JPH0638669Y2 - Glue machine for glue machine - Google Patents
Glue machine for glue machineInfo
- Publication number
- JPH0638669Y2 JPH0638669Y2 JP1989010791U JP1079189U JPH0638669Y2 JP H0638669 Y2 JPH0638669 Y2 JP H0638669Y2 JP 1989010791 U JP1989010791 U JP 1989010791U JP 1079189 U JP1079189 U JP 1079189U JP H0638669 Y2 JPH0638669 Y2 JP H0638669Y2
- Authority
- JP
- Japan
- Prior art keywords
- glue
- roll
- sheet
- machine
- glue 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 - Lifetime
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B05—SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05C—APPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05C1/00—Apparatus in which liquid or other fluent material is applied to the surface of the work by contact with a member carrying the liquid or other fluent material, e.g. a porous member loaded with a liquid to be applied as a coating
- B05C1/04—Apparatus in which liquid or other fluent material is applied to the surface of the work by contact with a member carrying the liquid or other fluent material, e.g. a porous member loaded with a liquid to be applied as a coating for applying liquid or other fluent material to work of indefinite length
- B05C1/08—Apparatus in which liquid or other fluent material is applied to the surface of the work by contact with a member carrying the liquid or other fluent material, e.g. a porous member loaded with a liquid to be applied as a coating for applying liquid or other fluent material to work of indefinite length using a roller or other rotating member which contacts the work along a generating line
- B05C1/0821—Apparatus in which liquid or other fluent material is applied to the surface of the work by contact with a member carrying the liquid or other fluent material, e.g. a porous member loaded with a liquid to be applied as a coating for applying liquid or other fluent material to work of indefinite length using a roller or other rotating member which contacts the work along a generating line characterised by driving means for rollers or work
Description
【考案の詳細な説明】 (産業上の利用分野) 本考案は,コルゲートマシンに設置するグルーマシン用
糊付装置に関するものである。DETAILED DESCRIPTION OF THE INVENTION (Industrial field of application) The present invention relates to a gluing device for a glue machine installed in a corrugated machine.
(従来の技術) グルーマシン用糊付装置の従来例を第2図乃至第4図に
示し,コルゲートマシンにおけるグルーマシンとダブル
フエーサ装置との従来例を第5図に示した。(Prior Art) A conventional example of a glue machine gluing machine is shown in FIGS. 2 to 4, and a conventional example of a glue machine and a double facer apparatus in a corrugated machine is shown in FIG.
先ず第5図によりダブルフエーサ装置を説明すると,同
ダブルフエーサ装置がヒーイイングパート(13)とクー
リングパート(14)とにより構成されており,前工程の
シングルフエーサ(図示せず)で作られた片面段ボール
シート(1)と別経路を経て送り込まれたライナ(15)
とが貼り合わされて,両面段ボールシート(5)が製造
される。上記ヒーテイングパート(13)は,プレヒート
部(16)とヒーテイングボツクス(熱板部)(17)とキ
ヤンバスベルト部(18)と加圧部(19)等とにより構成
されている。また上記クーリングパート(14)は,搬送
ベルト部(20)とキヤンバスベルト部(18)と加圧部
(21)等とにより構成されており,前工程のシングルフ
エーサで作られた片面段ボールシート(1)は,グルー
マシン(3)において山形段頂部へ糊(澱粉糊)(2)
が塗布されて,下流側のダブルフエーサ・ヒーテイング
パート(13)へ移送される。一方,ライナ(15)は,プ
レヒート部(16)で予熱された後,同様に下流側のダブ
ルフエーサ・ヒーテイングパート(13)へ移送される。
またこのヒーテイングパート(13)のシート導入口部で
合流した片面段ボールシート(1)とライナ(15)と
は,キヤンバスベルト(18),即ち,モータ(22)で駆
動されるロール(23)により走行されるキヤンバスベル
ト部(18)とその下方のヒーテイングボツクス(熱板
部)(17)とにより挟持され,さらにウエイトロール
(24)により加圧された状態で下流側のクーリングパー
ト(14)へ搬送される。このクーリングパート(14)
は,貼合形成された両面段ボールシート(5)を上下に
位置したキヤンバスベルト部(18)と搬送ベルト部(2
0)とにより挟持し,加圧部(21)により適度の押圧力
を加えた状態で搬送することにより,片面段ボールシー
ト(1)とライナ(15)との接着状態をより確実にする
とともに,冷却に際して起こり得る板の反り変形を修正
する。First, the double-facer device will be described with reference to FIG. 5. The double-facer device is composed of a heating part (13) and a cooling part (14), and is made of a single-facer (not shown) in the previous process. Liner (15) sent via a different route from single-sided corrugated sheet (1)
And are bonded together to produce the double-sided corrugated board sheet (5). The heating part (13) includes a preheat part (16), a heating box (hot plate part) (17), a canvas belt part (18), a pressurizing part (19) and the like. The cooling part (14) is composed of a conveyor belt part (20), a canvas belt part (18), a pressurizing part (21), etc., and is a single-sided corrugated board made of the single facer in the previous process. The sheet (1) is glued (starch glue) (2) to the top of the chevron in the glue machine (3).
