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    • 1. 发明授权
    • Extrusion molding apparatus for ceramic molded product
    • 陶瓷成型品的挤出成型装置
    • US06716019B2
    • 2004-04-06
    • US09849364
    • 2001-05-07
    • Satoru YamaguchiYasunao MiuraHiromi KatouTadashi Tsuruta
    • Satoru YamaguchiYasunao MiuraHiromi KatouTadashi Tsuruta
    • B29C4710
    • B30B11/246B28B3/20B28B3/206B28B3/222B28B17/026B28C1/203
    • An extrusion molding apparatus for a ceramic molded product which is capable of passing a ceramic material smoothly through a filter unit is disclosed. The extrusion molding apparatus comprises a mold (11) for molding a ceramic molded product, a screw extruder (4) for supplying a ceramic material (80) to the mold (11), and a filter unit (3) for filtering the ceramic material (80) at the extrusion outlet (41) of the screw extruder (4). The screw extruder (4) has built therein a screw (40) for kneading while at the same time leading the ceramic material (80) forward, and further has, on the front part thereof, a spatula portion (5) adapted to move over the inlet surface (30) of the filter unit (3) and there is a predetermined distance D between the spatula portion and the inlet surface (30).
    • 公开了一种能够使陶瓷材料顺利地通过过滤器单元的用于陶瓷成型产品的挤出成型装置。 该挤出成型装置包括用于模制陶瓷模制产品的模具(11),用于将陶瓷材料(80)供应到模具(11)的螺杆挤出机(4)和用于过滤陶瓷材料的过滤器单元 (80)在螺杆挤出机(4)的挤出出口(41)处。 螺杆挤出机(4)内置有用于捏合的螺杆(40),同时将陶瓷材料(80)向前引导,并且在其前部还具有适于移动的刮铲部分(5) 过滤器单元(3)的入口表面(30),并且在刮刀部分和入口表面(30)之间存在预定的距离D.
    • 2. 发明授权
    • Extrusion molding apparatus
    • 挤出成型装置
    • US06790025B2
    • 2004-09-14
    • US09852917
    • 2001-05-11
    • Satoru YamaguchiHiromi KatouYasunao Miura
    • Satoru YamaguchiHiromi KatouYasunao Miura
    • B28B326
    • B30B11/245B28B3/222B29C47/366B29C47/369B29C47/6062B29C47/665B30B11/246
    • An extrusion molding apparatus capable of improving the extrusion rate of the ceramic material without a major reconstruction of a drive system is disclosed. The extrusion molding apparatus comprises screw extruders (2, 3) including housings (29, 39) having screws (4, 5) built therein, wherein the ceramic material introduced into the housings (29, 39), respectively, is extruded by way of the forward end extrusion ports by rotating the screws (4, 5). The screws (4, 5) built in the screw extruders (2, 3), respectively, include pressure portions (41, 51) with the feed rate per revolution progressively decreased toward the forward end extrusion port, and extended portions (43, 53) with the feed rate per revolution progressively increased toward the forward end extrusion port.
    • 公开了一种能够改善陶瓷材料的挤出速率而不需要重大驱动系统的挤出成型设备。 挤出成型装置包括螺旋挤出机(2,3),其包括内置有螺钉(4,5)的壳体(29,39),其中分别引入壳体(29,39)中的陶瓷材料被挤出通过 通过旋转螺钉(4,5)来驱动前端挤压端口。 螺杆挤出机(2,3)中内置的螺杆(4,5)分别包括压力部分(41,51),每转的进料速度朝向前端挤出口逐渐减小,并且延伸部分(43,43) ),每转的进料速率朝向前端挤出口逐渐增加。
    • 4. 发明授权
    • Method of fabricating honeycomb body
    • 制造蜂窝体的方法
    • US06932932B2
    • 2005-08-23
    • US10045085
    • 2002-01-15
    • Yasunao MiuraSatoru YamaguchiHiromi Katou
    • Yasunao MiuraSatoru YamaguchiHiromi Katou
    • H05B6/78H05B6/64
    • H05B6/804B28B11/241B28B11/243B28B11/247H05B6/78H05B2206/046
    • Method of fabricating at least a honeycomb body include drying a plurality of honeycomb bodies, each having a multiplicity of cells arranged in the shape of a honeycomb and having a wall thickness of 0.125 mm or less, without cracking or wrinkling in the outer peripheral skin portion of the mold. Extrusion-molded argillaceous honeycomb bodies may be dried by placement on porous ceramics trays, having a dielectric loss of 0.1 or less, a porosity of 10% or more and a sectional open area ratio of 50% or more, exposure to at least 70% humidity and simultaneous irradiation with microwaves of 1,000 to 10,000 MHz. Alternatively, extrusion-molded argillaceous honeycomb bodies may be dried by exposure to at least 70% humidity and simultaneous irradiation with microwaves of 1,000 to 10,000 MHz, after which hot air is passed through the cells of the honeycomb bodies.
    • 至少制造蜂窝体的方法包括干燥多个蜂窝体,每个蜂窝体具有排列成蜂窝形状的多个孔,壁厚为0.125mm以下,不会在外周皮肤部分发生龟裂或起皱 的模具。 挤出成型的泥质蜂窝体可以通过放置在多孔陶瓷盘上,其介电损耗为0.1以下,孔隙率为10%以上,截面开口率为50%以上,暴露于至少70% 湿度和同步照射的微波1000至10,000 MHz。 或者,挤出成型的泥质蜂窝体可以通过暴露于至少70%的湿度并且同时照射1,000至10,000MHz的微波来干燥,之后热空气通过蜂窝体的孔。