Steels for hot stamping -Usibor and Ductibor

Similar documents
Steels for hot stamping

Hot rolled ferrite-bainite steels

Complex Phase steels

Content. CP-W and CP-K. Areas of application. Product information for complex-phase steels

Introduction. 1. Development of microstructure controlled Hi- Ten

FULL SET OF INNOVATIVE TOOLS FOR THE PREDICTION OF LASER WELDED BLANK FORMABILITY IN SIMULATION

Lightweight Chassis Cradles

Table 1 El. Steel Category TS grade MPa MPa 980MPa GA980Y 724 1,022 Developed steel Galvannealed 780MPa GA780Y MPa CR980Y 690 1,030

MaX: Martensitic Stainless Steel for Hot Stamping

Steel Sheets for Highly Productive Hot Stamping

Content. Deep-drawing steels DD, DC and DX. Areas of application. Product information

Optimization Side Crash Performance Using a Hot-Stamped B-Pillar

Virtual Prototyping of Lightweight Designs Made with Cold and Hot Formed Tailored Solutions

Cost Savings for Rocker Reinforcement through Material Conversion

Driving advanced automotive steel solutions

Press hardening from a global perspective. Dr. Martin Skrikerud Vice Chief Technical Officer

Hot Stamping of a Boron Steel. Side Impact Beam. with Tailored Flange Properties -

2013 GREAT DESIGNS IN STEEL CONFERENCE Wednesday, May 1 st 2013

Driving advanced automotive steel solutions

AUTOMOTIVE EXHAUST SYSTEM MATERIALS COMPARATOR

HOT DIP GALVANIZED STEEL

Newly-Developed Ultra-High Tensile Strength Steels with Excellent Formability and Weldability

Martensitic Steel Sheets of 1300 and 1500MPa Grades

Technical Transfer Dispatch #6

The Effect of Niobium and Molybdenum Co-Addition on Bending Property of Hot Stamping Steels

HOT DIP GALVANNEALED STEEL

Resistance Spot Welding of Coated High Strength Dual Phase Steels

HOT-FORMING PROCESS TO IMPROVE PRODUCT STRENGTH & REDUCE VEHICLE WEIGHT Mr. Yuvraj R. Patil 1, Mr. Sudhir Narkhede 2 1

High-Performance, High-Strength Steel Sheets for Exposed Auto Body Panels

COLD ROLLED STEEL S. Automotive. Appliances. Construction. Lighting. Office Furniture

HOT DIP GALVANIZED STEEL. Agricultural Equipment. Transportation

Environment oriented light weight design in steel

NIPPON STEEL TECHNICAL REPORT No. 88 July Yasuharu SAKUMA* 1 Hatsuhiko OIKAWA* 2

HOT DIP GALVANIZED STEEL. Agricultural Equipment. Transportation

Advances in steel and Al alloy materials High strength (HSS) & Advanced high strength steel (AHSS)

KVA, Inc. / 124 S. Market Place, Suite 200 / Escondido, CA U.S.A. (760) phone (760) fax WELD

Steels coated with Alusi aluminum-silicon alloy: specific applications

The Simulation Software for Innovative Welding and Joining. Ensure before welding

Steel Properties. History of Steel

Hot-Dip Galvanized Sheet Steel with Excellent Press Formability and Surface Quality for the Automotive Panels *

GALVANNEALED ZINC- IRON ALLOY COATED STEELS

Characteristics of 1180MPa Grade Cold-rolled Steel Sheets with Excellent Formability

Design Optimization with 3 rd Generation AHSS

Relia. Industeel. Relia : Quality Wear Resistant Plates PROPERTIES STANDARDS TECHNICAL CHARACTERISTICS

Experimental Study of Tensile Test in Resistance Spot Welding Process

410S STAINLESS STEEL. Moderate to Good Formability Good High-temperature Service. Slows Hardening Cracks When Welded. Minimal Hardenability

STANDARD FERRITIC STAINLESS STEELS

Present Situation and Future Trend of Ultra-High Strength Steel Sheets for Auto-Body

Forming of AMAG 7xxx Series Aluminium Sheet Alloys

Welding Solutions for Advanced High-Strength Steels Menachem Kimchi 1

Application of Mechanical Trimming to Hot Stamped 22MnB5 Parts for Energy Saving

CHROMESHIELD 22 STAINLESS STEEL

Experimental Investigation on the Effect of Annealing on Fatigue Life of SAE 202 and 440C Steels

Applications Potential

MATERIALS SCIENCE-44 Which point on the stress-strain curve shown gives the ultimate stress?

