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Product name:Precipitation Hardening 17 4ph
Thickness:1.2-600 mm
Width::1220-4200 mm
Length:5000-18000 mm
Notes:coil thickness ≤ 25 mm
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  Details:

Alloy 17-4 PH Precipitation Hardening - Sandmeyer Steel

Alloy 17-4PH (UNS S17400), Type 630, is a chromium-nickel-copper precipitation-hardening martensitic stainless steel with an addition of niobium. 17-4PH combines high strength and hardness with good corrosion resistance.

Precipitation Hardening Stainless Steels – Alloys ...

Precipitation hardening steels can be supplied in a readily machineable condition. After fabrication, a single, low temperature heat treatment can dramatically increase the strength of the steel. The properties, applications and fabrication details are provided for 17-4PH (630) stainless steel.[PDF]

Stainless Steel AL 17-4™ Precipitation

Stainless Steel AL 17-4™ Precipitation Hardening Alloy (UNS Designation S17400) Data are typical and should not be construed as maximum or minimum

17-4 PH H1025 Precipitation Hardening Stainless Steel

17-4 PH H1025 Precipitation Hardening Stainless Steel What are 17-4 H1025 Stainless Steels? Grade 17-4 stainless steel is the utmost extensively applied steel of the precipitation hardening grade steels.

17-4PH H1150 - Penn Stainless Products

General Properties. Alloy 17-4 is a chromium-copper precipitation hardening stainless steel that is used for applications requiring high strength and a moderate level of corrosion resistance.

17-4PH - Precipitation Hardening Stainless Steel - Hillfoot

Description. 17-4PH grade steel is a precipitation hardening stainless steel with excellent corrosion resistance, superior to martensitic grades such as 431 and 410, and comparable to austenitic grade 304.

Get a Quote on 17-4PH Stainless Steel - Vincent Metals

17-4PH is a very widely used precipitation hardened stainless steel alloy with a toughness especially suited for the aerospace, nuclear energy, and chemical processing industries. This alloy features good corrosion resistance, hardness, toughness and strength.

17-4PH - Precipitation Hardening Stainless Steel - Hillfoot

Description. 17-4PH grade steel is a precipitation hardening stainless steel with excellent corrosion resistance, superior to martensitic grades such as 431 and 410, and comparable to austenitic grade 304.

Get a Quote on 17-4PH Stainless Steel - Vincent Metals

17-4PH is a very widely used precipitation hardened stainless steel alloy with a toughness especially suited for the aerospace, nuclear energy, and chemical processing industries. This alloy features good corrosion resistance, hardness, toughness and strength.

Precipitation hardening stainless steels - Job Knowledge 102

The precipitation hardening (PH) stainless steels are a family of corrosion resistant alloys some of which can be heat treated to provide tensile strengths of 850MPa to 1700MPa and yield strengths of 520MPA to over 1500MPa. ... Alternatively a 17/4PH or FV520 filler may be used; a preheat of 100°C is advisable if the 17/4PH filler is used ...

17-4 PH Stainless Steel supplied in Sheet and Plate - AMS ...

17-4 PH is a martensitic, chromium-nickel-copper precipitation-hardening stainless steel. 17-4 PH stainless steel is capable of attaining a wide range of strength and toughness properties depending on the precipitation or aging temperature used in hardening.

17-4PH H900 - Stainless Steel Plate, Sheet, & Bar Products

General Properties. Alloy 17-4 is a chromium-copper precipitation hardening stainless steel that is used for applications requiring high strength and a moderate level of corrosion resistance.[PDF]

Specification Sheet: Alloy 17-4PH - Sandmeyer Steel

Alloy 17-4PH (UNS S17400), Type 630, is a chromium-nickel-copper precipitation-hardening martensitic stainless steel with an addition of niobium. 17-4PH combines high

17-4 Stainless Steel | 630 Alloy - Specialty Steel Supply

17-4 Precipitation Hardening also known as Type 630 is a chromium-copper precipitation hardening stainless steel used for applications requiring high strength and a moderate level of corrosion resistance.[PDF]

Heat Treatment of 17-4 PH Stainless Steel - bircelik

The precipitation sequence in 17-4 PH stainless steel begins with formation of coherent copper precipitates, which occurs during the tempering treatment before service. These

17-4PH Precipitation Hardening Stainless Steel-Casting ...

Alloy 17-4PH (UNS S17400), Type 630, is a chromium-nickel-copper precipitation-hardening martensitic stainless steel with an addition of niobium. 17-4PH combines high strength and hardness with good corrosion resistance.

630 (17-4) Precipitation Hardening Stainless Steel Bar ...

630 is a 17-4 PH martensitic precipitation hardening stainless steel with a unique combination of high strength and good corrosive resistance.

17-4PH Stainless Steel - West Yorkshire Steel

West Yorkshire Steel are suppliers of 17-4PH stainless steel round bar and flat bar. 17-4PH is a corrosion resistant grade which is soft and ductile in the solution annealed condition. Medium to high strength, good toughness and strength is obtained by the appropriate ageing treatment. ... As a martensitic precipitation hardening stainless it ...[PDF]

Understanding the Difference: 17-4 PH vs. 17-7 PH ...

Understanding the Difference: 17-4 PH vs. 17-7 PH Precipitation Hardening Alloys When choosing an alloy for a particular project, it may be helpful to determine your criteria

Precipitation hardening: Stainless steels - Solution and ...

Examples of these are 15-5PH, 17-4PH and Ph13-8Mo. Precipitation age hardening. ... 17-4PH, 17-7PH and Maraging 250. Typical heat treat designations are H900 or H1075; where H900 indicates aging at 900°F for one hour and H1075 indicates ageing at 1075°F for 4 hours. In all cases, it is important to start with material that is in the solution ...[PDF]

PRECIPITATION HARDENING P/M STAINLESS STEELS

PM stainless powders are presented: 17-4 PH, a high-chromium, martensitic precipitation hardening stainless steel, has been optimized for use in PM applications; and a new low chromium (12 w/o) alloy that utilizes copper in the precipitation reaction.


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