IP Library › Granted Patent US 10,493,562
Granted Patent B2
US 10,493,562 · App. 14/766,627 · Granted Dec 3, 2019

Selective laser solidification apparatus and method

Inventors: Marc Frank Dimter (Kornwestheim, DE); Ralph Markus Mayer (Kornwestheim, DE); Thomas Hess (Munich, DE)
Assignee: RENISHAW PLC
B23K26/142B22F3/1055B23K26/0869B23K26/342B29C64/153B29C64/386B33Y10/00B33Y30/00B33Y50/02B22F2003/1056B22F2999/00B28B1/001Y02P10/295
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Quick Facts
Patent No.
US 10,493,562
App. No.
14/766,627
Granted
Dec 3, 2019
Kind
B2
Abstract

Selective laser solidification apparatus is described that includes a powder bed onto which a powder layer can be deposited and a gas flow unit for passing a flow of gas over the powder bed along a predefined gas flow direction. A laser scanning unit is provided for scanning a laser beam over the powder layer to selectively solidify at least part of the powder layer to form a required pattern. The required pattern is formed from a plurality of stripes or stripe segments that are formed by advancing the laser beam along the stripe or stripe segment in a stripe formation direction. The stripe formation direction is arranged so that it always at least partially opposes the predefined gas flow direction. A corresponding method is also described.

Claims (18)

1. A method of selectively melting a plurality of powder layers deposited on a powder bed to form a three-dimensional object, comprising the steps of:

passing a substantially planar flow of gas over the powder bed along a predefined gas flow direction; and

scanning a laser beam over each of the plurality of powder layers to selectively melt at least part of each of the powder layers to form a required pattern, the required pattern of each of the powder layers being formed from a plurality of stripes or stripe segments, and each stripe or stripe segment being formed by advancing the laser beam along the stripe or stripe segment in a stripe formation direction,

wherein the stripe formation direction is always at least partially opposed to the predefined gas flow direction for each stripe or stripe segment of each of the plurality of powder layers.

2. The method of selectively melting a plurality of powder layers according to claim 1 , wherein the stripe formation direction subtends an angle (a) of more than 30° to the normal to the predefined gas flow direction.

3. The method of selectively melting a plurality of powder layers according to claim 1 , wherein:

the flow of gas over the powder bed originates from a first side of the powder bed, and

the plurality of stripes or stripe segments of each of the powder layers are formed in reverse order of their proximity to the first side of the powder bed.

4. The method of selectively melting a plurality of powder layers according to claim 1 , wherein the required pattern of each of the powder layers is formed from a plurality of elongate stripes.

5. The method of selectively melting a plurality of powder layers according to claim 4 , wherein:

each of the plurality of elongate stripes comprises a linear stripe having an elongate axis, and

the stripe formation direction is parallel to the elongate axis.

6. The method of selectively melting a plurality of powder layers according to claim 1 , wherein the required pattern of each of the powder layers is formed from a plurality of stripe segments.

7. The method of selectively melting a plurality of powder layers according to claim 1 , further comprising moving a laser spot across each of the plurality of stripes or stripe segments to form a plurality of hatch lines that are advanced along the stripe formation direction.

8. The method of selectively melting a plurality of powder layers according to claim 7 , wherein the plurality of hatch lines of each of the plurality of stripes or stripe segments are formed by moving the laser beam back and forth across the stripe or stripe segment.

9. The method of selectively melting a plurality of powder layers according to claim 7 , wherein all hatch lines of each of the plurality of stripes or stripe segments are formed by moving the laser beam in the same line direction across the stripe or stripe segment, the line direction being at least partially opposed to the predefined gas flow direction.

10. The method of selectively melting a plurality of powder layers according to claim 9 , wherein the line direction is selected based on the orientation of the stripe formation direction relative to the predefined gas flow direction.

11. The method of selectively melting a plurality of powder layers according to claim 1 , wherein different stripe formation directions are used for adjacent ones of the plurality of powder layers.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2018
From: DIMTER, MARC F; MAYER, RALPH M; HESS, THOMAS
To: RENISHAW PLC
Reel/Frame 045648/0447 →
Priority Claims (2)
GB 1302602.6 · Feb 14, 2013 · national
GB 1303920.1 · Mar 5, 2013 · national
Continuity (2)
Provisional Application 61774215 · Mar 7, 2013
Related Publication 20160001401A1 · Jan 7, 2016