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After passing the test, fabric was taken for further treatments.
Circular swatches of 4.8 ± 0.1 cm in diameter were cut from the test fabric.
For the ease of identification, all the test fabric samples were coded as shown in Table 1.
It is defined as a ratio of average effective UV irradiance calculated for unprotected skin to the average UV irradiance for skin protected by the test fabric.
All the analyses of test fabric samples were conducted after conditioning the dyed fabrics under the testing atmosphere (temperature 27 ± 2 °C and relative humidity 65±2%2%) for 24 h (Saville 1999).
The time taken to pour 1000 ml of water on the test fabric were determined at the beginning of the study and adjustments were made to provide a flow rate of 1000 ml in 10 s.
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(The Nike on-campus research lab has a walking, sweating dummy to test fabrics).
Table 2 summarizes the details of prepared test fabrics.
The effect of fibre linear density on water absorbency of test fabrics is presented in Fig. 7.
Moisture vapour transmission rate of the test fabrics was determined by moisture vapour transmission cell (MVTR cell) (Grace, Cryovac division).
The test fabrics in this study differed from one another by fabric structure and inherent fabric properties such as mass per unit area and thickness.
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