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    • 3. 发明申请
    • GASWECHSELSTEUERUNG FÜR GEGENKOLBENMOTOREN MIT SCHIEBEBÜCHSEN
    • 气体交换控制赞成反对活塞带滑RIFLES
    • WO2007006469A2
    • 2007-01-18
    • PCT/EP2006/006561
    • 2006-07-05
    • DAUDE, OttoELSBETT, Günter
    • DAUDE, OttoELSBETT, Günter
    • F01L7/04F01L5/06F01L5/08F01L5/10F02B75/08
    • F02B75/28F01B7/14F01L1/32F01L5/06F01L7/04F01L7/045F01L2820/01
    • Die Erfindung betrifft Gegenkolbenmotoren, deren Gaswechsel mittels gesteuerter Schiebebüchsen (1 und 2) erfolgt (siehe Querschnittsausschnitt Fig. 1 eines Gegenkolbenmotors), welche ein von der Stellung der Kolben (3 und 4) unabhängiges Öffnen und Schließen von ringförmig um den Zylinder verlaufenden Ein- und Auslasskanälen (5 und 6) ermöglichen, wobei die gegenläufigen Kolben während ihres gesamten Hubes vom äußeren zum den Brennraum (7) einschließenden inneren Totpunkt mit ihren Kolbenringen die durch die Büchsenbewegung sich öffnenden und schließenden Steuerschlitze nie im geöffneten Zustand überlaufen, wodurch die Nachteile von herkömmlichen schlitzgesteuerten Motoren, z. B. Ölabstreifung in die Schlitze und Aufspringen der Kolbenringe vermieden werden. Die Erfindung bezieht sich detailliert auf die Ausgestaltung von Antrieb und Abdichtung der mechanisch, elektrisch, pneumatisch oder hydraulisch axial hin und her bewegten Schiebebüchsen.
    • 本发明涉及反活塞发动机,气体交换的控制滑动套筒装置(1和2)发生(见横截面切割图对置活塞发动机的1),它是由活塞的(3和4)的位置的独立开口和围绕所述气缸进环形延伸闭的 和出口通道使能(5和6),该对置活塞从外到燃烧室与不通过在打开状态下的套筒运动,打开和关闭控制时隙运行他们的活塞环(7)的内死点位置的整个行程中,由此缺点期间包围 常规时隙控制电机这样。 B.Ölabstreifung避免在槽和活塞环的龟裂。 本发明涉及在详细的驱动器的实施方式和机械地,电气地,气动地或液压轴向往复运动的滑动套筒密封。
    • 5. 发明申请
    • GAS FLOW CONTROL FOR OPPOSED PISTON ENGINE COMPRISING SLIDING SLEEVES
    • 气体交换控制赞成反对活塞带滑RIFLES
    • WO2007006469A3
    • 2008-06-19
    • PCT/EP2006006561
    • 2006-07-05
    • DAUDE OTTOELSBETT G
    • DAUDE OTTOELSBETT GUENTER
    • F01L7/04F01B7/02F01B7/14F01L5/06F01L5/08F01L5/10F02B75/08
    • F02B75/28F01B7/14F01L1/32F01L5/06F01L7/04F01L7/045F01L2820/01
    • The invention relates to opposed piston engines, whose gas flow is achieved by controlled sliding sleeves (1 and 2), (see cross-section in Fig. 1 of an opposed piston engine), said sleeves allowing inlet and outlet channels (5 and 6), which run in a ring around the cylinder, to be opened and closed independently of the position of the pistons (3 and 4). During their entire stroke from the outer to the inner dead centre, which includes the combustion chamber (7), the counter-rotating pistons and their piston rings never cause the metering ports, which open and close by means of the displacement of the sleeves, to overflow when said ports are open, thus avoiding the disadvantages of conventional port-controlled engines, e.g. scraping of oil into the slots and jumping of the piston rings. The invention relates in detail to the propulsion and sealing of the sliding sleeves that are displaced axially back and forth in a mechanical, electrical, pneumatic or hydraulic manner.
