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ANSYS Workbench Tutorials Part-VI

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Samanwita Bagg

4:08:35

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  • 1. Leaf Spring.mp4
    11:08
  • 2. Drill Bit.mp4
    09:20
  • 3. Compression Bone Plate.mp4
    08:41
  • 1.1 Link for Material Properties.html
  • 1.2 Link for Model download.html
  • 1. D Shackle.mp4
    11:45
  • 2. D Shackle Pin.mp4
    12:47
  • 3.1 Link for Model.html
  • 3. Leaf Spring.mp4
    07:45
  • 4.1 Link for Downloading Model.html
  • 4. Drill Bit.mp4
    10:48
  • 1.1 Link for Material Properties.html
  • 1.2 Link for Model download.html
  • 1. D Shackle.mp4
    07:11
  • 2. D Shackle Pin.mp4
    10:33
  • 3. Drill Bit.mp4
    07:57
  • 4.1 Link for Model.html
  • 4. Leaf Spring.mp4
    11:17
  • 1.1 Link for Model Download.html
  • 1. Compression Bone Plate.mp4
    08:37
  • 2.1 Link for Model Download.html
  • 2. Drill Bit.mp4
    11:38
  • 1.1 Link for Geometry.html
  • 1. D Shackle.mp4
    10:44
  • 2. D Shackle Pin.mp4
    09:20
  • 3.1 Link for Model.html
  • 3. Leaf Spring.mp4
    08:08
  • 4.1 Link for Model Download.html
  • 4. Drill Bit.mp4
    10:27
  • 1.1 Link for Downloading Model.html
  • 1. Femur Bone Structural Analysis.mp4
    08:32
  • 2.1 Link for Model.html
  • 2. Femur Bone Modal Analysis.mp4
    09:55
  • 3.1 Link for Downloading Model.html
  • 3. Tibia Bone Structural Analysis.mp4
    10:41
  • 4.1 Link for Model.html
  • 4. Tibia Bone Modal Analysis.mp4
    12:17
  • 5. Compression Bone Plate Structural Analysis.mp4
    11:01
  • 6.1 Link for Model Download.html
  • 6. Compression Bone Plate Modal Analysis.mp4
    06:31
  • 7.1 Link for Model Download.html
  • 7. Compression Bone Plate Topology Optimisation.mp4
    16:07
  • 8.1 Link for Model Download from GRABCAD-.html
  • 8. Compression Bone Plate Thermal Analysis.mp4
    05:25
  • 1.1 Link for Geometries created.html
  • 1. Link for Geometries.html
  • Description


    Learn simulation and analysis of various components using ANSYS Workbench

    What You'll Learn?


    • Design in ANSYS Workbench
    • Static Structural Analysis
    • Steady-State Thermal Analysis
    • Modal Analysis
    • Biomedical ANSYS Analysis
    • Transient Thermal Analysis

    Who is this for?


  • Designers
  • Engineering Students(Undergraduate, Master and Ph.D.)
  • Consultants
  • What You Need to Know?


  • Basics knowledge of Engineering subjects
  • Knowledge of numerical method of FEA
  • More details


    Description

    This course is the sixth part of the lecture series on ANSYS Workbench software. It takes you through various modules of ANSYS Workbench like Design in ANSYS Workbench, Static Structural, Steady-State Thermal, Modal and Biomedical  ANSYS Analysis. Various numerical are solved to explain various concepts and features of the software and for practice so that expertise can be gained in handling the software.

    We start with Design in ANSYS Workbench which explains how to draw basic geometry using Design Modeler.

    Second section deals with Static Structural Analysis.  Here we analyze in ANSYS Workbench like D Shackle, D Shackle Pin, Leaf Spring and Drill Bit.

    Third section is all about the Steady-State Thermal Analysis. Various numericals are solved for like D Shackle, D Shackle Pin, Leaf Spring and Drill Bit. 

    Fourth section deals with Transient Thermal Analysis of Drill Bit and Compression Bone Plate.

    Fifth section deals with Modal Analysis of D Shackle, D Shackle Pin, Leaf Spring and Drill Bit. 

    Last section deals with Biomedical ANSYS Analysis. It involves the Static Structural and Modal Analysis of Femur Bone, Tibia Bone and Compression Bone Plate. It also involves the Steady-State Thermal and Topology Optimisation of Compression Bone Plate.

    Basic version of this course is available in the previous part of this series ANSYS Workbench Tutorials. Advanced version of the courses are also available namely, Advanced Structural Analysis, ANSYS Workbench Tutorials Part-II, ANSYS Workbench Tutorials Part-III, ANSYS Workbench Tutorials Part-IV and ANSYS Workbench Tutorials Part-V. Join those course to learn the basic concepts of these modules and more.

    Who this course is for:

    • Designers
    • Engineering Students(Undergraduate, Master and Ph.D.)
    • Consultants

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    Samanwita Bagg
    Samanwita Bagg
    Instructor's Courses
    Hello everyone,My name is Samanwita Bagg. I am a Post Graduate in Mechanical Engineering.  I have a teaching experience of 12 years. I am currently working as an Assistant Professor in an engineering college in India in Mechanical Department. I am currently pursuing Ph.D. (Mechanical). I teach subjects like Strength of Materials, Fluid Mechanics, Finite Element Analysis, Heat Transfer, Dynamics of Machinery and Operations Research. I train students in ANSYS and SOLIDWORKS.
    Students take courses primarily to improve job-related skills.Some courses generate credit toward technical certification. Udemy has made a special effort to attract corporate trainers seeking to create coursework for employees of their company.
    • language english
    • Training sessions 25
    • duration 4:08:35
    • Release Date 2023/12/16