FINOCAS Activity Report 2020-2021

Page 53

Modelling brings toughness improvement to welded natural gas transmission pipelines Weldability research at OCAS for natural gas transmission pipelines has been valorised for many years to support ArcelorMittal customers. One of the technologies widely used to produce tubes and pipes from strip is high frequency induction (HFI) welding. This welding technology does not require welding consumables, results in a narrow weld zone, and is the most productive method.

OCAS’s technical capabilities in HFI (other than welding itself) allow us to carry out in-depth research – these capabilities were recently extended with numerical modelling of the welding process. A 2-dimensional numerical model, coupled with electromagnetic and thermal physics, has been developed at OCAS to predict the temperature profile of the strip as it passes through the induction welder. Within a collaborative project with one of ArcelorMittal’s most important customers, this model allowed us to review the existing forging practice of the mill and to provide recommendations for implementing a

sophisticated forging control during HFI welded pipe production. The customer could achieve a substantial toughness improvement on the welds: Charpy impact toughness of the bond line increased by more than 30% at -20 °C, and the ductileto-brittle transition temperature shifted to a lower temperature. With the current information available, calculation of the thermal profile for upcoming production cases should be possible before the production starts, which will minimise the number of expensive trials that are required to optimise process parameters. Energy Transition

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Flanders Metals Valley, climate-neutral and circular metallurgical cluster in Flanders

1min
pages 194-195

List of publications 2020-2021

7min
pages 196-204

Knowledge building

3min
pages 188-189

The strength of combining instruments

1min
pages 180-181

Accurate precipitate analysis made easy

3min
pages 176-179

Microscopy service centre: our analytical tools

3min
pages 168-171

Solution-driven operators using an industry-oriented approach

1min
pages 172-173

Virtual manufacturing at the customers’ service

3min
pages 160-163

Correlative APT-TEM analysis of precipitates

2min
pages 174-175

Extend your lab with the OCAS microscopy centre

2min
pages 164-167

How image digitalisation and data mining help to improve the surface quality of hot rolled steel

2min
pages 156-159

HSLAi: When HSLA meets AI

1min
pages 154-155

Machine learning takes microstructure-based material design to the next level

3min
pages 150-153

Introduction

2min
pages 148-149

Preparing future metallic coatings with IMpACT

1min
pages 134-135

Going beyond steel: Exploring the processing of ever more complex and higher melting temperature alloys

2min
pages 138-141

Lab synthesis of customised materials: continuous extension of our offer

2min
pages 146-147

Using combinatorial methodology to get a better understanding of the intermetallic precipitation strengthening

2min
pages 136-137

Assessment thermo-mechanically control rolled-plate capability

1min
pages 132-133

Cold-rolled high-strength steels offer keeps growing

2min
pages 129-131

Hot-rolled high-strength steels brought to the next level

3min
pages 126-128

Decarbonisation of steelmaking: the challenge

2min
pages 120-121

XCarb™ green steel offer

2min
pages 122-123

Preparing hot-rolled steels for the future

2min
pages 124-125

Serving as technical support lab to production plants

4min
pages 114-117

Introduction

2min
pages 118-119

Durable technical support

1min
pages 112-113

Magnificent Magnelis®

1min
pages 106-107

Corrosion prediction models

3min
pages 108-111

Wear testing: experimental and numerical approach

7min
pages 94-97

Keeping tight connections

3min
pages 102-105

Cryogenic tests with CO2 in the Tubular Testing System

2min
pages 100-101

Fast response prevents failure

1min
pages 90-91

Structural health monitoring renders industrial assets smart

1min
pages 88-89

Challenging design criteria for improved fatigue performance

2min
pages 92-93

OCAS delivers accelerated fatigue testing equipment

1min
pages 85-87

Better understanding of fatigue performance

3min
pages 82-84

Electrical steels to power vehicle electrification

1min
pages 70-71

Bonding varnish, a universal solution

2min
pages 74-75

Fatcor: corrosion fatigue for offshore applications

1min
pages 80-81

High strength meets high protection for solar

1min
pages 68-69

Introduction

2min
pages 78-79

Identification of electrical steel market needs through market intelligence analysis

3min
pages 72-73

Spray technology for more sustainable offshore wind towers

1min
pages 66-67

In-house welding wire development for the new saline-resistant weathering steel

1min
page 65

New saline weathering grade to reduce maintenance costs of offshore structures

2min
pages 62-64

Steel solutions for liquified natural gas

1min
pages 60-61

Automated fracture surface analysis

2min
pages 58-59

Introduction

5min
pages 38-41

Avoiding long-running cracks in natural gas pipelines

4min
pages 54-57

Sustainable steel solutions for CO2 transport and storage

2min
pages 50-52

Modelling brings toughness improvement to welded natural gas transmission pipelines

1min
page 53

Where failure analysis and electrochemistry meet

1min
pages 32-33

Steel for the hydrogen economy

6min
pages 42-49

Lifetime prediction of subsea bolts in natural seawater

1min
pages 34-35

Introduction

2min
pages 36-37

Inspection of coatings on bridges and risk analysis for repair

1min
page 31

Investment porfolio

1min
page 12

Burning ambition to prevent microbiologically influenced corrosion in fire extinguish pipe systems

2min
pages 28-30

IMSystems

1min
pages 18-19

An ocean of opportunities

1min
pages 26-27

WIZATA

1min
page 13

Value the future, upgrade the past

5min
pages 20-23

Ensuring sustainable endurance by research

2min
pages 24-25

KEYSTONE

1min
pages 16-17
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