JPS58212900A - Transfer press - Google Patents

Transfer press

Info

Publication number
JPS58212900A
JPS58212900A JP9327882A JP9327882A JPS58212900A JP S58212900 A JPS58212900 A JP S58212900A JP 9327882 A JP9327882 A JP 9327882A JP 9327882 A JP9327882 A JP 9327882A JP S58212900 A JPS58212900 A JP S58212900A
Authority
JP
Japan
Prior art keywords
link
slide
press
inner slide
shaft
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
JP9327882A
Other languages
Japanese (ja)
Other versions
JPH0115357B2 (en
Inventor
Hideo Kasokabe
香宗我部 秀雄
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.)
IHI Corp
Original Assignee
IHI Corp
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 IHI Corp filed Critical IHI Corp
Priority to JP9327882A priority Critical patent/JPS58212900A/en
Publication of JPS58212900A publication Critical patent/JPS58212900A/en
Publication of JPH0115357B2 publication Critical patent/JPH0115357B2/ja
Granted legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B30PRESSES
    • B30BPRESSES IN GENERAL
    • B30B15/00Details of, or accessories for, presses; Auxiliary measures in connection with pressing
    • B30B15/04Frames; Guides
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B30PRESSES
    • B30BPRESSES IN GENERAL
    • B30B1/00Presses, using a press ram, characterised by the features of the drive therefor, pressure being transmitted directly, or through simple thrust or tension members only, to the press ram or platen
    • B30B1/10Presses, using a press ram, characterised by the features of the drive therefor, pressure being transmitted directly, or through simple thrust or tension members only, to the press ram or platen by toggle mechanism
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B30PRESSES
    • B30BPRESSES IN GENERAL
    • B30B7/00Presses characterised by a particular arrangement of the pressing members
    • B30B7/04Presses characterised by a particular arrangement of the pressing members wherein pressing is effected in different directions simultaneously or in turn

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Press Drives And Press Lines (AREA)

Abstract

PURPOSE:To make construction lighter and simpler and to improve loading endurance in a titled press provided with a single action press behind a vertical double action press, by specifying the direction of a driving shaft and the connection of an inner slide. CONSTITUTION:A driving shaft 4 in parallel with the transfer direction 3 of the work is provided in the upper part of a vertical double action press 1 before a single action press 2. Link devices 9 which move an inner slide 8 upward or downward by means of upper and lower link mechanisms 5, 7 and upper and lower connection links 6 connected to the shaft 4 and operated by the same are provided on the right and left of the press 1. Link devices 11 which are connected to the shaft 4 and move an outer slide 10 upward and downward are provided on the right and left in the upper part of a structural body. The slide 8 here is supported with an oscillation shaft bearing 23 by means of a lifting link 25 and a lower triangular link 26 and is moved upward or downward when the link 26 is turned by the tensile force of the link 6. Since the greater part of the reaction of the load on the slide 8 during pressing is received by the bearing 23, the link 6 and the mechanism 5 are made into the strong and light construction. The power transmission mechanism is made simpler as the shaft 4 is provided in parallel with the direction 3.

Description

【発明の詳細な説明】 ンスファプレスに関する。[Detailed description of the invention] Regarding Spha Press.

近年、絞り刀ロエ後の被加工例の反転運拗とそのための
装置を省略するために、金型の天地を逆にして雄型を取
付けたインナースライドを下方より押上げ作動させ雌型
をつけたアウタースライドを上部から下降させるよう番
こした上下複動プレスを第1工程に設け 該上下複動プ
レスの後方に、フィードバーを介して順次被加工物を移
送しながらプレス加工を行う1個又は複数の単動プレス
を一体構造に設けたトランスファプレスが考えられてい
る。
In recent years, in order to avoid the necessity of reversing the workpiece after the wringer Loe and to omit the necessary equipment, the mold is turned upside down and the inner slide with the male mold attached is pushed up from below to attach the female mold. A vertical double-action press is installed in the first process, with an outer slide arranged to descend from the top. Behind the vertical double-action press, there is a press that performs press forming while sequentially transferring workpieces via a feed bar. Alternatively, a transfer press in which a plurality of single-acting presses are provided in an integrated structure has been considered.

