Resource Guide. Section 4: Ni-Resist

Similar documents
Resource Guide. Section 2: Gray Iron

Resource Guide. Section 3: Ductile Iron

With Dura-Bar you will be able to:

Table of Contents. Section 1 Introduction Introduction Cast Iron Defi nition Description of Properties...1-5

SPECIFICATION FOR STAINLESS STEEL BARS AND SHAPES

STAINLESS STEEL SHEETS

ATI 825 ATI 825. Technical Data Sheet. Nickel-base Alloy INTRODUCTION PRODUCT FORMS SPECIFICATIONS & CERTIFICATES (UNS N08825)

ATI 601 ATI 601. Technical Data Sheet. Nickel-base Alloy INTRODUCTION PRODUCT FORMS SPECIFICATIONS & CERTIFICATES (UNS N06601)

ATI 418 SPL alloy is readily forgeable and has fair machinability and cold formability in the annealed condition.

ATI 332 ATI 332. Technical Data Sheet. Stainless Steel: Austenitic GENERAL PROPERTIES TYPICAL ANALYSIS PHYSICAL PROPERTIES

Alloys SUPER SQUARE

The Convenience Stores For Metal

Continuous Cast Iron. Your foremost provider of specialty products, services and solutions

SURFACE VEHICLE STANDARD

Their widespread use is accounted for by three factors:

MATERIAL TEKNIK (MAT) CAST IRON. Cecep Ruskandi

Specification Product Form ASTM ASME AMS Federal or Military Plate, Sheet and Strip B 127 SB QQ-N-281 B 163 B165 B164 B564

It is our intent to always maintain the highest level of quality metals obtainable from our mill sources.

Cast steel: Group of ASTM standards for steel castings and forgings

INDEX FOR STAMPING DIES CAST MATERIALS

Ultimate Tensile Range (ksi min) Maximum Working Temp. 250 F 449/ /125 (class I) 250 F 425 F 325/ F 300/ F 242/ F 242/211

Think Stainless, Think Encore STAINLESS STEEL FOR SPECIALTY APPLICATIONS. Specialty Metals to Support Innovative Manufacturing

ATI 718 ATI 718. Technical Data Sheet. Nickel-Base Superalloy INTRODUCTION FORMS AND CONDITIONS AVAILABLE SPECIFICATIONS. (UNS Designation N07718)

More About Steel Alloys

CTS-XHP Alloy. Patent Number 5,370,750

Glossary of Steel Terms

Cast Iron Foundry Practices 3. Metallurgy of grey irons

Alloy Steels. Engineering Materials. Introduction : Msc. Shaymaa Mahmood

Free Machining Martensitic stainless steel. Oxidation resistance in continuous service to 1200 F (650 C).

Heat Treatment of Tubes for Condenser, Feedwater Heater, and Shell & Tube Heat Exchangers

Identification. Type Analysis

The objective of this document is to specify the chemicals characteristics and properties of the material Steel AISI Carbon Steel.

ATI 18CrCb. ATI 18CrCb. Technical Data Sheet. Stainless Steel: Ferritic GENERAL PROPERTIES STRUCTURE TYPICAL COMPOSITION (UNS S44100)

Stainless Steel 310/310S (UNS S31000/ UNS S31008)

Connexion Developments Ltd + Solenoid Valves (UK) Ltd Unit 3, Rainbow Court, Armstrong Way, Great Western Business Park, Yate, Bristol, BS37 5NG,

RA17-4 stainless. Introduction

WORLDWIDE DIE DESIGN AND CONSTRUCTION SPECIFICATIONS VEHICLE OPERATIONS

ATI 441 HP ATI 441 HP. Technical Data Sheet. Stainless Steel: Ferritic INTRODUCTION STRUCTURE TYPICAL COMPOSITION (UNS S44100)

Martensitic. stainless steels. Types 410, 420, 425 Mod, and 440A TECHNICAL DATA BLUE SHEET GENERAL PROPERTIES APPLICATIONS PRODUCT FORM

The ATI 17-4 precipitation hardening stainless steel (S17400) is covered by the following wrought product specifications.

