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    • 72. 发明申请
    • 溶液供給装置
    • 解决方案进料装置
    • WO2007023705A1
    • 2007-03-01
    • PCT/JP2006/316004
    • 2006-08-14
    • 株式会社 イアス川端 克彦
    • 川端 克彦
    • G01N1/00G01N35/08
    • G01N1/38F04B23/02F04B23/10F04B23/14F04B49/22G01N35/1009G01N35/1016G01N35/1065G01N2030/042Y10T137/85986Y10T137/86107Y10T137/86163Y10T137/8766Y10T137/87676
    •  標準溶液の混入量が精密に調節された試料溶液を供給する溶液供給装置を実現する。  溶液供給装置は、第1の流路(101)と第2の流路(102)とそれら2つの流路の途中をそれらの流路抵抗よりも大きな流路抵抗で連通させる第3の流路(103)とを有する混合手段(100)と、第1の流路の一端側に連通し試料溶液を貯蔵する第1の貯蔵手段(10)と、第1の流路の他端側に連通し試料溶液を吸引する吸引手段(20)と、第2の流路の一端側に開閉弁(31)を介して連通し標準溶液を貯蔵する第2の貯蔵手段(30)と、第2の流路の他端側に連通し開閉弁の開状態および閉状態においてそれぞれ標準溶液を吸引および吐出するシリンジポンプ(40)とを具備する。
    • 一种用于供给通过精确调节标准溶液的混合量而形成的样品溶液的溶液供给装置。 溶液供给装置包括具有第一流动通道(101),第二流动通道(102)和允许这两个流动通道在其中间部分彼此连通的第三流动通道(103)的混合装置(100) 具有比这两个通道的流通阻力大的流路阻力;与第一流路的一端连通并存储样品溶液的第一储存装置(10),与另一端连通的抽吸装置(20) 第一流路并吸取样品溶液;第二存储装置(30),其通过打开/关闭阀(31)与第二流动通道的一端连通并存储标准溶液;以及注射泵(40),其与 第二流路的另一端,将打开状态下的标准溶液抽吸排出,开闭阀的关闭状态。
    • 74. 发明申请
    • METHODS AND SYSTEMS FOR PERFORMING, MONITORING AND ANALIZING MULTIPLE MACHINE FLUID PROCESSES
    • 用于执行,监测和分析多种机器流体过程的方法和系统
    • WO2005005792A2
    • 2005-01-20
    • PCT/US2004/020639
    • 2004-06-28
    • RPM INDUSTRIES, INC.APOSTOLIDES, John, K.
    • APOSTOLIDES, John, K.
    • F01M11/00
    • F01M11/0408F01M11/0458F01M2001/0215F01M2001/123F15B21/005F16N21/02F16N21/04F16N39/06F16N2037/006Y10T137/0396Y10T137/4857Y10T137/85978Y10T137/85986Y10T137/86163Y10T137/86389Y10T137/86405
    • In one embodiment, a method is provided for performing a fluid process within a machine having a fluid system including at least two reservoirs of different types of fluids. The method includes the steps of identifying a first reservoir for use in performing a fluid process; (a) adjusting a configuration of a valve system operatively coupled to the fluid system to permit a fluid evacuation process to be performed for the reservoir, (b) subsequently performing the fluid evacuation process for the reservoir, (c) subsequently adjusting the configuration of the valve system to permit a fluid refill process to be performed for the reservoir, (d) subsequently performing the fluid refill process for the reservoir; and, subsequently identifying an additional reservoir and performing at least one of the steps (a), (b), (c) and (d) for the additional reservoir, wherein the first reservoir includes a fluid of a type which is different from a type of a fluid of the additional reservoir. Various system and computer-readable media embodiments are also provided. It is emphasized that this abstract is provided to comply with the rules requiring an abstract that will allow a searcher or other reader to quickly ascertain the subject matter of the technical disclosure. It is submitted with the understanding that it will not be used to interpret or limit the scope or meaning of the claims.
