JPH01241383A - Rotary arc welding torch - Google Patents
Rotary arc welding torchInfo
- Publication number
- JPH01241383A JPH01241383A JP6564588A JP6564588A JPH01241383A JP H01241383 A JPH01241383 A JP H01241383A JP 6564588 A JP6564588 A JP 6564588A JP 6564588 A JP6564588 A JP 6564588A JP H01241383 A JPH01241383 A JP H01241383A
- Authority
- JP
- Japan
- Prior art keywords
- annular member
- circular hole
- eccentricity
- rotating
- torch
- 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
Links
- 238000003466 welding Methods 0.000 title claims description 24
- 244000292604 Salvia columbariae Species 0.000 description 4
- 235000012377 Salvia columbariae var. columbariae Nutrition 0.000 description 4
- 235000001498 Salvia hispanica Nutrition 0.000 description 4
- 235000014167 chia Nutrition 0.000 description 4
- 238000000034 method Methods 0.000 description 3
- 238000012544 monitoring process Methods 0.000 description 2
- 241000972773 Aulopiformes Species 0.000 description 1
- 101100516806 Caenorhabditis elegans nog-1 gene Proteins 0.000 description 1
- 239000011324 bead Substances 0.000 description 1
- 230000007547 defect Effects 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 239000003292 glue Substances 0.000 description 1
- 238000002844 melting Methods 0.000 description 1
- 230000008018 melting Effects 0.000 description 1
- 239000002184 metal Substances 0.000 description 1
- 230000035515 penetration Effects 0.000 description 1
- 235000019515 salmon Nutrition 0.000 description 1
Landscapes
- Arc Welding In General (AREA)
Abstract
Description
【発明の詳細な説明】
〔産業上の利用分野〕
この発明は回転アーク溶接1・−チに関するものであろ
1J
〔従来の技術〕
アーク溶接においてアークを1・−チ軸心と平行な軸の
回りに拘束で周回運動させ、アークがあたかも回転直径
と等しい筒状を呈するようにずろ回転アーク溶接法では
、溶融金属が遠心力によって適度に分散されて膚平なビ
ードが形成され、深い溶は込みが生じないため、溶接欠
陥のない高速溶接が可能である。[Detailed Description of the Invention] [Industrial Application Field] This invention relates to rotating arc welding 1. In the staggered rotating arc welding method, the molten metal is dispersed appropriately by centrifugal force to form a flat bead, and deep melting is prevented. Since no welding occurs, high-speed welding without welding defects is possible.
このような回転アーク溶接に用いる従来のト−チは、回
転軸心に対して偏心した円孔を有する回転部材の前記円
孔内に)・−チアノズルを挿通して、回転部材の回転に
より1−一チノズルをすりこぎ遅動させることにより1
・−チアノズル先端のアークを前記回転軸心回りに周回
運動させている。Conventional torches used for such rotary arc welding have a circular hole eccentric to the rotational axis of a rotating member, and a chia nozzle is inserted into the circular hole, and a chia nozzle is inserted into the circular hole by the rotation of the rotating member. -1 by slowing down the nozzle
- The arc at the tip of the chia nozzle is moved around the rotation axis.
一般にこの種の回転アーク溶接ではアークの回転速度は
一定であり、これは溶接開先面上におけるアークポイン
トの螺旋軌跡の位置に対応して溶接条件を電気的に監視
または制御するうえで好都合であることによる。Generally, in this type of rotating arc welding, the rotational speed of the arc is constant, which is convenient for electrically monitoring or controlling the welding conditions in response to the position of the helical trajectory of the arc point on the welding groove surface. Depends on something.
ところで回転アークの偏心量は一定回転速度のもとてア
ークに作用する遠心力に直接影響を与え、従って溶接対
重に応じて溶は込みを加減するパラメータの一つとして
前記偏心量を可変調整できることが1・−チのm構に求
められている。Incidentally, the amount of eccentricity of the rotating arc directly affects the centrifugal force acting on the arc at a constant rotation speed, and therefore, the amount of eccentricity is variably adjusted as one of the parameters for adjusting penetration depending on the welding weight. What is required of the m-structure of 1.-chi.
