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Dept. of Mechanical Engineering, IISc
ME-255 : PRINCIPLES OF TRIBOLOGY
Surface Properties - Measurement Techniques
Profilometer
Presented by
Balasenthil D
Sr.No. 08993
CONTENTS
• Introduction
• Types of Profilometer
 Contact
 Non - Contact
• Working Principle
 Optical Principle Basics
 Modes of Operation
• System Performances
 Range , Resolution & Accuracy
• Surface Parameters
 Surface Topography & Amplitude Parameters
• Profilometers @ IISc
• Measurement Examples
INTRODUCTION
• Definition.
- A profilometer is a device used to measure the
roughness of a surface.
- Gives difference between the high and low point of
a surface in nanometres.
• Types of Profilometers.
 Non - Contact Profilometers
Contact Profilometers
• Optical Methods
 Vertical Scanning Interferometry
 Phase - Shifting Interferometry
 Differential Interference Contrast Microscopy
• Focus Detection Methods
 Intensity Detection
 Focus Variation
 Differential Detection
 Critical Angle
 Astigmatic Method
 Focault Method
 Confocal Microscopy
Contd…
Non - Contact Profilometer
• Pattern Projection Methods
 Fringe Projection
 Fourier Profilometry
 Moire
Non - Contact Profilometer
Contact & Pseudo – Contact Profilometer
• Stylus Profilometer
• Atomic Force Microscopy
• Scanning Tunneling Microscopy
Contact Profilometer
• Height from 10 nanometres to 1 millimetre
• Radius of diamond stylus from 20 nm to 25 μm
• Horizontal resolution is controlled by the scan speed
and data signal sampling rate.
Contd ...
Contact Profilometer
• Advantages & Disadvantages
 Acceptance & Easy to Use
Surface Independence
Resolution : The stylus tip radius can be as small
as 20 nanometres
 Direct Technique : No modelling required.
 Not suitable for very soft (or even liquid) and
easily damageable surface
 Very hard and damage surface can damage the
stylus
 Only 2D
Non - Contact Profilometer
• Uses beams of light to read a surface
• They shoot a beam out and measure the time it takes to
return.
• no wear since none of its parts touch anything
Contd …
• Advantages of optical profilometers
 Good Resolution: Vertical resolution is usually in the
nm level
 High Speed
 Reliability : cannot be damaged by surface wear or
careless operators
 Spot size or lateral resolution ranges from a few
micrometres down to sub micrometre.
Contd …
Non - Contact Profilometer
Non - Contact Profilometer
• Limitations:
 Limited by very high slopes, where the light is
reflected away from the objective, unless the slope
has enough texture to provide the light.
 Surface Modelling is required to convert the digital
code to human usable data.
Working Principle of Profilometer
(Non - Contact Optical Profilometer)
Contd …
• A light beam is split, reflecting from reference
(known/flat) & test material.
• Constructive and destructive interference occurs
• Forms the light and dark bands known as
interference fringes.
• The optical path differences are due to height
variances in the test surface.
Contd …
Working Principle of Profilometer
(Non - Contact Optical Profilometer)
Working Principle of Profilometer
(Non - Contact Optical Profilometer)
• Constructive interference areas as lighter and the
destructive interference areas as darker.
• Light to dark fringes above represents one-half a
wavelength of difference between the reference path
and the test path.
Contd …
Interference Image
Working Principle of Profilometer
(Non - Contact Optical Profilometer)
• From the above Interference Image:
 Lower portion is out of focus means less
interference.
 Greatest contrast means best focus.
• Phase Shifting Interferometry (PSI) Mode
• Vertical Scanning Interferometry (VSI) Mode
Contd …
Modes of Operation
(Non - Contact Optical Profilometer)
Modes of Operation
(Non - Contact Optical Profilometer)
• Range: Highest vertical distance the profiler can
measure.
• Resolution: Smallest distance the profiler can
accurately measure.
 Lateral Resolution
 Vertical Resolution
• Accuracy: How closely a measured value matches the
true value & can be obtained by frequent calibration.
System Performances
• Surface Topography: 3D representation of geometric
surface irregularities.
