Odour-Adsorbing Mesh Lining for Tennis Dresses: Fabric Specification
This is the specification we issue for tennis dresses when the brief calls for genuine odour control rather than a marketing claim. It is built around Odour-Adsorbing Mesh Lining.
Base construction
bonded knit with inner shorts at 180-230 GSM. The structure is chosen so the built-in short and the chest band is covered by the treated surface, because odour-control chemistry only works where sweat actually reaches it. The sweat zone for tennis dresses is the built-in short and the chest band, which is where the treatment has to sit.
Odour-control system
Odour-Adsorbing Mesh Lining: high surface area mesh with carbon loaded filaments. The mechanism is simple: the lining captures odour molecules at the zone where sweat is produced. This suits polyester mesh constructions, which is what we knit this product from. Every lot is measured against ISO 17299-2 deodorant test before the fabric is released for cutting.

Performance targets
The fabric must reach odour reduction above 80% measured at the sweat zone when tested to ISO 17299-2 deodorant test. The same test is repeated per production lot, and results below the target are rejected rather than negotiated. Cost impact is about 5-8% extra material cost, which is usually recovered through fewer returns across a season.
Comfort and other targets
Odour control must not come at the cost of comfort. Moisture management is checked to AATCC 195, dimensional change to AATCC 135, and hand is approved against a sealed reference sample. Wear trials were run under match play and club training rather than in the laboratory alone.
Care labelling
The label states rinse after training and dry flat. This wording is not decoration: it is the condition under which permanent, because the additive sits inside the fibre was measured, and ignoring it shortens the service life of the finish. The care label states rinse after training and dry flat, and that wording is the condition behind permanent, because the additive sits inside the fibre.