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Dr. Zahran Al-Kamyani

For the first time in Udemy, you will learn about Fiber Reinforced Concrete (FRC). One of the most important topic in the field of construction engineering.

Do you know that cracking of concrete is inevitable and at the same time civil and structural engineers are spending much time and efforts to control this phenomenon. One of the best solutions, nowadays, is the use of Fiber Reinforced Concrete (FRC).

In this course you are going to learn about Fibre / Fiber Reinforced Concrete (FRC) incorporating both metallic and non-metallic fibres. By the end of the course you are expected to:

Read more

For the first time in Udemy, you will learn about Fiber Reinforced Concrete (FRC). One of the most important topic in the field of construction engineering.

Do you know that cracking of concrete is inevitable and at the same time civil and structural engineers are spending much time and efforts to control this phenomenon. One of the best solutions, nowadays, is the use of Fiber Reinforced Concrete (FRC).

In this course you are going to learn about Fibre / Fiber Reinforced Concrete (FRC) incorporating both metallic and non-metallic fibres. By the end of the course you are expected to:

  • Know different types of fibers and their properties

  • Conducting flexural analyse of FRC elements

  • Become a designer and being able to design structural members made of FRC

  • Understand durability and sustainability of structures incorporating fibres

Course teaching will be based on explaining the theoretical part and then illustrating numerical or practical examples. To enhance and secure a better understanding, some practical images from civil engineering field will be shown and students will get a copy of Excel analysis spreadsheets. In addition to the online quizzes, students will get some exercises to solve on their own time.

Join the course and gain the cognition and knowledge to become a structural designer and analyser of FRC elements.

Enroll now

What's inside

Syllabus

Define fibre reinforced concrete (FRC), distinguish between different types of fibres and understand the uses of FRC
Introduction to FRC
Pros and Cons
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Test a learning outcome from the section

Test a learning outcome

Contribution of fibres in crack width control

Traffic lights

Read about what's good
what should give you pause
and possible dealbreakers
Explores the use of fiber reinforced concrete, which is a solution to control cracking, a common challenge in civil and structural engineering
Covers flexural analysis and design of structural members made of FRC, which are essential skills for structural designers and analysts
Includes practical images from civil engineering fields and Excel analysis spreadsheets, which can enhance understanding and application
Focuses on the design of on-grade slabs and beams without traditional reinforcement, which is a specialized skill in structural engineering
Examines the durability and sustainability aspects of FRC structures, which are increasingly important considerations in modern construction
Requires learners to understand the mechanical behavior of FRC, including tension, compression, and flexure, which may require prior knowledge

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Reviews summary

Comprehensive introduction to frc design

According to learners, this course provides a solid and comprehensive introduction to Fibre Reinforced Concrete (FRC). Students particularly appreciate the balance between theoretical concepts and practical application, praising the clear explanations and numerical examples. Many found the Excel spreadsheets provided to be an invaluable tool for design, enabling them to confidently approach the design of FRC structural members like beams and slabs. While it's seen as an excellent foundation covering different fiber types, mechanical behaviour, durability, and crack control, some note that learners may need to seek supplemental resources for highly advanced topics or specific regional code requirements.
Excellent starting point, not exhaustive.
"Great introduction, but advanced design cases might need further reading or resources."
"It doesn't cover specific regional building codes in detail, which is understandable but noted."
"A good overview, but deep dives into all topics aren't possible in one course."
Covers key aspects of FRC material and use.
"I learned about different fiber types and their properties in detail."
"Durability and sustainability aspects were well covered, which is crucial."
"Gave a good introduction to mechanical behavior and crack control with fibers."
Provides a strong basis in FRC principles.
"This course gave me a solid understanding of FRC."
"It's an excellent starting point for anyone new to FRC in structural engineering."
"I feel prepared to explore more advanced topics in FRC applications."
Balances theory with practical examples.
"The instructor explains complex topics clearly and concisely."
"I liked how theory was followed by numerical examples; it really helped."
"The mix of theoretical and practical was perfect for understanding the concepts."
Focuses on real-world FRC design.
"The Excel spreadsheets provided are incredibly useful for design."
"I can now confidently design FRC beams and slabs after taking this course."
"The hands-on design examples made the theory click and feel applicable."

