JP3126023B2 - Continuous granulation and coating equipment - Google Patents

Continuous granulation and coating equipment

Info

Publication number
JP3126023B2
JP3126023B2 JP09211390A JP21139097A JP3126023B2 JP 3126023 B2 JP3126023 B2 JP 3126023B2 JP 09211390 A JP09211390 A JP 09211390A JP 21139097 A JP21139097 A JP 21139097A JP 3126023 B2 JP3126023 B2 JP 3126023B2
Authority
JP
Japan
Prior art keywords
container
continuous
powder
coating apparatus
hole
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 - Fee Related
Application number
JP09211390A
Other languages
Japanese (ja)
Other versions
JPH1133384A (en
Inventor
栄二 吉山
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.)
Kawasaki Motors Ltd
Original Assignee
Kawasaki Jukogyo KK
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 Kawasaki Jukogyo KK filed Critical Kawasaki Jukogyo KK
Priority to JP09211390A priority Critical patent/JP3126023B2/en
Publication of JPH1133384A publication Critical patent/JPH1133384A/en
Application granted granted Critical
Publication of JP3126023B2 publication Critical patent/JP3126023B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、流動する粉体に溶
液又は懸濁液からなる結合剤又はコーティング剤を噴霧
し、連続して造粒又はコーティングする連続造粒・コー
ティング装置に関し、特に粉体の流動を制御する制御手
段を有する連続造粒・コーティング装置に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a continuous granulating / coating method in which a binder or a coating agent consisting of a solution or a suspension is sprayed on a flowing powder to continuously granulate or coat. relates GuSo location, relates to a continuous granulation, Kotin GuSo location in particular having a control means for controlling the flow of the powder.

【0002】[0002]

【従来の技術】従来、この種の連続造粒・コーティン
置として、連続形式のものに、例えば特公平7−57
311号公報記載の連続造粒装置が、又、制御手段を有
するものに、例えば実公昭54−4530号公報記載の
造粒、コーティング用流動層装置が知られている。前者
の連続造粒装置は、製品搬出のためのスクリュー型搬出
機を流動層の下側部に備えたものにおいて、搬出機の下
部をブロアによる通気が可能な通気体とし、装置本体と
搬出機の間に粉体のリターン回路を設けてなり、造粒中
の粉体の一部を流動層外へ取り出して搬送中に分級し、
所要粒径の粉体を製品として排出する一方、所要粒径に
満たない粉体を流動層の上部に戻すようにしたものであ
る。なお、原料粉体は、流動層の上部から供給される。
後者の造粒、コーティング用流動層装置は、断面が円形
をなす回分形式の固気系流動層内に、複数個の円筒状案
内管を相互が適当な間隔をもって離間し、かつ、前記移
動層の容器壁とも適当な間隔をもって離間するようにし
て設置し、各案内管に少なくとも1個以上のスプレイノ
ズルを有するものであり、大量の粉体の造粒、コーティ
ングといえども粒子相互の衝突を抑制し、粒子に与える
損傷を極度に減少させることができる、というものであ
る。
Conventionally, continuous granulation, Kotin grayed of this kind
As equipment, those of the continuous type, for example Kokoku 7-57
As a continuous granulating apparatus described in Japanese Patent Publication No. 311 and having a control means, for example, a fluidized bed apparatus for granulating and coating described in Japanese Utility Model Publication No. 54-4530 is known. The former continuous granulator has a screw-type unloader for unloading products at the lower part of the fluidized bed, and the lower part of the unloader is a ventilator that can be ventilated by a blower. A return circuit for the powder is provided between them, a part of the powder during granulation is taken out of the fluidized bed and classified during transportation,
While the powder having the required particle size is discharged as a product, the powder having a particle size smaller than the required particle size is returned to the upper portion of the fluidized bed. The raw material powder is supplied from above the fluidized bed.
The latter fluidized bed apparatus for granulation and coating is characterized in that a plurality of cylindrical guide tubes are separated from each other at an appropriate interval in a batch-type solid-gas fluidized bed having a circular cross section, and It is installed so as to be spaced apart from the container wall at an appropriate distance and has at least one or more spray nozzles in each guide tube. And can significantly reduce the damage to the particles.

