329642B2 JP 59051635 A JP59051635 A JP 59051635A JP 5163584 A JP5163584 A JP 5163584A JP H0329642 B2 JPH0329642 B2 JP H0329642B2
Authority
JP
Japan
Prior art keywords
elastic body
pressurized fluid
annular
liquid
nozzle
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
JP59051635A
Other languages
Japanese (ja)
Other versions
JPS60193887A (en
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 filed Critical
Priority to JP5163584A priority Critical patent/JPS60193887A/en
Priority to DE8585200390T priority patent/DE3560155D1/en
Priority to EP19850200390 priority patent/EP0155736B1/en
Publication of JPS60193887A publication Critical patent/JPS60193887A/en
Publication of JPH0329642B2 publication Critical patent/JPH0329642B2/ja
Granted legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B39/00Nozzles, funnels or guides for introducing articles or materials into containers or wrappers
    • B65B39/04Nozzles, funnels or guides for introducing articles or materials into containers or wrappers having air-escape, or air-withdrawal, passages
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B39/00Nozzles, funnels or guides for introducing articles or materials into containers or wrappers
    • B65B39/001Nozzles, funnels or guides for introducing articles or materials into containers or wrappers with flow cut-off means, e.g. valves
    • B65B39/004Nozzles, funnels or guides for introducing articles or materials into containers or wrappers with flow cut-off means, e.g. valves moving linearly

Description

【発明の詳細な説明】 産業上の利用分野 この発明は、流動性食品、とくに生クリーム、
ヨーグルのように粘性の大きい液を容器に一定量
ずつ充填するために用いられる液充填ノズルに関
する。
[Detailed description of the invention] Industrial application field This invention is applicable to liquid foods, especially fresh cream,
This invention relates to a liquid filling nozzle used to fill a container with a fixed amount of a highly viscous liquid such as yogurt.

従来の技術 この種の液充填ノズルとしては、例えば特開昭
48−81126号に開示されているように、筒状ノズ
ル本体と、筒状ノズル本体の下端開口に、これの
縁部に環状の液体通過間〓を形成するように配置
されている弾性体と、弾性体を吊り下げている吊
り下げ部材と、弾性体を膨脹させて液体通過間〓
を閉鎖するように弾性体に加圧流体を供給する手
段とからなり、弾性体がボール状に形成されてい
るものが知られている。
Conventional technology This type of liquid filling nozzle is known, for example, from Japanese Patent Laid-Open No.
As disclosed in No. 48-81126, a cylindrical nozzle body and an elastic body disposed at the lower end opening of the cylindrical nozzle body so as to form an annular liquid passage gap at the edge thereof. , between the hanging member that suspends the elastic body and the liquid that expands the elastic body.
A device is known in which the elastic body is formed into a ball shape and includes means for supplying pressurized fluid to the elastic body so as to close the elastic body.

発明が解決しようとする課題 上記従来の液充填ノズルでは、弾性体を膨脹さ
せようとする場合、弾性体がボール状に形成され
ているため、弾性体は対向きに膨脹するのみなら
ず、下向きにも膨脹する。液体通過間〓を閉鎖す
るためには、弾性体の下向きの膨脹は不必要で無
駄であるばかりか、弾性体がノズル本体に接触し
て発生するシール圧が必ずしも充分でなく、シー
ル不良の恐れがある。
Problems to be Solved by the Invention In the conventional liquid filling nozzle described above, when the elastic body is to be expanded, since the elastic body is formed in a ball shape, the elastic body not only expands in the opposite direction but also in the downward direction. It also expands. In order to close the liquid passage space, downward expansion of the elastic body is not only unnecessary and wasteful, but also the sealing pressure generated when the elastic body contacts the nozzle body is not necessarily sufficient, leading to the risk of seal failure. There is.

この発明の目的は、上記問題点を解決した液充
填ノズルを提供することにある。
An object of the present invention is to provide a liquid filling nozzle that solves the above problems.

