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    • 1. 发明授权
    • Catalytic converter for a small engine and method for manufacturing the same
    • 用于小型发动机的催化转化器及其制造方法
    • US06403039B1
    • 2002-06-11
    • US09309181
    • 1999-05-10
    • Rolf BrückWolfgang Maus
    • Rolf BrückWolfgang Maus
    • F01N328
    • B01J35/04F01N3/281F01N3/2842F01N3/2885F01N2330/40F01N2450/02
    • A catalytic converter for a small engine and a method for manufacturing the same include a honeycomb body coated with catalytically active material and made from at least partly structured layers of sheet metal with channels for the passage of exhaust gas. In order to reduce manufacturing costs, the honeycomb body is placed in a silencer housing disposed in the proximity of the engine, in such a way that at least a predominant portion of exhaust gas of the small engine has to flow through the honeycomb body. The honeycomb body is a layered, wound or folded stack of sheet metal layers, which is squeezed into the silencer housing, plastically deforming at least 10% and preferably 20 to 30% of the channels, so that it completely fills at least a partial volume of the housing. Due to the considerable plastic distortion of a part of the channels, there is also a high degree of elastic deformation in the rest of the honeycomb body, which also ensures the stability of the honeycomb body, even under varying thermal stresses.
    • 用于小型发动机的催化转化器及其制造方法包括涂覆有催化活性材料并由至少部分结构化的金属板层制成的蜂窝体,其具有用于废气通过的通道。 为了降低制造成本,蜂窝体被放置在设置在发动机附近的消音器壳体中,使得小型发动机的排气的至少主要部分必须流过蜂窝体。 蜂窝体是分层的,卷绕的或折叠的钣金层叠,其被挤压到消音器壳体中,塑性变形至少10%,优选地为通道的20%至30%,使得其完全填充至少部分体积 的住房。 由于一部分通道的塑性变形相当大,蜂窝体的其余部分也存在高度的弹性变形,即使在不同的热应力下也能保证蜂窝体的稳定性。
    • 2. 发明授权
    • Double-walled housing, in particular for exhaust gas catalytic converters of motor vehicles and method of producing a double-walled housing
    • 双壁外壳,特别是用于汽车的废气催化转化器和生产双壁外壳的方法
    • US06334981B1
    • 2002-01-01
    • US08879594
    • 1997-06-20
    • Ludwig Wieres
    • Ludwig Wieres
    • F01N328
    • F01N3/2853F01N3/2864F01N13/14F01N2450/02F01N2450/22F01N2470/26F01N2510/02Y02A50/2322
    • A double-walled housing, in particular for exhaust gas catalytic converters of motor vehicles, includes an inner jacket and an outer jacket approximately concentrically surrounding and spaced apart from the inner jacket. The inner and outer jackets rest tightly against one another at both end surfaces. The inner jacket is kept under compressive strain at least at two end regions by constrictions of the outer jacket. The outer jacket has embossed features oriented toward the inner jacket. The housing is produced by deforming the inner jacket by rolling a metal sheet into cylindrical or conical form while maintaining a parting line. The outer jacket is deformed by rolling a metal sheet into cylindrical or conical form and by connecting mutually meeting edges by a joining technique. The inner jacket is disposed in the outer jacket and the outer jacket is plastically deformed inward over its entire circumference on both end surfaces in such a way that the inner jacket is kept under compressive strain. The outer jacket is provided beforehand or simultaneously with embossed features oriented toward the inner jacket.
    • 特别是用于机动车辆的废气催化转化器的双层壁壳体包括大致同心地围绕并与内护套隔开的内护套和外护套。 内外套在两个端面处彼此紧紧地靠在一起。 内护套至少在两个端部区域处受到外护套收缩的压缩应变。 外护套具有朝向内护套定向的压花特征。 通过将金属片材轧制成圆柱形或圆锥形,同时保持分型线,使内套变形来制造外壳。 通过将金属板轧制成圆柱形或圆锥形并通过连接技术连接相互接合的边缘而使外套变形。 内护套设置在外护套中,并且外护套在两个端表面上在其整个圆周上向内塑性变形,使得内护套保持在压缩应变下。 预先或同时地提供外护套与朝向内护套定向的压花特征。
    • 4. 发明授权
    • Diffusion bonded metallic catalyst carrier and production thereof
    • 扩散接合金属催化剂载体及其生产
    • US06761857B1
    • 2004-07-13
    • US09423944
    • 2000-02-22
    • Yasuo TakahashiTadayuki OtaniKazutoshi IwamiMasayuki Kasuya
    • Yasuo TakahashiTadayuki OtaniKazutoshi IwamiMasayuki Kasuya
    • F01N328
    • B01J35/04B23K20/02B23K2101/02B23K2103/05F01N3/281F01N13/0097F01N2330/04F01N2330/321F01N2330/322F01N2450/22Y10T428/1234
    • A honeycomb body, which is composed in such a manner that a strip of corrugated foil made of heat-resistant stainless steel containing aluminum and a strip of flat foil made of stainless steel are alternately wound or laminated on each other, is incorporated into an outer cylinder made of metal and integrated into one body by means of diffusion bonding, so that a diffusion bonded metallic catalyst carrier can be formed. Surface roughness of the strip of foil after the completion of diffusion bonding is 0.001 to 2.0 &mgr;m when it is expressed by center line average height Ra, and no sintered bridges are formed at both end portions of the diffusion bonded section in the longitudinal direction. The catalyst carrier is manufactured in a condition so that &lgr;b, which is defined by &lgr;b=6.8×10−12×&dgr;f−1×F1/2×Ra−1/2×T1/4×exp(15000/T)×b1/2, can be in a range from 8 to 20 where thickness of the strip of foil is &dgr;f (m), average roughness of the foil surface is Ra (m), back tension in the case of winding is F (kgf), contact width of the piece of flat foil with the piece of corrugated foil is b (m), heat treatment temperature is T (K), and degree of vacuum is Pout (Pa), under the condition that 7.52×109×exp(−35000/T)≧8×Pout.