【0003】[0003]

【発明が解決しようとする課題】しかしながら、上記従
来の装置を組み合わせて連続造粒・コーティング装置と
したとしても、流動層の下側部の一箇所から処理中の粉
体の一部を取り出しているので、所要粒系に達した粉体
の排出を効果的に行うことができず、製品の粒度分布が
広くなり、かつ処理効率の低下を招来するおそれがあ
る。又、粉体の流動を制御する案内管の上方及び外部に
流動層が形成されるので、処理量が多くなるに伴って処
理スペースが増大する不具合があると共に、粒子相互の
衝突を抑制したと言っても、流動層エリアが大きいの
で、その衝突を免れず、粒子の損傷による処理効率の低
下をもたらしている。そこで、本発明は、製品の粒度分
布をシャープにできると共に、処理効率を飛躍的に高め
得、かつ処理スペースを低減し得る連続造粒・コーティ
グ装置を提供することを主目的とする。
[SUMMARY OF THE INVENTION However, even if a continuous granulating-Kotin GuSo location by combining the above-mentioned conventional apparatus, a portion of the powder being processed from one position lower portion of the fluidized bed Since the powder is taken out, it is not possible to effectively discharge the powder that has reached the required grain system, and the particle size distribution of the product may be widened and the processing efficiency may be reduced. In addition, since fluidized beds are formed above and outside the guide tube that controls the flow of the powder, there is a problem that the processing space increases with an increase in the throughput, and the collision between particles is suppressed. Even so, since the fluidized bed area is large, the collision is unavoidable and the treatment efficiency is reduced due to damage of the particles. Accordingly, the present invention, it is possible the particle size distribution of the product to Sharp, dramatically obtain enhanced processing efficiency, and to provide a continuous granulating-Koti <br/> down GuSo location capable of reducing processing space Main purpose.

【0004】[0004]

【課題を解決するための手段】前記課題を解決するた
、本発明の第1の連続造粒・コーティング装置は、排
気口を上部に設けると共に原料粉体を供給するタンクを
付設した容器内に結合剤又はコーティング剤を噴霧する
スプレーノズルを配設し、かつ容器の底壁中央部に透孔
を設け、この透孔とほぼ同径で容器より適宜に短い区画
筒を透孔から適宜に離隔して容器内に同軸的に配設し、
粉体の輸送層を形成すべく気体を上向きに吹き出す多孔
性基板をその外周面と前記透孔の内周面との間に環状の
間隙を形成するように配設し、粉体の移動層を形成すべ
く気体を吹き出す給気孔を容器の底壁に設け、容器の底
壁下面に前記環状の間隙に分級用気体を送給する給気筒
を垂設したことを特徴とする。第2の連続造粒・コーテ
ィング装置は、第1の装置において、前記底壁を下方に
向って縮径する逆円錐筒状に設けたことを特徴とする。
上記底壁の給気孔は、容器の中心に向って水平に設けら
れていることが好ましい。又、前記環状の間隙の幅は、
可変であることが好ましい。第3の連続造粒・コーティ
ング装置は、第1又は第2の装置において、前記排気孔
にサイクロンを連結したことを特徴とする。第4の連続
造粒・コーティング装置は、第3の装置において、前記
サイクロンで捕集した微粒子を容器内の区画筒の外方へ
戻すエジェクターを設けたことを特徴とする。第5の連
続造粒・コーティング装置は、第1、第2、第3又は第
4の装置において、前記タンクを容器内の区画筒の外方
と連結したことを特徴とする。又、第6の連続造粒・コ
ーティング装置は、第1、第2、第3、第4又は第5の
装置において、前記スプレーノズルを区画筒の上方に配
設したことを特徴とする。
In order to solve the above-mentioned problems, a first continuous granulation / coating apparatus of the present invention is provided in a container provided with an exhaust port at an upper portion and a tank for supplying raw material powder. A spray nozzle for spraying a binder or a coating agent is provided, and a through hole is provided in the center of the bottom wall of the container, and a compartment cylinder having substantially the same diameter as the through hole and appropriately shorter than the container is appropriately separated from the through hole. And placed coaxially in the container,
A porous substrate that blows gas upward to form a powder transport layer is disposed so as to form an annular gap between the outer peripheral surface and the inner peripheral surface of the through-hole, and a powder transfer layer is provided. An air supply hole for blowing out gas is provided on the bottom wall of the container to form a gas, and an air supply cylinder for supplying a classifying gas to the annular gap is vertically provided on the lower surface of the bottom wall of the container. The second continuous granulation / coating apparatus is characterized in that, in the first apparatus, the bottom wall is provided in an inverted conical cylindrical shape whose diameter is reduced downward.
Preferably, the air supply hole in the bottom wall is provided horizontally toward the center of the container. The width of the annular gap is
Preferably, it is variable. A third continuous granulation / coating apparatus is characterized in that, in the first or second apparatus, a cyclone is connected to the exhaust hole. A fourth continuous granulation / coating apparatus is characterized in that, in the third apparatus, an ejector is provided for returning the fine particles collected by the cyclone to the outside of the compartment in the container. A fifth continuous granulation / coating apparatus is characterized in that, in the first, second, third or fourth apparatus, the tank is connected to the outside of the compartment in the container. A sixth continuous granulation / coating apparatus is characterized in that, in the first, second, third, fourth or fifth apparatus, the spray nozzle is arranged above a partition cylinder.