従来、この偏心量の可変調整は、偏心量の異なる前記回
転部材を準備しておいて交換するか、或い1iすりこぎ
運動の支点から回転部材までの距離を変えるかして行っ
ていた。Conventionally, this variable adjustment of the amount of eccentricity has been carried out by preparing and replacing rotating members with different amounts of eccentricity, or by changing the distance from the fulcrum of the 1i grinding motion to the rotating member.
偏心量の異なる@転部材を準備しておいて交換する方式
では、その都度、装置を分解して組立て直さなければな
らないだけでなく、溶接開先面上におけろアークポイン
トの螺旋軌跡上の方向位置と回転駆動81構の回転角位
置との相対関係が分解組立ての度に崩れてしまい、前述
の溶接条件の監視および制御の同期がずれるという問題
点があり、またすりこぎ運動の支点から回転部材までの
距喉を変える方式では機構が複雑になるという問題点が
ある。In the method of preparing and replacing rotating parts with different amounts of eccentricity, not only do you have to disassemble and reassemble the device each time, but you also have to disassemble and reassemble the device each time. There is a problem in that the relative relationship between the directional position and the rotational angular position of the rotary drive 81 structure collapses every time it is disassembled and reassembled, causing the aforementioned synchronization of the monitoring and control of welding conditions to deviate. The method of changing the distance to the rotating member has the problem that the mechanism becomes complicated.
この発明で課題とするところは、分解再組立てを不要と
し、溶接開先面上におけるアークポイノ)・の螺旋軌跡
上の方向位置と回転駆動機構の回転角位置との相対関係
も簡単に再現でき、しかも単純な構造で偏心量を簡単に
可変調整することのできる回転アーク溶接1・−チを提
供することである。The object of this invention is to eliminate the need for disassembly and reassembly, and to easily reproduce the relative relationship between the directional position on the helical locus of the arc point on the weld groove surface and the rotational angular position of the rotational drive mechanism. Moreover, it is an object of the present invention to provide a rotary arc welding device 1.--chi which has a simple structure and can easily and variably adjust the amount of eccentricity.
この発明では、回転軸心に対して偏心した円孔を有する
回転部材の前記円孔内に1・−チ、ノズ7Lを挿通して
、回転部材の回転によりトーチノズルをすりこぎ運動さ
せることによりトーチノズル先端のアークを前記回転軸
心回りに周回連動させろ回転アーク溶接1・−チにおい
て、前記回転部材を、外部から回転駆動を受ける第1の
環状部材と、この第1の環状部材の回転軸心と同軸に相
対回転角をFJ整可能に第1の環状部材に取付けられた
第2の環状部材と、前記回転軸心から偏心した軸心を中
心にして相対回転角を調整可能に第2の環状部オイに取
り付けられた第3の環状部オイとで主に構成し、前記第
3の環状部材にその軸心から偏心して前記円孔を設ける
ことにより、前述課題を達成したものである。In this invention, the torch nozzle is formed by inserting the nozzle 7L into the circular hole of a rotary member having a circular hole eccentric with respect to the rotation axis, and causing the torch nozzle to perform a sliding motion by the rotation of the rotary member. In rotary arc welding 1--ch, in which the arc at the tip is linked to revolve around the rotation axis, the rotating member is connected to a first annular member that is rotationally driven from the outside, and a rotation axis of the first annular member. a second annular member attached to the first annular member so that the relative rotation angle can be adjusted coaxially with the first annular member; The above object is achieved by mainly comprising a third annular member attached to an annular member, and the circular hole is provided eccentrically from the axis of the third annular member.
