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    • 1. 发明授权
    • Apparatus for detecting a condition of burning in an internal combustion
engine
    • US6104195A
    • 2000-08-15
    • US832201
    • 1997-04-08
    • Tohru YoshinagaTokio KohamaHiroshi YoritaYasuyuki SatouMasao KanoToshiaki Yamaura
    • Tohru YoshinagaTokio KohamaHiroshi YoritaYasuyuki SatouMasao KanoToshiaki Yamaura
    • F02P17/12G01N27/62G01N27/68
    • G01N27/62G01N27/68
    • An apparatus for detecting a condition of burning in an internal combustion engine includes a pair of opposed electrodes provided in a combustion chamber of the engine, and an AC voltage applying device for applying an AC voltage between the opposed electrodes. A current detecting device is operative for detecting a current flowing between the opposed electrodes. A current generating means for generating a current-representing signal depending on the detected current, the current generating means having a differentiating circuit for differentiating the AC voltage into the capacitance-current representing signal. In another aspect of this invention, the apparatus further comprises calculating means for calculating ratios between a parameter represented by the burning-ion current representing signal and a parameter represented by a signal depending on the AC voltage applied between the opposed electrodes. A waveform processing device is operative for removing the capacitive current component from the current-representing signal to extract a burning ion current component, and for generating a burning-ion-current representing signal depending on the extracted burning ion current component. The capacitive current component occurs in correspondence with the AC voltage. One aspect of the invention utilizes calculating means for calculating a ratio between a parameter represented by the burning-ion-current representing signal and a parameter represented by a signal depending on the AC voltage applied between opposed electrodes. The burning ion current component corresponds to a burning ion current which flows between the opposed electrodes. A burning condition detecting device is operative for detecting a condition of burning in the combustion chamber of the engine on the basis of the burning-ion-current representing signal generated by the waveform processing device. The waveform processing device includes an integration processing device for integrating the current-representing signal to generate the burning-ion-current representing signal.
    • 8. 发明授权
    • Process of producing metal catalyst carrier
    • 生产金属催化剂载体的工艺
    • US5791043A
    • 1998-08-11
    • US651937
    • 1996-05-21
    • Shinichi OkabeTokio KohamaTohru YoshinagaKiyohiko WatanabeYasuyuki Kawabe
    • Shinichi OkabeTokio KohamaTohru YoshinagaKiyohiko WatanabeYasuyuki Kawabe
    • B01J35/04F01N3/28B23P15/00
    • F01N3/281B01J35/04F01N3/2821Y10T156/1023Y10T29/49345
    • To enable bonding flat and corrugated sheets at their contact points by laser welding or other welding methods while laminating and spirally winding the sheets, a process of producing a metal catalyst carrier for exhaust gas purification in the form of a metal honeycomb column composed of flat and corrugated metal sheets alternately laminated, wound together, and bonded to each other, the process includes the steps of: forming plural openings in a flat sheet of a metal; laminating one piece of the flat sheet having the openings formed therein and one piece of a corrugated sheet of a metal and bonding the laminated flat and corrugated sheets to each other to form a composite sheet; and spirally winding the composite sheet around an axis to form columnar turns each composed of an outer flat layer composed of the flat sheet and an inner corrugated layer composed of the corrugated sheet, while bonding an outer turn and an adjoining inner turn by welding an inner corrugated layer of the outer turn, in a portion exposed in one of the openings of an outer flat layer of the outer turn, to an outer flat layer of the adjoining inner turn through said one of the openings to bond the outer turn and the adjoining inner turn.
    • 为了通过激光焊接或其他焊接方法在平坦和波纹状片材的接触点处粘合并层压和螺旋卷绕片材,制造金属催化剂载体,该金属催化剂载体以金属蜂窝状柱体形式由扁平和 波纹状金属板交替层压,缠绕在一起并彼此粘合,该方法包括以下步骤:在金属的平板中形成多个开口; 将其中形成有开口的平片的一片层压成一片金属波纹片,并将叠层的平坦波纹片彼此粘合以形成复合片; 并且将复合片材绕轴线螺旋地卷绕,形成由平板构成的外平坦层和由波纹片构成的内波纹状层构成的柱状匝,同时通过焊接内侧匝 在外露头的外平坦层的一个开口中露出的部分的外部弯曲部的波纹层通过所述一个开口连接到邻接的内部转弯的外部平坦层,以将外部转弯和相邻的 内圈
    • 9. 发明授权
    • Evaporative emission control system for automotive vehicle
    • 汽车蒸发排放控制系统
    • US5692480A
    • 1997-12-02
    • US698454
    • 1996-08-16
    • Naoya KatoHideaki ItakuraTohru YoshinagaTokio KohamaKatuo Azegami
    • Naoya KatoHideaki ItakuraTohru YoshinagaTokio KohamaKatuo Azegami
    • B60K15/035B60K15/04F02M25/08F02M33/02
    • F02M25/089B60K15/03504B60K15/03519B60K15/04
    • An evaporative emission control system which may be used in automotive vehicles is disclosed. The evaporative emission control system includes a canister, an inlet passage, a fuel vapor passage, an outlet valve, and an inlet valve. The air inlet passage is exposed at an end to the atmosphere and connected at the other end to the canister for drawing fresh air into the canister. The fuel vapor passage communicates between the canister and a fuel tank. When a pressure in the fuel tank is increased above a given level so that a difference in internal pressure between the fuel tank and the canister reaches a first value, the outlet valve establishes communication between the fuel tank and the canister to allow fuel vapor evaporated within the fuel tank to be drawn into the canister through the fuel vapor passage. Alternatively, when the pressure in the fuel tank is decreased below a given level so that a difference in internal pressure between the fuel tank and the canister reaches a second value, the inlet valve establishes communication between the fuel tank and the canister to allow the air to be drawn into the canister through the air inlet passage. The second value is so determined as to prevent the amount of fuel vapor generated within the fuel tank from being increased above a given value.
    • 公开了一种可用于汽车的蒸发排放控制系统。 蒸发排放控制系统包括罐,入口通道,燃料蒸气通道,出口阀和入口阀。 空气入口通道在大气的端部露出,另一端与罐连接,用于将新鲜空气吸入罐中。 燃料蒸汽通道在罐和燃料箱之间连通。 当燃料箱中的压力增加到给定水平以上,使得燃料箱和罐之间的内部压力差达到第一值时,出口阀建立燃料箱和罐之间的连通,以允许燃料蒸汽在其内蒸发 燃料箱通过燃料蒸汽通道被吸入罐中。 或者,当燃料箱中的压力降低到给定水平以下,使得燃料箱和罐之间的内部压力差达到第二值时,入口阀建立燃料箱和罐之间的连通,以允许空气 通过进气通道被吸入到罐中。 第二个值被确定为防止在燃料箱内产生的燃料蒸汽的量增加到高于给定值。