Is applied and transferred to the downstream double-facer heating part (13). On the other hand, the liner (15) is preheated in the preheating section (16) and then similarly transferred to the downstream double-facer heating part (13).
The single-faced corrugated cardboard sheet (1) and the liner (15) joined at the sheet introduction port of the heating part (13) are joined by a canvas belt (18), that is, a roll (23) driven by a motor (22). ) Is carried by a canvas belt (18) and a heating box (hot plate) (17) below the canvas belt (18), and is further pressurized by a weight roll (24) in the downstream cooling part. Transferred to (14). This cooling part (14)
Is a double-sided corrugated cardboard sheet (5) that has been bonded and formed.
By sandwiching it with (0) and carrying it with a proper pressing force applied by the pressurizing part (21), the state of adhesion between the single-sided corrugated cardboard sheet (1) and the liner (15) can be made more reliable, and Corrects warp deformation of the plate that may occur during cooling.
次に第2図乃至第4図によりグルーマシン用糊付装置を
説明すると,(4)が糊付装置で,同糊付装置(4)
は、糊付ロール(6)と同糊付ロール(6)に対し所定
の隙間(S)を隔てて対向設置したドクターロール(2
5)と同ドクターロール(25)の軸方向に移動可能なブ
レード(26)と糊溜(27)と押さえロール(28)等とに
より構成されている。また上記糊付ロール(6)の回転
駆動機構が次のように構成されている。即ち,第2図の
(29)がキヤンバスベルト(18)のロール,(30)が同
ロール(29)と同軸のスプロケツト,(34)が糊付ロー
ル(6)と同軸の歯車,(33)が同歯車(34)に噛合し
た歯車,(32)が同歯車(33)と同軸のスプロケツト,
(31)が同スプロケツト(32)と上記スプロケツト(3
0)との間に懸装したチエーンで,キヤンバスベルト(1
8)のロール(30)の回転をスプロケツト(30)→チエ
ーン(31)→スプロケツト(32)→歯車(33)→歯車
(34)→糊付ロール(6)に伝え,同糊付ロール(6)
を回転して,糊付ロール(6)の周速度(VR)を片面段
ボールシート(1)の走行速度(VS)に一致させる。そ
して糊溜(27)内の糊(2)を矢印方向に回転する糊付
ロール(6)により掬い上げる一方,余剰の糊(2)を
ドクターロール(25)により掻き落として,糊付ロール
(6)とともに回転移動する糊(2)の厚さを一定に
し,この糊(2)を矢印方向に移動している片面段ボー
ルシート(1)の山形段頂部に接触させて,糊付ロール
(6)上の糊(2)を同片面段ボールシート(1)の山
形段頂部に転移させる。Next, the glue machine for glue machines will be described with reference to FIGS. 2 to 4. (4) is a glue machine, and the glue machine (4) is the same.
Is a doctor roll (2) that is installed opposite to the gluing roll (6) with a predetermined gap (S) to the gluing roll (6).
