T e c h n i c a l B r o c h u r e ATMOSPHERIC CORROSION RESISTANCE OF STAINLESS STEELS THE. COLUMBUS STAINLESS [Pty] Ltd.

Similar documents
STANDARD FERRITIC STAINLESS STEELS

STAINLESS STEELS UTILITY FERRITIC. T e c h n i c a l B r o c h u r e. U-3CR12L S U-410S 410S S41008 U-3CR12

North American Stainless

North American Stainless

Cr-(Mn)-Ni AUSTENITIC STAINLESS STEELS

Technical Data. Technical Data CS2205

NEUTRAL SALT SPRAY TESTING REPORT TEST RESULTS

Hot Dip Galvanized Case Study No. 8 Power Transmission Lines

Technical Data 3CR12 3CR12L CS410S

Research Fund for Coal and Steel SAFSS: Structural Applications of Ferritic Stainless Steels Design Guidance - Alloy Selection

THE RESULTS OF AN EXPOSURE PROGRAMME ON AGRICULTURAL WIRE IN SOUTH AFRICA

Solar Panel Mounting Kits

Hardener: at least 24 months when stored cool and dry

Stainless Steel - St St Introduction

ZINC COATED WIRE PERFORMANCE IN REPRESENTATIVE AGRICULTURAL SITES IN SOUTH AFRICA

Spizvac Marketing Pty Ltd. 50 Gungah Bay Road. Oatley. NSW Tel: Ping Pong Table WP-0214

SIGMAZINC 158. PRODUCT DATA SHEET January 7, 2015 (Revision of December 15, 2014) DESCRIPTION

CORROSION PROTECTION HEAVY INDUSTRIAL MARINE POWER MINING BRIDGE STRUCTURES HARBOURS CHEMICAL PROCESSING PETROCHEMICAL WASTE WATER TREATMENT

Comparison between the SNAP Prototype Collar Tested in FP 4428 and the SNAP LP100R Collar. R. W. Causer Fire Testing Engineer

Steel Composition: Effect on Coating Appearance, Thickness, Materials Handling and Surface Smoothness

Comparison Between the SNAP Prototype Collar Tested in FP 4428 and the SNAP LP100R Collar. R. W. Causer Fire Testing Engineer

Stainless Steel Innosoft - Innoclean - Innoprotect

3M Scotchkote System Application Guide. High Performance Corrosion Resistant Coating System for Corroded Plastisol Cladding Surfaces.

GUIDE TO STAINLESS STEELS AND DESALINATION

GUIDE TO STAINLESS STEELS AND DESALINATION

Table of Contents. Surfaces by Hynes Laminate Flooring 25 Year Warranty. Laminate Warranty Conditions

Stainless Steel St St Introduction

max g/l (approx. 1.9 lb/gal) (aluminum) 31.2 m²/l for 25 µm (1251 ft²/us gal for 1.0 mils)

FAST drying products for steel structures

SIGMAZINC 160. Revision of March 2007 DESCRIPTION. two component moisture curing inorganic zinc (ethyl) silicate primer PRINCIPAL CHARACTERISTICS

Coated steel products for corrosive environments.

SigmaZinc 9 Technical Data Sheet

AMERSHIELD VOC. PRODUCT DATA SHEET April 20, 2015 DESCRIPTION. Low VOC Polyester Acrylic Polyurethane PRINCIPAL CHARACTERISTICS

Locking Systems International Inc.

Grey, pourable liquid with slight gel Slight ammonia odor Specific Gravity: 1.34

Performance, Beauty & Long Life STAINLESS STEEL CARE & MAINTENANCE. Stainless Steel Performance. Stain less Steel

SIGMAZINC 158. Revision of September 2008 DESCRIPTION. two component moisture curing zinc (ethyl) silicate primer PRINCIPAL CHARACTERISTICS

PPG HI-TEMP PRODUCT DATA SHEET April 16, 2018 (Revision of September 5, 2017) DESCRIPTION

