JPS635901A - Setter for compaction strut in curved aggregate material molding machine - Google Patents

Setter for compaction strut in curved aggregate material molding machine

Info

Publication number
JPS635901A
JPS635901A JP15236086A JP15236086A JPS635901A JP S635901 A JPS635901 A JP S635901A JP 15236086 A JP15236086 A JP 15236086A JP 15236086 A JP15236086 A JP 15236086A JP S635901 A JPS635901 A JP S635901A
Authority
JP
Japan
Prior art keywords
clamping
base
strut
drive
setter
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
JP15236086A
Other languages
Japanese (ja)
Other versions
JPH0363921B2 (en
Inventor
山中 久
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.)
Fuji Koon Seisakusho Kk
Original Assignee
Fuji Koon Seisakusho Kk
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Fuji Koon Seisakusho Kk filed Critical Fuji Koon Seisakusho Kk
Priority to JP15236086A priority Critical patent/JPS635901A/en
Publication of JPS635901A publication Critical patent/JPS635901A/en
Publication of JPH0363921B2 publication Critical patent/JPH0363921B2/ja
Granted legal-status Critical Current

Links

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】 (産業上の利用分野) 本発明は、接着材を塗布した木板が複数枚集積されてな
る集成材を、予め成型線に沿ってベースに起立配置され
た多数の圧締支柱に圧着しし、゛この状態を上記接着材
が硬化するまで保持することにより、前記集成材を所定
の形状に湾曲成型する湾曲集成材の成型機に関し、特に
圧締支柱を種々の成型線に沿う如くベースに自動的に移
動設定する圧締支柱の設定装置に関するものである。
Detailed Description of the Invention (Industrial Field of Application) The present invention is a method of manufacturing a laminated wood made of a plurality of wooden boards coated with an adhesive, by applying a plurality of pressure points that are arranged upright on a base along a forming line in advance. Regarding a molding machine for curved laminated timber that bends and molds the laminated timber into a predetermined shape by pressing it onto a clamping post and holding this state until the adhesive hardens, it is particularly suitable for various molding of clamping pillars. This invention relates to a clamping post setting device that automatically moves and sets a clamping post along a line.

(従来の技術) 従来の技術として、第3図および第4図に示す構造のも
のがあった。
(Prior Art) As a conventional technology, there is a structure shown in FIGS. 3 and 4.

即ち、ベース1に予め所定の形状に形成した実物大の型
板2を配置し、この型板2に沿ってその裏面2b(第3
図において下面)側に多数の圧締支柱3を起立配列した
後、該圧締支柱3を上記ベース1にボルト締め固定する
構造であった。
That is, a full-size template 2 previously formed into a predetermined shape is placed on the base 1, and the back surface 2b (third
The structure was such that a large number of clamping columns 3 were arranged in an upright manner on the lower side in the figure, and then the clamping columns 3 were fixed to the base 1 with bolts.

そして、上記のようにしてベース1に配列固定した圧締
支柱3に、第3図仮想線で示すように、接着材を塗布し
た木板が複数枚集積されてなる集成材4を、圧締支柱3
の前面(第3図において上面)側に配置するとともに、
その−端側直線部分をこれに対応する圧締支柱3に第4
図に示すように圧締板5および圧締具6により挟持固定
つまり圧締し、その他端側をウィンチ等によりこれに対
応する圧締支柱3方向に湾曲移動させ、圧締板5および
圧締具6により上記他端側を順次圧締支柱に圧締し、こ
れにより上記集成材4を所定の形状に湾曲成型するよう
にしていた。
Then, as shown by the imaginary line in FIG. 3, a laminated timber 4 made up of a plurality of wooden boards coated with adhesive is attached to the clamping struts 3 arranged and fixed on the base 1 as described above. 3
is placed on the front side (upper surface in Figure 3) of the
The straight part on the - end side is attached to the corresponding clamping column 3 with the fourth
As shown in the figure, the clamping plate 5 and the clamping tool 6 are used to clamp and fix, that is, clamp the other end, and the other end is moved by a winch or the like in the direction of the corresponding clamping column 3, and the clamping plate 5 and clamping The other end side was sequentially pressed onto the pressing column using a tool 6, thereby bending and molding the laminated timber 4 into a predetermined shape.