【0005】[0005]

【発明の実施の形態】以下、本発明の実施の形態につい
て図面を参照して説明する。図1、図2は本発明に係る
連続造粒・コーティング装置の実施の形態の一例を示す
断面図、図1の要部の拡大図である。図中1は段付き円
筒状の垂直な容器で、天井壁2によって上端を閉鎖され
た大径筒3と、大径筒3の下端に連ねられた截頭逆円錐
筒4と、截頭逆円錐筒4の下端に連ねられた小径筒5
と、小径筒5の下端に連ねられ、中央部に下方に向って
拡開するテーパ状の透孔6を設けた逆円錐筒状の底壁7
とから構成されている。容器1の大径筒3には、排気口
8が上部に設けられていると共に、処理開始時に原料粉
体を投入する原料投入口9が中間部に設けられており、
又、大径筒3内には、溶液又は懸濁液からなる結合剤又
はコーティング剤を気体(例えば空気)と一緒に噴霧す
るスプレーノズル10が、後述する区画筒の上方に位置
すべく中間部の中央に配設されている。更に、小径筒5
から截頭逆円錐筒4にかけた容器1内には、底壁7の透
孔6とほぼ同径で容器1より適宜に短い(容器の約1/
3の長さ)の区画筒11が、透孔6から適宜上方へ離隔
して同軸的に配設されている。
Embodiments of the present invention will be described below with reference to the drawings. 1 and 2 are a sectional view showing an example of an embodiment of a continuous granulation / coating apparatus according to the present invention, and an enlarged view of a main part of FIG. In the figure, reference numeral 1 denotes a cylindrical vertical container having a step, a large-diameter cylinder 3 whose upper end is closed by a ceiling wall 2, a truncated inverted conical cylinder 4 connected to a lower end of the large-diameter cylinder 3, and a truncated inverted cylinder. Small-diameter cylinder 5 connected to the lower end of conical cylinder 4
And an inverted conical cylindrical bottom wall 7 connected to the lower end of the small-diameter cylinder 5 and provided with a tapered through-hole 6 that opens downward at the center.
It is composed of In the large-diameter cylinder 3 of the container 1, an exhaust port 8 is provided at an upper portion, and a raw material input port 9 for charging raw material powder at the start of processing is provided at an intermediate portion.
In the large-diameter cylinder 3, a spray nozzle 10 for spraying a binder or a coating agent composed of a solution or a suspension together with a gas (for example, air) is provided at an intermediate portion so as to be located above a compartment cylinder described later. It is located in the center of. Furthermore, small-diameter cylinder 5
In the container 1, which has been inserted into the truncated inverted conical cylinder 4, the diameter is substantially the same as the through hole 6 in the bottom wall 7 and is appropriately shorter than the container 1 (about 1 /
A partition cylinder 11 having a length of 3) is coaxially arranged at an appropriate distance from the through hole 6.

