Laminated filter material, its fabricating method and filter using a
laminated filter material
    1.
    发明授权
    Laminated filter material, its fabricating method and filter using a laminated filter material 失效
    层叠过滤材料,其制造方法和使用层压过滤材料的过滤器

    公开(公告)号:US5492623A

    公开(公告)日:1996-02-20

    申请号:US30091

    申请日:1993-03-23

    申请人: Hideomi Ishibe

    发明人: Hideomi Ishibe

    摘要: A laminated filter material for removing foreign materials from gas or liquid with high precision, its fabricating method and a filter using a laminated filter material are described. The laminated filter material comprises a support member of porous metal and a particle layer of fine particles laminated on a surface having asperities of the support member, by immersing the support member in a suspension of the particles without a binder, and evacuating the suspension through the support member. The method for fabricating includes the steps of preparing a suspension of particles finer than the average pore diameter of support member without using a binder, immersing the support member, and evacuating the suspension through the support member. The filter has a housing for supporting the laminated filter material, wherein the housing is provided with a metal attachment part having a surface contacting an end-face of the laminated filter material, and the attachment part and end-face of the laminated filter material are fixed by fusing the particle layer from the reverse side of the contacting surface of the attachment part.

    摘要翻译: PCT No.PCT / JP92 / 01323 Sec。 371日期1993年3月23日 102(e)1993年3月23日PCT 1991年10月5日PCT。一种用于高精度地从气体或液体中除去异物的层压过滤材料,其制造方法和使用层压过滤材料的过滤器。 层压过滤材料包括多孔金属的支撑构件和通过将支撑构件浸没在没有粘合剂的颗粒的悬浮液中而层压在具有支撑构件的凹凸的表面上的细颗粒的颗粒层,并且通过 支持会员 制造方法包括以下步骤:在不使用粘合剂的情况下制备比支撑构件的平均孔径更细的颗粒的悬浮液,浸渍支撑构件,并将悬浮液抽出通过支撑构件。 过滤器具有用于支撑层压过滤材料的壳体,其中壳体设置有具有与层压过滤材料的端面接触的表面的金属附接部分,并且层压过滤材料的附接部分和端面是 通过从附着部分的接触表面的背面熔化颗粒层来固定。

    COMPOSITE MEMBRANE MATERIAL FOR HYDROGEN SEPARATION AND ELEMENT FOR HYDROGEN SEPARATION USING THE SAME
    2.
    发明申请
    COMPOSITE MEMBRANE MATERIAL FOR HYDROGEN SEPARATION AND ELEMENT FOR HYDROGEN SEPARATION USING THE SAME 有权
    用于氢分离的复合膜材料和使用其的氢分离元素

    公开(公告)号:US20100018397A1

    公开(公告)日:2010-01-28

    申请号:US11992658

    申请日:2006-09-15

    IPC分类号: B01D53/22

    摘要: A composite membrane material characterized by comprising a hydrogen-permeable membrane which is selectively permeable to hydrogen and is formed by rolling to a thickness of 30 μm or less which is difficult for the membrane by itself to retain its shape, and a shape-retention mesh which is disposed on at least one side of the hydrogen-permeable membrane and is composed of a wire of a high-melting metal which does not cause thermal diffusion into the hydrogen-permeable membrane, wherein the hydrogen-permeable membrane and the shape-retention mesh are superposed and subjected to a pleat processing in a non-bonded state so that they are separable and the hydrogen-permeable membrane has a surface area increased at least 3 times per unit area. This material is used to constitute a hydrogen separation element.

    摘要翻译: 一种复合膜材料,其特征在于包括氢可渗透膜,其可选择性地渗透氢气并且通过轧制至30μm或更小的厚度而形成,所述厚度本身难以保持其形状,并且形状保持网 其设置在氢渗透膜的至少一侧,并且由不会引起热扩散到氢渗透膜中的高熔点金属线构成,其中透氢膜和形状保持 将网状物重合并进行非接合状态的褶皱处理,使得它们是可分离的,并且透氢膜的表面积增加到每单位面积的至少3倍。 该材料用于构成氢分离元件。

    Stainless steel short fiber and process for preparing the same
    3.
    发明授权
    Stainless steel short fiber and process for preparing the same 失效
    不锈钢短纤维及其制备方法

    公开(公告)号:US4377409A

    公开(公告)日:1983-03-22

    申请号:US277208

    申请日:1981-06-25

    申请人: Hideomi Ishibe

    发明人: Hideomi Ishibe

    IPC分类号: B22F1/00 B22F9/16 C23F1/28

    摘要: A columnar stainless steel short fiber having a diameter of 2 to 20 .mu.m. and an aspect ratio of the length to the diameter of 1 to 50. The short fiber is prepared by heat-treating a stainless steel fiber for adjusting the growth of crystal grains and subjecting the heat-treated fiber to intergranular selective corrosion in an acidic solution. The short fiber is useful as a material of sintered metallic filters, and sintered compacts of the short fiber have high porosity, uniform pore size, excellent mechanical strength and small pressure loss.

