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    • 2. 发明申请
    • Method and apparatus for drying honeycomb formed body
    • 蜂窝成形体干燥方法及装置
    • US20070006480A1
    • 2007-01-11
    • US10569881
    • 2004-09-02
    • Takeyuki IshiiYuji AsaiMakoto Nakajo
    • Takeyuki IshiiYuji AsaiMakoto Nakajo
    • F26B3/34B29C67/20H05B6/64B29C67/00
    • F26B3/343B26B3/04B28B11/241B28B11/243F26B21/06F26B2210/02
    • An undried honeycomb formed body 41 is subjected to high-frequency heating in an atmosphere where humidity and temperature are maintained at 30 to 65% and 75 to 130° C., respectively, such that 50 to 99 mass % of water contained in the undried honeycomb formed body 41 is evaporated at the end of high-frequency heating, whereby the amount of water vaporized from the outer part of the undried honeycomb formed body 41 is increased, thereby reducing a difference between amount of water vaporized from the inner part of the undried honeycomb formed body 41 and that of water vaporized from the outer part thereof as well as reducing a difference between drying degree of the inner part of the undried honeycomb formed body 41 and that of the outer part thereof, thereby producing a dried honeycomb formed body 42 in which deformation of the partition walls is suppressed. The invention provides a honeycomb formed body drying method which prevents deformation of partition walls of the honeycomb formed body during drying thereof.
    • 将未干燥的蜂窝成型体41在湿度和温度分别维持在30〜65%和75〜130℃的气氛中进行高频加热,使得未干燥的含有50〜99质量%的水 蜂窝成形体41在高频加热结束时蒸发,从而从未干燥的蜂窝成形体41的外部蒸发的水量增加,从而减少从内部蒸发的水的量 未干燥的蜂窝成形体41以及从其外侧部分蒸发的水,并且减少未干燥的蜂窝成形体41的内部的干燥度与其外部部分的干燥度之差,由此生成干燥的蜂窝成形体 42,其中隔壁的变形被抑制。 本发明提供一种蜂窝成形体干燥方法,其能够防止蜂窝成形体的干燥时的隔壁变形。
    • 3. 发明授权
    • Method and apparatus for drying honeycomb formed body
    • 蜂窝成形体干燥方法及装置
    • US07721461B2
    • 2010-05-25
    • US10569881
    • 2004-09-02
    • Takeyuki IshiiYuji AsaiMakoto Nakajo
    • Takeyuki IshiiYuji AsaiMakoto Nakajo
    • F26B3/34
    • F26B3/343B26B3/04B28B11/241B28B11/243F26B21/06F26B2210/02
    • An undried honeycomb formed body 41 is subjected to high-frequency heating in an atmosphere where humidity and temperature are maintained at 30 to 65% and 75 to 130° C., respectively, such that 50 to 99 mass % of water contained in the undried honeycomb formed body 41 is evaporated at the end of high-frequency heating, whereby the amount of water vaporized from the outer part of the undried honeycomb formed body 41 is increased, thereby reducing a difference between amount of water vaporized from the inner part of the undried honeycomb formed body 41 and that of water vaporized from the outer part thereof as well as reducing a difference between drying degree of the inner part of the undried honeycomb formed body 41 and that of the outer part thereof, thereby producing a dried honeycomb formed body 42 in which deformation of the partition walls is suppressed. The invention provides a honeycomb formed body drying method which prevents deformation of partition walls of the honeycomb formed body during drying thereof.
