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    • 5. 发明申请
    • Scroll compressor sealing
    • 涡旋压缩机密封
    • US20030194341A1
    • 2003-10-16
    • US10414015
    • 2003-04-16
    • MITSUBISHI HEAVY INDUSTRIES, LTD.
    • Makoto TakeuchiTakahide ItohYasuharu MaruiwaHiroshi YamazakiTakayuki HagitaTetsuzou UkaiKatsuhiro Fujita
    • F04C018/00F04C027/00
    • F04C18/0276F04C18/0269F04C27/005
    • A scroll compressor comprises a fixed scroll having a spiral-shaped wall body, and a swiveling scroll which has a spiral-shaped wall body and revolves while linking together the two wall bodies; the wall bodies have steps, and side faces of two end plates have high and low bottom faces in correspondence with the steps; a tip seal is provided along a join edge which connects top edges on different sides of each step, and a mechanism is provided therebetween to prevent the tip seals from becoming removed from the join edges. Furthermore, in the same scroll compressor, tip seals are provided respectively in two grooves, and join paths are provided respectively between a high-pressure compression chamber, which is formed with the bottom faces as one section, and the two grooves; the pressure inside the high-pressure compression chamber is used as a pressing force for the tip seals.
    • 涡旋压缩机包括具有螺旋状壁体的固定涡旋盘和具有螺旋状壁体并在两壁体连接的同时旋转的旋转涡旋件; 壁体具有台阶,两个端板的侧面具有与台阶对应的高低底面; 沿着连接边缘设置尖端密封件,该接合边缘连接每个台阶的不同侧面的顶部边缘,并且在其间设置有机构以防止末端密封件从接合边缘移除。 此外,在同一涡旋压缩机中,末端密封件分别设置在两个凹槽中,并且连接路径分别设置在形成有作为一个部分的底面的高压压缩室与两个凹槽之间; 高压压缩室内的压力用作顶端密封件的压力。
    • 6. 发明申请
    • Scroll-type compressors
    • 滚动式压缩机
    • US20030108444A1
    • 2003-06-12
    • US10307463
    • 2002-12-02
    • Shigeru ItoKiyofumi Ito
    • F04C018/00
    • F04C18/0269
    • A scroll-type compressor includes a fixed scroll member having a first spiral element, and an orbiting scroll member having a second spiral element. The first spiral element and the second spiral element interfit with each other at an angular offset and at a radial offset to form a plurality of fluid pockets which, are adapted to compress a fluid. Further, the first spiral element or the second spiral element, or both, include an interior wall surface defined by a first involute curve based on a circle, an exterior wall surface defined by a second involute curve based on the circle, an end wall surface formed at a center end of the spiral element by a first arc, and a fillet formed along a root of the end wall surface. Moreover, apportion of the fillet is formed by a second arc, and a line which is tangent to the circle and intersects the second involute curve includes a center of curvature of the first arc and a center of a curvature of the second arc.
    • 涡旋式压缩机包括具有第一螺旋元件的固定涡旋构件和具有第二螺旋元件的绕动涡旋构件。 第一螺旋元件和第二螺旋元件以角度偏移和径向偏移彼此相互配合以形成适于压缩流体的多个流体袋。 此外,第一螺旋元件或第二螺旋元件或两者包括由基于圆的第一渐开线曲线限定的内壁表面,由基于圆的第二渐开线曲线限定的外壁表面,端壁表面 通过第一弧形形成在螺旋形元件的中心端部,以及沿端壁表面的根部形成的圆角。 此外,圆角的分配由第二弧形成,并且与圆相切并与第二渐开线相交的线包括第一弧的曲率中心和第二弧的曲率的中心。
    • 7. 发明申请
    • Gas compressor
    • 燃气压缩机
    • US20030095885A1
    • 2003-05-22
    • US10267367
    • 2002-10-09
    • Zegun LiTakeshi Nonaka
    • F04C018/00
    • F04C29/026F01C21/104F04C18/3446Y10S55/17Y10S418/01
    • To provide a gas compressor in which fretting wear due to vibration of an oil separation filter is prevented to thereby achieve an improvement in durability. A gas compressor is provided with a press-fixing unit for press-fixing end portions of an oil separation filter. As the press-fixing means, for example, it is possible to adopt a construction including an abutment block portion against which the bottom end portion of the oil separation filter abuts, an outer peripheral block portion having a filter accommodating hole into which the oil separation filter is inserted, and a pressurizing plate put over the forward end portion of the oil separation filter and mounted and fixed to the outer peripheral block portion, wherein the forward end portion of the oil separation filter is provided so as to protrude from the filter accommodating hole on the surface of the outer peripheral block portion, and wherein the protruding forward end portion of the oil separation filter is pressurized and bent by the pressurizing plate to undergo elastic deformation.
