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    • 1. 发明公开
    • COMPRESSOR, COMPRESSOR CHASSIS, COMPRESSOR CHASSIS MANUFACTURING METHOD
    • VERDICHTER,VERDICHTERCHASSIS,VERDICHTERCHERSISHERSTELLUNGSVERFAHREN
    • EP3133285A1
    • 2017-02-22
    • EP15780667.0
    • 2015-04-01
    • Sumitomo Bakelite Co., Ltd.
    • OKASAKA, ShuYAMAMOTO, Shinya
    • F04B39/12B29C45/14B32B15/08F04B39/00
    • F04B27/1081B29C45/14B29C45/14008B29K2101/10B32B15/08F04B27/1045F04B27/1054F04B39/00F04B39/12F04B39/121
    • A housing (10) of a compressor (1) according to the present embodiment includes at least one compression chamber (101) that compresses a gas aspirated into the inside thereof and is composed of a metal-resin composite (16) in which a resin member (14) composed of a thermosetting resin composition and a metal member (12) are bonded to each other. In a case where the metal-resin composite (16) is made into a test piece in which the resin member (14) having a thickness d 1 and the metal member (12) having a thickness d 2 are laminated on and bonded to each other and a ratio of d 1 /d 2 is 3, and the test piece is put in a first state where the test piece is disposed, the surface on the resin member (14)-exposed side up, on two supports with no stress applied thereto and a second state where a 1-point bending stress of 140 MPa is applied in a thickness direction to the center of the surface on the resin member (14) side such that the center caves in after the first state, when putting in the first and second states is alternately repeated 1,000,000 times at a frequency of 30 Hz under a temperature condition of 25°C, the metal-resin composite exhibits bending fatigue resistance in which neither peeling nor fracture occurs.
    • 根据本实施例的压缩机(1)的壳体(10)包括至少一个压缩室(101),该压缩室(101)压缩吸入其内部的气体,并且由金属 - 树脂复合材料(16)构成,其中树脂 由热固性树脂组合物和金属构件(12)构成的构件(14)彼此结合。 在将金属 - 树脂复合材料(16)制成其中厚度为d 1的树脂构件(14)和厚度为d 2的金属构件(12)层压并结合到其上的试验片的情况下 另一方面,d 1 / d 2的比例为3,将试验片置于第一状态,其中设置试验片,将树脂构件(14)上的表面朝上放置在两个不受应力的载体上 并且在厚度方向上向树脂构件(14)侧的表面的中心施加140MPa的1点弯曲应力的第二状态,使得中心在第一状态之后进入,当放入 第一状态和第二状态在25℃的温度条件下以30Hz的频率交替重复1,000,000次,金属 - 树脂复合材料显示出不会发生剥离和断裂的抗弯曲疲劳性。
    • 3. 发明公开
    • RECIPROCATING COMPRESSOR
    • 往复压缩机
    • EP1947336A1
    • 2008-07-23
    • EP06781468.1
    • 2006-07-24
    • Sanden Corporation
    • TAKAI, Kazuhiko
    • F04B39/00F04B27/08
    • F04B39/0055F04B27/0834F04B27/1045F04B27/1081F04B39/0061F04B39/125F04B53/001
    • [Object of the Invention] An object of the present invention is to provide a reciprocal compressor wherein a cylinder block is provided with a void space communicating with a discharge chamber to increase the volume of the discharge chamber and which can resolve the problem of a conventional reciprocal compressor.
      [Disclosure of Invention] A reciprocal compressor comprises a rotation shaft, a motion converter for converting rotation to reciprocal motion, pistons driven by the rotation shaft through the motion converter to move reciprocally, a cylinder block provided with cylinder bores in which the pistons are inserted and a center bore in which one end of the rotation shaft is inserted, a valve plate provided with suction holes, discharge holes, suction valves for closing the suction holes and discharge valves for closing the discharge holes and disposed opposite one end of the cylinder block, and a rear housing provided with a suction chamber communicating with the cylinder bores through the suction holes and the suction valves and a discharge chamber communicating with the cylinder bores through the discharge valves and the discharge holes and disposed opposite the valve plate. The cylinder bores are circumferentially distanced from each other, and the cylinder block is provided with a group of secondary discharge chambers which are located closer to the valve plate than the center bore to communicate with the discharge chamber through openings formed in the valve plate. The group of secondary discharge chambers comprises a center secondary discharge chamber adjacent the center bore, and a plurality of satellite secondary discharge chambers located radially outside the center secondary discharge chamber, circumferentially distanced from each other, and located between the cylinder bores, and each of the secondary discharge chambers communicates with the discharge chamber through the opening formed in the valve plate.
