IP Library › Granted Patent US 10,675,719
Granted Patent B2
US 10,675,719 · App. 15/539,323 · Granted Jun 9, 2020

Joining member, solder material, solder paste, formed solder, flux coated material, and solder joint

Inventors: Hiroyoshi Kawasaki (Tokyo, JP); Shigeki Kondo (Tochigi, JP); Atsushi Ikeda (Tochigi, JP); Takahiro Roppongi (Tochigi, JP); Takashi Hagiwara (Tochigi, JP); Daisuke Soma (Tochigi, JP); Kaichi Tsuruta (Tochigi, JP); Isamu Sato (Saitama, JP); Yuji Kawamata (Tochigi, JP)
Assignee: Senju Metal Industry Co., Ltd.
B23K35/262B22F1/025B22F9/08B23K1/00B23K3/06B23K35/025B23K35/0244B23K35/22B23K35/3033C22C9/00C22C13/00C23C18/32C25D3/18C25D3/32C25D3/562C25D3/60C25D7/00B22F2301/10B22F2301/15C25D5/10C25D5/12C25D5/18
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Quick Facts
Patent No.
US 10,675,719
App. No.
15/539,323
Granted
Jun 9, 2020
Kind
B2
Abstract

Provided herein is a solder material that includes a spherical core that provides space between a joint object and another object to be joined to the joint object and a solder coated layer that has a melting point at which a core layer of the core is not melted. The solder coated layer includes Sn as a main ingredient and 0 to 2 mass % of Ag, and coats the core. The solder coated layer has an average grain diameter of crystal grains of 3 μm or less, and the solder material has a spherical diameter of 1 to 230 μm and a sphericity of 0.95 or more.

Claims (15)

1. A solder material characterized in that the solder material comprises:

a spherical core that provides space between a joint object and another object to be joined to the joint object; and

a solder coated layer that has a melting point at which a core layer of the core is not melted, contains Sn as a main ingredient and 0 to 2 mass % of Ag, and coats the core, wherein

the solder coated layer has an average grain diameter of crystal grains of 3 μm or less,

the solder material has a spherical diameter of 1 to 230 μm and a sphericity of 0.95 or more, and

the solder coated layer contains a brightener.

2. The solder material according to claim 1 , wherein the core is a spherical material made of an elemental metal, an alloy, a metal oxide, or a mixed metal oxide of Cu, Ni, Ag, Bi, Pb, Al, Sn, Fe, Zn, In, Ge, Sb, Co, Mn, Au, Si, Pt, Cr, La, Mo, Nb, Pd, Ti, Zr, or Mg, or a resin.

3. The solder material according to claim 1 , wherein the solder coated layer contains at least one selected from a group consisting of Cu, Bi, In, Zn, Ni, Co, Fe, Pb, P, Ge, Ga, and Sb as an additive element.

4. The solder material according to claim 1 , wherein a dose is 0.0200 cph/cm2 or less.

5. A method of manufacturing a solder material wherein the method comprises:

manufacturing the solder material having a spherical diameter of 1 to 230 μm and a sphericity of 0.95 or more by coating on a spherical core that provides space between a joint object and another object to be joined to the joint object, a solder coated layer that has a melting point at which a core layer of the core is not melted, and adding brightener to plating solution for forming the solder coated layer, wherein the solder coated layer contains Sn as a main ingredient and 0 to 2 mass % of Ag, wherein the solder coated layer has a grain diameter of crystal grains of 3 μm or less, and wherein the solder coated layer contains a brightener.

6. A solder paste wherein the solder paste comprises the solder material according to claim 1 .

7. A formed solder wherein the formed solder comprises the solder material according to claim 1 .

8. A flux coated material wherein the flux coated material comprises the solder material according to claim 1 .

9. A solder joint wherein the solder joint comprises the solder material according to claim 1 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2017
From: KAWASAKI, HIROYOSHI; KONDO, SHIGEKI; IKEDA, ATSUSHI; ROPPONGI, TAKAHIRO; HAGIWARA, TAKASHI; SOMA, DAISUKE; TSURUTA, KAICHI; SATO, ISAMU; KAWAMATA, YUJI
To: SENJU METAL INDUSTRY CO., LTD.
Reel/Frame 042796/0010 →
Priority Claims (1)
JP 2014-264998 · Dec 26, 2014 · national
Continuity (1)
Related Publication 20180015572A1 · Jan 18, 2018
Cited By (1)
US 12,288,765