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T. Dasarahalli, Bangalore, India - 560057.
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Hindi Mother Tongue (Native)
English Proficient
RTU 2017
Bachelor of Engineering (B.E.)
T. Dasarahalli, Bangalore, India - 560057
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Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in SolidWorks Training
8
Teaching Experience in detail in SolidWorks Training
Areas of Focus in My SolidWorks Teaching: Introduction to CAD and SolidWorks Interface: Guiding complete beginners through the software environment, explaining toolbars, shortcuts, and customization. Part Modeling: Teaching how to create 3D parts using sketches, features like extrude, revolve, sweep, loft, and shell. Assembly Modeling: Demonstrating how to bring parts together with proper mates and constraints to form functional assemblies. Drawing Generation: Training on creating detailed 2D engineering drawings from 3D models with correct dimensioning, annotations, and views. Parametric Design: Emphasizing design intent and how to make models fully parametric and editable. Advanced Features: Covering surface modeling, design tables, configurations, and multi-body part modeling. Simulation & Analysis: Introducing basic FEA using SolidWorks Simulation tools to analyze stress, displacement, and factor of safety. Project-Based Learning: Assigning real-world design problems or product models to reinforce skills and simulate industry-like tasks.
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in CATIA Training
8
Teaching Experience in detail in CATIA Training
Areas of Focus in My CATIA Teaching: User Interface & Workspace Familiarization: Introducing students to CATIA’s workbenches such as Part Design, Assembly Design, Drafting, Generative Shape Design, and Sheet Metal Design. Sketcher and Part Design Workbenches: Teaching how to create 2D sketches and convert them into 3D models using pad, pocket, shaft, hole, rib, and other solid features. Assembly Design: Demonstrating how to create assemblies using constraints like coincidence, contact, offset, and angle to build functional mechanisms. Drafting: Instructing on how to generate 2D drawings from 3D parts/assemblies with annotations, GD&T symbols, and BOM tables according to industrial standards. Surface Modeling (Generative Shape Design): Covering freeform surface modeling techniques used in automotive and aerospace design, including wireframe creation, multi-section surfaces, and blends. Sheet Metal Design: Teaching how to design parts using flange, cutout, bend, and stamping features, with unfolding for manufacturing. Design Intent and Parametric Modeling: Emphasizing proper constraint management and design tree organization for easy model updates and revisions. Project-Based Learning: Assigning design challenges such as modeling machine components, automotive parts, or product assemblies to simulate professional tasks.
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in Solid Edge 3D Training
8
Teaching Experience in detail in Solid Edge 3D Training
Areas of Focus in My Solid Edge Teaching: User Interface & Environment Setup: Introducing learners to Solid Edge’s intuitive UI, synchronous vs. ordered modeling modes, and how to navigate workspaces efficiently. Part Modeling (Ordered and Synchronous): Teaching how to create 3D solid parts using sketches, extrusions, revolutions, holes, rounds, and other feature tools. Emphasis on both ordered (history-based) and synchronous (direct modeling) paradigms. Assembly Modeling: Guiding students in building complex assemblies using part relationships and constraints, motion simulation, and exploded views. Drafting & Documentation: Showing how to create production-ready 2D drawings from 3D models, with accurate dimensioning, annotations, section views, and drawing standards. Sheet Metal Design: Providing training in specialized sheet metal tools such as contour flange, tab, cutout, and bend operations, along with flat pattern generation for fabrication. Surface Modeling: Introducing techniques to create and manipulate complex surfaces for industrial design and aerodynamic components. Simulation & Analysis: Introducing basic FEA tools within Solid Edge for stress, strain, and modal analysis. Project-Oriented Learning: Assigning practical tasks like product modeling, mechanical systems, or consumer device prototypes to build hands-on proficiency.
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in Autodesk Inventor Training
8
Teaching Experience in detail in Autodesk Inventor Training
Areas of Focus in My Autodesk Inventor Teaching: User Interface & Workflow Orientation: Introducing the Inventor environment, navigation tools, project file setup, and efficient workspace customization. Part Modeling: Teaching 3D parametric modeling using sketches and features such as extrude, revolve, loft, sweep, hole, fillet, and pattern. Emphasis on creating fully constrained sketches and design intent. Assembly Design: Guiding students through bottom-up and top-down assembly methods, applying constraints, joints, and motion simulation to model real-life mechanical mechanisms. Technical Drawings & Documentation: Instructing how to generate detailed 2D drawings from 3D models, including dimensions, annotations, section views, and exploded views suitable for manufacturing and fabrication. Sheet Metal Design: Training on sheet metal part creation using flange, hem, bend, and punch tools, along with flat pattern development and manufacturing standards. Weldments & Frame Generator: Demonstrating tools to create structural frames and welded assemblies using standard profiles. Simulation & Analysis: Introducing students to basic stress analysis and motion study tools integrated in Inventor’s Simulation environment. iLogic & Automation: Covering basic iLogic rules to automate model behavior and create configurable parts and assemblies. Project-Based Learning: Assigning real-world projects such as consumer product design, mechanical tools, or industrial equipment to consolidate modeling, assembly, and documentation skills.