    • 本发明涉及反活塞发动机,气体交换的控制滑动套筒装置(1和2)发生(见横截面切割图对置活塞发动机的1),它是由活塞的(3和4)的位置的独立开口和围绕所述气缸进环形延伸闭的 和出口通道使能(5和6),该对置活塞从外到燃烧室与不通过在打开状态下的套筒运动,打开和关闭控制时隙运行他们的活塞环(7)的内死点位置的整个行程中,由此缺点期间包围 常规时隙控制电机这样。 B.Ölabstreifung避免在槽和活塞环的龟裂。 本发明涉及在详细的驱动器的实施方式和机械地,电气地,气动地或液压轴向往复运动的滑动套筒密封。
    • 6. 发明申请
    • RECIPROCATING MACHINE WITH TWO SUB-CHAMBERS
    • 带两个子座的回收机
    • WO00012881A1
    • 2000-03-09
    • PCT/AU1999/000708
    • 1999-09-01
    • F01L5/06F01L5/10F01L5/20F01P3/20F02B3/06F02B17/00F02B19/14F02B19/16F02B23/02F02B23/04F02B23/06F02B25/14F02B31/00F02F1/24F02M61/16F02B77/11
    • F02B31/00F01L5/10F01L5/20F01L2101/02F02B3/06F02B17/00F02B19/14F02B19/165F02B23/0639F02B25/14F02B2023/0612F02B2275/14F02B2275/16Y02T10/123Y02T10/125Y02T10/146
    • A reciprocating machine includes a housing (12) and piston means (20) that are cyclically relatively displaceable along an axis (11) to define a variable volume working chamber (50). There is further provided air inlet means and fuel inlet means (100) admitting air and fuel to the working chamber for forming an ignitable mixture after compression of the air therein, and means to exhaust combustion products from the working chamber. The variable volume working chamber (50) includes at least two sub-chambers, a combustion chamber (54) and a main chamber (52) mutually displaced on the axis (11) and in communication at a cross section (53) at which gas in the combustion chamber (54) may expand at least partially laterally as it flows from the combustion chamber (54) into the main chamber (52). The air admission means, the exhaust means and the chambers (52, 54) are arranged so that a swirl of gas is generated and maintained about the axis (11) in both chambers (52, 54) during operation of the machine. The combustion chamber (54) is sealed and defined laterally and at one end by integral heat resistant and/or low thermal conductivity wall structure (40) having a surrounding heat insulation jacket (48) and associated heat dissipation means (47, 49) arranged so that, during operation of the machine, the surfaces (42a, 44) of the wall structure bounding the combustion chamber are maintained at a temperature which is substantially higher than wall surfaces (31) bounding the main chamber (52).
    • 往复运动机器包括壳体(12)和活塞装置(20),其沿着轴线(11)循环地相对移位以限定可变容积的工作室(50)。 进一步设置有空气入口装置和燃料入口装置(100),其将空气和燃料引入工作室,用于在其中压缩空气之后形成可点燃的混合物,以及从工作室排出燃烧产物的装置。 可变容积工作室(50)包括至少两个子室,在轴线(11)上相互位移并且在横截面(53)处连通的燃烧室(54)和主室(52) 在燃烧室(54)中,当燃烧室(54)从燃烧室(54)流入主室(52)时,至少部分可横向膨胀。 空气进入装置,排气装置和室(52,54)被布置成使得在机器的操作期间在两个室(52,54)中围绕轴线(11)产生并保持气体涡流。 燃烧室(54)被封闭并且在一端侧被整体耐热和/或低导热壁结构(40)限定,该结构具有周围的隔热套(48)和相关联的散热装置(47,49) 使得在机器的操作期间,围绕燃烧室的壁结构的表面(42a,44)保持在基本上高于包围主室(52)的壁表面(31)的温度。