JPS6311109Y2 - - Google Patents

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Publication number
JPS6311109Y2
JPS6311109Y2 JP1983107874U JP10787483U JPS6311109Y2 JP S6311109 Y2 JPS6311109 Y2 JP S6311109Y2 JP 1983107874 U JP1983107874 U JP 1983107874U JP 10787483 U JP10787483 U JP 10787483U JP S6311109 Y2 JPS6311109 Y2 JP S6311109Y2
Authority
JP
Japan
Prior art keywords
hopper
holding member
powder
socket
movable
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
JP1983107874U
Other languages
Japanese (ja)
Other versions
JPS6015892U (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 JP10787483U priority Critical patent/JPS6015892U/en
Publication of JPS6015892U publication Critical patent/JPS6015892U/en
Application granted granted Critical
Publication of JPS6311109Y2 publication Critical patent/JPS6311109Y2/ja
Granted legal-status Critical Current

Links

Description

【考案の詳細な説明】 本考案は、粉末状の染料・顔料を小分けする粉
体小分用装置の改良に係り、取り扱いが容易に行
えると共に、異種混合を許さない多品種の染料・
顔料の小分け作業を能率よく行える粉体小分用装
置に関する。
[Detailed description of the invention] The present invention relates to the improvement of a powder subdividing device that subdivides powdered dyes and pigments.It is easy to handle, and can handle a wide variety of dyes and pigments that do not allow mixing of different types.
This invention relates to a powder subdivision device that can efficiently perform pigment subdivision work.

一般に粉体小分用装置は、金属製のホツパと、
該ホツパを振動させる振動機構と、ホツパの出口
に連結されたスクリユーフイーダー等から構成さ
れて居り、前記ホツパを振動させて粉体をスクリ
ユーフイーダーに供給し、該フイーダーにより粉
体を搬送しつつロードセル等で測定計量して小分
けを行うようにしている。従つて、大量の同品種
の粉体を小分けするのには極めて適している。
Generally, a powder subdivision device has a metal hopper,
It is composed of a vibration mechanism that vibrates the hopper, and a screw feeder connected to the outlet of the hopper. While being transported, it is measured and weighed using a load cell or the like and divided into smaller portions. Therefore, it is extremely suitable for subdividing large amounts of powder of the same type.

然し乍ら、従前の粉体小分用装置は、使用後に
ホツパや複雑な機構のスクリユーフイーダー等に
残渣が残る為、異種混合を許さない多品種の染
料・顔料を小分けする場合には、装置を分解して
各部を洗浄した後、再使用しなければならない。
その結果、洗浄に作業時間の大半を費やし、小分
け作業の能率が極めて低下するという問題があ
り、従前から多品種の洗料・顔料を小分けする様
な場合には、手作業に頼つているのが現状であ
る。ところが、近年環境衛生や人件費等の問題に
より、手作業による小分け作業の実施が著しく困
難になりつつある。
However, conventional powder subdivision equipment leaves residue on the hopper and screw feeder with a complicated mechanism after use, so when dispensing a wide variety of dyes and pigments that do not allow different types of mixture, it is difficult to use the equipment. must be disassembled and each part cleaned before reuse.
As a result, most of the work time is spent on washing, and the efficiency of dispensing work is extremely reduced. Traditionally, when dispensing a wide variety of detergents and pigments, manual labor has been relied upon. is the current situation. However, in recent years, due to problems such as environmental hygiene and labor costs, it has become extremely difficult to carry out the manual subdivision work.

又、ホツパ等は金属製である為、運搬や組立時
等の取り扱いが容易に行えないうえ、装置自体も
コスト高になるという問題がある。
Further, since the hoppers and the like are made of metal, they are not easy to handle during transportation or assembly, and the cost of the device itself is high.

本考案は、上記の問題点を解消する為に創案さ
れたものであり、その目的は取り扱いが容易に行
えると共に、多品種の洗料・顔料の小分け作業を
能率よく行え、然もコスト低減を図れる粉体小分
用装置を提供するにある。
This invention was devised to solve the above problems, and its purpose is to make it easy to handle, efficiently divide a wide variety of detergents and pigments, and reduce costs. The purpose of the present invention is to provide a device for subdividing powder that can be used to subdivide powder.

