application datasheet

application datasheet

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709.TIX90 - TIXOFILLER - TRASP.ACRILICO 2K LUC.

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PREPARATION OF THE SUBSTRATE:

Carbon fiber: sanding with P.240 - P.320 followed by cleaning with silicone remover D.030 Metal (steel, aluminum, galvanized sheet metal) and plastics: treat with suitable primers

PREPARATION OF THE PRODUCT:

Comp. A: 709.TIX90 100 parts by Volume Comp. B (*): CZ.760 (Standard) 40 parts by Volume CZ.770 (Fast) 40 parts by Volume Alternatively: CZ.711 (Standard) 50 parts by Volume CZ.700 (Slow) 50 parts by Volume Mix component A with stirrer (if possible) until completely homogenized. Possible thixotropic structure of the paint is not an indication of altered quality. The thixotropy index may also differ slightly from batch to batch depending on the storage time elapsed before use. (*) Hardener and thinner should be chosen according to environmental conditions and/or the size of the piece. After catalysis, thin the perfectly mixed mixture with 5-10% of our acrylic thinner D.737 (Standard) or D.727 (Slow). For high cabin temperatures (> 28°C - 30°C) and/or extensive surface applications, we recommend adding to the paint 3% - 5% of retardant 10304R. Also applicable with electrostatic systems; in this case, prefer D.727 (Slow).

TEST QUV PANEL (ASTM G154 cycle 2):

Spray application to a sheet metal with primer and BC/aluminum. Mixture preparation by weight Standard process 709.TIX90 100 CZ.760 40 D.737 10 Baking 10’ A.T. + 1 hour at 60°C Aging specimen 12 days A.T. Total thickness (?) 100 Final gloss (gloss at 60°) 101 +/- 1 Brilliance after 360 hours QUV test 100 +/- 1 ?E after 360 hours QUV test 1,07 CIELab

BUCHHOLZ Hardness Test BH2000 (EN ISO NF 2815-2003):

Mixture preparation by weight Standard process 709.TIX90 100 CZ.760 40

APPLICATION ON THICK GLASS: 150 ? WET

Flash off 20’ at A.T. Baking 1h at 70°C Hardness (BH) after baking 71 BH Hardness (BH) after 1 day 83 BH Hardness (BH) after 7 days 95 Casting Limit (? Wet) 150

XENON TEST (EN ISO 11341:2005):

Spray application to a carbon fiber specimen. Mixture preparation by weight Standard process 709.TIX90 100 CZ.760 40 D.737 10 Baking 10’ A.T. + 1 hour at 70°C Aging specimen 12 days A.T. Total thickness (?) 100 Final gloss (gloss at 60°) 93 +/- 1 Brilliance after 2000 hours XENON TEST 91.5 +/- 0.5 ?E after 2000 hours XENON TEST 0,3 CIELab

PRODUCT SPECIFICATIONS:

TYPE OF PRODUCT

Two-component

APPEARANCE OF THE FILM

Glossy

COLORS

Clear

SPECIFIC WEIGHT

0,99 Kg/l (± 0,05)

SUPPLY VISCOSITY (1)

90" (± 10) FORD 4 at 25°C

DRY RESIDUE (A)

52% (± 2%)

DRYING

Dry dust-free - Print-free: 4-5 hours. 10’ - 15’ at 20°C   Print-free 5 - 6 hours at 20°C   Forced Drying 45’ at 60 - 70°C

RECOMMENDED LAYERS

Two full coats with 10’/15' flash off between the 2 coats (2)

RECOMMENDED THICKNESS

50 - 60 micron dry

THEORETICAL YIELD

9 m2/Lt or Kg at 50 micron dry

POT- LIFE AT 20°C

2 hours. The pot-life decreases at higher temperatures It is possible to raise the baking temperature up to 90°C, thus achieving maximum product hardness and strength. (1) Viscosity values refer to freshly produced paint. During storage this value may increase by as much as several units, this increase depends on the storage time, the temperature conditions of the storage and any temperature changes experienced by the paint during transport. Changes in viscosity up to a maximum of 30% of the initial value are to be considered normal and do not affect the quality of the product in any way. (2) For carbon fiber applications apply two coats and wait 10’ - 15’ at A.T., then bake for 30’ - 40’ at 40°C and then apply another two coats of 709.TIX90. Final cooking of 90' at 90°C follows.

RECOATING:

Wet-on-wet after 15’/20’ flash off or after complete curing after sanding with P.400.

SAFETY REGULATIONS:

Strictly follow the instructions on the labeling and in the safety data sheet.

STORAGE CONDITIONS:

The storage room must be dry and with a temperature between +10°C and +30°C. Rev.: 07/23 The data and information contained in this sheet are the result of our experience and accurate laboratory tests. However, since the painting process represents a set of operations that are beyond our control, they do not therefore guarantee, in any way, the final performance of the cycle.

The data and information contained in this sheet are the result of our experience and accurate tests and laboratory tests.
However, since the painting process is a set of operations that are beyond our control, they therefore do not constitute, in any way any form of guarantee on the final performance of the cycle itself.

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