EP2389267A2 - Arc welding method and arc welding apparatus - Google Patents

Arc welding method and arc welding apparatus

Info

Publication number
EP2389267A2
EP2389267A2 EP09833843A EP09833843A EP2389267A2 EP 2389267 A2 EP2389267 A2 EP 2389267A2 EP 09833843 A EP09833843 A EP 09833843A EP 09833843 A EP09833843 A EP 09833843A EP 2389267 A2 EP2389267 A2 EP 2389267A2
Authority
EP
European Patent Office
Prior art keywords
weld
workpiece
tubular member
tip
welding
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.)
Withdrawn
Application number
EP09833843A
Other languages
German (de)
French (fr)
Other versions
EP2389267A4 (en
Inventor
Daisuke Miura
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.)
Newfrey LLC
Original Assignee
Newfrey LLC
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 Newfrey LLC filed Critical Newfrey LLC
Publication of EP2389267A2 publication Critical patent/EP2389267A2/en
Publication of EP2389267A4 publication Critical patent/EP2389267A4/en
Withdrawn legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K9/00Arc welding or cutting
    • B23K9/0008Welding without shielding means against the influence of the surrounding atmosphere
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K9/00Arc welding or cutting
    • B23K9/0026Arc welding or cutting specially adapted for particular articles or work
    • B23K9/0043Locally welding a thin plate to a thick piece
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K9/00Arc welding or cutting
    • B23K9/20Stud welding
    • B23K9/201Stud welding of the extremity of a small piece on a large basis
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K9/00Arc welding or cutting
    • B23K9/20Stud welding
    • B23K9/205Means for determining, controlling or regulating the arc interval
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K2101/00Articles made by soldering, welding or cutting
    • B23K2101/006Vehicles