【0006】一方、容器1の底壁7の透孔6内には、そ
の内周面と対応するテーパを外周面に形成した断面山形
の円板状を呈し、かつ前記区画筒11内に粉体の輸送層
を形成すべく加熱された気体を上向きに吹き出す多数の
通気孔12を設けた多孔性基板13が、その外周面と透
孔6の内周面との間に粉体粒子の排出口となる環状の間
隙14を形成するように配設されている。多孔性基板1
3の下面には、各通気孔12に気体を送給する給気管1
5が垂設されており、この給気管15は、上記間隙14
の幅を可変とするため、エアシリンダー等の昇降手段1
6を介して上下動可能に設けられている。又、容器1の
底壁7には、前記区画筒11と小径筒5等との間に粉体
の移動層を形成すると共に、移動層から輸送層への粉体
の移行を円滑にし、かつ移動層の粉体を乾燥するため、
加熱された気体を吹き出す多数の給気孔17が容器1の
中心に向けて水平に設けられている。各給気孔17は、
運転停止時に粉体が安息角により給気孔17から流出し
ない孔径及び長さ(底壁の厚み)とされている。そし
て、底壁7の外周には、流動層用加熱気体の給気口18
を設けた給気室19が形成されている。更に、容器1の
底壁7の下面には、前記間隙14から排出された粉体
(製品)を一時的に貯留するタンクを兼ねると共に、間
隙14に分級用加熱気体を送給する給気筒20が、前記
給気管15の気密かつ摺動可能な挿通を許容して垂設さ
れており、この給気筒20の中間部には、分級用加熱気
体の給気口21が設けられ、又、下端部には、バルブ2
2を介在した製品排出口23が設けられている。他方、
容器1の排気口8には、排気管24を上方に突設したサ
イクロン25が連結管26を介して連結されており、こ
のサイクロン25の下端には、捕集した微粒子を収容す
るホッパー27が連設されている。ホッパー27の下部
には、加熱された気体を用いて微粒子を容器1内の区画
筒11の外方に接線方向から戻すエジェクター28が連
結管29を介して連結されており、この連結管29に
は、原料粉体を供給するタンク30がロータリーバルブ
31を介装した連結管32を介して連結されている。
On the other hand, the inside of the through-hole 6 in the bottom wall 7 of the container 1 has a disk shape with a mountain-shaped cross section in which a taper corresponding to the inner peripheral surface is formed on the outer peripheral surface. A porous substrate 13 provided with a large number of air holes 12 for blowing a heated gas upward to form a body transport layer is provided between the outer peripheral surface and the inner peripheral surface of the through hole 6 to discharge powder particles. It is arranged so as to form an annular gap 14 serving as an outlet. Porous substrate 1
3, an air supply pipe 1 for supplying gas to each ventilation hole 12 is provided.
5 is provided vertically, and the air supply pipe 15
Lifting means 1 such as an air cylinder to make the width of
6 so as to be vertically movable. Further, on the bottom wall 7 of the container 1, a moving layer of powder is formed between the partition tube 11 and the small-diameter tube 5 and the like, and the transfer of powder from the moving layer to the transport layer is smooth, and To dry the moving bed powder,
A number of air supply holes 17 for blowing heated gas are provided horizontally toward the center of the container 1. Each air supply hole 17
The hole diameter and length (the thickness of the bottom wall) are set so that the powder does not flow out of the air supply hole 17 due to the angle of repose when the operation is stopped. A supply port 18 for the fluidized bed heating gas is provided on the outer periphery of the bottom wall 7.
Is formed. Further, on the lower surface of the bottom wall 7 of the container 1, an air supply cylinder 20 that also serves as a tank for temporarily storing the powder (product) discharged from the gap 14 and that supplies a heating gas for classification to the gap 14. The air supply pipe 15 is vertically provided so as to allow the airtight and slidable insertion thereof. An air supply port 21 for heating gas for classification is provided at an intermediate portion of the air supply cylinder 20. The part has a valve 2
2 is provided with a product outlet 23 interposed therebetween. On the other hand,
A cyclone 25 having an exhaust pipe 24 projecting upward is connected to the exhaust port 8 of the container 1 via a connecting pipe 26. At the lower end of the cyclone 25, a hopper 27 for storing the collected fine particles is provided. It is installed continuously. An ejector 28 that returns the fine particles from the tangential direction to the outside of the partition tube 11 in the container 1 using a heated gas is connected to a lower portion of the hopper 27 via a connecting pipe 29. Is connected to a tank 30 for supplying a raw material powder through a connection pipe 32 having a rotary valve 31 interposed therebetween.

