JPS6144629Y2 - - Google Patents

Info

Publication number
JPS6144629Y2
JPS6144629Y2 JP1983191385U JP19138583U JPS6144629Y2 JP S6144629 Y2 JPS6144629 Y2 JP S6144629Y2 JP 1983191385 U JP1983191385 U JP 1983191385U JP 19138583 U JP19138583 U JP 19138583U JP S6144629 Y2 JPS6144629 Y2 JP S6144629Y2
Authority
JP
Japan
Prior art keywords
discharge port
water
outer tank
raw
inner cylinder
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
Application number
JP1983191385U
Other languages
Japanese (ja)
Other versions
JPS6098389U (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 JP1983191385U priority Critical patent/JPS6098389U/en
Publication of JPS6098389U publication Critical patent/JPS6098389U/en
Application granted granted Critical
Publication of JPS6144629Y2 publication Critical patent/JPS6144629Y2/ja
Granted legal-status Critical Current

Links

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E30/00Energy generation of nuclear origin

Landscapes

  • Edible Seaweed (AREA)

Description

【考案の詳細な説明】 この考案はのり抄機へ原料生のりを定量宛供給
することを目的とした生のり調合機に関するもの
である。
[Detailed description of the invention] This invention relates to a raw seaweed blending machine whose purpose is to supply a fixed amount of raw seaweed to a seaweed paper machine.

従来のり抄に際し、定濃度(生のりと水との割
合いが一定)の生のりを一定量供給することが、
均質製品を得る為の必須要件とされている為に、
多種構造の調合機が提案され、実用に供されてい
る。そこで供給すべき生のりを定量宛供給する為
に、計量機能を備えた分割車を含む構造は最も好
ましい調合機として多用されている。然し乍ら分
割車に入る際の原料濃度が一定しないと、単位容
量中に含まれた生のり量が不均一になるおそれが
あり、水分を少なくして濃度変化を少なくすれ
ば、落下すべき生のりが分割車に付着して供給量
を不安定にするおそれがあつた。前記分割車に付
着する生のりを除去する為にエアジエツトを使用
する考案も提案されているが(実公昭58−20150
号)この考案では原料生のりの濃度を調整し得な
いのみならず、分割車より落下した生のりの付着
を防止し、原料生のりの供給を容易する為に多量
の水を供給する必要があつた。然るにこの考案は
有底外槽内へ通水内筒を設けて脱水を可能にする
と共に、排出口へ給水管を横設して分割車内の生
のりの円滑な落下を図り、かつポンプにより加圧
移送したので、前記従来の問題点を改善したので
ある。
In conventional Nori-sho, it is possible to supply a constant amount of raw seaweed at a constant concentration (the ratio of raw seaweed to water is constant).
Because it is considered an essential requirement to obtain a homogeneous product,
Compounding machines with various structures have been proposed and put into practical use. Therefore, in order to supply raw seaweed to a fixed amount, a structure including a dividing wheel with a measuring function is often used as the most preferable blending machine. However, if the raw material concentration when entering the dividing car is not constant, there is a risk that the amount of raw glue contained in a unit volume will be uneven. There was a risk that the fuel would adhere to the divided cars and make the supply amount unstable. It has also been proposed to use an air jet to remove raw glue adhering to the divided wheels (Utility Model Publication No. 58-20150).
No.) With this device, not only is it not possible to adjust the concentration of the raw material raw glue, but also it is necessary to supply a large amount of water in order to prevent the raw glue that has fallen from the dividing car from adhering and to facilitate the supply of the raw material raw glue. It was hot. However, this idea installed an inner tube for water passage inside the bottomed outer tank to enable dehydration, installed a water supply pipe horizontally to the discharge port to allow the raw glue inside the divided car to fall smoothly, and added water using a pump. Since pressure transfer was used, the above-mentioned problems of the conventional method were improved.

