IP Library Granted Patent US 11,998,408
Granted Patent B2
US 11,998,408 · App. 18/015,338 · Granted Jun 4, 2024

Process of manufacturing a dental milling block with a homogeneous color and/or translucency gradient

Inventors: Martin Goetzinger (OT Pflugdorf, DE); Hans R. Schnagl (Jengen, DE)
Assignee: Solventum Intellectual Properties Company
A61C13/0022A61K6/802B01F23/60B01F27/2312B01F27/806B28B3/00B28B11/24
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Quick Facts
Patent No.
US 11,998,408
App. No.
18/015,338
Granted
Jun 4, 2024
Kind
B2
Abstract

The invention relates to a process of manufacturing a dental milling block with a homogeneous color and/or translucency gradient. This process comprises the steps of providing a mold with a cavity having a z-direction and an x/y-direction, filling the cavity partially with a first powder up to a height H 1 , the first powder having a volume VP 1 with a top and bottom surface, introducing a second powder on top of the first powder up to a height H 2 , the second powder having a volume VP 2 with a top and bottom surface and, the top surface of the first powder being in contact with the bottom surface of the second powder and forming an intermediate region, providing a mixer unit with at least one rotatable mixing element, introducing the rotating mixing element in z-direction into the intermediate region, mixing the powder located in the intermediate region by rotating the mixing element, removing the rotating mixing element from the powder, compacting the powder, optionally applying heat to the compacted powder, the first powder differing from the second powder by its physical properties and/or chemical composition and/or color. The invention also relates to a process of producing a dental restoration using dental milling block obtainable according to this process.

Claims (34)

1. A process of manufacturing a dental milling block, the process comprising the steps of

providing a mold with a cavity having a z-direction and an x/y-direction,

filling the cavity partially with a first powder up to a height H 1 , the first powder having a volume V P1 with a top and bottom surface,

introducing a second powder on top of the first powder up to a height H 2 , the second powder having a volume V P2 with a top and bottom surface and,

the top surface of the first powder being in contact with the bottom surface of the second powder and forming an intermediate region,

providing a mixer unit with at least one rotatable mixing element,

introducing the mixing element in z-direction into the intermediate region while it is rotating,

mixing the powder located in the intermediate region by rotating the mixing element,

removing the mixing element from the powder while it is rotating, and

compacting the powder,

optionally applying heat to the compacted powder,

the first powder differing from the second powder by its physical properties and/or chemical composition and/or color.

2. The process according to claim 1 , wherein the first powder and the second powder being characterized by a repose angle of 15 to 35°.

3. The process according to claim 1 , wherein the first powder being applied in form of a layer or a cone.

4. The process according to claim 1 , wherein the first powder and/or second powder being characterized by the following features alone or in combination:

a) the dominant shape of the powder particles of the powders being spherical,

b) having a BET surface of 4 to 20 m 2 /g;

c) the powder particles of the first and second powder being agglomerates or aggregates of smaller particles;

d) having a powder particle size d50 of 25 to 150 μm;

e) having a bulk specific density of 0.9 to 2 g/cm 3 .

5. The process according to claim 1 , wherein the powder to be mixed in the intermediate region extending to less than 95% or less than 80% of the dimension of the cavity of the mold in x/y-direction.

6. The process according to claim 1 , wherein the at least one mixing element is moved in z-direction during the mixing step over a distance of less than 90% or less than 60% of height H 2 .

7. The process according to claim 1 , wherein the mixing step being adjusted to obtain a gradient with respect to its physical properties and/or chemical composition and/or color of the powders in z-direction and x/y-direction.

8. The process according to claim 7 , wherein the gradient extending in z-direction at least over 20% or at least over 40% of height H 2 .

9. The process according to claim 1 , wherein the volume of the powders V P1 and V P2 differing from each other by not more than 60%.

10. The process according to claim 1 , wherein the at least one mixing element has a rotation speed RS 2 at the height H 2 and a rotation speed RS 1 at the height Hi, wherein RS 1 is different from RS 2 .

11. The process according to claim 1 , wherein the mixer unit comprising at least 2 individually rotatable or individually shaped mixing elements.

12. The process according to claim 1 , wherein the direction of the rotation and/or the rotation speed of the mixing element(s) being individually adjustable.

13. The process according to claim 1 and not comprising the step of filling into the cavity of the mold a further powder being different from the first and second powder.

14. A process of producing a dental restoration, the process comprising the steps of

manufacturing a dental milling block according to claim 1 applying heat to the compacted powder to obtain a heat-treated dental milling block,

machining a dental restoration from the heat-treated dental milling block, and

sintering the dental restoration.

15. A kit of parts for manufacturing a dental milling block comprising a mold as claimed in claim 1 , a mixer unit as claimed in claim 1 , and a first and a second powder as claimed in claim 1 .

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2024
From: 3M INNOVATIVE PROPERTIES COMPANY
To: SOLVENTUM INTELLECTUAL PROPERTIES COMPANY
Reel/Frame 066438/0301 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2023
From: GOETZINGER, MARTIN; SCHNAGL, HANS R.
To: 3M INNOVATIVE PROPERTIES COMPANY
Reel/Frame 062321/0030 →
Priority Claims (1)
EP 20188292 · Jul 29, 2020 · regional
Continuity (1)
Related Publication 20230270529A1 · Aug 31, 2023
Cited By (1)
US 12,558,204