Spizvac Marketing Pty Ltd. 50 Gungah Bay Road. Oatley. NSW Tel:

two component polyamide cured epoxy primer yellow/green - eggshell

Stainless Steel (17/4PH&630) Bar

Hardener: at least 24 months when stored cool and dry

Stainless Steel Innosoft - Innoclean - Innoprotect

DIMETCOTE 9 / SIGMAZINC 9

SPRINGER SYSTEMS CATALOGUE BEAM CLAMPS, PIPE CLIPS AND STAINLESS STEEL BANDING

Steel Cladding for Animal Confinement Buildings

COOLING SOLUTIONS MINING. Mining Application Needs & Product Solutions

PavCoTing. Chromium appearance and corrosion resistance Ease of plating bath control Wide current density range

INSTRUCTION MANUAL TIPPING BUCKET FLOW GAUGE MODEL TB1L

PPG HI-TEMP 1000 VS. PRODUCT DATA SHEET December 10, 2014 (Revision of June 30, 2014) DESCRIPTION

SANDVIK SPRINGFLEX STRIP STEEL

One-component, heat-resistant silicone acrylic topcoat primarily for the PPG HI-TEMP 1027 primer or the PPG HI-TEMP 222 G primer

1.4 kg/l (11.4 lb/us gal) Maximum 295 g/kg (Directive 1999/13/EC, SED) Maximum 420 g/l (3.5 lb/gal) 50 to 63 μm (2.0 to 2.

Identification. Type Analysis

Dynasylan SIVO 140. Eco-friendly corrosion protection

GUARANTEE FOR THE COATING OF ALUMINIUM ALLOYS* AND GALVANIZED STEEL*

Stainless Steel (17/4PH&630) Bar

1.4 kg/l (11.4 lb/us gal) Maximum 272 g/kg (Directive 1999/13/EC, SED) Maximum 420 g/l (3.5 lb/gal) To 650 C (1200 F) To 538 C (1000 F)

STAINLESS STEEL FOR COASTAL AND SALT CORROSION

Table of Contents. 2 Purpose of This Guide. 2 Mechanical Installation. 3 Grounding. 7 Maintenance. 7 Disclaimer of Liability

Data Report on Corrosion Testing of Stainless Steel SNF Storage Canisters

Sphere Touch Control Rangehood

One component, heat-resistant, universal silicone topcoat for use in elevated temperature systems. Replaces HI-TEMP 1000 V / VS / VHA

P409L/409CB Stainless Steel

AMERLOCK 2 AL. PRODUCT DATA SHEET September 12, 2018 (Revision of May 2, 2018) DESCRIPTION. Fast Dry Aluminum Epoxy Mastic Coating

two component polyamide cured epoxy primer yellow/green (redbrown on request) - eggshell

Thermally improved aluminium windows and doors with dual colour

Product Overview. Solar Ready Electric Storage Tanks. Sustainable Hot Water Solutions Delivered by Apricus

White Paper. Galvanized Pipe Failures in Dry Pipe Sprinkler Systems (April 2016) By Lucas Kirn, PE

(1 g/cm³ = 8.35 lb/us gal; 1 m²/l = 40.7 ft²/us gal) (data for mixed product)

HyProTec. Hexavalent free RoHS, ELV and WEEE compliant. HyPro System

SANDVIK SPRINGFLEX STRIP STEEL

Stainless Steel (17/4PH&630) Bar

Atmospheric Corrosion of Stainless Steel

BONUS PAYMENT TERMS AND CONDITIONS

IMTRADE ERADICATOR 540 HERBICIDE

AWS D10.18M/D10.18:2018 An American National Standard. Guide for Welding Ferritic/Austenitic Duplex Stainless Steel Piping and Tubing

In process, the conditions of bath chemistry, electrical current and temperature control are all critical in achieving the desired result.

Stainless Steel Bar

XD15NW TM. A high hardness, corrosion and fatigue resistance martensitic grade CONTINUOUS INNOVATION RESEARCH SERVICE.