    • 将未干燥的蜂窝成型体41在湿度和温度分别维持在30〜65%和75〜130℃的气氛中进行高频加热,使得未干燥的含有50〜99质量%的水 蜂窝成形体41在高频加热结束时蒸发,从而从未干燥的蜂窝成形体41的外部蒸发的水量增加,从而减少从内部蒸发的水的量 未干燥的蜂窝成形体41以及从其外侧部分蒸发的水,并且减少未干燥的蜂窝成形体41的内部的干燥度与其外部部分的干燥度之差,由此生成干燥的蜂窝成形体 42,其中隔壁的变形被抑制。 本发明提供一种蜂窝成形体干燥方法,其能够防止蜂窝成形体的干燥时的隔壁变形。
    • 4. 发明申请
    • Method for drying honeycomb formed structure
    • 干燥蜂窝结构的方法
    • US20060283039A1
    • 2006-12-21
    • US10570266
    • 2004-09-02
    • Takeyuki IshiiYuji AsaiMakoto Nakajo
    • Takeyuki IshiiYuji AsaiMakoto Nakajo
    • F26B5/06
    • B28B11/243B28B11/241B28B11/248B30B15/34F26B3/347F26B15/14F26B2210/02
    • The invention provides a honeycomb formed structure drying method including causing undried honeycomb formed structures 10 placed on stands 12 to pass through a drying apparatus 1, thereby drying the undried honeycomb formed structures through high-frequency heating, to thereby form dried honeycomb formed structures 11; removing the dried honeycomb formed structures 11 from the stands 12; cooling the stands 12 which have been heated dried in the drying apparatus 1 are cooled to a temperature lower than the gelation temperature of the undried honeycomb formed structures 10; placing newly formed undried honeycomb formed structures 10 on the cooled stands 12; drying the undried honeycomb formed structures by passing through the drying apparatus 1; and repeating these operations. The honeycomb formed structure drying method prevents deformation such as warpage of partition walls of honeycomb formed structures during drying thereof.
    • 本发明提供了一种蜂窝成形结构的干燥方法,其特征在于,将放置在台架12上的未干燥的蜂窝成形结构体10通过干燥装置1,通过高频加热干燥未干燥的蜂窝成形体,从而形成干燥的蜂窝结构体11; 从支架12移除干燥的蜂窝结构体11; 冷却在干燥装置1中被加热干燥的支架12被冷却至低于未干燥的蜂窝成形结构体10的凝胶化温度的温度; 将新形成的未干燥蜂窝成形结构10放置在冷却架12上; 通过干燥装置1干燥未干燥的蜂窝成形结构; 并重复这些操作。 蜂窝结构体干燥方法可以防止蜂窝结构体在其干燥期间的分隔壁的翘曲等变形。
    • 5. 发明授权
    • Method for drying honeycomb formed structure
    • 干燥蜂窝结构的方法
    • US07320183B2
    • 2008-01-22
    • US10570266
    • 2004-09-02
    • Takeyuki IshiiYuji AsaiMakoto Nakajo
    • Takeyuki IshiiYuji AsaiMakoto Nakajo
    • F26B7/00F26B3/34H05B6/78H05B6/64
    • B28B11/243B28B11/241B28B11/248B30B15/34F26B3/347F26B15/14F26B2210/02
    • The invention provides a honeycomb formed structure drying method including causing undried honeycomb formed structures 10 placed on stands 12 to pass through a drying apparatus 1, thereby drying the undried honeycomb formed structures through high-frequency heating, to thereby form dried honeycomb formed structures 11; removing the dried honeycomb formed structures 11 from the stands 12; cooling the stands 12 which have been heated dried in the drying apparatus 1 are cooled to a temperature lower than the gelation temperature of the undried honeycomb formed structures 10; placing newly formed undried honeycomb formed structures 10 on the cooled stands 12; drying the undried honeycomb formed structures by passing through the drying apparatus 1; and repeating these operations. The honeycomb formed structure drying method prevents deformation such as warpage of partition walls of honeycomb formed structures during drying thereof.
