Hastelloy C276 (ASTM A 494, Grade CW12MW) | ZECO Valvewedge gate valve

COMMON VALVE CASTING MATERIALS METALLURGY

Cast Alloy Similar Wrought Designation Specification UNS No. C Cr Ni Mo Cu Fe Cb Other Tensile (ksi) Yield (ksi) Elong
CA6NM 415, F6NM ASTM-A743, A487 J91540 0.06 11.5-14.0 3.5-4.5 .4-1.0 BAL 110 80 17%
CA15 410 ASTM-A217, A743 J91150 0.15 11.5-14.0 1 0.5 0.5 BAL 90 65 18%
CB7Cu-1 17-4 PH ASTM-A747, AMS-5398C J92180 0.06 15.5-17.7 3.6-4.6 2.5-3.2 BAL .15-.35 135 H1100 Condition 100 9%
CF3 304L ASTM-A351, A743, A744 J92500 0.03 17.0-21.0 8.0-12.0 0.5 BAL 70 30 35%
CF3MN 316LN ASTM-A743, A351 J92804 0.03 17.0-21.0 9.0-13.0 2.0-3.0 BAL N- 0.10-0.20 75 37 35%
CF3M 316L ASTM-A351, A743, A744 J92800 0.03 17.0-21.0 9.0-13.0 2.0-3.0 BAL 70 30 30%
CF8 304 ASTM-A351, A743, A744 J92600 0.08 18.0-21.0 8.0-11.0 0.5 BAL 70 30 35%
CF8C 347 ASTM-A351, A743, A744 J92710 0.08 18.0-21.0 9.0-12.0 0.5 BAL 8xC-1.0 70 30 30%
CF8M 316 ASTM-A351, A743, A744 J92900 0.08 18.0-21.0 9.0-12.0 2.0-3.0 BAL 70 30 30%
CG3M 317L ASTM-A351, A743 , A744 J92999 0.03 18.0-21.0 9.0-13.0 3.0-4.0 BAL 75 35 25%
CG8M 317 ASTM-A351, A743 , A744 J93000 0.08 18.0-21.0 9.0-13.0 3.0-4.0 BAL 75 35 25%
CN7M Alloy 20 ASTM-A351, A743, A744 N08007 0.07 19.0-22.0 27.5-30.5 2.0-3.0 3.0-4.0 BAL 62 25 35%
CN2MCuN 904L N08904 0.02 19.0-23.0 23.0-28.0 4.0-5.0 1.0-2.0 BAL 65 28 35%
CK3MCuN Avesta 254-SMO ASTM-A351, A743, A744 J93254 0.025 19.5-20.5 17.5-19.5 6.00-7.00 0.50-1.00 BAL N 0.18-0.24 80 38 35%
CN3MN AL6XN ASTM-A351, A743, A744 J94651 0.030 20.0-22.0 23.5-25.5 6.0-7.0 0.75 BAL N 0.18-1.26 80 38 35%
CX2MW Hastelloy C-22 ASTM A494 N26022 0.02 20.0-22.5 BAL 12.5-14.5 2.0-6.0 W-2.5-3.5 80 45 30%
CW2M Hastelloy C4C ASTM-A494, A990 N26455 0.02 15.0-17.5 BAL 15.0-17.5 2 72 40 20%
CW6M Hastelloy C Modified ASTM-A494 N30107 0.07 17.0-20.0 BAL 17.0-20.0 3 72 40 25%
CW6MC Inconel 625 ASTM-A494, MIL-C-24615 N26625 0.06 20.0-23.0 BAL 8.0-10.0 5 3.15-4.5 70 40 25%
CW12MW Hastelloy C ASTM-A494 N30002 0.12 15.5-17.5 BAL 16.0-18.0 4.5-7.5 W-3.75-5.25, V-.20-.40 72 40 4%
CW12MW Hastelloy C-276 ASTM-A494 N30002 0.02 15.5-17.5 BAL 16.0-18.0 4.5-7.5 W-3.75-5.25, V-.20-.40 72 40 4%
CY40 Inconel 600 ASTM-A494 N06040 0.4 14.0-17.0 BAL 11 70 28 30%
CZ100 Cast Nickel ASTM-A494 N02100 1 95.0 min. 1.25 3 50 18 10%
N7M Hastelloy B Modified ASTM-A494 N30007 0.07 1 BAL 30.0-33.0 3 76 40 20%
N12MV Hastelloy B ASTM-A494 N30012 0.12 1 BAL 26.0-30.0 4.0-6.0 76 40 6%
M35-1 Monel 400 ASTM-A494, A990 N24135 0.35 BAL 26.0-33.0 3.5 0.5 Si 1.25 65 25 25%
M35-2 Monel ASTM-A494 N04020 0.35 BAL 26.0-33.0 3.5 Si 2.0 65 30 25%
M35-B / M30H H-Monel ASTM-A494, QQ-N-288 Comp B N24030 0.3 BAL 27.0-33.0 2.5 Si 2.7-3.9 700 60 10%
M35-C Monel QQ-N-288 Comp C N24025 0.2 BAL 27.0-31.0 2.5 Si 3.3-3.7 120 80 10%