    摘要翻译: 直径2〜20μm的柱状不锈钢短纤维。 长径比为1〜50的长宽比。短纤维是通过对不锈钢纤维进行热处理,调整晶粒的生长并使其经受热处理的纤维在酸性溶液中进行晶间选择性腐蚀 。 短纤维可用作烧结金属过滤器的材料,短纤维的烧结体具有孔隙率高,孔径均匀,机械强度优异和压力损失小的特点。

    Metal filter
    4.
    发明授权
    Metal filter 有权
    金属过滤器

    公开(公告)号:US06355082B1

    公开(公告)日:2002-03-12

    申请号:US09554658

    申请日:2000-07-19

    申请人: Hideomi Ishibe

    发明人: Hideomi Ishibe

    IPC分类号: B01D2907

    摘要: It is a metal filter 1 including a fine filtering layer 3 and a supporting member 2 sintered to be porous and having a covering surface 4 to integrate the fine filtering layer 3 into a laminate to maintain its shape. The average pore diameter of the fine filtering layer 3 is set to be smaller than an average pore diameter of the supporting member 2. The covering surface 4 is formed in an uneven shape so as to allow a filtering surface of the fine filtering layer 3 to be an undulating filtering surface 3A such that the area ratio S1/S0 of its real filtration area S1 to the standard filtration area S0 of the case where it is not formed in an uneven shape, is larger than or equal to 1.3. The average thickness of the fine filtering layer 3 at valley portions 6 of the uneven shape is set to be larger than the average thickness of the fine filtering layer 3 at the crest portions 5 of the uneven shape, and the undulating filtering surface 3A is formed in a smoothly curved surface shape.

    摘要翻译: 它是一个金属过滤器1,它包括精细过滤层3和一个被烧结成多孔的支撑件2,并具有覆盖表面4,以将精细过滤层3整合成层压板以保持其形状。 精细过滤层3的平均孔径被设定为小于支撑构件2的平均孔径。覆盖面4形成为不平坦的形状,以使精细过滤层3的过滤表面 作为波状过滤面3A,使得实际过滤面积S1与未形成为不均匀形状的情况下的标准过滤面积S0的面积比S1 / S0大于或等于1.3。 不均匀形状的谷部6处的精细过滤层3的平均厚度被设定为大于不均匀形状的顶部5处的微细过滤层3的平均厚度,并且形成起伏的过滤表面3A 呈平滑的曲面形状。

    Composite membrane material for hydrogen separation and element for hydrogen separation using the same
    6.
    发明授权
    Composite membrane material for hydrogen separation and element for hydrogen separation using the same 有权
    用于氢分离的复合膜材料和使用其的氢分离元件

    公开(公告)号:US08226751B2

    公开(公告)日:2012-07-24

    申请号:US11992658

    申请日:2006-09-15

    IPC分类号: B01D53/22

    摘要: A composite membrane material characterized by comprising a hydrogen-permeable membrane which is selectively permeable to hydrogen and is formed by rolling to a thickness of 30 μm or less which is difficult for the membrane by itself to retain its shape, and a shape-retention mesh which is disposed on at least one side of the hydrogen-permeable membrane and is composed of a wire of a high-melting metal which does not cause thermal diffusion into the hydrogen-permeable membrane, wherein the hydrogen-permeable membrane and the shape-retention mesh are superposed and subjected to a pleat processing in a non-bonded state so that they are separable and the hydrogen-permeable membrane has a surface area increased at least 3 times per unit area. This material is used to constitute a hydrogen separation element.

    摘要翻译: 一种复合膜材料,其特征在于包括氢可渗透膜,其可选择性地渗透氢气,并且通过轧制至30μm或更小的厚度而形成,该膜本身难以保持其形状,并且形状保持网 其设置在氢渗透膜的至少一侧,并且由不会引起热扩散到氢渗透膜中的高熔点金属线构成,其中透氢膜和形状保持 将网状物重合并进行非接合状态的褶皱处理,使得它们是可分离的,并且透氢膜的表面积增加到每单位面积的至少3倍。 该材料用于构成氢分离元件。

    Method of making titanium-nickel alloys by consolidation of compound
material
    7.
    发明授权
    Method of making titanium-nickel alloys by consolidation of compound material 失效
    通过固化复合材料制备钛镍合金的方法

    公开(公告)号:US4830262A

    公开(公告)日:1989-05-16

    申请号:US932339

    申请日:1986-11-19

    申请人: Hideomi Ishibe

    发明人: Hideomi Ishibe

    IPC分类号: C22C1/00

    CPC分类号: C22C1/00

    摘要: A method of making TiNi alloys is disclosed. The process includes forming a composite by providing in a sheathing container plural pieces of compound wire having Ti lineal wire made of Ti material and Ni material made to contact at least a portion of the surface of the Ti lineal wire. The composite is then subject to dimension-reduction, after which diffusion is effected to cause the production of a TiNi phase. The composite is removed from the sheathing container and cold-worked.

    摘要翻译: 公开了一种制备TiNi合金的方法。 该方法包括通过在护套容器中设置多个由Ti材料制成的Ti线状线材和与Ti线状线材的至少一部分表面接触的Ni材料形成复合材料。 然后将复合材料进行尺寸减小,之后进行扩散以引起TiNi相的生产。 将复合材料从护套容器中取出并进行冷加工。