Contd …
Surface Parameters
• Roughness : Closely spaced irregularities
• Waviness : More widely spaced irregularities
• Error of Form : Long period & non cyclic deviations
• Flaws : Discrete & infrequent irregularities
• Roughness & Waviness comprise the Surface
Texture
Contd …
Surface Parameters
• Amplitude Parameters:
Contd …
Surface Parameters
Term Definition Use
Ra The roughness
average (mean
height)
Gives roughness of
the machine surface
Rq RMS roughness Describes the finish
of optical surface
Rp & Rv Max profile peak &
max profile valley
depth
Ra - info of friction &
wear
Rv - retaining of
lubricant
Rt Max height of
surface
Gives overall
roughness of the
surface
Surface Parameters
• Amplitude Parameters:
Term Definition Use
Rz Average max
height of the
profile
Evaluating
surface texture on
limited access
surfaces
Rsk Skewness -
measure of
asymmetry of the
profile about the
mean line.
Gives load
carrying capacity,
porosity &
characteristic of
non-conventional
machining
processes.
• Optical surface profilometer
 Make – Veeco NT1100
 Type – Non Contact type
 Principle of Operation
• VSI g interferometry (VSI)
• Phase-shifting interferometry (PSI).
 Range
• VSI – 2mm
• PSI – 160nm
 Resolution
• Vertical Resolution : PSI – 3Å & VSI – 3nm
 Lateral Resolution -- Function of magnification objective and
the detector array size you choose
Profilometers @ IISc
• Nanoscience Profilometer
 Film thickness measurement from 5 microns
down to 300 nm or less
 4 million pixel camera for high resolution
 Auto-range and auto-fringe-find for ease of use of
Single mode of operation over all scan ranges.
Profilometers @ IISc
Measurement Examples
• Some of the profiles obtained are shown below:
600 GRIT SIZE:
UPD (in 2D): UPD (in 3D)
• Surface of steel Block Reflection Intensity
• 3D Image
Measurement Examples
• Pit on a thin iron plate 2D image
• Plate thickness 0.7mm
• (Depth 0.14494mm)
Measurement Examples
• 3D image
Measurement Examples
• Research Papers :
 T.V.Vorburger, J.Raja.
Surface Finish Metrology Tutorial
June 1990
 WYKO Surface Profilers Technical Reference manual
September 1999, Version 2.2.1
• Webpage
 Profilometer, Wikipedia
http://en.wikipedia.org/wiki/Profilometer
References
THANK YOU

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Profilometer (1)

  • 1. Dept. of Mechanical Engineering, IISc ME-255 : PRINCIPLES OF TRIBOLOGY Surface Properties - Measurement Techniques Profilometer Presented by Balasenthil D Sr.No. 08993
  • 2. CONTENTS • Introduction • Types of Profilometer  Contact  Non - Contact • Working Principle  Optical Principle Basics  Modes of Operation • System Performances  Range , Resolution & Accuracy • Surface Parameters  Surface Topography & Amplitude Parameters • Profilometers @ IISc • Measurement Examples
  • 3. INTRODUCTION • Definition. - A profilometer is a device used to measure the roughness of a surface. - Gives difference between the high and low point of a surface in nanometres. • Types of Profilometers.  Non - Contact Profilometers Contact Profilometers
  • 4. • Optical Methods  Vertical Scanning Interferometry  Phase - Shifting Interferometry  Differential Interference Contrast Microscopy • Focus Detection Methods  Intensity Detection  Focus Variation  Differential Detection  Critical Angle  Astigmatic Method  Focault Method  Confocal Microscopy Contd… Non - Contact Profilometer
  • 5. • Pattern Projection Methods  Fringe Projection  Fourier Profilometry  Moire Non - Contact Profilometer Contact & Pseudo – Contact Profilometer • Stylus Profilometer • Atomic Force Microscopy • Scanning Tunneling Microscopy
  • 6. Contact Profilometer • Height from 10 nanometres to 1 millimetre • Radius of diamond stylus from 20 nm to 25 μm • Horizontal resolution is controlled by the scan speed and data signal sampling rate. Contd ...
