JPS58197319A - Method and apparatus for controlling apparatus contained in spinning preliminary treating installation - Google Patents

Method and apparatus for controlling apparatus contained in spinning preliminary treating installation

Info

Publication number
JPS58197319A
JPS58197319A JP5175883A JP5175883A JPS58197319A JP S58197319 A JPS58197319 A JP S58197319A JP 5175883 A JP5175883 A JP 5175883A JP 5175883 A JP5175883 A JP 5175883A JP S58197319 A JPS58197319 A JP S58197319A
Authority
JP
Japan
Prior art keywords
fiber
control means
roller
controllable drive
series
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.)
Granted
Application number
JP5175883A
Other languages
Japanese (ja)
Other versions
JPH0413451B2 (en
Inventor
フエルデイナンド・ライフエルド
フリツツ・ヘ−ゼル
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.)
Truetzschler GmbH and Co KG
Original Assignee
Truetzschler GmbH and Co KG
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 Truetzschler GmbH and Co KG filed Critical Truetzschler GmbH and Co KG
Publication of JPS58197319A publication Critical patent/JPS58197319A/en
Publication of JPH0413451B2 publication Critical patent/JPH0413451B2/ja
Granted legal-status Critical Current

Links

Classifications

    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01GPRELIMINARY TREATMENT OF FIBRES, e.g. FOR SPINNING
    • D01G23/00Feeding fibres to machines; Conveying fibres between machines
    • D01G23/08Air draught or like pneumatic arrangements
    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01GPRELIMINARY TREATMENT OF FIBRES, e.g. FOR SPINNING
    • D01G23/00Feeding fibres to machines; Conveying fibres between machines
    • D01G23/06Arrangements in which a machine or apparatus is regulated in response to changes in the volume or weight of fibres fed, e.g. piano motions

Landscapes

  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Preliminary Treatment Of Fibers (AREA)

Abstract

(57)【要約】本公報は電子出願前の出願データであるた
め要約のデータは記録されません。
(57) [Summary] This bulletin contains application data before electronic filing, so abstract data is not recorded.

Description

【発明の詳細な説明】 本発明は紡績用予備処理設備中の装置、例えば紡織用繊
維のオーシナ及び/まfI−、はクリアラの下流側貯酸
装置などにおける繊維量の測定値を得て、これを電気信
号に変換し、この信号に応じて前記装置への繊維供給量
を変化させる調整部材に前記電気信号を供給するように
する前記V?置への繊維供給量制御方法及びこの方法を
実施するための装置に関する。
DETAILED DESCRIPTION OF THE INVENTION The present invention provides a device in a spinning pretreatment facility, such as an orcina and/or mafI for textile fibers, to obtain a measured value of the amount of fiber in an acid storage device downstream of a clearer, The V? The present invention relates to a method for controlling the amount of fiber supplied to a machine and an apparatus for carrying out the method.

実際にはオープナ及びクリアラの材料通過は後続の装置
の条件に応じて前記オープナ及びクリアラの材料搬送ロ
ーラがスト、f・アンド・ゴ一方式で駆動されるように
:fl!111!11されるのが普通である。
In reality, the material passing through the opener and clearer is such that the material conveying rollers of the opener and clearer are driven in one of two ways: fl! according to the conditions of the subsequent equipment. 111!11 is usually called.

後続の装置は原則として貯蔵装置であるかまたは貯蔵装
置を含む、装填状態はイエス・ノ一方式のセンサ、例え
ば後続装置の装填状態の目安とがる背圧を感知するため
のフォトセルまたは電子圧力スイッチ(EDS)によっ
て検知するのが普通である。このセンサはイエス・ノー
感知に従って材料搬送駆動手段の作動または非作動を制
御する。この方法には、休止時には開綿及び浄綿処理が
全く行なわれず、その反面、作動時には平均量以上の流
量を処理しなければならないという欠点がある。
The subsequent device is as a rule a storage device or includes a storage device, the loading state of which is determined by a one-way sensor, e.g. a photocell or an electronic sensor for sensing the back pressure which is an indication of the loading state of the subsequent device. It is usually detected by a pressure switch (EDS). This sensor controls activation or deactivation of the material transport drive according to the yes/no sensing. This method has the disadvantage that no cotton opening or cleaning is performed when the system is at rest, whereas a higher than average flow rate must be processed during operation.