即ちこの考案を実施例について説明すれば、有
底外槽1の内側へ所定の間隔を保つてパンチング
メタルよりなる通水内筒2を設置し、前記外槽1
の底板3の中心部を貫通して回転軸4を垂直に架
設する。前記底板3上に突出した回転軸へブツシ
ユ5を嵌遊し、ブツシユ5へボス6を固定してボ
ス6に複数の仕切板7(実施例は10枚)を等間隔
かつ放射状に突設して分割車を構成する。またブ
ツシユ5から突出した回転軸4の上端部へボス8
を固定し、ボス8に取付杆9を直径対称的に固定
し、前記取付杆9へゴム板10の上端を固定す
る。前記ゴム板10は取付杆9と分割車上面との
間を塞ぐ形状に設けられている。前記底板3の一
側へ生のり排出口11を突設し、排出口11は連
結管12を介して送りポンプ13の吸入口と連結
する。前記排出口11の上方には、分割車三区画
を覆う覆板14を設け、その中央部の排出口を横
断するように給水管15を横設してある。前記給
水管15の一側は電磁バルブ16と手動バルブ1
7を介して送水管19と連結すると共に、手動バ
ルブ18を介して分岐管20と連結し、分岐管2
0は前記内筒の口線内に敷設した給水管21と連
結してある。
That is, to explain this invention with reference to an embodiment, a water-conducting inner cylinder 2 made of punched metal is installed inside a bottomed outer tank 1 at a predetermined interval, and the outer tank 1 is
A rotating shaft 4 is installed vertically through the center of the bottom plate 3 of the base plate 3. A bush 5 is fitted onto the rotating shaft protruding from the bottom plate 3, a boss 6 is fixed to the bush 5, and a plurality of partition plates 7 (10 in the embodiment) are protruded from the boss 6 at equal intervals and radially. to form a split car. Also, a boss 8 is attached to the upper end of the rotating shaft 4 protruding from the bush 5.
is fixed, a mounting rod 9 is fixed diametrically symmetrically to the boss 8, and the upper end of the rubber plate 10 is fixed to the mounting rod 9. The rubber plate 10 is provided in a shape that closes the space between the mounting rod 9 and the upper surface of the split wheel. A green glue discharge port 11 is protruded from one side of the bottom plate 3, and the discharge port 11 is connected to the suction port of a feed pump 13 via a connecting pipe 12. A cover plate 14 is provided above the discharge port 11 to cover the three compartments of the divided vehicle, and a water supply pipe 15 is installed horizontally so as to cross the discharge port in the center of the cover plate 14. One side of the water supply pipe 15 has a solenoid valve 16 and a manual valve 1.
7 to the water supply pipe 19, and the manual valve 18 to the branch pipe 20.
0 is connected to a water supply pipe 21 laid within the mouth line of the inner cylinder.

次に前記実施例についてその動作を説明する。 Next, the operation of the above embodiment will be explained.

