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    • 61. 发明申请
    • PRESSURE-INCREASING UNIT
    • 压力增加单位
    • WO2014029912A1
    • 2014-02-27
    • PCT/FI2013/050810
    • 2013-08-16
    • KORPELA, Samuli
    • KORPELA, Samuli
    • F17D1/04F04B41/00F02G1/00
    • F04D13/16F02G1/00F04B41/00F17D1/04Y10T137/3127
    • The present invention relates to a pressure-increasing unit (1 ) comprising first receiving means (2) for receiving a pipeline (4) conveying pressurized gas, at least one first pipeline (3) for further transferring the pressurized gas to applications utilizing it, and second receiving means (6) for receiving a second pipeline (5) conveying reduced- pressure gas returning from the applications. The present solution is characterized in that the receiving means (6) are connected with at least one pressure intensifier (7). This pressure intensifier, in turn, is connected to the first receiving means (2) receiving pressurized gas for transferring gas re-pressurized by a substitution means (8) back to the applications utilizing it.
    • 本发明涉及一种增压单元(1),包括用于接收输送加压气体的管道(4)的第一接收装置(2),用于将加压气体进一步转移到应用于其的应用的至少一个第一管道(3) 以及第二接收装置(6),用于接收输送从应用返回的减压气体的第二管道(5)。 本解决方案的特征在于接收装置(6)与至少一个增压器(7)连接。 该压力增强器又连接到接收加压气体的第一接收装置(2),用于将由替代装置(8)重新加压的气体转移回利用它的应用。
    • 62. 发明申请
    • MULTIPLE VALVE HEAD COMPRESSOR APPARATUS
    • 多阀门压头机
    • WO2013032587A1
    • 2013-03-07
    • PCT/US2012/047028
    • 2012-07-17
    • ALLIED HEALTHCARE PRODUCTS, INC.KROUPA, KevinPALMER, Steve
    • KROUPA, KevinPALMER, Steve
    • F04B41/00
    • A61M16/0063A61M16/0057A61M39/24A61M2039/2486A61M2039/2493F04B39/108F04B43/04F04B45/04F04B53/1065Y10T29/49236
    • A multiple valve compressor head (100) having a casing (102) defining an intake chamber (104) in selective communication with a cavity (120) through a plurality of one-way intake valves (112, 114) and an exhaust chamber (106) in selective communication with the cavity (120) through a plurality of one-way exhaust valves (116, 118) is disclosed. The casing (102) further defines an inlet port (108) for the entry of gas into the intake chamber (104) and an outlet port (110) for forcing out compressed gas from the exhaust chamber (106). In operation, the multiple valve compressor head (100) is in operative engagement with a reciprocating diaphragm that draws the gas into the intake chamber (104) and then the cavity (120) during the intake stroke of the diaphragm, while expelling compressed gas from the cavity (120) and through the outlet port (110) during the exhaust stroke of the diaphragm.