M35-D / M25S S-Monel ASTM A494, QQ-N-288 Comp D N24025 0.25 BAL 27.0-31.0 2.5 Si 3.5-4.5
M30C / M35W Weldable Monel ASTM-A494, QQ-N-288 Comp E N24130 0.3 BAL 26.0-33.0 3.5 Si 1.0-2.0, Cb 1.0-3.0 65 32.5 25%
952 Al Bronze Grade A ASTM-B148 C95200 86.0 min 2.5-4.0 Al 8.5-9.5 65 25 20%
954 Aluminum-Bronze ASTM-B148 C95400 1.5 max 83.0 min 3.0-5.0 Al 10.0-11.5 75 30 12%
955 Aluminum-Bronze ASTM-B148 C95500 3.0-5.5 78.0 min 3.0-5.0 Al 10.0-11.5 90 40 6%
958 Ni-Al-Brz ASTM-B148 C95800 4.0-5.0 79.0 Min 3.0-4.5 Al 8.5-9.5 Pb .03 max 85 35 15%
964 70*30 Copper-Nickel ASTM-B369 C96400 0.15 28.0-32.0 BAL .25-1.5 0.5-1.5 Mn 1.5 60 32 20%
CD4MCuN Duplex Grade 1B ASTM-A890, A995 J93372 0.04 24.5-26.5 4.75-6.0 1.75-2.25 2.75-3.25 BAL N 0.10-0.25 100 70 16%
CD3MCuN Duplex Grade 1C ASTM-A890 J93373 0.03 24-26.7 5.6-6.7 2.9-3.8 1.4-1.9 BAL N 0.22-0.33 100 65 25%
CE8MN Duplex Grade 2A ASTM-A351, A890, A995 J93345 0.08 22.5-25.5 8.0-11.0 3.00-4.50 BAL N 0.10-0.30 95 65 25%
CD6MN Duplex Grade 3A ASTM-A890, A995 J93371 0.06 24.0-27.0 4.0-6.0 1.75-2.50 BAL N 0.10-0.25 95 65 25%
CD3MN Duplex Grade 4A ASTM-A890, A995 J92205 0.03 21.0-23.5 4.5-6.5 2.5-3.5 1.00 max BAL N 0.10-0.30 90 60 25%
CE3MN Duplex Grade 5A ASTM-A890, A995 J93404 0.03 24.0-26.0 6.0-8.0 4.0-5.0 BAL N 0.10-0.03 100 75 18%
CD3MWCuN Grade 6A Zeron100 ASTM-A890, A995 J93380 0.03 24.0-26.0 6.5-8.5 3.0-4.0 0.5-1.0 BAL N 0.02-0.03 W 0.5-1.0 100 65 25%
HH ASTM-A297 ASTM-A297 J93503 0.20-0.50 24.0-28.0 11.0-14.0 0.5 1 BAL 75 35 10%
HK ASTM-A297 ASTM-A297 J94224 0.20-0.60 24.0-28.0 18.0-22.0 0.5 1 BAL 65 35 10%
HN HI-35 ASTM-A297 J94213 0.20-0.50 19.0-23.0 23.0-27.0 0.5 1 BAL 63 8%
HT 330 (15-35) ASTM-A297 N08605 0.35-0.75 15.0-19.0 33.0-37.0 0.5 1 BAL 65 4%
HU (19-39) ASTM-A297 N08004 0.35-0.75 17.0-21.0 37.0-41.0 0.5 1 BAL 65 4%
HX ACI HX ASTM-A297 N06006 0.35-0.75 15.0-19.0 64.0-68.0 0.5 1 BAL 60
WCA Carbon Steel ASTM-A216 J02502 0.25 0.5 0.5 0.2 0.3 BAL 60-85 30 24%
WCB Carbon Steel ASTM-A216 J03002 0.3 0.5 0.5 0.2 0.3 BAL 70-95 36 22%
WCC Carbon Steel ASTM-A216 J02503 0.25 0.5 0.5 0.2 0.3 BAL 70-95 40 22%
LCB Carbon Steel ASTM-A352 J03003 0.3 0.5 0.5 0.2 0.3 BAL 65 35 24%
LCC Carbon Steel ASTM-A352 J02505 0.25 0.5 0.5 0.2 0.3 BAL 70 40 22%
LC2 ASTM-A352 J22500 0.25 2.00-3.00 0.45-0.65 BAL 70.0-95.0 40.0 24%
LC3 ASTM-A352 J31550 0.15 3.00-4.00 BAL 70.0-95.0 40.0 24%
WC6 ASTM-A217 J12072 0.05-0.20 1.00-1.50 0.45-0.65 0.50 BAL 70-95 40 20%
WC9 ASTM-A217 J21890 0.05-0.18 2.00-2.75 0.90-1.20 0.50 BAL 70-95 40 20%
C5 ASTM-A217 J42045 0.20 4.00-6.50 0.45-0.65 0.50 BAL 90-115 60 18%
C12 ASTM-A217 J82090 0.20 8.00-10.00 0.90-1.20 0.50 BAL 90-115 60 18%
C12A Grade 91 ASTM-A217 J84090 0.08-0.12 8.0-9.5 0.40 0.85-1.05 BAL 0.060-0.10 N 0.030-0.070, V 0.18-0.25 85-110 60 18%
SC8625 ASTM A487, A148 0.30 0.40-0.80 0.40-0.80 0.15-0.30 0.50 BAL 105-130 85 17%