ところが流量が少なければ少ないほど好ましい浄綿及び
開綿成果が得られるから、休止時間が長ければ長いほど
この処理成果は劣化する。休止時間と作動時間の比が5
0:50ならば、作動時に平均量の2倍の量を処理しな
ければならない。
However, since the lower the flow rate, the better the cotton cleaning and opening results are obtained, the longer the pause time, the worse the treatment results. The ratio of rest time to working time is 5
If it is 0:50, twice the average amount must be processed during operation.

本発明の目的は上記欠点を回避し、特にすぐれた浄綿及
び開綿成果を可能にする方法およびその方法を実施する
装置を提案することにある。
The object of the invention is to avoid the above-mentioned disadvantages and to propose a method and a device for carrying out the method, which allow particularly good cotton cleaning and opening results.

この目的は特許請求の範囲@1項に特徴として記載した
構成要件によって達成される。
This object is achieved by the features characterized in claim 1.

本発明の要点はオーシナ及びクリアラの運転時間中も材
料搬送駆動手段を作動状態に維持することにある。この
ため、後続装置の装填状態をアナログ検知し、この検知
結果に従って材料搬送駆動手段の緩急を調整する。この
調整は制御手段罠よって自動的に行なうことができる。
The essence of the invention is to maintain the material transport drive means in operation during the operating hours of the orcina and clearer. For this reason, the loading state of the subsequent device is detected in analog form, and the speed of the material conveyance drive means is adjusted according to the detection result. This adjustment can be carried out automatically by means of a control means trap.

後続シュート中の柱高または後続システム中の圧力が現
実値を形成し、オープナまたけクリアラの材料フィード
ローラの回転数設定手段が調整部材を構成する。
The column height in the downstream chute or the pressure in the downstream system form the actual value, and the rotational speed setting means of the material feed roller of the opener straddle clearer constitute the adjusting member.

この制御は純アナログ式に連続的[tたは段階的に行な
われる。50:50のストップ・アンド・ゴ一方式によ
る公知方法では短時間で例えば500いの繊維材料を処
理しなければならないが、本発明ではこれを連続運転で
250 kvhにならすことができる。従って、浄綿効
率が著しく高められる。経時的にばらつきのない開綿度
を達成する罠はオーシナの1本の歯またはピン当たりの
被処理繊維重量が常に一定でなければならない、従って
、特許請求の範囲1g2項に記載した通り、材料導送駆
動手段と開綿ローラ駆動手段の回転数を比例関係に維持
しなければならない、材料駆動手段の回転が速ければこ
れに比例して開綿ローラの回転も速くなければならない
。この条件は共通の駆動手段を利用することで経済的に
充足することができる。即ち、回転数制御可能な駆動モ
ータが伝動装置を介してビータ(開綿ローラ)を駆動す
る。ギヤによりモータ回転数またはビータ回転数または
中間回転数が材料駆動のための極めて小さいフィードロ
ーラ回転数に減速される。
This control is carried out continuously or stepwise in a purely analog manner. In the known 50:50 stop-and-go process, for example, 500 sheets of fiber material have to be processed in a short time, whereas with the present invention this can be increased to 250 kvh in continuous operation. Therefore, the cotton cleaning efficiency is significantly increased. In order to achieve a uniform openness over time, the weight of the treated fibers per tooth or pin of the orcina must always be constant. The rotational speeds of the conveying drive means and the opening roller driving means must be maintained in a proportional relationship; if the rotation of the material driving means is fast, the rotation of the opening roller must be proportionally fast. This condition can be met economically by using common drive means. That is, a drive motor whose rotational speed can be controlled drives a beater (spreading roller) via a transmission device. The gear reduces the motor speed or the beater speed or the intermediate speed to a very low feed roller speed for driving the material.