課題を解決するための手段 この発明による液充填ノズルは、上記従来の液
充填ノズルを前提として、弾性体がボール状に形
成されていることに代わり、弾性体が短筒状に形
成され、弾性体の上端および下端が吊り下げ部材
に固定され、弾性体の内側に、弾性体の内周面に
そつて環状の加圧流体室が形成されていることを
特徴とするものである。
Means for Solving the Problems A liquid filling nozzle according to the present invention is based on the conventional liquid filling nozzle described above, but instead of the elastic body being formed in a ball shape, the elastic body is formed in a short cylindrical shape, and the elastic body is The upper and lower ends of the body are fixed to a hanging member, and an annular pressurized fluid chamber is formed inside the elastic body along the inner peripheral surface of the elastic body.

作 用 この発明による液充填ノズルでは、弾性体が短
筒状に形成され、弾性体の上端および下端が吊り
下げ部材に固定され、弾性体の内側に、弾性体の
内周面にそつて環状の加圧流体室が形成されてい
るから、加圧流体室に加圧流体を供給すると、弾
性体は下向きには膨脹することなく、外向きのみ
膨脹する。
Function In the liquid filling nozzle according to the present invention, the elastic body is formed into a short cylindrical shape, the upper and lower ends of the elastic body are fixed to a hanging member, and an annular shape is placed inside the elastic body along the inner peripheral surface of the elastic body. Since a pressurized fluid chamber is formed, when pressurized fluid is supplied to the pressurized fluid chamber, the elastic body does not expand downward but only expands outward.

実施例 この発明の実施例を、図面に参照してつぎに説
明する。
Embodiments Embodiments of the present invention will now be described with reference to the drawings.

液充填ノズルは、筒状ノズル本体1と、筒状ノ
ズル本体1の下端開口に配置されかつ下端開口縁
部に環状の液体通過間〓2をおいて相対する短筒
状弾性体3と、弾性体3を吊り下げかつ弾性体3
の内周面にそつて弾性体3とともに環状加圧流体
室4を形成している吊り下げ部材5と、弾性体3
を膨脹させるように加圧流体室4に加圧流体を供
給する手段とからなるものである。
The liquid filling nozzle includes a cylindrical nozzle body 1, a short cylindrical elastic body 3 disposed at the lower end opening of the cylindrical nozzle body 1 and facing each other with an annular liquid passage gap 2 at the lower end opening edge, and an elastic Suspend body 3 and elastic body 3
a hanging member 5 forming an annular pressurized fluid chamber 4 together with the elastic body 3 along the inner peripheral surface of the elastic body 3;
It consists of a means for supplying pressurized fluid to the pressurized fluid chamber 4 so as to expand the pressurized fluid chamber 4.

筒状ノズル本体1は、上部材6、中間部材7お
よび下部材8からなり、これら相互に一直線状に
一体的に連結されている。上部材6は他の部材
7,8より大径である。上部材6の外周面上端に
は外向き鍔9が設けられており、これに鍔付ナツ
ト10の内向き鍔が係合されている。このナツト
10が図示しない充填機本体にはめ合わされるこ
とにより、液充填ノズルが充填機本体に着脱され
る。また外向き鍔9の上面にはOリング溝11が
設けられている。上部材6の内周面上端寄りに雌
ねじ12が設けられるとともに、その内周面下端
に内向き鍔13が設けられている。中間部材7は
相互に一定間隔をおいて同心状に設けられた内外
管14,15よりなる二重構造のものであり、こ
れにより充填時の結露が防止される。内管14の
上端部は内向き鍔13の内周面に密にはめ入れら
れて固着されるとともに、その下端部は下部材8
の内周面に密にはめ入れられて固着されている。
一方外管15の上端部は上部材6の下端に固着さ
れるとともに、その下端部は下部材8の上端に固
着されている。下部材8の下端開口縁部内面に下
向きのテーパ部16が設けられ、これが液体通過
間〓2を臨んでいる。
The cylindrical nozzle body 1 consists of an upper member 6, an intermediate member 7, and a lower member 8, which are integrally connected to each other in a straight line. The upper member 6 has a larger diameter than the other members 7 and 8. An outward flange 9 is provided at the upper end of the outer peripheral surface of the upper member 6, and an inward flange of a flanged nut 10 is engaged with this. By fitting this nut 10 into the filling machine main body (not shown), the liquid filling nozzle is attached to and removed from the filling machine main body. Further, an O-ring groove 11 is provided on the upper surface of the outward facing collar 9. A female thread 12 is provided near the upper end of the inner circumferential surface of the upper member 6, and an inward flange 13 is provided at the lower end of the inner circumferential surface. The intermediate member 7 has a double structure consisting of inner and outer tubes 14 and 15 that are arranged concentrically at a constant interval, thereby preventing dew condensation during filling. The upper end of the inner tube 14 is tightly fitted and fixed to the inner peripheral surface of the inward facing collar 13, and the lower end thereof is attached to the lower member 8.
It is tightly fitted and fixed to the inner circumferential surface of the
On the other hand, the upper end of the outer tube 15 is fixed to the lower end of the upper member 6, and the lower end thereof is fixed to the upper end of the lower member 8. A downwardly tapered portion 16 is provided on the inner surface of the lower opening edge of the lower member 8, and this portion faces the liquid passage space 2.

