Laser welded shaped steel

US10144091B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10144091-B2
Application numberUS-201214416796-A
CountryUS
Kind codeB2
Filing dateJul 26, 2012
Priority dateJul 26, 2012
Publication dateDec 4, 2018
Grant dateDec 4, 2018

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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 welded portion shape of a cross-section perpendicular to the shaped steel longitudinal direction is set to satisfy a>0 mm, b>0 mm, c≥0.14 Tw, d≥0 mm, e≥0 mm, a+d≤2 mm and b+e≤2 mm; where a is a front melting width of the web material (on the laser beam irradiation side), b is a rear melting width of the web material (on the laser beam non-irradiation side), c is a maximum weld penetration depth, in a plate pressure direction, into the flange material, d is a front melting width of the flange material (on the laser beam irradiation side), e is a rear melting width of the flange material (on the laser beam non-irradiation side), and Tw is the plate thickness of the web material.

First claim

Opening claim text (preview).

The invention claimed is: 1. A laser-welded shaped steel comprising a T-shaped joint, formed by pressing of an edge of a plate-shaped web material perpendicularly against a plate-shaped flange material, which is fusion-joined by a one-pass laser beam irradiation that is irradiated from a front side face of the web material to form a continuous one-pass weld bead along the edge of the web material with the flange material, wherein: both the flange material and the web material comprise a steel plate; the weld melts through the entire thickness of the web material and into a front side face of the flange material to form a weld penetration which extends from a laser beam irradiation side to a laser beam non-irradiation side of the flange material; and a cross-section of the weld bead perpendicular to the longitudinal direction of said shaped steel satisfies a>0, b>0, c≥0.14 Tw, d≥0, e≥0, wherein: a is a front melting width of the web material on the laser beam irradiation side, b is a rear melting width of the web material on the laser beam non-irradiation side, c is a maximum weld penetration depth, in the plate thickness direction, into the flange material opposite the web material, d is a front melting width of the flange material on the laser beam irradiation side, e is a rear melting width of the flange material on the laser beam non-irradiation side, and Tw is the plate thickness of the web material, with all units thereof being mm, and wherein the maximum weld penetration depth into the flange material extends in a direction substantially transverse to the edge of the web material. 2. The laser-welded shaped steel according to claim 1 , wherein a surface area of the weld penetration into the flange material is Sf and a surface area of the weld penetration into the web material is Su, and a ratio Sf/Su satisfies Sf/Su<0.75. 3. A laser-welded shaped steel comprising a T-shaped joint, formed by pressing of an edge of a plate-shaped web material perpendicularly against a plate-shaped flange material, which is fusion-joined by a of one-pass laser beam irradiation that is irradiated from a front side face of the web material to form a continuous one-pass weld bead along the edge of the web material with the flange material, wherein: both the flange material and the web material comprise a galvanized steel plate; the weld melts through the entire thickness of the web material and into a front side face of the flange material to form a weld penetration which extends from a laser beam irradiation side to a laser beam non-irradiation side of the flange material; and a cross-section of the weld bead perpendicular to the longitudinal direction of said shaped steel satisfies a>0, b>0, c≥0.14 Tw, d≥0, e≥0, a+d≤2, b+e≤2, wherein: a is a front melting width of the web material on the laser beam irradiation side, b is a rear melting width of the web material on the laser beam non-irradiation side, c is a maximum weld penetration depth, in the plate thickness direction, into the flange material opposite the web material, d is a front melting width of the flange material on the laser beam irradiation side, e is a rear melting width of the flange material on the laser beam non-irradiation side, and Tw is the plate thickness of the web material, with all units thereof being mm, and wherein the maximum weld penetration depth into the flange material extends in a direction substantially transverse to the edge of the web material. 4. The laser-welded shaped steel according to claim 3 , wherein a surface area of the weld penetration into the flange material is Sf and a surface area of the weld penetration into the web material is Su, and a ratio Sf/Su satisfies Sf/Su<0.75.

Assignees

Inventors

Classifications

  • Operations & Transport · mapped topic

  • Cross-Sectional Technologies · mapped topic

  • taking account of the properties of the material involved · CPC title

  • B23K26/242Primary

    Fillet welding, i.e. involving a weld of substantially triangular cross section joining two parts · CPC title

  • Operations & Transport · mapped topic

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What does patent US10144091B2 cover?
A welded portion shape of a cross-section perpendicular to the shaped steel longitudinal direction is set to satisfy a>0 mm, b>0 mm, c≥0.14 Tw, d≥0 mm, e≥0 mm, a+d≤2 mm and b+e≤2 mm; where a is a front melting width of the web material (on the laser beam irradiation side), b is a rear melting width of the web material (on the laser beam non-irradiation side), c is a maximum weld penetration dep…
Who is the assignee on this patent?
Sakurada Yasuhiro, Nakako Takefumi, Asada Hiroshi, and 1 more
What technology area does this patent fall under?
Primary CPC classification B23K26/242. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Dec 04 2018 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 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).