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    • 2. 发明申请
    • COTS FOR BABIES
    • 婴儿用品
    • WO2009144474A1
    • 2009-12-03
    • PCT/GB2009/001358
    • 2009-05-29
    • BEDNEST LIMITEDRIDDIFORD, Martin, PhilipCLIFT, Andrew, JohnREEVES, James, William
    • RIDDIFORD, Martin, PhilipCLIFT, Andrew, JohnREEVES, James, William
    • A47D7/04
    • A47D7/002A47D7/02A47D7/04A47D9/005
    • A cot is designed to be used positioned against the side of a parent bed. A folding leg arrangement (10) enables the height of the cot sleeping base (21) to be matched with the parent bed. The leg arrangement (10) uses support struts and sliding connections to the cot support base to maintain its footprint at all heights. The end walls (3) and side walls (4,5) are all foldable relative to the sleeping base (21). The cot can be folded flat by folding the side walls (4,5) onto the base and the end walls (3) in on top of them. The leg arrangement (10) can also fold flat. One side wall (5) can be folded out to lie on the adjacent parent bed, bridging the gap. It can also be folded at half height to provide partial access when upright, or a shorter bridge when folded out.
    • 婴儿床设计用于定位在父床侧面。 折叠腿布置(10)使得婴儿床睡底(21)的高度与母床匹配。 腿部装置(10)使用支撑支柱和滑动连接到婴儿床支撑基座,以在其所有高度处保持其足迹。 端壁(3)和侧壁(4,5)都相对于睡底(21)可折叠。 通过将侧壁(4,5)折叠到基座上并将端壁(3)放置在其顶部上,可以将床折叠成扁平。 腿部布置(10)也可以折叠平坦。 一个侧壁(5)可以被折叠以位于相邻的母床上,从而桥接间隙。 它也可以折叠在一半高度,以提供部分通道直立时,或一个较短的桥梁折叠时。
    • 3. 发明申请
    • LOCK VALVE
    • 锁阀
    • WO1983001661A1
    • 1983-05-11
    • PCT/US1981001484
    • 1981-11-03
    • TOWMOTOR CORPORATIONREEVES, James, L.
    • TOWMOTOR CORPORATION
    • F15B11/16
    • F15B11/003F15B2211/30515F15B2211/30525F15B2211/3116F15B2211/31588F15B2211/324F15B2211/40569F15B2211/41563F15B2211/428F15B2211/46F15B2211/71
    • A lock valve (20) for preventing fluid swapping between separate fluid ram ends (18a, 19a and 18b, 19b) which are fluidly connected in parallel. The lock valve (20) includes a first control port (30) which is fluidly joined by a first conduit (38) to a first (34) and a second (36) distribution ports which are fluidly connected in parallel. A second control port (32) is fluidly connected to a third (40) and a fourth (42) distribution port through a second conduit (44). A first (54) and a second (56) pilot operated check valve regulates the fluid communication between the first (34) and second (36) distribution ports. The check valves (54, 56) permit fluid flow from the first control port (30) to the first (34) and second (36) distribution ports, but obstruct fluid flow in the opposite direction unless actuated to a fluid transmitting mode by a pilot signal communicated thereto from the second conduit (44). A relief valve (60) provides fluid flow from the check valves (54, 56) to the first control port (30) only when both the check valves (54, 56) have opened. A third pilot operated check valve (62) regulates fluid communication through the second conduit (44) and is actuated by fluid passing from the second control port (32) to the third (40) and fourth (42) distribution ports and by a pilot signal communicated thereto from the first fluid conduit (38). A bypass check valve (66) fluidly connected in parallel relationship with the relief valve (60) provides fluid flow from the first control port (30) to the first (34) and second (36) distribution ports. Movement of the hydraulic rams (18, 19) is thereby precluded unless high pressure fluid is transmitted to the first or the second control port.
