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
    • 2. 发明申请
    • ROTARY-TYPE FLUID MACHINE
    • 旋转式流体机
    • US20100296959A1
    • 2010-11-25
    • US12864383
    • 2009-01-23
    • Takashi ShimizuYoshitaka ShibamotoTakazou SotojimaMasanori Masuda
    • Takashi ShimizuYoshitaka ShibamotoTakazou SotojimaMasanori Masuda
    • F01C1/24
    • F04C18/32F04C15/0042F04C18/045F04C18/356F04C23/001F04C23/008F04C2250/00
    • A rotary-type fluid machine includes a compression mechanism having piston mechanisms arranged one on top of the other and a drive mechanism having a drive shaft that is configured and arranged to drive the piston mechanisms. Each of the two piston mechanisms includes a cylinder member with a cylinder chamber, a piston member housed eccentrically in the cylinder chamber such that the cylinder chamber is partitioned into first and second compression chambers. A phase difference of 90 degrees in volume change is made between the cylinder chambers of the two piston mechanisms. A movable one of the cylinder and piston has a first surface facing one of the first cylinder chambers and a second surface facing one of the second cylinder chambers, with a surface area of the first surface being equal to a surface area of the second surface.
    • 旋转式流体机械包括:压缩机构,其具有一个彼此顶部布置的活塞机构;以及驱动机构,该驱动机构具有构造和布置成驱动活塞机构的驱动轴。 两个活塞机构中的每一个包括具有气缸室的气缸构件,偏心地容纳在气缸室中的活塞构件,使得气缸室被分隔成第一和第二压缩室。 在两个活塞机构的气缸室之间形成体积变化为90度的相位差。 所述气缸和活塞中的可移动的一个具有面向所述第一气缸室中的一个的第一表面和面向所述第二气缸室中的一个的第二表面,所述第一表面的表面积等于所述第二表面的表面积。
    • 5. 发明申请
    • ROTARY FLUID MACHINE
    • 旋转流量计
    • US20080232991A1
    • 2008-09-25
    • US12128457
    • 2008-05-28
    • Masanori MASUDA
    • Masanori MASUDA
    • F04C18/32F01C1/34
    • F04C23/008F04C18/045F04C27/002F04C29/12
    • A rotary fluid machine includes an eccentric rotary piston mechanism that is configured such that an annular piston is accommodated in an annular cylinder chamber of a cylinder to form an outer cylinder chamber and an inner cylinder chamber. The cylinder and the annular piston relatively execute eccentric rotary motion. Each of the outer and inner cylinder chambers is divided by a blade into a first chamber and a second chamber. The blade and the annular piston are mutually movably coupled together by a swinging bushing. The blade is provided, in its contact parts with the annular piston and the swinging bushing, with sliding surfaces in order to prevent the occurrence of seizure and wear of the blade and the annular piston and the occurrence of gas leakage between the first chamber and the second chamber during operation.
    • 旋转流体机械包括偏心旋转活塞机构,该偏心旋转活塞机构构造成使得环形活塞容纳在气缸的环形气缸室中以形成外筒室和内筒室。 气缸和环形活塞相对地执行偏心旋转运动。 每个外缸室和内汽缸室由叶片分成第一室和第二室。 叶片和环形活塞通过摆动衬套相互可移动地联接在一起。 叶片在其与环形活塞和摆动衬套的接触部分中设置有滑动表面,以防止叶片和环形活塞的卡住和磨损的发生以及第一室和第二室之间的气体泄漏的发生 第二室。
    • 6. 发明申请
    • Rotary compressor
    • 旋转压缩机
    • US20070065324A1
    • 2007-03-22
    • US10574261
    • 2005-05-18
    • Masanori Masuda
    • Masanori Masuda
    • F01C19/02F04C15/00F04C2/00F04C27/00F01C20/18F04C14/18
    • F04C29/0035F04C18/02F04C18/045F04C18/322F04C23/008
    • A rotary compressor includes a compression mechanism in which a piston is disposed inside a cylinder chamber of a cylinder. The cylinder and the piston eccentrically rotate relative to each other. The cylinder chamber is sectioned into a high pressure chamber and a low pressure chamber in order to prevent production of vibration and noises due to pressure pulsation caused in a suction process. A low pressure space communicating with a suction side of the compression mechanism and a high pressure space communicating with a discharge side of the compression mechanism are formed in the casing. A suction pipe communicating with the high pressure space and a discharge pipe communicating with the high pressure space are disposed in the casing.