Definitions

  • the present invention relates to an arc welding method and arc welding apparatus for welding a weld member such as a bracket to a workpiece such as a pipe or flat plate or sheet.
  • Patent Literature 1 Arc weiding for welding a weld member such as a bracket to a workpiece such as a pipe or flat plate or sheet is well known.
  • a welding apparatus is described for welding a bracket that is a weld member, for securing a wire harness to an automobile body panel that is a workpiece.
  • the welding apparatus described in Patent Literature 1 comprises a welding head that can hold an L-shaped bracket.
  • the weiding apparatus described in Patent Literature 1 because it has a welding head that can hold an L-shaped bracket, there is no need to hold the bracket that is the weld member at the weld position on the body panel that is the workpiece.
  • Patent Literature 1 TOKKAl [Unexamined Patent Application] No. H8-019865 (Gazette)/1996
  • Patent Literature 2 TOKKAI No. 2001-105142 (Gazette) Disclosure of the Invention
  • Patent Literature 1 In the welding apparatus described in Patent Literature 1 as with ordinary commonly known welding apparatuses, the welding temperature is high, so when welding a bracket to a Stefan beam that is one type of automobile crossbeam, there is a danger that warping will develop in the Stefan beam that is the workpiece due to the heat for melting both that bracket and the Stefan beam.
  • Patent Literature 2 a method is described for welding a hollow stud having female threads formed therein to a workpiece. The end of the stud that is the welding part is formed in a shape protruding at a sharp angle in an attempt to lessen the thermal effects when welding.
  • the welding method described in Patent Literature 2 does reduce the thermal effects for stud welding when welding to a workpiece, but does not reduce the thermal effects when welding weld members in general, including brackets and the like, to a workpiece.
  • An object of the present invention is to reduce the thermal effects when welding weld members in general, including brackets and the like, to a workpiece, and to prevent deformation in the workpiece due to overheating.
  • a hollow tubular member protruding from that weld member is provided; that tubular member is formed in a hollow conical shape open at the tip, with the diameter thereof increasing from the weld member to its tip and with the tubular member of the weld member held by the welding head of the arc welding apparatus positioned so that the open tip contacts a weld location on the workpiece, the arc welding apparatus pulls the workpiece up from the workpiece, and after generating a small-current pilot arc between the tip of the tubular member and the workpiece, then generates a large-current main arc and welds the tip of the tubular member and the weld position portion of the workpiece; the arc welding apparatus presses the tip of the tubular member of the weld member held by the welding head against the workpiece, attaches
  • a hollow tubular member protruding from that weld member is provided for welding a weld member held by a welding head to a workpiece by arc welding at a weid position on the weld member;
  • the tubular member is formed in a hollow conical shape open at the tip, with the diameter thereof increasing from the weld member to its tip;
  • that arc welding apparatus operates so as, with the large-diameter open tip of the tubular member of the weld member held by the welding head in order to contact a weld location on the workpiece, to pull the workpiece up from the workpiece and after generating a small- current pilot arc between the tip of the tubular member and the workpiece, then to generate a large-current main arc and weld the tip of the tubular member and the weld position portion of the workpiece, and then to press the tip of the tubular member of the weld member held by the welding head against the workpiece, attach the tip of the tub
  • a hollow tubular member protruding from a weld member is provided at a weld position on the weld member.
  • the tubular member is formed as a hollow conical shape open at the tip, with the diameter thereof increasing from the weld member toward the tip. Therefore, the time of melting at a weidable temperature is shortened.
  • the welding time can be shortened by quite a bit, and the thermal effects on the workpiece can be reduced. Consequently, deformation or warping in the workpiece due to overheating can be prevented, and proper welding can be performed without deformation, even when the workpiece is a thin-waded materiat.
  • the tubular member that is the portion welding the weld member to the workpiece is of a hollow conical shape, melting will be effected as the welding arc generated moves, turning about the interior of the cone, effects of lines of magnetic force caused by the shape of the workpiece will then not readily be sustained, and loss of strength in the weld due to welding arc bias will be prevented,
  • the angle of opening in the open tip of the tubular member should preferably be 5 to 80 degrees relative to a straight line in the direction of the axis line of that tubular member.
  • the diameter at the open tip of the tubular member should preferably be 5 mm to 25 mm.
  • the length of the tubular member from the weld member to the aforesaid tip should preferably be 5 mm to 50 mm.
  • the workpiece moreover, will typically be a pipe or a flat plate or sheet, while the weld member will typically be a bracket that can be used to attach another part.
  • Fig. 1 shows the configuration of an arc welding apparatus relating to one embodiment of the present invention and welding operations thereof;
  • 1A shows the configuration of the arc welding apparatus and the manner in which a bracket is positioned on a pipe;
  • 1B shows the manner in which an arc is generated between a tubular member of the bracket and the pipe, with the arc wefding apparatus omitted for clarity, and
  • 1 C shows the manner in which the bracket is welded to the pipe via that tubular member, with the arc welding apparatus omitted for clarity.
  • Fig. 2 is a diagonal view of a bracket having a tubular member.
  • Fig. 3 is a diagonal view of the manner in which the bracket is welded to a pipe via the tubular member.
  • Fig. 4 is a section of the bracket showing the tubular member of the bracket.
  • Fig. 5 is a diagram representing the behavior of a generated electric arc in the tubular member of the bracket.
