序号 | 专利名 | 申请号 | 申请日 | 公开(公告)号 | 公开(公告)日 | 发明人 |
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161 | Ecran de protection thermique et acoustique d'un composant de véhicule | EP06291553.3 | 2006-10-04 | EP1772604B1 | 2012-02-29 | Choquart, Francois; LEMAIRE, Dominique; Grignon, Guillaume; LANFRANCHINI, Jean-Luc |
162 | Exhaust gas purifying apparatus and method for manufacturing exhaust gas purifying apparatus | EP10157019.0 | 2010-03-19 | EP2236782B1 | 2011-05-25 | Mitani, Kenichi; Eguchi, Masayuki; Yanagisawa, Tatsunari |
163 | APPARATUS AND METHODS OF FORMING SOUND ATTENUATING LAMINATES HAVING FIBER AND MASS LAYERS | EP03737171 | 2003-06-17 | EP1556558A4 | 2010-07-21 | ALLISON T J; GRIFFIN BILL; OWENBY CARROLL |
164 | Mat for mounting a pollution control monolith in a pollution control device for the treatment of exhaust gas of a diesel engine powered machine | EP02078103.5 | 2002-07-31 | EP1388649B1 | 2008-12-31 | Merry, Richard P.; Kunze, Ulrich; Swan, Mike D. |
165 | Ecran de protection thermique et acoustique d'un composant de véhicule | EP06291553.3 | 2006-10-04 | EP1772604A1 | 2007-04-11 | Choquart, Francois |
L'invention concerne un écran (1) de protection thermique et acoustique d'un composant de véhicule automobile, vis à vis de la ligne d'échappement, comprenant, associées en superposition entre elles: |
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166 | SOUND ABSORBENT | EP01967894.5 | 2001-09-17 | EP1319156B1 | 2006-03-22 | ABOM, Mats; JOHANSSON, Claes-Göran |
A light absorbent for hygienic spaces comprising a porous mat. The normalized flow resistance of the mat is in the interval of 0.5-2. | ||||||
167 | MUFFLER AND CATALYTIC CONVERTER DEVICES | EP04728502.8 | 2004-04-21 | EP1616083A1 | 2006-01-18 | LI, Chunbo Dormitory mail-stop; CHENG, Hongwei Dormitory mail-stop; WANG, Chuanfu Dormitory mail-stop; DONG, Junqing Dormitory mail-stop |
This invention discloses of a muffler and catalytic converter device, and in addition, a muffler, and a catalytic converter, wherein each type of device uses a porous metal that may function as the sound absorption material for the muffler part of the device, and the substrate for the catalyst coating for the catalytic converter part of the device. In order to be effectiveness as a substrate and to have good sound absorption, the porous metal has a pore density of between 80% and 98% and a pore diameter of between 50μm and 1200μm. The porous metal provides structural strength, and is resistant to corrosion, heat, and impact from exhaust flow. It is also easy and cheap to fabricate. For the muffler and catalytic converter device, by combining the customary two devices into one, the cost of production as well as the cost of installation for the device is lowered. Therefore, the muffler and catalytic converter device, muffler, and catalytic converter each having the porous metal that serves functions including good sound absorption characteristics over a wide spectrum of frequencies, that is efficient in the removal of environmental contaminants from the exhaust, and that is durable, and easy and cheap to manufacture for mass production. | ||||||
168 | Mat for mounting a pollution control monolith in a pollution control device for the treatment of exhaust gas of a diesel engine powered machine | EP02078103.5 | 2002-07-31 | EP1388649A1 | 2004-02-11 | Merry, Richard P.; Kunze, Ulrich; Swan, Mike D. |
