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    • 1. 发明授权
    • Method of making a single fire honeycomb structure
    • 制造单火蜂窝结构的方法
    • US08017067B2
    • 2011-09-13
    • US11897137
    • 2007-08-29
    • Martha Blanche CusterMargaret Kathleen FaberWeiguo MiaoJianguo Wang
    • Martha Blanche CusterMargaret Kathleen FaberWeiguo MiaoJianguo Wang
    • C04B24/08C04B35/634
    • C04B38/0006C04B38/062Y10T428/131
    • A method for manufacturing a honeycomb structure comprises providing an aqueous ceramic solution, providing a batch cross-link agent, mixing the agent with the solution, extruding the aqueous ceramic solution containing the cross-link agent into a honeycomb structure, and drying the honeycomb structure via a single drying step thereby forming a hardened, substantially water resistant, honeycomb structure. The method may further comprise addition of a ceramic surfactant to the aqueous ceramic solution, as well as plugging channels within the honeycomb structure with a plugging material comprising an aqueous ceramic solution that includes batch cross-link agents and ceramic surfactants therein. Also disclosed is a green body honeycomb article having a green honeycomb matrix containing a first ceramic batch compound of inorganic constituents, a first batch cross-link agent, and an aqueous vehicle wherein the matrix includes interconnected walls forming open-ended channels and a plugging material located in at least one of the open-ended channels.
    • 一种蜂窝结构体的制造方法,其特征在于,提供一种水性陶瓷溶液,提供间歇式交联剂,将该溶液与该溶液混合,将含有交联剂的含水陶瓷溶液挤出到蜂窝结构体中, 通过单一干燥步骤,由此形成硬化的,基本上防水的蜂窝结构体。 该方法可以进一步包括向陶瓷水溶液中加入陶瓷表面活性剂,以及使用包含含有水性陶瓷溶液的封闭材料堵塞蜂窝结构内的通道,该水性陶瓷溶液包括间歇交联剂和陶瓷表面活性剂。 还公开了一种绿体蜂窝体制品,其具有包含无机成分的第一陶瓷批次化合物,第一批交联剂和水性载体的生物蜂窝基体,其中所述基质包括形成开放端通道的互连壁和封闭材料 位于至少一个开放式通道中。
    • 10. 发明申请
    • Cordierite Porous Ceramic Honeycomb Articles
    • 堇青石多孔陶瓷蜂窝制品
    • US20110293883A1
    • 2011-12-01
    • US12789833
    • 2010-05-28
    • Weiguo MiaoJianguo Wang
    • Weiguo MiaoJianguo Wang
    • C04B35/195B32B3/12
    • C04B38/0006B01D46/2425B01D46/2444B01D2046/2433B01D2046/2437B01D2046/2496B01J35/04C04B35/195C04B2111/00793C04B2111/0081F01N3/0222F01N2260/10Y10T428/24149C04B38/0074
    • Porous ceramic honeycomb articles for use as particulate filters and processes for making the same are described herein. The porous ceramic honeycomb articles include a fired cordierite body. The fired cordierite body has a microcrack parameter (Nb3) of about 0.05 to about 0.25 prior to exposure to a microcracking condition. After exposure to the microcracking condition, the fired cordierite body has a microcrack parameter (Nb3) at least 20% greater than the microcrack parameter prior to exposure to the microcracking condition. The fired cordierite body has a coefficient of thermal expansion (CTE) of about 7.0×10−7/° C. to about 15.0×10−7/° C. over from about 25° C. to about 800° C. prior to exposure to the microcracking condition and a coefficient of thermal expansion of about 1.0×10−7/° C. to about 10.0×10−7/° C. over from about 25° C. to about 800° C. after exposure to the microcracking condition. The microcrack parameter may include a thermal cycle or a chemical treatment.
    • 用作微粒过滤器的多孔陶瓷蜂窝体制品及其制造方法在此描述。 多孔陶瓷蜂窝体制品包括烧制的堇青石体。 烧制的堇青石体在暴露于微裂纹状态之前具有约0.05至约0.25的微裂纹参数(Nb 3)。 在暴露于微裂纹状态之后,烧结的堇青石体在暴露于微裂纹状态之前具有比微裂纹参数大至少20%的微裂纹参数(Nb 3)。 煅烧的堇青石体在约25℃至约800℃之前的热膨胀系数(CTE)为约7.0×10 -7 /℃至约15.0×10 -7 /℃, 暴露于微裂纹条件和热膨胀系数约为1.0×10-7 /℃至约10.0×10-7 /℃,超过约25℃至约800℃。 微裂纹状况。 微裂纹参数可以包括热循环或化学处理。