Dr. Ehsan Toyserkani

Professor

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Biography

Ehsan Toyserkani holds a position as Canada Research Chair in Additive Manufacturing at the University of Waterloo, specializing in various aspects of research and development in the field of mechanical and mechatronic systems. With over 23 years of experience, he has established the Multi-Scale Additive Manufacturing (MSAM) Laboratory, one of the leading academic facilities dedicated to the development of additive manufacturing processes and applications. Toyserkani is noted for his leadership in the field, directing the Pan-Canadian NSERC Strategic Network 'Holistic Innovation in Additive Manufacturing' that collaborates with top Canadian and international universities alongside industrial partners. He has been active in advancing additive manufacturing, notably through over 194 journal articles and more than 12,100 citations, highlighting his significant contributions to the area. He is a recognized expert invited to speak at extensive conferences worldwide, and has been involved in the development of national and international standards in additive manufacturing and advanced manufacturing practices. His research interests include Additive Manufacturing, In-situ Monitoring, Closed-loop Control, Laser Material Processing, Mechatronics Design, Smart Structures, and Embedded Optical Sensors.

Research Interests

Awards

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Excellence in Education

2025-01-01
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Fellow

2024-01-01
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Graduate Supervision Excellence Award

2021-01-01
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Canada Research Chair in Additive Manufacturing

2017-11-01
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Outstanding Performance Award

2019-01-01
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University Research Chair in Additive Manufacturing

2015-01-01
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Teaching Excellence Award

2011-01-01
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Discovery Accelerator Supplement Award

2010-01-01

Patents

Thermal modelling approach powder bed fusion additive manufacturing

EP4035802 A1 WO2022161657 2022-08-01
https://example.com/patent/EP4035802

Fabrication Palladium-Chromium Alloy Micro-particles

11,311,941 B2 2022-04-26
https://example.com/patent/11311941

Systems methods additive manufacturing heterogeneous porous structures

CA 2936015 C 2021-12-25
https://example.com/patent/CA2936015

Computer-implemented topology optimization model components design-dependent loads

EP4012595 WO2022122229 2022-07-15
https://example.com/patent/EP4012595

Computer-implemented method reducing support structures topology optimized design additive manufacturing

EP4016365 WO2022128361 2022-07-22
https://example.com/patent/EP4016365

Simulation solidification grain structure powder-bed fusion additive

EP4059641A1 WO2022194432A1 2022-09-22
https://example.com/patent/EP4059641

Particle Stream Path, Cross-sectional Size Shape Modification Methods

PCT/CA2021/050358 2021-03-01
https://example.com/patent/PCTCA2021

Method system optimizing process parameters additive manufacturing process

WO2020204883A1 2020-10-10
https://example.com/patent/WO2020204883

Strain Sensor 3D Printing

10,823,626 B2 2020-11-03
https://example.com/patent/10823626

Fabrication Chromium Metal Mixtures Form Core-Shell Nanoparticles

2020/0306835 A1 2020-10-01
https://example.com/patent/2020/0306835

Ink Formulation Chromium-Containing Metallic Micro-particles

2020/0308704 A1 2020-10-01
https://example.com/patent/2020/0308704

Modeling Strain Sensors Complex Substrates

Invention ID=89362295 2019-01-14
https://example.com/patent/89362295

Method apparatus aerosol-based three-dimensional (3D) printing flexible graphene electronic devices

10,400,119 B2 2019-10-10
https://example.com/patent/10400119

Systems methods additive manufacturing heterogeneous porous structures

9,630,249 2017-04-25
https://example.com/patent/9630249

Multi-parameter optical sensor method optical sensor manufacturing

PCT/CA2014/050492 2014-01-01
https://example.com/patent/PCTCA2014

Superstructure fiber Bragg grating sensors embedded metallic structures additive manufacturing

PCT/CA2010/001117 2015-12-22
https://example.com/patent/PCTCA2010

System method intelligent closed-loop control laser cladding [Laser Additive Manufacturing]

# 2504368 2011-10-07
https://example.com/patent/2504368

System method intelligent closed-loop control laser cladding [Laser Additive Manufacturing]

# 7043330 2006-09-01
https://example.com/patent/7043330

Requirements for University of Waterloo

Master Program
Requirements
GPA Requirement
Required:3
IELTS
Listening
Required:6.5
Reading
Required:6.5
Writing
Required:6.5
Speaking
Required:6.5
Overall
Required:7
TOEFL
Listening
Required:22
Reading
Required:22
Writing
Required:22
Speaking
Required:22
Total
Required:90
Prerequisites
Honours Bachelor's degree in Psychology or related field Strong background in Statistics
Application Checklist
  • Transcripts
  • 3 Academic References
  • Statement of Interest
  • Supplementary Information Form
  • Resume/CV
Specialization Notes

Includes fields like Clinical, Cognitive, Developmental, and Industrial/Organizational Psychology.