    • 一种蜂窝体,其特征在于,将含有铝的耐热不锈钢的波纹状箔条和由不锈钢制成的平箔条彼此交替地卷绕或层叠而成的外壳 由金属制成的圆筒,通过扩散接合而结合成一体,从而可以形成扩散接合的金属催化剂载体。 扩散接合完成后的箔条的表面粗糙度在以中心线平均高度Ra表示时为0.001〜2.0μm,在扩散接合部的长度方向的两端部不形成烧结桥。 催化剂载体的制造条件使得由万能片的厚度为(m),箔表面的平均粗糙度为Ra(m),由 卷绕情况下的张力为F(kgf),平片箔与波纹箔片的接触宽度为b(m),热处理温度为T(K),真空度为Pout(Pa) ,在7.52×10 9×exp(-35000 / T)> = 8×Pout的条件下。
    • 6. 发明授权
    • Heater unit
    • 加热器单元
    • US06423276B1
    • 2002-07-23
    • US09161502
    • 1998-09-28
    • Fumio Abe
    • Fumio Abe
    • F01N328
    • F01N3/2875F01N3/2013Y02A50/2322Y02T10/26
    • A heater unit includes a metallic casing, and a honeycomb heater held in the casing via a metallic holding member, comprising a metallic honeycomb structure having a large number of parallel passages extending in the direction of the flow of an exhaust gas passing through the heater unit and at least one electrode for electrical heating of the honeycomb structure, attached to the honeycomb structure. In the heater unit, the holding member has such a structure as (1) is fitted to part of the outer surface of the honeycomb heater to allow the honeycomb heater to have a stable shape and (2) substantially blocks the flow path of exhaust gas between the honeycomb heater and the casing. This heater unit can withstand severe operating conditions such as experienced in automobiles; moreover, in this heater unit, the by-pass flow of exhaust gas is made substantially zero and the whole exhaust gas can pass through the honeycomb heater.
    • 加热器单元包括金属壳体和通过金属保持构件保持在壳体中的蜂窝式加热器,其包括金属蜂窝结构体,该金属蜂窝结构体具有沿着通过加热器单元的排气流动方向延伸的大量平行通道 以及至少一个用于蜂窝结构的电加热的电极,附接到蜂窝结构体。 在加热器单元中,保持构件具有如下结构:(1)安装在蜂窝式加热器的外表面的一部分上,以使蜂窝式加热器具有稳定的形状,并且(2)基本上阻挡废气流路 蜂窝式加热器与壳体之间。 该加热器单元可承受诸如汽车经验的严苛操作条件; 此外,在该加热器单元中,排气的旁通流大致为零,整个排气可以通过蜂窝式加热器。
    • 7. 发明授权
    • Method of producing a catalytic converter
    • 生产催化转化器的方法
    • US06381843B1
    • 2002-05-07
    • US09629164
    • 2000-07-31
    • Tohru IrieMasashi Ota
    • Tohru IrieMasashi Ota
    • F01N328
    • F01N13/18F01N3/2853F01N3/2857F01N2450/02Y10T29/49345Y10T29/49925Y10T29/49927
    • A method of producing a catalytic converter comprises the steps of (1) providing a shock absorbent member around an outer periphery of a catalyst substrate, (2) inserting the catalyst substrate and the shock absorbent member into a cylindrical workpiece, fixing the cylindrical workpiece to prevent the cylindrical workpiece from being rotated about a longitudinal axis thereof, and (3) spinning at least a portion of the cylindrical workpiece covering at least a portion of the shock absorbent member, by means of a plurality of spinning rollers, which are evenly positioned around the outer periphery of the cylindrical workpiece, and which are revolved about the axis of the cylindrical workpiece along a common circular locus, and moved in a radial direction of the cylindrical workpiece, whereby the cylindrical workpiece and the shock absorbent member are reduced in diameter, so that the catalyst substrate is securely held in the cylindrical workpiece.
    • 一种催化转化器的制造方法,其特征在于,包括以下步骤:(1)在催化剂基材的外周附近设置减震部件,(2)将所述催化剂基板和所述减震部件插入圆筒状工件,将所述圆筒状工件固定在 防止圆柱形工件围绕其纵向轴线旋转,和(3)通过多个均匀定位的多个纺丝辊使至少一部分圆筒形工件旋转以覆盖至少一部分冲击吸收件, 围绕圆筒形工件的外周围绕着圆筒形工件的轴线沿共同的圆形轨迹旋转,并沿着圆柱形工件的径向方向移动,由此圆柱形工件和减震构件直径减小 ,使得催化剂基板牢固地保持在圆筒形工件中。