Crossfire Submersible 17" Hybrid Shorts - Oatmeal sold by Billabong
Crossfire Submersible 17" Hybrid Shorts - Oatmeal sold by Billabong product image thumbnail 1Crossfire Submersible 17" Hybrid Shorts - Oatmeal sold by Billabong product image thumbnail 2Crossfire Submersible 17" Hybrid Shorts - Oatmeal sold by Billabong product image thumbnail 3Crossfire Submersible 17" Hybrid Shorts - Oatmeal sold by Billabong product image thumbnail 4Crossfire Submersible 17" Hybrid Shorts - Oatmeal sold by Billabong product image thumbnail 5

Crossfire Submersible 17" Hybrid Shorts - Oatmeal

$63
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Product Description

The Crossfire Submersible 17" hybrid shorts by Billabong seamlessly blend everyday style with amphibious performance. Crafted from a lightweight woven fabric that includes partially recycled materials, these shorts feature a modern above-the-knee fit and quick-dry functionality, making them perfect for both land and water activities. With classic pocketing and clean lines in a versatile Oatmeal colorway, they transition effortlessly from coffee runs to beach dips, ensuring comfort and style all day long. From the brand: From coffee run to quick dip, the Crossfire Submersible 17" is built to handle both. This men’s hybrid short blends everyday chino styling with amphibious performance, featuring a fixed waistband and a 17-inch outseam for a modern, above-the-knee fit. The woven fabric mixes partially recycled polyester with cotton, nylon, and spandex for lightweight comfort, stretch, and quick-dry function when you’re in and out of the water. Finished with classic pocketing and clean lines in a range of core colors, it’s the one pair you can wear sunrise to street to shoreline without changing gear. Featured here in the Oatmeal colorway. Features Fabric: 64% partially recycled polyester, 22% cotton, 8% spandex, 6% nylon woven blend Product type: Amphibian hybrid shorts designed for water-to-street wear Outseam: 17 inches (medium) Waist: Fixed waist Branding: Billabong logo detail Other features: Submersible design transitions from water to land