(発明が解決しようとする問題点) 上記従来のものは、圧締支柱をベースに設定するに際し
、実物大の型板を必要とするため、この型板の製作に多
くの労力と時間を要する欠点があった。
(Problems to be Solved by the Invention) The conventional method described above requires a full-size template when setting the clamping column as a base, so it takes a lot of effort and time to manufacture this template. There were drawbacks.

さらに、圧締支柱は、−般にボルト等によってベースに
固定されるが、圧締支柱を成型される集成材の成型線に
沿って配列した場合、圧締支柱側のボルト孔とベース側
のボルト孔とが一致しないことがあり、この場合、新た
にボルト孔を加工したり専用の止め金具を製作したすせ
ねばならず、圧締支柱のベースへの固定作業に多くの労
力と時間を要する欠点があった。
Furthermore, the clamping struts are generally fixed to the base with bolts, etc., but when the clamping struts are arranged along the forming line of the laminated wood to be molded, the bolt holes on the clamping strut side and the base side Sometimes the bolt holes do not match, and in this case, it is necessary to create new bolt holes or create special fasteners, which requires a lot of effort and time to fix the clamping column to the base. There were some drawbacks.

本発明は、上記欠点を解消した新規な湾曲集成材成型機
における圧締支柱の設定装置を得ることを目的とする。
An object of the present invention is to obtain a new device for setting a clamping strut in a curved laminated wood forming machine that eliminates the above-mentioned drawbacks.

(問題点を解決するための手段) 本発明は、」二記目的を達成するために、以下の如く構
成したものである。
(Means for Solving the Problems) In order to achieve the second object, the present invention is constructed as follows.

即ち、ベース上に多数の圧締支柱を並列状に配列し、各
圧締支柱を前記配列方向に対して略直交方向にそれぞれ
移動可能にベースに連結するガイドを設け、ガイドの延
出方向に対する負荷に耐えかつ作動時に各圧締支柱をガ
イドに沿って単独に移動調節可能の調節機構を設け、各
調節機構を駆蛎する駆動機構を設け、データの入力信号
によって前記各駆動機構の駆動量を制御する制御装置を
設ける構成にしたものである。
That is, a large number of clamping columns are arranged in parallel on a base, and guides are provided to connect each clamping column to the base so that each clamping column can move in a direction substantially orthogonal to the arrangement direction, and An adjustment mechanism is provided that can withstand loads and that can independently move and adjust each clamping column along a guide during operation, and a drive mechanism that drives each adjustment mechanism is provided, and the amount of drive of each of the drive mechanisms is controlled by a data input signal. The configuration is such that a control device is provided to control the.

(作用) 本発明は上記構成にしたものであるから、制御装置に所
定のデータ信号を入力すれば、各駆動機構が駆動制御さ
れて各調節機構がそれぞれ所定量作動されることになる
(Function) Since the present invention has the above configuration, when a predetermined data signal is input to the control device, each drive mechanism is drive-controlled and each adjustment mechanism is operated by a predetermined amount.

これにより、各圧締支柱がガイドに沿って移動され、所
定形状の成型線上に配列設定されることになる。
As a result, each clamping support is moved along the guide and arranged on a forming line of a predetermined shape.

また、所定形状の成型線上に配列設定された各圧締支柱
は、それぞれの位置で各ガイドおよび各調節機構によっ
てベースに連結保持されることになる。
Furthermore, the clamping columns arranged on the molding line of a predetermined shape are connected and held to the base at respective positions by respective guides and respective adjustment mechanisms.

(実施例) 以下本発明の実施例を図面に基いて説明する。(Example) Embodiments of the present invention will be described below based on the drawings.

