IP Library › Granted Patent US 10,994,355
Granted Patent B2
US 10,994,355 · App. 16/139,157 · Granted May 4, 2021

Metal laminating and molding method

Inventors: Yasunori Sakai (Hiroshima, JP); Kosei Kawahara (Hiroshima, JP)
Assignee: MITSUBISHI HEAVY INDUSTRIES COMPRESSOR CORPORATION
B23K9/044B33Y10/00B33Y40/00
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,994,355
App. No.
16/139,157
Granted
May 4, 2021
Kind
B2
Abstract

A metal laminating and molding method molds a 3-dimensional molded object formed by sequentially laminating a plurality of metal layers. The metal laminating and molding method is accomplished by repeatedly performing a unit process including a metal layer laminating process of laminating the metal layer constituted by welding beads formed through arc welding and a removal process of removing impurities from a surface of the metal layer laminated in the metal layer laminating process. When the unit process is repeated, the metal layer laminating process is performed again such that a new metal layer is laminated on the surface of the metal layer from which impurities have been removed in the removal process.

Claims (21)

1. A metal laminating and molding method of molding a 3-dimensional molded object formed by sequentially laminating a plurality of metal layers, the metal laminating and molding method comprising:

a unit process including

a metal layer laminating process of laminating the metal layer constituted by welding beads formed through arc welding; and

a removal process of removing impurities adhered to a surface of the metal layer laminated through the metal layer laminating process, wherein

the unit process is repeatedly performed,

when the unit process is repeated, the metal layer laminating process is performed again such that a new metal layer is laminated on the surface of the metal layer from which impurities have been removed in the removal process,

the metal laminating and molding method further includes a mechanical machining process of forming a machined surface by machining the metal layer as the uppermost layer laminated in the metal layer laminating process through mechanical machining,

when the unit process is repeated, the metal layer laminating process is performed again such that a new metal layer is formed on the machined surface formed in the mechanical machining process, and

in the mechanical machining process, a concave section, having a protruding end portion that protrudes from the machined surface and that is formed in an end portion of the machined surface, is formed such that a bottom surface becomes the machined surface.

2. The metal laminating and molding method according to claim 1 , comprising a temperature measuring process of measuring a temperature on the surface of the metal layer as the uppermost layer laminated in the metal layer laminating process,

wherein, when the unit process is repeated, in the case in which the temperature on the surface of the metal layer measured in the temperature measuring process is lower than a predetermined reference temperature, the metal layer laminating process is performed again such that a new metal layer is formed on the surface of the metal layer whose temperature has been measured.

3. The metal laminating and molding method according to claim 2 , comprising a cooling process of cooling the metal layer by supplying a coolant to the surface of the metal layer as the uppermost layer laminated in the metal layer laminating process,

wherein, when the unit process is repeated, the metal layer laminating process is performed again such that a new metal layer is formed on the surface of the metal layer cooled in the cooling process.

4. The metal laminating and molding method according to claim 3 , wherein, in the cooling process, a liquefied coolant is directly supplied to the surface of the metal layer.

5. The metal laminating and molding method according to claim 1 , comprising a cooling process of cooling the metal layer by supplying a coolant to the surface of the metal layer as the uppermost layer laminated in the metal layer laminating process,

wherein, when the unit process is repeated, the metal layer laminating process is performed again such that a new metal layer is formed on the surface of the metal layer cooled in the cooling process.

6. The metal laminating and molding method according to claim 5 , wherein, in the cooling process, a liquefied coolant is directly supplied to the surface of the metal layer.

7. The metal laminating and molding method according to claim 1 , comprising:

a form measuring process of measuring a shape of the metal layer as the uppermost layer from which impurities have been removed in the removal process;

a form determining process of determining whether the shape of the metal layer as the uppermost layer measured in the form measuring process has deviated from predetermined criteria; and

a form adjusting process of adjusting a shape of a new metal layer laminated on the surface of the metal layer whose shape has been measured when it is determined in the form determining process that the shape of the metal layer as the uppermost layer has deviated from the criteria.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2025
From: MITSUBISHI HEAVY INDUSTRIES COMPRESSOR CORPORATION
To: YAMAZAKI MAZAK CORPORATION
Reel/Frame 072833/0982 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 2, 2025
From: ISHIBASHI, KAZUHIRO; TANAKA, YASUYUKI; SUZUKI, ATSUSHI; OUCHI, SEIGO
To: MITSUBISHI HEAVY INDUSTRIES COMPRESSOR CORPORATION
Reel/Frame 072137/0137 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 11, 2018
From: SAKAI, YASUNORI; KAWAHARA, KOSEI
To: MITSUBISHI HEAVY INDUSTRIES COMPRESSOR CORPORATION
Reel/Frame 047129/0824 →
Priority Claims (1)
JP JP2017-213481 · Nov 6, 2017 · national
Continuity (1)
Related Publication 20190134732A1 · May 9, 2019