  • FIG. 1A the arc welding apparatus 1 is shown.
  • Figs. 1B and 1C the welding operation of the arc welding apparatus 1 is shown.
  • Fig. 2 shows a bracket 2 that is a weld member.
  • Fig. 3 shows a pipe 3 that is a workpiece, to which the bracket 2 has been welded.
  • Fig. 4 is a vertical section of the bracket 2 that is the weld member, indicating preferable dimensions and angles of opening and the like for a tubular member 5 provided in the bracket 2.
  • Fig. 5 shows the behavior of an electric arc when the tubular member 5 of the bracket 2 is being welded.
  • the arc welding apparatus 1 shown in Fig. 1A has a welding head 6 holding the bracket 2 that is the weld member.
  • the arc welding apparatus 1 applies prescribed electric power to the bracket 2 held by the welding head 6 and the pipe 3 that is the workpiece, producing an arc, and welds the bracket 2 to the pipe 3.
  • the arc welding apparatus 1 comprises a power supply 7 and a controller 9 for controlling the operation thereof.
  • power cords 1OA and 10B are connected from the controller 9 of the arc welding apparatus 1 to the bracket 2 and to the pipe 3, respectively.
  • the welding head 6 of the arc welding apparatus 1 is positioned so that the large-diameter open tip of the tubular member 5 of the bracket 2 (weld member) held by that welding head 6 can contact the pipe 3 (workpiece) at the weld location.
  • the welding head 6 of the arc welding apparatus 1 first causes the large-diameter open tip of the tubular member 5 of the bracket 2 held by that welding head 6 to contact the pipe 3 at the prescribed weld location. This operation of the welding head 6 is controlled by the controller 9 of the arc welding apparatus 1.
  • the controller 9 pulis the bracket 2 together with the tubular member 5 up from the pipe 3 to a prescribed height and generates a pilot arc of small electrical current between the tip of the tubular member 5 and the weld location on the pipe 3.
  • the controller After generating the pilot arc, the controller generates a main arc of large electrical current and melts the tip of the tubular member 5 and the portion of the pipe 3 that is at the weld position.
  • the controller 9 detects, either by time elapsed time or by a sensor, when the tip of the tubular member 5 of the bracket 2 held by the welding head 6 and the portion of the pipe 3 at the weld position have been properly melted, presses the melted tip of the tubular member 5 against the portion of the pipe 3 at the weld position and attaches the tip of the tubular member 5 to the pipe 3 by fusion. In this way, the bracket 2 that is the weld member is welded to the pipe 3 that is the workpiece.
  • the hollow tubular member 5 protruding from the bracket 2 is integrally provided in the bracket 2 that is the weld member at the weld position thereon.
  • the tubular member 5 is formed so that the diameter thereof increases from the bracket 2 toward its tip and so that the tip is an open, hollow conical shape.
  • the bracket 2 and the tubular member 5 are formed of an electrically conductive material.
  • both the bracket 2 and the tubular member 5 are formed integrally of the same electrically conductive material. They can be formed, for example, by subjecting an electrically conductive metal to sheet metal machining.
  • the bracket 2 that is the weld member is welded to the pipe 3 that is the workpiece using the tubular member 5, via the operations shown in Figs. 1 A to 1 C, by the arc welding apparatus 1.
  • the tubular member 5 is formed integrally with a bracket 2 as a hollow tubular member protruding from the bracket at a weld position on the bracket 2 that is the weld member.
  • the tubular member 5 is formed as a hollow conical shape, and its diameter increases from the plane of the bracket 2 to an open tip 10.
  • the conical shape of the tubular member 5 need not necessarily be a proper conical shape but may be formed, as shown, such that the portion near the bracket 2 is formed in a cylindrical shape and the portion of intermediate height and beyond is formed as a cone or, alternatively, that shape may be a trapezoidal conicai shape or a having a conical shape in the portion thereof on the tip end inclusive of the open tip 10.
  • the tip 10 of the tubular member 5, moreover, is open,
  • the tubular member 5 was formed by subjecting a prescribed portion of the bracket 2 to a burring process and molding the protruded portion resulting from that burring process into a conical shape.
  • Fig. 5 the behavior of the electric arc generated when welding the tubular member 5 of the bracket 2 to the pipe 3 is shown.
  • the arc was observed to be continuously generated while moving in a circumferential direction about the interior of the cone in the open tip 10 of the tubular member 5, as indicated by the arrows 21 and 22.
  • welding time that is, the main arc generation time
  • an adequate moSten condition is realized in the open tip 10 portion thereof. Accordingly, if the generation of the main arc is stopped and the open tip 10 of the tubular member 5 is pressed against the pipe 3 at the prescribed location, the open tip 10 will properly be attached to the pipe 3 by fusion, and the bracket 2 will be welded to the pipe 3.
  • the welding time can be made extremely short, thermal effects on the pipe that is the workpiece can be reduced, deformation or warping in the pipe or other workpiece due to overheating can be prevented, and proper welding can be performed without deformation, even when the workpiece is a thin-walled material. Because the welding time is short, better energy efficiency can be realized, and because the electric arc moves so as to revolve about the interior of the cone, effects of lines of magnetic force caused by the shape of the workpiece will not readily be sustained, and loss of strength in the weld due to welding arc bias will be prevented.
  • a conically shaped tubular member provided in a weld member is rendered the workpiece.
  • the workpiece may typically be a fiat plate or sheet instead of the pipe noted in the foregoing.
  • a bracket that can be used for attaching another part is typically used as the weld member, but it can also be some other member.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Plasma & Fusion (AREA)
  • Mechanical Engineering (AREA)
  • Butt Welding And Welding Of Specific Article (AREA)
  • Arc Welding In General (AREA)

