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    • 21. 发明授权
    • Multi-layer ceramic heater and/or igniter and method for making the same
    • 多层陶瓷加热器和/或点火器及其制造方法
    • US08901467B2
    • 2014-12-02
    • US12963796
    • 2010-12-09
    • Stephen Radmacher
    • Stephen Radmacher
    • H05B6/70F23H7/00F23Q7/06B28B1/00C04B35/593B28B1/26F23Q7/00C04B37/00F23Q7/22
    • F23Q7/06B28B1/008B28B1/26C04B35/593C04B37/001C04B2235/3891C04B2235/6027C04B2237/368C04B2237/582C04B2237/588C04B2237/76F23Q7/001F23Q7/22
    • A multi-layer rod shaped ceramic igniter includes an elongated tapered electrode having a central core of resistant material and two annular segments. One of the segments in on one side of the core and the other on an opposite side and connected to two slightly converging facets extending along the core. The multi-layered rod shaped ceramic igniters disclosed herein may be manufactured by slip-casting, injection molding or extruding a green annular body and removing material from opposite sides of the green body to form two almost parallel but slightly converging facets that extend over the heater igniter between the back surface and the tip of the igniter. After removing material between the annular segments the igniter is air dried and then heated in a vacuum at atmospheric pressure to approximately 900° C. in order to burn off the organic binder. The ceramic is then held in an inert atmosphere and heated to a temperature of 1600° C. and under an isotatic pressure of greater than 10 mega pascales for sintering the layer into a unitary monolithic structure.
    • 多层棒状陶瓷点火器包括具有耐磨材料的中心芯和两个环形段的细长锥形电极。 在芯的一侧上的一个片段,另一个在相对侧上并且连接到沿着芯延伸的两个稍微会聚的小面。 本文公开的多层棒状陶瓷点火器可以通过流延,注射成型或挤出绿色环形体并且从生坯的相对侧移除材料来制造,以形成两个几乎平行但稍微会聚的小面,其在加热器 点火器的后表面和尖端之间的点火器。 在环形段之间移除材料之后,将点火器空气干燥,然后在大气压至大约900℃的真空中加热,以烧掉有机粘合剂。 然后将陶瓷保持在惰性气氛中并加热至1600℃的温度,并且在大于10兆帕斯卡的等压压力下将该层烧结成单一整体结构。
    • 24. 发明申请
    • DEVICE AND A METHOD FOR COMPRESSION MOULDING OF A FIBRE TRAY
    • 装置和纤维托盘的压缩成型方法
    • US20100330312A1
    • 2010-12-30
    • US12918207
    • 2009-02-20
    • Joakim Stockhaus
    • Joakim Stockhaus
    • B27N5/02B28B21/10B28B1/26
    • D21J3/00B29C33/3807B29C33/3814B29C43/06B29C43/36B29K2001/00Y10T428/1348
    • A device for manufacturing a tray of cellulose material, includes: a compression mould including an essentially flat bottom end and surrounding sides for compression moulding and drying of cellulose pulp to a finished tray; a male mould arranged to fit into the compression mould and that includes a bottom space and lateral surfaces corresponding to the compression mould, wherein the compression mould and the male mould between themselves delimit a mould space including a base section and a side section for compression moulding of the cellulose pulp. Both the compression mould and the male mould are provided with blow and suction devices for blowing in and suction of fluid in and out of the mould space. The blow and suction devices include an inlet pipe having an inlet valve, coupled to an inlet chamber in connection with the mould space, and an outlet pipe having an outlet valve separated from the inlet pipe and coupled to an outlet chamber in connection with the mould space.
