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Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department
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Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

Dec 22, 2015

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Page 1: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

Distinguishing Microstructures in

TRIP Steel using EBSD And Optical Imaging

Distinguishing Microstructures in

TRIP Steel using EBSD And Optical Imaging

Julie SmithWashington State University

Materials Science and Engineering Department

Julie SmithWashington State University

Materials Science and Engineering Department

Page 2: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

• Transformed Induced Plasticity

• Ret. Austenite to Martensite

• High in Strength and Elongation

• Automotive Industry

• Cooling Problems

TRIP Steels

Page 3: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

• FCC- Austenite

• BCC- Ferrite, Martensite and Bainite

• Advanced Methods Can’t be Used

• Limitations in Analysis and Advancements

The Problem

Page 4: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

Optical Microscopy-Color Etchants

Etchant Distinguishable Microstructures

Problems

2-5%Nital followed with 10% aq. sodium metabisulfite

Ferrite - Off WhiteBainite, Pearlite and Martensite- DarkAustenite- White

Bainite, Pearlite, and martensite are indistinguishable

2% Nital followed with heat treating

Ferrite and Bainite - BaigeMartensite- Dark BlueAustenite- Purple

Have to heat treat sample.Ferrite and Bainite are the same.

1% Aq. Metabisulfite followed with 4% Picral

Ferrite - Yellowish BlueBainite - BrownAustenite and Martensite- White

Austenite and martensite indistinguishable.

4% Picral followed by 2% aqueous metabisulfite

Ferrite - BrownMartensite and Austenite- White

Austenite and martensite indistinguishable.

4% Picral + HCl followed by 10% aqueous metabisulfite

Ferrite - Off WhiteBainite- Bluish BlackAustenite- WhiteMartensite- Straw Colored

Ferrite and Austenite close in color.

Page 5: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

• Topography Measurements

• Martensite and Retained Austenite= Same Height

• Heat Treatment

• Small Scans

AFM

Page 6: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

• Image Quality• Distinguish Between Bainite and Ferrite

• Operator Variation

• No Strain or Stress

• Image Quality and Confidence Index

• Ret. Austenite, Bainite and Ferrite

• High Magnification and Multiple Scans

SEM - EBSD

Page 7: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

STILL IN NEED OF A SOLUTION!STILL IN NEED

OF A SOLUTION!

Page 8: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

• EBSD/OIM and Optical • Other Property Analysis

• Ability to Reprogram OIM Software

• Medium Size Scans

• Easy Sample Prep

Techniques

Page 9: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

• Compare OIM phase with Etched Sample

• Austenite and Ferrite- same color with etchant

• Austenite and Ferrite- Different Crystal Structure

• Misorientations between Grains (future)

• Relationship Between Grains (future)

Proposed EBSD

Page 10: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

• Trial 1• Diamond Polish then Vibro Polish

• Make Markings

• OIM

• Plasma Etch

• 2-step etch (4% Picral + HCl followed by 10% aqueous metabisulfite)

• Optical Imaging

• Compare - Phase and Optical to get all 4 microstructures

Procedure

Page 11: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

Optical Imaging Results

• Bainite: Blue

• Martensite: Gold

• Ferrite and Austenite: Off- White

Page 12: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

EBSD/ OIM Results

Page 13: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

• Problems with Trial 1• Plasma Etch appears to remove material in addition to

hydrocarbons.

• Etchant removes too much material.

Procedure Cont.

Page 14: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

• Trial 2• Diamond Polish then Vibro Polish

• Make Markings

• 2- step Etch (4% Picral + HCl followed by 10% aqueous metabisulfite)

• 8 sec. Picral and 15-18 sec aq. metabisulfite

• Optical Imaging

• Vibro Polish (.02μm Colloidal Silica)

• OIM

• Compare - Phase and Optical to get all 4 microstructures

Procedure Cont.

Page 15: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

• Etchant Time• 2- step Etch (4% Picral + HCl followed by 10% aqueous

metabisulfite)

• 1st part- Etches • Too long- over-etch. Too Short- no grains

• 8 sec. Optimum

• 2nd Part - Colors• Too Short- not enough color, Too long- darkens

• 15-18 sec Optimum

Etching

Page 16: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

0 Hours 1.5 Hours 2.5 Hours 4 Hours

Vibro Polishing• Vibro Polishing Time (.02μm Colloidal

Silica)

No Kikuchi Patterns

No Kikuchi Patterns

Page 17: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

Vibro Polishing- 4 Hours

• Vibro Polishing Time

• 4 Hours.... Too Long

Page 18: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

• Vibro Polishing Time

• 4 Hours

Before- Fish Grain

After- No Fish

Vibro Polishing- 4 Hours

Page 19: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

• Vibro Polishing Time

• 2. 5 Hours

Vibro Polishing- 2.5 Hours

Page 20: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

Vibro Polishing- 2.5 Hours

Page 21: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

Conclusions

• Optical etch shows all phases except it cant distinguish between austenite and ferrite.

• EBSD distinguishes between austenite and ferrite, martensite, bainite.

• Method unsuccessful due to high material removal rate in comparison to the grain size.

• vibro polishing (.02 Colloidal Silica) in combination with 2-part etchant (4% Picral + HCl followed by 10% aqueous metabisulfite)

Page 22: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

STILL IN NEED OF A SOLUTION!STILL IN NEED

OF A SOLUTION!

Page 23: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

• Etchant/ Optical

• Try a new etchant with same procedure.

• Program OIM to differentiate Relationships Between Grains (distinguish martensite)

• AFM- MFM Technique

Future Work

Page 24: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

• Transformation to Martensite- Orientation

• Kurdjumov-Sachs Relationship• (110)bcc//(111)fcc, [1-11]bcc//[0-11]fcc

• Study: Misorientation Relationships-Martensite

EBSD Background

Page 25: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

Distinguishing Martensite

Page 26: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

Thank You!!Questions??????

Thank You!!Questions??????

Page 27: Distinguishing Microstructures in TRIP Steel using EBSD And Optical Imaging Julie Smith Washington State University Materials Science and Engineering Department.

• All Phases Shown to have some Magnetism

• AFM• Cantilever Tip

• Contact- Repulsion

• Non-contact- Attraction

• MFM• Special Tip

• Resolution 25 to 50 nm

• Promising Solution

AFM and MFM