Designer
riccardos1
Mechanical Design Engineer & 3D CAD Modeler | Fusion 360 Specialist
and technical drawings • Materials engineering: Specialized in corrosion-resistant nickel alloys (Inconel 686) and polycrystalline simulation using NEPER • Mechanical design: Full lifecycle product development
2D to 3D Modeling
3D CAD Design
3D CAD Modeling
3D Furniture Modeling Services
3D Modeling
3D Modeling
3D Models of Machine Parts
3D Printing Design
3D Product Demo
3D Rendering
3D Rendering Services
3D Solid Modeling
Aerospace Design
Aerospace Engineering
Assembly Design
Autodesk Fusion 360
CAD Design
CAD Modeling
CATIA
Concept Design
Corrosion Resistance
Design for Assembly Services
Design Optimization
Exercise Equipment Design
FEA
FEA Analysis
Industrial Design Services
Lighting Fixtures Design
Manufacturing Design
Materials Engineering
Mechanical Design
Mechanical Engineer
Mechanical Engineering
Medical Devices Design
Open Innovation
Packaging Concept Design
Packaging Design
Precision Engineering
Product Design
Product Development
Product Engineering Services
Prototype Design
Rapid Prototyping Services
Simulation
Solid Modeling
Stress Analysis
Structural Analysis
Technical Drawing Services
Tolerance Analysis
Tool Design Services
Designer
shashanks4323
Design Mechanical Engineer professional with SolidWorks experience
In-depth knowledge of metals and polymers, including ABS plastic, aluminum alloys, cobalt chrome, GFRP, Inconel, PEEK, and stainless steel. Additive Manufacturing: Understanding of additive manufacturing methods
2D & 3D Drafting
2D CAD Design Services
2D to 3D Conversion Services
2D to 3D Modeling
3D Printing Design
3D Printing Services
Additive Manufacturing
Aerospace Engineering
ANSYS
ANSYS Workbench
AutoCAD
Autodesk Fusion 360
CAD Design
CNC Programming
Computer Numerical Control
Conceptual Design
Design Engineer
Design for Additive Manufacturing
Drone Design
Electromechanical Design
Electronic Devices
Electronic Enclosures Design
Engineering Design
Fabrication Drawings Services
Manufacturing Drawings
Material Selection
Mechanical CAD Design
Mechanical Design
New Invention Development
Product Development
Sheet Metal Design
SolidWorks
SolidWorks Design Services
SolidWorks Engineering Services
Thermal Management
Topology Optimization
Designer
Dietrich Linde, PE
SolidWorks, 2D & 3D Modeling, and Automation Design Specialist
applications. Dietrich is able to design with a wide variety of materials including alloy steels, aluminum, Inconel and other nickel-based alloys, carbides, and a wide variety of polymers. He has experience with mechanical
2D & 3D Modeling
Autodesk Inventor
Automation Design
CAD Design
CNC Machining
Design Engineer
Design Engineering
Electromechanical Design
FEA
Machine Design
Machining
Manufacturing Design
Manufacturing Drawings
Mechanical Assemblies
Mechanical Design
Mechanical Engineer
Mechanical Engineering
Mechatronics
SolidWorks
Tool Design
Welding
Blog Post
3D Printing With Metals: Making Fully Metal Parts and Products with Additive Manufacturing
therefore needs to be printed in a vacuum, which of course complicates the process somewhat. Inconel: Inconel is a family of nickel-chromium-based superalloys that are resistant to oxidization and corrosion
3D printing
3d printing metal
additive manufacturing
manufacturing materials
product design tips
Blog Post
Selecting Materials for 3D Printing Your New Product or Prototype
inch and ± 0.002”/” after. Available materials include various stainless steels, aluminum, inconel 625 and inconel 718, titanium, and cobalt chrome. The materials have similar strength and welding characteristics
3D printing
3d printing materials
additive manufacturing
manufacturing materials
product design
Blog Post
Why Businesses Should Consider 3D Printing Services and Prototyping for Product Design
filaments are available at the moment, including 316 stainless steel, copper, tool steel, aluminum, and Inconel. RELATED: 6 Ways You Can Use 3D Printing Services to Create a New Prototype Design 3D printing services
3D printing
3d rendering
product design and development
prototype design