Spizvac Marketing Pty Ltd. 50 Gungah Bay Road. Oatley. NSW Tel:

T&M. Fabrication and Engineering Ltd. east Kilbride. Glasgow G75. Fax:

GE Enduris* 3500 silicone roof coating Roof Restoration Warranty - 10 Year

SIGMALINE PRODUCT DATA SHEET January 21, 2015 DESCRIPTION. Two-component, solvent-free, amine-cured phenolic epoxy coating

Aluminium Alloy ALUMEC 89 Hot Rolled PLATE

MODELS: 24 SM & 24 SMSS

UTILUX CABLE MANAGEMENT

Chromadek is Iconic. What comes to mind when we mention Chromadek is often a roof colour, so the chances are it s. Copyright ArcelorMittal 07/03/2014

AVOIDANCE OF FAILURE OF CO AND OF CO/CO 2 MIXTURES CYLINDERS

Steels suitable for galvanizing

Chromium (VI)-free surface technology for hydraulic fittings

Low Stress Silicone Encapsulant Enables Distributed Power Generation

INTEGRITY 820. Design and installation guide. integrity 820

lindab rainline the steel rainwater system Lindab Rainline Lindab Roof Drainage System The STEEL rainwater system with the low CO2 footprint

Littlies. Willplay s Littlies range offers floor. Cool activities for little kids!

Spizvac Marketing Pty Ltd. 50 Gungah Bay Road. Oatley. NSW Tel:

COR-TEN Hot rolled, weldable structural steel sections

END TRUCKS WHEEL SIZES: 9", 12", 15" & 18"

1.0 STS-WiFi Operations Manual Outline

Suppliers details: Chemical Initiatives (Pty) Ltd Address: AECI Place, Building 24, The Woodlands, Woodlands Drive, Woodmead, 2196, South Africa

Transcription:

T e c h n i c a l B r o c h u r e THE ATMOSPHERIC CORROSION RESISTANCE OF STAINLESS STEELS COLUMBUS STAINLESS [Pty] Ltd www.columbusstainless.co.za

Introduction Stainless steels are widely used in applications requiring good atmospheric corrosion resistance. Atmospheric corrosion varies widely as does the corrosion resistance of different stainless steels. These issues are addressed with reference to the CSIR report (Atmospheric Corrosion Testing in Southern Africa - Results of a Twenty Year Exposure Programme, BG Callaghan, Division of Materials Science and Technology, CSIR). Atmospheric conditions Atmospheric conditions were classified broadly, according to the corrosiveness, as follows. Condition Marine Inland industrial Temperature high moderate high moderate moderate moderate Humidity high moderate high moderate Low Low Wind-borne salts yes yes no no no no Rainfall summer infrequent summer winter summer summer Early morning sea mists no yes no no no no Pollution moderate low high low high low The corrosion rate of the following metals were measured in the above environments - mild steel, corten weathering steel, zinc, copper, aluminium (313) and stainless steels (3CR12, 43, 34 and 316) - at various time intervals from two to 2 years. Certain metals experienced a variation in corrosion rate over time, but these variations were small compared to the variations between environments or metals. In general, the corrosion rate of mild steel and corten decreased with time (due to the accumulation of corrosion product on the surface), while aluminium, zinc, copper and the stainless steels had time independent corrosion rates. The average corrosion rate of mild steel is shown in the different environments in Figure 1. This clearly ranks the environments and the results are consistent with the conditions presented in the above table. Further information TECHNICAL Columbus Stainless (Pty) Ltd PO Box 133 Middelburg 15 South Africa Tel: +27 (13) 247 3343 Fax: +27 (13) 247 2289 E-mail: technical-help@columbus.co.za COMMERCIAL Columbus Stainless (Pty) Ltd PO Box 133 Middelburg 15 South Africa Tel: +27 (13) 247 22 Fax: +27 (13) 247 2771 E-mail: commercial-help@columbus.co.za Date of Issue : May 211 one Disclaimer The material contained in this manual has been designed as a guide for customers of Columbus Stainless (Pty) Ltd. However, the material contained herein is not intended as a substitute for any person s procedures and should not be used or relied upon for any specific or general application without first obtaining competent advice. Furthermore, Columbus Stainless (Pty) Ltd disclaims any responsibility for the suitability of the steel in question for any particular purpose or for the performance or selection of the steel, unless Columbus Stainless (Pty) Ltd specifically and expressly authorises the purpose or selection. The material contained in this manual does not purport to be a comprehensive or exhaustive statement of all relevant material applicable to special and general steel products and no representation, condition or warranty, express or implied, is given by Columbus Stainless (Pty) Ltd as to the accuracy or completeness of this manual and, so far as is permitted by law, Columbus Stainless (Pty) Ltd, its members, staff and consultants disclaim any duty of care in relation to the preparation of this manual and the information that it contains and shall not be liable for any direct, indirect or consequential loss, damage or injury suffered by any person, howsoever caused as a result of relying on any statement in or omission to this manual and any such liability is expressly disclaimed. [Columbus Stainless (Pty) Ltd shall not be liable in the event of a breakdown, malfunction or failure occurring due to faulty design, material or workmanship of the steel, whether based on the information contained herein or not, and shall not, under any circumstances, be liable for any damages, either direct or indirect, particularly consequential damages, including but not limited to damages for loss of profits.]