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in Ansys Training
8
Teaching Experience in detail in Ansys Training
Hi! I'm Abhishek Malviya, a passionate ANSYS trainer and senior mechanical design engineer with over 8 years of hands-on experience in finite element analysis (FEA), CAD modeling, and engineering simulations. I specialize in using ANSYS Workbench, Mechanical APDL, Fluent, and CFX to solve real-world engineering problems and optimize product performance.
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in Autocad classes
8
Autocad component
AutoCAD 2D, Fusion 360
Teaching Experience in detail in Autocad classes
Hi, I’m Abhishek Malviya, a professional AutoCAD Mechanical designer and trainer with over 8 of industry and academic experience in mechanical drafting, 2D detailing, and CAD modeling. I specialize in teaching AutoCAD Mechanical—Autodesk’s advanced toolset tailored for mechanical engineers. I’ve worked with Wipro 3D, providing design solutions and delivering CAD training workshops for students and professionals. My approach is hands-on, project-based, and aligned with industry needs, helping learners go from zero to job-ready. Whether you're preparing for a career in manufacturing, product design, or engineering or just want to improve your drafting efficiency, I can help you build strong CAD skills with confidence.
5 out of 5 1 review
Lavanya
CAD Want to learn:CAD 3D
"The CAD training by Abhishek sir was clear, practical, and well-structured. Their expertise and real-world examples made complex concepts easy to understand. The hands-on approach greatly improved my confidence and skills. I truly appreciate the trainer’s guidance and recommend this course to anyone looking to enhance their CAD knowledge. "
Reply by Abhishek
Thank you so much Lavanya.
1. Which classes do you teach?
I teach Ansys, Autocad, Autodesk Inventor, CATIA, Solid Edge 3D and SolidWorks Classes.
2. Do you provide a demo class?
Yes, I provide a free demo class.
3. How many years of experience do you have?
I have been teaching for 8 years.
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in SolidWorks Training
8
Teaching Experience in detail in SolidWorks Training
Areas of Focus in My SolidWorks Teaching: Introduction to CAD and SolidWorks Interface: Guiding complete beginners through the software environment, explaining toolbars, shortcuts, and customization. Part Modeling: Teaching how to create 3D parts using sketches, features like extrude, revolve, sweep, loft, and shell. Assembly Modeling: Demonstrating how to bring parts together with proper mates and constraints to form functional assemblies. Drawing Generation: Training on creating detailed 2D engineering drawings from 3D models with correct dimensioning, annotations, and views. Parametric Design: Emphasizing design intent and how to make models fully parametric and editable. Advanced Features: Covering surface modeling, design tables, configurations, and multi-body part modeling. Simulation & Analysis: Introducing basic FEA using SolidWorks Simulation tools to analyze stress, displacement, and factor of safety. Project-Based Learning: Assigning real-world design problems or product models to reinforce skills and simulate industry-like tasks.
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in CATIA Training
8
Teaching Experience in detail in CATIA Training
Areas of Focus in My CATIA Teaching: User Interface & Workspace Familiarization: Introducing students to CATIA’s workbenches such as Part Design, Assembly Design, Drafting, Generative Shape Design, and Sheet Metal Design. Sketcher and Part Design Workbenches: Teaching how to create 2D sketches and convert them into 3D models using pad, pocket, shaft, hole, rib, and other solid features. Assembly Design: Demonstrating how to create assemblies using constraints like coincidence, contact, offset, and angle to build functional mechanisms. Drafting: Instructing on how to generate 2D drawings from 3D parts/assemblies with annotations, GD&T symbols, and BOM tables according to industrial standards. Surface Modeling (Generative Shape Design): Covering freeform surface modeling techniques used in automotive and aerospace design, including wireframe creation, multi-section surfaces, and blends. Sheet Metal Design: Teaching how to design parts using flange, cutout, bend, and stamping features, with unfolding for manufacturing. Design Intent and Parametric Modeling: Emphasizing proper constraint management and design tree organization for easy model updates and revisions. Project-Based Learning: Assigning design challenges such as modeling machine components, automotive parts, or product assemblies to simulate professional tasks.