本発明は繊維量測定部材に制御手段を直列接続し、この
制御手段を少なくとも1つのフィードローラの制御自在
な駆動手段(モータ制御手段、駆動モータ)と接続した
、本発明の方法を実施するのに好適な装置にも係わる。
The present invention provides a method for carrying out the method according to the present invention, in which a control means is connected in series to the fiber content measuring member, and this control means is connected to a controllable drive means (motor control means, drive motor) of at least one feed roller. It also relates to a device suitable for.

特に好ましい実施態様では繊維量測定部材に制御手段を
直列接続し、この制御手段を少なくとも1つの開綿ロー
ラの制御自在な駆動手段と接続する。
In a particularly preferred embodiment, a control means is connected in series to the fiber content measuring element, and this control means is connected to the controllable drive means of at least one opening roller.

特許請求の範囲第5項ないし第7項は本発明のその他の
好ましい実施態様を記載している。
Claims 5 to 7 describe other preferred embodiments of the invention.

V下添付図面に示す実施例に基づいて本発明の詳細な説
明する。
The present invention will be described in detail based on embodiments shown in the accompanying drawings below.

第1図は例えばクリアラ1、コンデンサ2、仕上げオル
ブナ3、送風機4.9気圧式う、!供給機構5及びカー
ド6から成る公知の混打綿/浄綿/開綿装買を示す。ク
リアラとしては例えばツリュッラ一式RV 、 RKま
たFiR8を採用することができる。クリアラIFi装
入シュート7から供給を受ける。即ち、装入シュート7
から2つのテーカインローラ8,9によって繊維材料が
取出され、コンベアベルト10及び2つのフィードロー
ラ11.12から成る供給装置に供給される。フィード
ローラ11.12が繊維材料を開綿ローラ13に供給し
、l#雄材料はダクト14を通ってコンデンサ2のケー
ノローラに至り、さらに仕上げオーシナ3の装入シュー
ト15、例えば装入シュー)BSに達する。装入シュー
ト15には繊維材料柱の高さを測定する測定部材16と
して、複数のフォトセル161を含む装置をその側方に
連携配置する。測定部材16ti目標値設定手段18を
含む制御装置17を介して、モータ制御手段191を含
むフィードローラ11.12の駆動モータ19と接続し
ている。下流側の装入シュート15の繊維量測定値に応
じてアナログ電気信号が発生し、クリアラ1のフィード
ローラ11.12の少なくとも1つを駆動する連続駆動
モータ19に対する制御自在な調整部材としてのモータ
調整手段19mに作用する。
Figure 1 shows, for example, clearer 1, condenser 2, finisher 3, and blower 4.9 atm! 1 shows a known mixed cotton/cleaned cotton/spread cotton equipment consisting of a feeding mechanism 5 and a card 6; As the clearer, for example, a complete set of trusses RV, RK, or FiR8 can be adopted. Receives supply from clearer IFi charging chute 7. That is, charging chute 7
The fiber material is taken off by two take-in rollers 8, 9 and fed to a feeding device consisting of a conveyor belt 10 and two feed rollers 11, 12. Feed rollers 11.12 feed the fiber material to the opening roller 13, the l# male material passes through a duct 14 to the Keno roller of the condenser 2 and then to the charging chute 15 of the finishing orcinnater 3, e.g. charging shoe) BS reach. A device including a plurality of photocells 161 is disposed on the side of the charging chute 15 as a measuring member 16 for measuring the height of the fiber material column. Measuring element 16ti is connected via a control device 17, which includes setpoint value setting means 18, to a drive motor 19 of feed roller 11.12, which includes motor control means 191. A motor as a controllable adjustment element for a continuous drive motor 19, which generates an analog electrical signal as a function of the fiber content measurement of the downstream charging chute 15 and drives at least one of the feed rollers 11, 12 of the clearer 1. It acts on the adjustment means 19m.

