32 Degrees Heat Base Layer Thermal Scoop Neck Women's Long Sleeve T-Shirt NWT

$ 5.81

MPN: TL0FL801ME Sleeve Length: Long Sleeve Size Type: Regular Closure: Pullover Season: Fall, Spring, Summer, Winter Product Line: 32 Degrees Heat Style: Pullover Size: S Vintage: No Brand: 32 Degrees Garment Care: Machine Washable Department: Women Fabric Type: Knit Fit: Regular Country of Origin: Vietnam Pattern: Solid Color: Black Features: All Seasons, Collarless, Moisture Wicking, Quick Dry, Thermal Performance/Activity: CrossFit, Cross Training, Dance, Gym & Training, Hiking, Pilates, Running & Jogging, School, Walking, Yoga Handmade: No Occasion: Activewear, Casual, Travel Personalize: No Type: T-Shirt Model: Cozy Heat Extra Warm Neckline: Scoop Neck Material: Polyester, Spandex Theme: Designer, Sports

Description

32 Degrees Heat Base Layer Thermal Scoop Neck Women's Long Sleeve T-Shirt NWT. Stay warm and comfortable all year round with the 32 Degrees Heat Base Layer Thermal Scoop Neck Women's Long Sleeve T-Shirt. Made from a blend of polyester and spandex, this pullover shirt features a scoop neck and long sleeves, making it perfect for travel, activewear, or casual wear. With features like moisture-wicking and quick-drying technology, this thermal shirt is ideal for various activities like gym training, walking, and even running. The black color and solid pattern add a versatile touch to your wardrobe, while the designer brand ensures quality and performance. Stay warm and comfortable all year round with the 32 Degrees Heat Base Layer Thermal Scoop Neck Women's Long Sleeve T-Shirt. Made from a blend of polyester and spandex, this pullover shirt features a scoop neck and long sleeves, making it perfect for travel, activewear, or casual wear. With features like moisture-wicking and quick-drying technology, this thermal shirt is ideal for various activities like gym training, walking, and even running. The black color and solid pattern add a versatile touch to your wardrobe, while the designer brand ensures quality and performance.