弾性体3は、その全体が食品用ゴムによつて横
断面略L形に一体形成されたものであつて、その
全体のうちの上からほぼ2/3の部分をなす壁体が
上細りに傾斜させられていて、その外面に上向き
のテーパ部17が設けられている。弾性体3の内
周面上下端にはそれぞれつば18,19が設けら
れている。
The elastic body 3 is made of food-grade rubber and is integrally formed with a substantially L-shaped cross section, and the wall that is approximately two-thirds from the top of the entire body is tapered at the top. It is inclined and has an upwardly tapered portion 17 on its outer surface. Flams 18 and 19 are provided at the upper and lower ends of the inner peripheral surface of the elastic body 3, respectively.

吊り下げ部材5は、筒状ノズル本体1の上部材
6内面に密着状にはめ入れられた短円柱体20
と、上端が短円柱体20の下面中心部に固定され
てそこから吊り下げられている加圧流体管21
と、加圧流体管21の下端に固定された円錐体2
2とからなる。短円柱体20の外周面上部には雄
ねじ23が設けられており、これが上部材6の雌
ねじ12にねじはめられている。短円柱体20下
面と上部材6の内向き鍔13上面の間には若干の
〓間があけられており、これにはOリング24が
介在されている。短円柱体20の中心から所定半
径の円周上には所定間隔で複数の貫通孔25があ
けられており、これらが液体通路を形成してい
る。加圧流体管21の外周面下端部には雄ねじ2
6が設けられている。円錐体22の中心部には中
空部27が設けられるとともに、中空部27より
上向きにねじ孔28があけられている。このねじ
孔28に加圧流体管21の雄ねじ26がねじはめ
られている。円錐体22の円錐面29上下端には
環状溝30,31がそれぞれ形成されている。円
錐体22にその円錐面29を覆うように弾性体3
が被せられ、かつ両環状溝30,31に弾性体3
のつば18,19がそれぞれはめ入れられて固着
されることにより、弾性体3と円錐体22の間に
環状加圧流体室4が形成されている。上部材6の
下部寄りの部分の周壁には加圧流体出入口32が
設けられており、これの外向き開口には加圧流体
供給管33が接続されている。加圧流体出入口3
2の内向き開口に連通するように短円柱体20の
外周面に環状溝34が設けられるとともに、その
溝底より内向きにのびて加圧流体管21の上端に
連通した上部加圧流体通路35が設けられてい
る。一方、円錐体22には、加圧流体管21の下
端と加圧流体室4を連通させる下部加圧流体通路
36が設けられている。
The hanging member 5 is a short cylindrical body 20 that is tightly fitted into the inner surface of the upper member 6 of the cylindrical nozzle body 1.
and a pressurized fluid pipe 21 whose upper end is fixed to the center of the lower surface of the short cylindrical body 20 and suspended from there.
and a cone 2 fixed to the lower end of the pressurized fluid tube 21.
It consists of 2. A male thread 23 is provided on the upper part of the outer peripheral surface of the short cylindrical body 20, and this is screwed into the female thread 12 of the upper member 6. There is a slight gap between the lower surface of the short cylindrical body 20 and the upper surface of the inward collar 13 of the upper member 6, and an O-ring 24 is interposed in this space. A plurality of through holes 25 are formed at predetermined intervals on the circumference of the short cylindrical body 20 at a predetermined radius from the center thereof, and these form liquid passages. The pressurized fluid pipe 21 has a male thread 2 at the lower end of its outer peripheral surface.
6 is provided. A hollow part 27 is provided in the center of the conical body 22, and a screw hole 28 is bored upward from the hollow part 27. A male thread 26 of the pressurized fluid pipe 21 is screwed into this threaded hole 28 . Annular grooves 30 and 31 are formed at the upper and lower ends of the conical surface 29 of the conical body 22, respectively. An elastic body 3 is attached to the conical body 22 so as to cover the conical surface 29 thereof.
is covered, and an elastic body 3 is placed in both annular grooves 30 and 31.
An annular pressurized fluid chamber 4 is formed between the elastic body 3 and the conical body 22 by fitting and fixing the flanges 18 and 19, respectively. A pressurized fluid inlet/outlet 32 is provided in the peripheral wall of the lower portion of the upper member 6, and a pressurized fluid supply pipe 33 is connected to the outward opening of the pressurized fluid inlet/outlet 32. Pressurized fluid inlet/outlet 3
An annular groove 34 is provided on the outer peripheral surface of the short cylindrical body 20 so as to communicate with the inward opening of the short cylindrical body 20, and an upper pressurized fluid passageway extends inward from the bottom of the groove and communicates with the upper end of the pressurized fluid pipe 21. 35 are provided. On the other hand, the conical body 22 is provided with a lower pressurized fluid passage 36 that communicates the lower end of the pressurized fluid pipe 21 with the pressurized fluid chamber 4 .