繊維材料は装入シュート15から2つのテーカインロー
ラ20.21及び搬送素子22を通って2つの74−ト
ローラ23.24に達し、この両フィードローラ23.
24により仕上げオーシナ3の開綿ロー225に供給さ
れる。繊維材料はこの開綿ローラから送風機4により空
気圧式搬送ダクト26に送られ、ラップ供給装置5の上
段補給シュート27に、さらに下段供給シュート28に
達する。供給シュート28の壁に電子圧力スイ。
The fiber material passes from the charging chute 15 through two take-in rollers 20.21 and a conveying element 22 to two 74-rollers 23.24, which feed rollers 23.24.
24, it is supplied to the opening row 225 of the finishing orthina 3. From this opening roller, the fiber material is conveyed by the blower 4 into a pneumatic conveying duct 26 and reaches an upper supply chute 27 of the wrap supply device 5 and then a lower supply chute 28. Electronic pressure switch on wall of supply chute 28.

チ29、例えばツリュツラ一式EDSを設置し、これを
目標値設定手段31を含む制御装置30を介して少なく
とも一方のフィードローラ23 、24のためのモータ
制御手段32a1&:含む駆動モータ32と接続する。
29, for example, a slippery set EDS is installed, and this is connected via a control device 30 including target value setting means 31 to a drive motor 32 including motor control means 32a1&: for at least one of the feed rollers 23, 24.

第2図では前記供給装置が開綿ローラ13(ビータ)K
pm相料を供給するためのフィードローラ33及びフィ
ードテーブル34を含む0図示しないが(第1図に示し
たものに対応する)開側手段からの電気信号が2つのモ
ータ制御装置36゜37、例えばSIMDREGと直列
接続している多連連動ポテンシオメータ35に達する。
In FIG. 2, the feeding device is a cotton opening roller 13 (beater) K.
Electric signals from the open side means (not shown) (corresponding to those shown in FIG. 1) include two motor control devices 36 and 37, including a feed roller 33 and a feed table 34 for supplying the PM phase material. For example, a multi-link potentiometer 35 connected in series with SIMDREG is reached.

モータ制御装@36.37とそれぞれ直列に、フィード
ローラ33、開綿ローラ13のための駆動モータ38゜
39がそれぞれ接続している。
Drive motors 38 and 39 for the feed roller 33 and the opening roller 13 are respectively connected in series with the motor control device @36, 37.

第3図はモータ制御手段36と直列に駆動モータ38が
接続し、これが開綿ローラ13と接続する一方、フィー
ドローラ33を駆動するイヤ40とも接続している実施
態様を示す。
FIG. 3 shows an embodiment in which a drive motor 38 is connected in series with the motor control means 36, which is connected to the opening roller 13 and also connected to the ear 40 which drives the feed roller 33.

第4図はモータ制御手段36と直列に駆動モータ38が
接続し、核駆動モータと直列にギヤ41が接続し、該ギ
ヤが開綿ローラ13及びフィードローラ33を駆動でき
るように構成した実施態様を示す。
FIG. 4 shows an embodiment in which a drive motor 38 is connected in series with the motor control means 36, a gear 41 is connected in series with the core drive motor, and the gear can drive the opening roller 13 and the feed roller 33. shows.

なお、ここにいう装置l1ftたけ装置群は貯蔵装置及
びオープナまたはクリアラだけでなく、混打綿設備中九
組込むことのできるすべての装(fまたは装置群をも意
味する。
It should be noted that the device group referred to herein means not only the storage device and the opener or clearer, but also all devices (f or device groups) that can be incorporated into the mixed batting equipment.

