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    • 6. 发明授权
    • Spark plug with improved seal
    • 火花塞具有改进的密封
    • US09407069B2
    • 2016-08-02
    • US14822159
    • 2015-08-10
    • FEDERAL-MOGUL IGNITION COMPANY
    • Keith FirstenbergWilliam J. Walker, Jr.
    • H01T13/22H01T13/08H01T21/02C03C3/066C03C3/091C03C4/14H01T13/34
    • H01T13/08C03C3/066C03C3/091C03C4/14H01T13/34H01T21/02
    • An electrically conductive glass seal for providing a hermetic bond between an electrically conductive component and an insulator of a spark plug is provided. The glass seal is formed by mixing glass frits, binder, expansion agent, and electrically conductive metal particles. The glass frits can include silica (SiO2), boron oxide (B2O3), aluminum oxide (Al2O3), bismuth oxide (Bi2O3), and zinc oxide (ZnO); the binder can include sodium bentonite or magnesium aluminum silicate, polyethylene glycol (PEG), and dextrin; the expansion agent can include lithium carbonate; and the electrically conductive particles can include copper. The finished glass seal includes the glass in a total amount of 50.0 to 85.0 weight (wt. %), and electrically conductive metal particles in an amount of 15.0 to 50.0 wt. %, based on the total weight of the glass seal.
    • 提供一种用于在导电部件和火花塞的绝缘体之间提供气密接合的导电玻璃密封件。 玻璃密封通过混合玻璃料,粘合剂,膨胀剂和导电金属颗粒而形成。 玻璃料可以包括二氧化硅(SiO 2),氧化硼(B 2 O 3),氧化铝(Al 2 O 3),氧化铋(Bi 2 O 3)和氧化锌(ZnO)。 粘合剂可以包括钠膨润土或硅酸镁铝,聚乙二醇(PEG)和糊精; 膨胀剂可以包括碳酸锂; 并且导电颗粒可以包括铜。 成品玻璃密封件包括总量为50.0至85.0重量(wt。%)的玻璃,并且导电金属颗粒的量为15.0至50.0wt。 %,基于玻璃密封件的总重量。
    • 7. 发明授权
    • Ceramic for ignition device insulator with low relative permittivity
    • 具有低相对介电常数的点火装置绝缘子陶瓷
    • US09054502B1
    • 2015-06-09
    • US14452802
    • 2014-08-06
    • Federal-Mogul Ignition Company
    • William J. Walker, Jr.
    • C04B35/195H01T13/20H01T13/38
    • H01T13/20C04B35/195C04B2235/3208C04B2235/3418C04B2235/3463C04B2235/349C04B2235/80C04B2235/9607H01T13/38H01T21/02
    • A ceramic insulator for surrounding an electrode of an ignition device, such as a corona igniter or spark plug, is provided. The insulator is formed of a ceramic material including alumina in an amount of 28 to 38 wt. %, silica in an amount of 57 to 67 wt. %, and calcium oxide in an amount of 3 to 7 wt. %, based on the total weight of the ceramic material. The ceramic insulator is typically formed by firing a mixture of Kaolin, calcium carbonate, and silica, wherein the calcium carbonate acts as a flux during firing. The ceramic material has a relative permittivity of about 5.5 to 6.5 and thus improves the electrical efficiency of the ignition device. The ceramic material is also capable of withstanding temperatures of 900 to 1000° C. and has excellent thermal shock resistance, making it suitable for use in internal combustion engines.
    • 提供用于围绕点火装置的电极的陶瓷绝缘体,例如电晕点火器或火花塞。 绝缘体由包含氧化铝的陶瓷材料形成,其量为28〜38重量%。 %,二氧化硅的量为57〜67重量%。 %,和3〜7重量%的氧化钙。 %,基于陶瓷材料的总重量。 通常通过焙烧高岭土,碳酸钙和二氧化硅的混合物来形成陶瓷绝缘体,其中碳酸钙在烧制过程中充当助熔剂。 陶瓷材料的相对介电常数为约5.5至6.5,因此提高了点火装置的电效率。 陶瓷材料也能耐受900〜1000℃的温度,具有优异的耐热冲击性,适用于内燃机。
    • 8. 发明授权
    • Spark plug with ceramic electrode tip
    • 带陶瓷电极头的火花塞
    • US08933617B2
    • 2015-01-13
    • US14085293
    • 2013-11-20
    • Federal-Mogul Ignition Company
    • William J. Walker, Jr.
    • H01T13/20H01T13/39H01T21/02
    • H01T13/39H01T13/20H01T21/02
    • A spark plug (20) for igniting a mixture of fuel and air of an internal combustion engine comprises a center electrode (22) and a ground electrode (24). At least one of the electrodes (22, 24) includes a body portion (28, 30) formed of thermally conductive material and a firing tip (32, 34) disposed on the body portion (28, 30). The firing tip (32, 34) includes a ceramic material, providing an exposed firing surface (36, 38). The ceramic material is an electrically conductive, monolithic ceramic material. Examples of preferred ceramic materials include titanium diboride, silicon carbide, ternary carbide, and ternary nitride. The ceramic material can also include oxides, borides, nitrides, carbides, silicides, or MAX phases.
    • 用于点燃内燃机的燃料和空气的混合物的火花塞(20)包括中心电极(22)和接地电极(24)。 电极(22,24)中的至少一个包括由导热材料形成的主体部分(28,30)和设置在主体部分(28,30)上的击发尖端(32,34)。 烧制尖端(32,34)包括陶瓷材料,提供暴露的烧制表面(36,38)。 陶瓷材料是导电的整体陶瓷材料。 优选的陶瓷材料的实例包括二硼化钛,碳化硅,三元碳化物和三元氮化物。 陶瓷材料还可以包括氧化物,硼化物,氮化物,碳化物,硅化物或MAX相。