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​New Energy Die-cutting and Forming Automation Solutions

With the development of the times, electronic products are constantly innovating and becoming more diversified. With the gradual penetration of applications such as large-screen televisions, large-screen smartphones, new energy, and smart homes, there has been a wave of demand for large-sized and large-tonnage die-cut products.

[1] New Energy Industry: This includes products used in the new energy automotive power battery modules, such as mica sheets, insulation, packaging, and other components, as well as solar protection films and solar protection panels.

[2] Automotive Parts Industry: Various interior and exterior decorations and components of automobiles require a large number of die-cut tapes for fixation and assistance. For example, 3M double-sided tape can be die-cut into various applications. Additionally, in the transportation and rail industries, there is a need for waterproofing and shock-proofing solutions.

[3] 3C Electronics Industry: The fixation of internal parts of smartphones, tablets, digital devices, and other fields involves a wide range of die-cut products. Whether it is double-sided tape, foam adhesive, or acrylic adhesive, they can be die-cut and customized. There is a huge demand for these products in the industrial and electronic fields. Examples include protective films, screens, dust protection for cameras and microphones, and battery labels.

[4] Medical Healthcare Industry: Both medical masks and various medical equipment require die-cut products, such as double-sided adhesive for protective suits.

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New energy molding and forming technologies have played a pivotal role in revolutionizing the field of renewable energy. These cutting-edge techniques have significantly contributed to the development and widespread adoption of clean and sustainable energy solutions.

By utilizing advanced molding and forming processes, new energy technologies such as solar panels and wind turbine blades have become more efficient, durable, and cost-effective. The precise shaping and molding of materials used in these energy systems ensure optimal performance and maximized energy conversion.

In the case of solar panels, the use of innovative molding techniques allows for the creation of highly efficient photovoltaic cells. The precise shaping of these cells optimizes light absorption and energy conversion, resulting in improved solar panel efficiency and increased electricity generation.

Similarly, in wind energy, the molding and forming of turbine blades have led to significant advancements. Advanced manufacturing processes enable the production of lightweight yet robust blades with optimal aerodynamic properties. These engineered blades can harness more wind energy and convert it into electrical power with greater efficiency.

Furthermore, new energy molding and forming technologies enable the creation of customized energy system components. The flexibility of these processes allows for the production of intricate designs and complex shapes that optimize performance and integration into existing infrastructure.

With the help of new energy molding and forming techniques, the renewable energy industry is poised to further expand its reach and impact. These technologies have paved the way for the development of more efficient and sustainable energy solutions that will contribute to a greener and cleaner future for generations to come.

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