加圧流体管21の内部にはそれよりも小径の空
気抜き管37が同心状にはめ入れられている。空
気抜き管37の下端は、円錐体22の中空部27
より下向きにあけられかつ下端円錐体22の下面
に開口した空気入口38の上端に接続されてい
る。なお、空気抜き管38下端と加圧流体管21
下端とは相互に環状端壁39によつて一体的に連
結されており、これによつて加圧流体管21の下
端開口が閉鎖されているが、端壁39のすぐ上に
複数の小孔40があけられることにより、加圧流
体管21の下端が円錐体22の中空部27に連通
されている。また、端壁39下面と中空部27底
面との間には円環状パツキン41が介在されてい
る。空気抜き管37の上端は、加圧流体管21の
上端よりも上方の位置において短円柱体20に固
着されている。その上端に連通されるように短円
柱体20にその半径方向にのびた空気通路42が
設けられるとともに、この空気通路42の外端に
連通するように短円柱体20の外周面に環状溝4
3が設けられている。この環状溝43を介して空
気通路42と接続されるように上部材6の周壁に
空気出口44が設けられている。空気出口44の
外向き開口には空気排出管45が接続されてい
る。さらに、短円柱体20の外周面には、そこに
設けられた2つの上下環状溝43,34のうち、
上環状溝43の上方と、上下環状溝43,34の
中間にそれぞれ位置するようにOリング46,4
7がそれぞれ取付けられている。
An air vent pipe 37 having a smaller diameter is fitted concentrically inside the pressurized fluid pipe 21 . The lower end of the air vent pipe 37 is connected to the hollow part 27 of the cone body 22.
It is connected to the upper end of an air inlet 38 that is opened more downwardly and opened on the lower surface of the lower end cone 22 . Note that the lower end of the air vent pipe 38 and the pressurized fluid pipe 21
The lower end is integrally connected to the lower end by an annular end wall 39, which closes the lower end opening of the pressurized fluid pipe 21, but a plurality of small holes are formed just above the end wall 39. 40 is opened, so that the lower end of the pressurized fluid pipe 21 is communicated with the hollow part 27 of the conical body 22. Further, an annular packing 41 is interposed between the lower surface of the end wall 39 and the bottom surface of the hollow portion 27. The upper end of the air vent pipe 37 is fixed to the short cylindrical body 20 at a position above the upper end of the pressurized fluid pipe 21. An air passage 42 extending in the radial direction is provided in the short cylindrical body 20 so as to communicate with the upper end thereof, and an annular groove 44 is formed on the outer peripheral surface of the short cylindrical body 20 so as to communicate with the outer end of the air passage 42.
3 is provided. An air outlet 44 is provided in the peripheral wall of the upper member 6 so as to be connected to the air passage 42 via the annular groove 43. An air exhaust pipe 45 is connected to the outward opening of the air outlet 44 . Furthermore, among the two upper and lower annular grooves 43 and 34 provided on the outer peripheral surface of the short cylindrical body 20,
O-rings 46 and 4 are positioned above the upper annular groove 43 and between the upper and lower annular grooves 43 and 34, respectively.
7 are installed respectively.