内筒2内へ適量の生のり22を投入し、モータ
ー(図示していない)を始動する。前記モーター
と連動する駆動軸23にベベルギヤー24が固定
してあるので、ベベルギヤー24を介し、ブツシ
ユ5に固定してあるベベルギヤー25と、回転軸
4に固定してあるベベルギヤー26を回転させ
る。従つてブツシユ5と回転軸4は互に逆回転す
る。例えばボス6が第2図中矢示28の方向へ回
転すれば、ボス8は矢示29の方向へ回転し、分
割車内へ生のりを確実に収容すべくゴム板10で
摺切る。一方送水管19より矢示30のように送
られた水は給水管15から矢示31のように噴出
し、分割車内の生のりを洗除して排出口11内へ
落下させる。また必要に応じて手動バルブ18を
開き、矢示32のように分岐管20を通過し、給
水管21から矢示33のように給水する。従つて
内筒内の生のりには適量の水分を供給される。一
方内筒は通水壁(パンチングメタル又は網筒)よ
りなる為に、生のりに含まれた水分は矢示34の
ように外槽内へ流出し、矢示35のように排水管
36より排出されれる。尤も分割車と摺接する内
筒の下端部は無孔壁37となつている為に該部よ
り脱水されるおそれはなく、更に排水管36にホ
ース38を連結し、ホース38の一部の高さを矢
示39のように調節すれば内筒内の水位を調節す
ることができる。前記のようにほぼ定濃度の生の
りが矢示40のように連結管12内を落下し、送
りポンプ13内へ入ると、ポンプ軸41の回転
(矢示42)につれて弾性羽根43が同方向へ回
転し、羽根43は吐出口44を通過すると共に案
内45によつて変形するので、生のりは矢示46
のように加圧送出される。前記において、内筒内
の水位により分割車に収容される生のりの濃度は
ほぼ一定となり、分割車で計量されるので、ブツ
シユ5の回転により生のり送り量が規制される。
更にポンプ軸41の回転により送り量が正確に規
制されるので、のり抄機には定量の生のりが送ら
れる。
An appropriate amount of raw glue 22 is put into the inner cylinder 2, and a motor (not shown) is started. Since a bevel gear 24 is fixed to a drive shaft 23 that interlocks with the motor, a bevel gear 25 fixed to the bush 5 and a bevel gear 26 fixed to the rotating shaft 4 are rotated via the bevel gear 24. Therefore, the bush 5 and the rotating shaft 4 rotate in opposite directions. For example, when the boss 6 rotates in the direction of arrow 28 in FIG. 2, the boss 8 rotates in the direction of arrow 29, and the rubber plate 10 cuts the raw glue to ensure that the raw glue is accommodated in the divided car. On the other hand, water sent from the water supply pipe 19 as shown by the arrow 30 is spouted from the water supply pipe 15 as shown by the arrow 31, washes raw glue inside the divided car, and drops it into the discharge port 11. Further, if necessary, the manual valve 18 is opened, water passes through the branch pipe 20 as shown by the arrow 32, and water is supplied from the water supply pipe 21 as shown by the arrow 33. Therefore, an appropriate amount of moisture is supplied to the raw seaweed in the inner cylinder. On the other hand, since the inner cylinder is made of a water-permeable wall (perforated metal or mesh tube), the water contained in the raw glue flows into the outer tank as shown by arrow 34, and from the drain pipe 36 as shown by arrow 35. be ejected. Of course, since the lower end of the inner cylinder that comes into sliding contact with the split wheel is a non-porous wall 37, there is no risk of water being drained from that part. By adjusting the height as shown by arrow 39, the water level in the inner cylinder can be adjusted. As mentioned above, when raw glue with a nearly constant concentration falls through the connecting pipe 12 as shown by the arrow 40 and enters the feed pump 13, the elastic blades 43 move in the same direction as the pump shaft 41 rotates (as shown by the arrow 42). The blade 43 passes through the discharge port 44 and is deformed by the guide 45, so that the raw glue moves as shown by the arrow 46.
It is delivered under pressure like this. In the above, the concentration of the raw glue stored in the dividing wheel is approximately constant depending on the water level in the inner cylinder, and since it is measured by the dividing wheel, the amount of raw glue fed is regulated by the rotation of the bush 5.
Furthermore, since the feed amount is accurately regulated by the rotation of the pump shaft 41, a fixed amount of raw glue is fed to the glue paper machine.

即ちこの考案によれば、排出口上に給水管を横
設したので、分割車内の生のりを確実に排出落下
させ得る効果がある。また排出口を送りポンプの
吸入口に連結したので生のり送り量を正確に規制
し得る効果がある。次に分割車上へ仕切板の上面
と摺接するゴム板を直径的に設けて、分割車と逆
回転させたので、分割車の各仕切板間にはのりが
正しく充填され、正確に計量される効果がある。
That is, according to this invention, since the water supply pipe is installed horizontally above the discharge port, there is an effect that the raw glue inside the divided car can be reliably discharged and dropped. Furthermore, since the discharge port is connected to the suction port of the feed pump, it is possible to accurately regulate the feed amount of raw glue. Next, a rubber plate was installed diametrically on the dividing wheel to make sliding contact with the top surface of the partition plate, and it was rotated in the opposite direction to the dividing wheel, so that the glue was correctly filled between each partition plate of the dividing wheel and accurately measured. It has the effect of

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

第1図はこの考案の実施例の断面図、第2図は
横断平面図、第3図は同じく排出口部の一部断面
図である。 1……有底外槽、2……通水内筒、3……底
板、4……回転軸、5……ブツシユ、6,8……
ボス、7……仕切板、9……取付杆、10……ゴ
ム板、11……排出口、13……送りポンプ、1
5……給水管、19……送水管、21……給水
管。
FIG. 1 is a sectional view of an embodiment of this invention, FIG. 2 is a cross-sectional plan view, and FIG. 3 is a partial sectional view of the discharge port. 1...Bottomed outer tank, 2...Water passage inner cylinder, 3...Bottom plate, 4...Rotating shaft, 5...Button, 6, 8...
Boss, 7... Partition plate, 9... Mounting rod, 10... Rubber plate, 11... Discharge port, 13... Feeding pump, 1
5... Water supply pipe, 19... Water supply pipe, 21... Water supply pipe.

