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    • 1. 发明申请
    • Film laminated structure, method for producing the same, and gas sensor
    • 薄膜层叠结构体及其制造方法以及气体传感器
    • US20150276661A1
    • 2015-10-01
    • US14668116
    • 2015-03-25
    • NGK Insulators, Ltd.
    • Satoko MORIYAMAMika MURAKAMIKunihiko YOSHIOKAHironori SAKAKIBARA
    • G01N27/407C04B35/48
    • A method of the present invention is a method for producing a film laminated structure, including the steps of: (a) preparing a ceramic substrate; (b) charging a mold with a slurry that contains a raw material powder, a gelling agent containing at least two polymerizable organic compounds, and an organic solvent serving as a dispersion medium, and molding and hardening the slurry through a polymerization reaction of the gelling agent to form a green body having a recessed portion or through-hole; (c) inserting the ceramic substrate into the recessed portion or through-hole of the green body and then drying the ceramic substrate and the green body to form a green structure; and (d) firing the green structure to form a film laminated structure, the film laminated structure including a film formed from the green body by firing.
    • 本发明的方法是一种薄膜叠层结构体的制造方法,包括以下步骤:(a)制备陶瓷基材; (b)用包含原料粉末的浆料,含有至少两种可聚合有机化合物的胶凝剂和用作分散介质的有机溶剂的模具装入模具,并通过胶凝剂的聚合反应来模制和硬化浆料 以形成具有凹部或通孔的生坯; (c)将陶瓷基板插入生坯的凹部或通孔中,然后干燥陶瓷基板和生坯以形成绿色结构; 和(d)烧制绿色结构以形成薄膜叠层结构,该薄膜层叠结构包括通过烧制由生坯形成的薄膜。
    • 3. 发明申请
    • COMPACT DRYING METHOD
    • 紧凑干燥方法
    • US20160046530A1
    • 2016-02-18
    • US14861092
    • 2015-09-22
    • NGK Insulators, Ltd.
    • Yusuke FUJIKunihiko YOSHIOKA
    • C04B35/638
    • C04B35/638B01D12/00B22F3/225C04B35/632C04B2235/602C04B2235/604C04B2235/606F26B5/005F26B2210/02
    • A compact is formed by introducing a slurry containing a ceramic powder or a metal powder, a binder and a solvent into a compaction die, and compacting the slurry in the compaction die. The compact embedded in the compaction die is immersed in an alternative CFC (liquid) (FIG. 4A). The solvent contained in the compact is gradually replaced with the alternative CFC. In the course of this process, the compact separates naturally from the compaction die (releasing is achieved) without receiving an external force. Subsequently, the compact is taken out of the alternative CFC (liquid). The alternative CFC has a boiling point as low as 95° C. at 1 atmospheric pressure. Accordingly, the alternative CFC contained in the compact will volatilize at high speed, thus being removed. Consequently, the compact can be dried in a relatively short time without being heated.
    • 通过将包含陶瓷粉末或金属粉末,粘合剂和溶剂的浆料引入压实模具中并压实压实模具中的浆料而形成压块。 嵌入压实模具中的压实体被浸入替代的CFC(液体)(图4A)中。 压实物中包含的溶剂逐渐被替代的CFC替代。 在这个过程中,紧固件与压实模具自然分离(释放被实现),而不会受到外力。 随后,将压实体从备选的CFC(液体)中取出。 替代的CFC在1个大气压下具有低至95℃的沸点。 因此,压实体中所含的替代CFC将高速挥发,从而被除去。 因此,可以在相对短的时间内干燥压块而不加热。