この発明の回転アーク溶接1・−チでは、第2の回転部
材に対して第3の回転部材を相対的に所望角だけ回転す
ると、第3の@転部材1ζ偏心して設けられた円孔の前
記第1の回転部材の回転軸心に対する偏心量が変わり、
これによってアークの回転半径を無段階で可変調整でき
る。この場合、前記回転調整で第1の回転部材に対する
円孔の回転角位置が移動するが、これは第2の回転部材
と第3の回転部材とを一体的に第1の回転部材に対して
逆方向に所望角度だけ戻してやればもとの角度位置に合
オ)せることができる。In rotating arc welding 1--H of the present invention, when the third rotating member is rotated by a desired angle relative to the second rotating member, the circular hole provided eccentrically in the third rotating member 1ζ is opened. The amount of eccentricity of the first rotating member with respect to the rotation axis changes,
This allows the radius of rotation of the arc to be adjusted steplessly. In this case, the rotational adjustment moves the rotational angular position of the circular hole with respect to the first rotating member, but this is because the second rotating member and the third rotating member are integrally moved relative to the first rotating member. By returning the desired angle in the opposite direction, it can be adjusted to the original angular position.
この発明の実施例を図面と共に説明すれば以下の通りで
ある。Embodiments of the present invention will be described below with reference to the drawings.
第1図はこの発明の一実施例に係る回転アーク溶接1・
−チの要部を示す縦断面図、第2図は第1図の■−■線
矢視における各環状部材の軸心の相関を拡大して示す説
明図である。FIG. 1 shows rotating arc welding 1 according to an embodiment of the present invention.
FIG. 2 is an explanatory view showing, in an enlarged manner, the relationship between the axes of the respective annular members in the direction of the arrows ``--'' in FIG. 1.
図1.=おいて1は水冷シャケ・ソト構造の1・−チ、
ノズルであり、この中に上部から溶接ワイヤ2が通され
、下端から突き出して溶接部へ供給されるようになって
いる。】・−チ、ノズル1は、1・−チブロック3に対
して自fill :A心軸受4によって支持されており
、この自動調心軸受4がすりこぎ連動の支点となってい
る。1・−チブロック3には、環状ベアリング5n、5
bによって回転駆動筒6が回転可能に支持されており、
前記トーチノズル1はこの駆動筒6の中を貫通している
。駆動筒61.tそのG1部に歯車7を有し、ブロック
3に固定されたで−ク8の出力歯車9により回転されろ
ようになっている。10は駆動筒6の下端に一体に設け
られた第1の環状部材としてのり、ゲであり、駆動部6
0回転軸心Oと同心の円形内周壁10z+を有する。こ
のリング10内には、第2の環状部材として、前記円形
内周壁10a内にぴったり嵌合する中間輪心リング11
が嵌められており、両者間の相対回転は止めねじ13を
緩めたときだけ可能になっている。中間偏心リング11
はその中心(回転軸心O上にある)から距iaだけ偏心
した内孔11a (その中心をAで示す)を有している
。この中間偏心リング11内には、第3の環状部材とし
て、前記偏心内孔11al;’]lこびったり嵌合する
内側傷心リング12が嵌められており、両者間の相対回
転は止めねじ14を緩めたときだけ可能になっている。Figure 1. =, 1 is 1-chi of water-cooled salmon soto structure,
This is a nozzle, into which the welding wire 2 is passed from the upper part, protrudes from the lower end, and is supplied to the welding part. The nozzle 1 is supported by a self-aligning bearing 4 with respect to the block 3, and this self-aligning bearing 4 serves as a fulcrum for interlocking the pestle. 1.-The block 3 includes annular bearings 5n, 5.
The rotary drive cylinder 6 is rotatably supported by b,
The torch nozzle 1 passes through the drive cylinder 6. Drive cylinder 61. It has a gear 7 in its G1 portion, which is rotated by an output gear 9 of a drive 8 fixed to the block 3. 10 is a glue as a first annular member integrally provided at the lower end of the drive tube 6;
It has a circular inner circumferential wall 10z+ concentric with the 0-rotation axis O. Inside this ring 10, as a second annular member, there is an intermediate ring 11 that fits snugly into the circular inner circumferential wall 10a.
is fitted, and relative rotation between the two is possible only when the set screw 13 is loosened. Intermediate eccentric ring 11
has an inner hole 11a (the center is indicated by A) which is eccentric from the center (located on the rotational axis O) by a distance ia. Inside this intermediate eccentric ring 11, an inner centering ring 12 is fitted as a third annular member into which the eccentric inner hole 11al; This is possible only when you loosen the .