【0007】上記構成の連続造粒・コーティング装置を
用いて連続して造粒又はコーティングするには、先ず、
給気管15を上昇して間隙14を閉じて原料投入口9か
ら原料粉体を容器1に投入すると共に、給気管15から
加熱した気体を送給し、多孔性基板13の各通気孔12
から比較的高速(15m/s)の気体を上向きに吹き出
させ、かつスプレーノズル10から気体を用いて結合剤
又はコーティング剤を噴霧し、又、給気口18から給気
室19に加熱された気体を送給し、底壁7の各給気孔1
7から気体を水平に吹き出させ、更に、エジェクター2
8に加熱された気体を送給する。次に、給気管15を下
降して間隙14を所要の幅とすると共に、給気口21か
ら加熱された気体を送給し、間隙14からやや高速(5
m/s)の気体を斜め上向きに吹き出させる。この操作
によって、原料粉体は、図1において矢印Aで示すよう
に、区画筒11内を輸送層を形成した状態で上方へ輸送
され、区画筒11から噴出されて流動層を形成した状態
となり、粒子が概ねスプレーノズル10から噴霧される
結合剤又はコーティング剤の液滴と接触すると同時に粒
径が増大し、かつスプレーノズル10からの下向きの気
流により粉体の上昇速度が急激に減少し、図1において
矢印B、Cで示すように、周辺部に移動した後、区画筒
11の外方に落下し行く。区画筒11の外方に落下した
粉体は、底壁7の給気孔17から水平に吹き出す気体に
よって、移動層を形成すると共に、乾燥され、かつ区画
筒11の下端と底壁7との間隙から多孔性基板13方向
へ排出される。上記移動層の形成により、粒子同士が接
触するため大粒子は破砕、整粒され、又、粉体の重量に
より適度に圧密されて重質で強度の高い製品となる。
[0007] In order to continuously granulate or coat using the continuous granulating / coating apparatus having the above configuration, first,
The gas supply pipe 15 is raised to close the gap 14, the raw material powder is charged into the container 1 from the raw material charging port 9, and the heated gas is supplied from the gas supply pipe 15 to the respective air holes 12 of the porous substrate 13.
, A relatively high-speed (15 m / s) gas is blown upward, a binder or a coating agent is sprayed from the spray nozzle 10 using the gas, and the air is supplied from the air supply port 18 to the air supply chamber 19. The gas is supplied to each of the air supply holes 1 in the bottom wall 7.
7 to blow out the gas horizontally, and ejector 2
The heated gas is delivered to 8. Next, the air supply pipe 15 is lowered to make the gap 14 have a required width, and at the same time, the heated gas is supplied from the air supply port 21, and a slightly high speed (5
m / s) is blown obliquely upward. By this operation, the raw material powder is transported upward with the transport layer formed inside the compartment tube 11 as shown by the arrow A in FIG. 1, and is ejected from the compartment tube 11 to form a fluidized bed. The particle size generally increases at the same time as the particles come into contact with the droplets of the binder or coating agent sprayed from the spray nozzle 10, and the rising speed of the powder rapidly decreases due to the downward airflow from the spray nozzle 10; As shown by arrows B and C in FIG. 1, after moving to the peripheral portion, it falls outside the partition tube 11. The powder dropped to the outside of the partition tube 11 forms a moving layer and is dried by the gas blown out horizontally from the air supply hole 17 of the bottom wall 7, and is dried and has a gap between the lower end of the partition tube 11 and the bottom wall 7. Is discharged in the direction of the porous substrate 13. Due to the formation of the moving layer, the particles come into contact with each other, so that the large particles are crushed and sized, and the powder is appropriately compacted by the weight of the powder to obtain a heavy and strong product.

【0008】そして、多孔性基板13方向へ排出された
粉体は、その全てが多孔性基板13上に到達する前に環
状の間隙14から吹き出す気体により分級を受け、図1
において矢印Dで示すように、所要粒径以上の粒子が間
隙14から落下して給気筒20の底部に一時的に貯留さ
れ、かつバルブ22の開閉によって系外へ排出される。
又、所要粒径未満の粒子は、図2において矢印Eで示す
ように、多孔性基板13から吹き出す気体によって輸送
層を形成した状態で区画筒11内を上昇する。一方、ス
プレーノズル10によるスプレーエリアを越えて上昇
し、フリーボードエリアに到達した微粒子は、一部が自
重により落下して流動層を形成し、残部が図1において
矢印F、Gで示すように、排気口8から気体と一緒にサ
イクロン25に入り、遠心力により捕集されてホッパー
27に収容される。微粒子が除去された気体は、排気管
24から大気へ放出される。そして、ホッパー27に収
容された微粒子は、エジェクター28によって容器1の
小径筒5の接線方向から移動層の粉体中に戻される。こ
のエジェクター28による微粒子の戻しに際し、その気
体流量を調節することにより、サイクロン27に適度な
下方への気流が生じ、捕集効率が一層良好となる。又、
環状の間隙14から排出される製品量と対応する量の原
料粉体が、図1において矢印Hで示すように、ロータリ
ーバルブ31の開閉に伴ってタンク30からエジェクタ
ー28を介して移動層の粉体中に供給され、連続した造
粒又はコーティング及び乾燥が行われる。
The powder discharged toward the porous substrate 13 undergoes classification by the gas blown out from the annular gap 14 before all of the powder reaches the porous substrate 13, and FIG.
As shown by an arrow D, particles having a required particle size or more fall from the gap 14 and are temporarily stored at the bottom of the supply cylinder 20, and are discharged out of the system by opening and closing the valve 22.
The particles having a particle diameter smaller than the required particle diameter rise in the partition tube 11 in a state where the transport layer is formed by the gas blown from the porous substrate 13 as shown by an arrow E in FIG. On the other hand, the fine particles that have risen beyond the spray area by the spray nozzle 10 and have reached the freeboard area partially fall by their own weight to form a fluidized bed, and the remainder is as shown by arrows F and G in FIG. The gas enters the cyclone 25 together with the gas from the exhaust port 8, is collected by centrifugal force, and is stored in the hopper 27. The gas from which the fine particles have been removed is discharged from the exhaust pipe 24 to the atmosphere. Then, the fine particles stored in the hopper 27 are returned by the ejector 28 into the powder of the moving bed from the tangential direction of the small-diameter cylinder 5 of the container 1. When returning the fine particles by the ejector 28, by adjusting the gas flow rate, an appropriate downward air flow is generated in the cyclone 27, and the collection efficiency is further improved. or,
As shown by an arrow H in FIG. 1, the raw material powder discharged from the annular gap 14 is supplied from the tank 30 through the ejector 28 with the opening and closing of the rotary valve 31 as shown by an arrow H in FIG. It is fed into the body and undergoes continuous granulation or coating and drying.