この課題を解決した本考案の粉体小分用装置
は、下窄まり截頭円錐状の筒体に成形された変形
自在な合成樹脂フイルム製のホツパと、ホツパの
下端開口部に取付けられたホース連結用のソケツ
トと、ホツパの下端部分及びソケツトに係脱自在
に係合して、これらを上方変位不能に固定保持す
る固定保持部材と、ホツパの上端部分に着脱自在
に取着されており、固定保持部材により固定保持
されたホツパを所定の筒体形状に緊張保持しうる
ホツパ保持位置とその下方位のホツパ取付位置と
に亘つて昇降自在に設けられた可動保持部材と、
可動保持部材を昇降動作させる昇降機構と、ホツ
パ内に配置された粉体供給量調整用の回転皿羽根
と、を具備したことを基本構成とするものであ
る。
The powder subdividing device of the present invention, which solves this problem, has a hopper made of a deformable synthetic resin film formed into a truncated conical cylinder that narrows at the bottom, and a hopper attached to the opening at the bottom end of the hopper. A socket for connecting a hose, a fixed holding member that removably engages with the lower end of the hopper and the socket and holds them fixedly so that they cannot be moved upward, and is detachably attached to the upper end of the hopper. a movable holding member that is movable up and down between a hopper holding position and a hopper mounting position below the hopper holding position capable of tension-holding the hopper fixedly held by the fixed holding member in a predetermined cylindrical shape;
The basic configuration includes an elevating mechanism that moves the movable holding member up and down, and a rotary plate blade arranged in the hopper for adjusting the powder supply amount.

本考案は、上記構成とすることにより、取り扱
いが容易に行えると共に、多品種の染料・顔料の
小分け作業を極めて能率よく行える。又、装置自
体のコスト低減を図り得る。
By having the above-mentioned structure, the present invention allows easy handling and extremely efficient subdivision of a wide variety of dyes and pigments. Furthermore, the cost of the device itself can be reduced.

以下、本考案の実施例を図面に基づいて詳細に
説明する。
Hereinafter, embodiments of the present invention will be described in detail based on the drawings.

粉体小分用装置は、ホツパ1、ソケツト2、支
持機構3及び回転皿羽根4等からその主要部が構
成されている。
The main parts of the powder subdividing device include a hopper 1, a socket 2, a support mechanism 3, a rotary plate blade 4, and the like.

前記ホツパ1は、第1図に示す如く、塩化ビニ
ール、ポプロピレン等の合成樹脂フイルムで下窄
まり截頭円錐状の筒体に成形されている。
As shown in FIG. 1, the hopper 1 is formed of a synthetic resin film such as vinyl chloride or poppropylene into a cylindrical body in the shape of a truncated cone that tapers at the bottom.

ソケツト2は、合成樹脂例えば硬質塩化ビニー
ル樹脂等により筒状に形成されて居り、その一端
部はホツパの下端開口部たる出口6に取り付けら
れている。又、他端部外周面には雄螺子が刻設さ
れている。尚、ソケツト2は、その一端部を接着
剤等によりホツパ1の出口6に固着しても良い
し、或はバンド等により脱着可能にしても良い。
The socket 2 is formed into a cylindrical shape from synthetic resin, such as hard vinyl chloride resin, and one end thereof is attached to the outlet 6 which is the opening at the lower end of the hopper. Further, a male screw is carved on the outer peripheral surface of the other end. Incidentally, the socket 2 may be fixed at one end to the outlet 6 of the hopper 1 with an adhesive or the like, or may be made removable with a band or the like.

前記ソケツト2の他端部にはシリコンゴムホー
ス7が脱着自在に連結されて居り、該ホース7は
フイーダーとして使用される。尚、ホース7の材
質は、上記実施例のものに限定されるものではな
く、弾性に富み復元力のあるものであれば良い。
A silicone rubber hose 7 is detachably connected to the other end of the socket 2, and the hose 7 is used as a feeder. The material of the hose 7 is not limited to that used in the above embodiments, but may be any material as long as it is highly elastic and has restoring force.

