Portfolio/ Mixers & Grinders/ Premium Domestic Juicer | Industrial Design, Product Development & Injection Mould Engineering
Render
Render 01 — front view
◆ Interactive 3D
Drag to rotateScroll to zoom
View 1Render
View 2Render
View 3Render
View 4Render
View 5Render
View 6Render
Mixers & Grinders

Premium Domestic Juicer | Industrial Design, Product Development & Injection Mould Engineering

Complete Product Development
AMD Techlab delivered the complete product development process—from concept, industrial design, engineering, and manufacturing-ready CAD to production support for successful mass manufacturing.
Premium Industrial Design
The exterior was carefully sculpted with smooth surfaces, refined proportions, and pattern design for enhanced visual appeal, creating a modern product with strong shelf appeal and higher perceived market value.
Precision Engineering & Fitment
Every internal component was engineered, assembled, and validated digitally before production to ensure accurate fitment, reliable operation, and simplified assembly with minimal production issues.
Optimized for Injection Moulding
The product was engineered using Design for Manufacturing (DFM) principles, including optimized wall thickness, draft angles, snap-fit features, rib structures, and tooling considerations for efficient plastic injection moulding.
Mass Production Ready
Complete manufacturing-ready CAD, STEP files, engineering documentation, and production data enabled a smooth transition from product development to large-scale commercial manufacturing.
Start a Project Like This →

The engineering behind it.

This domestic juicer was developed as a complete product engineering project, combining premium industrial design with manufacturing efficiency. The objective was to create a compact appliance that delivers a modern appearance while remaining economical to manufacture at high production volumes. Special attention was given to pattern design, surface detailing, and overall product aesthetics, helping create a premium visual identity that increases perceived product value on retail shelves.

The engineering process began by packaging and validating all internal components before refining the external enclosure. Every interface, mounting feature, and internal clearance was digitally verified to achieve precise fitment, efficient assembly, and reliable long-term performance. Snap-fit mechanisms were carefully engineered to reduce assembly time, minimize fasteners, and simplify servicing and maintenance.

The enclosure and internal components were optimized using Design for Manufacturing (DFM) principles for plastic injection moulding. Wall thickness, draft angles, rib placement, parting-line strategy, and structural reinforcement were refined to improve mouldability while reducing material consumption. The result is a lightweight yet durable product with lower manufacturing costs, reduced noise and vibration, easier cleaning, and production-ready engineering supported by complete CAD models, injection mould design, STEP files, and manufacturing documentation.

01
Draft Angle Analysis
Every face verified for clean ejection.
02
Parting Line Optimisation
Positioned to minimise slider actions and tooling cost.
03
Wall Thickness Mapping
Uniform walls for consistent fill and no sink marks.
04
Ejection & Cooling Layout
Ejector and cooling-channel strategy defined for the toolroom.

Got a product like this?

Send us your concept or sketch. We'll tell you exactly what it takes to get it from design to a mould that ships.

Start a Project