DATA SHEET ZERON 100 UNS S32760 THE GLOBAL LEADER IN SPECIALTY ALLOYS ALLOYS AND PROCESSING

Introduction: Ferrous alloys - Review. Outline. Introduction: Ferrous alloys

DATA SHEET ZERON 100 UNS S32760 THE GLOBAL LEADER IN SPECIALTY ALLOYS

Custom 455, UNS S45500

is detrimental to hot workability and subsequent surface quality. It is used in certain steels to improve resistance to atmospheric corrosion.

ATI 13-8 ATI Technical Data Sheet. Precipitation Hardening Alloy INTRODUCTION FORMS AND CONDITIONS. (UNS S13800, ASTM Type XM-13)

MuShield s High Permeability Magnetic Shielding per ASTM A753 Alloy Type 4

ATI 201 HP /ATI 201L HP

Stainless Steel (17/4PH&630) Bar

Cast Iron Foundry Practices 1. The family of cast irons

ATI 904L ATI 904L. Technical Data Sheet. Stainless Steel: Superaustenitic INTRODUCTION COMPOSITION CORROSION RESISTANCE (UNS N08904)

ATI 15-7 ATI Technical Data Sheet. Semi-Austenitic Stainless Steel INTRODUCTION

Stainless Steel Bar

Guidelines for ASTM Specification and Metal Grades

MSE-226 Engineering Materials

ATI 321 /ATI 347 /ATI 348

ATI Datalloy HP TM Alloy

High-Strength Low-Alloy Steels

316Ti Stainless Steel, UNS S31635

SPECIFICATION FOR PRECIPITATION-HARDENING NICKEL ALLOY BARS, FORGINGS, AND FORGING STOCK FOR HIGH-TEMPERATURE SERVICE

These elements are in carbon steels in minimal amounts, usually less than 1%.

Stainless Steel & Stainless Steel Fasteners Chemical, Physical and Mechanical Properties

Heat Treatment of Steels

301 STAINLESS STEEL. Aircraft Structural Parts. Automotive Trim. Cooking Utensils. Roof Drainage. Subway Cars

Stainless Steel (17/4PH&630) Bar

Heat Treatment of Steels

Stainless Steel (17/4PH&630) Bar

Identification. Type Analysis

NICKEL CHROMIUM ALLOYS

15-15HS Stainless. Identification

SANDVIK NANOFLEX STRIP STEEL

Outokumpu 2507 UNS S32750

Incoloy Alloy 800H/800HT (UNS N08810/088011)

C Si Mn Cr Mo Cu Ni P S

ME-371/571 ENGINEERING MATERIALS

VDM Alloy 80 A Nicrofer 7520 Ti

AEROSPACE MATERIAL SPECIFICATION

Standard Test Methods for Determining Hardenability of Steel 1

AEROSPACE MATERIAL SPECIFICATION

Subway Cars. Applications Potential

Heat treatable for greater hardness and strength

Chapter 11 Part 2. Metals and Alloys

SEASTROM Manufacturing Co., Inc Seastrom Street Twin Falls, Idaho Fax (208)

Section 6: Appendices

Saturated steam application

SECTION 9 Aluminum. SECTION 9: Aluminum General Information Diamond Floor Plate

Custom 450 Stainless Steel, UNS S45000

Spheroidal Graphite (Nodular) Cast Iron:

Mat E 272 Lecture 19: Cast Irons

Marc King. Hiler Industries LaPorte, IN

Applications Potential

Ferrous Alloys. Steels

304/304L STAINLESS STEEL

NORRIS. Drive Rods. Engineered performance. Designed tough.

ATI ATI 2205 Alloy (UNS S31803 and S32205) Duplex Stainless Steel. Technical Data Sheet

Steel Haseeb Ullah Khan Jatoi Department of Chemical Engineering UET Lahore

11.3 The alloying elements in tool steels (e.g., Cr, V, W, and Mo) combine with the carbon to form very hard and wear-resistant carbide compounds.