支持機構3は、ホツパ1を上記した下窄まり截
頭円錐状の筒体形状に保持すると共に、ホツパ1
に比較的振幅の大きい振動を付与するものであ
る。
The support mechanism 3 holds the hopper 1 in the above-mentioned truncated conical cylinder shape, and also supports the hopper 1.
This applies vibrations with relatively large amplitude to the

すなわち、この支持機構3は、第2図及び第3
図に示す如く、ホツパ1の下端部分及びソケツト
2に係脱自在に係合して、これら1,2を上方変
位不能に固定保持する固定保持部材15と、ホツ
パ1の上端部分5に着脱自在に取着されており、
固定保持部材15により固定保持されたホツパ1
を所定の筒体形態に緊張保持しうるホツパ保持位
置(第2図実線位置)とその下方位のホツパ取付
位置(同図鎖線位置)とに亘つて昇降自在に設け
られた可動保持部材12と、可動保持部材12を
昇降動作させる昇降機構たるエアシリンダ13と
を具備してなる。
That is, this support mechanism 3 is shown in FIGS.
As shown in the figure, there is a fixed holding member 15 that removably engages the lower end portion of the hopper 1 and the socket 2 and holds these 1 and 2 fixedly so that they cannot be displaced upward, and a fixed holding member 15 that can be freely attached and detached to the upper end portion 5 of the hopper 1. It is attached to
Hopper 1 fixedly held by fixed holding member 15
A movable holding member 12 is provided so as to be movable up and down between a hopper holding position (solid line position in Figure 2) that can tension-hold the hopper in a predetermined cylindrical shape and a hopper mounting position below the hopper attachment position (dashed line position in the same figure). , and an air cylinder 13 serving as a lifting mechanism for raising and lowering the movable holding member 12.

固定保持部材15は、ホツパ1の下端部分を挿
通させることによつて所定の下窄まり截頭円錐形
状に保持しうる漏斗形状に構成されており、フレ
ーム9にアーム14を介して固定されている。こ
の固定保持部材15は、第2図に示す如く、その
下端部をソケツト2に取着せる半割状の固定リン
グ16に係合させることにより、ホツパ1の下端
部分及びソケツト2を上方変位不能に固定保持す
るようになつている。また、可動保持部材12
は、フレーム9に固着せるガイド用支柱10にア
ーム11を介して上下摺動自在に支持されたステ
ンレス鋼製のリングでもつて構成されており、ホ
ツパ1の上端部にバンド23等により固着され
る。エアシリンダ13は、その伸縮動作により、
可動保持部材12を前記ホツパ保持位置とホツパ
取付位置とに亘つて昇降させると共に、ホツパ保
持位置とその下方近傍位置との間で繰返し昇降さ
せてホツパ1に振動を付与しうるものである。
The fixed holding member 15 has a funnel shape that can be held in a predetermined downwardly tapered truncated conical shape by inserting the lower end portion of the hopper 1, and is fixed to the frame 9 via the arm 14. There is. As shown in FIG. 2, this fixed holding member 15 has its lower end engaged with a half-shaped fixing ring 16 that is attached to the socket 2, so that the lower end of the hopper 1 and the socket 2 cannot be displaced upward. It is designed to be held fixed. In addition, the movable holding member 12
is composed of a stainless steel ring that is supported vertically and slidably on a guide post 10 that is fixed to the frame 9 via an arm 11, and is fixed to the upper end of the hopper 1 with a band 23 or the like. . The air cylinder 13, due to its expansion and contraction operation,
The movable holding member 12 is moved up and down between the hopper holding position and the hopper mounting position, and is also moved up and down repeatedly between the hopper holding position and a position near the lower part of the hopper holding position, thereby imparting vibration to the hopper 1.

回転皿羽根4は、ホツパ1内に回転自在且つ昇
降自在に配設されている。即ち、ガイド用支柱1
0にモータ17を載置した上部保持用アーム体1
8を摺動自在に取付け、上部保持用アーム体18
とフレーム9との間にエアシリンダ19を介設
し、前記モータ17に上部シヤフト20及び下部
シヤフト21を介して回転皿羽根4が連動連結さ
れている。従つて、回転皿羽根4は、モータ17
により回転すると共に、エアシリンダ19の作動
により上部保持用アーム体18の昇降に伴つて第
2図実線位置から鎖線位置に亘つて昇降自在とな
る。尚、上部シヤフト20の一端部と下部シヤフ
ト21の一端部は脱着自在になつて居り、回転皿
羽根4をモータ17に脱着することができる。
The rotary plate blade 4 is disposed within the hopper 1 so as to be rotatable and movable up and down. That is, the guide column 1
Upper holding arm body 1 with motor 17 mounted on 0
8 is slidably attached to the upper holding arm body 18.
An air cylinder 19 is interposed between the motor 17 and the frame 9, and the rotary plate blade 4 is interlocked and connected to the motor 17 via an upper shaft 20 and a lower shaft 21. Therefore, the rotary disc blade 4 is connected to the motor 17
At the same time, as the upper holding arm 18 moves up and down by the operation of the air cylinder 19, it can move up and down from the solid line position in FIG. 2 to the chain line position in FIG. Note that one end of the upper shaft 20 and one end of the lower shaft 21 are detachable, so that the rotary plate blade 4 can be attached to and detached from the motor 17.

