Design Compact Multifunction Kitchen Slicer
Budget: ₹12,500 – ₹37,500 INR
I am developing a powered food-prep appliance that must fit within 32 × 22 cm and keep a very low profile. The unit will handle slicing, dicing, julienne and shredding through a motor-driven mechanism; therefore the gearing, linkage or cam system you propose has to convert motor torque into reliable cutting force while keeping noise and vibration down.
My priorities are:
• Food-safe construction throughout—every material that can touch food must meet FDA or equivalent standards.
• Removable, reusable blade cassettes that lock in securely yet release quickly for cleaning.
• A rugged frame capable of daily kitchen abuse and repeated dishwasher cycles on the detachable parts.
• Built-in safety interlock so the motor will not engage when the lid or blade module is off.
Deliverables
1. 3D CAD files (STEP/SolidWorks preferred) of the full assembly and each component.
2. Detailed manufacturing drawings with tolerances, material callouts and surface finishes.
3. Gear-train calculations or analysis that justify your chosen ratios and cutting force.
4. A structured BOM for rapid quotation.
5. Optional: FEA or other stress analysis proving durability of high-load parts.
Acceptance criteria
– Entire assembly fits inside the stated 32 × 22 cm envelope and meets the target low height.
– Blades swap in/out without tools in under 10 seconds.
– All food-contact parts pass material compliance check.
– Motor drive achieves consistent slicing, dicing and julienne thicknesses across typical vegetables.
If you have a track record designing consumer kitchen devices or precision gear mechanisms, your insight will be invaluable. I’m ready to begin as soon as we agree on the final scope and timeline.
My priorities are:
• Food-safe construction throughout—every material that can touch food must meet FDA or equivalent standards.
• Removable, reusable blade cassettes that lock in securely yet release quickly for cleaning.
• A rugged frame capable of daily kitchen abuse and repeated dishwasher cycles on the detachable parts.
• Built-in safety interlock so the motor will not engage when the lid or blade module is off.
Deliverables
1. 3D CAD files (STEP/SolidWorks preferred) of the full assembly and each component.
2. Detailed manufacturing drawings with tolerances, material callouts and surface finishes.
3. Gear-train calculations or analysis that justify your chosen ratios and cutting force.
4. A structured BOM for rapid quotation.
5. Optional: FEA or other stress analysis proving durability of high-load parts.
Acceptance criteria
– Entire assembly fits inside the stated 32 × 22 cm envelope and meets the target low height.
– Blades swap in/out without tools in under 10 seconds.
– All food-contact parts pass material compliance check.
– Motor drive achieves consistent slicing, dicing and julienne thicknesses across typical vegetables.
If you have a track record designing consumer kitchen devices or precision gear mechanisms, your insight will be invaluable. I’m ready to begin as soon as we agree on the final scope and timeline.