まず、図面において、第1図は本発明の基本構成を示す
説明図、第2図はそのうちの一組の圧締支柱部の構造を
示す斜視図である。
First, in the drawings, FIG. 1 is an explanatory view showing the basic configuration of the present invention, and FIG. 2 is a perspective view showing the structure of one set of clamping struts.

10はベースであり、このベース10上には多数の圧締
支柱11を所定のピッチ例えば300III11程度の
ピッチで並列状に起立配列する。
Reference numeral 10 denotes a base, and on this base 10 a large number of clamping columns 11 are arranged upright in parallel at a predetermined pitch, for example, about 300III11.

これら各圧締支柱11には、第2図に示すように、それ
ぞれの側方に配置された板状の圧締板11aが上下−対
のボルト・ナツトからなる圧締具11bにより連結され
ている。
As shown in FIG. 2, each of these clamping columns 11 is connected to a plate-shaped clamping plate 11a arranged on each side by a clamping tool 11b consisting of a pair of upper and lower bolts and nuts. There is.

さらに上記各圧締支柱11は、ガイドをなす=4− レール12および調節機構をなすねし棒13を介してそ
れぞれ単独にベース10に連結する。
Further, each of the clamping columns 11 is individually connected to the base 10 via a rail 12 that serves as a guide and a slat rod 13 that serves as an adjustment mechanism.

即ち、レール12を各圧締支柱11の配列方向に対して
直交方向に延出配置してボルト等によりベース10に一
体的に固定し、このレール12に圧締支柱11の下端を
スライドベアリング14により摺動可能に連結する。ま
た、ねじ棒13を上記レール12の上方にてこれと平行
に延出配置してその両端を軸受15によりベース10に
回転可能に連結し、このねじ棒13に圧締支柱11の下
部をねじ連結してなる。
That is, the rail 12 is arranged to extend in a direction perpendicular to the arrangement direction of the clamping columns 11 and is integrally fixed to the base 10 with bolts or the like, and the lower end of the clamping column 11 is attached to the rail 12 by the slide bearing 14. slidingly connected. Further, a threaded rod 13 is disposed extending above and parallel to the rail 12, and its both ends are rotatably connected to the base 10 by bearings 15. It becomes connected.

また、上記各ねじ棒13は第2図に示すように、駆動機
構16に連結する。
Further, each of the threaded rods 13 is connected to a drive mechanism 16, as shown in FIG.

即ち各ねじ棒13の端部に、それぞれ被動ギヤ16cを
連結し、−方ベースlo側に各ねじ棒13に対応するモ
ータ16aを載置固定し、各モータ16aの回転軸に駆
動ギヤ」−6bを連結し、これら各駆動ギヤ16bに上
記各被動ギヤ16cをそれぞれ噛み合わせてなる。
That is, a driven gear 16c is connected to the end of each threaded rod 13, a motor 16a corresponding to each threaded rod 13 is mounted and fixed on the base lo side, and a driving gear is connected to the rotating shaft of each motor 16a. 6b are connected to each other, and each of the driven gears 16c is meshed with each of these driving gears 16b.

また、第1図中17は制御装置であり、制御回路17a
、計算回路17b、および計測回路17cを有する。
In addition, 17 in FIG. 1 is a control device, and a control circuit 17a
, a calculation circuit 17b, and a measurement circuit 17c.

即ち、上記各ねじ棒13の外端部に、それぞれパルスジ
ェネレータからなる計測装置ll 7 c−1を連結し
、この計測装置17cm1からの信号を計測回路17c
で検知し、各ねじ棒13の回転数、つまり各圧締支柱1
1の現在位置に相当した信号を制御回路17aに出力す
る。
That is, a measuring device ll7c-1 consisting of a pulse generator is connected to the outer end of each of the threaded rods 13, and a signal from the measuring device 17cm1 is connected to the measuring circuit 17c.
The number of rotations of each threaded rod 13, that is, each clamping column 1, is detected by
A signal corresponding to the current position of No. 1 is output to the control circuit 17a.