【0009】なお、上述した実施の形態においては、移
動層から輸送層への粉体の移行を円滑にするため、底壁
を逆円錐筒状に設ける場合について説明したが、これに
限定されるものではなく、底壁を水平としてもよい。こ
の場合、底壁周辺のコーナー部に粉体のデッドストック
を生ずるおそれがある。又、環状の間隙の幅を可変とす
る場合に限らず、製品の粒径が一定の場合は、一定の幅
となるようにしてもよい。更に、排気中の微粒子をサイ
クロンを用い、遠心力によって捕集する場合に限らず、
容器内のフリーボードエリアに配設したバグフィルター
等を用いるようにしてもよい。更に又、サイクロンで捕
集した微粒子を原料粉体と一緒に容器の小径筒の接線方
向からエジェクターを用いて移動層の粉体中に戻す場合
に限らず、両者を個別又は一緒にスクリューフィーダ等
を用いて移動層の粉体中に戻すようにしてもよい。又、
結合剤又はコーティング剤の噴霧を輸送量の上方で行う
場合に限らず、区画筒内で行ってもよい。更に、吐出ブ
ロワーによる正圧運転の場合について説明したが、これ
に限定されるものではなく、吸引ブロワーによる負圧運
転又は双方を使用して槽内静圧を零として運転してもよ
い。
In the above-described embodiment, the case where the bottom wall is provided in an inverted conical cylindrical shape in order to smoothly transfer the powder from the moving layer to the transport layer has been described, but the present invention is not limited to this. Instead, the bottom wall may be horizontal. In this case, there is a possibility that dead stock of powder may occur at corners around the bottom wall. In addition, the width of the annular gap is not limited to being variable, and may be constant when the particle size of the product is constant. Furthermore, it is not limited to the case where the fine particles in the exhaust gas are collected by centrifugal force using a cyclone,
A bag filter or the like disposed in a free board area in the container may be used. Further, the method is not limited to returning the fine particles collected by the cyclone together with the raw material powder into the moving bed powder using the ejector from the tangential direction of the small-diameter cylinder of the container. May be used to return the powder into the moving bed. or,
The spraying of the binder or the coating agent is not limited to the case where the spraying is performed above the transported amount, and the spraying may be performed in the compartment. Furthermore, the case of the positive pressure operation by the discharge blower has been described, but the present invention is not limited to this, and the operation may be performed with the tank static pressure being zero by using the negative pressure operation by the suction blower or both.

【0010】[0010]