    • 旋转压缩机包括压缩机构,其中活塞设置在气缸的气缸室内。 气缸和活塞相对于彼此偏心旋转。 气缸室被分为高压室和低压室,以防止在吸入过程中产生由于压力脉动引起的振动和噪声。 在壳体中形成有与压缩机构的吸入侧连通的低压空间和与压缩机构的排出侧连通的高压空间。 与高压空间连通的吸入管和与高压空间连通的排出管配置在壳体内。
    • 7. 发明申请
    • Rotary fluid machine
    • 旋转流体机
    • US20070036666A1
    • 2007-02-15
    • US10573889
    • 2005-05-11
    • Masanori Masuda
    • Masanori Masuda
    • F01C20/18F01C19/02F04C27/00F04C2/00F04C28/18F03C4/00
    • F04C23/001F01C21/08F04C18/045F04C23/008F04C2230/602F04C2240/20
    • A rotary fluid machine is provided with a cylinder having an annular cylinder chamber, an annular piston and a blade that form a rotation mechanism. The piston is disposed in the cylinder chamber to be eccentric to the cylinder and divides the cylinder chamber into an outer working chamber and an inner working chamber. The blade is arranged in the cylinder chamber to divide each of the working chambers into a high pressure region and a low pressure region. The cylinder and the piston make relative rotations. A width of the cylinder chamber is varied along a circumference of the cylinder chamber such that a gap between a wall surface of the cylinder and a wall surface of the piston is kept to a predetermined value during the rotations. Further, a width of the piston is varied along a circumference of the piston such that the gap between the wall surface of the cylinder and the wall surface of the piston is kept to a predetermined value during the rotations.
    • 旋转流体机械设置有具有环形气缸室的圆柱体,环形活塞和形成旋转机构的叶片。 活塞设置在气缸室中以偏心于气缸,并将气缸室分成外部工作室和内部工作室。 叶片布置在气缸室中,以将每个工作室分成高压区域和低压区域。 气缸和活塞进行相对旋转。 气缸室的宽度沿着气缸室的圆周变化,使得气缸的壁面与活塞的壁面之间的间隙在旋转期间保持在预定值。 此外,活塞的宽度沿着活塞的圆周变化,使得在旋转期间气缸的壁表面和活塞的壁表面之间的间隙保持在预定值。
    • 8. 发明申请
    • Capacity-changing unit of orbiting vane compressor
    • 轨道式叶片压缩机容量更换装置
    • US20060198749A1
    • 2006-09-07
    • US11208529
    • 2005-08-23
    • Seon-woong HwangDong-won Yoo
    • Seon-woong HwangDong-won Yoo
    • F16N13/20F01C1/02F04C27/00
    • F04C28/14F04C2/04F04C18/045
    • Disclosed herein is a capacity-changing unit of an orbiting vane compressor that is capable of performing normal operation and no-load operation in inner and outer compression chambers through simple manipulation of a rotary valve plate, thereby easily changing the capacity of the compressor according to operation modes. The capacity-changing unit comprises a rotary valve plate disposed between a cylinder and a subsidiary frame for opening or closing a communication channel connected between an inlet port of the cylinder and inner and outer outlet ports of the cylinder as an actuator is rotated in alternating directions. Consequently, the present invention has the effect of reducing power consumption and preventing reduction in service life of the parts of the orbiting vane compressor due to repetitive on/off operation of the orbiting vane compressor, and therefore, improving the performance and reliability of the orbiting vane compressor.
    • 本发明公开了一种能够通过简单操作旋转阀板在内压缩室和外压缩室中进行正常运行和空载运行的轨道式叶片式压缩机的容量变化单元,从而容易地改变压缩机的容量 操作模式。 容量切换单元包括设置在气缸和辅助框架之间的旋转阀板,用于打开或关闭连接在气缸的入口和气缸的内外出口之间的连通通道,因为致动器沿交替方向旋转 。 因此,本发明具有降低功率消耗并且防止由于旋转叶片式压缩机的重复的开/关操作而使旋转叶片式压缩机的部件的使用寿命降低的效果,因此提高了轨道式压缩机的性能和可靠性 叶片式压缩机。
    • 10. 发明授权
    • Compressor
    • 压缩机
    • US09429156B2
    • 2016-08-30
    • US14141713
    • 2013-12-27
    • LG ELECTRONICS INC.
    • Seseok SeolBumdong SaByeongchul Lee
    • F04C23/00F04C15/00F01C21/08F04C18/04F04C2/34
    • F04C15/0065F01C21/08F04C2/34F04C15/0088F04C18/045F04C23/001F04C23/008
    • A compressor is provided that may include a cylinder including an outer cylinder portion, an inner cylinder portion, and a vane portion connected between the outer cylinder portion and the inner cylinder portion, which is fixed to a casing. A rolling piston may be slidably coupled to the vane portion to form an outer compression space and an inner compression space while making a turning movement between the outer cylinder portion and the inner cylinder portion. Through this, a weight of a rotating body may be reduced to obtain a low power loss with respect to the same cooling power and a small bearing area, thereby reducing refrigerant leakage as well as easily changing a capacity of a cylinder in an expanded manner. In addition, refrigerant may be discharged in opposite directions to each other in each compression space, thereby reducing vibration noise of the compressor.
    • 提供一种压缩机,该压缩机可以包括一个气缸,它包括一个外筒部分,一个内筒部分和一个连接在外筒部分和内筒部分之间的叶片部分,该叶片部分固定在壳体上。 滚动活塞可以可滑动地联接到叶片部分,以在外筒部分和内筒部分之间形成转动运动的同时形成外部压缩空间和内部压缩空间。 由此,可以减小旋转体的重量,以相对于相同的冷却功率和小的轴承面积而获得低的功率损失,从而减少制冷剂泄漏以及容易地以扩大的方式改变气缸的容量。 此外,制冷剂可以在每个压缩空间中彼此相反的方向排出,从而减少压缩机的振动噪声。