201 STAINLESS STEEL. Appliances. Architectural Applications. Automotive Trim. Cooking Utensils

Cast Irons, Ductile Irons & Malleable Irons

Machinability Enhancement of PM Stainless Steels Using Easy-Machinable Stainless Steel Powder. Bo Hu, Roland T. Warzel III, Sydney Luk

Transcription:

Resource Guide Section 4: Ni-Resist

Section 4 Ni-Resist Description of Grades... 4-3 201 (Type 1) Ni-Resist... 4-4 202 (Type 2) Ni-Resist... 4-6 Stock Listings... 4-8 4-2

Ni-Resist Description of Grades Dura-Bar continuous cast Ni-Resist grades contain Type VII graphite, type A flakes, size 4-6, as defined in ASTM A247. The matrix is austenite with alloy carbide. The austenitic matrix provides excellent corrosion resistance and is non-magnetic. The carbide network provides resistance to wear but does not adversely affect machinability. The austenitic structure is achieved by adding a specific combination of nickel and copper and will remain stable in temperatures to -300 F (-185 C). Ni-Resist parts maintain relatively high-impact properties even at low temperatures. The alloy carbide network remains stable at elevated temperatures providing good wear properties in moving parts that operate at temperatures up to 1300 F (705 C). These grades are most commonly specified for use in corrosive atmospheres and will exhibit corrosion resistance properties somewhere between cast iron and austenitic stainless steel. In some cases, Ni-Resist will outperform austenitic stainless steel, depending on the environment to which the part is subjected. A detailed study of the corrosion properties of Ni-Resist has been performed by the Nickel Development Institute, and data is available for specific applications. A selection of some of the environments in which Ni-Resist has been successfully used are: Hydrogen sulfide and sour crude oil Seawater Sodium hydroxide Sulfuric acid Hydrochloric acid Marine atmospheres Ni-Resist alloys have thermal expansions similar to aluminum, thereby making them suitable for applications such as valve guides in aluminum cylinder heads. Fig. 1 Type A graphite in an austenitic matrix with chrome carbide (100x, etched in 5% Nitol) 4-3

201 (Type 1) Ni-Resist General Description Ni-Resist irons contain an austenitic matrix with about 10% alloy carbides. The austenitic structure is suitable for corrosive environments in sour well oils, salts, salt water acids and alkalies. The iron is relatively soft and chrome is added to produce carbides that help improve wear resistance. Ni-Resist is more dense than gray or ductile irons and will have a higher coefficient of thermal expansion. Dura-Bar 201 Ni-Resist is manufactured to produce a material conforming to ASTM A436, Type 1. Microstructure The microstructure consists of Type VII, type A, size 4-6, graphite as defined in ASTM A247. The matrix will be austenite with 5-10% alloy carbide. The rim will contain type D graphite, size 6-8. Chill carbides will be less than 5% in any field at 100x and will be well dispersed. Fig. 1 (Left) Typical microstructure in the center area (100x, etched in 5% Nitol) Fig. 2 (Right) Typical microstructure in the rim area (100x, etched in 5% Nitol) Chemical Composition The chemical composition for Dura-Bar 201 Ni-Resist is shown in Table 1 below. Specific targets will vary, depending on bar size, although the ranges listed are required. Table 1 Chemical composition of Type 1 Ni-Resist Element Percentage Carbon 3.00% max. Silicon 1.00-2.80% Manganese 0.50-1.50% Nickel 13.50-17.50% Copper 5.50-7.50% Chromium 1.50-2.50% Sulfur 0.12% max. 4-4

201 (Type 1) Ni-Resist Mechanical Properties Brinell hardness values for nominal as-cast diameters are shown in Table 2 below. Hardness properties listed are minimum, maximum across the bar. Hardness values for rectangles and squares are a function of the height and width ratios and will be supplied upon request. Table 2 Hardness properties of Type 1 Ni-Resist Bar Diameter BHN Inches mm Min. Max. 1.000-6.000 25-152 131 183 BHN in the center of bars 1.750 and smaller may be lower than the values shown because of thermal center microshrinkage. The tensile strength will be approximately 25,000 psi for bars up to 3.000 diameter and 20,000 psi for bars larger than 3.000. Tensile strength tests in bars 1,750 and smaller may not be accurate because of thermal center microshrinkage. Heat Treat Response Austenitic alloys cannot be hardened by heat treatment. They may be softened and homogenized by heating to 1800-1900 F (980-1040 C) for 3-5 hours and air cooling. This breaks down some of the carbides and most of those remaining will be spheroidized. Annealing softens the material without detrimental effect on the strength properties. Dura-Bar 201 Ni-Resist should not be used in applications involving service above 1300 F (705 C). Typical Applications Typical applications for Dura-Bar 201 Ni-Resist are listed below. They are classified by industry. Valve guides Insecticide pumps Flood gates Piston ring inserts Sea water valves Pump bodies Availability of Sizes and Shapes The stock listing for Dura-Bar 201 Ni-Resist follows this section. Sizes and shapes not listed are available by special order. 4-5