The present invention provides a pollution control device suitable for use with a diesel engine, comprising a diesel pollution control monolith arranged in a metallic casing with non-woven mat disposed between the metallic casing and the diesel pollution control monolith, said non-woven mat being a non-intumescent mat comprising at least 90% by weight based on the total weight of the mat of chopped magnesium aluminium silicate glass fibers that have a number average diameter of 5µm or more and a length of 0.5 to 15cm, said glass fibers being needle punched or stitch bonded and said mat being free or substantially free of organic binder. |
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169 | FILTER AND MEANS FOR REGENERATION THEREOF | EP92900108 | 1991-10-11 | EP0505563A4 | 1993-03-03 | NIXDORF, RICHARD, D. |
170 | Doppelwandhohlkörper mit Zwischenlage und Verfahren zur Herstellung desselben | EP91250031.1 | 1991-02-06 | EP0441466A3 | 1991-12-18 | Vogt, Gerd, Dr.; Becker, Ulrich, Dr.-Ing.; Janssen, Manfred, Dr. Ing. |
Die Erfindung betrifft einen Doppelwandhohlkörper mit einem inneren und äußeren Hohlkörper aus einem metallischen Werkstoff und einer dicht am inneren Hohlkörper und am äußeren Hohlkörper anliegenden Zwischenlage. Um einen verbesserten Doppelwandhohlkörper anzugeben, bei dem die herkömmlichen Nachteile vermieden werden und der besonders als schalldämmendes Konstruktionselement im Kraftfahrzeugbau geeignet ist, wird vorgeschlagen, daß der kraftschlüssig mit dem äußeren Hohlkörper (5) verbundene innere Hohlkörper (2) über den ganzen, Umfang vom äußeren Hohlkörper (5) durch die Zwischenlage (3) aus einem nichtmetallischen, schalldämmenden Werkstoff getrennt ist und mindestens über eine Abschnittslänge (6,7) des Doppelwandhohlkörpers (1) die beiden Hohlkörper (2,5) ohne Zwischenlage (3) direkt zur Anlage kommen. |
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171 | Doppelwandhohlkörper mit Zwischenlage und Verfahren zur Herstellung desselben | EP91250031.1 | 1991-02-06 | EP0441466A2 | 1991-08-14 | Vogt, Gerd, Dr.; Becker, Ulrich, Dr.-Ing.; Janssen, Manfred, Dr. Ing. |
Die Erfindung betrifft einen Doppelwandhohlkörper mit einem inneren und äußeren Hohlkörper aus einem metallischen Werkstoff und einer dicht am inneren Hohlkörper und am äußeren Hohlkörper anliegenden Zwischenlage. Um einen verbesserten Doppelwandhohlkörper anzugeben, bei dem die herkömmlichen Nachteile vermieden werden und der besonders als schalldämmendes Konstruktionselement im Kraftfahrzeugbau geeignet ist, wird vorgeschlagen, daß der kraftschlüssig mit dem äußeren Hohlkörper (5) verbundene innere Hohlkörper (2) über den ganzen, Umfang vom äußeren Hohlkörper (5) durch die Zwischenlage (3) aus einem nichtmetallischen, schalldämmenden Werkstoff getrennt ist und mindestens über eine Abschnittslänge (6,7) des Doppelwandhohlkörpers (1) die beiden Hohlkörper (2,5) ohne Zwischenlage (3) direkt zur Anlage kommen. |
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172 | SILENCER FOR COMBUSTION EXHAUST GAS | EP89903246 | 1989-03-01 | EP0396753A4 | 1991-03-27 | YOSHIKAWA, HIDEO; TAKEUCHI, KATSUYOSHI; ISHIKAWA, HIROMI |
173 | Exhaust system | EP85300041.2 | 1985-01-03 | EP0151507B1 | 1988-12-28 | Schultz, Richard Dehane |
174 | Exhaust system | EP85300042 | 1985-01-03 | EP0150899A3 | 1985-08-21 | Schultz, Richard Dehane |
® A reverse type silencer (10) comprises a pair of cylindrical portions (12, 14) in which their meeting ends are pinched and overlapped. A resonance silencer (12) is located behind the silencer (10) and has a plurality of notches (24) arranged spirally. Shells (26, 30) are provided for the silencer. Sound waves entering into the silencer are reflected and attenuated resulting in dampening of noise before emission. |
