Xeriant's NEXBOARD Composite Panel Advances with High-Temperature Fire Resistance Testing
TL;DR
Xeriant's NEXBOARD offers builders a competitive edge with superior fire resistance and sustainability, potentially reducing insurance costs and meeting stringent regulatory standards.
NEXBOARD integrates nanotechnology with recycled plastic and fiber waste to achieve exceptional fire resistance, withstanding over 2,000°F for 80+ minutes during certification testing.
This eco-friendly composite panel reduces environmental impact by repurposing waste materials while creating safer, more resilient buildings for communities worldwide.
Imagine a construction material made from recycled plastic that can survive a blazing inferno for over an hour while replacing traditional drywall and wood.
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Xeriant Inc. (OTCQB: XERI) has achieved significant milestones in developing its NEXBOARD composite construction panel, with recent internal testing showing promising fire resistance and performance attributes as the company moves toward certification completion. The patent-pending panel, designed to replace conventional materials like drywall and wood, represents a response to growing global demands for safer, more sustainable, and higher-performance building solutions.
In May, Xeriant announced that NEXBOARD's nanotechnology successfully resisted temperatures exceeding 2,000 degrees Fahrenheit for more than 80 minutes during testing. This performance demonstrates the material's potential to enhance fire safety in construction and other industries where thermal resistance is critical. The company's internal testing of samples from recent production runs has continued to show promising results across multiple performance criteria important to both builders and sustainability advocates.
NEXBOARD is constructed primarily from recycled plastic and fiber waste, integrating nanotechnology to achieve exceptional performance characteristics. The material's development comes amid a global push for safer, more sustainable materials that can reduce environmental impact while improving fire resistance, durability, and resilience. This shift is reshaping industries ranging from construction and infrastructure to transportation, industrial manufacturing, and aerospace, where regulators and end users increasingly demand advanced performance alongside environmental responsibility.
The panel's potential applications extend beyond traditional construction to support a wider range of uses where advanced performance and sustainability are becoming essential. As industries face mounting pressure to adopt greener practices and improve safety standards, materials like NEXBOARD could play a crucial role in meeting these dual objectives. The technology's development aligns with broader trends toward circular economy principles and waste reduction in manufacturing processes.
For investors and industry observers, updates relating to XERI are available through the company's newsroom at https://ibn.fm/XERI. The progress of NEXBOARD through testing and certification phases represents a significant step toward commercial viability in markets increasingly focused on both performance and environmental impact. As certification processes advance, the material could potentially disrupt traditional building material markets while addressing pressing concerns about fire safety and sustainability in built environments worldwide.
The development of advanced composite materials like NEXBOARD reflects a growing recognition within multiple industries that traditional materials often fail to meet evolving standards for safety, durability, and environmental responsibility. With construction and infrastructure sectors facing increasing regulatory scrutiny and public demand for greener solutions, innovations that successfully balance performance with sustainability could gain substantial market traction. The continued testing and certification progress for NEXBOARD suggests Xeriant is positioning its technology to address these intersecting market needs as industries worldwide seek materials that can withstand extreme conditions while minimizing ecological footprint.
Curated from InvestorBrandNetwork (IBN)

