会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 31. 发明申请
    • ROTARY COMPRESSOR
    • 旋转式压缩机
    • US20150240815A1
    • 2015-08-27
    • US14422686
    • 2013-08-19
    • DAIKIN INDUSTRIES, LTD.
    • Yukihiro InadaTakazou SotojimaYoshitaka ShibamotoKenichi Sata
    • F04C29/02F04C18/063
    • F04C29/02F04C18/045F04C18/063F04C18/32F04C18/322F04C29/028F04C2240/56
    • A rotary compressor includes a cylinder with a cylinder chamber, a piston, a blade and a pair of bushes. The piston is movable-within the cylinder chamber. The blade is integrally formed with the cylinder or piston and penetrates a groove formed in the other to segment the cylinder chamber into high and low pressure chambers. The bushes are provided at the groove and sandwich the blade from both sides of the blade. At least one of the pair of bushes includes an oil supply passage formed from a blade-side sliding surface to a groove-side sliding surface, a blade-side oil reservoir formed on the blade-side sliding surface, and a groove-side oil reservoir on the groove-side sliding surface. Ends of the oil supply passage open to the blade-side and groove-side oil reservoirs. The groove-side oil reservoir being wider than the blade-side oil reservoir.
    • 旋转压缩机包括具有气缸室的气缸,活塞,叶片和一对衬套。 活塞可在气缸室内移动。 叶片与圆柱体或活塞一体地形成并且穿过另一个形成的凹槽以将气缸室分成高压和低压室。 灌木丛设置在沟槽处,并从叶片的两侧夹住叶片。 一对衬套中的至少一个包括从叶片侧滑动面向槽侧滑动面形成的供油路,形成在叶片侧滑动面上的叶片侧贮油槽和槽侧油 储槽在槽侧滑动面上。 供油通道的端部通向叶片侧和槽侧储油槽。 槽侧油储存器比叶片侧储油器宽。
    • 34. 发明授权
    • Refrigeration system
    • 制冷系统
    • US08225624B2
    • 2012-07-24
    • US12224420
    • 2007-03-06
    • Takahiro YamaguchiSatoshi IshikawaMasahiro YamadaKazuhiro Furusho
    • Takahiro YamaguchiSatoshi IshikawaMasahiro YamadaKazuhiro Furusho
    • F25B1/10F25B7/00
    • F04C23/001F04C18/02F04C18/045F04C18/322F04C23/008F04C29/0035F04C2270/03F04C2270/12F25B1/04F25B2400/075F25B2400/13
    • A compressor (20) is provided with compression mechanisms (61, 62) to have four compression chambers (61, 62, 63, 64) in total. In the compressor (20), the first compression chamber (61) and the second compression chamber (62) differ in the phase of capacity changing cycle from each other by 180° and the third compression chamber (63) and the fourth compression chamber (64) also differ in the phase of capacity changing cycle from each other by 180°. In a cylinder nonoperating mode, refrigerant is compressed in a single stage in each of the first compression chamber (61) and the second compression chamber (62) while the refrigerant compression operation is halted in the third compression chamber (63) and the fourth compression chamber (64). In a two-stage compression mode, refrigerant compressed in a single stage in each of the first compression chamber (61) and the second compression chamber (62) is further compressed in the third compression chamber (63) and the fourth compression chamber (64).
    • 压缩机(20)设置有压缩机构(61,62),其总共具有四个压缩室(61,62,63,64)。 在压缩机20中,第一压缩室61和第二压缩室62的容量变化周期的相位相差180°,第三压缩室63和第四压缩室( 64)在容量变化周期的相位相差180°时也不同。 在气缸非操作模式中,制冷剂在第一压缩室61和第二压缩室62的一个阶段中被压缩,同时制冷剂压缩操作在第三压缩室63中被停止,第四压缩 室(64)。 在两级压缩模式中,在第一压缩室61和第二压缩室62中的单级压缩的制冷剂在第三压缩室63和第四压缩室64中被进一步压缩 )。
    • 39. 发明申请
    • Orbiting vane compressor
    • 轨道式压缩机
    • US20060073053A1
    • 2006-04-06
    • US11111862
    • 2005-04-22
    • Seon-woong HwangDong-won Yoo
    • Seon-woong HwangDong-won Yoo
    • F16N13/20F01C20/18F01C1/02F04C2/00
    • F04C18/02F04C18/045F04C23/008F04C2230/20F04C2230/60F04C2240/30
    • Disclosed herein is an orbiting vane compressor having two compression chambers formed in a cylinder according to an orbiting movement of an orbiting vane. The orbiting vane compressor comprises a shell having an inlet tube and an outlet tube, the shell being hermetically sealed such that refrigerant gas is introduced through the inlet tube and is then discharged through the outlet tube, a rotary shaft disposed in the shell while being supported by upper and lower flanges, the rotary shaft being rotated by a drive unit, and a compression unit for compressing refrigerant gas introduced into a cylinder according to an orbiting movement of an orbiting vane, which is attached to the rotary shaft, and discharging the compressed refrigerant gas to the lower part of the cylinder.
    • 本文公开了一种绕轨道式叶片压缩机,其具有根据旋转叶片的轨道运动而形成在气缸中的两个压缩室。 轨道式叶片压缩机包括具有入口管和出口管的壳体,壳体被气密地密封,使得制冷剂气体通过入口管引入,然后通过出口管排出,旋转轴设置在外壳中同时被支撑 通过上下凸缘,旋转轴由驱动单元旋转;以及压缩单元,用于根据附接到旋转轴的绕动叶片的旋转运动来压缩引入气缸的制冷剂气体,并且将压缩 制冷剂气体到气缸的下部。
    • 40. 发明授权
    • Small-sized compressor
    • 小型压缩机
    • US06676392B1
    • 2004-01-13
    • US09959019
    • 2002-02-21
    • Dong-Il HwangBin Hwang
    • Dong-Il HwangBin Hwang
    • F04C1804
    • F04C18/045
    • A small-sized, efficient compressor has a compressed air tank, a first housing provided with a shaft bore, a rotating shaft, an orbiter, a second housing, a rotation restrainer and a circular vane. The orbiter is provided at a lower portion thereof with a cam shaft hole to engage with the cam shaft portion of the rotating shaft without friction, and is adapted to form a ring-shaped operating portion above the orbiter to form a circular space. The second housing is attached to the first housing and forms a second circular space offset from the circular space. The circular vane is formed in the second housing to form a ring-shaped compression chamber within the operating portion of the orbiter. Air is compressed and discharged through a discharge hole of the circular vane to generate a large amount of highly compressed air.
    • 小型,高效的压缩机具有压缩空气罐,设置有轴孔的第一壳体,旋转轴,轨道器,第二壳体,旋转限制器和圆形叶片。 轨道仪的下部设置有凸轮轴孔,与旋转轴的凸轮轴部分没有摩擦地接合,并且适于在轨道器上方形成环形操作部分以形成圆形空间。 第二壳体附接到第一壳体并形成与圆形空间偏移的第二圆形空间。 圆形叶片形成在第二壳体中以在轨道器的操作部分内形成环形压缩室。 空气通过圆形叶片的排放孔被压缩和排出,以产生大量的高度压缩的空气。