第1図はその一例を示すものて、上下複動プレス(cz
)の後方に複数の単動プレス(b)を備えたトランスフ
アブレスの上部に、フィードバー(c)による被加工物
の移送方向(d)と直角方向の軸(glをもつ複数の歯
車(1)からなる動力伝達機構(g)を設け、該動力伝
達機構(y)に連結した駆動輪Ih)及び該駆動輪(h
)により作動するようにしたリンク(jlを介して昇降
作動する上下連結リンク(jlを上下複蛎プレス(α)
の四隅に設け、且つ前記上下連結リンク(j)の下端部
にインナースライドf&lを直接取付けるようlこし、
また前記リンク(ifに連動するリンク機411(11
を介して昇降するようにしたア’7 ター スライド(
−を前記インナースライド(k) (7)上側に設ける
と共に、前記動力伝達機構(g)に遅町して固定下型f
zlに対し、昇降作動を行う昇降上型(olを単動ブレ
ス(b)に設ケ−’r ’、−p ル。
Figure 1 shows an example of this type of press.
) and a plurality of gears (gl) with axes (gl) perpendicular to the direction (d) of conveying the workpiece by the feed bar (c). A power transmission mechanism (g) consisting of 1) is provided, and a drive wheel Ih) connected to the power transmission mechanism (y) and a drive wheel (h
) operated by a link (a vertical connecting link that moves up and down via jl (jl is an upper and lower double press (α))
provided at the four corners of the upper and lower connecting links (j) so that the inner slides f&l can be directly attached to the lower ends of the upper and lower connecting links (j);
Also, the link machine 411 (11
A'7 A'tar slide (
- is provided on the upper side of the inner slide (k) (7), and the fixed lower mold f is connected to the power transmission mechanism (g).
For zl, there is an elevating type that performs elevating and lowering operations (ol is installed on a single-acting brace (b) - 'r', -p).

しかし上記従来装置においては、止子連結リンク(j)
がインナースライドf&lを直接甲り下げた構成を有し
ているために、プレス時の衝撃的な大荷重が直接上下連
結リンク(jl及びリンク(j)等に作用することにな
り、強度上に問題を生じる。
However, in the above conventional device, the stop connecting link (j)
has a structure in which the inner slides f&l are directly lowered, so a large impact load during pressing will directly act on the upper and lower connecting links (jl and link (j), etc., resulting in an increase in strength. cause problems.

またこうした強度上の問題を解消するためには、各部の
重量増大及びそれによる装置全体の大型化を招来する問
題がある。また、前記上下複動プレス(α)ヤこの後方
に配した単動ブレX (A)とを連結する動力伝達機’
III (y)を被加工物の移送方向(d)と直角方向
の軸(e)をもつ歯車(イ)にて構成しているため、多
数の中間歯車等を要して動力伝達機’IN (y)が非
常に複雑且つ高価となる問題がある。
Furthermore, in order to solve these strength problems, there is a problem in that the weight of each part increases and the overall size of the device increases accordingly. In addition, a power transmission unit connects the vertical double-acting press (α) and the single-acting brake X (A) located behind it.
III (y) is composed of a gear (a) with an axis (e) perpendicular to the workpiece transfer direction (d), so a large number of intermediate gears etc. are required and the power transmission 'IN' There is a problem that (y) is very complicated and expensive.