The doctor roll (25) is composed of a blade (26) movable in the axial direction, a glue reservoir (27), a pressing roll (28) and the like. Further, the rotation drive mechanism of the gluing roll (6) is configured as follows. That is, (29) in Fig. 2 is a roll of the canvas belt (18), (30) is a sprocket coaxial with the roll (29), (34) is a gear coaxial with the sizing roll (6), and (33). ) Is a gear meshed with the gear (34), (32) is a sprocket coaxial with the gear (33),
(31) is the same sprocket (32) and the above sprocket (3
The chain suspended between (0) and the canvas belt (1
The rotation of the roll (30) of 8) is transmitted to the sprocket (30) → chain (31) → sprocket (32) → gear (33) → gear (34) → sizing roll (6), and the sizing roll (6) )
The peripheral speed (V R ) of the sizing roll (6) is made to match the traveling speed (V S ) of the single-faced corrugated cardboard sheet (1) by rotating. Then, the glue (2) in the glue reservoir (27) is scooped up by a glue roll (6) rotating in the direction of the arrow, while the excess glue (2) is scraped off by a doctor roll (25), 6) The thickness of the glue (2) which rotates together with the glue (2) is made constant, and the glue (2) is brought into contact with the top of the chevron corrugated sheet of the single-faced corrugated sheet (1) moving in the direction of the arrow, and the roll with glue (6) ) Transfer the above glue (2) to the top of the chevron corrugated sheet of the same single-sided corrugated sheet (1).
(考案が解決しようとする課題) 前記第2図乃至第4図に示す従来のグルーマシン用糊付
装置には次の問題があった。即ち,糊付ロール(6)と
ともに回転移動する厚さの一定な糊(2)を矢印方向に
移動している片面段ボールシート(1)の山形段頂部に
接触させて,糊付ロール(6)上の糊(2)を同片面段
ボールシート(1)の山形段頂部に転移させるとき,糊
付ロール(6)の周速度(VR)と片面段ボールシート
(1)の走行速度(VS)とは一致していることが望まし
い。が,片面段ボールシート(1)とキヤンバスベルト
(18)との間には,スリツプがあり,糊付ロール(6)
の周速度(VR)と片面段ボールシート(1)の走行速度
(VS)とが一致し難い。第3図(イ)は,VS>VRの場合
を示し,第3図(ロ)は,VS<VRの場合を示している。
第3図(イ)のVS>VRの場合には,片面段ボールシート
(1)の山形段頂部により糊付ロール(6)上の糊
(2)が下流側へ掻き寄せられて,山形段頂部進行方向
下流側の転移量が増大し,第3図(ロ)のVS<VRの場合
には,片面段ボールシート(1)の山形段頂部により糊
付ロール(6)上の糊(2)が上流側へ掻き寄せられ
て,山形段頂部進行方向上流側の転移量が増大する。こ
の傾向により,第3図(イ)(ロ)の状態では,糊付ロ
ール(6)から片面段ボールシート(1)の山形段頂部
への糊(2)の転移量が殆どなく,そのため,第4図に
示すように両面段ボールシート(5)の方向によっては
耐剥離力(FO)の著しく低い不良品になる。また糊供給
量を増大させて,耐剥離力(FO)の低下を防止しようと
るすと,糊消費量が増大するという問題があった。(Problems to be Solved by the Invention) The pasting device for a glue machine shown in FIGS. 2 to 4 has the following problems. That is, the gluing roll (6) is brought into contact with the gluing roll (6), which has a constant thickness, and is brought into contact with the top of the chevron-shaped corrugated sheet (1) moving in the arrow direction. when causing the glue (2) above is transferred to the chevron Dan'itadaki portion of the single-faced corrugated fiberboard sheet (1), the traveling speed of the peripheral speed of the glue application roll (6) (V R) and the single-faced corrugated fiberboard sheet (1) (V S) It is desirable to agree with. However, there is a slip between the single-faced cardboard sheet (1) and the canvas belt (18), and the roll with glue (6)
It is difficult to match the peripheral speed (V R ) with the traveling speed (V S ) of the single-sided corrugated board sheet (1). FIG. 3A shows the case of V S > V R , and FIG. 3B shows the case of V S <V R.
In the case of V S > V R in Fig. 3 (a), the paste (2) on the sizing roll (6) is squeezed to the downstream side by the top of the single-sided corrugated sheet (1), and the double-sided corrugated sheet (1) When the amount of transition on the downstream side of the step top traveling direction increases and V S <V R in Fig. 3 (b), the paste on the sizing roll (6) is applied by the chevron top of the single-sided corrugated sheet (1). (2) is scraped to the upstream side, and the amount of transition on the upstream side in the direction of travel of the mountain-shaped step top increases. Due to this tendency, in the state of Fig. 3 (a) (b), there is almost no transfer amount of the glue (2) from the gluing roll (6) to the top of the chevron corrugated sheet of the single-faced corrugated sheet (1). As shown in Fig. 4, depending on the direction of the double-faced corrugated sheet (5), the peeling resistance (F O ) is extremely low, resulting in a defective product. In addition, if the amount of glue supplied is increased to prevent the peeling resistance (F O ) from decreasing, there is a problem that the amount of glue consumed increases.
