B23K20/1255

FRICTION STIR WELDING TOOL, FRICTION STIR WELDING DEVICE, AND FRICTION STIR WELDING METHOD
20170259371 · 2017-09-14 · ·

A friction stir welding tool includes: a first face which is rotated about an axis relative to a joined portion in a state in which the first face comes into contact with the joined portion of a workpiece and in which an arithmetic mean roughness Ra value is greater than or equal to 0.8 μm and less than or equal to 25 μm; and a second face which is formed to continue to the first face, which is rotated about the axis relative to the joined portion in a state in which the second face comes into contact with the joined portion, and in which an arithmetic mean roughness Ra value is smaller than that of the first face.

END TAB FOR FRICTION STIR WELDING AND METHOD FOR PRODUCING JOINT MATERIAL
20170252857 · 2017-09-07 ·

An end tab is arranged to abut against an end surface of a workpiece joined by friction stir welding and is formed with a cutout portion of which a distal end side is positioned on an extension line of a joining line in the workpiece. Also, a production method includes joining the workpiece using the end tab to produce a joint material.

SYSTEMS AND METHODS FOR INTERNAL CHANNEL FORMATION WITHIN A WORKPIECE
20220234132 · 2022-07-28 ·

A method of forming an internal channel within a workpiece. In an embodiment, the method includes (a) rotating a tool about a central axis, wherein the tool includes: a shoulder; a pin extending axially from the shoulder; and a flange mounted to the pin that is spaced from the shoulder along the central axis. In addition, the method includes (b) moving the tool across the workpiece in a radial direction with respect to the central axis during (a). Further, the method includes (c) engaging the shoulder of the tool with an outer surface of the workpiece during (a) and (b), (d) submerging the pin and the flange within the workpiece during (a) and (b); and (e) forming the internal channel with the flange during (a) and (b).

INSTRUMENTED TOOL HANDLER FOR FRICTION STIR WELDING
20210402509 · 2021-12-30 ·

A friction stir welding (FSW) tool includes a head, a tool holder and a body between the head and the tool holder and attached to the head and the tool holder. The body may include a plurality of cooling fins. An interior of the body may include a pressure sensor, a temperature sensor, a torque sensor, and a communication node in electronic communication with the pressure sensor, the temperature sensor, and the torque sensor. The communication node may be in Bluetooth communication with a computing device.

WIRE AND ARC ADDITIVE MANUFACTURING METHOD FOR MAGNESIUM ALLOY

The present disclosure provides a wire and arc additive manufacturing (WAAM) method for a magnesium alloy. The method includes the following steps: step 1: performing a WAAM process assisted by cooling and rolling; step 2: milling side and top surfaces of an additive part; step 3: performing, by friction stir processing (FSP) equipment, an FSP process on the additive part, and applying cooling and rolling to a side wall of the additive part through a cooling and rolling device during the FSP process; step 4: finish-milling the top surface of the additive part for a WAAM process in the next step; and step 5: repeating the above steps cyclically until final forming of the part is finished. The present disclosure completely breaks dendritic structures and refines grains in the WAAM process of the magnesium alloy, thereby effectively repairing defects such as pores and cracks.

WIRE AND ARC ADDITIVE MANUFACTURING METHOD FOR TITANIUM ALLOY

The present disclosure provides a wire and arc additive manufacturing (WAAM) method for a titanium alloy. The method includes the following steps: step 1: performing a WAAM process assisted by cooling and rolling; step 2: milling side and top surfaces of an additive part; step 3: performing, by friction stir processing (FSP) equipment, an FSP process on the additive part, and applying cooling and rolling to a side wall of the additive part through a cooling and rolling device during the FSP process; step 4: finish-milling the top surface of the additive part for a WAAM process in the next step; and step 5: repeating the above steps cyclically until final forming of the part is finished. This WAAM method completely breaks dendritic structures and refines grains in the WAAM process of the titanium alloy, thereby effectively repairing defects such as pores and cracks.

STIR PIN, FRICTION STIR WELDING TOOL, AND MACHINE TOOL

A stir pin includes a base end portion configured to be held rotatably about a first axis, a stirring portion provided to project from a shoulder member to be rotatable about the first axis together with the base end portion, and an intermediate portion including a second portion connected to the stirring portion to be rotatable about the first axis together with the stirring portion and having a second diameter passing through the first axis, and a first portion provided between and connected to the base end portion and the second portion to be rotatable about the first axis together with the base end portion and the second portion. The first portion has an end surface to which the second portion is connected and which has a maximum diameter larger than the second diameter. The end surface has a ring-shaped receiving surface configured to receive a material waste.

METHOD FOR PRODUCING HOLLOW CONTAINER

A method for manufacturing a hollow container with use of a rotary tool including a tapered stirring pin, including: preparing a first metal member, a second metal member, and an auxiliary member; butting the first metal member and the second metal member to face with each other, the auxiliary member is interposed between the first metal member and the second metal member; and joining the first metal member with the second metal member via the auxiliary member. The first and second metal members, and the auxiliary member are made of aluminum or an aluminum alloy, and the first and second metal members have higher hardness than the auxiliary member. At least one of the first and second metal members has an inclined surface inclined outward, and the auxiliary member has an inclined surface, tapered from the external surface toward an internal surface, on at least one of the side surfaces.

POWDER-ENHANCED FRICTION STIR RIVET WELDING DEVICE AND METHOD
20210402503 · 2021-12-30 ·

A powder-enhanced friction stir rivet welding device includes a friction stir rivet welding spindle, a C-shaped frame and a tooling platform. The friction stir rivet welding spindle includes a rotating mechanism, a feed mechanism, a vibration-rotation mixing mechanism and a powder feeding mechanism. The friction stir rivet welding spindle is configured to realize rotation and feed movements of a rivet and feeding and mixing of a powder. The C-shaped frame is configured to fix the friction stir rivet welding spindle and the tooling platform. The tooling platform includes a force sensor, a sensor indenter, a tooling mould and a tooling platen. The tooling platform is configured to clamp a workpiece to be riveted and welded, and measure a rivet welding force of the friction stir rivet welding spindle in real time.

FRICTION STIR WELDING (FSW) TOOL WITH ADJUSTABLE PROBE LENGTH AND SHOULDER GROOVE DEPTH
20210402505 · 2021-12-30 ·

Disclosed is a friction stir welding tool with an adjustable probe length and shoulder groove depth, wherein a support shaft, made of a material having low thermal conductivity so as to inhibit thermal conduction between a probe and a shank, is coupled to the center of an upper locking member together with the shank, the probe and inner and outer shoulders are coupled inside a lower part of the upper locking member, and a lower locking member is fastened and fixed to the lower part of the upper locking member, and a washer and a locking nut are fastened to an upper part of the lower locking member, whereby the locking nut pushes the lower locking member via the washer.