Example of forming limit curves calculated for cold-rolled HSLA family of steels (thickness: 1.0 mm) (ArcelorMittal model for Europe), Example of forming limit curves calculated for cold-rolled HSLA family of steels (thickness: 1.0 mm) (Keeler model for North America), Example of forming limit curves calculated for hot-rolled HSLA family of steels (thickness: 2.5 mm) (ArcelorMittal model for Europe), Example of forming limit curves calculated for hot-rolled HSLA family of steels (thickness: 2.5 mm) (Keeler model for North America). The HSLA steels in sheet or plate form have low carbon content (0.05 to −0.25% C) in order to produce adequate formability and weldability, and they have manganese content up to 2.0%. Typical applications include bent profiles. If you have any questions you can contact us at automotive@arcelormittal.com. We will be glad to help you select the exact grade for your needs. The grades and strength levels are achieved through composition and processing. The mechanical properties of hot-rolled HSLA steels and their excellent cold-forming performance and low-temperature brittle fracture resistance enable cost-effective solutions to be found for many parts and sub-assemblies requiring weight, thickness and size reduction, such as: Rear subframe in Extragal®-coated HSLA 300, Bumper bracket in Dual Phase 780 Impact absorber in HSLA 300. All information on this website is available to every visitor, without limits. Uncoated (EN 10268: 2006 + A1: 2013): Steel grade nameElectrogalvanized (EN 10268: 2006 + A1: 2013 + EN 10152: 2017): Steel grade name+ZEGalvannealed (EN 10346: 2015): Steel grade name+ZFExtragal® (EN 10346: 2015): Steel grade name+ZZagnelis® (EN 10346: 2015): Steel grade name+ZM, Uncoated: Steel grade name-UNCElectrogalvanized: Steel grade name-EGGalvannealed: Steel grade name-GAExtragal®: Steel grade name-GIZagnelis®: Steel grade name+ZM, A80mm %: Percentage elongation after fracture using a specimen with gauge length L0 = 80 mm (ISO 6892-1 type 2 (EN20x80))A50mm %: Percentage elongation after fracture using a specimen with gauge length L0 = 50 mm (ISO 6892-1 type 1 (ASTM12.5x50) or type 3 (JIS25x50)A%: Percentage elongation after fracture using a proportional specimen with L0 = 5.65 (So)1/2Ag %: Percentage plastic extension at maximum forceBH2: Increase in yield strength between a reference condition after a 2% plastic pre-strain and the condition obtained after heat treatment (170°C-20minutes). Forming limit curves can be used to define the limits within which a material can be deformed without necking for different deformation paths. Commercial exposed and unexposed, Under development Customer trials Commercial unexposed only Commercial exposed and unexposed. Our Ashby charts are interactive with more technical data upon clicking. Carbon Steel: Properties, Production, Examples and Applications, Electrical Steel: Properties, Types, Production, and Applications, Machinability, Castability, Formability, Hardenability and Weldability of Steel, Maraging Steel: Properties, Processing, and Applications. They are calculated for two loading ratios: tension-tension R=0.1 and tension-compression R=-1. Young's Modulus: Definition, Measurement, and Typical Values, Show Low Carbon Steel materials with Elastic modulus of 200 - 215 GPa at 20 °C, Show Low Carbon Steel materials with Elongation A200 of 16 % at 20 °C, Show Low Carbon Steel materials with Elongation A50 of 22 % at 20 °C, Show Low Carbon Steel materials with Poisson's ratio of 0.29 [-] at 20 °C, Show Low Carbon Steel materials with Shear modulus of 75 - 80 GPa at 20 °C, Show Low Carbon Steel materials with Tensile strength of 410 MPa at 20 °C, Show Low Carbon Steel materials with Yield strength of 340 MPa at 20 °C. No matter which job profile or region you select, you will always have unlimited access to all the information on this website. SSAB Domex® 340LA offers consistent properties that assist modern, rapid production methods. List your company on Matmatch now and reach engineers around the world looking for such materials. By creating an account for this website, you help us to offer you the most personalized experience possible. Sign up to get access to this premium feature for free. They are expressed in terms of maximum stress versus number of cycles to failure. We connect engineers, product designers and procurement teams with the best materials and suppliers for their job. HSLA steels vary from other steels in that they are not made to meet a specific chemical composition but rather specific mechanical properties. © 2020 Matmatch GmbH, All rights reserved. Because of their high endurance limits, these steels are particularly well suited to parts subject to fatigue loading. To restore the base metal endurance limit adjacent to welds in areas subjected to severe cyclic loading, a post-weld treatment such as TIG fusion, hammering, shot-peening or grinding should be applied to the toe of the weld runs. These cross-references are given for information only. Login to my account Mechanical Property Data ArcelorMittal HSLA 340 High strength low alloy steel for cold forming, Cold Rolled, ArcelorMittal HSLA 360 High strength low alloy steel for cold forming, Hot Rolled, ArcelorMittal HSLA 380 High strength low alloy steel for Get a quote today for SAE J2340 steel sheet, a dent resistant steel. Spot weldability is determined in accordance with the ISO 18278-2 method. Create account. So there is absolutely no obligation to create a login for this website. Steels in the HSLA (High Strength Low Alloy) range are hardened by a combination of precipitation and grain size refining, resulting in high strength with low alloy content. Register now If that’s okay, click “Accept all.” To change your preferences, click “Open cookie settings.” You will find more information about cookies on our privacy policy page. The entire range of HSLA steels offers good fatigue strength (suspension arms, strut mounts) and impact strength (longitudinal beams, subframes, reinforcements, etc.).

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