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    • 2. 发明授权
    • Driving turbine blade assembly comprising a passage through which a fluid may pass
    • 驱动涡轮叶片组件,其包括流体可以通过的通道
    • US08358023B2
    • 2013-01-22
    • US12681363
    • 2008-10-06
    • Stephen Mark West
    • Stephen Mark West
    • F03B13/10
    • F01D1/26F03B3/04F03D1/025F03D1/04F03D9/28F03D15/10F05B2240/133Y02E10/223Y02E10/72
    • A turbine unit (11) comprising a passage (23) through which a fluid may pass. Located within the passage (23) is a driving turbine blade set (25) upstream from a pumping turbine blade set (27) wherein the diameter of the pumping turbine blade is larger than the diameter of the driving turbine blade set. The driving turbine blade set and pumping turbine blade set are mounted in opposed relation whereby the turbine blade sets are in reversed orientation with respect to each other such that in simultaneous operation a region between the two turbine blade sets has a lower pressure than the fluid pressure at an opening of the passage. This induces a greater mass flow rate through the turbine unit than would otherwise be created by a pumping turbine blade set equal to or smaller in diameter than the driving turbine blade set.
    • 涡轮单元(11)包括流体可以通过的通道(23)。 位于通道(23)内的是泵送涡轮叶片组(27)上游的驱动涡轮叶片组(25),其中泵送涡轮叶片的直径大于驱动涡轮叶片组的直径。 驱动涡轮叶片组和泵送涡轮叶片组以相对的关系安装,由此涡轮叶片组相对于彼此处于相反的方向,使得在同时操作中,两个涡轮叶片组之间的区域具有比流体压力更低的压力 在通道的开口。 这导致通过涡轮机单元的质量流量比通过等于或小于驱动涡轮机叶片组的直径的泵送涡轮叶片组产生的质量流量更大。
    • 3. 发明申请
    • TURBINE ASSEMBLY
    • 涡轮总成
    • US20100237620A1
    • 2010-09-23
    • US12681363
    • 2008-10-06
    • Stephen Mark West
    • Stephen Mark West
    • H02K7/18F04B25/00F03B17/04
    • F01D1/26F03B3/04F03D1/025F03D1/04F03D9/28F03D15/10F05B2240/133Y02E10/223Y02E10/72
    • A turbine unit (11) comprising a passage (23) through which a fluid may pass. Located within the passage (23) is a driving turbine blade set (25) upstream from a pumping turbine blade set (27) wherein the diameter of the pumping turbine blade is larger than the diameter of the driving turbine blade set. The driving turbine blade set and pumping turbine blade set are mounted in opposed relation whereby the turbine blade sets are in reversed orientation with respect to each other such that in simultaneous operation a region between the two turbine blade sets has a lower pressure than the fluid pressure at an opening of the passage. This induces a greater mass flow rate through the turbine unit than would otherwise be created by a pumping turbine blade set equal to or smaller in diameter than the driving turbine blade set.
    • 涡轮单元(11)包括流体可以通过的通道(23)。 位于通道(23)内的是泵送涡轮叶片组(27)上游的驱动涡轮叶片组(25),其中泵送涡轮叶片的直径大于驱动涡轮叶片组的直径。 驱动涡轮叶片组和泵送涡轮叶片组以相对的关系安装,由此涡轮叶片组相对于彼此处于相反的方向,使得在同时操作中,两个涡轮叶片组之间的区域具有比流体压力更低的压力 在通道的开口。 这导致通过涡轮机单元的质量流量比通过等于或小于驱动涡轮机叶片组的直径的泵送涡轮叶片组产生的质量流量更大。
    • 4. 发明申请
    • TURBINE UNIT AND ASSEMBLY
    • 涡轮机组和组件
    • US20100102566A1
    • 2010-04-29
    • US12445456
    • 2007-10-05
    • Stephen Mark WestSteele West
    • Stephen Mark WestSteele West
    • F03B13/00
    • F03B13/10F03B13/105F03D1/025F03D1/04F03D9/25F03D9/28F05B2240/133F05B2240/97Y02E10/22Y02E10/72
    • A turbine unit (11) adapted to be placed in a flowing fluid. The turbine unit (11) comprises a first turbine set (13) and a second turbine set (15) mounted within a passage (21) of a housing (19). The first turbine blade set (13) and a second turbine blade set (15) are set in opposed relation such that in operation a region between the two turbine blade sets (13, 15) has a lower pressure than the fluid pressure at an opening of the passage (21). The turbine unit (11) being used to generate power. The turbine units (FIGS. 8 to 11) can be abutted with each other such that they define a passage and each turbine unit comprises a driving turbine blade set before fluid passes to a pumping turbine blade set.
