IP Library Granted Patent US 12,053,824
Granted Patent B2
US 12,053,824 · App. 17/095,218 · Granted Aug 6, 2024

Method and apparatus for treating combustible and/or reactive particles, method of operating a system for producing a three-dimensional work piece and system for producing a three-dimensional work piece

Inventors: Matthew Schulz-Sciberras (Lübeck, DE); Patrick Sharp (Lübeck, DE)
Assignee: Nikon SLM Slolutions AG
B22F12/70B01D50/20B01D53/346B01D53/38B01D53/73B22F1/145B22F1/16B22F10/28B22F10/85B22F12/90B33Y40/00B01D2251/10B01D2258/02B22F10/00B22F10/32B22F10/322B22F10/34B22F10/77B33Y10/00B33Y30/00
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Quick Facts
Patent No.
US 12,053,824
App. No.
17/095,218
Granted
Aug 6, 2024
Kind
B2
Abstract

In a method for treating combustible and/or reactive particles ( 34 ) which have been separated from a gas stream ( 32 ) by means of a separation device ( 36 ) an oxidizing agent is supplied to an atmosphere surrounding the particles ( 34 ) so as to cause a passivating oxidation of at least a part of the particles ( 34 ). A content of the oxidizing agent in the atmosphere surrounding the particles ( 34 ) is detected and the supply of the oxidizing agent to the atmosphere surrounding the particles ( 34 ) is controlled in dependence on the detected content of the oxidizing agent in the atmosphere surrounding the particles ( 34 ).

Claims (26)

1. A method for treating combustible and/or reactive particles which have been separated from a gas stream by means of a separation device, the method comprising:

supplying an oxidizing agent to an atmosphere surrounding the particles separated from the gas stream so as to cause a passivating oxidation of at least a part of the particles;

detecting a content of the oxidizing agent in the atmosphere surrounding the particles; and

controlling the supply of the oxidizing agent to the atmosphere surrounding the particles in dependence on the detected content of the oxidizing agent in the atmosphere surrounding the particles,

wherein the oxidizing agent and a diluting agent are separately supplied to the atmosphere surrounding the particles so as to form an oxidizing mixture in the atmosphere surrounding the particles, wherein the supply of oxidizing agent and the supply of diluting agent to the atmosphere surrounding the particles and/or to the mixing chamber are controlled in such a manner that the content of the oxidizing agent in the oxidizing mixture increases over time.

2. The method according to claim 1 ,

wherein the particles separated from the gas stream are supplied to a collecting vessel, wherein the oxidizing agent is supplied to the collecting vessel, wherein a content of the oxidizing agent in the collecting vessel is detected, and wherein a supply of the oxidizing agent to the collecting vessel is controlled in dependence on the detected content of the oxidizing agent in the collecting vessel.

3. The method according to claim 1 ,

wherein the supply of the oxidizing agent to the atmosphere surrounding the particles is controlled in such a manner that the content of gaseous oxygen in the atmosphere surrounding the particles, at least during a first period of time following a start of the supply of the oxidizing agent to the atmosphere surrounding the particles is maintained at a level which allows a passivating oxidation of at least a part of the particles, but which is lower than an ambient oxygen content; and/or

wherein the supply of the oxidizing agent to the atmosphere surrounding the particles is controlled in such a manner that the content of gaseous oxygen in the atmosphere surrounding the particles, at least during a first period of time following a start of the supply of the oxidizing agent to the atmosphere surrounding the particles is maintained at a level which allows a passivating oxidation of at least a part of the particles, but which is lower than a Limiting Oxygen Concentration for combustion of that particles from a particular material; and/or

wherein the supply of the oxidizing agent to the atmosphere surrounding the particles is controlled in such a manner that a content of gaseous oxygen in the atmosphere surrounding the particles, at least during a second period of time preceding a completion of the supply of the oxidizing agent to the atmosphere surrounding the particles, approximates an ambient oxygen content of approximately 21%.

4. The method according to claim 1 , further comprising:

stirring and/or revolving the particles separated from the gas stream.

5. The method according to claim 1 , further comprising

controlling the supply of the oxidizing agent to the atmosphere surrounding the particles in dependence on a pressure in the atmosphere surrounding the particles, wherein the supply of the oxidizing agent to the atmosphere surrounding the particles is controlled in such a manner that the pressure in the atmosphere surrounding the particles does not exceed a threshold value.

6. The method according to claim 5 ,

wherein

the oxidizing agent is supplied to the atmosphere surrounding the particles in cycles;

following a supply cycle of the oxidizing agent, a variation of the pressure in the atmosphere surrounding the particles is determined; and

a further supply cycle of the oxidizing agent to the atmosphere surrounding the particles is controlled in dependence on the determined pressure variation in the atmosphere surrounding the particles.

7. A method of operating a system for producing a three-dimensional work piece by irradiating layers of a raw material powder with electromagnetic or particle radiation, the method comprising:

supplying a gas stream to a process chamber of the system;

directing the gas stream through the process chamber, wherein the gas stream, while being directed through the process chamber takes up combustible and/or reactive particles;

discharging the gas stream containing the combustible and/or reactive particles from the process chamber;

separating the combustible and/or reactive particles from the gas stream by means of a separation device; and

treating the combustible and/or reactive particles separated from the gas stream in accordance with the method as defined in claim 1 .

Assignments (4)
MERGER Recorded Nov 28, 2023
From: SLM SOLUTIONS GROUP AG
To: NIKON SLM SOLUTIONS AG
Reel/Frame 065693/0600 →
EMPLOYMENT AGREEMENT Recorded Mar 1, 2023
From: SHARP, PATRICK
To: SLM SOLUTIONS GROUP AG
Reel/Frame 062902/0671 →
UTILIZATION OF INVENTION AGREEMENT Recorded Mar 1, 2023
From: SHARP, PATRICK
To: SLM SOLUTIONS GROUP AG
Reel/Frame 062902/0951 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 27, 2023
From: SCHULZ-SCIBERRAS, MATTHEW
To: SLM SOLUTIONS GROUP AG
Reel/Frame 062810/0517 →
Priority Claims (1)
DE 10 2019 130 452.0 · Nov 12, 2019 · national
Continuity (1)
Related Publication 20210138397A1 · May 13, 2021