内側側゛心リング12はその中心Aから距離すだけ偏心
した円孔12a (その中心をBで示す)を有しており
、この円孔12a内に自動調心軸受15によって前記1
−一チノズル1が相対回転自在に保持されている1J
このような構成の回転アーク溶接1・−チでは、モータ
8によって歯車9,8を介して駆動筒6を回転させろと
、回転軸心0シこ対する円孔12aの中心BL、D偏心
量で自動調心軸受】5が)・−チアノズル1を偏心回転
させ、トーチノズル1は上方で別の自動調心軸受4によ
って回転軸心O上に支持されているから、この自動調心
軸受4による支持部を支点として前記偏心回転によるす
りこぎ運動を行う。その結果、トーチノズル1の先端の
ワイヤから生じるアークが回転軸心0の周囲を周回し、
高速での回転アークが得られる。The inner centering ring 12 has a circular hole 12a (the center of which is indicated by B) which is eccentric by a distance from its center A, and a self-aligning bearing 15 is provided in the circular hole 12a to accommodate the above-mentioned one.
-1J in which the nozzle 1 is held relatively rotatable.In the rotating arc welding 1-1 with such a configuration, the drive cylinder 6 is rotated by the motor 8 via the gears 9, 8, and the rotation axis 0 is set. 5) - The chia nozzle 1 is eccentrically rotated, and the torch nozzle 1 is placed on the rotation axis O by another self-aligning bearing 4 above. Since it is supported, the grinding motion by the eccentric rotation is performed using the support provided by the self-aligning bearing 4 as a fulcrum. As a result, the arc generated from the wire at the tip of the torch nozzle 1 revolves around the rotation axis 0,
A rotating arc at high speed can be obtained.
回転アークの回転直径は第2図で回転軸心Oと円孔12
aの中心Bとの間の距離で定まる。この偏心量の調整は
以下のようにして行われる。The rotation diameter of the rotating arc is shown in Figure 2 between the rotation axis O and the circular hole 12.
It is determined by the distance between a and the center B. Adjustment of this amount of eccentricity is performed as follows.
即ち、先ず止めねし14が緩められ、第2図に示すよう
に中間偏心リング11に対して内側偏心リング12が所
望角度θだけ回される。これにより第2図で点Bにあっ
た円孔12aの中心が点Cに移動し、もとの偏心量(0
8間の距離)が新たな偏心1(00間の距離)に調整さ
れろ。その後、止めオー1じ14を締め゛(’Jノグ1
1,12間の相対回転を阻止したのらに止めねじ13を
緩め、これら丙すング11.12を一体的ICリング1
0に対して逆方向に相対回転させる。この回転の戻し量
は、第2図における角度α、即ち点Cと八人とが点0に
関してなす角度である。これによって回転軸心Oの回り
での円孔12Aの中心位置は偏心量調整の前後で同じ方
向(第2図で3時方向)を保ち、偏心量の調整を行って
も溶接開先面上におけろアークポインj・の螺旋軌跡上
の方向位置と回転駆動機構の回転角位置との相対関係が
崩れることはない。That is, first, the set screw 14 is loosened, and the inner eccentric ring 12 is rotated by a desired angle θ relative to the intermediate eccentric ring 11, as shown in FIG. As a result, the center of the circular hole 12a, which was at point B in FIG. 2, moves to point C, and the original eccentricity (0
8) is adjusted to the new eccentricity 1 (distance between 00). After that, tighten stopper O 1 14 ('J nog 1
After preventing relative rotation between 1 and 12, loosen the setscrew 13 and attach these rings 11 and 12 to the integrated IC ring 1.
