JP5624017B2 - Filter press operating method and filter press apparatus - Google Patents

Filter press operating method and filter press apparatus Download PDF

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JP5624017B2
JP5624017B2 JP2011279741A JP2011279741A JP5624017B2 JP 5624017 B2 JP5624017 B2 JP 5624017B2 JP 2011279741 A JP2011279741 A JP 2011279741A JP 2011279741 A JP2011279741 A JP 2011279741A JP 5624017 B2 JP5624017 B2 JP 5624017B2
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reaction force
tightening
filter plate
loose head
filter
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JP2012055894A (en
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青柳 宏紀
宏紀 青柳
橋口 秀之
秀之 橋口
山根 陽一
陽一 山根
中村 真也
真也 中村
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Tsukishima Kikai Co Ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D25/00Filters formed by clamping together several filtering elements or parts of such elements
    • B01D25/12Filter presses, i.e. of the plate or plate and frame type
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Description

本発明は、フィルタプレスの運転方法及びフィルタプレス装置に関する。   The present invention relates to a filter press operating method and a filter press apparatus.

周知のように最近のフィルタプレス装置は、濾過効率向上等を目的として多数の濾室を形成するべく、濾板厚さ方向に伸縮開閉自在とされた、複数の濾板からなる濾板群を備えており、濾過時には濾板相互を押圧密着して各濾板間に濾室を形成し、脱水ケーキ排出時には濾板相互を離間させて濾板間から脱水ケーキを排出させるように構成されている。
そして、かかる濾板群を伸縮開閉する装置としては、本出願人が先に特公平4−9566号公報(特許文献1)において提案したものがある。この開閉装置は、濾板厚さ方向に伸縮開閉自在とされた、複数の濾板からなる濾板群と、この濾板群における一方側端部濾板に対して油圧シリンダーを介して連結されるとともに濾板群の伸縮方向に前後動自在とされた移動台とを備えたものであり、このシリンダーを伸縮させることによって、当該シリンダーが移動台に反力をとりつつ一方側端部濾板を他方側端部濾板側へ押圧し締付けるものであり、簡易な装置構成でありながら濾板開閉距離を非常に長くすることができ、またその分濾室数も多くすることができるものである。
かかる従来型装置においては、締付け装置として油圧シリンダーを一方側端部濾板と移動台とに架設する構成とされ、締付け力を高めるためには大径の油圧シリンダーが必要となり、装置重量および装置コストの増加が問題となっていた。また、油圧シリンダーの大型化に伴い移動台とともに移動する部分の重量が増加するため、移動台の駆動源も大型のものが必要となるため、装置重量および装置コストの増加のみならず、ランニングコストも高くなる点が問題となっていた。
As is well known, a recent filter press apparatus has a filter plate group consisting of a plurality of filter plates that can be expanded and contracted in the thickness direction of the filter plate in order to form a large number of filter chambers for the purpose of improving the filtration efficiency. The filter plates are pressed and adhered to each other at the time of filtration to form a filter chamber between the filter plates, and when the dehydrated cake is discharged, the filter plates are separated from each other and the dehydrated cake is discharged from between the filter plates. Yes.
As an apparatus for expanding and contracting such a filter plate group, there is one previously proposed by the present applicant in Japanese Patent Publication No. 4-9566 (Patent Document 1). This opening / closing device is connected to a filter plate group composed of a plurality of filter plates, which can be freely opened and closed in the thickness direction of the filter plate, and a filter plate on one side end of the filter plate group via a hydraulic cylinder. And a moving table that is movable back and forth in the direction of expansion and contraction of the filter plate group. By extending and contracting this cylinder, the one end filter plate on the one side while the cylinder takes a reaction force on the moving table. The other end of the filter plate is pressed and tightened, and the filter plate open / close distance can be made very long while having a simple device configuration, and the number of filter chambers can be increased accordingly. is there.
In such a conventional apparatus, a hydraulic cylinder is constructed as a clamping device on one end end filter plate and a moving table, and a large-diameter hydraulic cylinder is required to increase the clamping force. The increase in cost was a problem. Also, as the hydraulic cylinder increases in size, the weight of the part that moves together with the moving base increases, so a large driving source is required for the moving base. However, it was a problem that it became higher.

一方、フィルタプレス装置は、浄水場などの排水の脱水処理設備に用いられることがあるが、かかる場合に油圧シリンダーを用いていると、シリンダー自体だけでなく、油圧配管、油圧ユニット等から作動油が漏れ、排水や脱水物に混入させてしまう虞があることも問題であった。
そこで、本出願人は、締付駆動源の小型軽量化及びローコスト化を可能とし、排水や脱水物への作動油の混入を防止することを目的として、特許文献2のものを開発し、実績を重ねてきた。
なお、特許文献3のものも提案されている。
On the other hand, the filter press device is sometimes used in dewatering equipment for wastewater such as a water purification plant. In such a case, if a hydraulic cylinder is used, the hydraulic oil is not only supplied from the cylinder itself but also from hydraulic piping, a hydraulic unit, etc. It was also a problem that there was a risk of leakage and mixing with drainage or dehydrated matter.
Therefore, the present applicant has developed a thing of Patent Document 2 for the purpose of enabling a reduction in the size and weight of the tightening drive source and a reduction in cost, and preventing the mixing of hydraulic oil into drainage and dehydrated products. Has been repeated.
A thing of patent documents 3 is also proposed.

