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
    • 81. 发明申请
    • Compressor With Muffler
    • 压缩机消声器
    • US20090116977A1
    • 2009-05-07
    • US12259758
    • 2008-10-28
    • Michael M. PerevozchikovRoy J. Doepker
    • Michael M. PerevozchikovRoy J. Doepker
    • F04B39/00
    • F04C29/065F04C18/02F04C23/008F04C29/0035F04C29/126
    • A compressor assembly may include a shell, a discharge fitting, a muffler, a compression mechanism, and a motor. The shell may have an opening therethrough with the discharge fitting generally extending therefrom. The muffler may be in communication with the discharge fitting and may be external to the shell. The muffler may have an inlet proximate the discharge fitting, an outlet distal from the discharge fitting, and a body portion extending therebetween. The muffler may include a valve assembly proximate the outlet. The compression mechanism may be contained within the shell and include a suction inlet and a discharge passageway. The discharge passageway may be connected to the opening in the shell for direct discharge of refrigerant from the compression mechanism to the discharge fitting. The motor may be contained within the shell and drivingly coupled to the compression mechanism.
    • 压缩机组件可以包括外壳,排放配件,消音器,压缩机构和电动机。 壳体可以具有通过其的开口,其中排放配件通常从其延伸。 消声器可以与排出配件连通,并且可以在外壳的外部。 消声器可以具有靠近排出配件的入口,远离排出配件的出口以及在它们之间延伸的主体部分。 消声器可以包括靠近出口的阀组件。 压缩机构可以包含在壳体内并且包括吸入口和排出通道。 排出通道可以连接到壳体中的开口,用于将制冷剂从压缩机构直接排放到排放配件。 电动机可以容纳在壳体内并且驱动地联接到压缩机构。
    • 82. 发明申请
    • SEALING STRUCTURE AND PACKING ELEMENT THEREOF
    • 密封结构和包装元件
    • US20080159895A1
    • 2008-07-03
    • US11755683
    • 2007-05-30
    • Shu-Er HuangChun-Chung YangKun-Yi LiangYu-Choung Chang
    • Shu-Er HuangChun-Chung YangKun-Yi LiangYu-Choung Chang
    • F04C27/00F04C18/02
    • F04C18/02F04C27/005F04C27/008
    • A sealing structure includes a first substrate having a first compartment, a second compartment and a first base surface. A first element, disposed between the first and second compartments, a second element and a third element, moves between a first initial position and a first predetermined position. The first element has a first acting surface and the second element has a second acting surface. The third element includes a body, a first sectioned part having a first main conjunctive surface, and a second sectioned part having a second main conjunctive surface. When the first element is moved to the first predetermined position, the body is clamped between the first and second acting surfaces, and the first main conjunctive surface contacts the second main conjunctive surface. Thus, the deformed third element pressing against the first base surface separates the first compartment from the second compartment.
    • 密封结构包括具有第一隔室,第二隔室和第一基底表面的第一基底。 设置在第一和第二隔室之间的第一元件,第二元件和第三元件在第一初始位置和第一预定位置之间移动。 第一元件具有第一作用表面,第二元件具有第二作用表面。 第三元件包括主体,具有第一主结合表面的第一截面部分和具有第二主结合表面的第二截面部分。 当第一元件移动到第一预定位置时,主体被夹持在第一和第二作用表面之间,并且第一主结合面接触第二主结合面。 因此,压在第一基面上的变形的第三元件将第一隔室与第二隔室分开。
    • 83. 发明申请
    • Compression unit of orbiting vane compressor
    • 轨道式压缩机压缩机组
    • US20060073054A1
    • 2006-04-06
    • US11111844
    • 2005-04-22
    • Seon-woong HwangDong-won Yoo
    • Seon-woong HwangDong-won Yoo
    • F01C1/02F16N13/20F01C1/063
    • F04C18/02F05C2251/14
    • Disclosed herein is a compression unit of an orbiting vane compressor having improved tight contact between a circular vane and sealing means wherein the sealing means can be easily manufactured. The compression unit compresses refrigerant gas introduced by an orbiting movement of a circular vane in an annular space defined between the inner wall of a cylinder and an inner ring. The compression unit comprises a first horizontal contact surface formed at the outer circumferential surface of the inner ring, a second horizontal contact surface formed at the inner wall of the cylinder while being parallel with the first horizontal contact surface, and a linear slider disposed in an opening formed at the circular vane for performing a linear reciprocating movement along the first and second horizontal contact surfaces.
    • 本文公开了一种旋转叶片压缩机的压缩单元,其具有改进的圆形叶片和密封装置之间的紧密接触,其中密封装置可以容易地制造。 压缩单元将限定在气缸的内壁和内圈之间的环形空间中的圆形叶片的旋转运动引入的制冷剂气体压缩。 压缩单元包括形成在内圈的外周面的第一水平接触面,与第一水平接触面平行地形成在气缸内壁上的第二水平接触面, 开口形成在圆形叶片上,用于沿着第一和第二水平接触表面进行线性往复运动。
    • 84. 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。