• Empowering the Future

    with High-Performance Composite Materials

    Wells Advanced Materials (Shanghai) Co., Ltd. (WAM) has been committed to green, sustainable development since its inception, focusing on the research and development of high-performance composite materials. We prioritize technological innovation and superior quality as the cornerstone of our operations, providing our clients with premium and efficient new material solutions.


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        • TARGET MARKET



          • In 2023, TEF Composite, a wholly-owned subsidiary of WAM, launched the "Rooftop Photovoltaic Power Generation Project." This initiative involves installing a photovoltaic system that operates on a "self-generated, surplus-to-grid" model, enabling partial self-sufficiency in factory energy supply and significantly reducing our carbon footprint.


          • Equivalent green plant
            0.00
            trees
          • CO2 Emissions Reduction
            0.00
            t
          • Standard coal savings
            0.00
            t
          • Explanation: The above data is converted proportionally based on the real-time power generation situation of photovoltaic power generation projects

            In 2023, TEF Composite, a wholly-owned subsidiary of WAM, launched the "Rooftop Photovoltaic Power Generation Project." This initiative involves installing a photovoltaic system that operates on a "self-generated, surplus-to-grid" model, enabling partial self-sufficiency in factory energy supply and significantly reducing our carbon footprint.


          • equivalent green plant
            0.00
            trees
          • CO2 Emissions Reduction
            0.00
            t
          • Standard coal savings
            0.00
            t
          • Explanation: The above data is converted proportionally based on the real-time power generation situation of photovoltaic power generation projects


            In 2023, TEF Composite, a wholly-owned subsidiary of WAM, launched the "Rooftop Photovoltaic Power Generation Project." This initiative involves installing a photovoltaic system that operates on a "self-generated, surplus-to-grid" model, enabling partial self-sufficiency in factory energy supply and significantly reducing our carbon footprint.


          • equivalent green plant
            0.00
            trees
          • CO2 Emissions Reduction
            0.00
            t
          • Standard coal savings
            0.00
            t
          • Explanation: The above data is converted proportionally based on the real-time power generation situation of photovoltaic power generation projects

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