The POT29 series features our high-capacity 4000ml (approx. 4 liters) aluminum foil bowls, specifically engineered for commercial catering, hot pot delivery, and large-scale food packaging. Measuring 291x263mm with a deep 117mm profile, these robust containers offer exceptional thermal conductivity and structural integrity. A key advantage of the POT series is its color customizability, allowing brands to elevate food presentation with premium coated finishes.
| Model | Top Out (mm) | Top In (mm) | Bottom Out (mm) | Height (mm) | Capacity (ml) |
|---|---|---|---|---|---|
| POT29-4000 | 291x263 | 237x237 | 204x204 | 117 | 4000 |
The POT29 aluminum foil pot provides an elite packaging solution for high-volume food service, specialized hot pot delivery, and premium catering. With a massive 4-liter capacity, this container easily handles large-scale food preparation while maintaining full compliance with FDA, CE, and BRCGS food contact safety standards.
Stand out in the highly competitive food delivery market. Unlike standard silver foil pans, the POT series supports extensive color customization (such as black/gold or festive red coatings). This visual upgrade enhances the consumer dining experience, making it an excellent choice for premium takeout brands, holiday meal sets, and high-end restaurant deliveries.
Engineered to withstand extreme temperature variations, the POT29 can safely transition from blast freezers directly to commercial ovens or open flames. Its high thermal conductivity makes it perfect for portable camping stoves and at-home hot pot setups. Consumers can reheat soups and stews directly in the packaging, offering unparalleled convenience.
Carrying 4 liters of hot soup requires uncompromising mechanical strength. The advanced cold stamping process and heavy-gauge aluminum construction prevent the container from buckling or collapsing. The sturdy rim provides a secure gripping point for kitchen staff and ensures a tight, leak-resistant crimp when sealed with foil lids, minimizing the risk of spills during transit.