Chicago Metallic 46525 14 Inch Muffin Pan Aluminum Makes 24 Cakes - 6/Case
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- Constructed from durable aluminum for uniform heat conduction
- Supports high-volume batch baking with 24 cavities
- Coated surface ensures easy cleaning and sanitation
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The Chicago Metallic 46525 Muffin Pan is a commercial-grade bakeware item designed for high-volume baking applications. Crafted from durable 14-gauge aluminum with a coated surface, it features a spacious overall dimension of 14-1/8" x 20-3/4" to efficiently produce (24) standard 2-3/4" diameter cakes. Each cavity offers a 3.8 oz. capacity, optimized for uniform heat conduction and consistent product outputs in busy foodservice environments. The wire-in rim enhances stability during handling, making it suitable for professional bakeries, catering operations, and high-output kitchens seeking reliable, long-lasting bakeware for multi-batch production.
The muffin pan’s construction from high-quality aluminum ensures excellent heat distribution, maintaining even baking across all cavities. Its coated surface simplifies cleaning, reducing maintenance time in commercial kitchens. Designed with a wire-rim for durability, it withstands frequent handling and washing. The generous capacity and overall size facilitate batch baking, supporting flow efficiency in bakeries or catering service. Made in the USA, it meets industry standards for professional culinary equipment.
Ideal for commercial bakeries, catering kitchens, or high-volume foodservice operations requiring reliable bakeware to produce consistent cupcake and cake batches.
This muffin pan features a construction from coated aluminum material, with a weight of 21 lbs, measuring 14.12" wide by 20.75" deep and 1.37" high. The product maintains a temperature resistance suitable for baking operations, with cleaning compatibility suited for hand washing to preserve coating integrity. Its non-stick surface is PFOA-free, contributing to food safety and ease of maintenance. The dimensions support compatibility with standard commercial baking ovens, and its manufacturing in the USA assures quality and durability. The pan’s design supports consistent heat conduction, critical for uniform product appearance and texture during high-volume production.
A commercial muffin pan is a durable, high-capacity bakeware designed for large-scale baking operations. Constructed from quality aluminum, it provides even heat distribution to ensure uniform baking of muffins, cupcakes, and small cakes. The Chicago Metallic 46525 Muffin Pan, with its 24-cavity configuration measuring 14-1/8" x 20-3/4", is specifically engineered for high-volume foodservice settings such as bakeries, catering facilities, and restaurant kitchens. It is ideal for producing consistent batch quantities efficiently, supporting high throughput and operational reliability in professional baking environments.
Designed for commercial large-scale baking, the Chicago Metallic 46525 provides a robust construction, precise heat distribution, and capacity suited for moderate throughput kitchens. Made specifically for bakery and catering operations, it ensures uniform product quality and workflow efficiency, making it ideal for professional foodservice applications. Chicago Metallic 46525 allows high-volume batch baking with reliable performance and ease of maintenance, supporting busy bakery and catering environments.
Chicago Metallic 46525 stands out with its premium aluminum construction, durable wire rim, and coated non-stick surface, providing longer lifespan and consistent baking performance compared to standard pans. Its large capacity and static design support efficient batch workflows, ideal for professional bakery environments. The product’s made-in-USA quality and precise dimensions optimize integration into high-volume commercial kitchens, enhancing operational convenience and product presentation.
Product Description
Certifications
Certifications
PFOA FREE
This item is manufactured without the use of perfluorooctanoic acid (PFOA), a potentially harmful chemical.
From the manufacturer