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in Solid Edge 3D Training
8
Teaching Experience in detail in Solid Edge 3D Training
Areas of Focus in My Solid Edge Teaching: User Interface & Environment Setup: Introducing learners to Solid Edge’s intuitive UI, synchronous vs. ordered modeling modes, and how to navigate workspaces efficiently. Part Modeling (Ordered and Synchronous): Teaching how to create 3D solid parts using sketches, extrusions, revolutions, holes, rounds, and other feature tools. Emphasis on both ordered (history-based) and synchronous (direct modeling) paradigms. Assembly Modeling: Guiding students in building complex assemblies using part relationships and constraints, motion simulation, and exploded views. Drafting & Documentation: Showing how to create production-ready 2D drawings from 3D models, with accurate dimensioning, annotations, section views, and drawing standards. Sheet Metal Design: Providing training in specialized sheet metal tools such as contour flange, tab, cutout, and bend operations, along with flat pattern generation for fabrication. Surface Modeling: Introducing techniques to create and manipulate complex surfaces for industrial design and aerodynamic components. Simulation & Analysis: Introducing basic FEA tools within Solid Edge for stress, strain, and modal analysis. Project-Oriented Learning: Assigning practical tasks like product modeling, mechanical systems, or consumer device prototypes to build hands-on proficiency.
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in Autodesk Inventor Training
8
Teaching Experience in detail in Autodesk Inventor Training
Areas of Focus in My Autodesk Inventor Teaching: User Interface & Workflow Orientation: Introducing the Inventor environment, navigation tools, project file setup, and efficient workspace customization. Part Modeling: Teaching 3D parametric modeling using sketches and features such as extrude, revolve, loft, sweep, hole, fillet, and pattern. Emphasis on creating fully constrained sketches and design intent. Assembly Design: Guiding students through bottom-up and top-down assembly methods, applying constraints, joints, and motion simulation to model real-life mechanical mechanisms. Technical Drawings & Documentation: Instructing how to generate detailed 2D drawings from 3D models, including dimensions, annotations, section views, and exploded views suitable for manufacturing and fabrication. Sheet Metal Design: Training on sheet metal part creation using flange, hem, bend, and punch tools, along with flat pattern development and manufacturing standards. Weldments & Frame Generator: Demonstrating tools to create structural frames and welded assemblies using standard profiles. Simulation & Analysis: Introducing students to basic stress analysis and motion study tools integrated in Inventor’s Simulation environment. iLogic & Automation: Covering basic iLogic rules to automate model behavior and create configurable parts and assemblies. Project-Based Learning: Assigning real-world projects such as consumer product design, mechanical tools, or industrial equipment to consolidate modeling, assembly, and documentation skills.
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in Ansys Training
8
Teaching Experience in detail in Ansys Training
Hi! I'm Abhishek Malviya, a passionate ANSYS trainer and senior mechanical design engineer with over 8 years of hands-on experience in finite element analysis (FEA), CAD modeling, and engineering simulations. I specialize in using ANSYS Workbench, Mechanical APDL, Fluent, and CFX to solve real-world engineering problems and optimize product performance.
Class Location
Online Classes (Video Call via UrbanPro LIVE)
Student's Home
Tutor's Home
Years of Experience in Autocad classes
8
Autocad component
AutoCAD 2D, Fusion 360
Teaching Experience in detail in Autocad classes
Hi, I’m Abhishek Malviya, a professional AutoCAD Mechanical designer and trainer with over 8 of industry and academic experience in mechanical drafting, 2D detailing, and CAD modeling. I specialize in teaching AutoCAD Mechanical—Autodesk’s advanced toolset tailored for mechanical engineers. I’ve worked with Wipro 3D, providing design solutions and delivering CAD training workshops for students and professionals. My approach is hands-on, project-based, and aligned with industry needs, helping learners go from zero to job-ready. Whether you're preparing for a career in manufacturing, product design, or engineering or just want to improve your drafting efficiency, I can help you build strong CAD skills with confidence.
5 out of 5 1 review
Lavanya
CAD Want to learn:CAD 3D
"The CAD training by Abhishek sir was clear, practical, and well-structured. Their expertise and real-world examples made complex concepts easy to understand. The hands-on approach greatly improved my confidence and skills. I truly appreciate the trainer’s guidance and recommend this course to anyone looking to enhance their CAD knowledge. "
Reply by Abhishek
Thank you so much Lavanya.
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