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    • 4. 发明授权
    • System and method for sizing a center bore of a laminated rotor
    • 用于调整层叠转子的中心孔的尺寸的系统和方法
    • US06901675B2
    • 2005-06-07
    • US10445672
    • 2003-05-27
    • Jerry D. EdwardsDavid T. MonkJohn W. Tolbert
    • Jerry D. EdwardsDavid T. MonkJohn W. Tolbert
    • G01B5/12
    • G01B5/12
    • A system and method of sizing an inner diameter of the center bore of a laminated rotor is provided. The inner diameter of the center bore is determined by taking a series of measurements in the center bore with an electronic gauge and then analyzing the measurements to determine the acceptability of the rotor. The electronic gauge is inserted into the center bore of the rotor and measurements of the inner diameter of the center bore are taken at a variety of different depths and positions using the electronic gauge. The measurements are then analyzed to determine if the rotor is acceptable for use by evaluating the measurements with respect to a reference diameter and a depth in the center bore.
    • 提供了一种调整层叠转子的中心孔内径的方法和方法。 中心孔的内径通过在中心孔中用电子量规进行一系列测量,然后分析测量值来确定转子的可接受性来确定。 将电子计量插入到转子的中心孔中,并且使用电子计量器在各种不同深度和位置处测量中心孔的内径。 然后分析测量结果,以通过评估相对于参考直径和中心孔深度的测量来确定转子是否可接受。
    • 6. 发明授权
    • Accumulator with internal desiccant
    • 带内部干燥剂的蓄电池
    • US06708519B1
    • 2004-03-23
    • US10331916
    • 2002-12-30
    • David T. MonkJohn K. Narney, II
    • David T. MonkJohn K. Narney, II
    • F25B4300
    • F25B43/006F25B43/003
    • A compression device for use in a HVAC&R system that includes a compressor for compressing vaporized refrigerant having a compressor inlet and compressor outlet for directing compressed refrigerant downstream along a first conduit to a condenser. An accumulator is provided for preventing liquid refrigerant from reaching the compressor. The accumulator has an accumulator inlet for receiving refrigerant along a second conduit from an upstream evaporator and an accumulator outlet in fluid communication with the compressor inlet for receiving vaporized refrigerant therein. The accumulator and compressor are integrally connected thereto so that the accumulator and compressor may be installed into a refrigerant recycling system by connecting the compressor outlet with the first conduit and connecting the accumulator inlet with the second conduit. A desiccant is disposed inside the accumulator between the accumulator inlet and outlet for removing moisture from the refrigerant.
    • 一种在HVAC&R系统中使用的压缩装置,包括用于压缩蒸发的制冷剂的压缩机,所述压缩机具有压缩机入口和压缩机出口,用于将压缩的制冷剂沿着第一管道向下流向冷凝器。 设有用于防止液体制冷剂到达压缩机的蓄能器。 蓄能器具有用于沿着来自上游蒸发器的第二管道接收制冷剂的蓄能器入口和与压缩机入口流体连通的蓄能器出口,用于在其中接收蒸发的制冷剂。 蓄能器和压缩机与其一体地连接,使得蓄能器和压缩机可以通过将压缩机出口与第一管道连接并将蓄能器入口与第二管道连接而安装到制冷剂再循环系统中。 蓄能器内的干燥剂设置在蓄能器入口和出口之间,用于从制冷剂中除去水分。
    • 8. 发明授权
    • Compressor with a capacity modulation system utilizing a re-expansion chamber
    • 具有利用再膨胀室的容量调节系统的压缩机
    • US06551069B2
    • 2003-04-22
    • US09877146
    • 2001-06-11
    • John K. Narney, IIDavid T. MonkJoseph F. Loprete
    • John K. Narney, IIDavid T. MonkJoseph F. Loprete
    • F04B1924
    • F04C28/16
    • A compressor with a capacity modulation system includes a compression chamber, a rotatable shaft within the compression chamber, and a roller mounted on the shaft in contact with a wall of the compression chamber. A suction channel is in fluid communication with the compression chamber for providing fluid at a suction pressure and a discharge channel is in fluid communication with the compression chamber for removing fluid at a discharge pressure. A re-expansion channel adjacent to the compression chamber has a first end forming a re-expansion port in the wall of the compression chamber. A re-expansion chamber is connected to the re-expansion channel. A valve disposed in the re-expansion channel is movable between a first position, in which the valve allows fluid communication between the compression chamber and the re-expansion chamber, and a second position, in which the valve prevents fluid communication between the compression chamber and re-expansion chamber.
    • 具有容量调节系统的压缩机包括压缩室,压缩室内的可旋转轴,以及安装在与压缩室壁相接触的轴上的辊。 抽吸通道与压缩室流体连通,用于在吸入压力下提供流体,并且排出通道与压缩室流体连通,以在排出压力下移除流体。 与压缩室相邻的再膨胀通道具有在压缩室的壁中形成再膨胀口的第一端。 再膨胀室连接到再膨胀通道。 设置在再膨胀通道中的阀可以在阀允许压缩室和再膨胀室之间的流体连通的第一位置和第二位置之间移动,在第二位置,阀阻止压缩室 和再膨胀室。
    • 10. 发明授权
    • Compressor unit shell construction
    • 压缩机单元壳体结构
    • US5538404A
    • 1996-07-23
    • US405687
    • 1995-03-17
    • Michael A. DiFloraDavid R. GilliamPransanta K. RoyPrakash N. PandeyaGordon T. BoydDavid T. Monk
    • Michael A. DiFloraDavid R. GilliamPransanta K. RoyPrakash N. PandeyaGordon T. BoydDavid T. Monk
    • F04B39/00F04B39/12
    • F04B39/121F04B39/0033Y10S181/403
    • A shell for a hermetic compressor unit, the shell having a top section or dome, and a bottom section, the dome having a unique shape which gives enhanced capacity for absorbing and attenuating structural and fluid transmitted wave energies emanating from the unit at wave frequencies of between 1,000 Hz and 2,000 Hz, while reducing total operating noise of the unit, the dome being formed of sheet metal and having a generally inverted cup-shaped configuration with generally cylindrical sidewalls and a top wall having a central portion surrounded by a peripheral portion, wherein the sidewall taken in a generally axial direction is substantially straight, wherein the central portion of the top constitutes from about 40 to about 90% of the total area of the top and has a generally hemispherical configuration on a mean radius of from about 6.5 to about 10.0 inches as measured from an origin point O.sub.2, and wherein the lower section of said shell has a generally cylindrical sidewall and an outwardly curved bottom wall of a generally hemispherical configuration, the ratio of the radius of curvature of the bottom wall to the diameter of the sidewall being from about 0.4 to about 2.0.
    • 一种用于封闭式压缩机单元的壳体,壳体具有顶部或圆顶和底部部分,该圆顶具有独特的形状,其具有增强的吸收和衰减从单元发出的结构和流体传播波能量的能力, 在1000Hz和2,000Hz之间,同时降低了单元的总操作噪声,圆顶由金属板形成并且具有大致倒置的杯形构造,其具有大致圆柱形的侧壁和顶壁,中心部分被周边部分包围, 其中沿大致轴向方向截取的侧壁基本上是直的,其中顶部的中心部分构成顶部总面积的约40至约90%,并且具有大致半球形的构造,平均半径为约6.5至 从原点O2测量的约10.0英寸,并且其中所述壳体的下部具有大致圆柱形的侧壁和外侧 大致半球形结构的弧形弯曲底壁,底壁的曲率半径与侧壁的直径的比率为约0.4至约2.0。