ORBITAL WELDING DEVICE WITH IMPROVED RESIDUAL OXYGEN MEASUREMENT
20210379706 ยท 2021-12-09
Inventors
Cpc classification
B23K9/0286
PERFORMING OPERATIONS; TRANSPORTING
B23K37/0217
PERFORMING OPERATIONS; TRANSPORTING
B23K37/027
PERFORMING OPERATIONS; TRANSPORTING
B23K9/0956
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23K37/02
PERFORMING OPERATIONS; TRANSPORTING
B23K9/095
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An orbital welding device (1), having a welding current source (10) in a welding current source housing (11) and an orbital welding head (20), which is separate from the welding current source housing (11) and is connected to the welding current source (10) by a cable (2), the orbital welding head (20) having a pipe mount (21) and a welding electrode holder (22) for holding a welding electrode (23). An electric motor (31) is designed to drive the welding electrode holder (22) and thus turn it with respect to the pipe mount (21). The orbital welding head (20) has a chamber (50) for shielding gas. An optical oxygen sensor (40) is designed to measure an oxygen concentration in a measuring region (51) in the chamber (50). The oxygen sensor (40) is arranged outside the chamber (50) and is optically coupled to the measuring region (51) by an optical coupling.
Claims
1. An orbital welding device (1), the orbital welding device (1) having a welding current source (10) in a welding current source housing (11) and an orbital welding head (20), which is separate from the welding current source housing (11) and is connected to the welding current source (10) by means of a cable (2), the orbital welding head (20) having a pipe mount (21) and a welding electrode holder (22), which is mounted rotatably with respect to the pipe mount (21) and is intended for holding a welding electrode (23), the orbital welding device (1) having an electric motor (31), which is designed to drive the welding electrode holder (22) and thus turn it with respect to the pipe mount (21), the orbital welding head (20) or the cable (2) or a gas line to the orbital welding head (20) or the orbital welding device (1) in or on the welding current source housing (11) having an optical oxygen sensor (40) and the orbital welding head (20) having a chamber (50) for shielding gas, which is designed to surround the welding electrode (23) of the orbital welding head (20) and substantially seal it off from the outside during a welding process, the optical oxygen sensor (40) being designed to measure an oxygen concentration in a measuring region (51) in the chamber (50), wherein the oxygen sensor (40) is arranged outside the chamber (50) and the oxygen sensor (40) is optically coupled to the measuring region (51) by means of an optical coupling.
2. The orbital welding device (1) as claimed in claim 1, the optical coupling being at least partially formed by an opening (61) in a wall of the chamber (50).
3. The orbital welding device (1) as claimed in claim 1, the optical coupling being at least partially formed by a light guiding element (60).
4. The orbital welding device (1) as claimed in claim 3, the light guiding element (60) being at least partially formed by an optical fiber (62).
5. The orbital welding device (1) as claimed in claim 1, the oxygen sensor (40) being optically coupled to a further measuring region (52) in the chamber (50) by means of a further optical coupling.
6. The orbital welding device (1) as claimed in claim 1, the orbital welding head (20) having at least one further oxygen sensor (80), the further oxygen sensor (80) being optically coupled to a further measuring region (53) in the chamber (50) by means of a further optical coupling.
7. The orbital welding device (1) as claimed in claim 1, the orbital welding device (1) having an electrical closed-loop control device, which is designed to start a welding process as soon as the oxygen concentration in one or more of the measuring regions (51, 52, 53) has gone below a predetermined threshold value.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0036] The invention will now be illustrated further by way of example with reference to drawings, in which:
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DETAILED DESCRIPTION
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REFERENCE SIGNS
[0045] 1 Orbital welding device [0046] 2 Cable [0047] 10 Welding current source [0048] 11 Welding current source housing [0049] 20 Connected orbital welding head [0050] 21 Pipe mount [0051] 22 Mounted welding electrode holder [0052] 23 Welding electrode [0053] 30 Motor controller [0054] 31 Electric motor [0055] 40 Optical oxygen sensor [0056] 41 Light-sensitive area [0057] 50 Sealed-off chamber [0058] 51 Measuring region [0059] 52 Further measuring region [0060] 53 Further measuring region [0061] 54 Inlet [0062] 60 Light guiding element [0063] 61 Opening [0064] 62 Optical fiber [0065] 70 Further light guiding element [0066] 71 Further opening [0067] 72 Further optical fiber [0068] 80 Further oxygen sensor [0069] 81 Light-sensitive area [0070] 90 Housing