Fiber reinforced plastic (FRP) and glass reinforced plastic (GRP) is the ultimate choice for cable trays. We at ARC are masters in manufacturing GRP and FRP cable trays. Our range of FRP and GRP cable trays is vast and filled with qualities that cable trays should have in order to fulfill the purpose that they are created for.
FRP cable trays are highly resistant to corrosion caused by various environmental factors, such as moisture, chemicals, and atmospheric pollutants. This resistance ensures a longer service life and reduced maintenance costs compared to traditional metallic cable trays, which are susceptible to corrosion.
FRP cable trays are lightweight yet possess excellent strength-to-weight ratios, making them easier to install and handle compared to metallic cable trays of similar strength. This characteristic can also reduce installation costs and enable the use of smaller support structures.
FRP cable trays are non-conductive, which makes them suitable for use in environments where electrical safety is a concern, such as in power plants, substations, and industrial facilities. This property eliminates the need for grounding and reduces the risk of electrical hazards.
FRP cable trays are resistant to fouling, scaling, and buildup, which can reduce the need for frequent cleaning and maintenance. This translates into lower operational costs and fewer disruptions in the cable management system.
FRP cable trays are resistant to a wide range of chemicals, making them suitable for use in chemical plants, laboratories, and other industrial environments where chemical exposure is a concern.
FRP cable trays can be designed to meet fire-resistant specifications, making them suitable for use in areas with high fire risk or where fire safety is a critical concern.
FRP cable trays can be manufactured in a variety of sizes, shapes, and configurations, allowing for customization to meet the specific requirements of cable management projects. They can also be designed to handle various loads and environmental conditions.
FRP cable trays have a smooth surface, which reduces friction and facilitates easier cable pulling and maintenance operations.
FRP cable trays are resistant to environmental factors such as UV radiation, temperature fluctuations, and moisture, making them suitable for both indoor and outdoor installations.
FRP cable trays can be manufactured in various colors, allowing for better integration with the surrounding environment or color-coding for cable management purposes.
Sl. No. | Properties | Longitudinal | Transverse |
---|---|---|---|
1 | Ultimate Tensile Strength, PSI | 30,000 | 7,000 |
2 | Ultimate Compressive Strength, PSI | 30,000 | 15,000 |
3 | Ultimate Flexural Strength, PSI | 30,000 | 10,000 |
4 | Tensile Modulus, PSI × 10^6 | 2.5 | 0.8 |
5 | Compressive Modulus, PSI x 10^6 | 2.5 | 1 |
6 | Flexural Modulus, PSI × 10^6 | 1.6 | 0.8 |
7 | Ultimate Shear Strength, PSI | 5,500 | 5,500 |
8 | Ultimate Bearing Stress, PSI | 30,000 | 30,000 |
9 | Izod Impact Strength, Ft.-Lbs. per inch of notch ASTM D256 | 25 | 4 |
10 | Barcol Hardness | Min 45 | 50 |
Particulars | ||
---|---|---|
1. | Dielectric strength | Axial 30-45 KV/25mm |
2 | Radial 10-15 KV/mm | |
2. | Arc resistance | >120 seconds |
3. | Water Absorption | 0.6% maximum by weight (24 hrs immersion) |
4. | Flame Spread index shall be<=25 and smoke density index=<450 as per ASTME84 Class A | |
5. | Very Low flammability (VO) as per UL94 | |
6. | Anti-Static with surface resistivity between 10^9 and 10^12 ohms as per ASTM D257. | |
7. | Oxygen index shall be minimum 30% as per ASTM-D-2863. | |
8. | UV resistance as per ASTM G154 (For 1000 hours minimum, with tensile strength test which shall not reduce by more than 7% after UV exposure) | |
