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    • 34. 发明公开
    • In line integral shock eliminator
    • 在Leitung integrierterStossdämpfer。
    • EP0088739A1
    • 1983-09-14
    • EP83850052.8
    • 1983-03-04
    • PR HYDRAULIK AB
    • Dahlquist, Lars
    • F16L55/04F15B1/047
    • F16L55/054F15B1/10F15B2201/205F15B2201/315F15B2201/3152F15B2201/3156
    • A self-contained pressure accumulator (10) for pressure fluid systems comprising a vessel (14) constructed of a flexible material defining an internal cavity adapted to receive and maintain a volume of pressurized gas, whereby the pressurized vessel (14) is placed in the fluid system such that the pressure within the cavity is operative in directions generally opposite the directions provided by the pressure of fluid of the system and cavity volume varies as a function of fluid pressure variation within the fluid system. The vessel may contain stabilizing ribs (22) to insure a relatively equal stress distribution along the vessel walls (20).
    • 一种用于压力流体系统的独立的压力蓄能器(10),包括由柔性材料构成的容器(14),所述容器(14)限定适于容纳和保持一定体积的加压气体的内部空腔,由此所述加压容器(14) 流体系统,使得空腔内的压力在大致与由系统的流体的压力提供的方向相反的方向上操作,并且空腔体积作为流体系统内的流体压力变化的函数而变化。 容器可以包含稳定肋(22),以确保沿着血管壁(20)的相对相等的应力分布。
    • 36. 发明公开
    • DRUCKBEHÄLTER
    • EP2718570A1
    • 2014-04-16
    • EP12723111.6
    • 2012-05-12
    • Hydac Technology GmbH
    • KLOFT, PeterBALTES, Herbert
    • F15B1/16F17C1/16
    • F17C1/08F15B1/165F15B2201/205F15B2201/3152F15B2201/4053F15B2201/4056F15B2201/615F17C1/02F17C2201/018F17C2205/0397F17C2270/0554
    • The invention relates to a pressure vessel for receiving at least one fluid medium, and comprising a first shell (1) and a second shell (3) that at least partially encompasses said first shell (1), the first shell (1) having, at least at one of its ends, a collar portion (5) which comprises a securing element (15) that forms an opening (13) for supplying and discharging the medium. The vessel is characterised in that a support element (19), which is in the form of a split ring and surrounds said opening (13), is provided inside the container and has a contact surface (39) adapted to the curved shape of the first shell (1) inner side which is attached to the collar portion (5), said contact surface being able to be pressed onto the first shell (1) using a pressing device (43, 45).
    • 本发明涉及一种用于接收至少一种流体介质的压力容器,并且包括至少部分地包围所述第一壳体(1)的第一壳体(1)和第二壳体(3),所述第一壳体(1) 至少在其一端具有一个套环部分(5),该套环部分包括一个形成用于供应和排出介质的开口(13)的固定元件(15)。 所述容器的特征在于,在容器内部设置有呈开口环形式并且围绕所述开口(13)的支撑元件(19),并且具有适于弯曲形状的接触表面(39) 第一壳体(1)内侧,所述第一壳体(1)内侧被附接到所述套环部分(5),所述接触表面能够利用加压装置(43,45)被压到所述第一壳体(1)上。
    • 40. 发明公开
    • DRUCKSPEICHER
    • 累加器
    • EP2588761A1
    • 2013-05-08
    • EP11726353.3
    • 2011-06-17
    • Hydac Technology GmbH
    • WEBER, Norbert
    • F15B1/14F15B1/18
    • F15B1/10F15B1/14F15B2201/205F15B2201/3152F15B2201/3158
    • A pressure store comprising sub-chambers (8, 54, 28) arranged in a housing (2), a first sub-chamber (8) arranged between the housing (2) and a flexible separating diaphragm (40), a second sub-chamber (54) arranged between the separating diaphragm (40) and a supporting body (48), and a third sub-chamber (28) encompassed by the supporting body (48), wherein the first sub-chamber (8) can be filled with a first fluid, wherein the second sub-chamber (54) and the third sub-chamber (28) are connected to one another in fluid-conducting fashion and can be filled with a second fluid, and wherein the first and the second sub-chamber (8, 54) vary in terms of their respective sizes as a result of movements of the separating diaphragm (40) as a function of the respective filling state, is characterized in that the first fluid is a storage medium and the second fluid is a working medium, and in that the second sub-chamber (54) is increased in size during the extraction of storage medium from the pressure store and is reduced in size during the filling of the pressure store with storage medium.