ところで、フィルタプレスは単に濾過・脱水だけでなく、最終段階でさらに高圧を作用させて「圧搾」を行なうものがある。
特許文献2のフィルタプレス装置は、多くの利点をもつものの、精査検討してみると、パンタグラフ式ジャッキの構成部材群を「圧搾」に耐えるに十分な強度とする必要があり、そのために大型のものが必要となり、かつ構造が複雑なために製作コストが高くなるとの根本的な問題を見出した。
他方、特許文献3のものも一つの解決手法であるが、ストッパとムーバブルヘッド(ルーズヘッド)にそれぞれ係合装置を設ける必要があり、構造が複雑となる難点がある。
さらに、濾布の新旧や、濾布やダイアフラムの厚さ(弾力性)などが時間の経過に伴い変化することで、ルーズヘッドの締付位置が変化する場合があり、締付け位置が機械的に固定されているフィルタプレス装置では、対象脱水物が漏れる虞があった。
また、濾室内の脱水ケーキの形状や、濾布に付着した脱水ケーキなどによって、濾過及び圧搾中の締付圧が変化することがあるが、特許文献2及び特許文献3のフィルタプレス装置では、締付け装置が機械的に固定されており、締付圧の低下が生じても濾板の締付圧の調整を行うことができないため、締付け圧を適正化することができなかった。特に濾板の枚数が多い場合、かかる締付圧変化が顕著に表れ、経時的に安定した脱水能力を発揮させることができなかった。
Incidentally, there are filter presses that perform not only filtration / dehydration but also “pressing” by applying a higher pressure in the final stage.
Although the filter press device of Patent Document 2 has many advantages, it is necessary to make the component members of the pantograph-type jack sufficiently strong to withstand “squeezing” when examined carefully. I found the fundamental problem that the manufacturing cost becomes high because of the necessity of the product and the complicated structure.
On the other hand, although the thing of patent document 3 is one solution method, it is necessary to provide an engaging device in a stopper and a movable head (loose head), respectively, and there exists a difficulty that a structure becomes complicated.
In addition, the tightening position of the loose head may change due to changes in filter cloth and diaphragm thickness (elasticity) over time, and the tightening position of the loose head may change mechanically. In the fixed filter press apparatus, there was a possibility that the target dehydrated product may leak.
Also, the shape of the dewatered cake in the filter chamber, the dewatered cake attached to the filter cloth, etc. may change the clamping pressure during filtration and squeezing, but in the filter press devices of Patent Document 2 and Patent Document 3, Since the tightening device is mechanically fixed and the tightening pressure of the filter plate cannot be adjusted even if the tightening pressure is lowered, the tightening pressure cannot be optimized. In particular, when the number of filter plates is large, such a change in tightening pressure appears remarkably, and stable dehydration ability cannot be exhibited over time.

特公平4−9566号公報Japanese Examined Patent Publication No. 4-9566 特許第4135850号公報Japanese Patent No. 4135850 特許第3539310号公報Japanese Patent No. 3539310

そこで、本発明の主たる課題は、構造的に簡素とし、小型化を図り、省スペース及び低コスト化を図ることにある。さらに、圧搾時に発生する高圧な反力に対しても十分に耐えうるフィルタプレス装置を提供することにある。さらに、脱水のみならず圧搾にも十分に耐えうるフィルタプレスの運転方法を提供することにある。   Therefore, the main problem of the present invention is to simplify the structure, to reduce the size, and to save space and cost. Furthermore, it is providing the filter press apparatus which can fully endure the high-pressure reaction force which generate | occur | produces at the time of pressing. Furthermore, it is providing the operating method of the filter press which can fully endure not only dehydration but pressing.

上記課題を解決した本発明は次記のとおりである。
<請求項1記載の発明>
濾板厚さ方向に伸縮開閉自在とされた、複数の濾板からなる濾板群における一方側端部濾板の外方に設けられるルーズヘッドと、
対地固定または前記ルーズヘッドの移動方向に移動可能であり、濾板群の濾板厚さ方向への移動の反力体を構成する反力座体と、
前記ルーズヘッドと反力座体の間に設けられ、前記ルーズヘッドを前記濾板厚さ方向に移動させて前記濾板群を締付ける締付手段を有するフィルタプレスの運転方法であって、
前記締付手段により前記濾板群を締付けた後、
前記ルーズヘッドと反力座体の間に設けられた反力受け手段を濾板の厚さ方向に移動させてルーズヘッドに当接させ、前記ルーズヘッドを締付方向と反対側へ移動させようとする反力を受け、
その後、前記締付手段を締付方向と反対側へ移動させて締付手段による締付けを解除し、
その後は、前記反力受け手段で、ルーズヘッドに作用する濾過及び圧搾の反力を支持することを特徴とするフィルタプレスの運転方法。
The present invention that has solved the above problems is as follows.
<Invention of Claim 1>
Loose head provided on the outer side of one side end filter plate in a filter plate group consisting of a plurality of filter plates, which can be freely opened and closed in the filter plate thickness direction,
A reaction force seat that is fixed to the ground or movable in the moving direction of the loose head, and constitutes a reaction force body for moving the filter plate group in the filter plate thickness direction,
An operation method of a filter press provided between the loose head and a reaction force seat, and having a tightening means for moving the loose head in the filter plate thickness direction to fasten the filter plate group,
After tightening the filter plate group by the tightening means ,
Let the reaction force receiving means provided between the loose head and the reaction force seat move in the thickness direction of the filter plate so as to contact the loose head, and move the loose head to the opposite side of the tightening direction. Under the reaction force
Thereafter, the tightening means is moved to the opposite side of the tightening direction to release the tightening by the tightening means ,
Thereafter, the reaction force receiving means supports the reaction force of filtration and squeezing that acts on the loose head, and the operation method of the filter press.