本考案は前記の問題点に鑑み提案するものであり,その
目的とする処は,耐剥離力の大きい製品を得られる。ま
た糊の消費量を必要最小限にできるグルーマシン用糊付
装置を提供とようとする点にある。The present invention is proposed in view of the above problems, and a purpose thereof is to obtain a product having a large peeling resistance. Another point is to provide a gluing device for a glue machine that can minimize the amount of glue consumed.
(課題を解決するための手段) 上記の目的を達成するために,本考案は,コルゲートマ
シンに設置するグルーマシン用糊付装置において,片面
段ボールシートの走行速度を検出する検出装置と,同検
出装置からの検出信号により得られた制御信号を糊付ロ
ールの回転駆動モータへ送って糊付ロールの周速度を片
面段ボールシートの走行速度に合わせて変更する制御装
置とを具えている。(Means for Solving the Problems) In order to achieve the above object, the present invention provides a glue machine for a glue machine installed in a corrugated machine, and a detector for detecting the traveling speed of a single-sided corrugated board sheet and the same detector. The control device sends a control signal obtained from a detection signal from the device to a rotation drive motor of the gluing roll to change the peripheral speed of the gluing roll according to the traveling speed of the single-faced corrugated cardboard sheet.
(作用) 本考案のグルーマシン用糊付装置は前記のように構成さ
れており,片面段ボールシートの走行速度を検出装置に
より検出し,その結果得られた片面段ボールシートの走
行速度検出信号を制御装置へ送り,ここで糊付ロールの
周速度を片面段ボールシートの走行速度に一致させる制
御信号を演算し,この制御信号を糊付ロールの回転駆動
モータへ出力して,糊付ロールの周速度を片面段ボール
シートの走行速度に一致させる。(Operation) The glue machine for the glue machine of the present invention is configured as described above, and the traveling speed of the single-faced corrugated sheet is detected by the detection device, and the resulting traveling speed detection signal of the single-faced corrugated sheet is controlled. The control signal that sends the peripheral speed of the gluing roll to the traveling speed of the single-sided corrugated cardboard is calculated here, and this control signal is output to the rotary drive motor of the gluing roll to determine the peripheral speed of the gluing roll. To match the running speed of the single-sided corrugated sheet.
(実施例) 次に本考案のグルーマシン用糊付装置を第1図に示す一
実施例により説明すると,ダブルフエーサ装置がヒーイ
イングパート(13)とクーリングパート(14)とにより
構成されており,前工程のシングルフエーサ(図示せ
ず)で作られた片面段ボールシート(1)と別経路を経
て送り込まれたライナ(15)とが貼り合わされて,両面
段ボールシート(5)が製造される。上記ヒーテイング
パート(13)は,プレヒート部(16)とヒーテイングボ
ツクス(熱板部)(17)とキヤンバスベルト部(18)と
加圧部(19)等とにより構成されている。また上記クー
リングパート(14)は,搬送ベルト部(20)とキヤンバ
スベルト部(18)と加圧部(21)等とにより構成されて
おり,前工程のシングルフエーサで作られた片面段ボー
ルシート(1)は,グルーマシン(3)において山形段
頂部へ糊(澱粉糊)(2)が塗布されて,下流側のダブ
ルフエーサ・ヒーテイングパート(13)へ移送される。
一方,ライナ(15)は,プレヒート部(16)で予熱され
た後,同様に下流側のダブルフエーサ・ヒーテイングパ
ート(13)へ移送される。このヒーテイングパート(1
3)のシート導入口部で合流した片面段ボールシート
(1)とライナ(15)とは,キヤンバスベルト部(1
8),即ち,モータ(22)で駆動されるロール(23)に
より走行されるキヤンバスベルト部(18)とその下方の
ヒーテイングボツクス(熱板部)(17)とにより挟持さ
れ,さらにウエイトロール(24)により加圧された状態
で下流側のクーリングパート(14)へ搬送される。また
このクーリングパート(14)は,貼合形成された両面段
ボールシート(5)を上下に位置したキヤンバスベルト
部(18)と搬送ベルト部(20)とにより挟持し,加圧部
(21)により適度の押圧力を加えた状態で搬送すること
により,片面段ボールシート(1)とライナ(15)との
接着状態をより確実にするとともに,冷却に際して起こ
り得る板の反り変形を修正する。次に本考案で最も特徴
とする点を説明すると,糊付装置(4a)の近くに設けた
走行速度検出用ローラ(検出装置)で,同走行速度検出
用ローラ(7)を片面段ボールシート(1)に接触させ
て回転し,同走行速度検出用ローラ(7)に直結したエ
ンコーダ等により得られた同走行速度検出用ローラ
(7)の回転数から片面段ボールシート(1)の走行速
度(VS)を検出するようになっている。また(11)が回
転駆動モータ,(12)が同回転駆動モータ(11)の出力
軸に取付けたスプロケツト,(9)が上記糊付ロール
(6)に取付けたスプロケツト,(10)が上記スプロケ
ツト(9)(12)間に懸装したチエーン,(8)が上記
走行速度検出用ローラ(7)からの検出信号により糊付
ロール(6)の周速度(VR)を片面段ボールシート
(1)の走行速度(VS)に一致させる制御信号を演算し
