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    • 71. 发明申请
    • ORGANIC FOAMING PLASTIC BODY HAVING EXCELLENT THERMAL RESISTANCE AND DURABILITY
    • 有机发泡塑料体,具有优异的耐热性和耐久性
    • US20090081459A1
    • 2009-03-26
    • US12159948
    • 2007-02-08
    • Jong-Hyeon YoonBeom-Gyu BaekYoon-Sik Lee
    • Jong-Hyeon YoonBeom-Gyu BaekYoon-Sik Lee
    • B32B15/02C08J9/35
    • C08J9/224C08J9/232C08J2201/038Y10T428/2993
    • Disclosed is an expanded organic foam material having excellent thermal resistance and durability. The expanded plastic foam material is produced by preparing plastic beads or plastic foams, modifying silicate with at least one selected from among an alkaline earth metal compound, an alkaline earth metal compound-containing material, and an acid, coating the modified silicate on the prepared plastic beads or plastic foams, melt-molding the coated plastic beads or plastic foams while applying heat and pressure thereto, and drying the molded material. Also, the expanded organic plastic foam material has good impact-absorbing properties, easy formability, excellent sound-insulating and sound-absorbing performance and thermal insulating performance, good flame retardancy and thermal resistance, and improved water resistance and durability.
    • 公开了具有优异的耐热性和耐久性的膨胀型有机泡沫材料。 膨胀塑料泡沫材料通过制备塑料珠或塑料泡沫来制备,用选自碱土金属化合物,含碱土金属化合物的材料和酸中的至少一种改性硅酸盐,将改性硅酸盐涂覆在所制备的 塑料珠或塑料泡沫塑料,将涂覆的塑料珠或塑料泡沫熔融成型,同时向其施加热量和压力,并干燥模塑材料。 此外,膨胀型有机塑料泡沫材料具有良好的冲击吸收性能,易成型性,优良的隔音和吸音性能,隔热性能,良好的阻燃性和耐热性,以及改善的耐水性和耐久性。
    • 77. 发明授权
    • Method of making porous inorganic particle filled polyimide foam
insulation products
    • 制造多孔无机颗粒填充聚酰亚胺泡沫保温产品的方法
    • US4978690A
    • 1990-12-18
    • US367625
    • 1989-07-12
    • Francis U. Hill
    • Francis U. Hill
    • B29C44/04B29C70/58C08J9/00C08J9/35
    • C08J9/35B29C44/04B29C70/58C08J9/0066B29K2079/00B29K2105/04B29K2105/16B29K2995/0015C08J2201/038C08J2379/08
    • A method of making thermal insulating products comprising porous, lightweight, high temperature resistant inorganic particles in a polyimide foam matrix and the product thereof. A polyimide precursor powdered is mixed with about equal weight of flake-like porous inorganic particles to substantially uniformly coat the particles with powder. The mixture is placed in a mold and compressed slightly. The assembly is heated to the foaming temperature of the polyimide precursor for a period suitable to produce uniform foaming. Then the temperature is raised to the curing and crosslinking temperature of the precursor for a time period sufficient to produce complete cure. A high temperature and flame resistant, light weight, highly insulating product results. If desired, protective sheets of material may be bonded to selected product surfaces during or after the molding operation.
    • 一种在聚酰亚胺泡沫基质中​​制备绝热产品的方法,该方法包括多孔,重量轻,耐高温的无机颗粒及其产物。 将粉末状的聚酰亚胺前体与大约相同重量的片状多孔无机颗粒混合,以粉末基本上均匀地涂覆颗粒。 将混合物放置在模具中并稍微压缩。 将组件加热至聚酰亚胺前体的发泡温度适合于产生均匀发泡的时间。 然后将温度升至前体的固化和交联温度一段足以产生完全固化的时间段。 耐高温,阻燃,重量轻,绝缘性高的产品。 如果需要,在模制操作期间或之后,保护性材料片可以结合到所选择的产品表面。
    • 79. 发明授权
    • Fire resistant, expanded styrene polymer material
    • 耐火,膨胀苯乙烯聚合物材料
    • US4198485A
    • 1980-04-15
    • US846690
    • 1977-10-31
    • Fred J. Stark, Jr.
    • Fred J. Stark, Jr.
    • C08J9/236C08J9/22
    • C08J9/236C08J2201/038C08J2325/06Y10S521/907
    • Pre-expanded styrene polymer particles, which may contain one or more pre-expanded styrene polymer beads, are coated with sufficient water glass so that the particles, when dried to a reversible, tack-free pourable state, comprise from about 30% to 80% styrene polymer solids. The particles may be shaped into a desired article configuration and then dried to a tack-free state, the particles adhering together through the water glass, and the resulting article having a bulk density of from about 1.25 lbs. to 3 lbs. per cubic foot. The water glass or the pourable particles may be treated to decrease alkalinity and to cause irreversible precipitation of water glass solids, rendering the final product essentially waterproof.
    • 可以含有一种或多种预发泡的苯乙烯聚合物珠粒的预发泡的苯乙烯聚合物颗粒用足够的水玻璃涂覆,使得当干燥至可逆的,无粘性的可倾倒状态时,颗粒包含约30%至80% %苯乙烯聚合物固体。 颗粒可以成型为所需的制品构型,然后干燥至无粘性状态,颗粒通过水玻璃粘合在一起,所得制品的堆积密度为约1.25磅。 至3磅。 每立方英尺 可以处理水玻璃或可倾倒颗粒以降低碱度并引起水玻璃固体的不可逆沉淀,使最终产品基本上防水。