    • 一种用于制造纤维素材料盘的装置,包括:压缩模具,其包括基本平坦的底端和围绕侧面的压缩模制和干燥纤维素纸浆到成品托盘; 阳模,其设置成装配到压缩模具中,并且包括底部空间和与压缩模具相对应的侧表面,其中压缩模具和阳模之间限定模具空间,该模具空间包括基部和用于压缩成型的侧部 的纤维素纸浆。 压缩模具和阳模都具有用于吹入和吸出流入和流出模具空间的吹气和抽吸装置。 吹气和抽吸装置包括具有入口阀的入口管,入口阀连接到与模具空间相连的入口腔室,以及出口管道,其具有与入口管道分离的出口阀,并与出口腔室连接, 空间。
    • 27. 发明授权
    • Process for the functional regeneration of the porosity of moulds used for moulding ceramic objects
    • 用于模制陶瓷物体的模具的孔隙度的功能再生的方法
    • US07261847B2
    • 2007-08-28
    • US10333412
    • 2002-05-21
    • Vasco Mazzanti
    • Vasco Mazzanti
    • B08B9/00B08B3/08B28B1/26B28B7/10
    • B08B3/00B28B1/26B28B7/386
    • A process for the functional regeneration of the porosity of the materials used to make molds (2) for moulding ceramic objects, when the pores have been damaged by use of the mold (2), comprises the sequential execution of at least two successive steps of an ordered sequence which includes the steps of: eliminating contamination caused by organic substances form the mold (2); eliminating contamination of biological origin from the mold (2); attacking inorganic encrustations and eliminating inorganic substances which have infiltrated the pores of the mold (2), the initial step of the process being preset according to the nature of a predetermined contaminating agent. A station implementing the process is also an integral part of the present invention.
    • 用于制造用于模制陶瓷物体的模具(2)的材料的孔隙率的功能再生的方法,当孔已经通过使用模具(2)损坏时,包括连续执行至少两个连续步骤 有序序列包括以下步骤:消除由有机物质引起的污染物形成模具(2); 消除模具中生物来源的污染(2); 攻击无机结垢并消除渗透模具孔(2)的无机物质,该过程的初始步骤根据预定污染剂的性质预先设定。 实施该方法的站也是本发明的组成部分。
    • 30. 发明授权
    • Method and arrangement for producing a fibre product
    • 生产纤维制品的方法和装置
    • US6103179A
    • 2000-08-15
    • US91344
    • 1998-06-12
    • Johan Peter Larsson
    • Johan Peter Larsson
    • D21J5/00B28B1/26
    • D21J5/00
    • The invention relates to a method and an arrangement for manufacturing a fiber product. The method and the process are characterized in that a first male mold (6) is immersed in stock in a molding tank (2a). By means of a vacuum, fibers are induced to form a fiber layer of predetermined thickness on the male mold (6). The male mold (6) is thereafter removed from the molding tank (2a) and a female mold (8) is brought under force against the male mold (6) in order to express the stock water, following which the fiber product (P) is transferred to the female mold (8). A second male mold (10) is brought under force against the female mold (8) so that the fiber is subjected to pressing in order to increase the dry solids content of the fiber product and give this a predetermined external structure, following which the fiber product (P) is released and subjected to final drying under the effect of microwave or IR radiation.
    • PCT No.PCT / SE96 / 01644 Sec。 371日期:1998年6月12日 102(e)1998年6月12日PCT 1996年12月12日PCT PCT。 公开号WO97 / 22755 日期1996年6月26日本发明涉及一种制造纤维制品的方法和装置。 该方法和工艺的特征在于将第一阳模(6)浸渍在成型槽(2a)中。 通过真空,在阳模(6)上诱导纤维形成预定厚度的纤维层。 然后将阳模(6)从模制槽(2a)中取出,并将阴模(8)施加在阳模(6)上以便表达原料水,随后将纤维制品(P) 被转移到阴模(8)。 将第二阳模(10)施加在阴模(8)上,使得纤维经受压力以增加纤维制品的干固体含量并给予预定的外部结构,随后将纤维 产物(P)释放并在微波或IR辐射的作用下进行最终干燥。