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    • 1. 发明公开
    • 过滤器装置的过滤器元件、过滤器壳体和过滤器装置
    • CN109152975A
    • 2019-01-04
    • CN201780034039.7
    • 2017-05-08
    • 曼·胡默尔有限公司
    • T.迪恩贝格尔D.施密德B.约斯
    • B01D46/10B01D46/52
    • B01D46/0002B01D23/00B01D35/00B01D39/00B01D46/10B01D46/521B01D2271/02E05B63/00E05B65/00
    • 描述了用于特别是机动车辆的特别是内燃机的过滤器装置(10)的过滤器元件(18)、过滤器壳体(12)和过滤器装置(10),用于流体,特别是空气、气体、燃料、油、水、尿素水溶液或类似物。过滤器元件(18)能可更换地布置在过滤器壳体(12)中在用于流体的至少一个入口(14)和至少一个出口(16)之间。过滤器元件(18)包括至少一个过滤器波纹管(54),其具有至少一个过滤器介质和至少一个密封件(28),密封件(28)相对于过滤器元件(18)的轴线(20)周向地布置在过滤器波纹管(54)的端部侧边缘(52)处。至少一个密封件(28)包括周向紧固区域(56)和周向密封件区域(62),周向紧固区域(56)具有从径向外部到径向内部延伸的径向紧固部段(58)和至少利用一方向分量平行于轴线(20)延伸的轴向紧固部段(60)。紧固区域(56)借助于径向紧固部段(58)和轴向紧固部段(60)围绕过滤器波纹管(54)的边缘(52)接合。径向紧固部段(58)的背离过滤器波纹管(54)的后侧形成用于壳体上的径向内部压力施加部段(48)的保持表面(59)。轴向紧固部段(60)的背离过滤器波纹管(54)的后侧在密封件区域(62)中形成至少部分周向的凹槽(64)的径向内部边界,用于接收壳体上的径向外部压力施加部段(32)。凹槽(64)在与轴向紧固部段(60)相对地定位的径向外部周向侧处从径向内部到径向外部观察由周向密封件凸起(66)界定,周向密封件凸起(66)在轴向方向上观察突出超过所述轴向紧固部段(60)。在所述密封件区域(62)的与所述凹槽(64)轴向相对地定位的外侧处布置至少在轴向方向上作用的周向密封表面(70),所述周向密封表面(70)比所述径向紧固部段(58)的所述保持表面(59)位于距所述过滤器波纹管(54)的端部侧(72)的更大的轴向间隔处。在所述凹槽(64)的基部和所述密封表面(70)之间的轴向间隔大于在所述凹槽(64)的所述基部到所述轴向密封部段(60)的过渡部和所述密封表面(59)到所述密封件区域(62)的过渡部之间的间隔。
    • 5. 发明授权
    • Tube for separating portions of a sample
    • 用于分离样品部分的管
    • US08544348B2
    • 2013-10-01
    • US13687537
    • 2012-11-28
    • Protedyne Corporation
    • Peter Massaro
    • G01N1/22G01N1/18
    • B01D23/00B01L3/502B01L3/5082B01L2300/0681B01L2300/0858G01N33/491Y10T436/25375
    • A method and tube for separating a sample. The tube is configured to separate agglomerated or clumped material or other sample components having over a particular size from other smaller size portions of the sample. For example, blood clots may be separated from serum of a blood sample. The tube includes a chamber with a closed bottom and a sidewall extending upwardly from the bottom, and a sample inlet branch coupled to the chamber. A slit is positioned between the chamber and the sample inlet branch so that after a sample is placed into the sample inlet branch, a portion of the sample having a size smaller than the slit (e.g., liquid material) passes through the slit and into the chamber, and material in the sample having a size larger than the slit remains in the sample inlet branch.
    • 用于分离样品的方法和管。 管被配置成将具有特定尺寸的聚集或聚集的材料或其它样品组分与样品的其它较小尺寸部分分离。 例如,血液凝块可以与血液样品的血清分离。 管包括具有封闭底部的腔室和从底部向上延伸的侧壁,以及耦合到腔室的样品入口分支。 狭缝位于室和样品入口分支之间,使得在将样品放入样品入口分支中后,具有小于狭缝的尺寸(例如液体材料)的样品的一部分穿过狭缝并进入 并且样品中具有大于狭缝的尺寸的材料保留在样品入口分支中。
    • 6. 发明申请
    • TUBE FOR SEPARATING PORTIONS OF A SAMPLE
    • 用于分离样品部分的管
    • US20130089475A1
    • 2013-04-11
    • US13687537
    • 2012-11-28
    • Protedyne Corporation
    • Peter Massaro
    • B01L3/14
    • B01D23/00B01L3/502B01L3/5082B01L2300/0681B01L2300/0858G01N33/491Y10T436/25375
    • A method and tube for separating a sample. The tube is configured to separate agglomerated or clumped material or other sample components having over a particular size from other smaller size portions of the sample. For example, blood clots may be separated from serum of a blood sample. The tube includes a chamber with a closed bottom and a sidewall extending upwardly from the bottom, and a sample inlet branch coupled to the chamber. A slit is positioned between the chamber and the sample inlet branch so that after a sample is placed into the sample inlet branch, a portion of the sample having a size smaller than the slit (e.g., liquid material) passes through the slit and into the chamber, and material in the sample having a size larger than the slit remains in the sample inlet branch.