The right choice of steel according to the Eurocode

Hot-Dip Galvanized Fabrication Considerations

LASER BEAM WELDING OF QUENCHED AND TEMPERED ASTM A 517 GR.B STEEL

ELECTROGALVANIZED STEEL

Subway Cars. Applications Potential

More Oxidation and Creep Resistance Upgrade for Type 409. Potential Substitute for 18 Cr-Cb & Type 439. Excellent Forming and Welding Characteristics

Development and Testing of a Hot Stamped Axial Crush Member with Tailored Properties. Kaab Omer. A thesis. presented to the University of Waterloo

Weldability of AHSS. Dr. Sree Harsha Lalam, CWEng. Mittal Steel Company. w w w. a u t o s t e e l. o r g

12 SR STAINLESS STEEL. More Oxidation Resistant Than Type 409. More Creep Resistant Than Type 409. Applications Potential

COMPARISON OF 22MNB5-STEEL WITH AND WITHOUT ALSI-COATING DURING LASER HYBRID ARC WELDING

Ensuring Manufacturing Infrastructure Readiness. Dr. Paul E. Krajewski General Motors Company GALM 2013

TRIBOND high strength and high ductility Tailored material for hot forming

Steel and its innovations Challenges and solutions

High Strength Hot-rolled Steel Sheets for Automobiles

Product Design Considerations for AHSS Displaying Lower Formability Limits in Stamping - With Sheared Edge Stretching

Joining of Dissimilar Automotive Materials

THERMAK 17. High Temperature Strength. Superior Oxidation Resistance. Excellent Thermal Fatigue Resistance. Equiaxed Microstructure

High Volume Aluminum Solutions for Lightweighting Duane Bendzinski Director, Global Automotive Technology

ATI Datalloy HP TM Alloy

Steel TBL. Hardenable boron steels with excellent processing potential for high wear protection in special vehicles.

HOT PRESS FORMING IN SHEET METAL FORMING

STULZ-SICKLES STEEL COMPANY

Simulation von Kerbeffekten durch Löcher und Schweißpunkte in Karosseriebauteilen aus Ultra Hochfesten Stählen

1. Introduction. Fig. 1 Schematic description of correlated development items for tube applications to automotive structural parts

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

Chemical composition For the ladle analysis, the following limiting values in % are applicable: C Si Mn P S

Joining as an Enabling Technology for Mainstream Vehicle Lightweighting

AISI A2 Cold work tool steel

Tempering of hot-formed steel using induction heating. Master of Science Thesis OLOF HEDEGÄRD MARTIN ÅSLUND

Characterization of AMAG AL6-CHA sheet material for Chassis application in the automotive industry

Seam Welded Air-Hardenable Corrosion Resistant Steel Tubing: Automotive Applications Overview

related to the welding of aluminium are due to its high thermal conductivity, high

Investigating the Mechanical Properties of Post Weld Heat Treated 0.33%C Low Alloy Steel

Mechanical Properties and Fracture Behavior of Medium Carbon Dual Phase Steels

Mechanical behavior of crystalline materials - Stress Types and Tensile Behaviour

Two Bainitic Pre-Tempered Steel Grades for Similar Spring Applications: A New Concept. Session Title

304/304L STAINLESS STEEL

Available online at Fatigue Received 4 March 2010; revised 9 March 2010; accepted 15 March 2010

Aluminium Solutions for Heat Exchangers

Electron Beam Melted (EBM) Co-Cr-Mo Alloy for Orthopaedic Implant Applications Abstract Introduction The Electron Beam Melting Process

UR 2202 is a low nickel, low molybdenum stainless steel designed to match the corrosion resistance of 304L in most environments.

THE AUTOMOTIVE STEEL BUSINESS: MARKET POTENTIAL AND CHALLENGES Michel BABBIT ARCELORMITTAL

Manufacturing (Bending-Unbending-Stretching) Effects on AHSS Fracture Strain

Click to edit Master title style

1. Introduction. Senior Researcher Manager, Sheet Products Res. Dept., Steel Res. Lab., JFE Steel

Transcription:

Automotive Worldwide Steels for hot stamping -Usibor and Ductibor Extract from the product catalogue -European edition Note: Information contained in this catalogue is subject to change. Please contact our sales team whenever you place an order to ensure that your requirements are fully met. Please contact us if you have a specific requirement that is not included in the range of products and services covered by this catalogue. We are also reachable by the e-mail address automotive.request@arcelormittal.com.