Abstract

An arc welding apparatus 1 welds a bracket 2 held by a welding head 6 to a pipe 3 by arc welding. A hollow tubular member 5 is provided in the bracket 2, which tubular member 5 is formed in a hollow conical shape, so that the diameter thereof increases from the bracket 2 to an open tip 10 therein. The open tip 10 of the tubular member 5 of the bracket 2 held by the welding head 6 is pulled up from a condition of being in contact with the pipe 3, an electric arc is generated between the tip of the tubular member 5 and the pipe 3 to effect melting, and the open tip 10 is pressed against the pipe 3, whereupon the bracket 2 is welded to the pipe 3.

Description

Arc Welding Method and Arc Welding Apparatus
CROSS-REFERENCE TO RELATED APPLICATIONS
This application claims the benefit of Japanese Application No. 2008-324269 filed December 19, 2008, the disclosure of which is incorporated herein by reference.
Technical Field
The present invention relates to an arc welding method and arc welding apparatus for welding a weld member such as a bracket to a workpiece such as a pipe or flat plate or sheet.
Background Art
Arc weiding for welding a weld member such as a bracket to a workpiece such as a pipe or flat plate or sheet is well known. In Patent Literature 1 , a welding apparatus is described for welding a bracket that is a weld member, for securing a wire harness to an automobile body panel that is a workpiece. The welding apparatus described in Patent Literature 1 comprises a welding head that can hold an L-shaped bracket. In the weiding apparatus described in Patent Literature 1 , because it has a welding head that can hold an L-shaped bracket, there is no need to hold the bracket that is the weld member at the weld position on the body panel that is the workpiece.
Patent Literature 1 : TOKKAl [Unexamined Patent Application] No. H8-019865 (Gazette)/1996
Patent Literature 2: TOKKAI No. 2001-105142 (Gazette) Disclosure of the Invention
Problems the Invention Would Solve
In the welding apparatus described in Patent Literature 1 as with ordinary commonly known welding apparatuses, the welding temperature is high, so when welding a bracket to a Stefan beam that is one type of automobile crossbeam, there is a danger that warping will develop in the Stefan beam that is the workpiece due to the heat for melting both that bracket and the Stefan beam. In Patent Literature 2, a method is described for welding a hollow stud having female threads formed therein to a workpiece. The end of the stud that is the welding part is formed in a shape protruding at a sharp angle in an attempt to lessen the thermal effects when welding. The welding method described in Patent Literature 2 does reduce the thermal effects for stud welding when welding to a workpiece, but does not reduce the thermal effects when welding weld members in general, including brackets and the like, to a workpiece.
An object of the present invention is to reduce the thermal effects when welding weld members in general, including brackets and the like, to a workpiece, and to prevent deformation in the workpiece due to overheating.
Means for Solving the Problems
In order to achieve the above object in an arc welding method relating to the present invention for welding a weld member to a workpiece, using an arc welding apparatus at a weld position on the weld member, a hollow tubular member protruding from that weld member is provided; that tubular member is formed in a hollow conical shape open at the tip, with the diameter thereof increasing from the weld member to its tip and with the tubular member of the weld member held by the welding head of the arc welding apparatus positioned so that the open tip contacts a weld location on the workpiece, the arc welding apparatus pulls the workpiece up from the workpiece, and after generating a small-current pilot arc between the tip of the tubular member and the workpiece, then generates a large-current main arc and welds the tip of the tubular member and the weld position portion of the workpiece; the arc welding apparatus presses the tip of the tubular member of the weld member held by the welding head against the workpiece, attaches the tip of the tubular member to the workpiece by fusion and welds the weld member to the workpiece.
Also, in an arc welding apparatus relating to the present invention, a hollow tubular member protruding from that weld member is provided for welding a weld member held by a welding head to a workpiece by arc welding at a weid position on the weld member; the tubular member is formed in a hollow conical shape open at the tip, with the diameter thereof increasing from the weld member to its tip; that arc welding apparatus operates so as, with the large-diameter open tip of the tubular member of the weld member held by the welding head in order to contact a weld location on the workpiece, to pull the workpiece up from the workpiece and after generating a small- current pilot arc between the tip of the tubular member and the workpiece, then to generate a large-current main arc and weld the tip of the tubular member and the weld position portion of the workpiece, and then to press the tip of the tubular member of the weld member held by the welding head against the workpiece, attach the tip of the tubular member to the workpiece by fusion and weld the weld member to the workpiece.
