Robot system and operating method thereof
US-2020206937-A1 · Jul 2, 2020 · US
US11260469B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11260469-B2 |
| Application number | US-201816964160-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 4, 2018 |
| Priority date | Jan 22, 2018 |
| Publication date | Mar 1, 2022 |
| Grant date | Mar 1, 2022 |
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The presently disclosed technology includes a friction stir welding apparatus comprising a frame, a moving platform and a parallel mechanism composed of three branch mechanisms, wherein a first branch mechanism comprises a first sliding pair, a first revolute pair, a telescopic rod and a first spherical pair connected in sequence. A second branch mechanism and a third branch mechanism both comprise a third sliding pair, a second revolute pair, a third linkage and a second spherical pair connected in sequence. The friction stir welding apparatus has high stiffness, low inertia, high dynamic performance and high accuracy, which can achieve precision welding with high requirements on processing quality and accuracy for jointing annular seams of large-scale rocket fuel storage tank barrels in the aviation field, for example. The presently disclosed technology also includes a corresponding friction stir welding system.
Opening claim text (preview).
What is claimed is: 1. A friction stir welding apparatus, comprising: a frame including a frame platform and a frame body for supporting the frame platform, each of an upper surface and a lower surface of the frame platform is provided with a pair of sliding rails disposed opposite to each other; a moving platform which is mounted with a stirring head on one surface thereof; a first branch mechanism comprising a first sliding pair, a first revolute pair, a telescopic rod and a first spherical pair connected in sequence, wherein the first sliding pair is movable along the pair of sliding rails on the upper surface of the frame platform, a rotation axis of the first revolute pair is parallel to a plane composed of the sliding rails on the upper surface of the frame platform, and the first spherical pair is connected with a surface of the moving platform on which the stirring head is not mounted; and a second branch mechanism and a third branch mechanism, each of the second branch mechanism and the third branch mechanism comprises a third sliding pair, a second revolute pair, a third linkage, and a second spherical pair connected in sequence, wherein the third sliding pair is movable along the pair of sliding rails on the lower surface of the frame platform, a rotation axis of the second revolute pair is perpendicular to a plane composed of the sliding rails on the lower surface of the frame platform, and the second spherical pair is connected with the surface of the moving platform on which the stirring head is not mounted. 2. The friction stir welding apparatus according to claim 1 , wherein each of the first branch mechanism, the second branch mechanism, and the third branch mechanism is hinged with the moving platform, and hinged center points are uniformly distributed with respect to a center of the moving platform. 3. The friction stir welding apparatus according to claim 1 , wherein a plane composed of the third linkage of the second branch mechanism and the third linkage of the third branch mechanism is parallel to the plane composed of the sliding rails on the lower surface of the frame platform. 4. The friction stir welding apparatus according to claim 1 , wherein the telescopic rod comprises a first linkage, a second sliding pair and a second linkage connected in sequence, and the second linkage moves along the first linkage through the second sliding pair. 5. The friction stir welding apparatus according to claim 4 , wherein the second sliding pair is a driving mechanism for driving a guide screw by a servo motor. 6. The friction stir welding apparatus according to claim 1 , wherein the first sliding pair and the third sliding pair are driving mechanisms for driving a pinion and rack by dual servo motors. 7. The friction stir welding apparatus according to claim 1 , wherein the first spherical pair and the second spherical pair are one of spherical hinges and composite spherical hinges in which rotation axes in three vertical directions intersect into a point. 8. A friction stir welding system, comprising: the friction stir welding apparatus according to claim 1 ; and a fastening device, the fastening device for fixing a workpiece to be welded, and the workpiece is to be welded by the stirring head. 9. The friction stir welding system according to claim 8 , further comprising: a worktable on which a sliding groove is provided, and the fastening device is mounted in the sliding groove and is movable along the sliding groove. 10. The friction stir welding system according to claim 9 , wherein the fastening device comprises a pair of fasteners disposed opposite to each other, the workpiece to be welded is located between the pair of fasteners, and rotation axes of the pair of fasteners share a common straight line.
Rotary tool drive mechanism · CPC title
using a non-consumable tool, e.g. friction stir welding · CPC title
Workpiece support, i.e. backing or clamping · CPC title
characterised by the apparatus · CPC title
Tubular or hollow articles · CPC title
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