また、計算回路17bは、例えば−般に市販されている
マイクロコンピュータからなり、成型しようとする湾曲
集成材の形状寸法に基づいて入力された必要なデータを
基に、各駆動機構16の駆動量、即ちねじ棒13の回転
数を算出するようプログラムされ、この算出した回転数
に対応する信号を制御回路17aに出力する。
The calculation circuit 17b is composed of, for example, a commonly available microcomputer, and calculates the amount of drive of each drive mechanism 16 based on necessary data input based on the shape and dimensions of the curved laminated material to be molded. That is, it is programmed to calculate the number of rotations of the threaded rod 13, and outputs a signal corresponding to the calculated number of rotations to the control circuit 17a.

また、上記制御回路17aは、上記各計測回路17cか
ら入力した各ねじ棒13の現在の回転数信号値と、上記
計算回路17bがら入力した各ねじ捧13の設定回転数
信号値とが一致する如く、駆動機構16の駆動量を制御
するようになっている。
Further, the control circuit 17a is configured such that the current rotational speed signal value of each threaded rod 13 inputted from each of the measurement circuits 17c matches the set rotational speed signal value of each screw rod 13 inputted from the calculation circuit 17b. Thus, the amount of drive of the drive mechanism 16 is controlled.

次に上記実施例の作動態様について説明する。Next, the operation mode of the above embodiment will be explained.

まず、成型しようとする湾曲集成材の形状寸法に必要な
データを計算回路17bに入力する。
First, data necessary for the shape and dimensions of the curved laminated timber to be molded is input into the calculation circuit 17b.

さすれば、制御回路17aは、上記各計測回路17cか
らの入力信号値が計算回路17bからの入力信号値に一
致する如く、各モータ16aつまり各ねじ捧13を回転
させる。
Then, the control circuit 17a rotates each motor 16a, that is, each screw stud 13, so that the input signal value from each measurement circuit 17c matches the input signal value from the calculation circuit 17b.

これにより、各圧締支柱11はレール12に沿って所定
量移動され、所定形状の湾曲した成型線上に配列設定さ
れることになる。
As a result, each clamping support 11 is moved by a predetermined amount along the rail 12, and arranged on a curved forming line having a predetermined shape.

そして、上記配列設定された圧締支柱11は、レール1
2とスライドベヤリング14とにより、ベース10に対
して第1図において左右方向の移動が阻止され、また、
ねじ棒13により、ベース10に対して第1図において
上下方向の移動が阻止されることになる。
Then, the clamping columns 11 arranged in the above arrangement are attached to the rail 1.
2 and the slide bearing 14, movement in the left and right direction in FIG. 1 with respect to the base 10 is prevented, and
The threaded rod 13 prevents vertical movement relative to the base 10 in FIG.

(発明の効果) 以上の説明から明らかな如く、本発明によれば、成型し
ようとする湾曲集成材の形状寸法に必要なデータを入力
するのみで、各圧締支柱が所定形状の成型線に沿って自
動的に配列され、しかも、上記配列設定された各圧締支
柱は、ガイドおよび駆動機構によってベースに移動不能
に連結されることになる。
(Effects of the Invention) As is clear from the above description, according to the present invention, by simply inputting the data necessary for the shape and dimensions of the curved laminated timber to be molded, each clamping column can be aligned to a molding line of a predetermined shape. and each of the clamping columns thus arranged is immovably connected to the base by a guide and drive mechanism.

従って本発明は、圧締支柱の配列設定が極めて迅速かつ
容易に行なえる効果を奏する。
Therefore, the present invention has the advantage that the arrangement of the clamping struts can be set extremely quickly and easily.

