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    • 92. 发明授权
    • Apparatus for curing fibrous insulation
    • 纤维绝缘固化装置
    • US06851941B2
    • 2005-02-08
    • US10404205
    • 2003-03-31
    • Weigang Qi
    • Weigang Qi
    • B29C35/06B29C43/22B29C43/52B29C67/24B29C43/48B30B5/06
    • B29C43/22B29C35/06B29C43/52B29C67/249B29K2105/0854B29K2995/0002B29K2995/0015B29L2007/002D04H1/4209D04H1/4218D04H1/587D04H1/64
    • An improved apparatus for curing fibrous insulation material includes an oven, and a lower conveyor mounted to travel through the oven. The lower conveyor includes a plurality of flights having a support surface for supporting fibrous insulation material. An upper conveyor is mounted to travel through the oven and has a plurality of flights opposite the flights of the lower conveyor. Each flight of the upper conveyor includes a support surface. The upper and lower conveyors are arranged to press the fibrous insulation material between the respective support surfaces as the conveyors carry the fibrous insulation material through the oven. A plurality of molding members are configured to mold a shape into a surface of the fibrous insulation material, and are releasably retained on the flights by a plurality of retaining members. The retaining members are automatically releasable when the flights are moving, such that the releasing of the retaining members unlocks the molding members from the flights.
    • 用于固化纤维绝缘材料的改进的装置包括烘箱和安装成穿过烤箱的下传送器。 下输送机包括具有用于支撑纤维绝缘材料的支撑表面的多个翼片。 安装上部输送机以穿过炉,并且具有与下部输送机的两个叶片相对的多个叶片。 上部输送机的每个飞行器包括支撑表面。 上输送机和下输送机布置成当输送机通过烤箱携带纤维绝缘材料时,将纤维绝缘材料压在相应的支撑表面之间。 多个模制构件被配置为将形状模制成纤维绝缘材料的表面,并且通过多个保持构件可释放地保持在所述翼片上。 当飞行运动时,保持构件可自动释放,使得保持构件的释放将模制构件从飞行中解锁。
    • 99. 发明授权
    • Method of conditioning foam materials by compression
    • 通过压缩调节泡沫材料的方法
    • US06495085B1
    • 2002-12-17
    • US09627464
    • 2000-07-28
    • Clay SimpsonRick D. Lawson
    • Clay SimpsonRick D. Lawson
    • B29C6720
    • B29C44/5627B29C43/003B29K2079/08B29K2105/04B29K2995/0002
    • The inventive method comprises compressing roughly half a bun of polyimide foam at a rate of no more than 12 feet per minute from its initial height of approximately 15″, until it reaches a compressed height of no more than 2″. The compression is maintained on the bun for no more than one minute, and then released. The half-bun is then permitted to expand, and it will rebound to approximately 90-95% of its initial height. This conditioned foam may then be cut or otherwise formed into acoustical panels of varying heights and/or configurations, without worry about the ultimate shrinkage after treatment. In addition the treated half-bun may be cut into irregular shapes of more varying dimensions, up to the maximum dimension of the treated half-bun.
    • 本发明的方法包括从大约15“的初始高度以不超过12英尺每分钟的速度压缩大约一半的聚酰亚胺泡沫,直到其达到不超过2”的压缩高度。 压缩保持在馒头上不超过一分钟,然后释放。 半is然后被允许扩张,并将反弹到初始高度的大约90-95%。 然后可以将经调理的泡沫切割或以其它方式形成为不同高度和/或构型的声学板,而不用担心处理后的最终收缩。 此外,经处理的半馒头可以被切割成更多变化的尺寸的不规则形状,直到被处理的半the的最大尺寸。
    • 100. 发明授权
    • Molded insulation products and their manufacture using continuous-filament wool
    • 成型绝缘产品及其使用连续丝丝的制造
    • US06319444B1
    • 2001-11-20
    • US09319398
    • 1999-09-07
    • Simon R. Kirk
    • Simon R. Kirk
    • B29C4302
    • F01N13/18B29C70/34B29C70/50B29K2105/08B29K2995/0002B29K2995/0015F01N3/2853F01N13/14F01N2310/02
    • A process of forming a thermal insulation layer (34) includes advancing a multifilament strand of continuous filaments (12) through a nozzle (10) to separate the filaments (16) from each other to form a continuous-filament wool (14), applying a binder to the filaments, placing a charge comprising the wool in a mold (32), and molding the charge to form an insulation layer (34). In a preferred embodiment, the charge (30) further comprises a container, such as a bag (24) formed from a poylmer film. The filaments are preferably prepared from a high-strength, high-temperature resistant glass material. The molded wool is advantageously used to manufacture products, such as catalytic converters (46) wherein the wool is used to thermally insulate the catalytic core element (48).
    • 形成绝热层(34)的方法包括通过喷嘴(10)推进连续长丝(12)的复丝股线,以将长丝(16)彼此分离以形成连续丝丝(14),施加 将长丝的粘合剂,将包含所述羊毛的电荷放置在模具(32)中,以及模制所述电荷以形成绝缘层(34)。 在优选实施例中,电荷(30)还包括容器,例如由聚乙烯吡咯烷酮薄膜形成的袋(24)。 长丝优选由高强度耐高温玻璃材料制成。 模制羊毛有利地用于制造产品,例如催化转化器(46),其中羊毛用于使催化核心元件(48)热绝缘。