(作用効果)
本発明においては、締付手段とは別に反力受け手段を設け、圧搾時にルーズヘッドを締付方向と反対側に移動させようとする反力をこの反力受け手段が受けるようにした。その結果、締付手段による締付力は、従来の締付け装置に対して数分の一程度で足りることが判明した。したがって、締付と反力受けとを共有する場合に比較して、構造的に簡素化でき、小型化が可能となり、省スペース及び低コスト化を図ることができる。さらに、圧搾時に発生する高圧な反力に対しても十分に耐えることができる。
なお、特に濾布固定型の場合には、反力座体を対地固定とし、濾布移動型の場合には、反力座体ルーズヘッドの移動方向に移動可能であるのが望ましい。
(Function and effect)
In the present invention, a reaction force receiving means is provided separately from the tightening means so that the reaction force receiving means receives a reaction force for moving the loose head to the side opposite to the tightening direction during pressing. As a result, it has been found that the tightening force by the tightening means is about a fraction of that of the conventional tightening device. Therefore, as compared with the case where the tightening and the reaction force receiver are shared, the structure can be simplified, the size can be reduced, and the space can be saved and the cost can be reduced. Furthermore, it can sufficiently withstand a high-pressure reaction force generated during pressing.
Note that particularly in the case of filter cloth fixed type, a reaction force seat body and ground fixed, in the case of the filter cloth moving type, it is desirable reaction force seat body can move in the moving direction of the loose head.

<請求項2記載の発明>
濾板厚さ方向に伸縮開閉自在とされた、複数の濾板からなる濾板群における一方側端部濾板の外方に設けられるルーズヘッドと、
対地固定または前記ルーズヘッドの移動方向に移動可能であり、濾板群の濾板厚さ方向への移動の反力体を構成する反力座体と、
前記ルーズヘッドと反力座体の間に設けられ、前記ルーズヘッドを前記濾板厚さ方向に移動させて前記濾板群を締付ける締付手段を設けたフィルタプレス装置であって、
前記締付手段により前記濾板群を締付けた後、
前記ルーズヘッドと反力座体の間に設けられた反力受け手段を濾板の厚さ方向に移動させてルーズヘッドに当接させ、前記ルーズヘッドを締付方向と反対側へ移動させようとする反力を受け、
その後、前記締付手段を締付方向と反対側へ移動させて締付手段による締付けを解除し、
その後は、前記反力受け手段で、ルーズヘッドに作用する濾過及び圧搾の反力を支持するように構成されていることを特徴とするフィルタプレス装置。
<Invention of Claim 2>
Loose head provided on the outer side of one side end filter plate in a filter plate group consisting of a plurality of filter plates, which can be freely opened and closed in the filter plate thickness direction,
A reaction force seat that is fixed to the ground or movable in the moving direction of the loose head, and constitutes a reaction force body for moving the filter plate group in the filter plate thickness direction,
A filter press device provided between the loose head and the reaction force seat, and provided with a tightening means for moving the loose head in the filter plate thickness direction to fasten the filter plate group,
After tightening the filter plate group by the tightening means,
Let the reaction force receiving means provided between the loose head and the reaction force seat move in the thickness direction of the filter plate so as to contact the loose head, and move the loose head to the opposite side of the tightening direction. Under the reaction force
Thereafter, the tightening means is moved to the opposite side of the tightening direction to release the tightening by the tightening means ,
Thereafter, the reaction force receiving means is configured to support the reaction force of filtration and squeezing that acts on the loose head .

(作用効果)
請求項1と同様の作用効果がある。
(Function and effect)
There exists an effect similar to Claim 1.

<請求項3記載の発明>
前記反力座体は、前記締付手段が濾板群の締付けを行うときの反力体になるとともに、
前記ルーズヘッドを締付方向と反対側へ移動させようとする反力を前記反力受け手段が受けるときの反力体にもなる請求項2記載のフィルタプレス装置。
<Invention of Claim 3>
The reaction force seat body is a reaction force body when the tightening means tightens the filter plate group,
3. The filter press device according to claim 2, which also serves as a reaction force body when the reaction force receiving means receives a reaction force for moving the loose head in the direction opposite to the tightening direction.