【発明の効果】以上説明したように、本発明の第1の連
続造粒・コーティング装置によれば、循環流動する造粒
又はコーティング中の粉体が、その流動過程において全
て気体分級され、所要粒径以上の粒子が直ちに系外へ排
出されるので、製品の粒度分布をシャープにできると共
に処理効率を飛躍的に高めることができる。又、結合剤
又はコーティング剤の噴霧を受けた粉体が、区画筒の外
方である容器内の周辺下部で流動層に比べて空隙率が非
常に小さい移動層を形成するので、従来に比べて処理ス
ペースを大幅に低減することができると共に、移動層外
への飛出粒子量が減少して粒子相互の衝突が減少するの
で、処理効率を格段に向上させることができる。更に、
移動層の形成により、粒子同士が接触して大粒子が破
砕、熟粒され、かつ粉体の重量により適度に圧密される
ので、粒度分布が良好で、かつ重質で強度の高い製品を
得ることができる。上記装置において、環状の間隙を可
変とすることにより、製品の性状に対応させることがで
きる。第2の造粒・コーティング装置によれば、第1
置の作用効果の他、移動層での粉体のデッドストック
が無くなるので、造粒又はコーティング効率を格段に高
めることができる。上記装置において、給気孔を容器の
中心で向けて水平に設けることにより、移動層から輸送
層への粉体の移行を一層良好にすることができる。第3
の造粒・コーティング装置によれば、第1又は第2の装
置の作用効果の他、排気中の微粒子の捕集を効率良くで
きると共に、その構造を洗浄性の良い簡単なものとする
ことができる。第4の造粒・コーティング装置によれ
ば、第3の装置の作用効果の他、原料粉体の無駄を省く
ことができ、又、粉体の循環を阻害することなく、微粒
子の戻しを行うことができる。更に、エジェクターを用
いることにより、サイクロンでの微粒子の捕集効率を高
めることができる。第5の造粒・コーティング装置によ
れば、第1、第2、第3又は第4の装置の作用効果の
他、微粒子が流動層から飛び出すのを防止できるので、
造粒又はコーティング時間を短縮することができる。
又、第6の連続造粒・コーティング装置によれば、第
1、第2又は第3の装置の作用効果の他、粉体の循環流
動を阻害することなく原料粉体を供給することができ
る。
As described in the foregoing, according to the first continuous granulating-Kotin GuSo location of the present invention, the powder in the granulation or coating the circulating fluidized is, are all gaseous and classified in its flow process Since particles having a required particle size or more are immediately discharged out of the system, the particle size distribution of the product can be sharpened, and the processing efficiency can be dramatically increased. In addition, the powder sprayed with the binder or the coating agent forms a moving bed having a porosity much smaller than that of the fluidized bed in the lower part of the periphery of the container outside the compartment cylinder, so that the As a result, the processing space can be greatly reduced, and the amount of particles flying out of the moving bed is reduced to reduce the collision between the particles, so that the processing efficiency can be remarkably improved. Furthermore,
Due to the formation of the moving layer, the particles come into contact with each other, the large particles are crushed and ripened, and the powder is appropriately compacted by the weight of the powder, so that a product having a good particle size distribution and a heavy and high strength is obtained. be able to. In the above device, by making the annular gap variable, it is possible to adapt to the properties of the product. According to the second granulating-Kotin GuSo location, first
Other advantages of the equipment, since the dead stock of the powder in the transfer layer is eliminated, it is possible to greatly increase the granulating or coating efficiency. In the above-mentioned apparatus, by providing the air supply hole horizontally at the center of the container, the transfer of the powder from the moving layer to the transport layer can be further improved. Third
According to the granulating-Kotin GuSo location, other effects of the first or second instrumentation <br/> location, along with the collection of particulates in the exhaust can be efficiently, good detergency its structure It can be simple. According to a fourth granulating-Kotin GuSo location of other effects of the third equipment, it is possible to avoid waste of the raw material powder, and without inhibiting the circulation of the powder, the particles Can be reverted. Further, by using the ejector, the collection efficiency of the fine particles in the cyclone can be increased. According to a fifth granulating-Kotin GuSo location of, first, second, other effects of the third or fourth equipment, since fine particles can be prevented from jumping out from the fluidized layer,
Granulation or coating time can be reduced.
Also, supplied according to the continuous granulation, Kotin GuSo location of the sixth, first, the other effects of the second or third equipment, a raw material powder without inhibiting circulating fluidized powder be able to.

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

【図1】本発明に係る連続造粒・コーティング装置の実
施の形態の一例を示す断面図である。
FIG. 1 is a sectional view showing an example of an embodiment of a continuous granulation / coating apparatus according to the present invention.

【図2】図1の要部の拡大図である。FIG. 2 is an enlarged view of a main part of FIG.

【符号の説明】[Explanation of symbols]

1 容器 6 透孔 7 底壁 8 排気口 10 スプレーノズル 13 多孔性基板 14 間隙 17 給気孔 20 給気筒 25 サイクロン 28 エジェクター 30 タンク A 矢印 B 矢印 DESCRIPTION OF SYMBOLS 1 Container 6 Through hole 7 Bottom wall 8 Exhaust port 10 Spray nozzle 13 Porous substrate 14 Gap 17 Air supply hole 20 Air supply cylinder 25 Cyclone 28 Ejector 30 Tank A Arrow B Arrow

───────────────────────────────────────────────────── フロントページの続き (58)調査した分野(Int.Cl.7,DB名) B01J 2/16 ──────────────────────────────────────────────────続 き Continued on front page (58) Field surveyed (Int.Cl. 7 , DB name) B01J 2/16

Claims (8)