    • 发明目的本发明的目的是提供一种往复式压缩机,其中气缸体设有与排气室连通的空隙空间以增加排气室的体积,并且可以解决常规问题 往复式压缩机。 发明内容一种往复式压缩机,包括旋转轴,用于将旋转转换为往复运动的运动转换器,由旋转轴通过运动转换器驱动而往复运动的活塞,设有缸孔的缸体,活塞插入其中 以及中心孔,旋转轴的一端插入其中;阀板,其设置有吸入孔,排出孔,用于关闭吸入孔的吸入阀以及用于关闭排出孔的排出阀,并且设置成与缸体的一端相对 以及后壳体,该后壳体具有通过吸入孔和吸入阀与缸孔连通的吸入室和通过排出阀和排出孔与缸孔连通并与阀板相对设置的排出室。 汽缸孔彼此周向间隔开,并且汽缸体设有一组二次排出室,其位于比中心孔更靠近阀板的位置,以通过形成在阀板中的开口与排出室连通。 该组二次放电室包括与中心孔相邻的中心二次放电室和位于中心二次放电室的径向外侧的多个附属二次放电室,所述多个附属二次放电室沿周向彼此间隔开并位于这些缸孔之间, 次级排放室通过形成在阀板中的开口与排放室连通。
    • 7. 发明公开
    • Piston type refrigerant compressor
    • 科尔本-Kälteverdichter。
    • EP0599642A1
    • 1994-06-01
    • EP93309401.3
    • 1993-11-25
    • SANDEN CORPORATION
    • Terauchi, Kiyoshi, c/o Sanden Corporation
    • F04B39/00F04B27/08
    • F04B27/0878F04B27/1045F05C2225/04F05C2253/12
    • A piston type compressor housing encloses a crank chamber, a suction chamber, and a discharge chamber. The compressor housing includes a cylinder block. A plurality of cylinder bores are formed in the cylinder block in which a plurality of pistons are slidably disposed within the cylinder bores and have a corresponding axis. The drive shaft is rotatably supported in the cylinder block. A slant plate having an angle of tilt is tiltably connected to the drive shaft. A bearing couples the slant plate to the pistons, so that the pistons may reciprocate within the cylinder bores upon rotation of the slant plate. The pistons are adapted to be reciprocally moved in cylinder bores in accordance with the tilting motion of the slant plate. The cylinder bores include a cross-sectional plan which is disclosed by a plane perpendicular to the drive shaft. The cross-sectional plan includes an outline which defines a simple closed curve which is composed of a plurality of curves having various radii of curvature. Accordingly, the compressor need not have separate piston rotation prevention means within cylinder bores.
    • 活塞式压缩机壳体包围曲柄室,吸入室和排出室。 压缩机壳体包括气缸体。 在气缸体中形成有多个气缸孔,其中多个活塞可滑动地设置在气缸孔内并具有对应的轴线。 驱动轴可旋转地支撑在气缸体中。 具有倾斜角度的倾斜板可倾斜地连接到驱动轴。 轴承将倾斜板连接到活塞上,使得当倾斜板旋转时,活塞可在气缸孔内往复运动。 活塞适于根据倾斜板的倾斜运动在气缸孔中往复运动。 气缸孔包括通过垂直于驱动轴的液体而公开的横截面图。 横截面图包括限定由具有各种曲率半径的多个曲线组成的简单闭合曲线的轮廓。 因此,压缩机不需要在气缸孔内具有单独的活塞旋转防止装置。