    • 一种用于防止在并联流体连接的分离的流体柱塞端部(18a,19a和18b,19b)之间的流体交换的锁定阀(20)。 锁定阀(20)包括第一控制端口(30),其通过第一管道(38)流体地连接到并联流体连接的第一(34)和第二(36)分配端口。 第二控制端口(32)通过第二导管(44)流体连接到第三(40)和第四(42)分配端口。 第一(54)和第二(56)先导操作的止回阀调节第一(34)和第二(36)分配端口之间的流体连通。 止回阀(54,56)允许流体从第一控制端口(30)流向第一(34)和第二(36)分配端口,但是阻止流体沿相反方向流动,除非通过一个 导频信号从第二导管(44)传送到其上。 只有当止回阀(54,56)都打开时,安全阀(60)才能将流体从止回阀(54,56)流向第一控制口(30)。 第三先导操作的止回阀(62)调节通过第二管道(44)的流体连通,并且由流体从第二控制端口(32)传递到第三(40)和第四(42)分配端口的流体和由飞行员 信号从第一流体导管(38)传递到其上。 与溢流阀(60)平行地流体连接的旁通止回阀(66)提供从第一控制口(30)到第一(34)和第二(36)分配口的流体流。 因此,除非高压流体被传送到第一或第二控制端口,否则液压柱塞(18,19)的移动被排除。
    • 4. 发明申请
    • COMPACT X-RAY FLUORESCENCE SPECTROMETER AND METHOD FOR FLUID ANALYSIS
    • 紧凑的X射线荧光光谱仪和流体分析方法
    • WO03060496A3
    • 2003-09-25
    • PCT/US0240665
    • 2002-12-18
    • BATTELLE MEMORIAL INSTITUTESHEPARD CHESTER LWILSON BARY WKIRIHARA LESLIE JMUNLEY JOHN TREEVES JAMES H
    • SHEPARD CHESTER LWILSON BARY WKIRIHARA LESLIE JMUNLEY JOHN TREEVES JAMES H
    • G01N23/20G01N23/223
    • G01N23/20G01N23/223G01N2223/076
    • An X-ray fluorescence device and method are disclosed. The device (600) includes a source block (610) containing an X-ray source (650), a substantially X-ray transparent fluid flow path (620) through the source block (610) and proximate the X-ray source (650), and an X-ray detector (640) separated from the X-ray source (650) by the source block (610). First (622) and second (642) openings are provided in the source block (610) between the X-ray source (650) and the flow path (620) and between the flow path (620) and the detector (640) respectively. In operation, source X-rays pass through the first opening (622) and through the flow path (620). A portion of the source X-rays interact with a fluid in the flow path to create a fluid fluorescence response. The remainder of the source X-rays pass into a noise reduction cavity (612) of the source block. The detector (640) receives the portion of the fluid fluorescence response passing through the second opening (642) and produces an output indicative of the presence and amount of selected components in the fluid.
    • 公开了一种X射线荧光装置和方法。 装置(600)包括一个包含X射线源(650)的源块(610),穿过源块(610)并靠近X射线源(650)的基本X射线透明流体流动路径(620) )和通过源块(610)与X射线源(650)分离的X射线检测器(640)。 第一(622)和第二(642)开口分别设置在X射线源(650)和流路(620)之间以及流路(620)和检测器(640)之间的源极块(610)中 。 在操作中,源X射线穿过第一开口(622)并穿过流路(620)。 源X射线的一部分与流路中的流体相互作用以产生流体荧光响应。 源X射线的其余部分进入源极块的降噪腔(612)。 检测器(640)接收通过第二开口(642)的流体荧光响应的一部分,并产生指示流体中选定部件的存在和量的输出。
    • 5. 发明申请
    • COMPACT X-RAY FLUORESCENCE SPECTROMETER AND METHOD FOR FLUID ANALYSIS
    • 紧凑型X射线荧光光谱仪和流体分析方法
    • WO2003060496A2
    • 2003-07-24
    • PCT/US2002/040665
    • 2002-12-18
    • BATTELLE MEMORIAL INSTITUTESHEPARD, Chester, L.WILSON, Bary, W.KIRIHARA, Leslie, J.MUNLEY, John, T.REEVES, James, H.
    • SHEPARD, Chester, L.WILSON, Bary, W.KIRIHARA, Leslie, J.MUNLEY, John, T.REEVES, James, H.
    • G01N23/00
    • G01N23/20G01N23/223G01N2223/076
    • An X-ray fluorescence device and method are disclosed. The device (600) includes a source block (610) containing an X-ray source (650), a substantially X-ray transparent fluid flow path (620) through the source block (610) and proximate the X-ray source (650), and an X-ray detector (640) separated from the X-ray source (650) by the source block (610). First (622) and second (642) openings are provided in the source block (610) between the X-ray source (650) and the flow path (620) and between the flow path (620) and the detector (640) respectively. In operation, source X-rays pass through the first opening (622) and through the flow path (620). A portion of the source X-rays interact with a fluid in the flow path to create a fluid fluorescence response. The remainder of the source X-rays pass into a noise reduction cavity (612) of the source block. The detector (640) receives the portion of the fluid fluorescence response passing through the second opening (642) and produces an output indicative of the presence and amount of selected components in the fluid.
    • 公开了一种X射线荧光装置和方法。 装置(600)包括含有X射线源(650)的源块(610),穿过源块(610)且靠近X射线源(650)的基本X射线透明流体流动路径(620) )以及由源块(610)与X射线源(650)分开的X射线检测器(640)。 在X射线源(650)和流动路径(620)之间以及在流动路径(620)和检测器(640)之间的源块(610)中提供第一(622)和第二(642) 。 在操作中,源X射线穿过第一开口(622)并穿过流动路径(620)。 一部分源X射线与流路中的流体相互作用以产生流体荧光响应。 其余的源X射线进入源块的降噪腔(612)。 所述检测器(640)接收通过所述第二开口(642)中的流体的荧光响应的该部分并产生指示存在和选定部件的量在所述流体的输出。