本発明は、こうした従来の問題点に鑑みてなしたもので
、トランスファプレスの駆動軸を被加工物の移送方向と
平行に設けると共にインナースライド用リンク装量を上
下複動プレスの移送方向の左右両脇に設け、且つインナ
ースライド用リンク装置の上下連結リンク下端を、イン
ナースライドの負荷反力の大部分を構造体下部の軸受で
受けることができるようにした下部三角リンクを含む下
部リンク機構を介してインナースライドに連結すること
により、構造の軽量化及び簡略化、負荷強度の向上、イ
ンナースライドのモーションの自由度の拡大を図り得る
トランスファブレス、に係るものでアル。
The present invention was made in view of these conventional problems, and the drive shaft of the transfer press is provided parallel to the transfer direction of the workpiece, and the inner slide link capacity is set to the left and right of the transfer direction of the vertical double-action press. A lower link mechanism including lower triangular links provided on both sides and in which the lower ends of the upper and lower connecting links of the inner slide link device can receive most of the load reaction force of the inner slide with bearings at the lower part of the structure. This relates to a transfer brace that can reduce the weight and simplify the structure, improve the load strength, and expand the freedom of motion of the inner slide by connecting it to the inner slide via the transfer brace.

以下本発明の実施例を図■について説明する。An embodiment of the present invention will be described below with reference to FIG.

第2図は本発明の基本思想を示す概略図であり、上下複
動プレス(1)と単動プレス(2)からなるトランスフ
ァブレスの上下複動プレス部分の上側部に、被加工物の
移送方向(3)(前後イ、口方向)と平行な駆31El
)軸(4)を設け、該駆動軸(4)に連結して作動する
上部リンク機構(5)及び上下連結リンク(6)並びに
下部リンク機構(7)によ゛リインナースライド(81
の昇降作動を行わしめるようにしたインナースライド用
リンク装置(9)を上下複動プレス(1)の左右両脇(
ハ及び二)に設ける。
FIG. 2 is a schematic diagram showing the basic idea of the present invention. Drive 31El parallel to direction (3) (back and forth, mouth direction)
) A shaft (4) is provided, and a reinner slide (81
The inner slide link device (9), which allows the lifting and lowering of the
Provided in c and 2).

また前記駆動軸(4)に連結してアウタースライドQO
を昇降させるようにしたアウタースライド用リンク装置
(ロ)を構造体上部の左右両脇(ハ及び二)に設ける。
In addition, an outer slide QO is connected to the drive shaft (4).
Outer slide link devices (b) that raise and lower the outer slide are installed on both left and right sides (c and 2) of the upper part of the structure.

次に、第2図〜第6図を参照して前記インナースライド
用リンク装量(9)及びアウタースライド用リンク装置
(6)を詳細に説明する。
Next, the inner slide link loading (9) and the outer slide link device (6) will be explained in detail with reference to FIGS. 2 to 6.

インナースライド用リンク装量(9)における上部リン
ク機構(5)は、前記駆動軸(4)及び歯車@番こより
固定軸α局を中心に主歯車(至)と共に回転する偏芯輪
(ト)と、該偏芯輪(至)に一端を嵌合し矢印(至)方
向に往復動するリンク面と、該リンクα力の他端と第1
腕(至)がピン連結されて上部三角リンク揺動軸軸受Q
lを中心に回絶する上部三角リンク翰により構成さね、
該上部三角リンク翰の第2腕(2)は前記上下連結リン
ク(6)の上端にビン連結されている。また前記インナ
ースライド用リンク装置(9)の下部リンク機構(7)
は、インナースライド(8)を取囲む構造体下部の固定
部材(イ)に下部三角リンク揺動軸軸受(2)で回転自
在に支持され、第1腕(ハ)と第2腕■とを備えた下部
三角リンク四と、前記下部三角リンク翰の第1腕(ハ)
の先端とインナースライド(8)とを連結した押上げリ
ンク(イ)と、前記下部三角リンク(イ)の第2腕(イ
)と前記−ヒ下連結すイク(6)の下端とをピン連結し
た接続リンク翰と、該接続リンク翰と前記上下連結リン
ク(6)の下端との連結ビン翰と構造体下部の固定部材
(イ)に設けた固定支持ビン(1)との間を連結する揺
iJI]’lJンクc31)にて薄酸する。
The upper link mechanism (5) in the inner slide link loading (9) has an eccentric ring (to) that rotates together with the main gear (to) around the fixed axis α station from the drive shaft (4) and the gear. , a link surface whose one end is fitted to the eccentric ring (to) and reciprocates in the direction of the arrow (to), and the other end of the link α force and the first
The arm (to) is connected with a pin and the upper triangular link swing shaft bearing Q
It consists of an upper triangular link that rotates around L.
The second arm (2) of the upper triangular link is connected to the upper end of the upper and lower connecting links (6). Also, the lower link mechanism (7) of the inner slide link device (9)
is rotatably supported by a lower triangular link swing shaft bearing (2) on a fixed member (a) at the bottom of the structure surrounding the inner slide (8), and connects the first arm (c) and the second arm (■). the lower triangular link 4 and the first arm of the lower triangular link (c);
The push-up link (A) connecting the tip of the inner slide (8), the second arm (A) of the lower triangular link (A), and the lower end of the lower connecting link (6) with a pin. Connection between the connected connecting link frame, the connecting link frame and the lower end of the upper and lower connecting links (6), and the fixed support bin (1) provided on the fixing member (A) at the lower part of the structure. Add dilute acid to the solution with a gentle shake.