Based on the arc welding method and arc welding apparatus described above, a hollow tubular member protruding from a weld member is provided at a weld position on the weld member. The tubular member is formed as a hollow conical shape open at the tip, with the diameter thereof increasing from the weld member toward the tip. Therefore, the time of melting at a weidable temperature is shortened. Thus, the welding time can be shortened by quite a bit, and the thermal effects on the workpiece can be reduced. Consequently, deformation or warping in the workpiece due to overheating can be prevented, and proper welding can be performed without deformation, even when the workpiece is a thin-waded materiat. Also, because the welding time is short, better energy efficiency can be realized, and because the tubular member that is the portion welding the weld member to the workpiece is of a hollow conical shape, melting will be effected as the welding arc generated moves, turning about the interior of the cone, effects of lines of magnetic force caused by the shape of the workpiece will then not readily be sustained, and loss of strength in the weld due to welding arc bias will be prevented,
In the arc welding apparatus described above, the angle of opening in the open tip of the tubular member should preferably be 5 to 80 degrees relative to a straight line in the direction of the axis line of that tubular member. The diameter at the open tip of the tubular member should preferably be 5 mm to 25 mm. And the length of the tubular member from the weld member to the aforesaid tip should preferably be 5 mm to 50 mm. The workpiece, moreover, will typically be a pipe or a flat plate or sheet, while the weld member will typically be a bracket that can be used to attach another part. Brief Description of Drawings
Fig. 1 shows the configuration of an arc welding apparatus relating to one embodiment of the present invention and welding operations thereof; 1A shows the configuration of the arc welding apparatus and the manner in which a bracket is positioned on a pipe; 1B shows the manner in which an arc is generated between a tubular member of the bracket and the pipe, with the arc wefding apparatus omitted for clarity, and 1 C shows the manner in which the bracket is welded to the pipe via that tubular member, with the arc welding apparatus omitted for clarity.
Fig. 2 is a diagonal view of a bracket having a tubular member.
Fig. 3 is a diagonal view of the manner in which the bracket is welded to a pipe via the tubular member.
Fig. 4 is a section of the bracket showing the tubular member of the bracket.
Fig. 5 is a diagram representing the behavior of a generated electric arc in the tubular member of the bracket.
Modes for Carrying out the Invention
An arc welding apparatus 1 for one embodiment of the present invention shall now be described with reference to the drawings. In Fig. 1A, the arc welding apparatus 1 is shown. In Figs. 1B and 1C, the welding operation of the arc welding apparatus 1 is shown. Fig. 2 shows a bracket 2 that is a weld member. Fig. 3 shows a pipe 3 that is a workpiece, to which the bracket 2 has been welded. Fig. 4 is a vertical section of the bracket 2 that is the weld member, indicating preferable dimensions and angles of opening and the like for a tubular member 5 provided in the bracket 2. Fig. 5 shows the behavior of an electric arc when the tubular member 5 of the bracket 2 is being welded.
The arc welding apparatus 1 shown in Fig. 1A has a welding head 6 holding the bracket 2 that is the weld member. The arc welding apparatus 1 applies prescribed electric power to the bracket 2 held by the welding head 6 and the pipe 3 that is the workpiece, producing an arc, and welds the bracket 2 to the pipe 3. For the purpose of this welding, the arc welding apparatus 1 comprises a power supply 7 and a controller 9 for controlling the operation thereof. In order to supply the prescribed electric power for welding the bracket 2 and pipe 3, power cords 1OA and 10B are connected from the controller 9 of the arc welding apparatus 1 to the bracket 2 and to the pipe 3, respectively.
In Fig. 1A, the welding head 6 of the arc welding apparatus 1 is positioned so that the large-diameter open tip of the tubular member 5 of the bracket 2 (weld member) held by that welding head 6 can contact the pipe 3 (workpiece) at the weld location.
In Fig. 1 B, the welding head 6 of the arc welding apparatus 1 first causes the large-diameter open tip of the tubular member 5 of the bracket 2 held by that welding head 6 to contact the pipe 3 at the prescribed weld location. This operation of the welding head 6 is controlled by the controller 9 of the arc welding apparatus 1. Next, the controller 9 pulis the bracket 2 together with the tubular member 5 up from the pipe 3 to a prescribed height and generates a pilot arc of small electrical current between the tip of the tubular member 5 and the weld location on the pipe 3. After generating the pilot arc, the controller generates a main arc of large electrical current and melts the tip of the tubular member 5 and the portion of the pipe 3 that is at the weld position. In Fig. 1 C, the controller 9 detects, either by time elapsed time or by a sensor, when the tip of the tubular member 5 of the bracket 2 held by the welding head 6 and the portion of the pipe 3 at the weld position have been properly melted, presses the melted tip of the tubular member 5 against the portion of the pipe 3 at the weld position and attaches the tip of the tubular member 5 to the pipe 3 by fusion. In this way, the bracket 2 that is the weld member is welded to the pipe 3 that is the workpiece.