第5図Fi、直列に接続する複数の装#または装置群、
即ち、開俵機46 (BDT)、コンデンサ45(LV
S)、供給シ&−ドア (BS)、クリアラ1(RN)
、コンデンサ2(LvS)、供給シ& −ト15(BS
 )、仕上げオーシナ(FO)、カード給綿装置5 (
FBK)及びカード6(DK)から成る混打綿ラインを
略示する。装置または装置群の電、気的接続は図示の通
シである。第6図にさらに詳しく図解するように、例え
ば装置群2.15.3の範囲内で、供給シュート15に
は測定部材16を、仕上げオー!す3には調整部材(駆
動モータ32)を連携させる。ほかに、(第6図に示す
)制御装置のための目標値設定手段をも設ける。
Figure 5 Fi, a plurality of devices or groups of devices connected in series,
That is, bale opening machine 46 (BDT), capacitor 45 (LV
S), supply door (BS), clearer 1 (RN)
, capacitor 2 (LvS), supply seat 15 (BS
), finishing orshina (FO), card cotton feeding device 5 (
A mixed cotton line consisting of card 6 (FBK) and card 6 (DK) is schematically shown. The electrical connections of the device or devices are as shown in the drawings. As illustrated in more detail in FIG. 6, for example, within the device group 2.15.3, a measuring element 16 is placed in the feed chute 15 in the finishing orifice. An adjustment member (drive motor 32) is linked to the adjustment member (drive motor 32). In addition, setpoint value setting means for the control device (as shown in FIG. 6) are also provided.

第6図ではカード6がド、7丁駆動装置に信号発生器4
0を具備し、この発生器から発生する電圧はカードのド
ツファM転数または生産速度を示す測定値となる。この
信号は目標値設定手段42を含む制御装置41に供給さ
れる。制御装置41はFBKフィードローラ27mのモ
ータ制御手段43a及び制御自在々駆動モータ43と接
続している。このように構成すれば、カードの所定生産
速度に応じてフィードローラ27mを調定(基本調定)
することができる、カードの生産速度は開俵機46、例
えばツリュッラー・ブレンドマートBDTにおけるドツ
フィングH&SSの目安ともなり得る(基本・調定)。
In Fig. 6, the card 6 is card 6, and the signal generator 4
0, and the voltage produced by this generator is a measure of the card's dosing speed or production rate. This signal is supplied to a control device 41 including target value setting means 42. The control device 41 is connected to a motor control means 43a and a controllable drive motor 43 of the FBK feed roller 27m. With this configuration, the feed roller 27m can be adjusted according to the predetermined card production speed (basic adjustment).
The card production speed that can be used can also be used as a guideline for doffing H&SS in the bale opening machine 46, for example, Truller Blend Mart BDT (basic/adjustment).

このため、発生器4oからの生産速度信号を開俵機46
の制御回路47に供給して#r】1賂で演舞する。オた
、装入シュート15の装入高に応じてカードから来る繊
維材料基本調定ドツフィング量を開俵機46において補
正することも可能である。さらに、開俵機46の制御回
路47からカードにおける目標生産値を補正することも
できる。このことは繊維俵48に対するドツフィング部
材46mに常時過剰な負荷がかかっていることを制御回
路47が検知する場合に%に有意義である。制御回路4
7は開俵機46の駆動モータ46b(移動用駆動手段)
と電気的に接続しているだけでなく、ドツフィング部材
46mの高さを調整する(図示しない)駆動モータとも
電気的に接続している。
For this reason, the production speed signal from the generator 4o is transmitted to the bale opening machine 46.
The signal is supplied to the control circuit 47 of #r] and performed for a reward of 1. Additionally, it is also possible to correct the amount of fiber material basic adjustment doffing coming from the card in the bale opening machine 46 depending on the charging height of the charging chute 15. Furthermore, the target production value on the card can be corrected from the control circuit 47 of the bale opening machine 46. This is particularly significant if the control circuit 47 detects that the dotting member 46m for the fiber bale 48 is constantly being overloaded. Control circuit 4
7 is a drive motor 46b (moving drive means) of the bale opening machine 46
In addition to being electrically connected to the dotting member 46m, it is also electrically connected to a drive motor (not shown) that adjusts the height of the dotting member 46m.

制御装置$t17,30.41に制御演算回路から所与
の目標値を与えることも可能である。
It is also possible to give a given target value to the control device $t17, 30.41 from the control calculation circuit.

先行装置、例えばクリアラ1及び開俵機46において必
要条件が満たされているにもかかわらず装入シュート1
5中の材料が常時不足していることが該装入シ、−)1
5において測定部材16によって検知された場合、この
検知結果をカード6に送信してカードの生産速度を低下
させることができる。
Charging chute 1 despite the requirements being met in preceding equipment, e.g. clearer 1 and bale opener 46.
The fact that there is always a shortage of materials in 5 indicates that there is a constant shortage of materials in the charging system, -) 1
5, this detection result can be transmitted to the card 6 to reduce the production speed of the card.

