PVC composite floor board
A composite floor and decorative board technology, applied in the direction of floor covering, synthetic resin layered products, paper/cardboard layered products, etc., can solve the problem of high formaldehyde content in laminate floors, saving time and cost, comprehensive cost-effectiveness, and cost saving Effect
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Embodiment 1
[0083] Test the surface abrasion resistance of the floor 1
[0084] Take 1 piece of the PVC composite floor (floor 1) of the present invention prepared above, and perform an abrasion resistance test on it according to EN660-2:1999+A1:2003ANDEN 649:2011. The load of each abrasive wheel is (1±0.01) kg, and the sand falling rate is (21±3) g / min.
[0085] Test results: the wear value per 100 revolutions is less than 0.1 grams, and the wear-resistant layer has no obvious damage at 6000 revolutions.
Embodiment 2
[0087] Test the indentation resistance of the floor 1
[0088] According to EN ISO 24343-1:2012, the test sample is placed on a flat surface and a ring loading weight is placed on the test sample. Slowly apply a total force of 500N on the sample surface within 2S. After 150 minutes the applied force is removed and after a further 150 minutes the final thickness of the sample is measured to the nearest 0.01 mm using a suitable instrument.
[0089] Test result: After the above test process, it is measured that the thickness of the PVC composite floor of the present invention is reduced by 0.01 mm.
Embodiment 3
[0091] Test the stability of floor 1
[0092] According to EN ISO 23999:2012, first test the warpage height and size of the sample, then put the sample in an oven with a temperature of (80±2)°C (360±15 minutes), then put the sample at a temperature of (23±2) 2) After at least 24 hours under the conditions of ℃ and relative humidity (50±5)%, record the warped height and size of the sample, and calculate the amount of change.
[0093] Test result: the dimensional change rate of the PVC composite floor of the present invention is 3%
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