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    • 1. 发明授权
    • Structure for supporting honeycomb unit of electrically-heated catalyst
apparatus
    • 用于支撑电加热催化剂装置的蜂窝单元的结构
    • US5866077A
    • 1999-02-02
    • US795224
    • 1997-02-05
    • Kazuhiro SakuraiTakuzou Kako
    • Kazuhiro SakuraiTakuzou Kako
    • B01J35/00B01J35/02B01J35/04F01N3/20F01N3/28F01N13/02F01N3/10
    • F01N3/2842B01J35/0033B01J35/04F01N13/0097F01N3/2026F01N3/281F01N2260/18F01N2330/02Y02T10/26
    • A honeycomb support structure of an electrically-heated catalyst apparatus is disclosed, in which a support member of retainers for preventing an electrically-heated catalyst moving backward is coupled to an outer cylinder while causing the support member to follow the thermal deformation of the outer cylinder thereby to suppress the deformation of the support member due to the thermal stress. A metal foil laminate having a corrugated foil and a tabular foil superposed one on the other is spirally wound to form a cylindrical honeycomb unit, which is accommodated in a metal outer cylinder and is heated by being supplied with power. The honeycomb unit support structure includes a plurality of ceramic bars and at least a support member having a plurality of recesses for holding the ceramic bars at such a position as to traverse the end surface of the honeycomb unit downstream of the exhaust gas flow and in such a manner as to follow the deformation of the outer cylinder. The structure of the support member that can follow the deformation can be realized by preparing a cylindrical metal plate and forming at least a gap in the cylindrical metal plate. Consequently, the honeycomb unit is prevented from telescoping, a uniform temperature distribution in the support member is assured, and the durability of the support member is improved.
    • 公开了一种电加热催化剂装置的蜂窝状支撑结构,其中用于防止向后移动的电加热催化剂的保持器的支撑构件联接到外筒,同时使支撑构件跟随外筒的热变形 从而抑制由于热应力引起的支撑构件的变形。 将具有波纹箔片和叠置在另一个上的片状箔片的金属箔层压体螺旋卷绕以形成容纳在金属外筒中并通过供电而加热的圆筒形蜂窝单元。 蜂窝单元支撑结构包括多个陶瓷棒和至少一个支撑构件,该支撑构件具有多个凹部,用于将陶瓷棒保持在使排气流下游的蜂窝单元的端面横越的位置 一种跟随外筒变形的方式。 可以跟随变形的支撑构件的结构可以通过制备圆柱形金属板并在圆柱形金属板中至少形成间隙来实现。 因此,蜂窝单元被防止伸缩,确保了支撑构件中均匀的温度分布,并且提高了支撑构件的耐久性。
    • 2. 发明授权
    • Process for multilayer blow molding
    • 多层吹塑成型工艺
    • US5460772A
    • 1995-10-24
    • US995261
    • 1992-12-22
    • Akira Ohta
    • Akira Ohta
    • B29C47/04B29C47/06B29C47/22B29C47/70B29C49/00B29C49/04B29C49/22
    • B29C47/062B29C47/0023B29C47/065B29C47/22B29C47/265B29C47/268B29C47/705B29C49/0073B29C49/22B29C49/04B29L2031/3044B29L2031/771
    • This invention provides a blow molding process for manufacturing multilayer hollow articles having sections different from one another in respect to the kind of resins, number of layers, and thickness of layers along the circumference in the horizontal section of an article with the narrowest of the sections in any one of the resin layers extending in a specified width along the longitudinal wall of an article and being capable of satisfying the sectional performance requirements, an apparatus, and said hollow articles. It also provides a process for manufacturing multilayer hollow articles with the wall thickness ratio of resin layers in each section varying along the longitudinal wall of an article or those with the sectional width in each resin layer varying along the longitudinal wall of an article, an apparatus, and said hollow articles. Hollow articles molded by the process and apparatus of this invention are particularly useful for automotive bumpers, the seats and backs of chairs, and boiler-room doors.
