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    • 5. 发明公开
    • Methods and systems for performing, monitoring and analyzing multiple machine fluid processes
    • 用于执行,监控和分析多个机器流体过程的方法和系统
    • EP2466082A2
    • 2012-06-20
    • EP12157667.2
    • 2004-06-28
    • RPM Industries, LLC
    • Apostolides, John K
    • F01M11/04B67D7/00
    • 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 emphasised 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,提供了一种用于在具有包括至少两个不同类型的流体的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)调节可操作地连接到流体系统的阀系统的配置,以允许对贮存器执行流体排出过程,(b)随后对贮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再填充过程,(d)随后对所述储存器执行所述流体再填充过程; 并且随后识别额外的储存器并且执行用于所述额外的储存器的步骤(a),(b),(c)和(d)中的至少一个,其中所述第一储存器包括不同于 附加容器的流体的类型。 还提供了各种系统和计算机可读介质实施例。 要强调的是,提供这个摘要是为了符合要求摘要的规则,这将允许搜索者或其他读者快速确定技术公开的主题。 提交时的理解是,它不会被用来解释或限制权利要求的范围或含义。
    • 7. 发明公开
    • GREASE LUBRICATOR
    • 油脂润滑器
    • EP3260754A1
    • 2017-12-27
    • EP17176617.3
    • 2017-06-19
    • T Hove Holding ApS
    • Hove, Thomas
    • F16N13/06F01M11/04F16N37/00
    • F16N13/06F01M2011/0483F16N37/00F16N2013/063F16N2037/006
    • By, according to the invention, forming a grease chamber (2) in a grease lubricator in a cylinder (1), and inserting a piston (3) on top of this grease chamber, the piston (3) via the piston rod (4) will be able to press the grease into the grease pump (11) and also to press out any trapped air in the grease. This is done because the piston (3) via a driving motor (8) can be moved both to and from the grease chamber (2).
      This makes it possible to fill the chamber with grease (2) using a filled grease container (13) which is screwed on to the top allowing the grease via a channel (5,6) to be sucked into the grease chamber (2) using the vacuum that the piston (3) creates with its movement away from the grease chamber (2).
    • 根据本发明,通过在汽缸(1)中的润滑脂润滑器中形成润滑脂室(2),并且在该润滑脂室的顶部上插入活塞(3),活塞(3)经由活塞杆(4) )将能够将润滑脂压入润滑脂泵(11)中,并且还可以压出润滑脂中的任何残留空气。 这是因为经由驱动马达(8)的活塞(3)可以移动到润滑脂室(2)和从润滑脂室(2)移出。 这使得可以使用填充的润滑脂容器(13)向容器填充润滑脂(2),该润滑脂容器(13)拧到顶部,允许通过通道(5,6)将润滑脂吸入润滑脂室(2) 活塞(3)在远离润滑脂腔室(2)时产生的真空。