IP Library Granted Patent US 9,096,917
Granted Patent B2
US 9,096,917 · App. 14/003,040 · Granted Aug 4, 2015

Composite material comprising a precious metal, manufacturing process and use of such material

Inventors: Senad Hasanovic (Lausanne, CH); Andreas Mortensen (St-Saphorin/Morges, CH); Ludger Weber (Le Mont /s Lausanne, CH); Reza Tavangar (Tehran, IR)
Assignee: HUBLOT SA, GENÈVE
C22C32/00B22D19/00C04B41/009C04B41/4523C04B41/88C22C5/02C04B35/563
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Quick Facts
Patent No.
US 9,096,917
App. No.
14/003,040
Granted
Aug 4, 2015
Kind
B2
Abstract

A composite material combining—a precious metal or an alloy containing a precious metal—and a boron-based ceramic having a melting point greater than that of said precious metal and a density at most equal to 4 g/cm3.

Claims (23)

1. A composite material combining:

a precious metal or an alloy containing a precious metal;

and a porous, preform boron-based ceramic with a melting point greater than that of said precious metal and a density at most equal to 4 g/cm3.

2. The composite material according to claim 1 , having a concentration of precious metal greater than 75% by weight of the total weight of said material.

3. The composite material according to claim 1 , in which said precious metal is chosen from among: gold, platinum, palladium, and silver.

4. The composite material according to claim 3 , in which said precious metal is gold.

5. The composite material according to claim 1 , in which the ceramic is combined with an alloy of gold or aluminum, the composite material having a concentration of aluminum at most equal to 20% by weight of the total weight of the composite material, preferably at most equal to 5% by weight of the total weight of the composite material.

6. The composite material according to claim 1 , in which the precious metal is alloyed to titanium, the concentration of titanium being comprised between 0.5 and 2% of the total weight of the composite material, preferably approximately 1% by weight of the total weight of the composite material.

7. The composite material according to claim 1 , in which said ceramic is chosen from among: a boron carbide, a boron nitride, a boron oxide, and a BCN heterodiamond.

8. The composite material according to claim 7 , in which said ceramic is chosen from among the boron carbides having as an approximate formula B4C, B13C2, and B12C3.

9. The composite material according to claim 7 , in which said ceramic is boron nitride having the formula BN, chosen from among: cubic boron nitride, boron nitride with a Wurtzite type crystalline structure, hexagonal boron nitride.

10. The composite material according to claim 7 , in which said ceramic is boron oxide B6O.

11. The composite material according to claim 7 , in which said ceramic is cubic BC2N.

12. The material according to claim 1 , in which said ceramic is an electrical conductor.

13. The composite material according to claim 1 , having a hardness greater than 320 VHN, preferably greater than 400 VHN.

14. The composite material according to claim 1 , in which the ceramic represents a volume fraction comprised between 55 and 80% of said material.

15. The composite material according to claim 1 , in which the ceramic is in the form of discrete particles having an equivalent diameter comprised between 0.1 μm and 1 mm, preferably comprised between 1 μm and 100 μm.

16. The composite material according to claim 1 , in which the ceramic forms a continuous, interconnected phase.

17. The composite material according to claim 1 , presenting a density comprised between 7 and 14 g/cm3.

18. A process for manufacturing a composite material according to any of the previous claims, said process having an infiltration step in which the precious metal or alloy is infiltrated under a pressure of 10 to 200 bar, preferably from 75 to 150 bar, into a porous, preform consisting of said ceramic.

19. The process according to claim 18 , in which, during the infiltration step, an alloy of gold and aluminum in liquid form is infiltrated under pressure into a porous, preform of boron carbide.

20. The process according to claim 18 , also comprising, prior to the infiltration step, a sintering step during which the ceramic preform is at least partially sintered.

21. The use of a composite material according to claim 18 in clock making or jewelry making.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2017
From: HUBLOT SA, GENEVE
To: HUBLOT SA
Reel/Frame 042575/0542 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 23, 2013
From: HASANOVIC, SENAD; MORTENSEN, ANDREAS; WEBER, LUDGER; TAVANGAR, REZA
To: HUBLOT SA, GENEVE
Reel/Frame 031459/0849 →
Continuity (1)
Related Publication 20130344316A1 · Dec 26, 2013