てこの制御信号を上記糊付ロール(6)の回転駆動モー
タ(11)へ出力する制御装置である。(Embodiment) Next, the glue machine for glue machine of the present invention will be explained with reference to an embodiment shown in FIG. 1. A double-facer device is composed of a heating part (13) and a cooling part (14). The single-sided corrugated sheet (1) made of the single facer (not shown) in the previous step and the liner (15) fed through another route are bonded together to produce the double-sided corrugated sheet (5). . The heating part (13) includes a preheat part (16), a heating box (hot plate part) (17), a canvas belt part (18), a pressurizing part (19) and the like. The cooling part (14) is composed of a conveyor belt part (20), a canvas belt part (18), a pressurizing part (21), etc., and is a single-sided corrugated board made of the single facer in the previous process. The glue (starch glue) (2) is applied to the top of the mountain step in the glue machine (3), and the sheet (1) is transferred to the downstream double-facer heating part (13).
On the other hand, the liner (15) is preheated in the preheating section (16) and then similarly transferred to the downstream double-facer heating part (13). This heating part (1
The liner (15) and the single-faced cardboard sheet (1) that merged at the sheet inlet of (3) are
8) That is, it is sandwiched by a canvas belt portion (18) which is driven by a roll (23) driven by a motor (22) and a heating box (hot plate portion) (17) below the canvas belt portion, and a weight is further provided. It is conveyed to the cooling part (14) on the downstream side while being pressurized by the roll (24). In addition, the cooling part (14) holds the laminated double-faced corrugated sheet (5) between the canvas belt part (18) and the transfer belt part (20) located above and below, and presses the pressing part (21). By conveying the sheet with a proper pressing force, the one-sided corrugated sheet (1) and the liner (15) are more securely bonded and the warp deformation of the plate that may occur during cooling is corrected. Next, the most characteristic point of the present invention will be described. A running speed detecting roller (detecting device) provided near the gluing device (4a) is used to replace the running speed detecting roller (7) with a single-sided corrugated sheet ( 1) The rotation speed of the traveling speed detecting roller (7) obtained by an encoder or the like directly connected to the traveling speed detecting roller (7) is rotated from the traveling speed of the single-faced corrugated sheet (1) (1). V S ). Further, (11) is a rotary drive motor, (12) is a sprocket attached to the output shaft of the same rotary drive motor (11), (9) is a sprocket attached to the gluing roll (6), and (10) is the sprocket. (9) (12) chain was KakaSo between, (8) the circumferential speed of the running speed glue application roll by detection signals from the detection roller (7) (6) (V R) of the single-faced corrugated fiberboard sheet (1 a control signal to match the travel speed (V S) of) by calculating the control signal is a control device for outputting the rotary drive motor (11) of said glue application roll (6).