9. | Resistance to heat and fire as per IEC 60695-2-12 (at 960-degree temperature) |
90° Horizontal Radius Bend | ||
---|---|---|
W(mm) | L(mm) | A(mm) |
152 | 1207 | 854 |
229 | 1314 | 930 |
305 | 1422 | 1006 |
457 | 1638 | 1159 |
610 | 1854 | 1311 |
762 | 2070 | 1464 |
914 | 2286 | 1616 |
90° Horizontal Direct Bend | |
---|---|
W(mm) | A(mm) |
152 | 330 |
229 | 406 |
305 | 483 |
457 | 635 |
610 | 787 |
762 | 940 |
914 | 1092 |
90° Inside Vertical Radius Bend | ||
---|---|---|
W(mm) | A(mm) | L(mm) |
100 | 530 | 749 |
150 | 530 | 749 |
200 | 530 | 749 |
90° Outside Vertical Radius Bend | ||
---|---|---|
W(mm) | A(mm) | L(mm) |
100 | 505 | 714 |
150 | 555 | 786 |
200 | 606 | 857 |
Straight Reducer | |||||||
---|---|---|---|---|---|---|---|
W1(mm) | |||||||
914 | 762 | 610 | 457 | 305 | 229 | ||
W2 (mm) | 152 | 1105 | 1029 | 953 | 876 | 679 | 670 |
229 | 1067 | 991 | 914 | 838 | 670 | – | |
305 | 1029 | 953 | 914 | 679 | – | – | |
457 | 953 | 908 | 679 | – | – | – | |
610 | 908 | 679 | – | – | – | – | |
762 | 679 | – | – | – | – | – | |
L(mm) |
Right or Left Hand Reducer | |||||||
---|---|---|---|---|---|---|---|
W1(mm) | |||||||
914 | 762 | 610 | 457 | 305 | 229 | ||
W2 (mm) | 152 | 1410 | 1175 | 1175 | 940 | 940 | 705 |
229 | 1175 | 1175 | 940 | 940 | 705 | – | |
305 | 1175 | 940 | 940 | 705 | – | – | |
457 | 940 | 940 | 705 | – | – | – | |
610 | 940 | 705 | – | – | – | – | |
762 | 705 | – | – | – | – | – | |
L(mm) |
Horizontal Radius Tee | ||
---|---|---|
W (mm) | A (mm) | L (mm) |
152 | 780 | 1410 |
229 | 850 | 1410 |
305 | 930 | 1410 |
457 | 1080 | 1640 |
610 | 1240 | 1880 |
762 | 1390 | 1880 |
914 | 1540 | 2110 |
Horizontal Radius Cross | ||
---|---|---|
W (mm) | A (mm) | L (mm) |
152 | 780 | 1410 |
229 | 850 | 1410 |
305 | 930 | 1410 |
457 | 1080 | 1640 |
610 | 1240 | 1880 |
762 | 1390 | 1880 |
914 | 1540 | 2110 |
Perforated Cable Tray Model No. | Tray height – H (mm) | Runner width – W (mm) | Thickness – T (mm) |
---|---|---|---|
ARC – PT2A | 50 | 50 | 3.0 |
ARC – PT2B | 50 | 100 | 3.0 |
ARC – PT2C | 50 | 150 | 3.0 |
ARC – PT2D | 50 | 200 | 3.0 |
ARC – PT2E | 50 | 300 | 3.0 |
ARC – PT3A | 80 | 100 | 3.0 |
ARC – PT3B | 80 | 150 | 3.0 |
ARC – PT3C | 80 | 200 | 3.0 |
ARC – PT3D | 80 | 250 | 3.0 |
ARC – PT3E | 80 | 300 | 3.0 |
ARC – PT3F | 80 | 400 | 4.0 |
ARC – PT3G | 80 | 500 | 4.0 |
ARC – PT3H | 80 | 600 | 4.0 |
ARC – PT4A | 110 | 100 | 4.0 |
ARC – PT4B | 110 | 200 | 4.0 |
ARC – PT4C | 110 | 300 | 4.0 |
ARC – PT4D | 110 | 400 | 4.0 |
ARC – PT4E | 110 | 500 | 4.0 |
ARC – PT4A | 110 | 600 | 4.0 |
Perforated Cable Tray Model No. | Load Bearing UDL (Kg/mtr) |
---|---|
ARC – PT2A | 11 |
ARC – PT2B | 15 |
ARC – PT2C | 18 |
ARC – PT2D | 25 |
ARC – PT2E | 30 |
90° Vertical Inside Bend | |
---|---|
W (mm) | A (mm) |
50 | 565 |
75 | 565 |
100 | 565 |
150 | 565 |
200 | 565 |
250 | 568 |
90° Vertical Outside Bend | |
---|---|
W) (mm) | A (mm |
50 | 559 |
75 | 559 |
100 | 559 |
150 | 559 |
200 | 559 |
250 | 559 |
90° Horizontal Bend | |
---|---|
W (mm) | A (mm) |
50 | 610 |
75 | 635 |
100 | 660 |
150 | 711 |
200 | 762 |
250 | 813 |
Horizontal Tee | |
---|---|
W1 (mm) | W2 (mm) |
51 | 51 |
76 | 76 |
102 | 102 |
152 | 152 |
203 | 203 |
255 | 255 |
Horizontal Cross | |
---|---|
W1 (mm) | W2 (mm) |
51 | 51 |
76 | 76 |
102 | 102 |
152 | 152 |
203 | 203 |
255 | 255 |
ARC FRP products come with an in-house test certificate documenting performance, quality, and compliance based on internal testing and evaluations.
DownloadARC FRP products come with the ATIRA test certificate verifying independent assessment of their quality, performance, and adherence to industry standards.
Download