    • 本发明提供了一种蜂窝成形结构的干燥方法,其特征在于,将放置在台架12上的未干燥的蜂窝成形结构体10通过干燥装置1,通过高频加热干燥未干燥的蜂窝成形体,从而形成干燥的蜂窝结构体11; 从支架12移除干燥的蜂窝结构体11; 冷却在干燥装置1中被加热干燥的支架12被冷却至低于未干燥的蜂窝成形结构体10的凝胶化温度的温度; 将新形成的未干燥蜂窝成形结构10放置在冷却架12上; 通过干燥装置1干燥未干燥的蜂窝成形结构; 并重复这些操作。 蜂窝结构体干燥方法可以防止蜂窝结构体在其干燥期间的分隔壁的翘曲等变形。
    • 6. 发明授权
    • Equipment and method for manufacturing honeycomb structural body
    • 蜂窝结构体的设备及方法
    • US06994816B2
    • 2006-02-07
    • US10486892
    • 2003-04-11
    • Takeyuki IshiiYuji AsaiEiji Ito
    • Takeyuki IshiiYuji AsaiEiji Ito
    • B28B3/20B28B11/16
    • B28B11/165B26D1/46B28B11/161B28B17/00Y10T83/0207Y10T83/2022
    • An apparatus for producing a honeycomb structure having an extruder, at least one cradle and a cutting device comprising a small-gage wire for cutting the honeycomb structure and a notching member; said cradle is provided with a means capable of moving the honeycomb structure extruded from the extruder in the lengthwise direction of the honeycomb structure at nearly the same speed as the extrusion speed of the honeycomb structure, said cutting device is constructed so that the cutting small-gage wire is moved to the honeycomb structure side on the same plane as the plane of stretched small-gage wire, a cutting induction groove is formed on the outer peripheral side surface of the honeycomb structure by the notching member, and immediately thereafter the cutting small-gage wire is positioned in the induction groove, and the cutting small-gage wire is pressed into the honeycomb structure to cut the honeycomb structure.
    • 一种具有挤出机,至少一个支架和切割装置的蜂窝结构体的制造装置,其特征在于,包括用于切割所述蜂窝结构体的小规格线材和切口部件; 所述支架设置有能够以与蜂窝结构体的挤出速度几乎相同的速度移动从挤出机沿蜂窝结构体的长度方向挤出的蜂窝结构体的装置,所述切割装置被构造成使得切割小 - 将规格导线移动到与拉伸小规格线的平面相同的平面上的蜂窝结构侧,通过开槽部件在蜂窝结构体的外周侧面上形成切割感应槽,然后切断小 将电线定位在感应槽中,并将切割小规格的电线压入蜂窝结构体中以切割蜂窝结构体。
    • 8. 发明授权
    • Piezoelectric semiconductor
    • 压电半导体
    • US5393444A
    • 1995-02-28
    • US112529
    • 1993-08-27
    • Yuji AsaiOsamu Imai
    • Yuji AsaiOsamu Imai
    • C30B7/00H01L41/18H03H3/00H03H3/04H03H9/02
    • H03H3/00C30B29/16C30B7/00H01L41/18
    • A piezoelectric semiconductor is a single crystal composed mainly of ZnO having properties such as electrical conductivity of 10.sup.-11 .about.10.sup.-3 1/.OMEGA..multidot.cm suitable for use as an acoustoelectric element, by adding a given amount of H.sub.2 O.sub.2 to the alkali solvent, or by using NH.sub.4 OH in the alkali solvent, or by doping the ZnO single crystal with Li or a trivalent metal. The piezoelectric semiconductor can be suitably used as a ultrasonic transducer material of acoustoelectric type and can also be used as a material for ultrasonic amplification, an surface acoustic wave filter, a piezoelectric transducer, a fluorescent material for emitting a low-velocity electron beam, etc.
    • 压电半导体是通过向碱性溶剂中添加给定量的H 2 O 2而主要由ZnO组成的单晶,其具有诸如10-11DIFFERENCE 10-3 1 / OMEGA xcm的导电性,可以用作声电元件,或者 通过在碱溶剂中使用NH 4 OH,或者用Li或三价金属掺杂ZnO单晶。 压电半导体可以适当地用作声电型的超声换能器材料,并且还可以用作超声波放大的材料,表面声波滤波器,压电换能器,用于发射低速电子束的荧光材料等 。