Welded joint and automobile member
US-2024093708-A1 · Mar 21, 2024 · US
US9827630B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9827630-B2 |
| Application number | US-201514960424-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 6, 2015 |
| Priority date | Sep 1, 2015 |
| Publication date | Nov 28, 2017 |
| Grant date | Nov 28, 2017 |
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A fixing apparatus for respot welding is provided. The fixing apparatus includes a base plate on which electrically-powered cylinders are mounted, lower pin jigs mounted upright on the electrically-powered cylinders to support a workpiece and the workpiece is fixed at a position by allowing pin units mounted on upper portions of the lower pin jigs to penetrate the workpiece. Further a pressing hanger is positioned to be spaced apart from the upper portions of the lower pin jigs, and moves downward toward the pin units to apply a force to the workpiece when the workpiece is seated on the lower pin jigs.
Opening claim text (preview).
What is claimed is: 1. A fixing apparatus for respot welding, comprising: a base plate on which electrically-powered cylinders are mounted; lower pin jigs mounted upright on the electrically-powered cylinders to support a workpiece, and fix a position of the workpiece that allow pin units mounted on upper portions of the lower pin jigs to penetrate the workpiece; and a pressing hanger disposed to be spaced apart from the upper portions of the lower pin jigs, and configured to move downward toward the pin units to apply a force to the workpiece when the workpiece is positioned on the lower pin jigs, the pressing hanger including an aperture bracket having a coupling aperture into which a respective one of the pin units is inserted, wherein the aperture bracket includes: insertion members disposed within installation apertures formed in the coupling aperture in a horizontal direction adjacent to each other, and configured to slide in the horizontal direction to be selectively inserted into fastening grooves formed in an exterior circumferential surface of the respective one of the pin units; elastic members disposed within the installation apertures, and configured to transmit a compression force to the insertion members by elastic force; and guide members coupled to the insertion members in the installation apertures, and configured to guide the sliding movement of the insertion members caused by the elastic members. 2. The fixing apparatus of claim 1 , wherein the base plate is formed in a quadrangular shape, and the electrically-powered cylinders are mounted at corners of the base plate, respectively. 3. The fixing apparatus of claim 2 , wherein the electrically-powered cylinders include: a first electrically-powered cylinder mounted on the base plate in a horizontal direction; and a second electrically-powered cylinder mounted in a direction that intersects with the direction of the first electrically-powered cylinder and have the lower pin jigs uprightly coupled. 4. The fixing apparatus of claim 1 , wherein the lower pin jigs include: a body unit mounted upright on the electrically-powered cylinders while having a length; and a support unit coupled to the body unit by a rail, and configured to move vertically in a longitudinal direction of the body unit, and has the respective one of the pin units that protrudes from an upper side of the support unit. 5. The fixing apparatus of claim 1 , wherein the pressing hanger includes: a frame formed to have a size and a shape that correspond to the base plate; and a guide mounted at a corner of a lower portion of the frame while having a length in a vertical direction, wherein the aperture bracket is coupled to the guide, and includes, at one end facing the support unit, the coupling aperture. 6. The fixing apparatus of claim 5 , wherein the pressing hanger further includes: a moving unit mounted on a lower portion of the frame, and configured to move the guide coupled to the moving unit to a position that the aperture bracket corresponds to the respective one of the pin units. 7. The fixing apparatus of claim 6 , wherein the moving unit includes: a first moving portion mounted at a corner of the lower portion of the frame in a horizontal direction; and a second moving portion mounted at a lower side of the first moving portion in a direction that intersects with the direction of the first moving portion, and coupled uprightly to the guide. 8. The fixing apparatus of claim 5 , wherein the pressing hanger further includes a fastening mount mounted on an upper portion of the frame. 9. The fixing apparatus of claim 8 , wherein the fastening mount is coupled to a robot arm that moves the frame vertically. 10. The fixing apparatus of claim 1 , wherein the aperture bracket further includes: an electromagnet disposed within a partition region formed in one of the installation apertures, and configured to allow one of the elastic members to selectively apply a force to one of the insertion members based on whether a power source is engaged or disengaged. 11. The fixing apparatus of claim 10 , wherein the aperture bracket further includes: a detecting sensor mounted at an upper side of the coupling aperture, and configured to detect whether the respective one of the pin units is inserted. 12. The fixing apparatus of claim 11 , wherein the detecting sensor is connected with the power source configured to supply power to the electromagnet, and disengages power applied to the electromagnet when the respective one of the pin units is inserted into a predetermined position of the coupling aperture. 13. The fixing apparatus of claim 11 , wherein the detecting sensor is formed as an ultrasonic sensor. 14. The fixing apparatus of claim 1 , wherein one end of the respective one of the pin units, directed toward the pressing hanger, is formed in a conical shape.
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