202 (Type 2) Ni-Resist General Description Ni-Resist Type 2 will be similar to Type 1 having an austenitic matrix with approximately 5-10% alloy carbide. Type 2 will be suitable for most applications requiring Type 1 Ni-Resist, and the grades are often used interchangeably. The machinability of Ni-Resist will be similar to the pearlitic grades of gray iron, namely G2 and G2A. Type 2 is especially suitable for temperatures above 1300 F (704 C) and in steam handling applications. Copper levels are maximized at 0.50%, and this grade is suitable for food product applications. Ni-Resist is more dense than gray or ductile irons and will have a higher coefficient of thermal expansion. Dura-Bar 202 Ni-Resist is manufactured to produce a material similar to ASTM A436, Type 2. Microstructure The microstructure consists of Type VII, type A, size 4-6, graphite as defined in ASTM A247. The matrix is austenite with 5-10% alloy carbide. The rim will contain type D graphite, size 6-8. Chill carbides will be less than 5% in any field at 100x and will be well dispersed. Fig. 1 (Left) Typical microstructure in the center area (100x, etched in 5% Nitol) Fig. 2 (Right) Typical microstructure in the rim area (100x, etched in 5% Nitol) Chemical Composition The chemical composition for Dura-Bar 202 Ni-Resist is shown in Table 1 below. Specific targets will vary, depending on bar size, although the ranges listed are required. Table 1 Chemical composition of Dura-Bar 202 Ni-Resist Element Percentage Carbon 3.00% max. Silicon 1.00-2.80% Manganese 0.50-1.50% Nickel 18.00-22.00% Copper 0.50% max. Chromium 1.50-2.50% Sulfur 0.12 max. 4-6

202 (Type 2) Ni-Resist Mechanical Properties Brinell hardness values for nominal as-cast diameters are shown in table 2 below. Hardness properties listed are minimum, maximum across the bar. Hardness values for rectangles and squares are a function of the height and width ratios and will be supplied upon request. Table 2 Hardness properties of Dura-Bar 202 Ni-Resist Bar Diameter BHN Inches mm Min. Max. 01.000-0.6000 25-152 118 174 BHN in the center of bars 1.750 and smaller may be lower than the values shown because of thermal center microshrinkage. The tensile strength will be approximately 25,000 psi for bars up to 3.000 diameter and 20,000 psi for bars larger than 3.000. Tensile strength tests in bars 1.750 and smaller may not be accurate because of thermal center microshrinkage. Heat Treat Response Austenitic alloys cannot be hardened by heat treatment. They may be softened and homogenized by heating to 1800-1900 F (980-1040 C) for 3-5 hours and air cooling. This breaks down some of the carbides and most of those remaining will be spheroidized. This anneal treatment softens without detrimental effect on the strength properties. Dura-Bar 202 Ni-Resist should not be used in applications involving service temperatures above 1300 F (705 C). Typical Applications Typical applications for Dura-Bar 202 Ni-Resist are listed below. Valve guides Insecticide pumps Flood gates Piston ring inserts Sea water valve bodies Pump bodies Food service equipment Availability of Sizes and Shapes Dura-Bar Ni-Resist is a non-inventoried item. A wide variety of sizes and shapes are available by special order in minimum run quantities. 4-7

Stock List - Rounds 201 (Type 1) Ni-Resist Nominal Diameter (inches) Dura-Bar Type 201 Ni-Resist Stock Allowance (inches) As-Cast Weight (lbs./ ft.) Cold Finished Weight (lbs./ft.) 1.000 0.088 2.5 1.250 0.088 3.9 1.500 0.095 5.6 1.625 0.095 6.6 1.750 0.095 7.6 2.000 0.095 10.0 2.125 0.118 11.3 2.250 0.118 12.6 2.500 0.118 15.6 2.750 0.118 18.9 3.000 0.118 22.5 3.250 0.136 26.4 3.500 0.136 30.6 3.750 0.136 35.1 4.500 0.154 54.1 5.00 0.154 66.3 5.500 0.172 80.3 6.000 0.172 95.1 Dura-Bar 201 Ni-Resist round bars not listed above, as well as tubes, rectangles, special shapes, and all Dura-Bar 202 sizes and shapes, are non-stock items and are produced to order in minimum run quantities. 4-8