次に前記第1図に示すグルーマシン用糊付装置の作用を
具体的に説明すると,走行速度検出用ローラ(7)を片
面段ボールシート(1)に接触させて回転し,同走行速
度検出用ローラ(7)に直結したエンコーダ等により得
られた同走行速度検出用ローラ(7)の回転数から片面
段ボールシート(1)の走行速度(VS)を検出し,その
結果得られた検出信号を制御装置(8)へ送り,ここで
糊付ロール(6)の周速度(VR)を片面段ボールシート
(1)の走行速度(VS)に一致させる制御信号を演算
し,この制御信号を糊付ロール(6)の回転駆動モータ
(11)へ出力して,糊付ロール(6)の周速度(VR)を
片面段ボールシート(1)の走行速度(VS)に一致させ
る。Next, the operation of the glue machine gluing device for the glue machine shown in FIG. 1 will be described in detail. The roller (7) for detecting the traveling speed is brought into contact with the single-faced corrugated cardboard sheet (1) and rotated to detect the traveling speed. The traveling speed (V S ) of the single-faced corrugated cardboard sheet (1) is detected from the rotational speed of the traveling speed detecting roller (7) obtained by an encoder directly connected to the roller (7), and the detection signal obtained as a result is detected. To the control device (8), where a control signal for matching the peripheral speed (V R ) of the sizing roll (6) with the running speed (V S ) of the single-faced corrugated cardboard sheet (1) is calculated. the output to the rotary drive motor (11) of the glue roll (6), to match the peripheral velocity of the glue application roll (6) and (V R) to the running speed of the single-faced corrugated fiberboard sheet (1) (V S).
(考案の効果) 本考案のグルーマシン用糊付装置は前記のように片面段
ボールシートの走行速度を検出装置により検出し,その
結果得られた片面段ボールシートの走行速度検出信号を
制御装置へ送り,ここで糊付ロールの周速度を片面段ボ
ールシートの走行速度に一致させる制御信号を演算し,
この制御信号を糊付ロールの回転駆動モータへ出力し
て,糊付ロールの周速度を片面段ボールシートの走行速
度に一致させるので,第3図(イ)(ロ)の状態を生じ
なくて,耐剥離力の大きい製品を得られる。また耐剥離
力を大きくするために,糊の供給量を増大させる必要が
なくて,糊の消費量を必要最小限にできる効果がある。(Advantage of the Invention) As described above, the glue machine for the glue machine of the present invention detects the traveling speed of the single-sided corrugated board sheet by the detecting apparatus, and sends the traveling speed detection signal of the single-sided corrugated board sheet obtained as a result to the control apparatus. , Here, the control signal that matches the peripheral speed of the gluing roll with the traveling speed of the single-sided corrugated board sheet is calculated,
This control signal is output to the rotation drive motor of the gluing roll to match the peripheral speed of the gluing roll with the traveling speed of the single-sided corrugated board sheet, so that the states of Fig. 3 (a) and (b) do not occur. A product with high peel resistance can be obtained. Further, in order to increase the peeling resistance, it is not necessary to increase the supply amount of the glue, and there is an effect that the consumption amount of the glue can be minimized.
第1図は本考案に係わるグルーマシン用糊付装置の一実
施例を示す側面図,第2図は従来のグルーマシン用糊付
装置を示す側面図,第3図は片面段ボールシートの走行
速度と糊付ロールの周速度との関係を示す説明図,第4
図は耐剥離力を示す説明図,第5図は一般的なコルゲー
トマシンのグルーマシンとダブルフエーサ部とを示す側
面図である。 (1)…片面段ボールシート,(4a)…グルーマシン用
糊付装置,(6)…糊付ロール,(7)…検出装置,
(8)…制御装置,(11)…回転駆動モータ,(VR)…糊
付ロール(6)の周速度,(VS)…片面段ボールシート
(1)の走行速度。FIG. 1 is a side view showing an embodiment of a glue machine gluing device according to the present invention, FIG. 2 is a side view showing a conventional glue machine gluing device, and FIG. 3 is a traveling speed of a single-faced corrugated sheet. Explanatory diagram showing the relationship between the peripheral speed of the gluing roll and
FIG. 5 is an explanatory view showing peeling resistance, and FIG. 5 is a side view showing a glue machine and a double facer portion of a general corrugating machine. (1) ... Single-sided corrugated board sheet, (4a) ... Glue machine gluing device, (6) ... Gluing roll, (7) ... Detecting device,
(8) ... control device, (11) ... rotation drive motor, (V R) ... peripheral velocity of the glue application roll (6), (V S) ... traveling speed of the single-faced corrugated fiberboard sheet (1).