    • 适于放置在流动流体中的涡轮单元(11)。 涡轮单元(11)包括安装在壳体(19)的通道(21)内的第一涡轮机组(13)和第二涡轮机组(15)。 第一涡轮叶片组(13)和第二涡轮叶片组(15)被设置成相对关系,使得在操作中,两个涡轮叶片组(13,15)之间的区域的压力低于开口处的流体压力 通道(21)。 涡轮单元(11)用于发电。 涡轮机单元(图8至11)可以彼此邻接,使得它们限定通道,并且每个涡轮机单元包括在流体到泵送涡轮机叶片组之前设置的驱动涡轮机叶片。
    • 6. 发明授权
    • Coating composition having low volatile organic content
    • 涂料组合物挥发性有机物含量低
    • US06780909B2
    • 2004-08-24
    • US09829829
    • 2001-04-10
    • Gregory G. MenovcikMichele L. StaufferMark WestSergio E. BalatanJames A. Laugal
    • Gregory G. MenovcikMichele L. StaufferMark WestSergio E. BalatanJames A. Laugal
    • C08K302
    • C09D167/00C08G18/3831C08G18/6229C08G18/807C09D133/062C09D175/04C09D201/025C08L2666/14C08L2666/16
    • The coating composition of the invention includes a polymer, especially an acrylic polymer, having hydroxyl and/or primary carbamate functionality; a water-miscible organic solvent; a low hydrogen bonding oxygenated solvent; and water that is emulsified in the organic phase. The coating composition of the invention may be a clearcoat coating composition, preferably an automotive clearcoat coating composition. The invention further provides an article, such as an automotive vehicle, having a surface coated with a coating derived from the coating composition of the invention, particularly a composite coating having a basecoat layer and a clearcoat layer, and a method of producing such a coating on a substrate, particularly as a basecoat/clearcoat composite coating, with the coating composition of the invention preferably being at least the clearcoat of the composite coating. The coating composition of the invention provides especially low volatile organic content, with significant reductions of 25% or more from comparable previous coating compositions.
    • 本发明的涂料组合物包括具有羟基和/或伯氨基甲酸酯官能团的聚合物,特别是丙烯酸聚合物; 水混溶性有机溶剂; 低氢键氧合溶剂; 和在有机相中乳化的水。 本发明的涂料组合物可以是透明涂料组合物,优选汽车透明涂料组合物。 本发明还提供了一种具有涂覆有由本发明的涂料组合物衍生的涂层的表面的汽车的制品,特别是具有底涂层和透明涂层的复合涂层,以及制备这种涂层的方法 在基材上,特别是作为底涂层/透明涂层复合涂层,本发明的涂料组合物优选至少为复合涂层的透明涂层。 本发明的涂料组合物提供特别低的挥发性有机物含量,与可比较的涂料组合物相比显着减少25%或更多。
    • 8. 发明授权
    • Copier Machine book support structure
    • 复印机机床支撑结构
    • US5526098A
    • 1996-06-11
    • US513003
    • 1995-08-09
    • Walter D. PeckMark West
    • Walter D. PeckMark West
    • G03B27/62G03G15/00
    • G03G15/605G03B27/6221
    • A book support structure for a copier machine includes a top wall constructed and arranged for receiving and supporting a sheet of glass. A first sloping side wall has an edge integrally formed with a first edge of the top wall and extends downwardly and outwardly at an angle from the top wall. A second sloping side wall has an edge integrally formed with a second edge of the top wall and extends downwardly and outwardly at an angle from the top wall and in a direction perpendicular to the direction of the first side wall. The arrangement is such that the book support structure enables a person to copy a page of a book having a spine in one of two separate orientations, the first orientation being achieved by placing the spine of the book along the junction of the edge of the first side wall and the first edge of the top wall and a page of the book to be copied over the sheet of glass, and the second orientation being achieved by placing the spine of the book along the junction of the edge of the second side wall and the second edge of the top wall and a page of the book to be copied over the sheet of glass. A retrofit kit for mounting the book support structure on an existing copier machine is further disclosed.
    • 一种用于复印机的书本支撑结构包括一个顶壁,其被构造和布置成用于容纳和支撑玻璃板。 第一倾斜侧壁具有与顶壁的第一边缘一体形成并且与顶壁成一定角度地向下和向外延伸的边缘。 第二倾斜侧壁具有与顶壁的第二边缘一体形成的边缘,并且与顶壁成一定角度并且在垂直于第一侧壁的方向的方向上向下和向外延伸。 这种布置使得书本支撑结构使得人们可以将具有脊柱的书的页面复制成两个分开的取向中的一个,第一取向通过将书脊的沿着第一 侧壁和顶壁的第一边缘和要复制在玻璃板上的书的页面,并且第二取向通过沿着第二侧壁的边缘的接合处放置书脊,并且 顶壁的第二边缘和要复印在玻璃板上的书的页面。 进一步公开了用于将书支撑结构安装在现有复印机上的改装套件。
    • 9. 发明授权
    • Turbine unit and assembly
    • 涡轮机组和组装
    • US08884456B2
    • 2014-11-11
    • US12445456
    • 2007-10-05
    • Stephen Mark WestSteele West
    • Stephen Mark WestSteele West
    • F03B13/00F03B13/10F03D1/02F03D1/04
    • F03B13/10F03B13/105F03D1/025F03D1/04F03D9/25F03D9/28F05B2240/133F05B2240/97Y02E10/22Y02E10/72
    • A turbine unit (11) adapted to be placed in a flowing fluid. The turbine unit (11) comprises a first turbine set (13) and a second turbine set (15) mounted within a passage (21) of a housing (19). The first turbine blade set (13) and a second turbine blade set (15) are set in opposed relation such that in operation a region between the two turbine blade sets (13, 15) has a lower pressure than the fluid pressure at an opening of the passage (21). The turbine unit (11) being used to generate power. The turbine units (FIGS. 8 to 11) can be abutted with each other such that they define a passage and each turbine unit comprises a driving turbine blade set before fluid passes to a pumping turbine blade set.
    • 适于放置在流动流体中的涡轮单元(11)。 涡轮单元(11)包括安装在壳体(19)的通道(21)内的第一涡轮机组(13)和第二涡轮机组(15)。 第一涡轮叶片组(13)和第二涡轮叶片组(15)被设置成相对关系,使得在操作中,两个涡轮叶片组(13,15)之间的区域的压力低于开口处的流体压力 通道(21)。 涡轮单元(11)用于发电。 涡轮机单元(图8至11)可以彼此邻接,使得它们限定通道,并且每个涡轮机单元包括在流体到泵送涡轮机叶片组之前设置的驱动涡轮机叶片。