Cortec VpCI® 126 Vacuum Bags
Cortec VpCI® 126 Vacuum Bags
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VpCI® 126 Vacuum Bags offer transparent Vapour Phase Corrosion Inhibitor technology with added barrier features for superior corrosion protection in extended storage or challenging shipping conditions.
These bags, suitable for vacuum sealing, are perfect for pre-emptive storage strategies and long-term purchases. Metal components sealed within VpCI® 126 Vacuum Bags benefit from ongoing defence against salt, high humidity, condensation, moisture, aggressive industrial environments, and galvanic corrosion.
VpCI® molecules evaporate within the sealed enclosure, forming a protective molecular film on metal surfaces that remains intact upon opening, allowing immediate utilisation of contents without the need for cleaning.
Packaging & Storage of Vacuum Bags
VpCI® 126 Vacuum Bags come in a range of customised sizes to suit diverse needs. For optimal performance, store them in their original packaging indoors, away from direct sunlight, within the temperature range of 40-100 °F (4-38 °C).
Features
- Provides additional barrier against moisture and oxygen infiltration.
- Compatible with vacuum-packaging machinery.
- Free from amines, phosphates, or halogen-based substances.
- Compliant with commercial standards such as MIL-PRF-22019E(1) and NACE TM0208-2008.
- Conforms to the corrosion protection requirements outlined in the German TL-8135-002 standard.
Benefits
- Provides heightened corrosion protection for extended storage durations.
- Transparent film enables effortless inspection of contents.
- Ideal for consolidating loads and preventing abrasion of small parts during transportation and storage.
- Replaces traditional rust inhibitors like oils and desiccants.
- Application.
- Put the metal parts in the vacuum bags. Seal them with regular vacuum equipment intended for packaging.
Metals Protected
- Stainless Steel.
- Galvanised Steel.
- Brass.
- Carbon Steel.
- Copper.
- Aluminium.
- Cast Iron.
Property |
|
Test Method |
Units |
VpCI®-126Vacuum Bags |
Caliper |
|
ASTM D6988 |
mil |
4.95 |
Breaking Factor |
MD |
ASTM D882-02 |
lbs/in |
21.94 |
CD |
19.14 |
|||
Tensile Strength at Break |
MD |
ASTM D882-02 |
psi |
4875.00 |
CD |
4373.00 |
|||
Elongation at Break |
MD |
ASTM D882-02 |
% |
102.82 |
CD |
116.59 |
|||
Yield Strength |
MD |
ASTM D882-02 |
psi |
4240.48 |
CD |
4200.73 |
|||
Tear Strength |
MD |
ASTM D1922-06A |
mN |
307.20 |
CD |
294.40 |
|||
Dart Drop Impact Resistance |
|
ASTM D1709 -04,Test Method A |
grams |
603.70 |
Puncture Resistance |
Outside |
MIL-STD-3010, TM 2065 |
lbf |
10.87 |
Inside |
10.75 |
|||
Coefficient of Friction |
|
ASTM D1894 |
static |
0.00 |
kinetic |
0.51 |
|||
Water Vapor Transfer Rate (100.4 °F [38 °C], 90% RH) |
|
ASTM F1249 |
g / 100 in2 / 24 hours |
0.0043 |
g / m2 /24 hours |
0.067 |
|||
Oxygen Transfer Rate (73 °F [23 °C], 0% RH) |
|
ASTM D3985 |
cc / 100 in 2/24 hours |
0.003 |
cc / m2 /24 hours |
0.046 |