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Asahi Glass (AGC Group)

About Asahi Glass (AGC Group)

Asahi Glass Co., Ltd. (AGC Inc.) was established in 1907 and is headquartered in Tokyo, Japan. It is a global leader in glass, chemicals, and high-performance materials, with a strong presence in the coatings industry through its fluorochemicals, silanes, and specialty additives. AGC’s products enhance weatherability, chemical resistance, and surface performance in architectural, automotive, and industrial coatings. The company emphasizes sustainability through its “AGC Green Transformation (GX)” initiative, targeting carbon neutrality by 2050, eco-friendly product development, and circular manufacturing practices.

Most viewed products

SUNSPHERE® L-121

SUNSPHERE® L-121 by Asahi Glass (AGC Group) is a high performance fine amorphous silica (99%). Acts as a matting agent. It consists of micro-sized spherical multi-porous particles with low specific area. Does not contain crystalline silica. These particles do not cohere and are chemically stable. Exhibits excellent heat resistance and offers a matt finishing. It is used in electronic material paints and coating media for ink-jet printers.

SUNSPHERE® H-53

SUNSPHERE® H-53 by Asahi Glass (AGC Group) is a high performance fine amorphous silica (99%) used as a filler. Exhibits excellent heat resistance and prevents blocking. <br> <ul style="padding-left: 40px;"><li>Provides smooth texture, improves fluidity and absorbs moisture. </li> <li>It consists of micro-sized spherical multi-porous particles with high specific surface area. </li> <li>These particles do not cohere and are chemically stable. </li> <li>SUNSPHERE® H-53 is used in industrial applications like ink jet paper and special electronic material paints. </li</ul>

SUNSPHERE® NP-30

SUNSPHERE® NP-30 by Asahi Glass (AGC Group) is a non-porous, high performance fine amorphous silica (99%). Offers excellent heat resistance. It is a filler for industrial applications like ink jet paper. SUNSPHERE® NP-30 consists of micro-sized spherical multi-porous particles with high specific surface area. These particles do not cohere and are chemically stable.

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