(作用効果)
締付手段の反力座体と反力受け手段の反力座体をそれぞれ別々に設けることも可能であるが、共通の反力座体にすることで、装置の簡素化などにおいて有利となる。
(Function and effect)
Although it is possible to provide the reaction force seat body of the tightening means and the reaction force seat body of the reaction force receiving means separately, using a common reaction force seat body is advantageous in simplifying the device. .

<請求項4記載の発明>
前記締付手段及び前記反力受け手段は前記ルーズヘッドの移動方向に対して直線移動するものである請求項2または3記載のフィルタプレス装置。
<Invention of Claim 4>
4. The filter press device according to claim 2, wherein the tightening means and the reaction force receiving means are linearly moved with respect to a moving direction of the loose head.

(作用効果)
締付手段としては、ボールネジのほかシリンダや適宜の押圧機構を選択できるが、濾布移動型の場合には、反力座体と共に締付手段もルーズヘッドの移動方向に移動可能であると、締付力の選択及び締付位置の調整を簡易に行なうことができる。
(Function and effect)
As the tightening means, a cylinder and an appropriate pressing mechanism can be selected in addition to the ball screw, but in the case of the filter cloth moving type, the tightening means can be moved in the moving direction of the loose head together with the reaction force seat. Selection of the tightening force and adjustment of the tightening position can be easily performed.

以上のとおり、本発明によれば、構造的に簡素となり、小型化が達成でき、しかも省スペース及び低コスト化を図ることができる。さらに、圧搾時に必要な高圧に対しても十分に耐えうるフィルタプレスの運転方法を提供することができる。   As described above, according to the present invention, the structure is simplified, miniaturization can be achieved, and space saving and cost reduction can be achieved. Furthermore, the operation method of the filter press which can fully endure the high pressure required at the time of pressing can be provided.

本発明に係るフィルタプレス装置の平面図である。It is a top view of the filter press apparatus concerning the present invention. 本発明に係るフィルタプレス装置の正面図である。It is a front view of the filter press apparatus concerning the present invention. 本発明に係るフィルタプレス装置の締付段階の要部平面図である。It is a principal part top view of the fastening stage of the filter press apparatus which concerns on this invention. 本発明に係るフィルタプレス装置の締付後に圧搾反力受け時点の要部平面図である。It is a principal part top view at the time of pressing reaction force receiving after the filter press apparatus which concerns on this invention is clamped. 差圧発生防止弾性膜の説明図である。It is explanatory drawing of a differential pressure generation prevention elastic film.

以下、図面を使って、本発明の実施の形態を説明する。
(装置の概要構成)
本例の装置では、相互に離間し且つ平行な一対の主梁1,1が、その長手方向(以下、単に長手方向という場合は、主梁1,1の長手方向を意味する。)両端部において支柱部材2,2により支持され、水平方向に延在しており、これら一対の主梁1,1上に、その長手方向に開閉する複数の濾板3,3…からなる濾板群が支持され、この濾板群3,3…の開方向側に配されたルーズヘッド4が支持されている。これら個々の濾板3,3…及びルーズヘッド4には、ガイドローラ6,6が取り付けられ、このガイドローラ6,6を介して主梁1,1上を走行するように構成されている。また個々の濾板3,3…及びルーズヘッド4の全体が連動して開閉伸縮するように、隣接相互がタイボルト5,5…により連結されている。7は固定側フレームである。
Hereinafter, embodiments of the present invention will be described with reference to the drawings.
(Outline configuration of equipment)
In the apparatus of this example, a pair of main beams 1 and 1 that are spaced apart from each other and parallel to each other are in the longitudinal direction (hereinafter simply referred to as the longitudinal direction means the longitudinal direction of the main beams 1 and 1). Are supported by the support members 2 and 2 and extend in the horizontal direction, and a filter plate group comprising a plurality of filter plates 3, 3... The loose head 4 supported and arranged on the opening direction side of the filter plate groups 3, 3... Is supported. These individual filter plates 3, 3... And the loose head 4 are provided with guide rollers 6, 6, and are configured to travel on the main beams 1, 1 via the guide rollers 6, 6. The adjacent filter plates 3, 3,... And the loose head 4 are connected to each other by tie bolts 5, 5,. Reference numeral 7 denotes a fixed side frame.

そして本発明においては、かかる一体的な濾板3,3…及びルーズヘッド4に対し、開枠側(すなわちルーズヘッド4の濾板側と反対側)に締付装置50が設けられ、この締付装置50は、主梁1,1上を走行自在の台車11を反力(座)体として連結されている。   In the present invention, a clamping device 50 is provided on the open frame side (that is, the side opposite to the filter plate side of the loose head 4) with respect to the integral filter plates 3, 3. The attaching device 50 is connected with a carriage 11 that can run on the main beams 1 and 1 as a reaction force (seat) body.