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

第1図は本発明の基本構成を示す説明図、第2図はその
うちの一組の圧締支柱部の構造を示す斜視図、第3図は
従来例を示す概略平面図、第4図はその要部を示す断面
図である。 10:ベース、11:圧締支柱、11a:圧締板、11
b=圧締具、12:レール(ガイド)、13:ねじ棒(
調節機構)、14ニスライドベアリング、15:軸受、
16:駆動機構、16a:モータ、16b;駆動ギヤ、
16c:被動ギヤ、17:制御装置、17a:制御回路
、17b:計算回路、17c:計測回路。 出願代理人   松 本  久
Fig. 1 is an explanatory diagram showing the basic configuration of the present invention, Fig. 2 is a perspective view showing the structure of one set of clamping struts, Fig. 3 is a schematic plan view showing a conventional example, and Fig. 4 is an explanatory diagram showing the basic configuration of the present invention. It is a sectional view showing the main part. 10: Base, 11: Clamping post, 11a: Clamping plate, 11
b = Clamping tool, 12: Rail (guide), 13: Threaded rod (
Adjustment mechanism), 14 Nislide bearing, 15: Bearing,
16: Drive mechanism, 16a: Motor, 16b: Drive gear,
16c: driven gear, 17: control device, 17a: control circuit, 17b: calculation circuit, 17c: measurement circuit. Application agent Hisashi Matsumoto

Claims (1)

【特許請求の範囲】[Claims] 1、ベース上に多数の圧締支柱を並列状に配列し、各圧
締支柱を前記配列方向に対して略直交方向にそれぞれ移
動可能にベースに連結するガイドを設け、ガイドの延出
方向に対する負荷に耐えかつ作動時に各圧締支柱をガイ
ドに沿って単独に移動調節可能の調節機構を設け、各調
節機構を駆動する駆動機構を設け、データの入力信号に
よって前記各駆動機構の駆動量を制御する制御装置を設
けたことを特徴とする湾曲集成材成型機における圧締支
柱の設定装置。
1. A large number of clamping columns are arranged in parallel on a base, and a guide is provided to connect each clamping column to the base so that each clamping column can move in a direction substantially orthogonal to the arrangement direction, and An adjustment mechanism capable of withstanding a load and capable of independently moving and adjusting each clamping column along a guide during operation is provided, a drive mechanism is provided to drive each adjustment mechanism, and the drive amount of each drive mechanism is controlled by a data input signal. A device for setting a clamping strut in a curved laminated wood forming machine, characterized in that it is equipped with a control device.
JP15236086A 1986-06-27 1986-06-27 Setter for compaction strut in curved aggregate material molding machine Granted JPS635901A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP15236086A JPS635901A (en) 1986-06-27 1986-06-27 Setter for compaction strut in curved aggregate material molding machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP15236086A JPS635901A (en) 1986-06-27 1986-06-27 Setter for compaction strut in curved aggregate material molding machine

Publications (2)

Publication Number Publication Date
JPS635901A true JPS635901A (en) 1988-01-11
JPH0363921B2 JPH0363921B2 (en) 1991-10-03

Family

ID=15538839

Family Applications (1)

Application Number Title Priority Date Filing Date
JP15236086A Granted JPS635901A (en) 1986-06-27 1986-06-27 Setter for compaction strut in curved aggregate material molding machine

Country Status (1)

Country Link
JP (1) JPS635901A (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6273643A (en) * 1985-09-26 1987-04-04 Ando Electric Co Ltd Mechanism for aligning wafer on moving table
US10448722B2 (en) 2017-03-22 2019-10-22 Dyson Technology Limited Support for a hair care appliance
US10582751B2 (en) 2017-03-22 2020-03-10 Dyson Technology Limited Support for a hair care appliance

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6273643A (en) * 1985-09-26 1987-04-04 Ando Electric Co Ltd Mechanism for aligning wafer on moving table
US10448722B2 (en) 2017-03-22 2019-10-22 Dyson Technology Limited Support for a hair care appliance
US10582751B2 (en) 2017-03-22 2020-03-10 Dyson Technology Limited Support for a hair care appliance

Also Published As

Publication number Publication date
JPH0363921B2 (en) 1991-10-03

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