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Raw materials
Cross-linked polyethylene solar photovoltaic cable compounds |
| Model | Material A: Material B | Product Name | Use |
| PFXBS95548GW | 25: 10 | Low-smoke zero halogen, silane-crosslinked, polyolefin insulation material for photovoltaic cables | Photovoltaic cable insulation |
| PFXBK95866GW | 90: 10 | Low-smoke zero halogen, silane-crosslinked, flame-retardant polyolefin sheath material for photovoltaic cables | Photovoltaic cable sheath layer |
Silane self-cross-linking type. This series of products meets the relevant environmental protection requirements such as ROHs and REZCH, and the material performance meets the standard requirements of EN50618, IEC62930, and 2PFG1169, and is suitable for the production of insulation and sheathing of solar photovoltaic cables.
·Solution 2: UL+IEN/EN irradiation cross-linked flame-retardant polyolefin cable material for photovoltaic cables
This series of products meets the standard requirements of EN50618, 2PFG1169, and IEC62930, and is suitable for the production of sheathing and insulation layers of solar photovoltaic cables. Irradiation cross-linking type.
·Solution 3: Irradiation cross-linked waterproof photovoltaic cable material
This series of products is suitable for photovoltaic cable insulation materials that meet the waterproof performance indicators in EN 50618: 2014, IEC 62930, and 2PFG2750. Irradiation cross-linking type.
·Solution 4: UL American Standard Irradiation Cross-linked Photovoltaic Sheath Material
This series of products is applicable to the standard requirements of American Standard UL4703 and UL1277, and is suitable for the production of sheath and insulation layers of solar photovoltaic cables. Irradiation cross-linked type.
The physical properties of the above materials can be found in the product catalog of Angreen New Materials (click to enter the company's official website to download)
The remaining solutions can be customized according to the specific requirements of customers
Due to the particularity of its cross-linking method, self-cross-linking low-smoke halogen-free flame-retardant polyolefin cable materials have certain differences in production, client use and testing, and irradiation cross-linked low-smoke halogen-free flame-retardant polyolefins. Attention should be paid to the production process and testing process.
The vigorous development of the photovoltaic industry has led to the leapfrog development of the photovoltaic cable industry. Silane cross-linked low-smoke halogen-free flame-retardant polyolefin cable materials will gradually replace traditional cable materials with environmentally friendly products due to their excellent electrical and physical properties.
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