    • 一种多阀压缩机头部(100),其具有限定通过多个单向进气门(112,114)和排气室(106)与空腔(120)选择性连通的进气室(104)的壳体(102) )通过多个单向排气门(116,118)与空腔(120)选择性连通。 壳体(102)还限定用于将气体输入进气室(104)的入口端口(108)和用于迫使来自排气室(106)的压缩气体的出口(110)。 在操作中,多个阀门压缩机头(100)与往复式膜片操作地接合,该往复式隔膜在隔膜的进气冲程期间将气体吸入进气室(104),然后将气体排出空腔(120) 空腔(120)并且在隔膜的排气冲程期间通过出口端口(110)。
    • 64. 发明申请
    • COMBINED REFRIGERATION SYSTEM WITH A LIQUID PRE-COOLING HEAT EXCHANGER
    • 具有液体预冷热交换器的组合制冷系统
    • WO02065028A3
    • 2002-10-10
    • PCT/US0205205
    • 2002-02-13
    • MIDWEST RESEARCH INST
    • GAUL CHRISTOPHER J
    • F04D29/043F04B39/06F04B41/00F04B41/06F04D25/16F25B1/00F25B31/00F25B31/02F25B41/00F25B41/04
    • F25B31/00F04B39/066F04B41/06F04D25/16F25B31/006F25B31/02F25B41/00F25B41/04Y10S62/02
    • A compressor-pump unit (20) for use in a vapor-compression refrigeration system (10) is provided. The compressor-pump unit (20) comprises a driving device (24) including a rotatable shaft (42). A compressor (26) is coupled with a first portion (43) of the shaft (42) for compressing gaseous refrigerant within the vapor-compression refrigeration system (10). A liquid pump (21) is coupled with a second portion (44) of the shaft (42) for receiving liquid refrigerant having a first pressure and for discharging the received liquid refrigerant at a second pressure with the second pressure being higher than the first pressure by a predetermined amount such that the discharged liquid refrigerant is subcooled. A pre-cooling circuit is connected to the liquid pump (22) with the pre-cooling circuit being exposed to the gaseous refrigerant whereby the gaseous refrigerant absorbs heat from the liquid refrigerant, prior to the liquid refrigerant entering the liquid pump (21).
    • 提供一种用于蒸气压缩式制冷系统(10)的压缩机 - 泵机组(20)。 压缩机 - 泵单元(20)包括包括可旋转轴(42)的驱动装置(24)。 压缩机(26)与轴(42)的第一部分(43)联接,用于压缩蒸汽压缩制冷系统(10)内的气态制冷剂。 液体泵(21)与轴(42)的第二部分(44)联接,用于接收具有第一压力的液体制冷剂,并且在第二压力下以第二压力排出所接收的液体制冷剂,其中第二压力高于第一压力 以预定量使排出的液体制冷剂过冷却。 预冷却回路连接到液体泵(22),其中预冷却回路暴露于气态制冷剂,由此气体制冷剂在液体制冷剂进入液体泵(21)之前从液体制冷剂吸收热量。
    • 65. 发明申请
    • HYDRAULIC VALVE SYSTEM
    • 液压阀系统
    • WO02053880A2
    • 2002-07-11
    • PCT/US2001/049556
    • 2001-12-27
    • F01P7/04F04B17/05F04B17/06F04B41/00F04B53/08F15B21/04F01L
    • F01P7/044F04B17/05F04B17/06F04B41/00F04B53/08F15B21/042F15B21/047Y10T137/87885
    • A valve manifold (54) controls hydraulic flow in a hydraulic system for an air compressor unit. The manifold (54) includes a pressure relief valve (1), a cold oil bypass valve (2), a proportional flow valve (3), and an anti-cavitation valve (4). The pressure relief valve (1) diverts flow away from a fan motor (30) when the pressure of hydraulic fluid within the hydraulic system is above a predetermined level. The cold oil bypass valve (2) diverts flow away from a hydraulic cooler (42) when the temperature of hydraulic fluid within the hydraulic system is below a predetermined level. The proportional flow valve (3) diverts flow away from the fan motor (30) when the temperature of hydraulic fluid within the hydraulic system is below a predetermined level. The anti-cavitation valve (4) prevents pressure build up within the hydraulic system when the air compressor unit is shut off.