加圧流体供給管33によつて加圧流体出入口3
2に加圧流体を供給すると、加圧流体管21など
を介して加圧流体室4に加圧流体が流入し、弾性
体3が図中実線で示す状態から鎖線で示す状態に
膨脹して下部材8の下端開口縁テーパ部16に密
に接触する。その結果、ノズル本体1の下端開口
が閉じられる。そして加圧流体の供給を停止して
加圧流体を加圧流体室4から排出すると、弾性体
3が実線で示す元の状態に収縮し、これによつて
ノズル本体1の下端開口が開かれる。この状態で
容器Cに充填液が充填される。充填液が充填され
ていくにしたがつて、容器Cの内部の空気は充填
液に置換されて空気抜き管37などを介して容器
Cの外部に排出される。
The pressurized fluid inlet/outlet 3 is connected by the pressurized fluid supply pipe 33.
When pressurized fluid is supplied to 2, the pressurized fluid flows into the pressurized fluid chamber 4 through the pressurized fluid pipe 21 etc., and the elastic body 3 expands from the state shown by the solid line in the figure to the state shown by the chain line. It comes into close contact with the lower end opening edge tapered portion 16 of the lower member 8 . As a result, the lower end opening of the nozzle body 1 is closed. Then, when the supply of pressurized fluid is stopped and the pressurized fluid is discharged from the pressurized fluid chamber 4, the elastic body 3 contracts to the original state shown by the solid line, thereby opening the lower end opening of the nozzle body 1. . In this state, the container C is filled with the filling liquid. As the filling liquid is filled, the air inside the container C is replaced by the filling liquid and is discharged to the outside of the container C via the air vent pipe 37 or the like.

充填時に容器内部の空気を排出する場合に、こ
れを大気に直接開放するようにしてもよく、真空
ポンプなどによつて強制的に吸引するようにして
もよい。加圧流体としは、空気、水、油などを適
宜選択して用いることができる。
When the air inside the container is discharged during filling, it may be directly vented to the atmosphere, or it may be forcibly sucked in using a vacuum pump or the like. As the pressurized fluid, air, water, oil, etc. can be selected and used as appropriate.

発明の効果 この発明によれば、加圧流体室に加圧流体を供
給すると、弾性体は下向きには膨脹することな
く、外向きにのみ膨脹するから、弾性体の膨脹作
用によるシール圧を有効に利用することができ
る。
Effects of the Invention According to the present invention, when pressurized fluid is supplied to the pressurized fluid chamber, the elastic body does not expand downward but only outward, so that the sealing pressure due to the expansion action of the elastic body is effectively applied. It can be used for.

【図面の簡単な説明】[Brief explanation of drawings]

図面はこの発明の実施例を示す縦垂直断面図で
ある。 1……ノズル本体、2……液体通過間〓、3…
…弾性体、4……加圧流体室、5……吊り下げ部
材。
The drawings are vertical sectional views showing embodiments of the present invention. 1...Nozzle body, 2...Liquid passage interval, 3...
...Elastic body, 4... Pressurized fluid chamber, 5... Hanging member.