Hastelloy C276 (ASTM A 494, Grade CW12MW)

The high-performance Instrumentation Hastelloy C276 Valves have superior resistance to various acids. For instance, the Hastelloy C276 Ball Valves have the ability to resist acids like sulfuric, hydrochloric, hydrofluoric, nitric, and chromic acid. The Hastelloy Ball Valve even has good localized corrosion resistance.

CW12MW is the old original cast Hastelloy C alloy. Its higher carbon limit of 0.12% maximum along with its higher iron and tungsten levels makes this alloy inferior to any of the other grades in corrosion resistance and ductility. CW12MW is not the cast equivalent for UNS N10276.

CW6M

CW6M is the next cast Ni-Cr-Mo alloy developed. It was introduced in 1949 so there is a long, successful history for this alloy. While it does have higher allowable carbon and silicon limit than the newer C types listed below, it is typically made with much lower carbon and silicon levels, thus giving it good corrosion resistance to both oxidizing and reducing acids.

CW2M

CW2M is the cast equivalent of UNS N06455 developed in 1976 to provide better metallurgical stability than UNS N10276 at high temperatures. An added benefit was that it is a better cast grade than CW12MW. Its improved performance over CW12MW was a result of reduced amounts of intermetallic phases in its microstructure. This was accomplished by lowering its carbon, silicon, iron, chromium, and molybdenum levels and eliminating the tungsten addition.

CX2MW

CX2MW is the cast equivalent of UNS N06022. This alloy has a higher chromium content, but a lower molybdenum content than the other Hastelloy C-type alloys. The higher chromium content does give this alloy better corrosion resistance to hot oxidizing environments such as bleach and chlorinated brines. However, the lower molybdenum content sacrifices some resistance to reducing services where these alloys are also commonly used, e.g., sulfuric and hydrochloric acids.

CX2M

CX2M is the cast equivalent to UNS N06059. It has slightly higher chromium and molybdenum than CX2MW. The higher chromium can provide good resistance to strong oxidizing services and its higher molybdenum content can provide good resistance to sulfuric and hydrochloric acids.

UNS N06200

UNS N06200 (Hastelloy C-2000) is the newest C-type alloy, but it is only available as a wrought component because its extremely low carbon and silicon content means it’s not beneficial for making a cast alloy. UNS N06200 contains a chromium content similar to UNS N06022, but it has more molybdenum along with a small amount of copper. The higher molybdenum content along with the copper gives the alloy better resistance to reducing acids like sulfuric and hydrochloric.

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