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175 | Exhaust system | EP85300042.0 | 1985-01-03 | EP0150899A2 | 1985-08-07 | Schultz, Richard Dehane |
® A reverse type silencer (10) comprises a pair of cylindrical portions (12, 14) in which their meeting ends are pinched and overlapped. A resonance silencer (12) is located behind the silencer (10) and has a plurality of notches (24) arranged spirally. Shells (26, 30) are provided for the silencer. Sound waves entering into the silencer are reflected and attenuated resulting in dampening of noise before emission. |
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176 | 정온 발열체를 포함하는 선택적 촉매 환원 장치용 환원제 히팅 장치 | KR1020160146870 | 2016-11-04 | KR1020180050100A | 2018-05-14 | 최병철; 김태욱 |
본발명은정온발열체를포함하는선택적촉매환원장치용환원제히팅장치에 관한것으로서, 본발명의제1측면에따르면, 금속전열확산판; 상기전열확산판적어도일 면에부착형성되는하나이상의정온발열체; 및상기전열확산판및 상기정온발열체외면에코팅되는절연층;을제공한다. | ||||||
177 | 루즈-필 단열식 배기가스 처리 장치 및 제조 방법 | KR1020157016428 | 2013-11-20 | KR1020150087381A | 2015-07-29 | 라탐,루스안; 알시니,윌리엄브이.; 고린,마이클에이.; 토제우스키,마이클조셉; 프레이스,스티븐에이.; 크루에스너,마크이스트; 살란타,가브리엘에스.; 메이어스,스테판조 |
배기가스처리장치는외층, 외층내에적어도부분적으로배치되는내층, 및외층과내층사이의체적내에배치되는루즈-필단열재를포함하되, 섬유매트가외층과내층사이에배치되며, 외층과내층사이의체적으로부터루즈-필단열재의손실을적어도부분적으로방지하는배리어를형성하고, 제조방법은내층과외층사이의체적공간내에루즈-필단열재를배치하는단계, 및외층과내층사이의체적공간으로부터루즈-필단열재의손실을적어도부분적으로방지하는배리어를형성하기위해외층과내층사이에섬유매트를위치시키는단계를포함한다. | ||||||
178 | 흡수 소음기 | KR1020100081064 | 2010-08-20 | KR1020110021667A | 2011-03-04 | 시몬브라우티함; 프롤리히스테판; 르네포스; 토르슈텐블루메 |
PURPOSE: An absorption muffler is provided to maintain improved performance while in operation and ensure high absorption efficiency and heat resistance. CONSTITUTION: An absorption muffler comprises a housing(20) and metal foam(30). The housing has an internal space(21) where a flow channel(10) formed of a perforated pipe(11) passes through between an inlet(22) and an outlet(23). The metal foam is formed with air pores of one or more layers which surround the flow channel within the housing. | ||||||
179 | 성형 3차원 절연체 | KR1020057013418 | 2004-01-22 | KR1020050100632A | 2005-10-19 | 브라운레이터,칼,제이.; 곤잘레즈,자비에르,이.; 만다나스,마이클패트릭엠. |
This invention provides a molded three- dimensional insulator that is suitable for use in an end cone region of a pollution control device. The invention also provides a method of making the insulator. The insulator includes ceramic fibers that have a bulk shrinkage no greater than 10 weight percent. The ceramic fibers contain alumina and silica and are microcrystalline, crystalline, or a combination thereof. | ||||||
180 | 탈ㆍ부착형 자동차 배기 가스 정화 장치 | KR1020020001849 | 2002-01-12 | KR1020030061862A | 2003-07-23 | 김태곤 |
PURPOSE: An attachable/detachable automobile exhaust gas purifier apparatus is provided to allow for ease of attachment/detachment and achieve improved efficiency of the apparatus. CONSTITUTION: An attachable/detachable automobile exhaust gas purifier apparatus(10) comprises an installation part(11) which are assembled to the rear end of a muffler of an automobile through a screw or a clamp in such a manner that the installation parts are detachable; a dust collecting part(12) for substantially collecting particle of noxious material from the exhaust gas; a connection part(13) for communicating the installation part and the collecting part; and a collecting part(14) arranged underneath the dust collecting part and which receives the noxious material collected by the dust collecting part. |