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    • 51. 发明授权
    • 스크롤 압축기
    • 涡旋压缩机
    • KR101119720B1
    • 2012-03-23
    • KR1020057016714
    • 2004-10-14
    • 파나소닉 주식회사
    • 히와타아키라사와이기요시모리모토다카시후타가미요시유키쓰지모토쓰토무
    • F04C18/02
    • F04C29/028F04C18/0215F04C18/0246F04C23/008F04C29/045
    • 스크롤 압축기에 있어서, 고정 스크롤의 스크롤 랩의 외벽곡선과 선회 스크롤의 스크롤 랩의 내벽곡선을, 기초원 반경을 a로 하는 인벌류트곡선으로 형성하고, 고정 스크롤의 스크롤 랩의 내벽곡선과 선회 스크롤의 스크롤 랩의 외벽곡선을, 기초원 반경을 b로 하는 인벌류트곡선으로 형성하여, 기초원 반경 a와 기초원 반경 b의 비인 a/b의 값을, 1.0을 초과하고 1.5 미만으로 하는 것에 의해, 선회 스크롤의 스크롤 랩의 내벽측에 형성되는 압축실은, 선회 스크롤의 스크롤 랩의 외벽측에 형성되는 압축실에 비해, 빠르게 압축하게 되어, 압축도중의 누설 손실을 저감시킬 수 있다.
    • 在涡旋压缩机中,固定涡盘的涡旋齿的外壁曲线的涡卷的内壁曲线的形式,并且所述绕动涡旋盘,渐开线曲线的基圆半径为变量,并转动固定涡盘的涡旋齿的内壁曲线,涡卷 由涡卷的外壁曲线,在基圆半径的比a / b的值,以形成渐开线曲线为b,在基圆半径a和基圆半径为b,为大于1.0且小于1.5, 事实上,转动压缩形成在涡壳的涡卷的内壁侧,相对于形成在所述绕动涡旋盘的涡旋齿的外壁侧的压缩室,其变得迅速压缩,能够在压缩期间减少泄漏损失。
    • 53. 发明公开
    • 압축기 및 그것을 이용한 냉동 장치
    • 使用其的压缩机和制冷装置
    • KR1020090116827A
    • 2009-11-11
    • KR1020097020859
    • 2008-05-01
    • 다이킨 고교 가부시키가이샤
    • 니시데요헤이카토카츠미
    • F04B39/00F04B39/12F04C18/02F04C28/28
    • F04C18/0215F04C23/008F04C28/28F04C29/045F04C2240/806F04C2240/81F04C2270/19F04C2270/42F04C2270/70F04C2270/86
    • A scroll compressor in which measurement of the temperature of refrigerant flowing in a path is facilitated. The scroll compressor (1) has a housing (11), a compression mechanism (15), and a pipe (71). A space (45) functioning as the path for the refrigerant is provided inside the housing (11). The compression mechanism (15) compresses the refrigerant and discharges it to the space (45) from a discharge opening (41). The pipe (71) extends from the inside of the housing (11) to the outside and has one end (71a) and the other end (71b). The one end (71a) is located at a predetermined position in the space (45), or more specifically, at a position near the discharge opening (41), and is closed. The other end (71b) is located outside the housing (11) and is open. A measurement device (8) is inserted into the pipe (71) from the other end (71b).
    • 一种容易在路径中流动的制冷剂的温度的测量的涡旋式压缩机。 涡旋压缩机(1)具有壳体(11),压缩机构(15)和管道(71)。 用作制冷剂路径的空间(45)设置在壳体(11)的内部。 压缩机构(15)压缩制冷剂并从排出口(41)将其排出到空间(45)。 管71从壳体11的内部延伸到外侧,具有一端71a和另一端71b。 一端(71a)位于空间(45)的预定位置,或更具体地位于排出口(41)附近的位置,并且被封闭。 另一端(71b)位于壳体(11)的外部并且是敞开的。 测量装置(8)从另一端(71b)插入到管(71)中。
    • 54. 发明公开
    • 압축기의 과열 방지장치
    • 防止压缩机加热的装置
    • KR1020080076386A
    • 2008-08-20
    • KR1020070016225
    • 2007-02-15
    • 엘지전자 주식회사
    • 황선웅김명균유병길이병철최세헌정철수장기태
    • F04C18/02F04C29/04
    • F04C28/28F04C18/0215F04C29/045F04C2210/26F04C2240/40Y10S415/00Y10S417/00
    • An apparatus for preventing overheating of a compressor is provided to increase reliability of a heating operation in a heat pump air conditioner capable of performing heating and cooling operations. An apparatus for preventing overheating of a compressor(C) includes an auxiliary refrigerant pipe(110), an auxiliary expansion unit(120), and a control unit(130). The compressor forms a cooling cycle in cooperation with a condenser(D), an expansion unit, and an evaporator(E). The auxiliary refrigerant pipe guides a part of refrigerant. The auxiliary expansion unit is installed in the auxiliary refrigerant pipe to cool the refrigerant while reducing pressure of the refrigerant. The control unit is installed in the auxiliary refrigerant pipe to control the flow of the refrigerant.