We are also reachable by the e-mail address automotive.request@arcelormittal.com. Steels for hot stamping -Usibor and Ductibor Ultra high strength steels Description Usibor and Ductibor are hot formed grades which are intended for use in automobile structural and safety components. Due to their high resistance, the Usibor steels are particularly suitable for anti-intrusion parts for which an ultimate load before collapse is required. Thanks to their excellent ductility, the Ductibor steels are particularly effective for the parts which need absorb energy during an impact. The graph below illustrates the typical levels of tensile strength and fracture strain of Usibor and Ductibor steels. The main advantages of Usibor and Ductibor steels are: To propose complex geometry in direct process but also in indirect process as the cold formability of the product is good. The very good hot formability allows to use steel solution which include several functions (suppress of reinforcement part or assemblies); Homogeneity of mechanical properties obtained on part; Excellent fatigue strenght and impact resistance allowing substantial weight reduction. ArcelorMittal was the first steelmaker to offer the automotive industry a coated press hardened steel: Usibor -AS with an aluminum-silicon coating. The additional benefits of Usibor -AS and Ductibor-AS steels are: Simplification of the process and economic earnings (elimination of the shot-blasting step (no formation of scale), no specific protective atmospheres in the ovens during heat treatment austénitisation); Excellent temporary corrosion resistance after stamping, not requiring oiling of parts before assembly; Absence of decarburization; Excellent resistance to perforating corrosion, current use in dry and wet areas (side sill for example) of the vehicle. -GI galvanized Zn (for process of indirect stamping only) and -GA galvannealed ZnFe (for direct and indirect process) complete now the coating offer. Two safety data sheets are available for each steel, one for the as-delivered product and one for the product after heat treatment. These steels require no special precautions. Applications Usibor steels are particularly well suited for the entire range of structural parts which require a resistance to anti-intrusion during crash. Main current applications are: Front and rear bumper beams; Door reinforcements; Windscreen upright reinforcements; B-pillar reinforcements; Floor and roof reinforcements; 2

Floor and roof reinforcements; Roof and dash panel cross members. B-pillar (thickness: 1.85 mm) Bumper beam (thickness: 2.3 mm) Door reinforcement (thickness: 1 mm) Windscreen upright (thickness: 1.2 mm) 3

Laser Welded Blanks Usibor 2000 /Ductibor 1000 stamping trials Ductibor steel grades are proposed in association with Usibor for Laser Welded Blanks solutions allowing to obtain hot stamped parts presenting characteristics locally more ductile than Usibor steels. This solution meets the needs to control precisely deformations of particular zones of the vehicle during the crash (example of a B-pillar reinforcement), and to widen the spectre of use of hot stamping steels parts dedicated for energy absorption (example of front or rear rail). Potential applications of Laser Welded Blanks Usibor -Ductibor are: Front rail (front extremity, elbow and extension underfloor); Rear rail; B-pillar reinforcement (high part in Usibor, low part in Ductibor ). Example of potential applications of Usibor -Ductibor steels ArcelorMittal has a complete set of data relating to the forming and the service properties of steels for hot stamping. To integrate these steels at the design stage, a team of experts is available to carry out specific studies based on modeling or laboratory tests. Technical characteristics Mechanical properties (1) (2) The table below gives the minimum characteristic values after hot stamping and simulation of the paint baking of the part. These values are indicative and depend on the hot stamping process parameters. UTS (MPa) 350 460 16 120 400 550 16 120 Ductibor 1000 800 1000 6 80 1100 1500 3 50 1400 1800 3 45 Ductibor 450 Ductibor 500 Usibor 2000 Hot rolled A (%) (3) YS (MPa) Bending angle (4) Cold rolled (1) 5 to 10 minutes 880 C to 930 C type heat treatment followed by quenching in perfectly cooled stamping tools (cooling speed > 30 C per second). (2) paint baking simulation: 170 C heat treatment during 20 minutes. (3) Elongations to rupture are only indicative. More relevant is the minimum bending angle for crash ductility. (4) Bending angle following to the VDA238-100, referring to 1.5 mm thickness test specimen. Chemical Composition (%) 4

Chemical Composition (%) C Max Mn Max Si Max B Max 0.06 0.001 0.11 1.1 0.1 1.3 0.5 0.001 Ductibor 1000 0.12 2 0.75 0.005 0.25 1.4 0.4 0.005 0.37 1.4 0.7 0.005 Ductibor 450 Ductibor 500 Usibor 2000 Hot rolled Cold rolled Available coatings and worldwide availability Uncoated EUR NAM SAM Extragal RSA CHI EUR NAM SAM RSA CHI RSA CHI 22MnB5 22MnB5 Ductibor 450 Ductibor 500 Ductibor 1000 Usibor 2000 Galvannealed EUR NAM SAM RSA Aluminised CHI EUR NAM SAM 22MnB5 22MnB5 Ductibor 450 Ductibor 500 Ductibor 1000 Usibor 2000 Hot rolled Cold rolled Available in non-visible part quality quality (Z) Undergoing customer testing Under development Available in visible and non-visible part EUR : Europe Region -NAM : North America Region -SAM : South America Region -RSA : South Africa Region -CHI : China 5