    • 在一个实施例中,提供了一种在具有包括不同类型的流体的至少两个储存器的流体系统的机器内执行流体过程的方法。 该方法包括以下步骤:识别用于执行流体过程的第一储存器; (a)调整可操作地耦合到流体系统的阀系统的构造,以允许对储存器执行流体排出过程,(b)随后对储存器执行流体排出过程,(c)随后调整 所述阀系统允许对所述储存器执行流体填充处理,(d)随后对所述储存器执行所述流体再填充处理; 并且随后识别另外的储存器并执行附加储存器的步骤(a),(b),(c)和(d)中的至少一个,其中第一储存器包括不同于 附加储存器的流体类型。 还提供了各种系统和计算机可读介质实施例。 要强调的是,该摘要被提供以符合要求抽象的规则,允许搜索者或其他读者快速确定技术公开的主题。 提交它的理解是,它不会用于解释或限制权利要求的范围或含义。
    • 75. 发明申请
    • UNLOADING/VENTING VALVE HAVING INTEGRATED THEREWITH A HIGH-PRESSURE PROTECTION VALVE
    • 一个高压保护阀集成在一起的卸载/通风阀
    • WO2004020880A3
    • 2004-07-08
    • PCT/US0327210
    • 2003-09-02
    • HALDEX BRAKE CORP
    • KOELZER ROBERT L
    • F16K17/04F04B49/02G05D16/06F16K15/00
    • F04B49/022Y10T137/7876Y10T137/86163
    • The invention relates to valves for air compressors, and more particularly, to an unloading/venting valve having integrated therewith a high-pressure protection valve where a pressure reducing valve has a discharge port in communication with the air system and a vent. The valve utilizes a valve body biased to form a seal between the discharge port and the vent. A governor monitors the air pressure in the system and generates a signal to move the valve body against the bias and unloads the system when a first predetermined threshold pressure is reached. In the event of a failure of the valve body to move at the first threshold pressure, the valve body is movable against the bias in response to a second predetermined threshold pressure reached in the system, thereby unloading the system.
    • 本发明涉及一种用于空气压缩机的阀,更具体地说,涉及一种具有一体的卸压/排气阀,其中减压阀具有与空气系统连通的排出口和通风口。 该阀利用阀体偏置以在排出口和通气口之间形成密封。 调速器监视系统中的空气压力,并产生一个信号,以使阀体抵抗偏压移动,并在达到第一预定阈值压力时卸载系统。 在阀体以第一阈值压力运动失败的情况下,阀体可以响应于系统中达到的第二预定阈值压力而抵抗偏压运动,从而卸载系统。
    • 76. 发明申请
    • CONTROL SYSTEM FOR MULTI-PUMP OPERATION
    • 多泵操作控制系统
    • WO99058856A1
    • 1999-11-18
    • PCT/US1999/006288
    • 1999-03-25
    • F04B49/06F04D15/00F04D15/02G05D16/20
    • F04D15/0066F04D15/029G05D16/2073Y10T137/86027Y10T137/86163
    • A control system, particularly adaptable to multiple-pump operations in process units, is disclosed. A measured variable, such as pressure, is sensed by a master controller. The master controller, in turn, sends a signal to the driver of the individual pumps or in other ways regulates the output of the two pumps. The master controller is configured to send different signals simultaneously to the two pumps in response to a change in the measured variable. The result is that the response time of one of the pumps is faster than the other. Thus, minor deviations from the desired setpoint of the measured variable are primarily responded to by the pump configured to react faster. Dramatic upsets, resulting in a significant deviation from the desired setpoint for the measured variable, allow one pump to react fast and change its capacity dramatically to bring the measured variable back to the desired setpoint, while the other pump responds more slowly and thus maintains a reasonable forward fluid flowrate all the time to prevent a process unit shutdown. On sensing a loss of the fast-responding pump, the master controller automatically speeds up the response time of the slowly responding pump so that its capacity can be varied reasonably fast enough to maintain the measured variable at the target condition. By use of differing response times on the pumps, the tendency of the pumps to fight each other when operated by steam turbines, for example, is eliminated. Additionally, the pumps with the control system can quickly respond to large process upsets without triggering shutdown conditions of both pumps which would otherwise cause a processing unit shutdown.