また、アウタースライド用リンク装置α℃は、第4図及
び第6図に示す如く、前記上部リンク機構(5)と同様
に、駆動軸(4)及び歯車(2)により固定軸Q4)を
中心に主歯車四′と共に回転する偏芯輪α均′と、上部
三角リンク揺i軸軸受09′を中心に回動する三角リン
ク翰と、前記偏芯輪(至)に一端を、上部三角リンク翰
′の第1腕(至)の先端に他端を嵌合したリンクaη′
と、固定軸α荀を中心に揺動し前記三角リンク翰の第2
腕Qηの先端に接続リンク′:32を介して連結した別
の三角リンク□□□)と、該三角リンク(至)の他端と
アウタースライドαOとを連結する連結杆(財)にて構
成する。図中(ハ)はガイド、□□□はアウタースライ
ドαOに備えた上金型、(3?)はインナースライド(
8)にストール(41を介して取付けた下金型(インナ
ー)、關は上金型間の外周部との当接によりプレス直前
に被加工物外縁を挾持する下金型(アウター)を示す。
In addition, as shown in FIGS. 4 and 6, the outer slide link device α℃ is centered around the fixed shaft Q4) by the drive shaft (4) and gear (2), similar to the upper link mechanism (5). The eccentric ring α is rotated with the main gear 4', the triangular link is rotated around the upper triangular link oscillating i-axis bearing 09', and the upper triangular link has one end connected to the eccentric ring. A link aη′ whose other end is fitted to the tip of the first arm (to) of the 翰′
, the second triangular link swivels around the fixed axis α
Consists of another triangular link □□□) connected to the tip of the arm Qη via a connecting link ′: 32, and a connecting rod connecting the other end of the triangular link (to) and the outer slide αO. do. In the figure, (c) is the guide, □□□ is the upper mold for the outer slide αO, and (3?) is the inner slide (
8) shows the lower mold (inner) attached via the stall (41), and the lower mold (outer) that clamps the outer edge of the workpiece immediately before pressing by contacting the outer periphery between the upper molds. .

上記トランスファプレスによると、上下複動プレス(1
)のインナースライド(8)が、上部リンク機構(5)
と下部リンク機構(7)を備えたインナースライド用す
ンク装#L(9)により昇降作動を・行うよう構成され
ているため、プレス時における大きな負荷の極く一部を
上下連結リンク(6)が受は持つ構造となっている。即
ち、インナースライド(8)を押上げリンク(ハ)及び
下部三角リンク(ホ)を介して下部三角リンク揺動軸軸
受(イ)に支持させ、前記下部三角リンク(イ)を前記
上下連結リンク(6)の引張り力にて回部させることに
より前記インナースライド(8)の昇降を行うようシこ
しているのて一プレス時におけるインナースライド(8
)への負荷の反力の大部分を下部三角リンク揺戴軸軸受
(ホ)で受けさせることができ、従って上下連結リンク
(6)及び上部リンク機構(5)を小容量の強度をもつ
軽量な構造のものとすることができる。
According to the above transfer press, the vertical double action press (1
) is the inner slide (8) of the upper link mechanism (5).
Since the inner slide link #L (9) is equipped with a lower link mechanism (7) and a lower link mechanism (7) for lifting and lowering, a small portion of the large load during pressing is transferred to the upper and lower connecting links (6). ) is the structure of the uke. That is, the inner slide (8) is supported by the lower triangular link swing shaft bearing (A) via the push-up link (C) and the lower triangular link (E), and the lower triangular link (A) is connected to the upper and lower connecting links. The inner slide (8) is moved up and down by rotating it with the tensile force of (6).
) can receive most of the reaction force of the load on the lower triangular link rocking shaft bearing (e), thus making the upper and lower connecting links (6) and the upper link mechanism (5) lightweight with small capacity and strength. It can have a similar structure.

