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    • 1. 发明公开
    • KÄLTEMITTELVERDICHTER
    • EP2310680A1
    • 2011-04-20
    • EP09780133.6
    • 2009-07-03
    • ACC Austria GmbH
    • RESCH, Reinhard
    • F04B35/04F04B39/00F16F15/04F04B39/12
    • F16F1/128F04B35/045F04B39/0044F04B39/023F04B39/121F04B39/127F16F1/04F16F1/125F16F3/12F16F15/085F16F2230/007
    • The invention relates to a refrigerant compressor (1) comprising a hermetically sealed housing (9) in the interior of which operates a drive unit (11) which compresses refrigerant and which is mounted by means of an arbitrary number of spring elements (4) on a mounting region (10), which is preferably arranged on the housing base (6), of the housing (9), wherein a first end region (4a) of the spring element (4) surrounds a peg-shaped upper mounting element (7) which is arranged on the drive unit (11), while a second end region (4b) of the spring element (4) surrounds a peg-shaped lower mounting element (8) which is arranged on the housing (9). To reduce a possible lateral deflection of the drive unit (11), it is provided according to the invention that end regions (5, 6), which face toward one another and are surrounded by the spring element (4), of the two mounting elements (7, 8) overlap one another in the axial direction of the spring element (4) when the drive unit (11) is in the mounted position.
    • 本发明涉及一种包括密封壳体(9)的制冷压缩机(1),所述壳体的内部操作压缩制冷剂的驱动单元(11)并且通过任意数量的弹簧元件(4) (9)的优选布置在壳体基部(6)上的安装区域(10),其中弹簧元件(4)的第一端部区域(4a)围绕栓形上部安装元件 所述弹簧元件(4)的第二端部区域(4b)围绕布置在所述壳体(9)上的栓状下部安装元件(8),所述下部安装元件(8)布置在所述驱动单元(11)上。 为了减小驱动单元(11)的可能的横向偏转,根据本发明设置了两个安装件(5,6),这些端部区域朝向彼此并且被弹簧元件(4)围绕, 当驱动单元(11)处于安装位置时,元件(7,8)在弹簧元件(4)的轴向方向上彼此重叠。
    • 2. 发明公开
    • Vorrichtung zum Befestigen des Gehäuses eines Kältemittelverdichters
    • Vorrichtung zum Befestigen desGehäuseseinesKältemittelverdichters
    • EP2280173A1
    • 2011-02-02
    • EP10177286.1
    • 2009-02-27
    • ACC Austria GmbH
    • Stupnik, AxelSpörk, MarkusPucher, MarkusSchöllauf, PeterResch, Reinhard
    • F04B39/12F04B39/14F25D23/00
    • F04B39/121F04B39/14F25D23/006
    • Vorrichtung zum Befestigen des Gehäuses (2) eines Kältemittelverdichters an einem ein Kühlvolumen umschließenden Behälter, wobei das Gehäuse (2) mittels einer beliebigen Anzahl an Verbindungselementen (3) an einem am Behälter angeordneten Trägerelement (1) befestigbar ist, wobei mindestens ein Verbindungselement (3) vorgesehen, welches in mindestens einer korrespondierenden, Aufnahme (4) klemmend oder verrastend festlegbar ist, wobei das mindestens eine Verbindungselement (3) bzw. die mindestens eine Aufnahme (4) wahlweise am Gehäuse (2) oder am Trägerelement (1) angeordnet sein können. Um eine einfache, schnelle und dennoch zuverlässige Befestigung des Kältemittelverdichters am Trägerelement (1) zu ermöglichen, ist erfindungsgemäß vorgesehen, dass das Gehäuse (2) von einer ersten Montageposition, in welcher das mindestens eine Verbindungselement (3) in der mindestens einen Aufnahme (4) eingefädelt ist, in eine Betriebsposition, in welcher das Verbindungselement (3) in der Aufnahme (4) klemmend oder verrastet festgelegt ist, bewegbar ist.
    • 设备(10)具有设置用于将壳体(2)连接到布置在容器上的支撑单元(1)的连接单元(3)。 单元(3)和保持器(4)布置在壳体或支撑单元处,其中保持器具有两个保持部分。 壳体从安装位置移动到单元(3)被放置到保持器中的位置,其中单元(3)以夹紧或锁定的方式固定在保持器中。 单元(3)具有容纳在保持部中的轴部和基部。 还包括用于制冷剂压缩机的独立权利要求,该制冷剂压缩机包括附接到容器的支撑单元的壳体。
    • 4. 发明公开
    • KÄLTEMITTELVERDICHTER
    • EP2027391A1
    • 2009-02-25
    • EP07730006.9
    • 2007-06-08
    • ACC Austria GmbH
    • BRABEK, WalterJOST, Manfred
    • F04B39/12
    • F04B39/123F04C2240/806
    • Hermetically encapsulated refrigerant condenser which has a hermetically sealed condenser housing (1), in the interior of which a piston/cylinder unit which condenses a refrigerant operates and an intake pipe (2) and a pressure pipe (3) are provided, wherein refrigerant flows to the piston/cylinder unit via the intake pipe (2) and the refrigerant which is condensed by the piston/cylinder unit is conveyed out of the condenser housing (1) via the pressure pipe (3), wherein connecting openings (5) for the intake pipe (2) and the pressure pipe (3) are provided on the condenser housing (1), wherein the attachment of the intake pipe (2) and the pressure pipe (3) to the connection openings (5) takes place via a connecting apparatus (9) in a hermetically sealed manner. There is provision according to the invention for the connecting apparatus (9) to have a body element (8) of preferably sleeve-shaped configuration and at least one spacer element (7) which spaces the body element (8) from the intake pipe (2) and the pressure pipe (3).
