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PERFORMANCE REQUIREMENTS FOR FIRE SAFETY OF MATERIALS IN U.S. NAVY SHIPS AND SUBMARINES

机译:美国海军舰船和潜艇材料消防安全的性能要求

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Demands for reduced maintenance, reduced manning, and reduced cost are resulting in the need for new and alternative materials for introduction in the fleet. The new materials in many cases tend to be non metallic and organic (combustible) materials. In order to maintain a minimum level of fire safety, the Navy has set performance requirements for new materials in many applications. These include the use of composite materials in ships and submarines. Performance requirements for composites, in most cases, are based on full scale fire tests. Use of composites for structural applications in submarines is covered by MIL-STD-2031. The use of composites aboard US Navy ships for topside applications is now covered by Fire Safety testing criteria. The recommended fire performance criteria contains requirements for fire growth, smoke toxicity, visibility (ISO 9705), fire resistance and structural integrity under fire (UL 1709). When developing new composite systems, it is expensive to repeatedly conduct these typical large scale fire tests to determine the performance of the most recent design. Instead, more cost effective small scale testing is preferable to intermittently evaluate performance. To facilitate the introduction of new and modified fire tolerant materials/systems/designs, and to reduce the financial burden on small business, the US Navy has developed a low cost composite system fire screening protocol which offers the potential of predicting the full scale fire performance. Fire growth potential of new composite systems and designs can be screened by using small-scale test data from cone calorimeter (ASTM E 1354) and Lateral Ignition Flame spread Test (ASTM E 1321) in conjunction with the Composite Fire Hazard Analysis Tool (CFHAT). The small-scale Burn-Through test (2x2 ft.) was shown capable of screening fire resistance performance determined in furnace testing with a UL 1709 fire curve. These screening techniques provide cost-effective approaches for evaluating fire performance of new technologies, which in turn aids in the product development process. Full- scale fire testing is still required before inclusion of products onboard U.S. Navy submarines and surface ships.
机译:减少维护,减少人员配备和降低成本的需求导致需要在船队中引入新的替代材料。在许多情况下,新材料往往是非金属和有机(可燃)材料。为了维持最低的消防安全水平,海军在许多应用中对新材料设定了性能要求。这些包括在船舶和潜艇中使用复合材料。在大多数情况下,复合材料的性能要求基于全面的防火测试。 MIL-STD-2031涵盖了将复合材料用于潜艇的结构应用。消防安全测试标准现已涵盖了在美国海军舰船上将复合材料用于上层应用的情况。推荐的防火性能标准包含对防火,烟毒,能见度(ISO 9705),耐火性和着火结构完整性(UL 1709)的要求。在开发新的复合系统时,重复进行这些典型的大规模火灾测试以确定最新设计的性能是很昂贵的。取而代之的是,最好采用更具成本效益的小规模测试来间歇地评估性能。为了促进新的和改良的耐火材料/系统/设计的引入,并减轻小型企业的财务负担,美国海军开发了一种低成本的复合系统防火检查协议,该协议具有预测全面防火性能的潜力。可以通过结合使用锥形量热仪(ASTM E 1354)和横向点火火焰蔓延测试(ASTM E 1321)的小规模测试数据以及复合火灾隐患分析工具(CFHAT)来筛选新的复合系统和设计的火灾增长潜力。小型燃烧试验(2x2英尺)显示出能够筛选通过UL 1709燃烧曲线在熔炉测试中确定的耐火性能。这些筛选技术为评估新技术的防火性能提供了具有成本效益的方法,从而有助于产品开发过程。在将产品包括在美国海军潜艇和水面舰艇上之前,仍需要进行全面的防火测试。

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