Manufacturing method for GTAW double-synchronization filler rod additive of non-closed thin-wall structural member
A technology of thin-walled structural parts and additive manufacturing, which is applied in the field of additive manufacturing, can solve the problems that the quality control of non-closed path structural parts is not yet feasible, the forming process cannot continue, and the size difference of formed components increases. Effects of improving build-up forming quality, shortening additive manufacturing cycle, and increasing cooling rate
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Embodiment 1
[0032] combine figure 1 Describe this embodiment, a non-closed thin-walled structural part GTAW double synchronous wire-filling additive manufacturing method described in this embodiment, the non-closed thin-walled structural part is a multi-layer single-channel structural part that is not connected from end to end, Described method is realized through the following steps:
[0033] Step 1: Install the copper alloy wire guide tubes 5 and 4 symmetrically on the left and right sides of the GTAW welding torch 2 respectively, and the angle β between the wire guide tube and the welding torch is 35°.
[0034]Step 2: Grinding the surface of the substrate 1 before stacking, and then using acetone to remove oil stains on the surface of the substrate 1, and fixing the cleaned substrate 1 on a fixture for additive manufacturing. The GTAW welding torch 2 is moved above the substrate so that the tip of the tungsten pole is 2mm away from the substrate surface, and the starting point of the ...
Embodiment 2
[0040] combine figure 1 Describe this embodiment, a non-closed thin-walled structural part GTAW double-filling wire additive manufacturing method described in this embodiment, the non-closed thin-walled structural part is a multi-layer single-channel structural part that is not connected from end to end, so Said method is realized through the following steps:
[0041] Step 1: install the copper alloy wire guide tubes 5 and 4 symmetrically on the left and right sides of the GTAW welding torch 2 respectively, and the angle β between the guide wire tube and the welding torch is 65°.
[0042] Step 2: Grinding the surface of the substrate 1 before stacking, and then using acetone to remove oil stains on the surface of the substrate 1, and fixing the cleaned substrate 1 on a fixture for additive manufacturing. The GTAW welding torch 2 is moved above the substrate so that the tip of the tungsten pole is 6mm away from the substrate surface, and the starting point of the accumulation ...
Embodiment 3
[0048] combine figure 1 Describe this embodiment, a non-closed thin-walled structural part GTAW double-filling wire additive manufacturing method described in this embodiment, the non-closed thin-walled structural part is a multi-layer single-channel structural part that is not connected from end to end, so Said method is realized through the following steps:
[0049] Step 1: install the copper alloy wire guide tubes 5 and 4 symmetrically on the left and right sides of the GTAW welding torch 2 respectively, and the angle β between the wire guide tube and the welding torch is 50°.
[0050] Step 2: Grinding the surface of the substrate 1 before stacking, and then using acetone to remove oil stains on the surface of the substrate 1, and fixing the cleaned substrate 1 on a fixture for additive manufacturing. The GTAW welding torch 2 is moved above the substrate so that the tip of the tungsten pole is 6mm away from the substrate surface, and the starting point of the accumulation ...
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Abstract
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