As diagrammed in Fig, 2, in the bracket 2 that is the weld member at the weld position thereon, the hollow tubular member 5 protruding from the bracket 2 is integrally provided. The tubular member 5 is formed so that the diameter thereof increases from the bracket 2 toward its tip and so that the tip is an open, hollow conical shape. The bracket 2 and the tubular member 5 are formed of an electrically conductive material. Preferably, both the bracket 2 and the tubular member 5 are formed integrally of the same electrically conductive material. They can be formed, for example, by subjecting an electrically conductive metal to sheet metal machining.
As diagrammed in Fig. 3, the bracket 2 that is the weld member is welded to the pipe 3 that is the workpiece using the tubular member 5, via the operations shown in Figs. 1 A to 1 C, by the arc welding apparatus 1.
The particulars of the tubular member 5 shall now be described with reference to Fig. 4. The tubular member 5, as described in the foregoing, is formed integrally with a bracket 2 as a hollow tubular member protruding from the bracket at a weld position on the bracket 2 that is the weld member. The tubular member 5 is formed as a hollow conical shape, and its diameter increases from the plane of the bracket 2 to an open tip 10. The conical shape of the tubular member 5 need not necessarily be a proper conical shape but may be formed, as shown, such that the portion near the bracket 2 is formed in a cylindrical shape and the portion of intermediate height and beyond is formed as a cone or, alternatively, that shape may be a trapezoidal conicai shape or a having a conical shape in the portion thereof on the tip end inclusive of the open tip 10. The tip 10 of the tubular member 5, moreover, is open, In tests, the tubular member 5 was formed by subjecting a prescribed portion of the bracket 2 to a burring process and molding the protruded portion resulting from that burring process into a conical shape.
Various tests were conducted on specific dimensions and angles for the tubular member 5. From the results of these tests, the following data were obtained. For the angle of opening 11 in the open tip 10 of the tubular member 5 relative to a straight line 14 extending in the same direction as the axis line 13 of the tubular member 5 and parallel thereto (that is, the straight line 14 extending along the conical portion at the root of the tubular member 5), the minimum angle 15 is 5 degrees, and the maximum angle 17 is 80 degrees. Within this range of angles of opening 11 , favorable welding results were obtained. Moreover, when the diameter 18 at the open tip 10 of the tubular member 5 was 5 mm to 25 mm, favorable welding results were obtained. Furthermore, the range of the length 19 of the tubular member 5 from the plane of the bracket 2 that is the weld member to the open tip 10 was made 5 mm to 50 mm, and when that was the case, favorable welding results were obtained.
In Fig. 5, the behavior of the electric arc generated when welding the tubular member 5 of the bracket 2 to the pipe 3 is shown. The arc was observed to be continuously generated while moving in a circumferential direction about the interior of the cone in the open tip 10 of the tubular member 5, as indicated by the arrows 21 and 22. In this way, even when welding time (that is, the main arc generation time) for the open tip 10 of the tubular member 5 is short, an adequate moSten condition is realized in the open tip 10 portion thereof. Accordingly, if the generation of the main arc is stopped and the open tip 10 of the tubular member 5 is pressed against the pipe 3 at the prescribed location, the open tip 10 will properly be attached to the pipe 3 by fusion, and the bracket 2 will be welded to the pipe 3. Accordingly, the welding time can be made extremely short, thermal effects on the pipe that is the workpiece can be reduced, deformation or warping in the pipe or other workpiece due to overheating can be prevented, and proper welding can be performed without deformation, even when the workpiece is a thin-walled material. Because the welding time is short, better energy efficiency can be realized, and because the electric arc moves so as to revolve about the interior of the cone, effects of lines of magnetic force caused by the shape of the workpiece will not readily be sustained, and loss of strength in the weld due to welding arc bias will be prevented.
As described in the foregoing, in order to weld a weld member to a workpiece, a conically shaped tubular member provided in a weld member is rendered the workpiece. In this way, welding time is shortened, thermal effects on the workpiece can be lessened, welding to a thin sheet with little energy becomes possible, the area of the weld increases, and stable welds of high strength can be effected. The workpiece, moreover, may typically be a fiat plate or sheet instead of the pipe noted in the foregoing. Also noted in the foregoing, a bracket that can be used for attaching another part is typically used as the weld member, but it can also be some other member.