Figure 1 - Corrosion rate of mild steel 3 25 2 Corrosion rate (microns per year) 15 1 5 245 98.3 43.1 28. 17.5 5.35 Marine Inland industrial two Figure 2 - Relative mild steel life to severe marine 5 45 4 35 Corrosion rate (microns per year) 3 25 2 15 1 5 1 2.5 5.7 8.8 14 46 Marine Inland industrial

Atmospheric conditions (continued) If the corrosion rate is converted to a relative life, Figure 2 for mild steel can be derived. From this, it can be seen that mild steel in a rural environment is expected to last 46 times longer than in a severe marine environment. Using a similar conversion, Figure 3 can be derived and shows the relative life of the eight other metals to mild steel in the six different environments. Finally, Figure 4 shows the average relative life of the different metals in atmospheric conditions. This figure allows the metals to be ranked overall and also gives some generalised information about the relative atmospheric corrosion resistance of the various metals. (The scale of Figures 3 and 4 are logarithmic to better compare the different orders of magnitude of the lives of the different metals.) Figure 3 - Relative life to mild steel 1 1 1 Marina Inland Industrial Relative life to mild steel 1 1 1 1 Corten three Zinc Copper AA 313 3CR12 SS 43 SS 34 SS 316

Figure 4 - Overall relative atmospheric life Finally, Figure 4 shows the average relative life of the different metals in atmospheric conditions. This figure allows the metals to be ranked overall and also gives some generalised information about the relative atmospheric corrosion resistance of the various metals. (The scale of Figures 3 and 4 are logarithmic to better compare the different orders of magnitude of the lives of the different metals.) 1 1 Relative life to mild steel 1 1 1 1 1.5 5.2 17 94 164 1 3 2 228 6 661 In appearance, all the metals showed discolouration at the more severe sites after 2 years. Even the most corrosion resistant alloy tested here, 316 stainless steel, showed severe staining. None of the metals were washed during the exposure programme and this clearly emphasises the importance of keeping stainless steel clean and that stainless steel is a LOW maintenance (not NO maintenance) option in atmospheric corrosion applications. All the stainless steels and aluminium showed some pitting. However, 3CR12, even in the most corrosive environment, only had a pit depth of 25μm after 1 years. As far as corrosion rates are concerned, in most environments, Corten gives an advantage over mild steel. A zinc alloy would last up to 2 times longer than mild steel, but if it is used as a coating (i.e. galvanised steel), once the zinc is consumed, the corrosion rate of the galvanised steel would be the same as for mild steel. With a typical galvanised coating being about 15μm, the galvanising would be penetrated in one to five years in most marine environments, although in inland environments, the coating would last between 15 and 5 years. 3CR12 has a similar performance to aluminium in marine environments and is superior in inland environments. The other stainless steels have even better corrosion resistance than 3CR12 and this is to be expected from their higher chromium and/or molybdenum contents. 3CR12 is an excellent material for atmospheric applications, even in the most demanding environments, if aesthetics are not important. Otherwise, coated 3CR12 has proven to be very successful. Where aesthetics are important, the following guidelines can be applied - 43 should be reserved for rural environments, 34 for inland industrial applications and 316 for marine applications. Duplex and ferritic substitutes for 34 and 316 are available which can provide a more cost effective alternative. four Mild steel Corten Zinc Copper AA 311 3CR12 SS 43 SS 34 SS 316