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    • 44. 发明授权
    • Electrically heatable honeycomb body, in particular catalyst carrier
body, with internal support structures
    • 具有内部支撑结构的电加热蜂窝体,特别是催化剂载体主体
    • US5411711A
    • 1995-05-02
    • US31953
    • 1993-02-01
    • Helmut Swars
    • Helmut Swars
    • B01J35/02B01D53/86B01J35/00B01J35/04F01N3/20F01N3/28F01N13/02F02B1/04H05B3/10F01N3/26
    • B01J35/04B01J35/0033F01N13/009F01N3/2026F01N3/281H05B3/10F01N2330/02F02B1/04Y02T10/26
    • A honeycomb body includes an interior, two end surfaces, cross-sectional regions and a cross-sectional plane. At least partly structured sheet metal layers form a multiplicity of channels through which a fluid can flow. The channels extend from one of the end surfaces to the other. An insulating device subdivides the honeycomb body and extends from one of the end surfaces to the other for reducing electrical conductivity of the honeycomb body in each of the cross-sectional regions and developing at least one wound, electrically cohering conductive current path extending in the cross-sectional plane. Primarily metal support structures extend at least partly in the interior of the honeycomb body and retain the sheet metal layers. The insulating device may be at least one planar gap and the support structures may be stabilizers of the at least one planar gap extending at least intermittently parallel to the at least one planar gap, and/or the insulating device may be electrically insulating layers and the support structures may be carriers of the electrically insulating layers extending inside the electrically insulating layers.
    • 蜂窝体包括内部,两个端面,横截面区域和横截面。 至少部分结构化的金属薄片层形成多个通道,流体可通过该通道流动。 通道从一个端面延伸到另一个。 绝缘装置细分蜂窝体并从其中一个端表面延伸到另一个端面,以降低蜂窝体在每个横截面区域的导电性,并且展开至少一个在十字形中延伸的缠绕的电连接导电电流路径 横截面 主要的金属支撑结构至少部分地延伸到蜂窝体的内部并保持金属板层。 绝缘装置可以是至少一个平面间隙,并且支撑结构可以是至少一个延伸至少间断地平行于至少一个平面间隙的平面间隙的稳定器,和/或绝缘装置可以是电绝缘层和 支撑结构可以是在电绝缘层内延伸的电绝缘层的载体。
    • 45. 发明授权
    • Strip heater with predetermined power density
    • 带加热器具有预定的功率密度
    • US5352870A
    • 1994-10-04
    • US98916
    • 1993-07-29
    • Joseph P. DaughertyHarold C. WrightClement A. Berard, Jr.
    • Joseph P. DaughertyHarold C. WrightClement A. Berard, Jr.
    • F24H1/14H05B3/10H05B3/54
    • H05B3/54F24H1/142H05B3/10
    • A resistance strip heater includes a pair of elongated, mutually parallel electrical conductors or buses lying on a dielectric substrate. Each bus includes a conductive region extending toward the other conductor, and the locations of the conductive regions of the two buses alternate along the lengths thereof. An elongated resistance arrangement has its axis of elongation parallel to the buses, is physically supported between the buses, and is electrically connected to mutually adjacent ones of the conductive regions, so that the resistance arrangement is electrically connected across the buses. In a particular embodiment of the invention, the resistance arrangement is a plurality of elongated chip resistors arranged in an array. The substrate may be a polyimide sheet, and a corresponding cover sheet may be used. The strip heater can be cut virtually anywhere along its length without affecting its operability. Thus, the strip heater can be fabricated and stocked in long lengths, even by rolls, and be cut to any desired length as needed. Electrical power is applied to the power buses via crimped metal connectors or via access holes opened by removing perforated areas of the cover.
    • 电阻条加热器包括位于电介质基板上的一对细长的,相互平行的电导体或总线。 每个总线包括朝向另一导体延伸的导电区域,并且两个总线的导电区域的位置沿其长度交替。 细长的电阻布置具有平行于总线的伸长轴线,物理地支撑在总线之间,并且电连接到相互相邻的导电区域,使得电阻布置跨越总线电连接。 在本发明的特定实施例中,电阻装置是以阵列布置的多个细长片状电阻器。 基板可以是聚酰亚胺片,并且可以使用相应的覆盖片。 带状加热器可以沿其长度几乎在任何地方切割,而不影响其可操作性。 因此,带状加热器可以通过辊子制造和长期存放,并且根据需要被切割成任何期望的长度。 通过压接金属连接器或通过移除盖的穿孔区域而打开的通路孔将电力施加到电力总线。
    • 50. 发明授权
    • Resistance-heated boat for metal vaporization
    • 电阻加热船用于金属蒸发
    • US4446357A
    • 1984-05-01
    • US316464
    • 1981-10-30
    • Dennis W. Barshter
    • Dennis W. Barshter
    • C23C14/26F27B14/10F27D1/00F27D5/00H05B3/10C23C13/12
    • C23C14/26F27B14/10F27D1/0006F27D5/00H05B3/10
    • The resistance-heated boat of the present invention is comprised of a heating portion and a crucible portion separated by a heat conducting, substantially non-electrical conducting portion.The heating portion is fabricated of an electrically conductive material capable of being resistance heated to high temperatures. Mixtures of titanium diboride with boron nitride, aluminum nitride or silicon carbide typically provide electrical conductivity in the desired range. Zirconium diboride, mixtures of boron nitride, silicon nitride, aluminum nitride or titanium diboride, or mixtures thereof are also useful.The crucible portion of the boat provides a vaporization surface and is fabricated of materials selected for their ability to provide wettability by the metal to be vaporized, a desired chemical and physical resistance to the metal, or impurities in the metal, to be vaporized and to the vaporization atmosphere. Titanium diboride, zirconium diboride and mixtures thereof are eminently useful in providing a vaporization surface.The separating portion is formed of a heat-conducting, substantially non-electrical-conducting material. The separating portion may also be comprised entirely, or mixtures of, materials containing a major portion, of boron nitride, boron oxide, or mixtures thereof. A preferred material is boron nitride.
    • 本发明的电阻加热的船由加热部分和由导热的,基本上不导电的部分分开的坩埚部分组成。 加热部分由能够被加热到高温的电阻的导电材料制成。 二硼化钛与氮化硼,氮化铝或碳化硅的混合物通常在所需范围内提供导电性。 二硼化锆,氮化硼,氮化硅,氮化铝或二硼化钛的混合物,或其混合物也是有用的。 船的坩埚部分提供蒸发表面,并且由选择用于由要蒸发的金属提供润湿性的能力制成的材料,对金属的所需化学和物理耐受性,或待蒸发的金属中的杂质,以及待蒸发 蒸发气氛。 二硼化钛,二硼化锆及其混合物在提供汽化表面方面非常有用。 分离部分由导热的,基本上不导电的材料形成。 分离部分也可以完全包含,或者包含主要部分的材料的氮化硼,氧化硼或其混合物的混合物。 优选的材料是氮化硼。