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BELLA+CANVAS Unisex Sponge Fleece Pullover Hoodie (Dark Grey Heather)

BELLA+CANVAS Unisex Sponge Fleece Pullover Hoodie (Dark Grey Heather)

Fully decorated as low as:
Regular price $48.64 USD
Unit price
per
Blank canvas, endless possibilities.
All-inclusive Pricing
Fast Turnaround
Minimum 48
1. Choose a Color:
Size guide
Decoration (Recommended): Embroidery, Heat Transfer, Pad Printing, Screen Printing
Decoration Placement
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Introducing the BELLA+CANVAS Unisex Sponge Fleece Pullover Hoodie in Dark Grey Heather. At Printwear, we specialize in creating custom apparel and promotional products using a variety of decoration methods. This cozy pullover hoodie features a retail fit, tear-away label, white drawcords, kangaroo pockets, rib knit cuffs and hem, and is made from Airlume combed and ring spun cotton/poly fleece. It's the perfect canvas for your design, whether you prefer screen printing, embroidery, or another method. Available in unisex sizes from XS to 3XL, and it pairs perfectly with our wide selection of decoration methods, including heat seal, pad printing, and laser engraving. With high-quality materials and a fast turnaround time, Printwear is your one-stop shop for turning blank items into branded, personalized promotional products. So, let's create something unique and memorable together!

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Recommended Decoration Types: Embroidery, Heat Transfer, Pad Printing, and Screen Printing

Available Sizes: XS, S, M, L, XL, 2XL, 3XL

Bella + Canvas

Unisex Sponge Fleece Pullover Hoodie

Decoration Methods

Printwear specializes in creating custom apparel and promotional products using a variety of decoration methods. Some of the available methods are:

Embroidery

This method uses stitches to create a design on the item. It's a classic and sophisticated option that's perfect for hats, jackets, polos, and other apparel.

Heat Transfer

This method uses heat to transfer a pre-designed image or logo onto the item. It's a quick and affordable option that works well for simple designs on fabrics like polyester. Team names and numbers are most often applied this way.

Pad Printing

This method uses a silicone pad to transfer ink to uneven surfaces, making it ideal for items like sunglasses, pens, mugs, and keychains.

Screen Printing

This is a popular method that uses a stencil to apply ink to the surface of the item. It's known for its durability and vibrant colors, making it ideal for t-shirts, sweatshirts, tote bags, and other items that will get a lot of wear and tear.

Laser Etching

This method uses a laser to burn a design into the surface of the item, creating a permanent and elegant look. Often used in drinkware and entertaining products.

Direct-to-Garment (DTG)

A modern printing method for applying designs directly onto garments using specialized inkjet printers. Similar to how you might print on paper, but instead of paper, the ink is deposited onto fabric fibers.

Emboss

This method creates a raised impression in the material, adding a tactile element to the design. Oftern used on notebooks and journals.

Deboss

This method creates a sunken impression in the material, adding a tactile element to the design. Often used in silicon drinkware and wristbands.

Dye-Sublimation

A heat transfer process that heat presses sublimation ink printed onto transfer paper onto a product. Ideal for producing vivid full color images. Often used with sports jerseys and athletic apparel.

UV Printing

A digital printing method that uses ultra-violet lights to dry or cure ink as it is printed. While the printer distributes ink on the material, UV lights follow behind, curing the ink instantly.

Rotary Screen Print

This method forces ink through a fine mesh screen with a squeegee onto a rotating product and is ideal for cylindrical objects. Used mainly for drink bottles, cups and mugs.

Supacolor

This method combines the quality of traditional water-based silkscreen techniques with the flexibility and convenience of digital direct to film (DTF) printing to create premium-quality printing especially on difficult to print applications.