蒸气阻燃树脂的独有特点 Unique Features of Steam-Resistant Flame Retardant Resin
- khaiel.my

- Jan 22
- 2 min read
亚库斯达 Akusta 的蒸汽阻燃树脂的工艺特点:
Product Features of Akusta's Steam-Resistant Flame Retardant Resin:

化学结合水技术:Akusta 材料在接触火源时会缓慢释放化学结合水,产生水蒸气,从而提供冷却效果,并有效隔离热量。每平方米3毫米厚的薄膜可以释放多达1,860升水蒸气,显著减缓火势蔓延。
热塑性灵活性:Akusta 是一种热塑性树脂材料,意味着它可以通过常见的塑料加工工艺进行处理,如注塑和热成型,使其能够广泛应用于不同的领域。
隔音特性:该材料还具有声学吸音特性,除了防火外,还能有效减小噪音。这是通过聚烯烃和铝氢氧化物、镁氢氧化物等无机成分的结合实现的。
无毒性:当暴露于火源时,Akusta 仅释放二氧化碳(CO2)和水蒸气,这使其在环境安全方面更加优越,避免了传统防火材料的有毒气体排放。
可定制和增强功能:该材料可以通过多层处理与玻璃纤维等其他材料进行增强,提升其耐用性和性能。
这些技术特点使亚库斯达 Akusta 在建筑、电动交通、电子工程等多个行业中,作为一种既安全又灵活的防火解决方案,得到了广泛应用。
Chemically Bound Water Technology: When exposed to fire, Akusta materials slowly release chemically bound water, generating steam to provide a cooling effect and effectively isolate heat. Each square meter of 3mm-thick film can release up to 1,860 liters of steam, significantly slowing the spread of fire.
Thermoplastic Flexibility: Akusta is a thermoplastic resin material, meaning it can be processed using common plastic processing techniques such as injection molding and thermoforming, making it versatile for various applications across different industries.
Sound Insulation Properties: In addition to fire resistance, this material also offers acoustic absorption properties, effectively reducing noise. This is achieved through the combination of polyolefins and inorganic components like aluminum hydroxide and magnesium hydroxide.
Non-Toxicity: When exposed to fire, Akusta only releases carbon dioxide (CO2) and water vapor, making it environmentally safer by avoiding the toxic gas emissions typical of traditional fire-resistant materials.
Customizable and Reinforced Functionality: The material can be enhanced through multi-layer processing and reinforced with materials like fiberglass to improve durability and performance.
These technological features make Akusta an ideal fire protection solution, widely used in industries such as construction, electric transportation, and electronics, offering both safety and flexibility.





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