第7図は単一装置制御手段と装置群制御手段(例えばL
VS 、 BE 、 SR8、RNまたはMTV 、M
PM ) (+)相互作用を略示する。第7図において
、Axlfloは浄綿部flj、MPMはマルチミキサ
、MTv#i、移送ファン、BEFi供給装置、SR8
#′iステッグクリャラをそれぞれ示し、その他の記号
は第5図で酸1明した@黄と同じである。両側a装置は
集中制御装置がなくても、あるいけ上位制御ユニット4
9(例えば制御コンピュータ)の作用を借りなくても互
いに協働してできるだけ切れ目のない材料流を実現する
ことができる。上位制御ユニットを利用する場合には、
制N−4から設備全体を用途に応じてプログラムするこ
ともできる。特定の装置ラインで交替する線維材料部分
を処理する場合(例えば綿、スフなど)、材料の経路、
即ち、(材料の部分に応じて)浄綿部など迂回してもよ
いか、またはこの浄綿部などを自動的に作動させてもよ
いかどうかを制御コンピュータによって判断することが
できる。(繊維処理技術または装置の種類に関する)各
材料部分別の値を算出し、記憶させておいて、必要に応
じてこれを再生することができる。所要の生産量が達成
されるようにカード数をあらかじめ設定することも可能
である。制御コンピュータが予定に従って操作者に材料
処理を提示することもできる。
FIG. 7 shows a single device control means and a device group control means (for example, L
VS, BE, SR8, RN or MTV, M
PM ) (+) interaction is schematically shown. In Fig. 7, Axlflo is the cotton cleaning section flj, MPM is the multi-mixer, MTv#i, transfer fan, BEFi supply device, and SR8.
#'i indicates Steg Cleary, respectively, and the other symbols are the same as @yellow, which is acid 1 light in Figure 5. Devices on both sides can be connected to the upper control unit 4 even without a central control device.
9 (for example, a control computer), they can cooperate with each other to realize a material flow that is as seamless as possible. When using a host control unit,
The entire facility can also be programmed from Control N-4 according to the application. When processing alternating fibrous material parts in a particular equipment line (e.g. cotton, stapler, etc.), the material path,
That is, the control computer can determine (depending on the part of the material) whether the cleaning section, etc. may be bypassed, or whether the cleaning section, etc., may be activated automatically. The values for each material part (regarding the type of fiber processing technology or equipment) can be calculated, stored and regenerated as required. It is also possible to preset the number of cards so that the required production volume is achieved. The control computer can also present material processing to the operator according to a schedule.

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

第1図は浄M/開綿装胃における本発明の制御装置を略
示する構成図、第2図 〜□輯4図はフィードローラ及
び開綿ローラの回転数制御装置の種々の実施態様を略示
する略示平面図、第5図は紡績用予備処理設備の制御/
調整装置の電気回路構成を略示するブロックダイヤグラ
ム、第6図は特定の混打綿/梳綿様の構成図及び連携電
気回路を略示するプロ、クダイヤグラム、第7図は制御
コンピュータを含む電気回路構成を略示するブロックダ
イヤグラムである。 1・・・クリアラ、3・・・仕上げオーブナ、6・・・
カード、7.15.27・・・貯蔵装置、11.12:
23゜24:33・・・フィードローラ、13.25・
・・開綿ローラ、16.29・・・繊維量測定部材、1
7.30・・・・制御手段、19.32.38.39・
・・駆動モータ、19畠、32龜、36.37・・・モ
ータ制御手段、40.41・・・イヤー。 以下余白
Figure 1 is a block diagram schematically illustrating the control device of the present invention for cleaning M/stomach filling, and Figures 2 to 4 show various embodiments of the rotation speed control device for the feed roller and the cotton opening roller. FIG. 5 is a schematic plan view showing the control/control of the spinning pretreatment equipment.
FIG. 6 is a block diagram schematically illustrating the electrical circuit configuration of the regulating device; FIG. 6 is a block diagram schematically illustrating the configuration of a specific mixed cotton/carding type and a professional block diagram schematically illustrating the associated electrical circuit; FIG. 7 includes a control computer; 1 is a block diagram schematically showing an electric circuit configuration. 1... Clearer, 3... Finishing ovener, 6...
Card, 7.15.27...Storage device, 11.12:
23゜24:33...Feed roller, 13.25・
... Cotton opening roller, 16.29 ... Fiber amount measuring member, 1
7.30... Control means, 19.32.38.39.
... Drive motor, 19 Hatake, 32 No. 36.37... Motor control means, 40.41... Year. Margin below

