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    • 12. 发明授权
    • Suction gas valve apparatus of reciprocating compressor
    • 往复式压缩机吸气阀装置
    • US06695596B2
    • 2004-02-24
    • US09958742
    • 2001-10-16
    • Won-Sik OhJung-Sik Park
    • Won-Sik OhJung-Sik Park
    • F04B5312
    • F04B39/102F04B39/0016Y10T137/7932
    • In a suction valve apparatus of a reciprocating compressor including a piston having a gas passage at which gas flows inside its body portion, a valve seat formed at an end of a piston body to open the gas passage and a step face formed so as to have a thickness inward from the valve seat and have a plurality of gas through holes and a mounting through hole, and a valve cone having a detachable coupling portion formed extendely from a cone portion corresponded to the valve seat of the piston and inserted into the mounting through hole of the step face of the piston so as to be movable, a re-expansion loss can be reduced by minimizing a dead volume of a suction gas valve, an efficiency of a reciprocating compressor can improve by reducing a heat transmission loss by sucking refrigerant gas through the plurality of gas through holes of the step face from the gas passage. In addition, the number of parts can be reduced and its structure can be simplified, accordingly it is advantageous to a mass-production as well as heightening the assembly productivity.
    • 在具有活塞的往复式压缩机的吸入阀装置中,所述活塞具有气体在其主体部分内流动的气体通道,形成在活塞体端部以打开气体通道的阀座和形成为具有 从阀座向内的厚度并具有多个气体通孔和安装通孔,以及具有可拆卸联接部分的阀锥体,其从与活塞的阀座对应的圆锥部分形成并插入到安装件中 活塞的台阶面的孔可以移动,通过最小化吸气阀的死体积可以减少再膨胀损失,往复式压缩机的效率可以通过减少吸入制冷剂的传热损失来提高 气体通过来自气体通道的阶梯面的多个气体通过孔。 此外,可以减少部件数量并且其结构可以简化,因此有利于批量生产以及提高组装生产率。
    • 13. 发明授权
    • Valve system for hermetic reciprocating compressor
    • 气密式往复式压缩机阀门系统
    • US5680881A
    • 1997-10-28
    • US708508
    • 1996-09-05
    • Won-Sik Oh
    • Won-Sik Oh
    • F04B39/10F16K15/00
    • F04B39/1073Y10T137/785Y10T137/7905Y10T137/7909Y10T137/7914Y10T137/7922
    • The present invention relates to a valve system for the hermetic reciprocating compressor, and more particularly, to reduce the gap volume of the spouting hole so as to help smoothly spout out the refrigerant through the spouting hole formed at the valve plate, to increase the amount of the refrigerant to be sucked into the cylinder, to increase the density of the sucked refrigerant, and finally to improve the efficiency of the hermetic reciprocating compressor. This invention comprises refrigerant leakage preventive part formed on the upper side of the valve plate to prevent the leakage of the refrigerant being sucked into the cylinder placed in front of the suction valve; the spouting part to open and close the spouting hole formed within the refrigerant leakage preventive part; the elastic part on the spouting part to open and close the spouting hole by the gap of small pressure while maintaining the small interval with the spouting part; the movement height limiting part to restrict the movement height of the spouting part by inserting and connecting the limiting part with the refrigerant leakage preventive part; and the spouting valve breakaway preventive part to prevent the breakaway of the spouting valve which is opening and closing the spouting of the refrigerant at the lower part of the movement height limiting part.
    • 本发明涉及一种用于密封往复式压缩机的阀门系统,更具体地说,涉及减小喷孔的间隙容积,以帮助通过形成在阀板上的喷孔平稳地喷出制冷剂,从而增加量 的吸入制冷剂的密度,最终提高密闭式往复式压缩机的效率。 本发明包括制冷剂泄漏防止部分,其形成在阀板的上侧,以防止被吸入放置在吸入阀前面的气缸中的制冷剂泄漏; 所述喷射部分打开和关闭在所述制冷剂泄漏防止部分内形成的喷射孔; 喷射部分上的弹性部分通过小压力的间隙打开和关闭喷射孔,同时保持与喷射部分的小间隔; 所述移动高度限制部通过将所述限制部与所述制冷剂泄漏防止部插入并连接来限制所述喷射部的移动高度; 以及喷射阀防脱部,以防止在运动高度限制部的下部打开和关闭制冷剂的喷射的喷射阀的分离。
    • 17. 发明授权
    • Stator fixing apparatus of reciprocating compressor
    • 往复式压缩机的定子定影装置
    • US07659642B2
    • 2010-02-09
    • US11239127
    • 2005-09-30
    • Sang-Sub JeongWon-Sik OhHyuk Lee
    • Sang-Sub JeongWon-Sik OhHyuk Lee
    • H02K33/00H02K1/00
    • H02K33/16F04B35/045H02K1/145H02K5/14
    • A stator fixing apparatus of a reciprocating compressor comprises a first frame on which a plurality of first core blocks, each comprising a plurality of laminated stator core sheets, are radially coupled, the plurality of first core blocks being coupled to one side surface of a bobbin body, and a second frame on which a plurality of second core blocks, each comprising a plurality of laminated stator core sheets, are radially coupled. The plurality of second core blocks are coupled to the other side surface of the bobbin body. A coupling portion is provided at each contact portion between the first core block and the second core block, for coupling the first and second core blocks. Thus, deformation of an initial shape of the stator or increase of a defect rate due to a molding material can be prevented, and heat and moisture can easily be discharged, so as to improve the efficiency and reliability of the reciprocating compressor.
    • 往复式压缩机的定子固定装置包括:第一框架,多个第一芯块,每个包括多个层叠的定子芯片,多个第一芯块径向耦合在其上,所述多个第一芯块联接到线轴的一个侧表面 主体和第二框架,其上包括多个层叠的定子芯片的多个第二芯块径向地联接在所述第二框架上。 多个第二芯块联接到线轴主体的另一个侧表面。 耦合部分设置在第一芯块和第二芯块之间的每个接触部分处,用于联接第一和第二芯块。 因此,可以防止定子的初始形状的变形或由于成型材料引起的缺陷率的增加,并且可以容易地排出热和水分,从而提高往复式压缩机的效率和可靠性。
    • 20. 发明授权
    • Stator supporting apparatus for reciprocating compressor
    • 往复式压缩机定子支撑装置
    • US06666662B2
    • 2003-12-23
    • US10031400
    • 2002-02-27
    • Won-Sik OhKi-Chul Choi
    • Won-Sik OhKi-Chul Choi
    • F04B3504
    • F04B35/045
    • A stator (4A) supporting apparatus for a reciprocating compressor includes a cap member (10), in which one end of an inner resonance spring (7A) abuts to one end of the cap member (10) so that the vibration of the inner resonance spring (7A) is transferred to the stator, and the cap member (10) is isolated from the frame of the compressor so as to prevent the vibration of the inner resonance spring (7A) from transferring to the frame (1) directly. Therefore, the vibration of the compressor is reduced by fixing the inner stator (4A) strongly and transferring the vibration generated in the inner resonance spring (7A) to the frame through the inner stator (4A).
    • 用于往复式压缩机的定子(4A)支撑装置包括盖构件(10),其中内共振弹簧(7A)的一端与盖构件(10)的一端相接,使得内共振 弹簧(7A)被传递到定子,并且盖构件(10)与压缩机的框架隔离,以防止内共振弹簧(7A)的振动直接传递到框架(1)。 因此,通过将内部定子(4A)牢固地固定并通过内部定子(4A)将在内部共振弹簧(7A)中产生的振动传递到框架来减小压缩机的振动。