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    • 1. 发明申请
    • FOAMED GLASS COMPOSITE MATERIAL AND A METHOD FOR USING THE SAME
    • 泡沫玻璃复合材料及其使用方法
    • US20150336846A1
    • 2015-11-26
    • US14816522
    • 2015-08-03
    • W. Gene RamseyAndrew Ungerleider
    • Andrew UngerleiderW. Gene Ramsey
    • C04B14/24
    • C04B14/24C04B18/141C04B28/04C04B38/08Y02W30/94C04B20/04
    • An aircraft runway safety area for slowing an aircraft that has overrun a runway, including a brittle, nondeformable material for arresting the travel of an aircraft without catastrophically damaging the aircraft, the nondeformable material being configured to crush upon being contacted by the aircraft to effect arrest, and comprising incompressible material in the form of one or more foamed glass bodies, each respective body having a top surface, a bottom surface and oppositely disposed side surfaces, and a frangible matrix encasing the one or more foamed glass bodies, the frangible matrix fabricated to protect the incompressible material and having a breaking strength sufficient to readily break without subverting the arrestment characteristics of the incompressible material. The frangible matrix is different from the incompressible material.
    • 飞机跑道安全区域,用于减缓超越跑道的飞机,包括一种脆弱的,不可变形的材料,用于阻止飞机的行驶,而不会对飞机造成灾难性的破坏,不可变形材料被配置成粉碎与飞机接触以实现逮捕 ,并且包括一种或多种泡沫玻璃体形式的不可压缩材料,每个各自的主体具有顶表面,底表面和相对设置的侧表面,以及包围一个或多个泡沫玻璃体的易碎基体,所制造的易碎基体 以保护不可压缩材料并具有足以容易地断裂的断裂强度,而不破坏不可压缩材料的阻止特性。 易碎矩阵与不可压缩材料不同。
    • 7. 发明授权
    • Foamed glass composite material and a method of producing same
    • 发泡玻璃复合材料及其制造方法
    • US08171751B1
    • 2012-05-08
    • US12482967
    • 2009-06-11
    • Andrew UngerleiderW. Gene Ramsey
    • Andrew UngerleiderW. Gene Ramsey
    • C03B19/08C03B19/09
    • C04B14/24C04B28/04C04B38/08C04B2111/00603C04B2111/0075Y02W30/94C04B20/008C04B18/141C04B20/04C04B38/0061
    • A method of making a foamed glass composite, including crushing a vitreous precursor material, such as waste glass, frit, metallurgical slag or the like, sizing the crushed vitreous precursor to segregate an amount of crushed particles of a predetermined size and pelletizing the crushed particles. The pellets are preheated and passed through a high-temperature zone to foam the pellets. The foamed pellets are rapidly quenched to a temperature below their dilatometric softening point and then cooled to room temperature. The high temperature zone is at least about 1200° C. and the pellets are preheated to within no more than about 25° C. of their dilatometric softening point. The pellets are quenched to partially or completely avoid annealing and have increased hardness and compressive strength as a consequence, as well as a preferred failure mode under compression and torsional loads of crushing/shattering.
    • 一种制造泡沫玻璃复合材料的方法,包括粉碎诸如废玻璃,玻璃料,冶金炉渣等的玻璃状前体材料,对破碎的玻璃质前体进行定径,以分离一定量的粉碎颗粒并将其破碎 。 将颗粒预热并通过高温区以使颗粒发泡。 将泡沫颗粒快速淬火至低于其膨胀软化点的温度,然后冷却至室温。 高温区域为至少约1200℃,并将颗粒预热至不超过约25℃的其膨胀软化点。 将颗粒淬火以部分或完全避免退火,并且因此具有增加的硬度和抗压强度,以及在挤压/破碎的压缩和扭转载荷下的优选破坏模式。