Rotate relative to 0 in the opposite direction. The amount of return of this rotation is the angle α in FIG. 2, that is, the angle between point C and point 0. As a result, the center position of the circular hole 12A around the rotation axis O remains in the same direction (3 o'clock direction in Fig. 2) before and after adjusting the eccentricity, and even after adjusting the eccentricity, the center position of the circular hole 12A remains on the welding groove surface. In this case, the relative relationship between the directional position of the arc point j on the spiral locus and the rotational angular position of the rotary drive mechanism does not collapse.
尚、図示の実施例において前記中間偏心リング11の内
孔11aの偏心量aと前記内側偏心リング12の円孔1
2aの偏心ibとの関係は例えばa =bである。この
場合、合成の偏心量、即ち回転軸心Oに対する円孔12
aの中心の偏心量は零(つまり偏心無し)から2a(=
2b)の範囲で司:¥調整できる。原理的には最小偏心
量はb −a(但し、b≧0)、最大輪心N(よa 十
すとなる。In the illustrated embodiment, the eccentricity a of the inner hole 11a of the intermediate eccentric ring 11 and the circular hole 1 of the inner eccentric ring 12 are
The relationship between 2a and eccentricity ib is, for example, a=b. In this case, the combined eccentricity, that is, the circular hole 12 with respect to the rotation axis O
The amount of eccentricity at the center of a varies from zero (that is, no eccentricity) to 2a (=
Tsukasa: ¥ can be adjusted within the range of 2b). In principle, the minimum eccentricity is b - a (however, b≧0), and the maximum wheel center is N (so a).
以上に述べたように、この発明によれば、単に止めねじ
と偏心リングを操作するだけで偏心量の可変調整が可能
であり、分解再組立ては不要で、溶接開先面上におけろ
アークポイントの螺旋軌跡上の方向位置と回転駆動機構
の回転角位置との相対関係も偏心量の調整前後で同じに
保てるものである。As described above, according to the present invention, the amount of eccentricity can be variably adjusted by simply operating the set screw and the eccentric ring, and there is no need for disassembly and reassembly. The relative relationship between the directional position of the point on the helical locus and the rotational angular position of the rotary drive mechanism can also be maintained the same before and after adjusting the amount of eccentricity.
第1図はこの発明の一実施例に係る回転アーク溶接1・
−チの要部を示す縦断面図、第2図は第1図のII −
II 線矢視におけろ各環状部材の軸心の相関を拡大し
て示す説明図である。。
1: )・−チノズル、2:溶接ワイヤ、3:l・−チ
ブロック、4..15: 自動調心軸受、6−回転駆動
筒、7,9:歯車、8;モータ、10: リ。
ゲ(第1の環状部材)、11: 中間偏心リング(第2
のIm状部材)、12: 内側側心す、グ(第1の環状
部材)、12a:円孔、13,14:11ニめ オコ
じ 。FIG. 1 shows rotating arc welding 1 according to an embodiment of the present invention.
- A longitudinal cross-sectional view showing the main parts of the
II is an explanatory diagram showing, in an enlarged manner, the correlation between the axes of each annular member in the direction of the line arrows. . 1: )・-chi nozzle, 2: welding wire, 3: l・-ti block, 4. .. 15: self-aligning bearing, 6-rotation drive tube, 7, 9: gear, 8: motor, 10: ri. ge (first annular member), 11: intermediate eccentric ring (second
Im-shaped member), 12: Inner side center (first annular member), 12a: circular hole, 13, 14: 11th hole
character .
