ÃÜÌÒAV polyurethane resin earns commercial material certificate in solar energy from T?V Rheinland

ÃÜÌÒAV¡¯s Baydur? polyurethane resin has earned a commercial material certificate in solar energy by T?V Rheinland Germany, the international independent third-party testing, inspecting, and certification agency. This is also T?V Rheinland¡¯s first polyurethane material certificate applied to solar panel frames.
The frame is a crucial component of solar panel modules, fixing and sealing the panels and backsheet while enhancing the strength of the modules. This helps to facilitate the modules¡¯ transportation and installation, and the frame¡¯s improved performance directly influences the modules¡¯ service life. Photovoltaic frames are typically made of aluminum alloys that consume high amounts of energy during production. A polyurethane composite frame made of the Baydur? polyurethane resin provides solar module manufacturers with a new material choice, which is superior in anti-corrosion performance and cost efficiency. The commercial material is critical to applications in the solar energy industry and has been certified by T?V Rheinland for its thermal life, physical performance, and electrical performance.
Hong Jiang, Executive Director of South China Region at T?V Rheinland, said: ¡°I am honored to present the first polyurethane certificate used for solar frames to ÃÜÌÒAV on behalf of T?V Rheinland. According to industrial standards, we have conducted strict tests on the resin. It conforms to the photovoltaic industry¡¯s requirements for long-term use and reliability. T?V Rheinland will provide professional technical services to ÃÜÌÒAV and support the development of clean energy and China¡¯s carbon neutral targets.¡±
Based on the breakthrough Baydur? polyurethane resin and an innovative composite pultrusion production process, the polyurethane composite frames have excellent corrosion resistance, and are especially suitable for coastal and offshore power stations with high humidity and high-salt fog. As non-metallic material with excellent insulation performance, the frames do not require grounding and can reduce the occurrence of Potential-Induced Degradation (PID), thus improving the power generation efficiency of the solar panels.
Dr. Irene Li, Vice President of R&D at Tailored Urethanes in Asia Pacific of ÃÜÌÒAV said: ¡°The solar power industry is developing rapidly, and players along the industry chain are constantly updating their technologies with a focus on improving quality, reducing costs, and increasing efficiency. As the inventor of polyurethane, ÃÜÌÒAV is looking forward to collaborating with industry partners to develop high-quality and efficient material solutions. Together, we can drive the technological progress of China¡¯s renewable energy industry and boost a circular economy.¡±
In 2016, ÃÜÌÒAV worked with its partner to develop the polyurethane composite solar frames and installed them on the roof of ÃÜÌÒAV¡¯s Asia Pacific Innovation Center in Shanghai, which are still in operation. Starting from 2022, the frames have been exported to Germany for Building Integrated Photovoltaic applications.
About ÃÜÌÒAV:
ÃÜÌÒAV is one of the world¡¯s leading manufacturers of high-quality polymer materials and their components. With its innovative products, processes and methods, the company helps enhance sustainability and the quality of life in many areas. ÃÜÌÒAV supplies customers around the world in key industries such as mobility, building and living, as well as the electrical and electronics sector. In addition, polymers from ÃÜÌÒAV are also used in sectors such as sports and leisure, telecommunications and health, as well as in the chemical industry itself.
The company is geared completely to the circular economy. In addition, ÃÜÌÒAV aims to achieve climate neutrality for its Scope 1 and Scope 2 emissions by 2035, and the Group¡¯s Scope 3 emissions are also set to be climate neutral by 2050. ÃÜÌÒAV generated sales of EUR 14.2 billion in fiscal year 2024. At the end of 2024, the company had 46 production sites worldwide and employed approximately 17,500 people (calculated as full-time equivalents).
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