    • 本发明提供一种吹塑成型方法,用于制造具有彼此不同的部分的多层中空制品,所述多个中空制品相对于具有最窄部分的制品的水平部分中的树脂种类,层数和层的厚度, 在任何一个树脂层中,沿着制品的纵壁以特定的宽度延伸并且能够满足截面性能要求的装置和所述中空制品。 它还提供了一种用于制造多层中空制品的方法,其中每个部分中的树脂层的壁厚比沿着制品的纵向壁变化,或者每个树脂层中的截面宽度沿着制品的纵向壁变化, ,和所述中空制品。 通过本发明的方法和装置模制的空心物品对于汽车保险杠,座椅和椅子背部以及锅炉室门特别有用。
    • 5. 发明授权
    • Sub-merged welding method for high toughness welded metal
    • 用于高韧性焊接金属的合并焊接方法
    • US3919517A
    • 1975-11-11
    • US34716673
    • 1973-04-02
    • NIPPON STEEL CORP
    • ISHIZAKI KEIZOFUJIMORI SIGEO
    • B23K35/30B23K35/362B23K9/18
    • B23K35/3053B23K35/362
    • This invention related to a sub-merged arc welding method which comprises applying one-side or each-side one pass welding of a steel high notch toughness using a high basicity fusion-type flux containing more than 10% of CaF2 and having a basicity (0.108 CaO (%) + 0.068 MnO (%) + 0.10 MgO (%) / 0.105 SiO2 (%) +0.002 Al2O3 (%))of 1.2 to 1.8 in combination with a welding wire comprising not more than 0.10% of carbon, not more than 0.50% of silicon, 0.8 to 2.4% of manganese, not more than 0.80% of molybdenum, 0.30 to 0.60% of titanium, less than 0.0020% of boron, with the balance being iron and unavoidable impurities to produce a weld metal with very high notch ductility.
    • 本发明涉及一种副合并电弧焊接方法,该方法包括使用含有大于10%的CaF 2并且具有碱性{Al 2 O 3的高碱度熔融型焊剂的钢高缺口韧性的单面或每面一次焊接, 0.108 CaO(%)+ 0.068 MnO(%)+ 0.10 MgO(%)/ 0.105 SiO2(%)+0.002 Al2O3(%)}为1.2〜1.8,与不超过0.10% 超过0.50%的硅,0.8至2.4%的锰,不大于0.80%的钼,0.30至0.60%的钛,小于0.0020%的硼,余量为铁和不可避免的杂质以产生具有 非常高的缺口延展性。
    • 10. 发明授权
    • Method for controlling the profile of workpieces on rolling mills
    • 用于控制轧制工件工作简档的方法
    • US3882709A
    • 1975-05-13
    • US40635273
    • 1973-10-15
    • NIPPON STEEL CORP
    • KAWAMOTO TOSHIHARUITOH YOJIHIYOUDO KOUJIFUKUSHIMA KENYA
    • B21B37/28B21B1/26B21B1/34B21B27/10B21B37/00B21B37/38B21B1/22
    • B21B37/38B21B1/26B21B1/34B21B2027/103
    • There is described a method for controlling the profile of a workpiece on a rolling mill, wherein the workpiece is imparted with a predetermined profile in the roughing stage which is suitable for further control in the following finishing stage. In the finishing stage, the desired profile of the workpiece is attained by adjustment of one or a combination of factors including modifying the rolling loads of the respective roller stands preceding the last stand, cooling of the rolls, and changing the rolling pitch. The final shape control of the workpiece is carried out on the last stand. The adjustment of the rolling load is performed by simulating the desired workpiece profile by means of an even ordered function whose constants represent the load determining factors and by adjusting such constants in accordance with the desired changes in the load conditions.
    • 描述了一种用于在轧机上控制工件的轮廓的方法,其中在粗轧阶段赋予工件预定的轮廓,其适于在后续精加工阶段进一步控制。 在精加工阶段,通过调整一个或多个因素的组合来实现所需的工件轮廓,包括修改最后一个立场之前的各个辊架的滚动载荷,冷却轧辊,以及改变轧制间距。 工件的最终形状控制在最后的支架上进行。 轧制载荷的调整通过利用常数表示载荷确定因子的偶数阶函数并根据负载条件的期望变化调整这些常数来模拟期望的工件轮廓。