本実施の形態では、台車11の下側には、図示しない電動モータ等の台車移動用回転駆動源が取り付けられ、その回転軸が一方側の主梁1の下側まで延在され、この延在部分にピニオンギヤ(歯車)が取り付けられるとともに、一方側の主梁下面にその長手方向に沿ってラックが固定され、これらピニオンギヤとラックとが噛み合わされている。したがって、台車移動用回転駆動源を作動させてピニオンギヤを適宜正逆回転させることにより、ピニオンギヤがラック下面に沿って噛み合いながら走行するのに伴って、台車11が主梁1,1上をガイドローラ12,12…に乗った状態で前後動自在とされている。   In the present embodiment, a cart drive rotary drive source such as an electric motor (not shown) is attached to the lower side of the cart 11, and the rotation shaft extends to the lower side of the main beam 1 on one side. A pinion gear (gear) is attached to the existing portion, and a rack is fixed along the longitudinal direction on the lower surface of the main beam on one side, and the pinion gear and the rack are engaged with each other. Therefore, the carriage 11 is moved on the main beams 1 and 1 as the pinion gear moves while meshing along the lower surface of the rack by appropriately rotating the pinion gear forward and backward by operating the rotational drive source for moving the carriage. It is possible to move back and forth while riding 12, 12,.

また本例の装置では、後退阻止手段70として、主梁1,1の側面部に掛止凸部71,71を設けるとともに、台車11に対し、図示しないジャッキ等の往復駆動装置により上下動自在の後退阻止部材72,72を取付けている。かかる構成とすることにより、台車11を所定位置まで移動した状態で、後退阻止部材72,72を掛止凸部71,71の前側に下降させることによって、台車11が後退方向に移動しようとしてもその後退阻止部材72,72が掛止凸部71,71に引っ掛かり、後退するのが妨げられる。この他にも、例えば前述の特公平4−9566号公報において提案した後退阻止手段等を用いることもできる。   Further, in the apparatus of this example, as the retraction preventing means 70, latching convex portions 71 and 71 are provided on the side surface portions of the main beams 1 and 1, and the carriage 11 can be moved up and down by a reciprocating drive device such as a jack (not shown). The retraction prevention members 72, 72 are attached. By adopting such a configuration, even when the carriage 11 is moved to a predetermined position, the carriage 11 is moved in the backward direction by lowering the backward prevention members 72 and 72 to the front side of the latching projections 71 and 71. The receding prevention members 72 and 72 are caught by the catching convex portions 71 and 71 and are prevented from moving backward. In addition to this, for example, the reverse prevention means proposed in the above-mentioned Japanese Patent Publication No. 4-9566 can be used.

(装置の概要構成)
締付装置50について詳しく説明すると、台車11のフレーム11Aの幅方向中央には本発明の締付手段としての締付用ボールネジ51が設けられ、図示しない電動モータ等のボールネジ駆動手段による回転によりそのロッド51aがルーズヘッド4に対して前後進するようになっている。51bはネジケースである。
(Outline configuration of equipment)
The tightening device 50 will be described in detail. A tightening ball screw 51 as a tightening means of the present invention is provided at the center in the width direction of the frame 11A of the carriage 11 and is rotated by a ball screw driving means such as an electric motor (not shown). The rod 51a moves forward and backward with respect to the loose head 4. 51b is a screw case.

他方、締付用ボールネジ51に対して幅方向の外側に一対の、本発明の前記反力受け手段としての圧搾反力受けネジ棒52,52が設けられている。
圧搾反力受けネジ棒52,52は、台車11のフレーム11Aに固定されたネジケース52a,52aに螺合されている一方で、後端にはそれぞれスプロケット52b,52bが固定され、ネジ棒52,52の回転に対して非回転に支持されたブラケット52cに電動の回転駆動モータ52dが支持され、その回転駆動モータ52dの出力軸にはスプロケット52eが固定され、その回転をチェーン52fを介してネジ棒52,52の回転及び前後進の直線運動に変換するようにしている。
On the other hand, a pair of pressing reaction force receiving screw rods 52, 52 as the reaction force receiving means of the present invention are provided on the outer side in the width direction with respect to the ball screw 51 for tightening.
The pressing reaction force receiving screw rods 52 and 52 are screwed into screw cases 52a and 52a fixed to the frame 11A of the carriage 11, while sprockets 52b and 52b are fixed to the rear ends, respectively. An electric rotary drive motor 52d is supported by a bracket 52c that is supported non-rotatingly with respect to the rotation of 52. A sprocket 52e is fixed to the output shaft of the rotary drive motor 52d, and the rotation is screwed through a chain 52f. The rods 52 and 52 are converted into rotation and forward / backward linear motion.

(締付方法)
次に、上述のフィルタプレス装置を使用した、好適な濾板締付方法を説明する。
図2は、濾板を締め付ける前の状態を示しており、濾板を締付けるには、この状態から先ず濾板群3,3…の閉枠を行う。すなわち、台車移動用回転駆動源(図示せず)を作動させ、台車11を濾板群3,3…側へ移動させ、この移動力によって、締付装置50を介してルーズヘッド4及び濾板3,3…を押込み収縮閉枠させる。
(Tightening method)
Next, a suitable filter plate tightening method using the above-described filter press apparatus will be described.
FIG. 2 shows a state before the filter plate is tightened. To tighten the filter plate, the filter plate groups 3, 3... Are first closed from this state. That is, a rotational drive source (not shown) for moving the carriage is operated to move the carriage 11 toward the filter plate groups 3, 3,..., And the loose head 4 and the filter plate are connected via the tightening device 50 by this moving force. 3, 3...