Claims

Claims
1. An arc welding method for welding a we!d member to a workpiece using an arc welding apparatus, wherein: a holiow tubular member protruding from that weld member is provided at a weld position on said weid member; that tubular member is formed in a hollow conical shape open at the tip, with the diameter thereof increasing from said weld member to its tip; with said tubular member of said weld member held by the welding head of said arc welding apparatus positioned so that said open tip contacts a weid location on the workpiece, said arc welding apparatus pulis said weid member up from said workpiece, and after generating a small-current pilot arc between the tip of said tubular member and said workpiece, generates a large-current main arc and welds the tip of the tubular member and said weld position portion of the workpiece; and said arc welding apparatus presses the tip of said tubular member of said weid member held by said welding head against said workpiece, attaches the tip of the tubuiar member to said workpiece by fusion and welds the weld member to said workpiece.
2. An arc welding apparatus for welding a weld member held by a welding head to a workpiece by arc welding; wherein: a hollow tubular member protruding from that weld member is provided at a weld position on said weld member; that tubular member is formed in a hollow conical shape open at the tip, with the diameter thereof increasing from said weid member to its tip; and that arc welding apparatus operates in such a way as, with the large-diameter open tip of said tubular member of said weld member held by said welding head so as to contact a weld location on the workpiece, to pull said workpiece up from said workpiece; then, after generating a small-current pilot arc between the tip of said tubular member and said workpiece, to generate a large-current main arc and weld the tip of the tubular member and said weld position portion of the workpiece, and then to press the tip of said tubular member of said weld member held by said welding head against said workpiece, attach the tip of the tubular member to said workpiece by fusion and weld the weld member to said workpiece.
3. The apparatus described in claim 2, wherein the angle of opening in the open tip of said tubular member is 5 to 80 degrees relative to a straight line in the direction of the axis line of that tubular member.
4. The apparatus described in claim 2 or 3, wherein the diameter at the open tip of said tubular member is 5 mm to 25 mm.
5. The apparatus described in any one of claims 2 to 4, wherein the length of said tubular member from said weld member to said tip is 5 mm to 50 mm.
6. The apparatus described in any one of claims 2 to 5, wherein said workpiece is a pipe or a flat plate or sheet.
7. The apparatus described in any one of claims 2 to 6, wherein said weld member is a bracket that can be used for attaching another part.
EP09833843.7A 2008-12-19 2009-12-18 Arc welding method and arc welding apparatus Withdrawn EP2389267A4 (en)

Applications Claiming Priority (2)

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JP2008324269A JP5326167B2 (en) 2008-12-19 2008-12-19 Arc welding method and arc welding apparatus
PCT/US2009/068786 WO2010071823A2 (en) 2008-12-19 2009-12-18 Arc welding method and arc welding apparatus

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EP2389267A2 true EP2389267A2 (en) 2011-11-30
EP2389267A4 EP2389267A4 (en) 2015-10-21

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JP (1) JP5326167B2 (en)
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Also Published As

Publication number Publication date
CN102317022A (en) 2012-01-11
EP2389267A4 (en) 2015-10-21
WO2010071823A3 (en) 2010-10-21
JP2010142851A (en) 2010-07-01
WO2010071823A2 (en) 2010-06-24
JP5326167B2 (en) 2013-10-30

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