IP Library Granted Patent US 11,318,536
Granted Patent B2
US 11,318,536 · App. 16/801,324 · Granted May 3, 2022

Additive manufacturing apparatus and additive manufacturing method

Inventors: Tomoko Nishino (Yokohama, JP); Naotada Okada (Yokohama, JP)
Assignee: Kabushiki Kaisha Toshiba
B22F10/20B29C64/153B29C64/386B29C67/00B33Y10/00B33Y30/00B33Y50/02G01B11/2441G01N21/1702G01N21/1717G01N29/043G01N29/2418B22F10/30B29K2105/251G01N2021/1706G01N2291/0289G01N2291/267G01N2291/2698Y02P10/25
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Quick Facts
Patent No.
US 11,318,536
App. No.
16/801,324
Granted
May 3, 2022
Kind
B2
Abstract

An additive manufacturing apparatus according to one embodiment includes a manufacturing unit, an elastic wave generation unit, an elastic wave detection unit, and an inspection unit. The manufacturing unit sequentially stacks a layer formed by emitting a first energy beam to a material and solidifying the material. The elastic wave generation unit emits a second energy beam to a manufactured object including the layer and generates an elastic wave propagating in the manufactured object. The elastic wave detection unit detects the elastic wave. The inspection unit inspects the manufactured object on the basis of a detection result from the elastic wave detection unit.

Claims (23)

1. An additive manufacturing method comprising:

emitting a first energy beam to a material and solidifying the material to form a layer;

processing a surface of a manufactured object including the layer by emission of a second energy beam to the surface, and propagating, in the manufactured object, an elastic wave generated by impact of the emission of the second energy beam;

detecting the elastic wave; and

inspecting an abnormality in the manufactured object on the basis of a detection result about the elastic wave.

2. The additive manufacturing method according to claim 1 , further comprising:

measuring a shape of the layer; and

processing the surface on the basis of a result of the measurement.

3. The additive manufacturing method according to claim 1 , wherein the detecting includes detecting the elastic wave in an area of the manufactured object in which the surface is processed.

4. The additive manufacturing method according to claim 1 , wherein

the second energy beam is a first laser beam for processing,

the additive manufacturing method further comprises emitting a second laser beam for detection to the surface and receiving reflected light of the second laser beam, including oscillation of the surface by the elastic wave, reflected from the surface to detect the elastic wave, and

the first laser beam and the second laser beam do not interfere with each other.

5. An additive manufacturing method comprising:

emitting an energy beam to a material and solidifying the material to form a layer;

emitting a laser beam for processing and detection;

dividing the laser beam into a first laser beam for processing and a second laser beam for detection;

processing a surface of a manufactured object including the layer by emission of the first laser beam to the surface, and propagating, in the manufactured object, an elastic wave generated by impact of the emission of the first laser beam;

emitting the second laser beam to the surface and receiving reflected light of the second laser beam including oscillation of the surface by the elastic wave to detect the elastic wave; and

inspecting an abnormality in the manufactured object on a basis of a detection result about the elastic wave.

6. The additive manufacturing method according to claim 1 , further comprising

when the abnormality in the manufactured object is detected, partially removing the manufactured object from the surface of the manufactured object to the abnormality to form an opening, and filling the material in the opening of the manufactured object formed after removal thereof and solidifying the material.

7. The additive manufacturing method according to claim 6 , wherein when a protruding portion is formed above a upper boundary of the opening by filling the material in the opening, the partially removing includes removing at least part of the protruding portion of the manufactured object.

Priority Claims (1)
JP 2014-187982 · Sep 16, 2014 · national
Continuity (2)
Division 15505448
Related Publication 20200198012A1 · Jun 25, 2020