    • 提供一种气体压缩机,其防止由于油分离过滤器的振动引起的微动磨损,从而实现耐久性的提高。 气体压缩机具有用于压固油分离过滤器的端部的压力固定单元。 作为压力固定装置,例如,可以采用包括分离过滤器的底端部抵接的抵接块部的结构,具有过滤器容纳孔的外周块部,将油分离 过滤器被插入,并且加压板放置在油分离过滤器的前端部并且被安装和固定到外周块部分,其中油分离过滤器的前端部设置成从过滤器容纳 并且其中,所述油分离过滤器的突出的前端部被所述加压板加压和弯曲以进行弹性变形。
    • 8. 发明申请
    • Compressor
    • 压缩机
    • US20030068246A1
    • 2003-04-10
    • US10216138
    • 2002-08-09
    • Kazuya KimuraKen SuitouHiroyuki GennamiKazuhiro KurokiSatoshi EgashiraSatoru EgawaYoshikazu Fukutani
    • F04C018/00F04C027/00
    • F04C27/008F04C18/0215
    • A compressor comprises a housing assembly, a compression mechanism and a sealing member. The housing assembly has a first housing member and a second housing member coupled to each other. The first housing member has an opening end surface. The second housing member has an opening end surface. The compression mechanism is disposed in the first housing member and compresses gas supplied to the compressor. The sealing member includes a first portion and a second portion. The first portion is interposed between the opening end surface of the first housing member and the opening end surface of the second housing member. The second portion of the sealing extends radially inwardly from the first portion to be interposed between the compression mechanism and the second housing member.
    • 压缩机包括壳体组件,压缩机构和密封构件。 壳体组件具有彼此连接的第一壳体构件和第二壳体构件。 第一壳体构件具有开口端面。 第二壳体构件具有开口端面。 压缩机构设置在第一壳体部件中并且压缩供应到压缩机的气体。 密封构件包括第一部分和第二部分。 第一部分设置在第一壳体部件的开口端面与第二壳体部件的开口端面之间。 密封件的第二部分从第一部分径向向内延伸以插入压缩机构和第二壳体部件之间。
    • 9. 发明申请
    • Scroll type compressor
    • 涡旋式压缩机
    • US20030026721A1
    • 2003-02-06
    • US10209358
    • 2002-07-31
    • Takahiro MoroiToshiro FujiiTatsuyuki HoshinoMasato SowaTakayuki Hirano
    • F04C018/00F04C027/02
    • F04C18/0284F04C27/002F04C2230/91
    • A scroll type compressor has a housing, a fixed metal scroll member and a movable metal scroll member. The fixed and the movable scroll members each have a base plate and scroll wall extending therefrom. The fixed scroll member is fixed to the housing. The movable scroll member engages the fixed scroll member to trace an orbital motion when driven by a crank mechanism. The scroll members define compression chambers. Resin tip seals are respectively provided on distal ends of the scroll walls and slidably engage the metallic surfaces of the facing base plates. The tip seals seal the compression chambers. A resin coating layer is formed on a region of at least one of the end surfaces of the base plates that is not contacted by a tip seal.
    • 涡旋式压缩机具有壳体,固定金属涡旋构件和可动金属涡旋构件。 固定和可动涡旋件各自具有从其延伸的基板和涡旋壁。 固定涡旋件固定在壳体上。 当由曲柄机构驱动时,动涡旋件接合固定涡旋件以跟踪轨道运动。 涡旋构件限定压缩室。 树脂顶端密封件分别设置在涡旋壁的远端上并可滑动地接合面对的基板的金属表面。 尖端密封件密封压缩室。 树脂涂层形成在底板的至少一个端面的不与顶端密封接触的区域上。
    • 10. 发明申请
    • Abrasion resistance structure of scroll compressor
    • 涡旋压缩机耐磨结构
    • US20030026720A1
    • 2003-02-06
    • US10041573
    • 2002-01-10
    • Dong Soo Lee
    • F04C018/00
    • F04C28/28F04C18/0253F04C23/008
    • An abrasion resistance structure of a scroll compressor is provided. In the abrasion resistance structure, including a main frame penetrated by a driving shaft combined with a rotor of a driving motor and supported in a radius direction, a fixed scroll fixed to the main frame, and an orbiting scroll put on the main frame, eccentric-combined with the driving shaft so as to be in an orbiting motion, and forming compression pockets together with the fixed scroll while continuously moving in a state of being geared with the fixed scroll, concavely inclined portions are formed on the back surface of an end plate of the orbiting scroll facing the upper surface of the main frame and on the upper surface of the main frame. Accordingly, it is possible to prevent abrasion between the orbiting scroll and the main frame due to the thermal deformation of the orbiting scroll during the operation of the compressor.
    • 提供了一种涡旋压缩机的耐磨结构。 在耐磨结构中,包括由与驱动电机的转子结合并沿半径方向支撑的驱动轴贯穿的主框架,固定在主框架上的固定涡卷机和放置在主机架上的绕动涡旋件,偏心 - 与驱动轴结合以便处于轨道运动中,并且在与固定涡旋件啮合的状态下连续移动时与固定涡旋件一起形成压缩袋,在端部的后表面上形成有凹入的倾斜部分 面向主框架的上表面和主框架的上表面上的绕动涡卷盘。 因此,可以防止由于在压缩机的操作期间绕动涡旋件的热变形而使绕动涡盘与主机架之间的磨损。