US2010031772A1PendingUtilityA1
Molded body containing titanium
Est. expiryDec 8, 2026(~0.4 yrs left)· nominal 20-yr term from priority
Inventors:Djamschid Amirzadeh-Asl
C22F 1/18C22C 14/00C22F 1/183Y02P10/20C22B 9/103C22B 1/16
54
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Claims
Abstract
A molded body containing titanium, a method for the production thereof, and the use thereof.
Claims
exact text as granted — not AI-modified1 - 26 . (canceled)
27 . Titanium-containing molded body, comprising at least one of a synthetic or a natural titanium carrier.
28 . A titanium containing molded body according to claim 27 , wherein the titanium carrier is selected from the group consisting of elemental titanium, a titanium compound and a titanium-containing salt.
29 . A titanium containing molded body according to claim 27 , wherein the titanium carrier is titanium dioxide.
30 . A titanium containing molded body according to claim 27 , wherein the titanium carrier is natural.
31 . A titanium containing molded body according to claim 27 , wherein the titanium carrier is synthetic.
32 . A titanium containing molded body according to claim 27 , wherein the titanium carrier is synthetic or natural and has a TiO 2 content, calculated from the total Ti content, of 50 to 100% by weight.
33 . A titanium containing molded body according to claim 27 , wherein the titanium carrier is natural or synthetic and comprises a titanium-dioxide content, calculated from the total titanium content, of 15 to 95% by weight.
34 . A titanium containing molded body according to claim 27 , wherein the titanium carrier is based on at least one of titanium carbonitride, a titanium nitride or a titanium carbide.
35 . A titanium containing molded body according to claim 27 , comprising 0.5 to 100% by weight of the titanium carrier, calculated from the total titanium content.
36 . A titanium containing molded body according to claim 27 , comprising 3 to 70% by weight of the titanium carrier, calculated from the total titanium content.
37 . A titanium containing molded body according to claim 27 , comprising 45 to 55 of the titanium carrier, calculated from the total titanium content.
38 . A titanium containing molded body according to claim 27 , wherein the titanium carrier is synthetic and has titanium-dioxide content of 10 to 100% by weight by weight, calculated from the total titanium content.
39 . A titanium containing molded body according to claim 27 in the form of agglomerated stones, briquettes, pellets or pressed stones.
40 . A method for producing a titanium-containing molded body according to claim 27 , comprising pressing a titanium-containing material to form molded bodies.
41 . The method of claim 40 , wherein the titanium-containing molded bodies are subsequently subjected to heat treatment up to 1,500° C.
42 . The method according to claim 40 , wherein the titanium carrier comprises from 15 to 95% by weight TiO 2 , calculated from the total titanium content.
43 . The method according to claim 40 , wherein the titanium carrier is synthetic and comprises 5 to 100% by weight TiO 2 , calculated from the total titanium content.
44 . A method comprising increasing the durability of a refractory system with the molded body of claim 27 .
45 . A method comprising reducing the recycling substances by preparing the molded body of claim 27 .
46 . A method comprising reducing nitrogen oxides and sulfur with the molded body of claim 27 .
47 . A method comprising reducing undesirable accompanying substances during a smelting process with the molded body of claim 27 .
48 . A method comprising providing a slag-protection agent and alloying agent by providing the molded body of claim 27 .
49 . A method comprising performing a metallurgical process with the molded body of claim 27 .
50 . A method comprising adding the titanium-containing molded body according to claim 27 in a melting or shaft furnace, wherein the method is in the field of primary, secondary and tertiary metallurgy.
51 . A method of increasing durability of a brick lining in a melting or shaft furnace by adding the molded body of claim 27 to the melting or shaft furnace during a metallurgic process.
52 . A method of alloying by adding a titanium-containing molded body according to claim 27 as an alloying agent in a method in the field of primary, secondary and tertiary metallurgy.
53 . A titanium containing molded body according to claim 27 , wherein the titanium carrier is selected from the group consisting of ilmenite, Sorel slag and rutile sand.
54 . The method of claim 40 , wherein the titanium carrier is selected from the group consisting of a natural titanium ore, a titanium-dioxide-rich slag, a synthetic titanium-containing material, and a mixture thereof
55 . The method of claim 40 , further comprising adding, prior to pressing, at least one of a binding agent, a charge substance, for example slag-formers, a silicon-carbide-containing residue, throat and steelworks dust, sludge, a reducing agent.Join the waitlist — get patent alerts
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