Friction stir spot welding apparatus and friction stir spot welding method

US11534981B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11534981-B2
Application numberUS-202117368826-A
CountryUS
Kind codeB2
Filing dateJul 7, 2021
Priority dateJan 7, 2019
Publication dateDec 27, 2022
Grant dateDec 27, 2022

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A friction stir spot welding apparatus including a controller that (A) operates a rotary driver and a tool driver such that a pin and a shoulder are brought into contact with a welded workpiece; (B) operates, after the step (A), the rotary driver and the tool driver such that the pin separates from the welded workpiece; and (C) operates, after the step (B), the rotary driver and the tool driver such that the pin advances toward the welded workpiece. The controller controls the tool driver such that pressing force applied to the welded workpiece from the pin and the shoulder in the step (C) is smaller than that in the step (B) and/or controls the rotary driver such that rotational frequencies of the pin and the shoulder in the step (C) are lower than those in the step (B).

First claim

Opening claim text (preview).

The invention claimed is: 1. A method of operating a friction stir spot welding apparatus that partially stirs a workpiece including a first workpiece and a second workpiece to weld the first workpiece and the second workpiece to each other, the first workpiece including fiber reinforced plastic, the friction stir spot welding apparatus comprising: a pin that is cylindrical or columnar, rotates about an axis, and advances or retreats in a direction along the axis; a shoulder that is cylindrical, rotates about the axis, and advances or retreats in the direction along the axis, the pin being within the shoulder; a rotary driver to rotate the pin and the shoulder about the axis; and a tool driver to advance and retreat the pin and the shoulder along the axis, the method comprising: (A) operating the rotary driver and the tool driver such that the pin and the shoulder are brought into contact with the workpiece while rotating about the axis; (B) operating, after the step (A), the rotary driver and the tool driver such that the pin moves in a direction away from the workpiece while the pin and the shoulder rotate about the axis, or such that the shoulder is further pressed in the workpiece while the pin and the shoulder rotate about the axis; and (C) operating, after the step (B), the rotary driver and the tool driver such that the pin advances toward the workpiece while the pin and the shoulder rotate about the axis, or such that the shoulder moves in the direction away from the workpiece while the pin and the shoulder rotate about the axis, wherein the tool driver operates such that rotational frequencies of the pin and the shoulder in the step (C) are lower than rotational frequencies of the pin and the shoulder in the step (B), the method further comprising (I)) operating, after the step (C), the rotary driver and the tool driver such that an end surface of the pin and an end surface of the shoulder are located on a front surface of the workpiece while the pin and the shoulder rotate about the axis, wherein the rotary driver operates such that the rotational frequencies of the pin and the shoulder in the step (I)) are lower than the rotational frequencies of the pin and the shoulder in the step (B) and the step (C). 2. The method according to claim 1 , wherein the second workpiece includes fiber reinforced plastic. 3. The method according to claim 1 , wherein: the second workpiece includes metal and includes a hole; and the tool driver operates so as to change a movement speed of the pin in the step (C) in accordance with hardness of the fiber reinforced plastic located around an end portion of the pin. 4. A method of operating a friction stir spot welding apparatus that partially stirs a workpiece including a first workpiece and a second workpiece to weld the first workpiece and the second workpiece to each other, the first workpiece including fiber reinforced plastic, the friction stir spot welding apparatus comprising: a pin that is cylindrical or columnar, rotates about an axis, and advances or retreats in a direction along the axis; a shoulder that is cylindrical, rotates about the axis, and advances or retreats in the direction along the axis, the pin being within the shoulder; a rotary driver to rotate the pin and the shoulder about the axis; and a tool driver to advance and retreat the pin and the shoulder along the axis, the method comprising: (A) operating the rotary driver and the tool driver such that the pin and the shoulder are brought into contact with the workpiece while rotating about the axis; (B) operating, after the step (A), the rotary driver and the tool driver such that the pin moves in a direction away from the workpiece while the pin and the shoulder rotate about the axis, or such that the shoulder is further pressed in the workpiece while the pin and the shoulder rotate about the axis; and (C) operating, after the step (B), the rotary driver and the tool driver such that the pin advances toward the workpiece while the pin and the shoulder rotate about the axis, or such that the shoulder moves in the direction away from the workpiece while the pin and the shoulder rotate about the axis, wherein the tool driver operates such that rotational frequencies of the pin and the shoulder in the step (C) are lower than rotational frequencies of the pin and the shoulder in the step (B), the method further comprising step (D) operating, after the step (C), the rotary driver and the tool driver such that an end surface of the pin and an end surface of the shoulder are located on a front surface of the welded workpiece while the pin and the shoulder rotate about the axis, wherein the tool driver operates such that pressing force applied to the workpiece from the pin and the shoulder in the step (D) is larger than the pressing force applied to the workpiece from the pin and the shoulder in the step (C). 5. The method according to claim 4 , wherein the second workpiece includes fiber reinforced plastic. 6. The method according to claim 4 , wherein: the second workpiece includes metal and includes a hole; and the tool driver operates so as to change a movement speed of the pin in the step (C) in accordance with hardness of the fiber reinforced plastic located around an end portion of the pin.

Assignees

Inventors

Classifications

  • taking account of the properties of the materials to be welded · CPC title

  • B23K20/125Primary

    Rotary tool drive mechanism · CPC title

  • by controlling or regulating the pressure, the force or the mechanical power · CPC title

  • Dissimilar materials · CPC title

  • Fibre-reinforced materials (B29C66/729 takes precedence) · CPC title

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What does patent US11534981B2 cover?
A friction stir spot welding apparatus including a controller that (A) operates a rotary driver and a tool driver such that a pin and a shoulder are brought into contact with a welded workpiece; (B) operates, after the step (A), the rotary driver and the tool driver such that the pin separates from the welded workpiece; and (C) operates, after the step (B), the rotary driver and the tool driver…
Who is the assignee on this patent?
Kawasaki Heavy Ind Ltd
What technology area does this patent fall under?
Primary CPC classification B23K20/125. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Dec 27 2022 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 3 related publications on this page (citations in our corpus or others sharing the same primary CPC).