更に、前記インナースライド用すンク装宜(9)及びア
ウタースライド用リンク装置αηを、上下複文プレス(
1)における被加工物移送方向(3)の左右両脇(・・
及び二)に配置するようにして、それらの駆動を行う1
躯動軸(4)を被加工物移送方向(3)に沿う方向即ち
前後イ、口方向に設けているので、第1工程の上下複動
プレス(1)から後方の単動プレス(2)への動力伝達
機構を大幅に簡略化することができる。また前記インナ
ースライド(8)とアウタースライドαOの作(を、第
4図に示すように駆動軸(4)から別々の歯車(6)主
歯車(至)及びdα騰′を介して腿勧される別個のリン
ク機構により行うようにすることにより、前記主歯車(
至)と亜に取付けた偏芯輪Q5とσυ′との位相を変え
て前記インナースライド(8)とアウタースライド00
の作動の位相のずれを任意に設計することができる。ま
た下部リンク機構(7)はリンク機構設計上自由度が大
きいので、インナースライド(8)のモーノヨンをかな
り自由に設計できる。
Furthermore, the inner slide link device (9) and the outer slide link device αη are connected to the upper and lower compound presses (
Both left and right sides of the workpiece transfer direction (3) in 1)
and 2) to drive them by placing them in
Since the sliding axis (4) is provided in the direction along the workpiece transfer direction (3), that is, in the front-rear direction, the vertical double-action press (1) in the first step and the rear single-action press (2) The power transmission mechanism to can be greatly simplified. In addition, the operation of the inner slide (8) and the outer slide αO is transferred from the drive shaft (4) via separate gears (6), main gears (to), and The main gear (
The inner slide (8) and outer slide 00 are adjusted by changing the phases of the eccentric wheels Q5 and συ' attached to
The phase shift of the operation can be arbitrarily designed. Further, since the lower link mechanism (7) has a large degree of freedom in link mechanism design, the inner slide (8) can be designed quite freely.

同、本発明は上記実施例にのみ限定されるものではなく
〜インナースライド用すンク装宜(9)の上部リンク機
構(5)の上部三角リンク翰の揺動軸とアウタースライ
ド用リンク装置αυの上部三角リンク圀′の揺動軸とを
一体の軸として共通部の省略を図ることも可能であるこ
と、アラタースライド用リンク装置a1は図示以外の種
々の方式ノモのを採用しても良いこと、インナースライ
ド用主歯車(至)とアクタ−スライド用主歯車03′と
を共通としても良いこと、偏芯輪をクランクにおきかえ
ても良いこと、その他本発明の要旨を逸脱しない範囲内
において種々変更を加え得ること、等は勿論である。
Similarly, the present invention is not limited to the above-mentioned embodiments, and the swing shaft of the upper triangular link of the upper link mechanism (5) of the inner slide sink arrangement (9) and the outer slide link device αυ It is also possible to omit the common part by using the swing axis of the upper triangular link frame as an integral axis, and the link device a1 for the rear slide may employ various types other than those shown in the drawings. It is good that the main gear for the inner slide (to) and the main gear for the actor slide 03' may be common, that the eccentric wheel may be replaced with the crank, and other things within the scope of the gist of the present invention. It goes without saying that various changes can be made to the above.