このようにして台車11が所定の位置まできたら、台車11の移動を停止し、図1に示すように、後退阻止手段70によって、台車11が、後退(濾板3,3…と反対方向へ移動)しないようにする。   When the carriage 11 reaches the predetermined position in this way, the movement of the carriage 11 is stopped, and as shown in FIG. 1, the carriage 11 is moved backward (in the opposite direction to the filter plates 3, 3,. Do not move).

台車11が後退しないように固定されたならば、次に、締付用ボールネジ51を作動させて、そのロッドを締付方向に徐々に伸長させ、固定した台車11を反力体としながら、ルーズヘッド4及び濾板3,3…の締付けを行なう。所定の力で締付けを行なった後、締付用ボールネジ51を停止させる。   If the carriage 11 is fixed so as not to move backward, the ball screw 51 for tightening is then actuated, the rod is gradually extended in the fastening direction, and the fixed carriage 11 is used as a reaction force while loosening. The head 4 and the filter plates 3, 3 ... are tightened. After tightening with a predetermined force, the tightening ball screw 51 is stopped.

続いて、ルーズヘッド4に対して後退していたネジ棒52,52を、回転駆動モータ52dの駆動により、ネジケース52a,52aに沿って回転前進させ、ネジ棒52,52の先端でルーズヘッド4外面を押圧ぎみに当接させる。   Subsequently, the screw rods 52 and 52 that have been retracted relative to the loose head 4 are rotated and advanced along the screw cases 52a and 52a by the drive of the rotational drive motor 52d, and the loose head 4 is moved at the tips of the screw rods 52 and 52. The outer surface is brought into contact with the pressing jaw.

その後、締付用ボールネジ51は所定距離ルーズヘッド4から後退させ、その後は、ネジ棒52,52のみで、ルーズヘッド4に作用する濾過、及び圧搾の反力を支持する。   Thereafter, the tightening ball screw 51 is retracted from the loose head 4 by a predetermined distance, and thereafter, the screw rods 52 and 52 alone support the filtration and squeezing reaction force acting on the loose head 4.

濾布の新旧や、濾布やダイアフラムの厚さ(弾力性)が時間の経過に伴い変化することでルーズヘッド4の締付位置が変化する場合があるが、ルーズヘッドの移動方向に対して直線移動するボールネジ51及びネジ棒52を使用することにより、締付位置の変化に簡易に対応することができる。   The tightening position of the loose head 4 may change as the filter cloth is old or new, or the thickness (elasticity) of the filter cloth or diaphragm changes over time. By using the ball screw 51 and the screw rod 52 that move linearly, it is possible to easily cope with changes in the tightening position.

圧搾工程においては、濾板間にダイアフラムを設けて濾室と分離し、ダイアフラムと濾板との間に圧力水を供給し、ダイアフラムを変位させて圧搾を行なうほか、本出願人が先に提案した特許第3802015号公報をもって開示するように、締付装置50のほかに、濾板を厚さ方向に押圧して締め付ける補助締付機構40を設けることができる。 In the pressing process, a diaphragm is provided between the filter plates, separated from the filter chamber, pressure water is supplied between the diaphragm and the filter plate, and the diaphragm is displaced to perform the pressing. As disclosed in Japanese Patent No. 3802015, in addition to the tightening device 50, an auxiliary tightening mechanism 40 that presses and tightens the filter plate 3 in the thickness direction can be provided.

すなわち、先に触れたように、濾室内の脱水ケーキの形状や、濾布の厚さ(弾力性)、濾布に付着した脱水ケーキなどが濾過及び圧搾の時間の経過に伴い変化することにより、各濾板3間の締付圧が低下する。そこで、このフィルタプレス装置には、この圧力低下を補い、各濾板3間の締付力を維持するための補助締付機構40が備えられている。   That is, as mentioned above, the shape of the dewatered cake in the filter chamber, the thickness of the filter cloth (elasticity), and the dehydrated cake attached to the filter cloth change with the passage of time of filtration and squeezing. The clamping pressure between the filter plates 3 decreases. Therefore, this filter press device is provided with an auxiliary tightening mechanism 40 for compensating for this pressure drop and maintaining the tightening force between the filter plates 3.

この補助締付機構40のひとつの例は、固定側フレーム7に連結された濾板群一方側端部の濾板3をルーズヘッド4に向けて移動させる装置であって、図5に示すように、濾板3の固定側フレーム7側の凹部と固定側フレーム7との間に設けられたダイアフラム41と、このダイアフラム41に圧力流体(水)を供給する流体供給手段(ポンプ)42とを備えている。 One example of the auxiliary tightening mechanism 40 is a device for moving the filter plate 3 at one end of the filter plate group connected to the fixed side frame 7 toward the loose head 4, as shown in FIG. Further, a diaphragm 41 provided between the concave portion on the fixed side frame 7 side of the filter plate 3 and the fixed side frame 7, and a fluid supply means (pump) 42 for supplying pressure fluid (water) to the diaphragm 41 are provided. I have.

