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    • 1. 发明授权
    • Cooling device for spindle sealing and/or bearing means
    • 用于主轴密封和/或轴承装置的冷却装置
    • US09416877B2
    • 2016-08-16
    • US13377378
    • 2010-06-11
    • Peter HagqvistKjell Klintenstedt
    • Peter HagqvistKjell Klintenstedt
    • F16C33/76F16J15/32B04B9/12F16C33/78F16C37/00B04B15/02
    • F16J15/324B04B9/12B04B15/02F16C33/7843F16C37/007F16C2320/42
    • A cooling device for cooling of a seal fixed in a non-rotatable member and with a circumferential contact surface on a rotating member. A closed ring-formed chamber is arranged in the rotating member radially inside of the seal. The chamber contains an amount of cooling medium which at normal rotating operation is both liquid and gaseous, such that the liquid cooling medium which by centrifugal forces is pressed towards the outer wall of the chamber is evaporated from the heat generated by the seal, and where a cooling member is arranged on the rotating member to cool an area radially inside of the chamber, such that the gaseous cooling medium is condensed from the cooling effect of the cooling member. The invention also relates to a centrifugal separator comprising such a cooling device.
    • 一种冷却装置,用于冷却固定在不旋转构件中的密封件和旋转构件上的周向接触表面。 闭合的环形室在密封件的径向内部设置在旋转构件中。 该室包含一定量的冷却介质,其在正常的旋转操作下都是液体和气态的,使得通过离心力被挤压到室的外壁的液体冷却介质从密封件产生的热量蒸发,并且其中 冷却构件设置在旋转构件上以冷却室的径向内部的区域,使得气态冷却介质从冷却构件的冷却效果冷凝。 本发明还涉及一种包括这种冷却装置的离心分离器。
    • 2. 发明申请
    • COOLING DEVICE FOR SPINDLE SEALING AND/OR BEARING MEANS
    • 用于主轴密封和/或轴承装置的冷却装置
    • US20120138519A1
    • 2012-06-07
    • US13377378
    • 2010-06-11
    • Peter HagqvistKjell Klintenstedt
    • Peter HagqvistKjell Klintenstedt
    • B01D35/18F28F7/00
    • F16J15/324B04B9/12B04B15/02F16C33/7843F16C37/007F16C2320/42
    • A cooling device for cooling of a sealing means fixed in a non-rotatable member and with a circumferential contact surface on a rotating member. A closed ring-formed chamber is arranged in the rotating member radially inside of said sealing means. Said chamber contains an amount of cooling medium which at normal rotating operation is both liquid and gaseous, such that the liquid cooling medium which by centrifugal forces is pressed towards the outer wall of said chamber is evaporated from the heat generated by said sealing means, and where a cooling member is arranged on said rotating member to cool an area radially inside of said chamber, such that the gaseous cooling medium is condensed from the cooling effect of said cooling member. The invention also relates to a centrifugal separator comprising such a cooling device.
    • 一种冷却装置,用于冷却固定在不旋转构件中的密封装置和旋转构件上的圆周接触表面。 闭合的环形室在所述密封装置的径向内部设置在旋转构件中。 所述室包含一定量的冷却介质,其在正常旋转操作下是液体和气态的,使得通过离心力被压向所述室的外壁的液体冷却介质从所述密封装置产生的热量蒸发, 其中在所述旋转构件上布置有冷却构件以冷却所述室的径向内部的区域,使得所述气态冷却介质从所述冷却构件的冷却效果冷凝。 本发明还涉及一种包括这种冷却装置的离心分离器。
    • 7. 发明授权
    • Combustion process with waste gas purification
    • 燃烧过程与废气净化
    • US4392871A
    • 1983-07-12
    • US409327
    • 1982-08-18
    • Goran AlmlofPeter Hagqvist
    • Goran AlmlofPeter Hagqvist
    • B01D53/00F23J15/00B01D47/05
    • F23J15/006B01D53/002
    • The invention relates to a combustion process with cleansing of the waste gases by compressing, cooling and expanding said gases.The invention provides a continuous process in which highly contaminated low-grade fuels having a high water content can be effectively burned and the waste gases efficiently cleansed, by subjecting the cooled waste gases, together with residual non-desired substances, to a rapid drop in pressure in one or more stages by means of an expansion means (5), whereat the input drive power of the compressor (3), required for compressing said gases, is so high that the temperature downstream of the expansion means (5) is sufficiently low for the condensation and precipitation of frozen contaminants in the waste gases, together with ice crystals.The invention can be applied to all forms of combustion plants, primarily combined power and heating plants fired with fuel having a high sulphur and water content.
    • 本发明涉及通过压缩,冷却和膨胀所述气体来净化废气的燃烧过程。 本发明提供了一种连续的方法,其中通过使冷却的废气与残留的非所需物质一起快速下降,可以有效地将具有高含水量的高度污染的低级燃料有效地燃烧并且废气有效地清洗 通过膨胀装置(5)在一个或多个阶段中的压力,其中压缩所述气体所需的压缩机(3)的输入驱动功率如此高,使得膨胀装置(5)下游的温度足够 对于废气中的冷冻污染物的冷凝和沉淀以及冰晶体来说是低的。 本发明可以应用于所有形式的燃烧设备,主要是用具有高硫和水含量的燃料燃烧的组合式电力和加热设备。
    • 10. 发明授权
    • Membrane module and a method for its manufacture
    • 膜模块及其制造方法
    • US5401403A
    • 1995-03-28
    • US123896
    • 1993-09-20
    • Peter Hagqvist
    • Peter Hagqvist
    • B01D63/08B01D63/14
    • B01D63/14B01D63/081B01D63/084
    • A method of producing a fluid purifier membrane module, sheets of membrane material are disposed in layers with intermediate spacer elements in a manner to obtain mutually alternating spaces for contaminated and purified fluid respectively. Mutually adjoining sheets of membrane material (12) are joined together in pairs in a manner to obtain membrane units (10) which include closed cavities (28). The membrane units (10) with associated spacer elements (18, 34) are arranged in a stack. The mutually facing outer surfaces of the membrane units are joined together in zones and in a fluid-tight fashion along at least one line (36) which extends through the walls of the membrane units. The membrane units are perforated along the line in a manner to obtain through the membrane units a passageway (32) which communicates with the cavities (28).
    • 一种制备流体净化膜组件的方法,膜材料层分别以中间隔离元件分层设置,以分别为被污染和净化的流体获得互相交替的空间。 相互邻接的膜材料片(12)成对地接合在一起以获得包括闭合腔(28)的膜单元(10)。 具有相关联的间隔元件(18,34)的膜单元(10)被布置成堆叠。 膜单元的相互面对的外表面沿着沿着膜单元的壁延伸的至少一个线(36)以区域和流体密封的方式接合在一起。 膜单元沿着线穿孔,以通过膜单元获得与空腔(28)连通的通道(32)。