Product
The Dassy Tampico short-sleeve T-shirt in marine/yellow combines everyday workwear comfort with high-visibility reflective details, making it suitable for professional environments requiring both practicality and visibility.
Specifications
- Materials: Available in two fabric compositions — standard version: 60% cotton, 40% polyester, approximately 180 g/m²; fluorescent version: 55% cotton, 45% polyester, approximately 170 g/m²
- Design: Round neck with contrast stitching for a clean, durable finish
- Reflective features: Reflective Dassy logo on the sleeve; reflective details at shoulders and sleeves for enhanced visibility
- Printability: Optimised fabric surface ideal for screen printing and personalisation
- Size: XL
- Sold per: Unit (PCE)
- Reference: 740812
- Brand: Dassy
Usage
Worn as a standalone workwear top or base layer, the Tampico T-shirt suits construction, logistics, and industrial settings. Its reflective elements improve wearer visibility in low-light conditions, while the cotton-polyester blend ensures breathability and shape retention throughout the workday.
FAQ
- Is this T-shirt suitable for screen printing? Yes, the fabric composition and surface quality are specifically designed to be ideal for screen printing and custom branding applications.
- What are the reflective features on this T-shirt? The T-shirt features a reflective Dassy logo on the sleeve as well as reflective details positioned at the shoulders and sleeves to improve visibility.
- What fabric is used in the standard version? The standard version is made from 60% cotton and 40% polyester, with a weight of approximately 180 g/m².
- Is there a fluorescent version available? Yes, a fluorescent variant exists, composed of 55% cotton and 45% polyester at approximately 170 g/m², offering enhanced high-visibility properties.
- How should this T-shirt be maintained to preserve reflective details? It is recommended to follow the care label instructions carefully, as high-temperature washing or tumble drying may reduce the effectiveness of reflective elements over time.
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