Claims (1)
用糊付装置において,片面段ボールシートの走行速度を
検出する検出装置と,同検出装置からの検出信号により
糊付ロールの周速度を片面段ボールシートの走行速度に
一致させる制御信号を演算してこの制御信号を上記糊付
ロールの回転駆動モータへ出力する制御装置とを具えて
いることを特徴としたグルーマシン用糊付装置。1. A glue machine gluing machine installed on a corrugating machine, wherein a detecting device for detecting a traveling speed of a single-sided corrugated sheet and a peripheral speed of the gluing roll is detected by a detection signal from the detecting device. A glue machine for a glue machine, comprising: a control device that calculates a control signal that matches a traveling speed and outputs the control signal to a rotary drive motor of the glue roll.
Priority Applications (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP1989010791U JPH0638669Y2 (en) | 1989-02-02 | 1989-02-02 | Glue machine for glue machine |
EP19900101606 EP0381080A3 (en) | 1989-02-02 | 1990-01-26 | Pasting device for a glue machine |
AU49044/90A AU600625B1 (en) | 1989-02-02 | 1990-02-01 | Pasting device for a glue machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP1989010791U JPH0638669Y2 (en) | 1989-02-02 | 1989-02-02 | Glue machine for glue machine |
Publications (2)
Publication Number | Publication Date |
---|---|
JPH02101725U JPH02101725U (en) | 1990-08-14 |
JPH0638669Y2 true JPH0638669Y2 (en) | 1994-10-12 |
Family
ID=11760165
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP1989010791U Expired - Lifetime JPH0638669Y2 (en) | 1989-02-02 | 1989-02-02 | Glue machine for glue machine |
Country Status (3)
Country | Link |
---|---|
EP (1) | EP0381080A3 (en) |
JP (1) | JPH0638669Y2 (en) |
AU (1) | AU600625B1 (en) |
Families Citing this family (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP0734849B1 (en) * | 1995-03-29 | 1998-11-04 | Mitsubishi Jukogyo Kabushiki Kaisha | Method and apparatus for single facer glue application adjustment |
CN104324842A (en) * | 2014-10-19 | 2015-02-04 | 东莞市鸿铭机械有限公司 | Gluing mechanism |
Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US1960677A (en) * | 1932-12-14 | 1934-05-29 | Samuel M Langston Co | Corrugator |
US2482627A (en) * | 1946-01-22 | 1949-09-20 | Samuel M Langston Co | Machine for making corrugated paper |
Family Cites Families (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
FR1455170A (en) * | 1965-06-17 | 1966-04-01 | Marius Martin | Controlled transfer coating machine |
US3989936A (en) * | 1974-11-01 | 1976-11-02 | Formica Corporation | Method and apparatus for the feed forward control of a material treater |
EP0362423B1 (en) * | 1986-08-11 | 1992-12-09 | Consolidated Papers, Inc. | Method of and apparatus for controlling application of glue to defined areas |
JPS644910A (en) * | 1987-06-26 | 1989-01-10 | Matsushita Electric Ind Co Ltd | Multitrack thin film magnetic head |
-
1989
- 1989-02-02 JP JP1989010791U patent/JPH0638669Y2/en not_active Expired - Lifetime
-
1990
- 1990-01-26 EP EP19900101606 patent/EP0381080A3/en not_active Withdrawn
- 1990-02-01 AU AU49044/90A patent/AU600625B1/en not_active Ceased
Patent Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US1960677A (en) * | 1932-12-14 | 1934-05-29 | Samuel M Langston Co | Corrugator |
US2482627A (en) * | 1946-01-22 | 1949-09-20 | Samuel M Langston Co | Machine for making corrugated paper |
Also Published As
Publication number | Publication date |
---|---|
JPH02101725U (en) | 1990-08-14 |
EP0381080A2 (en) | 1990-08-08 |
EP0381080A3 (en) | 1991-09-18 |
AU600625B1 (en) | 1990-08-16 |
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EXPY | Cancellation because of completion of term |