  • 7. Contact Profilometer • Advantages & Disadvantages  Acceptance & Easy to Use Surface Independence Resolution : The stylus tip radius can be as small as 20 nanometres  Direct Technique : No modelling required.  Not suitable for very soft (or even liquid) and easily damageable surface  Very hard and damage surface can damage the stylus  Only 2D
  • 8. Non - Contact Profilometer • Uses beams of light to read a surface • They shoot a beam out and measure the time it takes to return. • no wear since none of its parts touch anything Contd …
  • 9. • Advantages of optical profilometers  Good Resolution: Vertical resolution is usually in the nm level  High Speed  Reliability : cannot be damaged by surface wear or careless operators  Spot size or lateral resolution ranges from a few micrometres down to sub micrometre. Contd … Non - Contact Profilometer
  • 10. Non - Contact Profilometer • Limitations:  Limited by very high slopes, where the light is reflected away from the objective, unless the slope has enough texture to provide the light.  Surface Modelling is required to convert the digital code to human usable data.
  • 11. Working Principle of Profilometer (Non - Contact Optical Profilometer) Contd …
  • 12. • A light beam is split, reflecting from reference (known/flat) & test material. • Constructive and destructive interference occurs • Forms the light and dark bands known as interference fringes. • The optical path differences are due to height variances in the test surface. Contd … Working Principle of Profilometer (Non - Contact Optical Profilometer)
  • 13. Working Principle of Profilometer (Non - Contact Optical Profilometer) • Constructive interference areas as lighter and the destructive interference areas as darker. • Light to dark fringes above represents one-half a wavelength of difference between the reference path and the test path. Contd … Interference Image
  • 14. Working Principle of Profilometer (Non - Contact Optical Profilometer) • From the above Interference Image:  Lower portion is out of focus means less interference.  Greatest contrast means best focus.
  • 15. • Phase Shifting Interferometry (PSI) Mode • Vertical Scanning Interferometry (VSI) Mode Contd … Modes of Operation (Non - Contact Optical Profilometer)
  • 16. Modes of Operation (Non - Contact Optical Profilometer)
  • 17. • Range: Highest vertical distance the profiler can measure. • Resolution: Smallest distance the profiler can accurately measure.  Lateral Resolution  Vertical Resolution • Accuracy: How closely a measured value matches the true value & can be obtained by frequent calibration. System Performances
  • 18. • Surface Topography: 3D representation of geometric surface irregularities. Contd … Surface Parameters
  • 19. • Roughness : Closely spaced irregularities • Waviness : More widely spaced irregularities • Error of Form : Long period & non cyclic deviations • Flaws : Discrete & infrequent irregularities • Roughness & Waviness comprise the Surface Texture Contd … Surface Parameters
  • 20. • Amplitude Parameters: Contd … Surface Parameters Term Definition Use Ra The roughness average (mean height) Gives roughness of the machine surface Rq RMS roughness Describes the finish of optical surface Rp & Rv Max profile peak & max profile valley depth Ra - info of friction & wear Rv - retaining of lubricant Rt Max height of surface Gives overall roughness of the surface
  • 21. Surface Parameters • Amplitude Parameters: Term Definition Use Rz Average max height of the profile Evaluating surface texture on limited access surfaces Rsk Skewness - measure of asymmetry of the profile about the mean line. Gives load carrying capacity, porosity & characteristic of non-conventional machining processes.
  • 22. • Optical surface profilometer  Make – Veeco NT1100  Type – Non Contact type  Principle of Operation • VSI g interferometry (VSI) • Phase-shifting interferometry (PSI).  Range • VSI – 2mm • PSI – 160nm  Resolution • Vertical Resolution : PSI – 3Å & VSI – 3nm  Lateral Resolution -- Function of magnification objective and the detector array size you choose Profilometers @ IISc
  • 23. • Nanoscience Profilometer  Film thickness measurement from 5 microns down to 300 nm or less  4 million pixel camera for high resolution  Auto-range and auto-fringe-find for ease of use of Single mode of operation over all scan ranges. Profilometers @ IISc
  • 24. Measurement Examples • Some of the profiles obtained are shown below: 600 GRIT SIZE: UPD (in 2D): UPD (in 3D)
  • 25. • Surface of steel Block Reflection Intensity • 3D Image Measurement Examples
  • 26. • Pit on a thin iron plate 2D image • Plate thickness 0.7mm • (Depth 0.14494mm) Measurement Examples
  • 28. • Research Papers :  T.V.Vorburger, J.Raja. Surface Finish Metrology Tutorial June 1990  WYKO Surface Profilers Technical Reference manual September 1999, Version 2.2.1 • Webpage  Profilometer, Wikipedia http://en.wikipedia.org/wiki/Profilometer References