Claims (1)
円孔内にトーチノズルを挿通して、回転部材の回転によ
りトーチノズルをすりこぎ運動させることによりトーチ
ノズル先端のアークを前記回転軸心回りに周回運動させ
る回転アーク溶接トーチにおいて、 前記回転部材が、外部から回転駆動を受ける第1の環状
部材と、この第1の環状部材の回転軸心と同軸に相対回
転角を調整可能に第1の環状部材に取付けられた第2の
環状部材と、前記回転軸心から偏心した軸心を中心にし
て相対回転角を調整可能に第2の環状部材に取り付けら
れた第3の環状部材とを含み、前記第3の環状部材にそ
の軸心から偏心して前記円孔が設けられていることを特
徴とする回転アーク溶接トーチ。[Claims] A torch nozzle is inserted into a circular hole of a rotating member having a circular hole eccentric with respect to the rotation axis, and the arc at the tip of the torch nozzle is caused to move by sliding the torch nozzle by rotation of the rotating member. In the rotary arc welding torch that rotates around the rotation axis, the rotating member has a first annular member that is rotationally driven from the outside and a relative rotation angle coaxially with the rotation axis of the first annular member. a second annular member adjustably attached to the first annular member; and a third annular member attached to the second annular member adjustably relative rotation angle about an axis eccentric from the rotational axis. A rotary arc welding torch comprising: an annular member; wherein the circular hole is provided eccentrically from the axis of the third annular member.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP6564588A JPH01241383A (en) | 1988-03-22 | 1988-03-22 | Rotary arc welding torch |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP6564588A JPH01241383A (en) | 1988-03-22 | 1988-03-22 | Rotary arc welding torch |
Publications (2)
Publication Number | Publication Date |
---|---|
JPH01241383A true JPH01241383A (en) | 1989-09-26 |
JPH0536153B2 JPH0536153B2 (en) | 1993-05-28 |
Family
ID=13292955
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP6564588A Granted JPH01241383A (en) | 1988-03-22 | 1988-03-22 | Rotary arc welding torch |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPH01241383A (en) |
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH04182073A (en) * | 1990-11-15 | 1992-06-29 | Nkk Corp | Torch rotating device for high speed rotating arc welding equipment |
JPH04187374A (en) * | 1990-11-21 | 1992-07-06 | Nkk Corp | Torch rotating device for arc welding equipment rotating at high speed |
JPH0569144A (en) * | 1991-09-13 | 1993-03-23 | Nkk Corp | Rotary arc welding torch |
CN102091854A (en) * | 2011-01-14 | 2011-06-15 | 湘潭大学 | Stepless eccentricity adjustable rotating arc sensor |
CN102319938A (en) * | 2011-09-05 | 2012-01-18 | 湘潭大学 | Double-drive rotary stirring submerged arc build-up welding sensor |
CN117943767A (en) * | 2024-03-22 | 2024-04-30 | 广东博盈特焊技术股份有限公司 | Arc welding gun oscillator device |
Citations (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS5849189U (en) * | 1981-09-26 | 1983-04-02 | 日本軽金属株式会社 | Insulated panels with corrugated surface |
-
1988
- 1988-03-22 JP JP6564588A patent/JPH01241383A/en active Granted
Patent Citations (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS5849189U (en) * | 1981-09-26 | 1983-04-02 | 日本軽金属株式会社 | Insulated panels with corrugated surface |
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH04182073A (en) * | 1990-11-15 | 1992-06-29 | Nkk Corp | Torch rotating device for high speed rotating arc welding equipment |
JPH04187374A (en) * | 1990-11-21 | 1992-07-06 | Nkk Corp | Torch rotating device for arc welding equipment rotating at high speed |
JPH0569144A (en) * | 1991-09-13 | 1993-03-23 | Nkk Corp | Rotary arc welding torch |
CN102091854A (en) * | 2011-01-14 | 2011-06-15 | 湘潭大学 | Stepless eccentricity adjustable rotating arc sensor |
CN102319938A (en) * | 2011-09-05 | 2012-01-18 | 湘潭大学 | Double-drive rotary stirring submerged arc build-up welding sensor |
CN117943767A (en) * | 2024-03-22 | 2024-04-30 | 广东博盈特焊技术股份有限公司 | Arc welding gun oscillator device |
Also Published As
Publication number | Publication date |
---|---|
JPH0536153B2 (en) | 1993-05-28 |
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