
Food Processing: Used in food processing facilities due to its corrosion resistant and easy-to-clean properties. USDA/CFIA accepted and anti-microbial formulations provide additional benefits.
FRP Pultruded Grating adalah jenis grating yang dibuat melalui proses assembling produk yang dihasilkan dari produk mesin pultrusi, di mana serat fiber, resin, pigmen dan zat aditif lainnya dicampur dalam sebuah bak kemudian ditarik melalui cetakan untuk membentuk profil yang kuat dan kaku. Material ini menawarkan kekuatan tinggi, stabilitas dimensional, dan ketahanan terhadap korosi serta kondisi lingkungan yang keras. Desainnya yang kokoh dan presisi menjadikan FRP Pultruded Grating sebagai pilihan unggul untuk aplikasi industri yang membutuhkan durabilitas dan performa tinggi.
In addition to its cost and maintenance benefits, fiberglass grating is slip-resistant which makes it a safer option when compared to metal gratings or other types of flooring materials that have a lower friction factor, especially in wet or oily environments. It also has excellent fire resistance properties, with some specialty grating withstanding short-term temperature exposures up to 1700°F. This fire resistance makes it suitable for use in areas where there may be a risk of fire or excessive heat exposure such as industrial manufacturing plants, power plants, or offshore oil platforms.


If you don’t know fiberglass-reinforced grating, this stands for fiberglass-reinforced plastic. It’s considered to be a type of industrial flooring used in many kinds of construction projects.
One of the most significant benefits of fiberglass grating is that it is non-hazardous. This grating is non-corrosive and non-conductive, making it safer for various environments.


The hard carbon aerogel can maintain the super-elasticity in harsh conditions, such as in liquid nitrogen. Based on the fascinating mechanical properties, this hard carbon aerogel has promise in the application of stress sensors with high stability and wide detective range (50 KPa), as well as stretchable or bendable conductors. This approach holds promise to be extended to make other non-carbon based composite nanofibers and provides a promising way of transforming rigid materials into elastic or flexible materials by designing the nanofibrous microstructures.