前記回転皿羽根4は、皿型を呈し、ホツパ1内
に投入された粉体全量を受け止める堰の役目を果
している。この回転皿羽根4によりこれの下方に
空間が形成され粉体の落下が容易になる。又、回
転皿羽根4は、かき氷機の氷かき刃と似た構造を
呈して居り、羽根開口部の開口面積及びその回転
数により粉体の落下量を調節でき、回転を停止す
ると粉体の落下を停止できるようになつている。
The rotary plate blade 4 has a plate shape and serves as a weir to catch the entire amount of powder thrown into the hopper 1. A space is formed below the rotary disk blade 4, so that the powder can easily fall. Furthermore, the rotary plate blade 4 has a structure similar to the ice shaver blade of a shaved ice machine, and the amount of falling powder can be adjusted by the opening area of the blade opening and its rotation speed, and when the rotation is stopped, the powder falls. It is now possible to stop falling.

第2図に於いて、22はホース7を変形させて
その開口面積を変化させる弁機構であつて、該弁
機構22はホース7を挾持しうる固定部材及び可
動部材と、可動部材を移動させてホース7を変形
させるカムと、カムを駆動する小型モータ等から
構成されている。
In FIG. 2, 22 is a valve mechanism that deforms the hose 7 to change its opening area, and the valve mechanism 22 includes a fixed member that can hold the hose 7, a movable member, and a movable member that moves the movable member. It consists of a cam that deforms the hose 7 and a small motor that drives the cam.

次に、粉末状の染料・顔料を小分けする場合に
ついて説明する。
Next, the case of subdividing powdered dyes and pigments will be explained.

先ず、可動保持部材12がホツパ取付位置(第
2図鎖線位置)にある支持機構3に、ソケツト2
及びホース7を装着したホツパ1を載せ、ソケツ
ト2及びホース7を固定保持部材15の中央穴か
ら下方へ突き出して該ソケツト2に固定リング1
6を取付けると共に、ホツパ1の上方周縁部を折
り返しバンド23等により可動保持部材12に固
定する。このとき、可動保持部材12がホツパ取
付位置にあるので支持機構3へのホツパ1の取付
けが容易に行える。
First, the socket 2 is attached to the support mechanism 3 in which the movable holding member 12 is at the hopper attachment position (the chain line position in FIG. 2).
Place the hopper 1 with the hose 7 attached thereon, protrude the socket 2 and the hose 7 downward from the center hole of the fixing holding member 15, and attach the fixing ring 1 to the socket 2.
6 is attached, and the upper peripheral edge of the hopper 1 is fixed to the movable holding member 12 by a folding band 23 or the like. At this time, since the movable holding member 12 is in the hopper attachment position, the hopper 1 can be easily attached to the support mechanism 3.

次に、上部シヤフト20と下部シヤフト21を
連結して回転皿羽根4をモータ17に連動連結す
る。この場合、モータ17は上方位置(第2図鎖
線位置)にある。
Next, the upper shaft 20 and the lower shaft 21 are connected, and the rotary disc blade 4 is interlocked and connected to the motor 17. In this case, the motor 17 is in the upper position (the chain line position in FIG. 2).