    • 用于分离样品的方法和管。 管被配置成将具有特定尺寸的聚集或聚集的材料或其它样品组分与样品的其它较小尺寸部分分离。 例如,血液凝块可以与血液样品的血清分离。 管包括具有封闭底部的腔室和从底部向上延伸的侧壁,以及耦合到腔室的样品入口分支。 狭缝位于室和样品入口分支之间,使得在将样品放入样品入口分支中后,具有小于狭缝的尺寸(例如液体材料)的样品的一部分穿过狭缝并进入 并且样品中具有大于狭缝的尺寸的材料保留在样品入口分支中。
    • 7. 发明申请
    • TUBE FOR SEPARATING PORTIONS OF A SAMPLE
    • 用于分离样品部分的管
    • WO2011008249A1
    • 2011-01-20
    • PCT/US2010/001891
    • 2010-07-02
    • PROTEDYNE CORPORATIONMASSARO, Peter
    • MASSARO, Peter
    • B01L3/14G01N33/50
    • B01D23/00B01L3/502B01L3/5082B01L2300/0681B01L2300/0858G01N33/491Y10T436/25375
    • A method and tube for separating a sample. The tube is configured to separate agglomerated or clumped material or other sample components having over a particular size from other smaller size portions of the sample. For example, blood clots may be separated from serum of a blood sample. The tube includes a chamber with a closed bottom and a sidewall extending upwardly from the bottom, and a sample inlet branch coupled to the chamber. A slit is positioned between the chamber and the sample inlet branch so that after a sample is placed into the sample inlet branch, a portion of the sample having a size smaller than the slit (e.g., liquid material) passes through the slit and into the chamber, and material in the sample having a size larger than the slit remains in the sample inlet branch.
    • 用于分离样品的方法和管。 管被配置成将具有特定尺寸的聚集或聚集的材料或其它样品组分与样品的其它较小尺寸部分分离。 例如,血液凝块可以与血液样品的血清分离。 管包括具有封闭底部的腔室和从底部向上延伸的侧壁,以及耦合到腔室的样品入口分支。 狭缝位于室和样品入口分支之间,使得在将样品放入样品入口分支中后,具有小于狭缝的尺寸(例如液体材料)的样品的一部分穿过狭缝并进入 并且样品中具有大于狭缝的尺寸的材料保留在样品入口分支中。
    • 10. 发明授权
    • Technology and device for uniform distribution of water film on solid collecting plate
    • 水膜均匀分布在固体收集板上的技术和装置
    • US08876950B2
    • 2014-11-04
    • US13981134
    • 2012-12-18
    • Qufu Shanda Energy and Enviornment Co., Ltd.Shandong University
    • Chunyuan MaJingcai Chang
    • B03C3/16B03C3/34B01D1/00B01D45/00B01D24/00
    • B03C3/34B01D1/00B01D23/00B01D45/00B03C3/16B03C3/47
    • Disclosed is technology and device for uniform distribution of water film on solid collecting plate used on a wet electrostatic precipitator (ESP). The device includes clamping plate fastening bolts, suspended clamping plates, a water distribution pipe, guide vanes, collecting plate, a limiter, a two-way limited fixed axis and a double arming bolt. The surfaces of the solid collecting plate are subjected to coating pretreatment, the upper parts of the collector are connected with the water distribution pipe, and the 45° guide vanes are twisted; a corrugated diversion with the width of 5 to 8 mm is adopted; stainless steel pipes are crosswise welded, water distribution holes are formed at the water distribution pipe, the distribution pipe is connected with an external water tank, and the inlet quantity of the water is controlled by a PLC; the collectors are placed vertically, and the ESP contains a set of sharp discharge electrodes.
    • 公开了用于湿式静电除尘器(ESP)上使用的固体收集板上水膜均匀分布的技术和装置。 该装置包括夹板紧固螺栓,悬挂夹板,配水管,导叶,集料板,限制器,双向限制固定轴和双重布置螺栓。 固体收集板的表面进行涂层预处理,收集器的上部与配水管连接,45°导叶扭转; 采用宽度为5〜8 mm的波纹分流; 不锈钢管横向焊接,在配水管上形成配水孔,分配管与外部水箱连接,水的入口量由PLC控制; 收集器垂直放置,ESP包含一组尖锐的放电电极。