    • 密封封装的制冷剂冷凝器,其具有气密密封的冷凝器壳体(1),在冷凝器壳体的内部设置使制冷剂冷凝的活塞/缸体单元运行,并且设置进气管(2)和压力管(3),其中制冷剂流动 通过进气管(2)连接到活塞/气缸单元,并且由活塞/气缸单元冷凝的制冷剂经由压力管(3)被输送出冷凝器壳体(1),其中连接开口(5) 进气管(2)和压力管(3)设置在冷凝器壳体(1)上,其中进气管(2)和压力管(3)与连接孔(5)的连接通过 一个密封的连接装置(9)。 根据本发明规定,连接装置(9)具有优选为套筒形状的主体元件(8)和至少一个将主体元件(8)与进气管(8)隔开的隔离元件(7) 2)和压力管(3)。
    • 5. 发明授权
    • KÄLTEMITTELVERDICHTER
    • EP1869323B1
    • 2009-11-11
    • EP06725444.1
    • 2006-03-30
    • ACC Austria GmbH
    • BRABEK, WalterZIPPL, GüntherFREIBERGER, Alfred
    • F04B39/12
    • F04B39/123F04B39/06F04B39/125
    • The invention relates to a hermetically encapsulated refrigerant compressor with a hermetically tight compressor housing, within which a piston/cylinder unit for compressing refrigerant works, the cylinder (1) of which is sealed by a valve plate (2), comprising a pressure drilling (10) and a suction drilling (16) and a suction channel and a pressure channel are also provided, by means of which refrigerant is sucked into the suction drilling (16) via a suction channel and from the pressure drilling (10) via a pressure valve (15), whereby a suction noise damper (3) is preferably arranged in the suction channel. According to the invention, preferably V-shaped sealing grooves (23), or sealing projections (22) are provided in the valve plate (2) and the component (9), forming the suction channel, is provided with sealing projections (22) or sealing grooves (23) essentially corresponding to the V-shaped sealing grooves (23) or sealing projections (22) on the front face thereof facing the valve plate (2) along the suction sealing edge (17), whereby the sealing projections (22) in the geometric form thereof have a different embodiment to the sealing grooves (23) and/or have a different volume.
    • 本发明涉及一种具有气密密封的压缩机壳体的气密封装的制冷剂压缩机,在该压缩机壳体内用于压缩制冷剂的活塞/气缸单元工作,其气缸(1)由阀板(2)密封,包括压力钻孔器 10)以及抽吸钻孔(16)以及抽吸通道和压力通道,借助该抽吸钻孔和压力通道,制冷剂经由抽吸通道被吸入到抽吸钻孔(16)中并且经由压力从压力钻孔(10) 阀(15),由此吸入噪声阻尼器(3)优选布置在抽吸通道中。 根据本发明,优选在阀板(2)中设置V形密封槽(23)或密封突起(22),并且形成抽吸通道的部件(9)设置有密封突起(22) 或密封槽(23),所述密封槽(23)基本上对应于沿着吸入密封边缘(17)面向阀板(2)的正面上的V形密封槽(23)或密封突出部(22),由此密封突出部 22)以其几何形式具有与密封槽(23)不同的实施例和/或具有不同的体积。
    • 6. 发明授权
    • KÄLTEMITTELVERDICHTER
    • EP2021632B1
    • 2009-09-30
    • EP07729392.6
    • 2007-05-22
    • ACC Austria GmbH
    • JOST, ManfredBRABEK, Walter
    • F04B39/02F04B39/12F25B31/00
    • F25B31/002F04B39/023F04B39/121F04B39/123
    • The invention relates to a hermetically encapsulated refrigerant compressor which has a hermetically sealed compressor housing (1), in the interior of which operates a refrigerant-compressing piston-cylinder unit and is provided a suction duct (2), via which refrigerant is conveyed into the compressor housing (1), and is provided a pressure duct (3), via which refrigerant is conveyed out of the compressor housing (1) by the piston-cylinder unit. In order to prevent contact of the oil (4) which flows down the compressor housing wall with the suction duct (2) and with the pressure duct (3), it is provided according to the invention that, in the operating position of the compressor housing (1), deflecting means are provided on the compressor housing wall above the passage of the suction duct (2) and pressure duct (3) through said compressor housing wall. In this way, warming of the refrigerant is avoided, and the efficiency of the refrigerant compressor is increased.
    • 本发明涉及一种气密封装制冷剂压缩机,其具有气密密封的压缩机壳体(1),压缩机壳体的内部操作制冷剂压缩活塞气缸单元并且设置有吸入管道(2),制冷剂通过该吸入管道 压缩机壳体(1)并且设置有压力管道(3),制冷剂通过该压力管道由活塞 - 缸体单元输送出压缩机壳体(1)。 为了防止沿着压缩机壳体壁向下流动的油(4)与吸入管道(2)和压力管道(3)接触,根据本发明设置,在压缩机的运行位置 在吸气管道(2)和压力管道(3)通过压缩机壳体壁的通道上方的压缩机壳体壁上设置有偏转装置。 以这种方式,避免了制冷剂的升温,并且制冷剂压缩机的效率增加。