Photovoltaic panel frames
Fiberglass-reinforced polyurethane composite photovoltaic panel frames: An innovative and high-performance, low-carbon choice
Fiberglass-reinforced polyurethane composite photovoltaic panel frames: An innovative and high-performance, low-carbon choice
Fiberglass-reinforced polyurethane composite photovoltaic frames are edge protection structures for photovoltaic modules. They are made of polyurethane as the matrix and fiberglass as the reinforcement material through processes such as high-pressure infiltration, extrusion molding, and heat curing. Combining the weather resistance of polyurethane and the high strength of fiberglass, they are a new alternative solution to address the pain points of traditional aluminum frames, such as being heavy, prone to corrosion, and requiring grounding. They have important application value in the fields of lightweight and high-reliability photovoltaic modules.
Thanks to their balanced performance and cost advantages, fiberglass-reinforced polyurethane composite photovoltaic frames are expected to become the mainstream alternative material for photovoltaic frames, providing key support for the green and intelligent transformation of the photovoltaic industry.
Photovoltaic panel frames are the key structures that support and protect the modules. Traditional aluminum alloy frames are facing challenges due to issues such as high energy consumption and easy corrosion. Fiberglass-reinforced polyurethane composites (GFRPU) have become an innovative solution for the low-carbon transformation of the photovoltaic industry due to their comprehensive performance advantages.
Environmental adaptability: Good low-temperature toughness and weather resistance make it more reliable for operation in harsh environments such as cold regions with large temperature differences.
Strong weather resistance: Passed tests such as extreme temperature and ultraviolet aging, with better stability than metal frames.
High insulation, no need for grounding wires.
System cost reduction: The lightweight design (lower density than aluminum) reduces the load on the support.
Through material innovation, fiberglass-reinforced polyurethane composite frames have solved the bottlenecks of traditional metal frames in terms of corrosion protection, insulation safety, and carbon footprint, and have gradually expanded from special scenarios (offshore photovoltaics) to full-scenario applications. With the acceleration of process optimization and large-scale production, this technology will continue to promote the upgrading of the photovoltaic industry towards high efficiency, low carbon, and high reliability.

Global door & window material innovation
Characteristics of PU fiberglass composites
| Property | Aluminum Alloy | Steel | R PVC | Fiberglass Reinforced Plastic | Fiberglass Reinforced Pu |
| Density (g/cm³) | 2.7 | 7.8 | 1.4 | 1.8 | 2.2 |
| Bending strength (MPa) | 170-230 | 200~500 | 70~110 | 300~600 | 1442 |
| Bending modulus (GPa) | 68 | 200 | 2.2~5 | 10~22 | 44 |
| Tensile strength (MPa) | 200~300 | <670 | 35~52 | 300~600 | 1220 |
| Tensile modulus (GPa) | 68 | 200 | 2.2~5 | 20~25 | 56.5 |
| Strength-weight ratio (10³N·m/kg) | 74~111 | <86 | 25~37 | 333 | 581 |
| Thermal Conductivity (W/m·K) | >150 | 36~54 | 0.14 | 0.4 | 0.114 |
| Linear expansivity (10-5K-1) | 2.2~2.4 | 1.2 | 6~7 | 0.7~6 | 0.5 |
| Volume resistivity (Ω·m) | 2.9*10-8 | 9.8*10-8 | 1*1011-12 | 1*1012 | 1.5*1012 |
| Corrosion resistance (acid, alkali, salt) | Poor | Poor | Averagely | Excellent | Excellent |
Polyurethane Glass Fiber Composite (PU-GFRP)
Lightweight & High Strength: Density is just 1/6 of steel and 1/2 of aluminum, yet delivers exceptional strength and toughness.
Superior Corrosion Resistance: Excels in harsh environments (salt spray, acids/alkalis, humidity).
High Design Flexibility: Formula adjustments enable customized hardness, elasticity, color, and surface textures to meet specific needs.
Related products
-
PVC Coated Cloth for HVAC Duct Insulation
Contact Us• Place of Origin: Jiangsu China • Brand Name: Pinyi • Certification: ISO 9001, SGS Payment & Shipping Terms: • Minimum Order Quantity: 100 Meter • Packaging Details: Carton packing or pallets
-
Evening View
Contact UsET Station Limited,紮根香港十五載,是大灣區備受推崇的專業貼膜服務商。我們的總部優雅坐落於新界大埔山燕路8號Grand Palisades,交通便利,環境舒適。多年來,我們始終秉持精益求精的工匠精神,為香港本地、內陸及整個大灣區的尊貴客戶提供卓越的貼膜解決方案。
作為行業先驅,我們專營XPELVision家居建築保護膜系列產品,這些高科技膜材不僅能有效隔熱隔紫外線,還能提升居住空間的舒適度與安全性。我們的建築貼膜產品適用於住宅、商業空間、辦公樓等各類建築,可有效降低能源消耗,保護室內傢俱不受陽光損害,同時保持室內私密性。
憑藉十五年專業技術積累與不懈創新,ET Station Limited已發展成為業內享有盛譽的貼膜專家。我們的技師團隊經過嚴格培訓與認證,熟悉各類建築結構和玻璃特性,能夠提供最適合您需求的貼膜方案。我們使用先進的施工工具和技術,確保每一次貼膜都完美無瑕,經久耐用。
憑藉十五年專業技術積累與不懈創新,ET Station Limited已發展成為業內享有盛譽的貼膜專家。我們的技師團隊經過嚴格培訓與認證,熟悉各類建築結構和玻璃特性,能夠提供最適合您需求的貼膜方案。我們使用先進的施工工具和技術,確保每一次貼膜都完美無瑕,經久耐用。 -
Heat-Reflective Glass
Contact UsHeat-reflective glass is produced by coating transparent glass with one or more layers of metal or metal oxide. It reflects a significant portion of solar radiation, reducing indoor heat buildup and minimizing glare while maintaining good daylight transmission. It combines energy efficiency, comfort, and decorative effects, and is widely applied in office buildings, shopping centers, airports, and public facilities.
-
Osterberg Cell Loading Device
Contact UsThe osterberg cell loading device is a kind of static load test for pile foundation, which is suitable for the bearing capacity detection of large-diameter and large-tonnage pile foundation.






Reviews
There are no reviews yet.