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    • 1. 发明授权
    • Linear compressor with spring arrangement for vibration suppression
    • 线性压缩机,具有弹簧布置,用于减震
    • US08062005B2
    • 2011-11-22
    • US11501358
    • 2006-08-09
    • Poul Erik HansenJan ThomsenFrank Holm Iversen
    • Poul Erik HansenJan ThomsenFrank Holm Iversen
    • F04B35/00F04B17/03
    • F04B35/045
    • The invention concerns a linear compressor, particularly a refrigerant compressor, with a housing (2, 2′) and a compression unit, which comprises a compressor with a piston and a cylinder as well as a linear motor driving the piston in relation to the cylinder along a movement axis, the compression unit (30) being connected to the housing (2) via a spring arrangement (7). It is endeavoured to provide a space saving support of the compression unit (30) in the housing that enables good vibration suppression. For this purpose, the spring arrangement comprises a spring (6, 7), which is curved in the circumferential direction in relation to the movement axis (50), said spring surrounding the compression unit (3-5) on at least a share of its circumference.
    • 本发明涉及具有壳体(2,2')和压缩单元的线性压缩机,特别是制冷剂压缩机,其包括具有活塞和气缸的压缩机以及相对于气缸驱动活塞的线性电动机 沿着运动轴线,压缩单元(30)经由弹簧装置(7)连接到壳体(2)。 为了能够实现良好的振动抑制,在外壳中提供压缩单元(30)的节省空间的支持。 为此,弹簧装置包括相对于运动轴线(50)沿圆周方向弯曲的弹簧(6,7),所述弹簧围绕压缩单元(3-5)至少部分 它的圆周​​。
    • 4. 发明申请
    • ROTOR FOR AN ELECTRIC DRIVE MOTOR OF A REFRIGERANT COMPRESSOR
    • 制冷剂压缩机的电动马达的转子
    • US20090251022A1
    • 2009-10-08
    • US12411609
    • 2009-03-26
    • Frank Holm IversenMarten NommensenEkkehard Handke
    • Frank Holm IversenMarten NommensenEkkehard Handke
    • H02K1/28
    • H02K1/2786
    • The invention concerns a rotor (1) for an electric drive motor of a refrigerant compressor with a cylinder ring (2), several permanent magnets (14) resting on the radial inside of the cylinder ring (2), each permanent magnet (14) forming a ring section, and fixing elements (15) between the permanent magnets (14), said fixing elements (15) engaging a fixing geometry (4, 16) of the cylinder ring (2). It is endeavoured to simplify the manufacturing of such a rotor. For this purpose, the cylinder ring (2) is located in a carrier (5), which comprises a bottom (6) and a circumferential wall (7), the permanent magnets (14, 14a, 14b) resting on the bottom (6), and each fixing element (15, 15a, 15b) comprising at least one projection (17, 18), which covers a side (24) of the permanent magnet (14, 14a, 14b) facing away from the bottom (6).
    • 本发明涉及一种用于具有气缸环(2)的制冷压缩机的电驱动马达的转子(1),位于气缸环(2)的径向内侧的几个永磁体(14),每个永磁体(14) 形成环形部分,以及在永磁体(14)之间的固定元件(15),所述固定元件(15)接合气缸环(2)的固定几何形状(4,16)。 为了简化这种转子的制造而努力。 为此,气缸环(2)位于包括底部(6)和周向壁(7)的载体(5)中,固定在底部(6)上的永磁体(14,14a,14b) ),并且每个固定元件(15,15a,15b)包括至少一个突出部(17,18),该突起覆盖永久磁体(14,14a,14b)背离底部(6)的一侧(24) 。
    • 6. 发明授权
    • Axial piston refrigerant compressor with piston front face projection
    • 轴向活塞制冷压缩机,活塞前面投影
    • US06623258B1
    • 2003-09-23
    • US10009667
    • 2001-11-13
    • Frank Holm IversenPreben Bjerre
    • Frank Holm IversenPreben Bjerre
    • F04B5310
    • F04B39/0005
    • The invention relates to a refrigerant compressor comprising at least one piston-cylinder unit and one valve plate that has at least one outlet opening. The piston has a projection which projects into the outlet opening when the piston is located near the upper dead center thereof. The aim of the invention is to increase the efficiency and to reduce the noise level. To these ends, the invention provides that the outlet opening, piston projection, valve plate and piston delimit a flow channel, and provides that the free cross-sectional area of the flow channel is determined by the smallest cross-sectional area of the outlet opening until the piston, during its pressure stroke at least the height (H) of the outlet opening, is located underneath the upper dead center. The invention also provides that, during the remainder of the pressure stroke of the piston, the relative reduction of the free cross-sectional area of the flow channel is less than the relative reduction in volume of the pressure chamber, and provides that at least 45% of the volume of the outlet opening is occupied by the projection when the piston is located in the upper dead center thereof.
    • 本发明涉及一种制冷剂压缩机,其包括至少一个活塞 - 气缸单元和一个具有至少一个出口的阀板。 当活塞位于其上死点附近时,活塞具有突出到出口的突出部。 本发明的目的是提高效率并降低噪声水平。 为此,本发明提供了出口开口,活塞突起,阀板和活塞限定流动通道,并且规定流动通道的自由截面积由出口开口的最小横截面面积确定 直到活塞在其压力冲程期间至少出口的高度(H)位于上止点下方。 本发明还规定,在活塞的其余压力冲程期间,流动通道的自由横截面积的相对减小小于压力室的体积的相对减小,并且提供至少45 当活塞位于其上死点时,出口的体积百分比被突起占据。
    • 7. 发明授权
    • Suction gas conduit for a refrigeration compressor
    • 用于制冷压缩机的吸气管道
    • US06280153B1
    • 2001-08-28
    • US09566706
    • 2000-05-09
    • Frank Holm IversenPreben Bjerre
    • Frank Holm IversenPreben Bjerre
    • F09B3900
    • F04C29/12F04B39/0055
    • A suction gas conduit (1) for a refrigeration compressor has a curved section (4) of the gas path (2), which connects an inlet section (3) of the gas path to an outlet section (5). A widening (11) in the form of a step (12) is located on the inner side of the curve of the gas path. The curved section (4) especially abuts, at the outlet end, a valve plate (7) of the compressor, which valve plate (7) has a suction gas opening (6). The outer side of the curve of the gas path (2) is unimpeded. The step height (H) is from 0.3 to 1.0 times, and the step length (L) from 0.2 to 1.0 times, the hydraulic diameter (d) of the outlet section (5). As a result thereof, the unavoidable recirculation flow is located in a position where its undesirable effect is limited.
    • 用于制冷压缩机的吸气管道(1)具有气体通道(2)的弯曲部分(4),其将气路的入口部分(3)连接到出口部分(5)。 在台阶(12)形式的加宽(11)位于气路曲线的内侧。 弯曲部分(4)在出口端特别邻接压缩机的阀板(7),该阀板(7)具有吸气开口(6)。 气路(2)曲线的外侧无阻碍。 台阶高度(H)为0.3〜1.0倍,步长(L)为出口部(5)的水平直径(d)的0.2〜1.0倍。 作为其结果,不可避免的再循环流位于其不利影响受到限制的位置。