Activities

Be better prepared before your course. Deepen your understanding during and after it. Supplement your coursework and achieve mastery of the topics covered in Fibre Reinforced Concrete (FRC) with these activities:
Review Concrete Mechanics
Refresh your understanding of concrete mechanics to better grasp the behavior of FRC.
Browse courses on Concrete
Show steps
  • Review stress-strain relationships for concrete.
  • Study the failure modes of concrete under different loading conditions.
Review 'Properties of Concrete' by A.M. Neville
Gain a deeper understanding of concrete properties, which is essential for understanding FRC.
View Structural Analysis on Amazon
Show steps
  • Read chapters related to concrete composition and mechanical properties.
  • Take notes on key concepts and definitions.
Follow Online Tutorials on Flexural Analysis
Practice flexural analysis techniques to prepare for the FRC design aspects of the course.
Show steps
  • Search for online tutorials on flexural analysis of beams.
  • Work through example problems step-by-step.
  • Compare different methods and approaches.
Four other activities
Expand to see all activities and additional details
Show all seven activities
Solve Flexural Analysis Problems
Reinforce your understanding of flexural analysis through repetitive problem-solving.
Show steps
  • Find practice problems on flexural analysis of concrete beams.
  • Solve each problem independently, showing all steps.
  • Check your answers against solutions or examples.
FRC Mix Design Project
Apply your knowledge by designing an FRC mix for a specific application.
Show steps
  • Define the desired properties of the FRC mix.
  • Select appropriate fiber type and content.
  • Calculate the required proportions of each ingredient.
  • Document your design process and rationale.
Create a Presentation on FRC Durability
Deepen your understanding of FRC durability by researching and presenting on the topic.
Show steps
  • Research the factors affecting FRC durability.
  • Organize your findings into a presentation format.
  • Include visuals and examples to illustrate key points.
Review 'Fibre Reinforcements for Concrete Structures' by V. Ramakrishnan
Expand your knowledge of different fiber types and their applications in concrete structures.
View Melania on Amazon
Show steps
  • Read chapters related to fiber properties and performance.
  • Compare and contrast different fiber types.
  • Analyze case studies of FRC applications.