濾板3に取り付けられたダイアフラム41は、ポンプ42から圧力水を供給されて膨張し、濾板3と固定側フレーム7との間隔を押し広げる。これにより濾板3は、ルーズヘッド4側に隣り合う濾板3をルーズヘッド4に向けて押圧し、これらの濾板間に形成されている濾室43の締付圧を上昇させる。   The diaphragm 41 attached to the filter plate 3 is expanded by being supplied with pressure water from the pump 42, and pushes the gap between the filter plate 3 and the fixed side frame 7. As a result, the filter plate 3 presses the filter plate 3 adjacent to the loose head 4 toward the loose head 4 and increases the clamping pressure of the filter chamber 43 formed between these filter plates.

このようにして、各濾板3が順次隣り合う濾板3に押圧され、各濾室43の締付圧が上昇する。したがって、濾板群全体において、各濾板3間の締付圧を上昇させることができる。 In this way, each filter plate 3 is pressed against the filter plate 3 sequentially adjacent clamping pressure of each filter chamber 43 is increased. Therefore, the clamping pressure between the filter plates 3 can be increased in the entire filter plate group.

補助締付機構40は、主締付機構50により濾板群に加えられる押圧力をたとえばロードセルなどを用いて測定し、その測定値が所定値を下回ったときにポンプ42を駆動させる制御装置(図示せず)を設けることにより、濾室43の締付力を維持するのに適切なタイミングで駆動させることができる。   The auxiliary tightening mechanism 40 measures the pressing force applied to the filter plate group by the main tightening mechanism 50 using, for example, a load cell, and drives the pump 42 when the measured value falls below a predetermined value ( By providing (not shown), the filter chamber 43 can be driven at an appropriate timing to maintain the tightening force.

なお、フィルタプレス装置は、厚さ方向に並べた多数の濾板3を、その両側端部に位置する濾板3,3を互いに近づける方向に押圧し、その押圧力が隣り合う濾板3に対して順次伝達される。したがって、中間部の濾板3間押圧力が伝達されにくいので、濾室43に作用する締付圧は、濾板群の両端よりも中間部において低くなる。 Note that the filter press device presses a large number of filter plates 3 arranged in the thickness direction in a direction in which the filter plates 3 and 3 located at both ends are brought close to each other, and the pressing force is applied to the adjacent filter plates 3. It is transmitted sequentially. Accordingly, the pressing force between the filtration plate 3 of the intermediate portion is hardly transmitted, pressure clamping acting on filter chamber 43 is lower in the middle portion than at both ends of the filter plate group.

そこで、補助締付機構40を、前記公報の図4に示されているように、濾板群一方側端部ではなく中間部に設けてもよい。さらに、補助締付機構として、前記公報の図5や図6の構成を採用することもできる。   Therefore, as shown in FIG. 4 of the publication, the auxiliary tightening mechanism 40 may be provided in the middle portion instead of the one end portion of the filter plate group. Furthermore, the configuration shown in FIGS. 5 and 6 of the publication can be employed as the auxiliary tightening mechanism.

他方、開枠時においては、以上に説明した閉枠工程とは逆の手順となり、ボールネジ51の前進、ネジ棒52,52の後退、締付用ボールネジ51の後退を行ない、次に後退阻止部材72,72を上昇させて台車11の固定を解いた後、台車11を開枠方向(濾板3,3…側と反対側)に移動させ、これに伴わせてルーズヘッド4及び濾板3,3…を移動拡張させ開枠させる。   On the other hand, when the frame is opened, the procedure is the reverse of the frame closing process described above, the ball screw 51 is advanced, the screw rods 52 and 52 are retracted, and the tightening ball screw 51 is retracted. After the carriages 72 and 72 are lifted and the carriage 11 is fixed, the carriage 11 is moved in the frame opening direction (opposite to the filter plates 3, 3...), And the loose head 4 and the filter plate 3 are moved accordingly. , 3... Are moved and expanded to open the frame.

他方、締付用ボールネジ51による締付けから、ネジ棒52,52のみによるルーズヘッド4に作用する圧搾反力の支持段階への移行時点の設定は、閉枠力が現れる長手方向の適宜の位置に、圧力検出手段例えばロードセルを設けて、その信号に応じて行なうことができる。   On the other hand, the setting at the time of transition from the tightening by the tightening ball screw 51 to the supporting stage of the pressing reaction force acting on the loose head 4 by only the screw rods 52, 52 is set at an appropriate position in the longitudinal direction where the closing frame force appears. A pressure detecting means, for example, a load cell can be provided, and this can be performed according to the signal.

ところで、前記例は、移動台車方式の例であるが故に、台車11を反力(座)体とした。これに対し、固定台方式の場合、大地に固定した固定台を反力(座)体としてもよいことは勿論である。 By the way, since the above example is an example of the movable carriage system, the carriage 11 is a reaction force (seat) body. On the other hand, in the case of the fixed base method, it goes without saying that a fixed base fixed to the ground may be used as a reaction force (seat) body.