Claims (1)

【特許請求の範囲】 1、紡績用予備処理設備中の装着、例えば紡瞭用締維の
オーシナ及び/またけクリアラの下流炉貯H,装flI
々とにおける繊維1の測定値を得て、これを電気信号に
変換し、この信号に応じて峠記装笥への線維供給量を変
化させる調整部材に前記電気信号を供給するようにした
前記装置への繊維供給量制御方法において、繊維量測定
値からアナログ電気信号を発生させ、装置、例えばオー
プナ及び/またはクリアラの少なくとも一方のフィード
ロ〜うの連N、駆動手段をv!4整する制御自在な調整
部材に前記信号を作用させることを41!FWIとする
繊維供給量制御方法。 2 信号がフィードローラ及び少なくとも1つの開綿ロ
ーラをそれぞれ駆動する制御自在な駆動手段の回転数を
互いに比例関係に変化させることを特徴とする特許請求
の範囲第1項に記載の方法。 3 特許請求の範囲t$1項または第2項記載の方法を
実施する装置であって、繊維量測定部材(16,29)
[、少なくとも1つのフィードローラ(11,12:2
3.24:33)の制御自在な駆動手段(モータ制御手
段19 m + 32 a : 36 +37;駆動モ
ータ19.32:38)と接続している制御手段(17
,30)を直列接続したことを特徴とする繊維供給量制
御装置。 4、繊維量測定部材(16,29)に、少なくとも1つ
の開綿ローラ(13,25)の制御自在な駆動手段と接
続している制御手段(17,3())を直列接続したこ
とを特徴とする特許請求の範囲第3項に記載の装置。 5、 制御手段を、フィードローラ(11,12:、、
2124:33)及び開綿ローラ(13,25)K共通
の制御自在な駆動モータ(3B)と接続した  ゛こと
を特徴とする特許請求の範囲第3項または第4項に記載
の装置。 6 制御自在な駆動モータ(38)に少なくとも1つの
ギヤ(40,41)を直列接続したことを特徴とする特
許請求の範囲第3項から第5項才での何れか1項に記載
の装!。 7、制御手段(17,30)を、フィードローラ(11
,12:23.24:33)及び開綿ローラ(13,2
5)とそれぞれに連携の個別の制御自在な駆動モータ(
38,39)と接続したことを特徴とする特許請求の範
囲第3項から第4項までの倒れか1項に記載の装置。
[Scope of Claims] 1. Installation in pre-treatment equipment for spinning, for example downstream furnace storage H, installation flI of orshina and/or straddle clearer for spinning fibers
Obtaining the measured value of the fiber 1 at each point, converting the measured value into an electric signal, and supplying the electric signal to an adjusting member that changes the amount of fiber supplied to the tougeki sash according to this signal. In a method for controlling the amount of fiber fed into a device, an analog electrical signal is generated from the fiber amount measurement to cause the device, e.g. 41! Applying the signal to a controllable adjustment member that adjusts A fiber supply amount control method using FWI. 2. A method according to claim 1, characterized in that the signals cause the rotational speeds of controllable drive means for respectively driving the feed roller and the at least one opening roller to be varied in proportion to each other. 3. An apparatus for carrying out the method according to claim 1 or 2, comprising a fiber amount measuring member (16, 29).
[, at least one feed roller (11, 12:2
The control means (17
, 30) are connected in series. 4. The fiber amount measuring member (16, 29) is connected in series with the control means (17, 3()) connected to the controllable drive means of at least one opening roller (13, 25). Apparatus according to claim 3, characterized in that: 5. The control means is connected to the feed rollers (11, 12: , ,
2124:33) and the cotton opening roller (13, 25) K are connected to a common controllable drive motor (3B). 6. The device according to any one of claims 3 to 5, characterized in that at least one gear (40, 41) is connected in series to a controllable drive motor (38). ! . 7. Control means (17, 30), feed roller (11
, 12:23.24:33) and opening roller (13, 2
5) and individually controllable drive motors (
38, 39). The device according to claim 1, characterized in that the device is connected to a device (38, 39).
JP5175883A 1982-04-01 1983-03-29 Method and apparatus for controlling apparatus contained in spinning preliminary treating installation Granted JPS58197319A (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
DE3212148.2 1982-04-01
DE3212148 1982-04-01
DE3244619.5 1982-12-02

