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    • 31. 发明申请
    • METHOD FOR PRODUCING A MEMBRANE RESERVOIR
    • 一种用于生产膜MEMORY
    • WO1998055258A1
    • 1998-12-10
    • PCT/EP1997002939
    • 1997-06-06
    • HYDAC TECHNOLOGY GMBH
    • HYDAC TECHNOLOGY GMBHWEBER, NorbertKLAUK, Bernd
    • B23P15/00
    • F15B1/14B21D51/24B23P15/00F15B2201/205F15B2201/3151F15B2201/3156F15B2201/41F15B2201/415F15B2201/435F15B2201/60F16L55/05
    • The invention relates to a method for producing a membrane reservoir with a metal case. The inventive method comprises the following steps; a) rotating a tubular piece around its longitudinal axis, b) preheating one end of the tubular piece for deformation through heat retraction by strain-hardening, c) strain-hardening the end of the tubular piece by applying at least one pressure tool, selectively heating the target area of said pressure tool to deformation temperature in order to form a floor at the end of the tubular piece with an opening at a collar, said collar being turned outwards, d) forming an inner circular groove in the central area of the tubular piece, e) introducing a membrane system, said membrane system being sustained in the circular groove by a corresponding clamping ring, and f) forming a second floor at the second end of the tubular piece according to steps b) and c).
    • 与蓄能器壳体制造膜贮液器的方法由金属制成。 用由金属制成的储液器外壳制造膜贮液器的方法,包括以下步骤:a)依次使围绕其纵向轴线的管段,B)预热管状件的一端,用于通过轧制的方法通过热回缩形成,c)以至少前进滚动件管端的 与针对其接合区域压缩工具靶向加热到成形温度用于形成在管部分中的底部与一个向外翻衣领的开口端,d)形成在中心区域中的管件,例如一个内环形槽)在相关联的夹紧环的装置插入 环形槽保持膜组件中,f)在所述管状件的第二端根据步骤形成第二地板b)和c)。
    • 35. 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.
    • 40. 发明公开
    • HYDROSPEICHER
    • EP1334280A2
    • 2003-08-13
    • EP01994545.0
    • 2001-11-07
    • HYDAC Technology GmbH
    • WEBER, Norbert
    • F15B1/033F15B1/22F15B1/24
    • F15B1/22F15B1/033F15B1/24F15B2013/004F15B2201/205F15B2201/31F15B2201/411F15B2201/4155Y10T137/7792
    • The invention relates to a hydraulic accumulator, especially a piston accumulator, comprising an accumulator housing (10) and at least one gas chamber (12) and a fluid chamber (14), these being separated from each other by a separating element (16). At least one of these chambers (12, 14) can be filled with a pressure medium or at least partially emptied of the same through at least one valve control unit (26) which has a switching valve (28, 30). The respective switching valve (28) is accommodated in a corresponding valve location (29), and can be moved in the direction of movement of the separating element (16) from an opening position into closing position and vice-versa. The aim of the invention is to avoid an expensive line network between the hydraulic accumulator and the valve control unit, so that sealing or leakage problems such as are common in a line network, never occur, To this end, the valve control unit (26) is accommodated in a valve block (24) which is independent from the housing (10), said valve block (24) has an additional valve location (31) for an additional switching valve (30) for performing another switching task, and the valve locations (29, 31) are configured essentially identically and are situated eccentrically in relation to the longitudinal axis (33) of the hydraulic accumulator for modular use of the switching valves (28, 30), which are configured as identical parts.