上述した本発明のトランスファプレスによれば、インナ
ースライドにおけるプレス時の大きな負荷反力の大部分
を下部三角リンク揺動軸軸受を介して固定部材に受けさ
せることができるので、上下連結リンク及び上部リンク
機構の必要強度を低減でき、また小さな強度で大きなプ
レス荷重を作用させる場合にも容易に適用でき、しかも
インナースライド用リンク装置及びアウタースライド用
リンク装置を上下複動プレスの被加工物移送方向の左右
両脇に配置し且つそれらの駆動を行う駆動軸を前記被加
工物の移送方向に沿って設けることlこより、駆動軸を
トランスファプレスのすべてのプレヌに共用させて動力
伝達機構の大幅な簡略化を図ることができる等、種々の
優ねた効果を奏し得る。
According to the above-described transfer press of the present invention, most of the large load reaction force during pressing on the inner slide can be received by the fixed member via the lower triangular link swing shaft bearing, so that the upper and lower connecting links and the upper The required strength of the link mechanism can be reduced, and it can be easily applied when applying a large press load with a small strength.Moreover, the inner slide link device and the outer slide link device can be used in the workpiece transfer direction of a vertical double-action press. By disposing the drive shafts on both the left and right sides of the transfer press and providing the drive shafts for driving them along the transfer direction of the workpiece, the drive shaft is shared by all planes of the transfer press, and the power transmission mechanism is significantly reduced. Various superior effects such as simplification can be achieved.

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

第1図は従来のトランスフアゲレスの一例を示す側面図
、第2図は本発明の基本思想を概略的に示した斜視図、
第3図は本発明の一実施例を示す正面図、第4図は第3
図の切断側面図、第5図はインナースライド用リンク装
置を線図化して示した説明図、第6図はアウタースライ
ド用リンク装置を線図化して示した説明図である0 (1)は上下複動プレス、(2)は単動プレス、(3)
は移送方向、(4)は駆動軸−(5)は上部リンク機構
、(6)は上下連結リンク、(7)は下部リンク機構、
(8)はインナースライド1、(9)はインナースライ
ド用リンク装置、αOはアウタースライド、(9)はア
ウタースライド用リンク装置、αηαη′はリンク、翰
翰′は上部三角リンク、翰は固定部材、□□□は下部三
角リンク揺動軸軸受、(ホ)は下部三角リンク、(31
)は揺動リンク、(3りは接続リンクを示す0特許出願
人 石川島播磨重工業株式会社 二〜\・−、 第3図 第4図
FIG. 1 is a side view showing an example of a conventional transfer gelless, FIG. 2 is a perspective view schematically showing the basic idea of the present invention,
FIG. 3 is a front view showing one embodiment of the present invention, and FIG. 4 is a front view showing one embodiment of the present invention.
0 (1) is a cutaway side view of the figure, FIG. 5 is an explanatory diagram showing the inner slide link device in diagram form, and FIG. 6 is an explanatory diagram showing the outer slide link device in diagram form. Vertical double acting press, (2) is single acting press, (3)
is the transfer direction, (4) is the drive shaft, (5) is the upper link mechanism, (6) is the upper and lower connecting link, (7) is the lower link mechanism,
(8) is the inner slide 1, (9) is the link device for the inner slide, αO is the outer slide, (9) is the link device for the outer slide, αηαη' is the link, Kankan' is the upper triangular link, Kan is the fixing member , □□□ is the lower triangular link swing shaft bearing, (E) is the lower triangular link, (31
) indicates a swinging link, (3 indicates a connecting link 0 Patent applicant Ishikawajima Harima Heavy Industries Co., Ltd. 2~\・-, Figure 3 Figure 4

Claims (1)

