IP Library Granted Patent US 7,381,921
Granted Patent B2
US 7,381,921 · App. 11/412,870 · Granted Jun 3, 2008

Method for making products by freeform laser sintering

Assignee: BEGO Medical GmbH
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Quick Facts
Patent No.
US 7,381,921
App. No.
11/412,870
Granted
Jun 3, 2008
Kind
B2
Abstract

A method for making metallic or non-metallic products by freeform laser sintering, in which the products are fabricated from powdery material on a substrate plate in vertically additive, layer-by-layer fashion by means of a computer-controlled laser beam, characterized in that at least one support is fabricated between the substrate plate and the outer surface of the product, said support being connected via a predetermined breaking area with the outer surface of the product, wherein the predetermined breaking area is formed by reducing the strength of the support along the outer contour of the product.

Claims (22)

1. A method for making metallic or non-metallic products by freeform laser sintering, in which the products are fabricated from powdery material on a substrate plate in vertically additive, layer-by-layer fashion by means of a computer-controlled laser beam,

wherein at least one support is fabricated between the substrate plate and the outer surface of the product, said support being connected via a predetermined breaking area with the outer surface of the product;

wherein the predetermined breaking area is formed by reducing the strength of the support along the outer contour of the product;

wherein holes are provided in the support in order to reduce its strength; and

wherein the cross-section of the support is decreased in order to reduce its strength.

2. A method for making metallic or non-metallic products by freeform laser sintering, in which the products are fabricated from powdery material on a substrate plate in vertically additive, layer-by-layer fashion by means of a computer-controlled laser beam,

wherein at least one support is fabricated between the substrate plate and the outer surface of the product, said support being connected via a predetermined breaking area with the outer surface of the product;

wherein the predetermined breaking area is formed by reducing the strength of the support along the outer contour of the product; and

wherein boundary conditions of the sintering process, namely the rumination of the laser beam and/or its spot velocity and/or the track pitch and/or the stripe width (perpendicular to the track direction) are automatically changed in response to the respective ratio of the surface to the length of the edge of a sintered layer.

3. The method of claim 2 , wherein the rumination is changed primarily by changing the beam power and secondarily by changing the beam diameter.

4. The method of claim 3 , wherefore equal layer thickness, the grain size of the powder material is modified based on the height of the product that has been built up.

5. The method of claim 4 , wherein each product fabricated on the substrate plate, or the substrate plate itself in the immediate vicinity of each product, is marked by the laser beam with an identification mark.

6. A method for making metallic or non-metallic products by freeform laser sintering, in which the products are fabricated from powdery material on a substrate plate in vertically additive, layer-by-layer fashion by means of a computer-controlled laser beam,

wherein at least one support is fabricated between the substrate plate and the outer surface of the product, said support being connected via a predetermined breaking area with the outer surface of the product; and

wherein the support(s) is/are configured with small cross-sectional thickness and oblong shape, and is/are oriented lengthwise on the substrate plate in the direction that the powder layers are added.

7. The method of claim 6 , wherein the cross-section of the support is decreased in order to reduce its strength.

8. A method for making metallic or non-metallic products by freeform laser sintering, in which the products are fabricated from powdery material on a substrate plate in vertically additive, layer-by-layer fashion by means of a computer-controlled laser beam,

wherein at least one support is fabricated between the substrate plate and the outer surface of the product, said support being connected via a predetermined breaking area with the outer surface of the product; and

wherein bowl-shaped dental products (caps, crowns, etc.) are built up with their full cross-section resting on the support(s).

9. The method of claim 8 , wherein the wall thickness of the products is about 50-200 μm at the edge and that the product data are modified to thicken the wall accordingly.

10. The method of claim 9 , wherein the product data are modified with respect to the inside of the product.

11. The method of claim 10 , wherein the inner edge region is melted at the surface, i.e. to a small depth only, and in this manner smoothed (‘polished’).

Priority Claims (1)
DE 102 19 983 · May 3, 2002 · national
Continuity (2)
Division 1042862200 · May 2, 2003
Related Publication 20060186101A1 · Aug 24, 2006