1…主梁、2…支柱部材、3…濾板、4…ルーズヘッド、11…台車、50…締付装置、51…締付用ボールネジ(締付手段)、52…圧搾反力受けネジ棒(反力受け手段)、70…後退阻止手段、71…掛止凸部、72…後退阻止部材。   DESCRIPTION OF SYMBOLS 1 ... Main beam, 2 ... Column member, 3 ... Filter board, 4 ... Loose head, 11 ... Dolly, 50 ... Tightening device, 51 ... Tightening ball screw (clamping means), 52 ... Compression reaction force receiving screw rod (Reaction force receiving means), 70 ... Retraction prevention means, 71 ... Hook protrusion, 72 ... Retraction prevention member.

Claims (4)

濾板厚さ方向に伸縮開閉自在とされた、複数の濾板からなる濾板群における一方側端部濾板の外方に設けられるルーズヘッドと、
対地固定または前記ルーズヘッドの移動方向に移動可能であり、濾板群の濾板厚さ方向への移動の反力体を構成する反力座体と、
前記ルーズヘッドと反力座体の間に設けられ、前記ルーズヘッドを前記濾板厚さ方向に移動させて前記濾板群を締付ける締付手段を有するフィルタプレスの運転方法であって、
前記締付手段により前記濾板群を締付けた後、
前記ルーズヘッドと反力座体の間に設けられた反力受け手段を濾板の厚さ方向に移動させてルーズヘッドに当接させ、前記ルーズヘッドを締付方向と反対側へ移動させようとする反力を受け、
その後、前記締付手段を締付方向と反対側へ移動させて締付手段による締付けを解除し、
その後は、前記反力受け手段で、ルーズヘッドに作用する濾過及び圧搾の反力を支持することを特徴とするフィルタプレスの運転方法。
Loose head provided on the outer side of one side end filter plate in a filter plate group consisting of a plurality of filter plates, which can be freely opened and closed in the filter plate thickness direction,
A reaction force seat that is fixed to the ground or movable in the moving direction of the loose head, and constitutes a reaction force body for moving the filter plate group in the filter plate thickness direction,
An operation method of a filter press provided between the loose head and a reaction force seat, and having a tightening means for moving the loose head in the filter plate thickness direction to fasten the filter plate group,
After tightening the filter plate group by the tightening means ,
Let the reaction force receiving means provided between the loose head and the reaction force seat move in the thickness direction of the filter plate so as to contact the loose head, and move the loose head to the opposite side of the tightening direction. Under the reaction force
Thereafter, the tightening means is moved to the opposite side of the tightening direction to release the tightening by the tightening means ,
Thereafter, the reaction force receiving means supports the reaction force of filtration and squeezing that acts on the loose head, and the operation method of the filter press.
濾板厚さ方向に伸縮開閉自在とされた、複数の濾板からなる濾板群における一方側端部濾板の外方に設けられるルーズヘッドと、
対地固定または前記ルーズヘッドの移動方向に移動可能であり、濾板群の濾板厚さ方向への移動の反力体を構成する反力座体と、
前記ルーズヘッドと反力座体の間に設けられ、前記ルーズヘッドを前記濾板厚さ方向に移動させて前記濾板群を締付ける締付手段を設けたフィルタプレス装置であって、
前記締付手段により前記濾板群を締付けた後、
前記ルーズヘッドと反力座体の間に設けられた反力受け手段を濾板の厚さ方向に移動させてルーズヘッドに当接させ、前記ルーズヘッドを締付方向と反対側へ移動させようとする反力を受け、
その後、前記締付手段を締付方向と反対側へ移動させて締付手段による締付けを解除し、
その後は、前記反力受け手段で、ルーズヘッドに作用する濾過及び圧搾の反力を支持するように構成されていることを特徴とするフィルタプレス装置。
Loose head provided on the outer side of one side end filter plate in a filter plate group consisting of a plurality of filter plates, which can be freely opened and closed in the filter plate thickness direction,
A reaction force seat that is fixed to the ground or movable in the moving direction of the loose head, and constitutes a reaction force body for moving the filter plate group in the filter plate thickness direction,
A filter press device provided between the loose head and the reaction force seat, and provided with a tightening means for moving the loose head in the filter plate thickness direction to fasten the filter plate group,
After tightening the filter plate group by the tightening means,
Let the reaction force receiving means provided between the loose head and the reaction force seat move in the thickness direction of the filter plate so as to contact the loose head, and move the loose head to the opposite side of the tightening direction. Under the reaction force
Thereafter, the tightening means is moved to the opposite side of the tightening direction to release the tightening by the tightening means ,
Thereafter, the reaction force receiving means is configured to support the reaction force of filtration and squeezing that acts on the loose head .
前記反力座体は、前記締付手段が濾板群の締付けを行うときの反力体になるとともに、
前記ルーズヘッドを締付方向と反対側へ移動させようとする反力を前記反力受け手段が受けるときの反力体にもなる請求項2記載のフィルタプレス装置。
The reaction force seat body is a reaction force body when the tightening means tightens the filter plate group,
3. The filter press device according to claim 2, which also serves as a reaction force body when the reaction force receiving means receives a reaction force for moving the loose head in the direction opposite to the tightening direction.
前記締付手段及び前記反力受け手段は前記ルーズヘッドの移動方向に対して直線移動するものである請求項2または3記載のフィルタプレス装置。   4. The filter press device according to claim 2, wherein the tightening means and the reaction force receiving means are linearly moved with respect to a moving direction of the loose head.
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