    • 本发明涉及一种控制空气压缩机装置的液压回路中的流体流动的阀歧管。 该歧管包括安全阀,冷油旁通阀,比例流量阀和防空化阀。 当回路内的液压流体的压力超过预定水平时,安全阀使流动离开风扇马达。 当回路中的液压流体的温度低于预定水平时,冷油旁路阀允许油的流动绕过液压冷却器。 当回路的液压流体温度低于预定水平时,比例流量阀绕过离开风扇马达的流量,并且防空化阀防止压力积聚在液压回路内 当空气压缩机断开时。
    • 68. 发明申请
    • COMPRESSOR ASSEMBLY
    • 压缩机系统
    • WO99002863A1
    • 1999-01-21
    • PCT/EP1998/004207
    • 1998-07-07
    • F04B39/06C02F1/00F04B41/00F04C29/00F04C29/04F04D29/58
    • C02F1/008C02F2103/023F04C29/0014F04C29/04F04C2210/12F04C2210/20F04C2210/60
    • The present invention relates to a compressor assembly that comprises a compressor (12) cooled by water injection into water-cooling circuit (20) as well as a measuring device (30) located in the water-cooling circuit (20) for determining the conductivity value of the cooling water. The assembly also comprises a water supply (40) for feeding non-desalinated water and desalinated water as well as a control device (70). When a limit value of upper conductivity is exceeded, the control device (70) triggers the inlet of desalinated water from the water supply (40) into the water-cooling circuit (20). When a limit value of lower conductivity is exceeded, non-desalinated water is fed from the water supply (40) into the water-cooling circuit (20). The pH and salt content of the cooling water can thus be controlled so as to reduce corrosion by the cooling water as well as the sedimentation therein.
    • 具有压缩机(12)与冷却水回路水喷射冷却(20)的压缩机系统具有用于确定所述冷却水的电导率值的冷却水回路(20)的测量装置(30),一供水源(40)提供非脱盐水,和 的去离子水和控制装置(70)。 超过上限值电导率引进脱盐当控制装置(70)引起的和下方的下部导电限时,从冷却水回路(20)中的水供应源(40)引入的非脱盐水。 由此,pH值和冷却水的盐含量进行控制,使得腐蚀由冷却水和沉淀能够在冷却水被减少。
    • 69. 发明申请
    • REVERSIBLE VARIABLE DISPLACEMENT HYDRAULIC DEVICE
    • 可逆变位液压装置
    • WO1992000456A1
    • 1992-01-09
    • PCT/US1990004892
    • 1990-08-30
    • CATERPILLAR INC.
    • CATERPILLAR INC.GOADE, James, C.WERNER, Claude, H.
    • F04B41/00
    • F04B1/324F04B49/08
    • Reversible, variable displacement, hydraulic devices are useful in transmitting power from an engine to a driven device. The hydraulic components of such devices are generally quite bulky and difficulty to center the swash plate thereof. The subject device (10) includes a pair of servo valves (68, 69) adjustably disposed within a case (11) for individually controlling the flow of actuating fluid to and from a pair of hydraulic servo actuators (46, 47). A servo feedback mechanism (107) is provided to mechanically move a valve spool (84) of one of the servo valves to a position for exhausting fluid from one of the servo actuators as the spool of the other servo valve is moved to a position for directing actuating fluid to the other of the servo actuators. The feedback mechanism also moves the spools substantially to their neutral position when a swash plate (21) controlled by the servo actuators reaches a desired angular position after the other spool is first moved to the position for directing actuating fluid to the other servo actuator. The feedback mechanism is compact and cooperates with the adjustability of the servo valves so that centering of the swash plate is simplified.
    • 70. 发明申请
    • 圧縮機
    • WO2022230289A1
    • 2022-11-03
    • PCT/JP2022/004709
    • 2022-02-07
    • 株式会社日立産機システム
    • 渡部 裕介齋藤 広明
    • F04B41/00F04B41/02
    • 本発明の圧縮機(S1)は、筐体(101)と、気体を圧縮する圧縮機本体(102)と、駆動用のモータ(103)と、モータ(103)を制御する制御基板(104)と、圧縮機本体(102)の吐出気体を貯留するタンク(105)とを備え、筐体(101)内には、圧縮機本体(102)、モータ(103)を格納する機械室(201)と、圧縮機本体(102)とタンク(105)とを接続する配管(108)が配設されるB室(204)と、タンク(105)を格納するA室(203)と、機械室(201)とA室(203)及びB室(204)とを区切るA隔壁(202)と、A室(203)とB室(204)とに分割するB隔壁(205)とを有し、A室(203)は、外気の吸気口(206)を有し、A隔壁(202)は、機械室(201)とA室(203)とを連通する穴であるA通気口(301)を有し、その近傍に、圧縮機本体(102)の吸込み口(109)が位置している。