Claims (1)

【実用新案登録請求の範囲】 1 有底外槽の内側へ所定の間隔を保つて通水内
筒を設置し、前記通水内筒の中心部へ、前記外
槽底を貫通して回転軸を垂直に架設し、前記回
転軸の内筒内突出部には、計量機能を有する分
割車の仕切板を外槽底に摺接するように賦射状
に固定すると共に、前記仕切板の上部には、摺
切り部材を水平に設置し、前記摺り切り部材
は、前記分割車の仕切板上面に摺接するゴム板
よりなり、分割車とは、互いに逆方向に回転す
べく直径的に架設され、前記外槽底上の一部へ
前記分割車の覆板を水平に固定し、前記覆板の
下方へ生のり排出口を開口させ、前記排出口は
送りポンプの吸入口に連設し、前記排出口の上
方に給水管を横設した生のり調合機。 2 給水管は排出口の直上へ、これを横断する如
く水平に設置され、下側へ噴水孔を設けた実用
新案登録請求の範囲第1項記載の生のり調合
機。
[Claims for Utility Model Registration] 1. A water-conducting inner cylinder is installed inside a bottomed outer tank at a predetermined interval, and a rotating shaft is inserted into the center of the water-conducting inner cylinder and passing through the bottom of the outer tank. is installed vertically, and a partition plate of a split wheel having a metering function is fixed to the protrusion in the inner cylinder of the rotating shaft in a radial manner so as to be in sliding contact with the bottom of the outer tank. A sliding member is installed horizontally, the sliding member is made of a rubber plate that slides on the upper surface of the partition plate of the dividing wheel, and is installed diametrically so as to rotate in opposite directions to the dividing wheel, A cover plate of the split wheel is horizontally fixed to a part of the bottom of the outer tank, a raw glue discharge port is opened below the cover plate, the discharge port is connected to the suction port of the feed pump, and the A raw seaweed blending machine with a water supply pipe installed horizontally above the discharge port. 2. The raw seaweed blending machine according to claim 1, wherein the water supply pipe is horizontally installed directly above and across the discharge port, and a water fountain is provided on the lower side.
JP1983191385U 1983-12-12 1983-12-12 Raw seaweed blending machine Granted JPS6098389U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP1983191385U JPS6098389U (en) 1983-12-12 1983-12-12 Raw seaweed blending machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP1983191385U JPS6098389U (en) 1983-12-12 1983-12-12 Raw seaweed blending machine

Publications (2)

Publication Number Publication Date
JPS6098389U JPS6098389U (en) 1985-07-04
JPS6144629Y2 true JPS6144629Y2 (en) 1986-12-16

Family

ID=30412140

Family Applications (1)

Application Number Title Priority Date Filing Date
JP1983191385U Granted JPS6098389U (en) 1983-12-12 1983-12-12 Raw seaweed blending machine

Country Status (1)

Country Link
JP (1) JPS6098389U (en)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS62228259A (en) * 1986-03-27 1987-10-07 Watanabe Kikai Kogyo Kk Activity controller for raw laver
JP2007275025A (en) * 2006-04-11 2007-10-25 Fulta Electric Machinery Co Ltd Laver concentration-stabilizing apparatus for laver preparation machine

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5427431U (en) * 1977-07-27 1979-02-22
JPS5650792U (en) * 1979-09-26 1981-05-06
JPS58155063A (en) * 1983-02-15 1983-09-14 Furuta Denki Kk Laver blender

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5427431U (en) * 1977-07-27 1979-02-22
JPS5650792U (en) * 1979-09-26 1981-05-06
JPS58155063A (en) * 1983-02-15 1983-09-14 Furuta Denki Kk Laver blender

Also Published As

Publication number Publication date
JPS6098389U (en) 1985-07-04

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