IP Library Patent Application 17059310
Patent Application
App. No. 17/059,310

METHOD FOR PRODUCING A CERAMIC COMPONENT

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Quick Facts
Patent No.
US None
App. No.
17/059,310
Abstract

A method for producing a ceramic component from a composite material containing at least one hard material and plastic, to the component produced by said method and to the use of said component. Hie method includes the following steps: a) providing a green body comprising at least one hard material, which has been produced by means of a 3D printing method, b) impregnating the green body with at least one liquid resin system and c) curing the impregnated green body to form a synthetic resin matrix. The hard material is preferably SiC and/or B4C.

Claims (22)

1 - 15 . (canceled)

16 . A method for producing a ceramic component from a composite material containing at least one hard material and plastic, comprising the following steps:

a) providing a green body comprising at least one hard material produced by a 3D printing process.

b) impregnating the green body with at least one liquid resin system and

c) curing the impregnated green body to form a synthetic resin matrix.

17 . The method according to claim 16 , wherein the at least one hard material in step a) represents silicon carbide (SiC), boron carbide (B 4 C) or any mixture of SiC and B 4 C.

18 . The method according to claim 16 , wherein at least one hard material having a grain size (d50) between 10 μm and 500 μm is used for the production of the green body.

19 . The method according to claim 16 , wherein the at least one liquid resin system in step b) is a resin system which is converted into a synthetic resin matrix by means of a polycondensation reaction or a polyaddition reaction.

20 . The method according to claim 19 , wherein the at least one synthetic resin matrix produced by means of a polyaddition reaction represents an epoxy resin, a polyurethane resin or a benzoxazine resin, or the at least one synthetic resin matrix produced by means of a polycondensation reaction represents a phenolic resin or a furan resin, or the at least one synthetic resin matrix represents any mixture of these resins.

21 . The method according to claim 16 , wherein the impregnation with at least one liquid resin system in step b) is carried out by spraying, dipping, brushing, vacuum impregnation or by vacuum pressure impregnation.

22 . The method according to claim 16 , wherein the curing in step c) is carried out at room temperature or by applying a temperature in a range of 60° C. to 250° C.

23 . The method according to claim 16 , wherein the steps of impregnation with at least one liquid resin system which is converted into a synthetic resin matrix by means of polycondensation according to step b) and of curing according to step c) arc repeated at least once.

24 . The method according to claim 16 , wherein in step b) an impregnation with at least one liquid resin system which is converted into a synthetic resin matrix by means of a polycondensation reaction is carried out, and, after step c) of curing, a step d) of carbonising the cured component is earned out, followed by the steps of e) impregnating the carbonised body with a liquid resin system which is converted into a synthetic resin matrix by means of a polyaddition reaction or a polycondensation reaction, and f) curing the impregnated body to form a synthetic resin matrix.

25 . A Ceramic component made of a composite material containing at least one hard material and plastic produced by a method for producing a ceramic component from a composite material containing at least one hard material and plastic, comprising the following steps:

a) providing a green body comprising at least one hard material produced by a 3D printing process.

b) impregnating the green body with at least one liquid resin system and

c) curing the impregnated green body to form a synthetic resin matrix.

26 . The ceramic component according 10 claim 25 , wherein the component has a specific resistance of less than 10,000 μOhm*m.

27 . The ceramic component according to claim 25 , wherein the component has a Shore hardness D of greater than/equal to 90.

28 . The ceramic component according to claim 25 , wherein the component has a thermal conductivity of at least 2 W/(m·K).

29 . The ceramic component according to claim 25 , wherein the component has a strength of at least 80 MPa when impregnated with at least one liquid resin system which reacts by means of a polyaddition reaction, or has a strength of at least 40 MPa when impregnated with at least one liquid resin system which reacts by means of polycondensation.

30 . A use of a ceramic component according to claim 25 as an impeller and shut-off or rotary valve in pumps and compressors, as a pump casing, as internals in columns, as static mixing elements, as turbulators, as spray nozzles, as an electrical heating element, as a classifier wheel, as a lining element for protecting against wear and in corrosive applications or as an oxidation-stable high-temperature mould.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Jul 4, 2024
From: SGL CARBON SE
To: BREMBO SGL CARBON CERAMIC BRAKES GMBH
Reel/Frame 067913/0164 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2021
From: ÖTTINGER, OSWIN; DAMJANOVIC, TANJA; KRABLER, NIKLAS; RASHIDI, ARASH; SARTOR, SEBASTIAN; SCHULZE, SEBASTIAN
To: SGL CARBON SE
Reel/Frame 056497/0765 →