(57)【特許請求の範囲】(57) [Claims] 【請求項1】 排気口を上部に設けると共に原料粉体を
供給するタンクを付設した容器内に結合剤又はコーティ
ング剤を噴霧するスプレーノズルを配設し、かつ容器の
底壁中央部に透孔を設け、この透孔とほぼ同径で容器よ
り適宜に短い区画筒を透孔から適宜に離隔して容器内に
同軸的に配設し、粉体の輸送層を形成すべく気体を上向
きに吹き出す多孔性基板をその外周面と前記透孔の内周
面との間に環状の間隙を形成するように配設し、粉体の
移動層を形成すべく気体を吹き出す給気孔を容器の底壁
に設け、容器の底壁下面に前記環状の間隙に分級用気体
を送給する給気筒を垂設したことを特徴とする連続造粒
・コーティング装置。
A spray nozzle for spraying a binder or a coating agent is provided in a container provided with an exhaust port at an upper portion and a tank for supplying raw material powder, and a through hole is provided at a central portion of a bottom wall of the container. Is provided, and a partition cylinder having the same diameter as the through hole and appropriately shorter than the container is coaxially disposed in the container at an appropriate distance from the through hole, and the gas is directed upward to form a powder transport layer. The porous substrate to be blown is disposed so as to form an annular gap between the outer peripheral surface and the inner peripheral surface of the through-hole, and an air supply hole for blowing gas to form a moving layer of powder is provided at the bottom of the container. A continuous granulation / coating apparatus, characterized in that an air supply cylinder for supplying a classifying gas to the annular gap is provided vertically on a lower surface of a bottom wall of a container.
【請求項2】 前記底壁を下方に向って縮径する逆円錐
筒状に設けたことを特徴とする請求項記載の連続造粒
・コーティング装置。
2. A continuous granulating coating apparatus according to claim 1, characterized by providing the reverse conical tubular shape which is reduced in diameter toward the bottom wall downward.
【請求項3】 前記底壁の給気孔が容器の中心に向けて
水平に設けられていることを特徴とする請求項記載の
連続造粒・コーティング装置。
3. The continuous granulation / coating apparatus according to claim 2, wherein the air supply hole in the bottom wall is provided horizontally toward the center of the container.
【請求項4】 前記環状の間隙の幅が可変であることを
特徴とする請求項1、2又は3記載の連続造粒・コーテ
ィング装置。
4. A continuous granulating coating apparatus according to claim 1, 2 or 3, wherein the width of the annular gap is variable.
【請求項5】 前記排気口にサイクロンを連結したこと
を特徴とする請求項1、2、3又は4記載の連続造粒・
コーティング装置。
5. A continuous granulator according to claim 1, 2, 3 or 4, wherein a concatenation of the cyclone to the exhaust port,
Coating equipment.
【請求項6】 前記サイクロンで捕集した微粒子を容器
内の区画筒の外方へ戻すエジェクターを設けたことを特
徴とする請求項11記載の連続造粒・コーティング装
置。
6. The continuous granulating / coating apparatus according to claim 11, further comprising an ejector for returning the fine particles collected by the cyclone to the outside of the compartment in the container.
【請求項7】 前記タンクを容器内の区画筒の外方と連
結したことを特徴とする請求項1、2、3、4、5又は
記載の連続造粒・コーティング装置。
7. The method of claim 1, 2, 3, 4, characterized in that connected to the outside of the compartment tube of the tank container or
6. The continuous granulation / coating apparatus according to 6.
【請求項8】 前記スプレーノズルを区画筒の上方に配
設したことを特徴とする請求項1、2、3、4、5、6
又は7記載の連続造粒・コーティング装置。
8. A claim 1,2,3,4,5,6, characterized in that arranged the spray nozzle above the partition tube
Or a continuous granulation / coating apparatus according to 7.
JP09211390A 1997-07-22 1997-07-22 Continuous granulation and coating equipment Expired - Fee Related JP3126023B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP09211390A JP3126023B2 (en) 1997-07-22 1997-07-22 Continuous granulation and coating equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP09211390A JP3126023B2 (en) 1997-07-22 1997-07-22 Continuous granulation and coating equipment

Publications (2)

Publication Number Publication Date
JPH1133384A JPH1133384A (en) 1999-02-09
JP3126023B2 true JP3126023B2 (en) 2001-01-22

Family

ID=16605179

Family Applications (1)

Application Number Title Priority Date Filing Date
JP09211390A Expired - Fee Related JP3126023B2 (en) 1997-07-22 1997-07-22 Continuous granulation and coating equipment

Country Status (1)

Country Link
JP (1) JP3126023B2 (en)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007160262A (en) * 2005-12-15 2007-06-28 Fuji Paudal Co Ltd Fluidized layer apparatus
JP6526502B2 (en) * 2014-06-30 2019-06-05 株式会社パウレック Continuous particle production system
CA2991105C (en) * 2015-06-30 2023-05-16 Kabushiki Kaisha Powrex Continuous particle manufacturing device
WO2017002694A1 (en) * 2015-06-30 2017-01-05 株式会社パウレック Continuous particle manufacturing device
WO2022001712A1 (en) * 2020-07-03 2022-01-06 北京蓝鼎科创装备科技有限公司 Fluidized bed

Also Published As

Publication number Publication date
JPH1133384A (en) 1999-02-09

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