Women's Daniela Striped Cotton-Blend Cardigan
Ramy Brook
$365.00 70% OFF
$109.49
Product Insights & Style Tips
The Ramy Brook Women's Daniela Striped Cotton-Blend Cardigan carries a distinctly breezy attitude, with its upbeat crimson combo stripes and fluid cotton-blend knit. The wavy stripe pattern is equal parts playful and refined, immediately evoking long weekends at the coast—or a city escape when you need it most. Its lightweight handle, soft viscose mix, and bonded trim add a tactile edge, while the V-neck and subtle tie-front detail keep the silhouette modern and unfussy. A cardigan that skims the body and moves with you, it feels equal parts relaxed and collected, the kind of piece that draws you in with its touch as much as its unapologetic pop of color.
The Daniela cardigan hangs with an effortless drape, settling at the hip and offering just enough coverage through the sleeves without tipping into oversized territory. The tie-front closure lets you choose how much definition you want at the waist—a subtle cinch or left loose for a looser line—ideal for layering over a fitted tank or effortless slip dress. Side pockets are left out, streamlining the shape so it slides easily under trenches or over crisp shirting if you’re desk-bound. This cotton-blend knit transitions with ease from cool spring mornings to late dinner reservations—never fussy, always current. Ramy Brook’s take reflects the ongoing embrace of statement knits that pop, dialing in just the right energy for days that start early and run late.
Materials / Fabrication
- Lightweight cotton blend
- Wavy stripe pattern
- Bonded trim
- V-neck
- Long sleeves
- Front tie closure
- 72% cotton, 28% viscose
- Imported
- Length: About 25" from shoulder to hem (based on size Small)
Recommended Care
- Machine wash cold with like colors to preserve vibrancy and texture.
- Use mild detergent; do not bleach.
- Lay flat to dry to maintain shape and avoid stretching.
- Cool iron if needed, avoiding bonded trim.
- Store folded to keep bond trim and fabric in optimal condition.
