IP Library Granted Patent US 7,288,157
Granted Patent B2
US 7,288,157 · App. 11/598,082 · Granted Oct 30, 2007

Corrosion and wear resistant alloy

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Quick Facts
Patent No.
US 7,288,157
App. No.
11/598,082
Granted
Oct 30, 2007
Kind
B2
Abstract

A powder metallurgy corrosion and wear resistant tool steel article, and alloy thereof. The article is manufactured by hot isostatic compaction of nitrogen atomized, prealloyed high-chromium, high-vanadium, high-niobium powder particles. The alloy is characterized by very high wear and corrosion resistance, making it particularly useful for use in the manufacture of components for advanced bearing designs as well as machinery parts exposed to severe abrasive wear and corrosion conditions, as encountered, for example, in the plastic injection molding industry and food industry.

Claims (40)

1. A corrosion and wear resistant tool steel article produced by hot isostatic compaction of nitrogen gas atomized prealloyed powder particles consisting essentially of, in weight percent:

C: 2.0-3.5;

Si: 1.0 max.;

Mn: 1.0 max.;

Cr: 12.5-18.0;

Mo: 2.0-5.0;

V: 6.0-11.0;

Nb: 2.0-6.0;

Co: 1.5-5.0;

N: 0.11-0.30;

and the balance is essentially iron and incidental impurities.

2. A corrosion and wear resistant tool steel article produced by hot isostatic compaction of nitrogen gas atomized prealloyed powder particles consisting essentially of, in weight percent:

C: 2.3-3.2;

Si: 0.9 max.;

Mn: 0.8 max.;

Cr: 13.0-16.5;

Mo: 2.5-4.5;

V: 7.0-10.5;

Nb: 2.8-5.0;

Co: 1.5-4.0;

N: 0.11-0.25;

and the balance is essentially iron and incidental impurities.

3. A corrosion and wear resistant tool steel article produced by hot isostatic compaction of nitrogen gas atomized prealloyed powder particles consisting essentially of, in weight percent:

C: 2.7-3.0;

Si: 0.70 max.;

Mn: 0.50 max.;

Cr: 13.5-14.5;

Mo: 3.0-4.0;

V: 8.5-9.5;

Nb: 3.0-4.0;

Co: 2.0-3.0;

N: 0.11-0.20;

and the balance is essentially iron and incidental impurities.

4. The alloy of claim 1 , claim 2 , or claim 3 , wherein carbon is balanced with chromium, molybdenum, niobium, vanadium, and nitrogen in accordance with:

C min =0.4+0.099×(% Cr−11)+0.063×% Mo+0.177×% V+0.13×% Nb−0.85×% N

C max =0.6+0.099×(% Cr−11)+0.063×% Mo+0.177×% V+0.13×% Nb−0.85×% N.

5. A corrosion and wear resistant tool steel alloy produced by hot isostatic compaction of nitrogen gas atomized prealloyed powder particles according to claim 1 , claim 2 , or claim 3 , in which the microstructure contains at least 20% of primary carbides of which at least 50% are MC type carbides.

Cmin=0.4+0.099×(% Cr−11)+0.063×% Mo+0.177×% V+0.13×% Nb−0.85×% N.

6. The alloy of claim 5 , in which at least 5% of the MC carbides are Nb-rich, the remaining MC carbides being Nb-V-rich or V-rich.

7. The alloy of claim 1 , claim 2 , or claim 3 of which corrosion pitting potential measured in 1% NaCl aqueous solution is at least 250 mV after tempering at a lower tempering temperature of 500° F.-750° F., and greater than −100 mV after tempering at a higher tempering temperature, i.e., 975° F.-1025° F.

Assignments (3)
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Jun 7, 2010
From: CRUCIBLE INDUSTRIES LLC
To: KEYBANK NATIONAL ASSOCIATION
Reel/Frame 024492/0040 →
NUNC PRO TUNC ASSIGNMENT Recorded Apr 22, 2010
From: CRUCIBLE MATERIALS CORPORATION
To: CRUCIBLE INDUSTRIES LLC
Reel/Frame 024272/0360 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 13, 2006
From: KAJINIC, ALOJZ; WOJCIESZYNSKI, ANDRZEJ L.; SAWFORD, MARIA K.
To: CRUCIBLE MATERIALS CORPORATION
Reel/Frame 018569/0420 →