Stockpot with Lid 16Lt
3INOX Aluminium Cookware offers an exceptional cooking experience for commercial settings. Crafted from high-quality, heavy-gauge aluminium these pieces promise not to warp under high temperatures, ensuring long-term durability. Their superior heat conduction abilities allow for even and swift heating, making them versatile for various cooking tasks. Suitable for traditional and gas-powered cooking surfaces, this range is designed to meet the rigorous demands of busy commercial kitchens, providing both performance and reliability.
- ALUMINIUM CONSTRUCTION Highly durable and provides efficient heat conductivity
- FLAT COVER Seals the heat in
- DURABLE CONSTRUCTION Withstand daily use without compromising functionality
- EVEN HEAT DISTRIBUTION Ensures consistent cooking temperatures
-
RIVITED HANDLES Secure grip under heavy use
Diameter |
280mm |
Height |
255mm |
Capacity | 16.0Lt |
Gauge | 4mm |

Aluminium construction is lightweight, corrosion-resistant, highly durable and provides efficient heat conductivity.

A flat cover for cookware is a smooth lid designed to fit snugly on top of pots and pans, sealing in heat and moisture during cooking.

Durable construction ensures this range withstands the test of time, weathering daily wear without compromising safety or functionality.

Riveted handles offer enhanced durability and stability, ensuring a secure grip even under heavy use.

Even heat distribution ensures consistent cooking temperatures across the entire surface.