    • 公开了一种特别适用于处理单元中的多泵操作的控制系统。 诸如压力的测量变量由主控制器感测。 主控制器又向各个泵的驱动器发送信号,或以其他方式调节两个泵的输出。 主控制器被配置为响应于测量变量的变化而向两个泵同时发送不同的信号。 结果是其中一个泵的响应时间比另一个更快。 因此,与所测量的变量的期望设定点的微小偏差主要由被配置为更快地反应的泵响应。 导致与测量变量的所需设定值有明显偏差的显着偏差,允许一个泵快速反应并显着改变其容量,使测量的变量恢复到所需的设定值,而另一个泵响应更慢,从而维持一个 合理的正向流体一直流入,以防止过程单元关闭。 在感测到快速响应泵的损失时,主控制器自动加快缓慢响应的泵的响应时间,使其容量可以相当快地变化到足以将测量的变量保持在目标状态。 通过在泵上使用不同的响应时间,消除了例如在由蒸汽轮机操作时泵相互斗争的倾向。 此外,具有控制系统的泵可以快速响应大的过程故障,而不会触发两个泵的关闭条件,否则会导致处理单元关闭。
    • 80. 发明授权
    • 다중 기계 유체 처리의 수행, 감시, 분석 방법 및 시스템
    • 执行,监测,分析多机流体处理的方法和系统
    • KR101051522B1
    • 2011-07-22
    • KR1020057025265
    • 2004-06-28
    • 알피엠 인더스트리즈, 엘엘씨
    • 어파스틀리데스존케이.
    • F01M11/00F01M11/04F16N39/00
    • F01M11/0408F01M11/0458F01M2001/0215F01M2001/123F15B21/005F16N21/02F16N21/04F16N39/06F16N2037/006Y10T137/0396Y10T137/4857Y10T137/85978Y10T137/85986Y10T137/86163Y10T137/86389Y10T137/86405
    • 일 실시예에서는, 유체 형태가 상이한 적어도 두 개의 저장조를 구비하는 유체 시스템을 갖는 기계 내에서 유체 처리를 수행하기 위한 방법이 제공된다. 상기 방법은, 유체 처리를 수행하는데 사용하기 위한 제1 저장조를 확인하는 단계, (a) 상기 저장조에 대해 유체 소개 처리가 수행될 수 있도록 상기 유체 시스템에 작동적으로 결합되는 밸브 시스템의 구성을 조정하는 단계, (b) 후속적으로 상기 저장조에 대해 상기 유체 소개 처리를 수행하는 단계, (c) 후속적으로 상기 저장조에 대해 유체 재충전 처리가 수행될 수 있도록 밸브 시스템의 구성을 조정하는 단계, (d) 후속적으로 상기 저장조에 대해 유체 재충전 처리를 수행하는 단계, 및 후속적으로 추가 저장조를 확인하고 상기 추가 저장조에 대해 상기 단계 (a), (b), (c), (d) 중 적어도 하나를 수행하는 단계를 포함하고, 상기 제1 저장조는 상기 추가 저장조의 유체 형태와 상이한 형태의 유체를 구비한다. 다양한 시스템 및 컴퓨터-판독가능 매체 실시예도 제공된다. 본 요약서는 기술적 내용의 요지를 검색자나 다른 독자가 신속히 확인할 수 있는 요약서를 요구하는 규칙에 맞게 제공됨을 강조한다. 이는 청구범위의 범위 또는 의미를 설명하거나 제한하는데 사용되지 않을 것이라는 이해와 더불어 제출된다.
      유체 소개 처리, 유체 재충전 처리, 접합 블록 조립체, 펌프, 제어 모듈, 내부 데이터 모듈, 데이터 저장 매체, 자기 플러그, 필터 스크린
    • 在一个实施例中,提供了一种用于在具有流体系统的机器中执行流体处理的方法,所述流体系统具有至少两个不同流体构造的贮存器。 该方法包括以下步骤:识别用于执行流体处理的第一储存器;(a)调整可操作地耦合到流体系统的阀系统的配置,使得可以在储存器上执行流体引入过程 (B)随后在贮存器上执行流体引入过程;(c)随后调整阀系统的构造,使得可以在贮存器上执行流体再填充过程; d)随后在所述储存器上执行流体再填充过程,随后识别附加储存器并确定所述步骤(a),(b),(c)中的至少一个, 其中第一储存器具有与附加储存器的流体储存器不同形式的流体。 还提供了各种系统和计算机可读介质实施例。 本摘要强调,技术内容的内容是根据规则提供的,要求搜索者或其他读者可以快速确定摘要。 提交时的理解是,它不会被用于描述或限制权利要求的范围或含义。