そして、エアシリンダ13により可動保持部材
12を上昇させていくと、ホツパ1の上端部分5
が持ち上げられていき、所定量持ち上げられた時
点でソケツト2に取着せる固定リング16が固定
保持部材15の下端部に衝合して、〓後ホツパ1
の下端部分の上昇が阻止される。この状態から可
動保持部材12を更に上昇させてホツパ保持位置
にもたらすと、ホツパ1は上下方向に緊張されて
所定の筒体形状に保持される。この状態では、ホ
ツパ1は変形自在な合成樹脂フイルム製のもので
あるにも拘らず、金属製のものと同様に一定の形
状に維持されることになる。つまり、ホツパとし
ての機能を充分発揮しうる形態に維持されるもの
である。
Then, as the movable holding member 12 is raised by the air cylinder 13, the upper end portion 5 of the hopper 1
is lifted by a predetermined amount, and when the fixing ring 16 attached to the socket 2 abuts against the lower end of the fixing holding member 15, the rear hopper 1
The lower end portion of is prevented from rising. When the movable holding member 12 is further raised from this state and brought to the hopper holding position, the hopper 1 is tensioned in the vertical direction and held in a predetermined cylindrical shape. In this state, even though the hopper 1 is made of a deformable synthetic resin film, it maintains a constant shape like a metal hopper. In other words, it is maintained in a form that allows it to fully function as a hopper.

その後、回転皿羽根4がエアシリンダ19の作
動により下方位置に下降し、該回転皿羽根4とホ
ツパ1が接触する。又、弁機構22も作動してホ
ース7を全閉状態にする。
Thereafter, the rotary plate blade 4 is lowered to a lower position by the operation of the air cylinder 19, and the rotary plate blade 4 and the hopper 1 come into contact with each other. Further, the valve mechanism 22 also operates to completely close the hose 7.

尚、前記エアシリンダ13,19及び弁機構2
2は自動制御されている。
Note that the air cylinders 13 and 19 and the valve mechanism 2
2 is automatically controlled.

ホツパ1の組立が完了すると、該ホツパ1内へ
染料等の粉体を投入する。このとき、回転皿羽根
4により粉体の略全量が保持されるが、粉体はわ
ずかであるが落下する。ところが、ホース7が全
閉状態になつている為、何ら支障はない。
When the assembly of the hopper 1 is completed, powder such as dye is introduced into the hopper 1. At this time, substantially the entire amount of the powder is held by the rotary plate blade 4, but a small amount of the powder falls. However, since the hose 7 is fully closed, there is no problem.

そして、コンベヤ24とエアシリンダ25等か
ら成る送り装置26により小分用容器27がホツ
パ1出口の中心へ送られてくると、弁機構22が
作動してホース7を開放すると共に、モータ17
により回転皿羽根4が回転し、粉体が容器27内
へ落下する。このとき、ロードセルの信号により
充填量が0〜90%の間は回転皿羽根4が速く回転
し、多量の粉体を落下させ、充填量が90%になる
とロードセルの信号により回転皿羽根4の回転を
遅くして粉体の落下量を少なくし、充填量が100
%になるとロードセルの信号により回転皿羽根4
の回転を停止させる。
When the container 27 for small portions is sent to the center of the outlet of the hopper 1 by the feeding device 26 consisting of the conveyor 24 and the air cylinder 25, the valve mechanism 22 is activated to open the hose 7, and the motor 17
As a result, the rotary plate blade 4 rotates, and the powder falls into the container 27. At this time, when the filling amount is between 0 and 90%, the rotary plate blade 4 rotates quickly and drops a large amount of powder, and when the filling amount reaches 90%, the load cell signal causes the rotary plate blade 4 to rotate quickly. The rotation is slowed down to reduce the amount of powder falling, and the filling amount is 100%.
%, the load cell signal causes the rotary plate blade 4 to
stop the rotation.

回転皿羽根4が停止すると、弁機構22が作動
してホース7を全閉状態にする。
When the rotary disc blade 4 stops, the valve mechanism 22 operates to completely close the hose 7.

尚、充填中粉体が山盛り状になるので、容器2
7内の充填量が70%位になると、振動用セータ2
8、クランク機構29及びマグネツトチヤツク3
0等から構成した振動装置31により容器27を
振動させ、粉体の上面を平にする。
In addition, since the powder will be piled up during filling, container 2
When the filling amount in 7 reaches about 70%, the vibration sweater 2
8. Crank mechanism 29 and magnetic chuck 3
The container 27 is vibrated by a vibrating device 31 composed of 0 or the like to flatten the upper surface of the powder.