Career center

Learners who complete Fibre Reinforced Concrete (FRC) will develop knowledge and skills that may be useful to these careers:
Structural Engineer
A structural engineer analyzes, designs, and oversees the construction of buildings and infrastructure. The course on Fibre Reinforced Concrete (FRC) directly benefits a structural engineer by providing in-depth knowledge of FRC's properties, behavior, and design applications which helps build a foundation for designing structural members made of FRC. You will learn flexural analysis of FRC elements, design beams and slabs, and understand the durability and sustainability aspects, all of which are crucial for ensuring the safety and longevity of structures. Engineers will be able to apply the principles and Excel analysis spreadsheets from this course to real-world projects. This course helps control crack widths in reinforced concrete structures using steel fibres.
Academic
Academics conduct research and teach in higher education institutions. A course on Fibre Reinforced Concrete (FRC) helps them stay current with advancements in construction materials and methods. You can then integrate this knowledge into your lectures and research projects. Academics can leverage this course by understanding the properties, behavior, and design of FRC, to provide students with practical insights and real-world applications. You can enhance your understanding by examining the flexural analysis of FRC elements and learn methods to help with the design of structural members made of FRC.
Consultant
Consultants provide expert advice and guidance to clients on specific projects. The Fibre Reinforced Concrete (FRC) course arms them with the specialized knowledge to advise clients on the use of FRC in construction projects. Consultants can apply the principles and Excel analysis spreadsheets from this course to real-world projects. You will understand the importance of fibres in long-term health of FRC. Consultants benefit from this course by learning flexural analysis of FRC elements, which helps with designing structural members made of FRC.
Concrete Technologist
A concrete technologist specializes in the science and application of concrete, focusing on its composition, testing, and performance. This course on Fibre Reinforced Concrete (FRC) directly benefits a concrete technologist by providing specialized knowledge on FRC, its properties, and its uses. The properties of fresh FRC is thoroughly explored. The technologist will gain insight to help understand durability and sustainability of structures incorporating fibres. You will understand the mechanical behavior of FRC including tension, compression and flexure. This knowledge is essential for developing and implementing advanced concrete mixes for various construction applications.
Sustainability Consultant
Sustainability consultants advise organizations on how to reduce their environmental impact and promote sustainable practices. The Fibre Reinforced Concrete (FRC) course helps them assess and promote the use of FRC as a sustainable building material. You will understand the importance of fibres in long-term health of FRC. Consultants can leverage this course by understanding the properties, behavior, and design of FRC. You will understand durability and sustainability of structures incorporating fibres. This helps control crack widths in reinforced concrete structures using steel fibres.
Materials Engineer
A materials engineer researches, develops, and tests materials used in a variety of products and structures. For a materials engineer, the Fibre Reinforced Concrete (FRC) course is helpful as it provides a deep understanding of FRC's composition, mechanical behavior, and durability. You will understand the importance of fibres in long-term health of FRC. This course covers the different types of fibers and their properties, enabling you to make informed decisions about material selection and design. The engineer will gain knowledge on sustainability of FRC, and how to control of crack widths in reinforced concrete structures using steel fibres.
Civil Engineer
A civil engineer plans, designs, and supervises the construction and maintenance of infrastructure projects. The Fibre Reinforced Concrete (FRC) course is directly applicable to a civil engineer's work, providing essential knowledge about the uses of FRC in modern construction. You will gain expertise in flexural analysis, design of structural members using FRC, and understanding of durability and sustainability, all of which are critical for constructing resilient and long-lasting infrastructure. This course helps control crack widths in reinforced concrete structures using steel fibres. Civil engineers will be able to apply the principles and Excel analysis spreadsheets from this course to real-world projects.
Project Manager
Project managers oversee projects from initiation to completion, ensuring they meet objectives and timelines. The Fibre Reinforced Concrete (FRC) course provides valuable insights into the properties and behavior of the material which will help with the decision making process. The course touches on fiber types and their respective properties. You will understand durability and sustainability of structures incorporating fibres. Project managers will learn about the mechanical behavior of FRC including tension, compression and flexure. Project managers will be able to apply the principles from this course to real-world projects.
Construction Supervisor
Construction supervisors oversee daily construction activities, to ensure work is performed according to plans and specifications. The Fibre Reinforced Concrete (FRC) course is helpful as it provides them with a better understanding of the properties and uses of FRC. This course helps improve knowledge of compressive and tensile strength. The course touches on fiber types and their respective properties. This course helps control crack widths in reinforced concrete structures using steel fibres.
Construction Manager
A construction manager oversees construction projects, ensuring they are completed on time and within budget. The Fibre Reinforced Concrete (FRC) course may be useful by providing insights into the properties and applications of FRC. You will learn about different types of fibers and their properties which will help you make informed decisions during the construction process. This course provides an understanding of durability and sustainability. Construction managers will be able to apply the principles from this course to real-world projects.
Geotechnical Engineer
A geotechnical engineer investigates subsurface conditions and materials to assess the risk of earthworks and foundations. The Fibre Reinforced Concrete (FRC) course may be useful to a geotechnical engineer, particularly in projects involving ground stabilization and foundation design. You will understand the mechanical behaviour of FRC including tension, compression and flexure. This course will benefit you by providing knowledge of the durability and long-term performance of FRC in various environmental conditions. This course helps control crack widths in reinforced concrete structures using steel fibres.
Architect
An architect designs buildings and other structures, focusing on both aesthetics and functionality. Architects will likely find this course's lessons on Fiber Reinforced Concrete (FRC) to be useful as it provides information on the properties and applications of FRC. The course covers different types of fibers and their properties, and illustrates numerical or practical examples. Architects will benefit by gaining insights into how to incorporate FRC in architectural designs to enhance structural integrity and aesthetic appeal. You will understand durability and sustainability of structures incorporating fibres. Architects will find the Excel analysis spreadsheets useful.
Quality Control Engineer
A quality control engineer ensures that products and processes meet certain standards of quality, which is why the Fibre Reinforced Concrete (FRC) course may be helpful as it provides knowledge on the properties, testing, and performance of FRC. You will benefit by understanding the mechanical behavior of FRC including tension, compression and flexure. The course covers durability and sustainability, essential factors in assessing the long-term quality of concrete structures. This course helps Reinforced Concrete with Longitudinal Bars and Fibre.
Researcher
A materials researcher investigates and experiments with new materials, and this Fiber Reinforced Concrete (FRC) course may be useful as it provides in-depth knowledge of FRC. The researcher will benefit by understanding durability and sustainability of structures incorporating fibres. You will learn about different types of fibers and their properties. Researchers will gain a strong foundation in the mechanical behavior, and design considerations of FRC. The course will provide you with an understanding of uses of FRC.
Estimator
An estimator is involved in the calculation of the costs of a project. The course may be useful for cost estimation in projects involving fibre reinforced concrete. Estimators need to understand the design of FRC slab on grade, and the design of beams. This course provides insight on the properties of fresh FRC, and may be useful to learn more about fiber reinforced concrete for any project that involves it.

Reading list

We've selected two books that we think will supplement your learning. Use these to develop background knowledge, enrich your coursework, and gain a deeper understanding of the topics covered in Fibre Reinforced Concrete (FRC).
Comprehensive resource on the properties of concrete, covering its composition, behavior, and durability. It provides a strong foundation for understanding FRC by detailing the characteristics of the base material. This book is commonly used as a textbook in civil engineering programs. It is valuable as a reference for understanding the underlying principles of concrete behavior.

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