Claims (1)

【特許請求の範囲】 1 筒状ノズル本体1と、筒状ノズル本体1の下
端開口に、これの縁部に環状の液体通過間〓2を
形成するように配置されている弾性体3と、弾性
体3を吊り下げている吊り下げ部材5と、弾性体
3を膨脹させて液体通過間〓2を閉鎖するように
弾性体3に加圧流体を供給する手段とからなる液
充填ノズルにおいて、 弾性体3が短筒状に形成され、弾性体3の上端
および下端が吊り下げ部材5に固定され、弾性体
3の内側に、弾性体3の内周面にそつて環状の加
圧流体室4が形成されていることを特徴とする液
充填ノズル。
[Scope of Claims] 1. A cylindrical nozzle body 1; an elastic body 3 disposed at the lower end opening of the cylindrical nozzle body 1 so as to form an annular liquid passage gap 2 at the edge thereof; A liquid filling nozzle comprising a hanging member 5 suspending the elastic body 3, and a means for supplying pressurized fluid to the elastic body 3 so as to expand the elastic body 3 and close the liquid passage gap 2. The elastic body 3 is formed into a short cylindrical shape, the upper and lower ends of the elastic body 3 are fixed to a hanging member 5, and an annular pressurized fluid chamber is provided inside the elastic body 3 along the inner peripheral surface of the elastic body 3. 4. A liquid filling nozzle characterized in that a.
JP5163584A 1984-03-16 1984-03-16 Liquid filling nozzle Granted JPS60193887A (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
JP5163584A JPS60193887A (en) 1984-03-16 1984-03-16 Liquid filling nozzle
DE8585200390T DE3560155D1 (en) 1984-03-16 1985-03-15 Liquid filling nozzle
EP19850200390 EP0155736B1 (en) 1984-03-16 1985-03-15 Liquid filling nozzle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP5163584A JPS60193887A (en) 1984-03-16 1984-03-16 Liquid filling nozzle

Publications (2)

Publication Number Publication Date
JPS60193887A JPS60193887A (en) 1985-10-02
JPH0329642B2 true JPH0329642B2 (en) 1991-04-24

Family

ID=12892302

Family Applications (1)

Application Number Title Priority Date Filing Date
JP5163584A Granted JPS60193887A (en) 1984-03-16 1984-03-16 Liquid filling nozzle

Country Status (3)

Country Link
EP (1) EP0155736B1 (en)
JP (1) JPS60193887A (en)
DE (1) DE3560155D1 (en)

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5687779A (en) * 1992-09-17 1997-11-18 Tetra Laval Holdings & Finance S.A. Packaging machine system for filling primary and secondary products into a container
DE69518549T2 (en) * 1994-09-29 2001-01-11 Tetra Laval Holdings & Finance System in a packaging machine for filling a container with a first and a second product
FR2881106B1 (en) * 2005-01-27 2010-09-24 Commissariat Energie Atomique PROCESS FOR FILLING A CONTAINER WITH AT LEAST ONE POWDER MATERIAL AND DEVICE FOR CARRYING OUT SAID METHOD
FR2882029B1 (en) 2005-02-14 2011-03-11 Commissariat Energie Atomique DEVICE FOR DISPENSING AT LEAST ONE GRANULAR MATERIAL IN A CONTAINER, FILLING DEVICE AND FILLING METHOD USING SUCH A DEVICE

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS4881126A (en) * 1972-02-01 1973-10-30
JPS56113592A (en) * 1980-02-08 1981-09-07 Toyo Shokuhin Kikai Kk Filling valve for mixed liquid of granule* sarcocarp* etc*

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2761607A (en) * 1954-02-15 1956-09-04 American Machinery Corp Filler-valve for filling containers
US3195586A (en) * 1962-11-08 1965-07-20 Clarence W Vogt Method and apparatus for accurately dispensing divided material

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS4881126A (en) * 1972-02-01 1973-10-30
JPS56113592A (en) * 1980-02-08 1981-09-07 Toyo Shokuhin Kikai Kk Filling valve for mixed liquid of granule* sarcocarp* etc*

Also Published As

Publication number Publication date
DE3560155D1 (en) 1987-06-11
JPS60193887A (en) 1985-10-02
EP0155736A1 (en) 1985-09-25
EP0155736B1 (en) 1987-05-06

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