充填の完了した容器27は、次の空容器27で
押し出され、コンベア32により移送される。
The filled container 27 is pushed out by the next empty container 27 and transferred by the conveyor 32.

ホツパ1内の粉体が空になれば小分作業は停止
され、エアシリンダ13により可動保持部材12
を若干量上下動させてホツパ1に振動を与え、該
ホツパ1に付着した粉体を振い落す。振い落され
た粉体は回転皿羽根4を回転することにより落下
する。
When the powder in the hopper 1 is empty, the subdivision operation is stopped, and the movable holding member 12 is moved by the air cylinder 13.
The hopper 1 is moved up and down by a slight amount to give vibration to the hopper 1, and the powder adhering to the hopper 1 is shaken off. The shaken-off powder falls by rotating the rotary plate blade 4.

尚、本実施例に於いては、空缶重量、充填重
量、個数、総合計重量をデジタル表示し、信号を
外部出力可能にしている。又、コンベヤ及び送り
装置等により自動的に容器送り、計量、定位置セ
ツト、送り出しを行うようにしている。
In this embodiment, the empty can weight, the filled weight, the number of cans, and the total total weight are digitally displayed, and the signals can be outputted to the outside. Furthermore, the conveyor, feeding device, etc. are used to automatically feed the container, weigh it, set it in a fixed position, and send it out.

本考案は、上記の構成であるから、以下の利点
を有する。
Since the present invention has the above configuration, it has the following advantages.

(1) ホツパを合成樹脂フイルムにより作製した
為、金属製のものに比較して軽量になる。又、
折り畳みも可能になる。その結果、運搬や組立
時の取り扱いが極めて容易に行えると共に、保
管時にスペースを取ることもない。
(1) Since the hopper is made of synthetic resin film, it is lighter than one made of metal. or,
It can also be folded. As a result, it is extremely easy to handle during transportation and assembly, and it does not take up much space during storage.

しかも、ホツパは、可動保持部材をホツパ保
持位置に位置させた状態では所定の筒体形状に
緊張保持せしめられることから、合成樹脂フイ
ルム製のものであるにも拘らず、金属製のもの
同様のホツパ機能を発揮しうるのであり、回転
皿羽根による小分作用に何ら悪影響を与えな
い。
Furthermore, when the movable holding member is placed in the hopper holding position, the hopper is held under tension in a predetermined cylindrical shape, so even though it is made of synthetic resin film, it is similar to that made of metal. It can perform the hopper function, and does not have any adverse effect on the subdivision action by the rotary plate blades.

(2) ホツパを安価な合成樹脂フイルムにより作製
した為、使い捨てが可能になると共に、各種の
予備を持つことが可能となる。その結果、異種
混合を許さない多品種の染料・顔料を小分けす
る場合、ホツパ等を装置から取り外して一々洗
浄する必要もなく、該ホツパ等を順次新しいの
に取り替えるだけで良い。しかも、ホツパの交
換は、ホツパ上下端部分の各保持部材への着脱
作業と可動保持部材の昇降操作とにより、ホツ
パが変形自在且つ軽量で取扱が極めて容易なも
のであることと相俟つて、容易に且つ迅速に行
うことができる。延いては、多品種の染料・顔
料を小分け作業を極めて能率よく行える。
(2) Since the hopper is made from an inexpensive synthetic resin film, it can be disposable and it is also possible to have a variety of spares. As a result, when distributing a wide variety of dyes and pigments that do not allow mixing of different types, there is no need to remove the hoppers from the apparatus and wash them one by one, and it is only necessary to replace the hoppers with new ones one by one. In addition, the hopper can be replaced by attaching and detaching the upper and lower ends of the hopper to each holding member and by raising and lowering the movable holding member, and the hopper is deformable, lightweight, and extremely easy to handle. It can be done easily and quickly. Furthermore, the work of dividing a wide variety of dyes and pigments into smaller pieces can be done extremely efficiently.

(3) 粉体小分用装置は従来の装置のように複雑な
構造のスクリユーフイーダー等を備えていない
為、例えホツパ等を洗浄して再使用する場合で
も、洗浄を簡単に行える。
(3) Since the powder subdivision device does not have a screw feeder or the like with a complicated structure unlike conventional devices, it can be easily cleaned even if the hopper etc. are cleaned and reused.

