JPS5917485B2 - Core wire accumulator for enamel printing machine - Google Patents

Core wire accumulator for enamel printing machine

Info

Publication number
JPS5917485B2
JPS5917485B2 JP13634180A JP13634180A JPS5917485B2 JP S5917485 B2 JPS5917485 B2 JP S5917485B2 JP 13634180 A JP13634180 A JP 13634180A JP 13634180 A JP13634180 A JP 13634180A JP S5917485 B2 JPS5917485 B2 JP S5917485B2
Authority
JP
Japan
Prior art keywords
grooved guide
core wire
supply drum
guide pulley
printing machine
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired
Application number
JP13634180A
Other languages
Japanese (ja)
Other versions
JPS5761213A (en
Inventor
富夫 尾形
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.)
SWCC Corp
Original Assignee
Showa Electric Wire and Cable Co
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 Showa Electric Wire and Cable Co filed Critical Showa Electric Wire and Cable Co
Priority to JP13634180A priority Critical patent/JPS5917485B2/en
Publication of JPS5761213A publication Critical patent/JPS5761213A/en
Publication of JPS5917485B2 publication Critical patent/JPS5917485B2/en
Expired legal-status Critical Current

Links

Landscapes

  • Application Of Or Painting With Fluid Materials (AREA)
  • Processes Specially Adapted For Manufacturing Cables (AREA)

Description

【発明の詳細な説明】 本発明はエナメル焼付機用芯線アキュムレータに係る。[Detailed description of the invention] The present invention relates to a core wire accumulator for an enamel printing machine.

エナメル焼付機は多数条の芯線を並列走行させ、芯線の
焼付機内走行中にエナメルの塗布、焼付を行うものであ
り、焼付機の入口側には前記多数条の芯線を供給する芯
線数だけのサプライドラムが5 配置されている。
An enamel baking machine runs a large number of core wires in parallel, and applies and bakes enamel while the core wires are running inside the baking machine.On the inlet side of the baking machine, there are as many core wires as the number of core wires to be supplied with the multiple core wires. Five supply drums are arranged.

而して、サプライドラムの芯線がなくなつた場合には新
規のサプライドラムと交換し、交換前のドラム土の残線
端末と新規のドラムの芯線とを接続することが必要とな
るが、エナメル焼付作業の10線速はかなり大であるた
め、前記の接続は速やかに行う必要があつた。
Therefore, if the core wire of the supply drum runs out, it is necessary to replace it with a new supply drum and connect the remaining wire end of the drum soil before replacement to the core wire of the new drum. Since the printing speed of 10 lines is quite high, it was necessary to make the above connection quickly.

上記のような問題を解決するには、焼付機入口に芯線の
アキュムレータを設け、接続をアキユムレートされた芯
線が焼付機内に取込まれつつある15間に行えばよいこ
とは、他の種々の製造作業において周知であり現に盛ん
に採用されている所であるが、多数条の芯線を取扱うエ
ナメル焼付機において、多数条の芯線のそれぞれに対し
アキュムレータを設けることは、設備費が高くなり、ま
た設20置場所力伏となることから実際上困難で、現在
芯線アキュムレータを附設したエナメル焼付機は知られ
ていない。
In order to solve the above-mentioned problems, a core wire accumulator should be provided at the inlet of the printing machine, and connections should be made during the 15-minute period when the accumulated core wires are being taken into the printing machine. Although it is well known in the field of work and is currently widely used, installing an accumulator for each of the multiple core wires in an enamel printing machine that handles multiple core wires increases the equipment cost and requires additional equipment. This is difficult in practice because it requires 20 places to put down the force, and currently there are no known enamel printing machines equipped with a core wire accumulator.

本発明は上記の事情に基きなされたもので、エナメル焼
付機に供給される芯線通路の一つに対し25てのみ設け
ることにより、すべての芯線のア牛ユムレートをなし得
、設備費少くしかも設置場所が少くてすむエナメル焼付
機用芯線アキュムレータを得ることを目的としている。
The present invention has been made based on the above circumstances, and by providing only 25 core wires for one of the core wire passages supplied to the enamel printing machine, it is possible to achieve a uniform rate for all core wires, and to reduce the equipment cost and installation. The object of the present invention is to obtain a core wire accumulator for an enamel printing machine that requires less space.