Publications (2)

Publication Number Publication Date
JPS58197319A true JPS58197319A (en) 1983-11-17
JPH0413451B2 JPH0413451B2 (en) 1992-03-09

Family

ID=6159990

Family Applications (1)

Application Number Title Priority Date Filing Date
JP5175883A Granted JPS58197319A (en) 1982-04-01 1983-03-29 Method and apparatus for controlling apparatus contained in spinning preliminary treating installation

Country Status (2)

Country Link
JP (1) JPS58197319A (en)
DE (1) DE3244619C2 (en)

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DE3513295C2 (en) * 1985-04-13 1998-05-14 Truetzschler Gmbh & Co Kg Device for removing bales of fiber
IT8620811A0 (en) * 1985-09-11 1986-06-17 Monchengladbach Rep Fed German ADJUSTMENT AND CONTROL DEVICE OF THE INTRODUCER CYLINDER OF A FLAKE FEEDER.
DE3617527A1 (en) * 1986-05-24 1987-11-26 Truetzschler & Co DEVICE FOR FEEDING FIBER MATERIAL MACHINERY, e.g. CARDING, CRAWLING, STAMPING MACHINES OR THE LIKE
DE3617526A1 (en) * 1986-05-24 1987-11-26 Truetzschler & Co METHOD AND DEVICE FOR SUPPLYING A NUMBER OF CARDS, CRAWLS OR THE LIKE
DE3811332A1 (en) * 1988-04-02 1989-10-12 Truetzschler & Co DEVICE IN SPINNING PREPARATION FOR DETECTING THE QUANTITY OF FIBER MATERIAL e.g. FROM COTTON, CHEMICAL FIBERS AND THE LIKE THOSE THROUGH A LINE, CHANNEL OD. DGL. WILL BE PROMOTED
DE3924779A1 (en) * 1989-07-26 1991-01-31 Rieter Ag Maschf METHOD AND DEVICE FOR OPERATING A SPINNING ROPE
DE4018803A1 (en) * 1990-06-12 1991-12-19 Rieter Ag Maschf METHOD AND DEVICE FOR REGULATING AN OPENING PROCESS, EXAMPLE ON A CARD
DE4219777A1 (en) * 1992-06-17 1993-12-23 Rieter Ingolstadt Spinnerei Method and device for signal analysis of a regulating system
DE19630018A1 (en) * 1996-07-25 1998-01-29 Rieter Ag Maschf Assembly especially for use in processing cotton fibre materials
CH706658A1 (en) * 2012-06-29 2013-12-31 Rieter Ag Maschf Method and apparatus for controlling the supply of fiber to a carding machine.
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Publication number Priority date Publication date Assignee Title
JPS62110925A (en) * 1985-09-11 1987-05-22 ツリユツラ− ゲゼルシヤフト ミツト ベシユレンクテル ハフツング ウント コンパニ− コマンデイトゲゼルシヤフト Feed roller adjusting/controlling apparatus in flock feeder

Also Published As

Publication number Publication date
DE3244619A1 (en) 1983-10-06
JPH0413451B2 (en) 1992-03-09
DE3244619C2 (en) 1994-07-07

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