3D Model Punching tool, Prototype part, Pully
including plastics, metals, and composites. Precision: The tool ensures accurate dimensions and tolerances. Assembly Simulation: Engineers can test how components fit together in the prototype. Applications
Designer sayedi1
Design Engineer / CAD engineer
comprehensive technical drawings that serve as blueprints for production and assembly. From dimensions to tolerances, every detail is meticulously documented to facilitate smooth manufacturing and assembly processes
2D CAD Design Services 2D CAD Drafting Services 2D Drawing 2D to 3D Modeling 3D Logo Design 3D Modeling 3D Modeling 3D Models 3D Models of Machine Parts 3D Product Modeling 3D Solid Modeling API Assembly Design Assembly Drawing Services CAD Design CATIA Design Services Catia V5-6 Design Engineering Services Drafting DWG to DGN Conversion Services Engineering Design General CAD Drafting Isometric Drawing Services Mechanical Design Mechanical Drawing Services Mechanical Engineer Mechanical Engineering Part-to-CAD Modeling Reverse Engineering Siemens NX (Unigraphics)
Designer 87kresearch
Patent Holder, Award Winning Mechanical Engineer, Solid Works 2018 Professional, Advanced Multi-axis CNC Programmer (Milling, Mill-Turn, Citizen Swiss), Okuma MB-4000H Multi-Axis Horizontal Milling Center on Site, 3D Design Rendering,
(including sheet metal, injection molded parts and of course precision machined parts with very tight tolerances). I currently own a Okuma MB-4000H Multi-Axis Horizontal Milling Center in which I can complete
2D & 3D Design 2D & 3D Modeling 2D to 3D Conversion Services 3D CAD Rendering 3D Design Services 3D Modeling 3D Rendering Services Aerospace Engineering Assembly Instructions & Drawings Blow Molding Design CAD Design CAD Digitization Services CAD Modeling CAD Vectorization Services CAM CNC Milling Design CNC Programming Concept Design Design & Drafting Gaging & Inspection Tool Design General CAD Drafting High-Speed Machining Industrial Design Industrial Design Services Injection Molding Machine Design Machining Mastercam Mastercam Multiaxis Add-on Material Selection Mechanical Drafting Mechanical Engineer Mechanical Engineering Mold Design Moldflow Analysis Multiaxis Horizontal Mill Programming Multiaxis Mill-Turn Programming Multiaxis Swiss Lathe Programming New Invention Development Open Innovation Packaging Design Patent Drawings PDF to DWG Conversion Product Design Programming Project Management Engineer Prototype Design Prototype Engineering Reverse Engineering Simulation SolidWorks SolidWorks Design Services SolidWorks Motion Analysis SolidWorks Simulation Supply Chain Management
Skill SURFCAM
the finished products that are going to be coming out of your production environment with tighter tolerances. To squeeze the most out of these SURFCAM solutions, however, you’re going to want to hire only
Skill Mechanical Design
elaborated to where you can also decide the types of materials being used, dimensions being built, tolerances of the materials, and even the textures. Computer-aided design (CAD) can be used to create digital
Skill Fixture Design
designed and made in the best way. Their design must be accurate and precise because these small tolerances can lead to a flawless or faulty product in the end. It doesn’t really matter whether you need
Skill Drafting and Detailing
design or can be elaborated to decide the types of materials being used, dimensions being built to, tolerances of the materials, and even the textures. Precision and accuracy are central to good drafting and
Skill Tolerance Analysis
stacks: to calculate the effects of allowed accumulated variations for different dimensions and tolerances - Arithmetic tolerance stacks: deal with the worst-case scenarios, with maximum/minimum values
Service Concept Design
mind Our roster of expert CAD designers and engineers can handle any project, even those with high tolerances and strict mechanical requirements. Different projects have different material and manufacturing
product development concept design
Skill Mechanical CAD Engineering
engineers also use computer-aided engineering (CAE) programs. These allow them to determine engineering tolerances, make virtual assemblies and sub-assemblies, and create detailed visualizations of their components