本発明は焼付機に供給されている芯線中の2以30土が
、同時に接続を必要とするようになることはまれである
ことに着目してなされたもので、供給される芯線通路の
特定の一つに対向してアキュムレータ押出部材を設け、
芯線接続が必要となつた際その芯線が前記特定の一つの
通路に位置する如35く、芯線の列を移動させるように
して前記目的を達成している。
The present invention was made based on the fact that it is rare that 2 to 30 core wires in the core wire supplied to the baking machine require connection at the same time. an accumulator extrusion member is provided opposite to one of the
This objective is achieved by moving the rows of cores so that when a core connection is required, the cores are located in said one particular passage.

以下、図面につき本発明の詳細を説明する。The invention will be explained in detail below with reference to the drawings.

第1図において、1a〜1eとして5箇のみを示した多
数のサプライドラムから引出された芯線2a〜2eは、
ガイドプ一り3a〜3eにおいて力向変換し、第2図に
詳細を示した可動台4上に軸心を一致させて設置した溝
付ガイドプ一り5a〜5eにそれぞれかけ渡され、焼付
機6の入口に設けた溝付ガイドプ一り7a〜7eを経由
して焼付機6内に取込まれている。可動台4はモータ8
により,駆動される送ねじ9によつて、溝付ガイドプ一
り5a〜5eの軸力向に変位可能とされ、溝付ガイドプ
一り5a〜5eの設置間隔の任意整数倍の送りが与えら
れるようになつている。
In FIG. 1, core wires 2a to 2e drawn out from a large number of supply drums, only five of which are shown as 1a to 1e, are as follows:
The direction of the force is changed in the guide plates 3a to 3e, and the force is passed over the grooved guide plates 5a to 5e, which are installed on the movable base 4 with their axes aligned with each other, as shown in detail in FIG. It is taken into the printing machine 6 via grooved guide rods 7a to 7e provided at the entrance of the printer. The movable table 4 has a motor 8
Accordingly, the driven feed screw 9 can displace the grooved guides 5a to 5e in the axial force direction, and a feed of an arbitrary integer multiple of the installation interval of the grooved guides 5a to 5e is given. It's becoming like that.

また、可動台4が正規位置、すなわち、溝付ガイドプ一
り5a〜5eと同7a〜7eの対応するものが同一平面
上にある位置に位置している時の、或る特定の一つの芯
線例えば2eの通路に対向して、その一力の側に溝付ガ
イドプ一り5eの芯線出口側に溝付ガイドプ一り9e,
10eを2段に設置し、同じく前記通路に対向してその
他側にはガイドプ一り5eと同9eとの間、溝付ガイド
プ一り9eと同10eとの間にそれぞれ位置してそれら
の各溝付ガイドプ一りの軸と垂直力向の出力軸11a,
12aをそなえたエアシリンダ11,12がそれぞれ設
けられ、各出力軸先端には溝付ガイドプ一り13e,1
4eがそれぞれ前記通路に対向して設けられている。
Also, when the movable base 4 is in the normal position, that is, in the position where the grooved guide plates 5a to 5e and the corresponding ones of the grooved guide plates 7a to 7e are on the same plane, a certain one core wire For example, facing the passage 2e, there is one grooved guide plate 9e on the one force side of the grooved guide plate 5e, and one grooved guide plate 9e on the core wire outlet side.
10e are installed in two tiers, and on the other side facing the passage, there are grooved guide plates 5e and 9e, and grooved guide plates 9e and 10e, respectively. The shaft of one grooved guide plate and the output shaft 11a in the perpendicular force direction,
Air cylinders 11 and 12 each having a diameter 12a are provided, and a grooved guide plate 13e and 1 is provided at the tip of each output shaft.
4e are provided facing each of the passages.

上記構成の本発明アキユムレータは次の如くして使用さ
れる。
The accumulator of the present invention having the above configuration is used in the following manner.

すなわち、今、芯線2eにおいて新規ドラムの芯線との
接続の必要が生じたとする。
That is, it is now assumed that the core wire 2e needs to be connected to the core wire of a new drum.