Before heat treatment, the microstructure of is composed of ferrite and perlite. microstructure before hot stamping (delivery state) The coating at delivery state is split into one ternary layer of alloy at the steel-coating interface and an overlay of binary aluminum-silicon alloy. Appearance of the coating of prior to hot stamping Following heat treatment and quenching, the microstructure is 100% martensitic. Martensitic microstructure following hot stamping heat treatment (example: 5-minute austenitization at 900 C, followed by water quenching or die quenching). Scanning electron micrograph 6

The Al-Si coating is transformed in the oven into a protective Al-Fe-Si alloy layer adhering perfectly to the substrate. Appearance of the coating after hot stamping (optical microscopy) Heat treatment Usibor -AS and Usibor -GA were specially developed for a direct hot stamping process consisting of austenitization of blanks in the heat treatment oven, hot stamping of these hot blanks in a press and martensitic quenching in the water-cooled stamping tool. All strain during forming occurs at high temperature. We advise against cold pre-forming prior to austenitization of Usibor -AS and Ductibor -AS. Usibor 1500-GI is not compatible with the direct hot forming process. Hot-stamped Usibor -AS and Ductibor -AS parts have no micro-cracks inside the steel substrate. Direct process of hot stamping for Usibor -AS and Ductibor -AS Consult us for data and advices related to hot stamping of Usibor and Ductibor steels. -GI, -GA and 22MnB5 have a good cold formability, they can be used with an indirect process. Indirect process of hot stamping for Usibor -GI Surface treatment After hot stamping and quenching, Usibor -AS and Ductibor -AS components can be painted directly without cleaning operation like shot blasting. The high roughness of the part surface allows a good paintability (by cataphoresis or any other organic painting system). The composition of phosphating baths is not modified and no pollution is observed. The parts made with -GI must be cleaned (shot blasting for example) so as to garanty a good paint adhesion and a good welding ability. The parts made with 22MnB5 are systematically shot blasted so as to garanty a good painting ability. Welding Usibor and Ductibor have good spot weldability for both matching and non-matching joints at both 50 and 1000 Hz. The product has a wide welding range and the mechanical (tensile, shear) performance of the joints complies with automotive manufacturer requirements and with standards. Thanks to the alloy layer obtained after hot stamping, welding electrode life is considered exceptional (several thousand spots without deterioration) compared to that of conventional metal coatings. MAG, MIG and conventional metal welding techniques, including brazing, can readily be applied. 7

Based on long shop-floor experience in the characterization of its products for purposes of resistance spot welding and arc welding, ArcelorMittal can provide technical support for welding parameter adjustment. Homogeneous spot welding Usibor + Usibor 3 sheet spot weld combination with multiphase steel MAG weld Fatigue strength Fatigue strength can be expressed as an endurance limit (maximum stress). -AS and Ductibor 500-AS offer excellent fatigue properties (superior to those obtained in uncoated steels for hot stamping with decarburized surface). The table below shows 2 million cycle endurance limits, expressed in MPa, in a uniaxial tension-compression test for R = 0.1 and R = -1. 6 σd A 2.10 cycles (MPa) R=0.1 727 617 621 22MnB5* Ductibor 1000-AS Hot rolled 6 σd A 2.10 cycles (MPa) R=-1 475 305 356 Cold rolled * Decarburized surface after hot stamping with a thickness of approximately 30 µm. Impact resistance strength Impact strength is the area in which and 22MnB5 come into their own. We can supply detailed information about the exceptional impact strength and the anti-intrusion properties of these two products. 8

Due to their high resistance, the Usibor steels are particularly suitable for anti-intrusion parts for which an ultimate load before collapse is required. Usibor steels have been characterized in the 3-point bending test using top hat cross-section specimens impacted at 30 kph. The tests showed very good behavior of these steels. The following graph shows the mass reduction potential of these steels compared to that of an HSLA 380. We can supply detailed information about the exceptional impact strength and the anti-intrusion properties of these two products. Mass reduction potential of Usibor steel compared to that of an HSLA 380 steel (reference) Thanks to their excellent ductility, the Ductibor steels are particularly effective for the parts which need absorb energy during an impact. Ductibor steels have been characterized in dynamic axial compression tests using an top hat structure with a spot-welded closure plate at an impact velocity of 56 kph. These tests have demonstrated the good impact behavior of these steels. The following graph shows the mass reduction potential of these steels compared to that of an HSLA 380. Mass reduction potential of Ductibor steels compared to that of an HSLA 380 steel (reference) ArcelorMittal Last update: 03-05-2018 9