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3. Material Quality The quality of the fiberglass material itself can also affect its corrosion resistance. High-quality fiberglass is typically composed of pure silica sand and is treated with chemical inhibitors to enhance its resistance to corrosion High-quality fiberglass is typically composed of pure silica sand and is treated with chemical inhibitors to enhance its resistance to corrosion High-quality fiberglass is typically composed of pure silica sand and is treated with chemical inhibitors to enhance its resistance to corrosion High-quality fiberglass is typically composed of pure silica sand and is treated with chemical inhibitors to enhance its resistance to corrosionfiberglass duct corrosion resistance. On the other hand, lower-quality fiberglass may contain impurities or lack adequate protection, making it more prone to corrosion.

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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.

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The advent of high-strength, low-alloy (HSLA) steels brought about a significant leap in performance. These alloys offered improved resistance to corrosion, higher yield strength, and better toughness, allowing drill rods to withstand the rigors of deep drilling without failing. Furthermore, heat treatment processes were refined to give the steel additional hardness while retaining its flexibility, ensuring that the rods could bend without breaking as they navigated through twists and turns in the mine shaft.

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