【特許請求の範囲】[Claims] 1)被加工物移送方向最前部に上下複動ブレスを配し、
その後方に単動プレスを備えた一体構造のトランスファ
プレスにおいて、前記被加工物移送方向に沿って構造体
上部に軸芯を平行に設けた駆動軸と該駆動軸によって駆
動される歯車を介し同じ回転をするアウタースライド用
とインナースライド用の偏芯軸を設け、アウタースライ
ド用の偏芯軸に嵌合したリンクによってアウタースライ
ド用リンク機檎を駆動しアウタースライドを上下動させ
るよう構成し、一方インナースライド用の偏芯軸に嵌合
したリンクによって回動する上部リンク機構の一端に上
下連結リンクの上端を回転自任に嵌合し、且つインナー
スライドをガイドする構造体下部に回転自在に支持した
揺動リンクの一端を前記上下連結リンクの下端に回転自
在に嵌合し、この揺動リンクによって下部インナースラ
イド用リンク機構を駆動し、インナースライドを上下動
させるよう構成した上下複動プレス駆動装置を、前記被
加工物移送方向の両脇に設けることを特徴とすルトラン
スファプレス。
1) A vertical double action brace is placed at the forefront in the workpiece transfer direction,
In an integrated transfer press equipped with a single-acting press behind it, a drive shaft whose axis is parallel to the upper part of the structure along the workpiece transfer direction and a gear driven by the drive shaft are used. A rotating eccentric shaft for the outer slide and an inner slide are provided, and a link fitted to the eccentric shaft for the outer slide drives the outer slide link machine to move the outer slide up and down. The upper end of the upper and lower connecting links is rotatably fitted to one end of the upper link mechanism which rotates by a link fitted to the eccentric shaft for the inner slide, and is rotatably supported at the bottom of the structure that guides the inner slide. A vertical double action press drive device configured such that one end of the swinging link is rotatably fitted to the lower end of the vertical connecting link, and the swinging link drives a link mechanism for a lower inner slide to move the inner slide up and down. are provided on both sides of the workpiece transfer direction.
JP9327882A 1982-06-01 1982-06-01 Transfer press Granted JPS58212900A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP9327882A JPS58212900A (en) 1982-06-01 1982-06-01 Transfer press

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP9327882A JPS58212900A (en) 1982-06-01 1982-06-01 Transfer press

Publications (2)

Publication Number Publication Date
JPS58212900A true JPS58212900A (en) 1983-12-10
JPH0115357B2 JPH0115357B2 (en) 1989-03-16

Family

ID=14077965

Family Applications (1)

Application Number Title Priority Date Filing Date
JP9327882A Granted JPS58212900A (en) 1982-06-01 1982-06-01 Transfer press

Country Status (1)

Country Link
JP (1) JPS58212900A (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5586495A (en) * 1991-12-27 1996-12-24 Kabushiki Kaisha Komatsu Seisakusho Transfer press
US5595111A (en) * 1992-06-27 1997-01-21 L. Schuler Gmbh Press installation comprising longitudinal traverses
US6000327A (en) * 1995-11-02 1999-12-14 Komatsu Ltd. Work conveyor of transfer press
JP2002321093A (en) * 2001-04-25 2002-11-05 Komatsu Ltd Slide drive device for press
ITMI20101949A1 (en) * 2010-10-22 2012-04-23 Magellano S R L PERFECT MULTIFUNCTIONAL PRESS

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5274966A (en) * 1975-12-19 1977-06-23 Komatsu Ltd Mechanical press
JPS56142900U (en) * 1980-03-28 1981-10-28

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5274966A (en) * 1975-12-19 1977-06-23 Komatsu Ltd Mechanical press
JPS56142900U (en) * 1980-03-28 1981-10-28

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5586495A (en) * 1991-12-27 1996-12-24 Kabushiki Kaisha Komatsu Seisakusho Transfer press
US5595111A (en) * 1992-06-27 1997-01-21 L. Schuler Gmbh Press installation comprising longitudinal traverses
US6000327A (en) * 1995-11-02 1999-12-14 Komatsu Ltd. Work conveyor of transfer press
JP2002321093A (en) * 2001-04-25 2002-11-05 Komatsu Ltd Slide drive device for press
JP4717252B2 (en) * 2001-04-25 2011-07-06 株式会社小松製作所 Press slide drive device
ITMI20101949A1 (en) * 2010-10-22 2012-04-23 Magellano S R L PERFECT MULTIFUNCTIONAL PRESS

Also Published As

Publication number Publication date
JPH0115357B2 (en) 1989-03-16

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