    • 提供一种用于防止压缩机过热的装置,以提高能够执行加热和冷却操作的热泵空调中的加热操作的可靠性。 一种用于防止压缩机(C)过热的装置包括辅助制冷剂管道(110),辅助膨胀单元(120)和控制单元(130)。 压缩机与冷凝器(D),膨胀单元和蒸发器(E)协作形成冷却循环。 辅助制冷剂管引导一部分制冷剂。 辅助膨胀单元安装在辅助制冷剂管道中,以在降低制冷剂压力的同时冷却制冷剂。 控制单元安装在辅助制冷剂管道中以控制制冷剂的流动。
    • 59. 发明公开
    • 밀폐형 전동 압축기
    • HERMETIC型电机操作压缩机
    • KR1020020022538A
    • 2002-03-27
    • KR1020010026887
    • 2001-05-17
    • 가부시키가이샤 히타치세이사쿠쇼
    • 아베노부오사사끼요시히로이시가미가즈야모리따가즈노리시마다마사히로
    • F04C29/02
    • F04C29/028F04C18/0215F04C23/008F04C29/026F04C29/045Y10S418/01
    • PURPOSE: A hermetic type motor-operated compressor is provided to prevent refrigerator oil from leaking from a compressor to refrigerating cycle and to improve heat exchange efficiency of a heat exchanger. CONSTITUTION: A hermetic type motor-operated compressor(1) comprises a compressor mechanism portion(7) provided in an upper portion within a sealed container; a motor(6) connected with the compressor mechanism portion through a crankshaft(8); a sub-bearing provided below the motor and for supporting the crankshaft; and a support portion for supporting the sub-bearing. The hermetic type motor-operated compressor includes a first shielding space(19) shielded with respect to an inner wall of the sealed container between the compressor mechanism portion and motor, and a second shielding space(20) shielded with respect to the inner wall of the sealed container between the motor and support portion. The second shielding space contains a filter for separating oil from refrigerant gas therein, being provided between the motor and support portion. Therefore, leakage of refrigerator oil from a discharge pipe is reduced.
    • 目的:提供密封式电动压缩机,以防止冷冻机油从压缩机泄漏到制冷循环,并提高热交换器的热交换效率。 构成:密封式电动压缩机(1)包括设置在密封容器内的上部的压缩机构部(7) 通过曲轴(8)与压缩机构部分连接的马达(6); 设置在马达下方并用于支撑曲轴的副轴承; 以及用于支撑副轴承的支撑部。 封闭式电动压缩机包括相对于压缩机构部分和电动机之间的密封容器的内壁屏蔽的第一屏蔽空间(19)和相对于电动机的内壁屏蔽的第二屏蔽空间(20) 电动机和支撑部之间的密封容器。 第二屏蔽空间包含一个过滤器,用于将油与其中的制冷剂气体分离,设置在电动机和支撑部分之间。 因此,冷却油从排出管的泄漏减少。
    • 60. 实用新型
    • 밀폐형 압축기의 케이스구조
    • 的密闭型压缩机的情况下,结构
    • KR2019980021660U
    • 1998-07-15
    • KR2019960034963
    • 1996-10-22
    • 주식회사 엘지이아이
    • 안지용서홍석
    • F04B53/16
    • F04C29/045F04C2240/30
    • 본고안에의한밀폐형압축기의케이스구조는밀폐형압축기의케이스내벽에나선형의방열홈을형성함으로써, 밀폐형압축기내부의전동부의의해발생하는열을효과적으로방열함으로써, 전동부의온도를떨어뜨려효율을높임으로압축기의성능을향상시키고, 전동부의고정자열박음시생기는열에의한응력집중을막아케이스의변형을없앰으로, 실린더용접시케이스에의한압축실변형을방지하여압축기의신뢰성을높이며, 압축냉매가스가토출될때 함께토출된냉동유의유로를만듦으로써원활하게압축기하부로유도하여압축기밖으로의방출을감소시켜냉동사이클의효율을높이도록하였다.
    • 根据在本文中是通过形成散热螺旋的凹槽,以增加,通过有效地消散由该电动部件产生的热的密闭型压缩机内,丢弃所述电动温度部效率的情况下,压缩机的密闭型压缩机的内壁的封闭式压缩机的情况下,结构 提高性能,通过消除防止集中的情况下,由于当电动定子冷缩配合部分产生的热应力的变化,因此能够防止所述压缩室变形时气缸焊接的情况下,提高了压缩机的可靠性,并且当被压缩的制冷剂气体被排出的 通过使下部纸币排出的制冷流动路径,以减少排放出所述压缩机的顺畅地引导到压缩机是提高制冷循环的效率。