Zhenshi presents the world's first photovoltaic composite solution at Solarex Istanbul.

Editor:浙江振石新材料股份有限公司 │ Release Time:2025-04-11 

On April 10th, Zhenshi made its debut at Solarex Istanbul in Turkey, taking “lightweight, low-carbon and scenario” as the core theme, and bringing photovoltaic composite material solutions---composite frame, composite bracket, composite backsheet and portable photovoltaic module bezel to the exhibition to show the innovative power of Zhenshi to the global new energy industry. With the core theme of “lightweight and low-carbonization”, Zhenshi presented its photovoltaic composite solutions - composite frames, composite stents, composite backsheets, and portable PV module frames at the exhibition, demonstrating Zhenshi's innovative power to the global new energy industry.


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In Solarex Istanbul, the largest photovoltaic event in Central and Eastern Europe, Zhenshi's booth attracted energy developers, EPC contractors and industry experts from Turkey, Germany, the Middle East and other places.


Four major photovoltaic products to crack the industry difficulties


As the world's first enterprise to realize the application of composite materials in the whole photovoltaic scene, the solutions released by Zhenshi hit the performance bottleneck of traditional metal materials:


Composite frame: redefining structural safety and low-carbon benchmarks


Adopting self-developed high-performance fiber-reinforced composite material, the axial strength is 5 times higher than traditional aluminum frame, the tonnage carbon emission is reduced by 85%, and it has passed 2,000 hours of high-temperature and high-humidity test and -40℃~120℃ extreme temperature cycling verification. Its breakthrough lightweight characteristics (30% weight reduction) can significantly reduce transportation costs, and its unique acid and corrosion resistance extends the life cycle of offshore PV and acid rain-prone area projects to more than 25 years.


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Composite Racking: Enhancing Solar Power Efficiency


Composite mounts made of high-strength glass fibers and resins are mainly used for fixing and supporting solar photovoltaic panels. Compared with traditional metal mounts, they have higher strength, lower weight and better corrosion resistance, thus better adapting to a variety of harsh environmental conditions and ensuring the stable operation of photovoltaic panels.


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Composite Backsheet: Ultimate Flexibility and Lightweighting


Developed based on fiber reinforced technology, the composite backsheet can be bent by 30 degrees or more, which is perfectly suitable for curved buildings, vehicle-mounted photovoltaic and other new scenarios. Compared with traditional glass backsheets, composite backsheets can reduce weight by 60-70%, greatly reducing transportation and installation costs, and their weathering and temperature-resistant properties make them especially suitable for deserts, high altitudes, the sea, acid rain and other regions.


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Portable Photovoltaic Module Bezel: Integrated Design for Extremely Fast Splicing


Innovative products for portable photovoltaic modules, with integrated design, can be spliced by a single person, the weight is reduced by 60% compared with similar products, with good stiffness and strength, can better protect the battery, and become the best choice for energy supply in mobile scenarios such as post-disaster rescue and field operation.


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The booth also intuitively shows the degradation liquid independently developed by Zhenshi, which can decompose the composite frame into recyclable glass fiber, resin and nylon in 1-2 hours, presenting a green ecological chain of the whole life cycle of photovoltaic modules. The breakthrough of this technology signifies that the PV industry is shifting from a single power generation efficiency competition to a whole life cycle value competition.


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Through the three-dimensional innovation of material-structure-scenario, Zhenshi not only solves the problems of anti-corrosion of offshore PV, lightweight of BIPV, and anti-wind and sand resistance of desert power station, but also builds up a technical moat with 16 core patents. According to the third party's estimation, if 30% of the global photovoltaic projects adopt composite material frames, carbon emission can be reduced by about 8 million tons per year, which is equivalent to recreating 46,000 hectares of forests.


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As an energy hub connecting Europe and Asia, Turkey's PV installed capacity is growing at an average annual rate of 45%, and the high weathering characteristics of the company's products and the local Mediterranean climate, the Caspian Sea salt spray environment of the depth of the fit, has attracted a number of Turkish EPC enterprises to discuss cooperation. What is more noteworthy is that the low carbon property of the compound material solution perfectly matches the requirement of EU carbon tariff (CBAM). Zhenshi is writing a new chapter of composite material products in PV industry with “China Solution”.