この時は、可動台4は定位置に位置させたままエアシリ
ンダ11,12を附勢し、それらの出力軸11a,12
aを突出させる。すると、各出力軸端に設けた溝付ガイ
ドプ一り13e,14eは溝付ガイドプ一り5e,9e
間の芯線2e1溝付ガイドプーリ9e,10e間の芯線
2eをそれぞれ係合させて、溝付ガイドプ一り5e,9
e間、同9e,10e間から突出しループを形成させる
。第1図においてこれらのループはRl,R2で示され
ている。ここでエアシリンダ11,12を逆力向に附勢
しそれらの出力軸を旧位置に戻せば、前記ループRl,
R2が消失するまでの間は、芯線2eのドラム側の端は
不動であり、その間に余裕をもつて新規ドラム土の芯線
との接続を行うことができる。また、エアシリンダ11
,12に対向する通路上の芯線以外の芯線、例えば芯線
2cにおいて接続を行う必要が生じた場合には、可動台
4を溝付ガイドプ一り5a〜5e配列ピツチの2倍送り
、芯線2cをエアシリンダ11,12に対向させる。こ
の後は前記と同様にしてループを形成することができる
。±記のように本発明によれば、各エアシリンダ11,
12の出力軸突出量の約4倍の長さの芯線をアキユムレ
ートできる。
At this time, the air cylinders 11 and 12 are energized while the movable base 4 is kept in a fixed position, and the output shafts 11a and 12 of the movable base 4 are energized.
Make a stick out. Then, the grooved guide plates 13e and 14e provided at each output shaft end become the grooved guide plates 5e and 9e.
By engaging the core wires 2e between the grooved guide pulleys 9e and 10e, respectively, the grooved guide pulleys 5e and 9
A protruding loop is formed between e and between 9e and 10e. In FIG. 1 these loops are designated R1, R2. Here, if the air cylinders 11 and 12 are energized in the opposite force direction and their output shafts are returned to their old positions, the loop Rl,
Until R2 disappears, the end of the core wire 2e on the drum side remains stationary, and connection with the core wire of the new drum soil can be made with sufficient time during this period. In addition, the air cylinder 11
, 12, if it is necessary to connect a core wire other than the core wire on the passage facing the core wires 2c, for example, the core wire 2c, move the movable base 4 through the grooved guide plate 5a to 5e twice the array pitch, and connect the core wire 2c. The air cylinders 11 and 12 are opposed to each other. After this, a loop can be formed in the same manner as described above. According to the present invention, each air cylinder 11,
It is possible to accumulate core wires approximately 4 times the length of the output shaft protrusion of 12 output shafts.

また、本発明においては、多数の芯線のすべてに対して
芯線を押出す押出部材を設けるのではなく、単一の芯線
通路に対して設けているので、設備費、設置場所共に最
小限ですむ。なお、本発明は上記実施例のみに限定され
ない。
In addition, in the present invention, the extrusion member for extruding the core wire is not provided for all of the large number of core wires, but is provided for a single core wire passage, so equipment costs and installation space can be minimized. . Note that the present invention is not limited to the above embodiments.

例えば、芯線の押出しを行う押出部材は例示のエアシリ
ンダにかえ、適宜電気的、機械的駆動手段をそなえるも
のとしてもよい。また、押出部材のストロークによつて
は、例示の如く2箇設けることなく、1箇としてもよい
For example, the extrusion member for extruding the core wire may be equipped with appropriate electrical or mechanical driving means instead of the illustrated air cylinder. Further, depending on the stroke of the extrusion member, there may be one instead of two as shown in the example.

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

第1図は本発明一実施例の正面図、第2図はその要部の
平面図である。 1a〜1e・・・・・・サプライドラム、2a〜2e・
・・・・・芯線、4・・・・・・可動台、5a〜5e,
7a〜7e,9e,10e,13e,14e・・・・・
・溝付ガイドプーり、11,12・・・・・・エアシリ
ンダ、11a,12a・・・・・・出力軸。
FIG. 1 is a front view of an embodiment of the present invention, and FIG. 2 is a plan view of the main parts thereof. 1a~1e...Supply drum, 2a~2e・
... Core wire, 4 ... Movable base, 5a to 5e,
7a~7e, 9e, 10e, 13e, 14e...
- Grooved guide pulley, 11, 12...Air cylinder, 11a, 12a...Output shaft.

Claims (1)

