Materials Science and material processing, part 1

BY
Udemy

Discover the most recent breakthroughs in scientific research in the fields of nanotechnology and materials science.

Mode

Online

Fees

₹ 549 2499

Quick Facts

particular details
Medium of instructions English
Mode of learning Self study
Mode of Delivery Video and Text Based

Course overview

The study of materials, or "materials science," encompasses a wide range of academic disciplines. Materials engineering is the branch of engineering concerned with the creation and improvement of materials and the discovery of their applications in other areas of study and industry. The term "materials paradigm" refers to the body of knowledge that describes the connections between processing and structure and properties. This framework is used to further our knowledge in many fields of study, such as nanotechnology, biomaterials, and metalworking. Forensic science and failure analysis, which looks into the causes of accidents and injuries, rely heavily on materials scientists. Materials Science and material processing, part 1 certification is made available by Udemy to candidates who aspire to learn to understand the evolution of material science.

Materials Science and material processing, part 1 online training includes 3.5 hours of video, 34 downloadable resources, and a digital certificate upon course completion.

Materials Science and material processing, part 1 online classes consisting of history of materials and their structure, deformation, and fracture of materials, fundamentals of theory, technology, and nanomaterials.

The highlights

  • Full Lifetime Access
  • 3.5 Hours of Video
  • 34 Downloadable Resources
  • Access on Mobile and TV
  • Certificate of Completion

Program offerings

  • Online course
  • Learning resources
  • 30-day money-back guarantee
  • Unlimited access

Course and certificate fees

Fees information
₹ 549  ₹2,499
certificate availability

Yes

certificate providing authority

Udemy

What you will learn

Technology skills

Materials Science and material processing, part 1 certification course, the aspirant will acquire knowledge of the terminology, structure, and properties of materials, as well as an accurate grasp of their history. The candidate will increase their understanding of synthetic materials, along with the different kinds of synthetic materials, parameters, and properties of crystal lattices. Individuals will gain knowledge in the areas of crystalline anisotropy, crystallization, plastic deformation, schematic representations, the structure of plastically deformed alloys, and the formation of ductile microcracks in metals. Classification, heat treatment purpose, austenite grain stage, and post-cementation heat treatment scheme will all be explained to the applicant. Nanomaterials for tissue engineering in living organisms and photoluminescence of semiconductor nanoparticles will also be covered, as will the fundamentals and applications of smart materials.

The syllabus

History of materials and their structure

  • Chronology of achievements in materials science in different historical periods
  • History of materials and their structure
  • Materials in the life support of humanity
  • Chronology of achievements in materials science in different historical periods
  • Artificial materials and technologies of making them. Glass making
  • Artificial materials and technologies of making them. Glass making
  • Types, parameters and properties of crystal lattices
  • Types, parameters and properties of crystal lattices
  • Composition and properties of glasses from ancient times to the present day.
  • Modern glass manufacturing technology
  • quasi-isotropy
  • Crystalline anisotropy
  • Polymorphism
  • Crystallization
  • Crystallization
  • Crystallization of a steel ingot
  • spontaneously occurring transformations
  • Defects of the crystal structure
  • Defects of the crystal structure
  • point (zero-dimensional) lattice defects
  • Linear (one-dimensional) defects

Deformation and fracture of materials

  • Plastic deformation of single crystals, polycrystalline metals, and two-phase al
  • Plastic deformation of single crystals, polycrystalline metals, and e.t.
  • Schematic representations of elastoplastic of single crystals.
  • Schematic representations of motion of dislocations in two-phase alloy
  • Structure of plastically deformed alloys at elevated temperatures.
  • Structure of plastically deformed alloys at elevated temperatures.
  • Curve (d-ε) of effective during primary recrystallization of a metal.
  • Strength and plasticity curve
  • Materials science aspects of metal destruction
  • Materials science aspects of metal destruction
  • Formation of ductile microcracks in metals

Fundamentals of the theory and technology of thermal and chemical-thermal treatm

  • Classification and purpose of heat treatment types.
  • Classification and purpose of heat treatment types.
  • Classification of heat treatment types.
  • Diagram of the actual heat treatment.
  • Heat treatment transformations.
  • Heat treatment transformations.
  • Stages of austenite grains formation in pearlite grain
  • Heat treatment to improve service properties.
  • Heat treatment to improve service properties.
  • Description of the diffusion layer microstructure after cementation
  • Description of the heat treatment scheme after cementation

Nanomaterials

  • An Introduction to Smart Materials
  • An Introduction to Smart Materials
  • Fundamentals and Applications of Smart Materials. Part 1
  • Fundamental Principles of Smart Materials
  • Fundamentals and Applications of Smart Materials. Part 2
  • Fundamentals and Applications of Smart Materials
  • A chromic material
  • The Shape-Memory Effect
  • Self-Healing Materials
  • Introduction to Nanomedicine. Classifications and Terms.
  • Introduction to Nanomedicine. Classifications and Terms.
  • Chemical Sensors and Nanosystems
  • Chemical Sensors and Nanosystems
  • Nanomaterials for Living Tissues Engineering
  • Nanomaterials for Living Tissues Engineering
  • Magnetic Particles for Targeted Drug Delivery
  • Surface Coating of Magnetic Nanoparticles
  • Photoluminescence of semiconductor nanoparticles

Instructors

Ms Ilnara Gilyazova

Ms Ilnara Gilyazova
Instructor
KNRTU

Mr Pavel Borisovich Shibaev
Instructor
Freelancer

Mr Vladimir Anatolievich Morozov

Mr Vladimir Anatolievich Morozov
Researcher
Freelancer

Mr Farid Iskhakovich Murataev

Mr Farid Iskhakovich Murataev
Instructor
Freelancer

B.E /B.Tech

Mr Alexey Belyaev

Mr Alexey Belyaev
Senior Lecturer
KNRTU

Other Bachelors, Ph.D

Ms Anastasia Grigorieva

Ms Anastasia Grigorieva
Associate Professor
Freelancer

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