(4) ホツパを合成樹脂フイルムにより作製した
為、装置自体のコスト低減を図り得る。
(4) Since the hopper is made of synthetic resin film, the cost of the device itself can be reduced.

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

第1図は本考案の実施例を示す粉体小分用装置
のホツパ等の縦断面図、第2図は粉体小分用装置
の縦断面図、第3図は粉体小分用装置の一部切欠
平面図、第4図は粉体の小分作業時に使用される
コンベヤ、送り装置等の正面図、第5図は同じく
平面図である。 1……ホツパ、2……ソケツト、4……回転皿
羽根、5……ホツパの上端部分、6……ホツパの
出口(ホツパの下端開口部)、7……ホース、1
2……可動保持部材、13……エアシリンダ(昇
降機構)、15……固定保持部材。
Fig. 1 is a longitudinal sectional view of a hopper etc. of a powder subdivision device showing an embodiment of the present invention, Fig. 2 is a longitudinal sectional view of the powder subdivision device, and Fig. 3 is a longitudinal sectional view of the powder subdivision device. FIG. 4 is a front view of a conveyor, feeding device, etc. used in the subdivision work of powder, and FIG. 5 is a plan view of the same. 1... Hopper, 2... Socket, 4... Rotating disc blade, 5... Upper end portion of the hopper, 6... Outlet of the hopper (lower end opening of the hopper), 7... Hose, 1
2...Movable holding member, 13...Air cylinder (elevating mechanism), 15...Fixed holding member.

Claims (1)

【実用新案登録請求の範囲】[Scope of utility model registration request] 下窄まり截頭円錐状の筒体に成形された変形自
在な合成樹脂フイルム製のホツパと、ホツパの下
端開口部に取付けられたホース連結用のソケツト
と、ホツパの下端部分及びソケツトに係脱自在に
係合して、これらを上方変位不能に固定保持する
固定保持部材と、ホツパの上端部分に着脱自在に
取着されており、固定保持部材により固定保持さ
れたホツパを所定の筒体形状に緊張保持しうるホ
ツパ保持位置とその下方位のホツパ取付位置とに
亘つて昇降自在に設けられた可動保持部材と、可
動保持部材を昇降動作させる昇降機構と、ホツパ
内に配置された粉体供給量調整用の回転皿羽根
と、を具備したことを特徴とする粉体小分用装
置。
A hopper made of a deformable synthetic resin film formed into a truncated cone-shaped cylinder that narrows at the bottom, a socket for connecting a hose attached to the opening at the lower end of the hopper, and a hopper that connects and disconnects from the lower end of the hopper and the socket. A fixed holding member that freely engages and holds them fixedly so that they cannot be displaced upwardly; and a fixed holding member that is removably attached to the upper end of the hopper, and holds the hopper fixedly held by the fixed holding member in a predetermined cylindrical shape. a movable holding member that can be raised and lowered between a hopper holding position and a hopper mounting position below the hopper holding position, a lifting mechanism that moves the movable holding member up and down, and a powder disposed within the hopper. A powder subdivision device characterized by comprising a rotating plate blade for adjusting the supply amount.
JP10787483U 1983-07-11 1983-07-11 Powder subdivision device Granted JPS6015892U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP10787483U JPS6015892U (en) 1983-07-11 1983-07-11 Powder subdivision device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP10787483U JPS6015892U (en) 1983-07-11 1983-07-11 Powder subdivision device

Publications (2)

Publication Number Publication Date
JPS6015892U JPS6015892U (en) 1985-02-02
JPS6311109Y2 true JPS6311109Y2 (en) 1988-04-01

Family

ID=30251889

Family Applications (1)

Application Number Title Priority Date Filing Date
JP10787483U Granted JPS6015892U (en) 1983-07-11 1983-07-11 Powder subdivision device

Country Status (1)

Country Link
JP (1) JPS6015892U (en)

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5527408U (en) * 1978-08-11 1980-02-22
JPS5529469A (en) * 1978-08-21 1980-03-01 Sankyo Dengyo Kk Bridge preventive hopper

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5527408U (en) * 1978-08-11 1980-02-22
JPS5529469A (en) * 1978-08-21 1980-03-01 Sankyo Dengyo Kk Bridge preventive hopper

Also Published As

Publication number Publication date
JPS6015892U (en) 1985-02-02

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