【特許請求の範囲】[Claims] 1 エナメル焼付機の入口に設けた複数個の溝付ガイド
プーリおよびサプライドラム側に設けた前記と同数の溝
付ガイドプーリにより多数の芯線を並設配置に整列させ
て前記エナメル焼付機に供給するものにおいて、前記サ
プライドラム側の溝付ガイドプーリをその軸方向に変位
可能な可動台上に設置し、エナメル焼付機入口およびサ
プライドラム側の溝付ガイドプーリの中間には、芯線の
列に対しサプライドラム側の溝付ガイドプーリと同一の
側に前記各溝付ガイドプーリと同数の位置固定の溝付ガ
イドプーリを少くとも1組設け、この1組の溝付ガイド
プーリとサプライドラム側の溝付ガイドプーリとの中間
には芯線の列に対しサプライドラム側の溝付ガイドプー
リとは反対側に、出力軸を前記可動台が定位置にある時
の特定の芯線の通路に対向させ、出力軸先端に各溝付ガ
イドプーリと軸を平行にした溝付ガイドプーリをそなえ
たアキュムレータ押出部材を設けたことを特徴とするエ
ナメル焼付機の芯線アキュムレータ。
1 A large number of core wires are arranged in a parallel arrangement using a plurality of grooved guide pulleys provided at the entrance of the enamel printing machine and the same number of grooved guide pulleys provided on the supply drum side, and are supplied to the enamel printing machine. The grooved guide pulley on the supply drum side is installed on a movable table that can be displaced in the axial direction, and a grooved guide pulley on the supply drum side is installed between the entrance of the enamel printing machine and the grooved guide pulley on the supply drum side for the row of core wires. At least one set of grooved guide pulleys whose positions are fixed in the same number as each of the grooved guide pulleys is provided on the same side as the grooved guide pulley on the supply drum side, and this set of grooved guide pulleys and the groove on the supply drum side The grooved guide pulley on the supply drum side is located between the grooved guide pulley and the output shaft on the opposite side of the core wire row from the grooved guide pulley on the supply drum side. A core wire accumulator for an enamel baking machine, characterized in that an accumulator extrusion member is provided at the tip of the shaft with a grooved guide pulley whose shaft is parallel to each grooved guide pulley.
JP13634180A 1980-09-30 1980-09-30 Core wire accumulator for enamel printing machine Expired JPS5917485B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP13634180A JPS5917485B2 (en) 1980-09-30 1980-09-30 Core wire accumulator for enamel printing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP13634180A JPS5917485B2 (en) 1980-09-30 1980-09-30 Core wire accumulator for enamel printing machine

Publications (2)

Publication Number Publication Date
JPS5761213A JPS5761213A (en) 1982-04-13
JPS5917485B2 true JPS5917485B2 (en) 1984-04-21

Family

ID=15172931

Family Applications (1)

Application Number Title Priority Date Filing Date
JP13634180A Expired JPS5917485B2 (en) 1980-09-30 1980-09-30 Core wire accumulator for enamel printing machine

Country Status (1)

Country Link
JP (1) JPS5917485B2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10773930B2 (en) 2016-07-27 2020-09-15 Jeong-Hoon SHIN Home-delivered article loading device for drone

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10773930B2 (en) 2016-07-27 2020-09-15 Jeong-Hoon SHIN Home-delivered article loading device for drone

Also Published As

Publication number Publication date
JPS5761213A (en) 1982-04-13

Similar Documents

Publication Publication Date Title
DE2118775C2 (en) Open-end spinning machine
GB1363974A (en) Strand delivery means
CN107243515B (en) High-efficiency wire drawing and annealing production line for cables
JPS5917485B2 (en) Core wire accumulator for enamel printing machine
WO2006045500A1 (en) Electric motor and a textile machine comprising ar least one electric motor
DE102007040184A1 (en) Textile machine comprises a yarn sensor integrated in an electronic unit and an individual control unit to evaluate measuring signals from the sensor and to control actuators at the operating site depending on the measuring signals
EP0202253B1 (en) Tangential belt control for spinning loom or twister
US2981049A (en) Apparatus for making multi-unit cable
EP1479800A3 (en) Driving control system for spinning machine
ES2055347T3 (en) PROCEDURE AND APPARATUS FOR SPINNING TWO-COMPONENT FILAMENTS AND PRODUCTS WITH THEM.
DE4004524C2 (en)
DE910692C (en) Process for the mechanical production of an overlapping single-layer three-phase winding with coils of the same width for electrical machines with any number of poles
DE2338758A1 (en) DEVICE FOR STARTING, DRIVING AND STOPPING A SPINDLESS FINE SPINNING MACHINE
US4434608A (en) Method and an apparatus for manufacturing strands from wires or ropes from strands
CN219778583U (en) Multi-bobbin strander for production cables
DE1665295A1 (en) Method and device for the production of stranded cables according to the high-speed tension-spiral system
DE1510063C (en) High-speed stranding machine
CN210039922U (en) Multi-iron-core continuous winding equipment
EP0431244A1 (en) Stranding machine for the continuous stranding of electrical cables and lines
DE2228202A1 (en) Single motor drive of a rotatable clamping sleeve for winding devices
CN217378151U (en) High-efficient warper of simple operation
JPS5954116A (en) Device for forming cable core unit
CN216889439U (en) Cable conveying device for power communication
DE2660026C2 (en) Method and device for the production, texturing and winding of glass threads
DE10207086A1 (en) Textile texturing machine, has individual thread feed with frequency converter regulation of motor drive at work station