PISTON AND SUPPORT METHOD FOR PISTON RING GROOVE THEREOF

    公开(公告)号:US20200208590A1

    公开(公告)日:2020-07-02

    申请号:US16260081

    申请日:2019-01-28

    Abstract: Disclosed are a piston and a method for a ring groove support structure thereof. The piston includes a piston head and a piston skirt connected with the piston head; a cooling oil cavity is arranged in the piston head; a position of the bottom of the cooling oil cavity close to the piston skirt is an open end and the open end is sealed through a supporting member; a cooling oil inlet and an oil drain port are arranged on the supporting member; the cooling oil inlet is in communication with the cooling oil cavity and an oil inlet channel of the cooling oil arranged in the piston skirt; the oil drain port is in communication with the cooling oil cavity and the oil drain channel arranged in the piston skirt; and the open end and the supporting member are welded.

    Hook pose detecting equipment and crane
    53.
    发明授权
    Hook pose detecting equipment and crane 失效
    挂钩姿势检测设备和起重机

    公开(公告)号:US08627575B2

    公开(公告)日:2014-01-14

    申请号:US13380554

    申请日:2010-06-25

    CPC classification number: B66C13/46 B66C13/063

    Abstract: A hook pose detecting equipment and a crane with the hook pose detecting equipment, in which the hook pose detecting equipment comprises an angle measuring apparatus for obtaining the angle between an axis in a second coordinate system and the corresponding axis in a first coordinate system, an acceleration measuring meter for obtaining the acceleration of the hook in a predetermined direction, a processor for building the first coordinate system and the second coordinate system, and an output equipment. The first coordinate system is relatively fixed with a predetermined location, and the second coordinate system is relatively fixed with the hook. The processor obtains the pose parameters of the hook in the first coordinate system according to the angle obtained by the angle measuring apparatus and the acceleration obtained by the acceleration measuring meter. The operator is able to take appropriate hook-stabilizing measures according to the pose parameters, and thus the efficiency of lifting work is increased.

    Abstract translation: 钩形姿态检测装置和具有钩姿态检测装置的起重机,其中钩姿态检测装置包括用于获得第二坐标系中的轴与第一坐标系中的对应轴之间的角度的角度测量装置, 用于获得预定方向上的钩的加速度的加速度测量计,用于构建第一坐标系的处理器和第二坐标系,以及输出设备。 第一坐标系与预定位置相对固定,第二坐标系与钩相对固定。 处理器根据由角度测量装置获得的角度和由加速度测量计获得的加速度获得第一坐标系中的钩子的姿态参数。 操作者能够根据姿态参数采取适当的挂钩稳定措施,从而提高起重作业的效率。

    AUTOMATED ADVERSE DRUG EVENT ALERTS
    55.
    发明申请
    AUTOMATED ADVERSE DRUG EVENT ALERTS 有权
    自动不良药物事件警报

    公开(公告)号:US20120323576A1

    公开(公告)日:2012-12-20

    申请号:US13162585

    申请日:2011-06-17

    Applicant: Tao Wang Bin Zhou

    Inventor: Tao Wang Bin Zhou

    Abstract: Event audio data that is based on verbal utterances associated with a pharmaceutical event associated with a patient may be received. Medical history information associated with the patient may be obtained, based on information included in a medical history repository. At least one text string that matches at least one interpretation of the event audio data may be obtained, based on information included in a pharmaceutical speech repository, information included in a speech accent repository, and a drug matching function, the at least one text string being associated with a pharmaceutical drug. One or more adverse drug event (ADE) alerts may be determined based on matching the at least one text string and medical history attributes associated with the at least one patient with ADE attributes obtained from an ADE repository. An ADE alert report may be generated, based on the determined one or more ADE alerts.

    Abstract translation: 可以接收基于与与患者相关联的药物事件相关联的口头话语的事件音频数据。 可以基于包括在病史库中的信息来获得与患者相关联的病史信息。 可以基于包括在药物语音库中的信息,包括在语音口音库中的信息和药物匹配功能,获得与事件音频数据的至少一个解释相匹配的至少一个文本串,所述至少一个文本串 与药物相关联。 可以基于将与至少一个患者相关联的至少一个文本串和病历属性与从ADE储存库获得的ADE属性匹配来确定一个或多个不良药物事件(ADE)警报。 可以基于确定的一个或多个ADE警报来生成ADE警报报告。

    HOOK POSE DETECTING EQUIPMENT AND CRANE
    56.
    发明申请
    HOOK POSE DETECTING EQUIPMENT AND CRANE 失效
    HOOK POSE检测设备和起重机

    公开(公告)号:US20120255188A1

    公开(公告)日:2012-10-11

    申请号:US13380554

    申请日:2010-06-25

    CPC classification number: B66C13/46 B66C13/063

    Abstract: A hook pose detecting equipment and a crane with the hook pose detecting equipment, in which the hook pose detecting equipment comprises an angle measuring apparatus for obtaining the angle between an axis in a second coordinate system and the corresponding axis in a first coordinate system, an acceleration measuring meter for obtaining the acceleration of the hook in a predetermined direction, a processor for building the first coordinate system and the second coordinate system, and an output equipment. The first coordinate system is relatively fixed with a predetermined location, and the second coordinate system is relatively fixed with the hook. The processor obtains the pose parameters of the hook in the first coordinate system according to the angle obtained by the angle measuring apparatus and the acceleration obtained by the acceleration measuring meter. The operator is able to take appropriate hook-stabilizing measures according to the pose parameters, and thus the efficiency of lifting work is increased.

    Abstract translation: 钩形姿态检测装置和具有钩姿态检测装置的起重机,其中钩姿态检测装置包括用于获得第二坐标系中的轴与第一坐标系中的对应轴之间的角度的角度测量装置, 用于获得预定方向上的钩的加速度的加速度测量计,用于构建第一坐标系的处理器和第二坐标系,以及输出设备。 第一坐标系与预定位置相对固定,第二坐标系与钩相对固定。 处理器根据由角度测量装置获得的角度和由加速度测量计获得的加速度获得第一坐标系中的钩子的姿态参数。 操作者能够根据姿态参数采取适当的挂钩稳定措施,从而提高起重作业的效率。

    Porous zeolite of organosilicon, a method for preparing the same and the use of the same
    57.
    发明授权
    Porous zeolite of organosilicon, a method for preparing the same and the use of the same 有权
    有机硅的多孔沸石,其制备方法及其用途

    公开(公告)号:US08030508B2

    公开(公告)日:2011-10-04

    申请号:US12377159

    申请日:2007-07-17

    Abstract: The present invention relates to an organosilicon porous zeolite, preparation of the same, and use of the same. The organosilicon porous zeolite of the invention has the following composition on molar basis: (1/n)Al2O3:SiO(2-m/2):mR:xM, wherein n=5 to 1000, m=0.001 to 1, x=0.005 to 2, R is at least one selected from the group consisting of alkyl, alkenyl and phenyl and connected to a silicon atom in the framework of the zeolite, and M is an organic amine templating agent, wherein a solid Si29NMR spectrum of the zeolite has at least one Si29 nuclear magnetic resonance peak in the range of from −80 to +50 ppm, and wherein a X-ray diffraction pattern of the zeolite exhibits diffraction peaks corresponding to d-spacing of 12.4±0.2, 11.0±0.3, 9.3±0.3, 6.8±0.2, 6.1±0.2, 5.5±0.2, 4.4±0.2, 4.0±0.2 and 3.4±0.1 Å. The porous zeolite can be used as an adsorbent or as a component of a catalyst for the conversion of an organic compound.

    Abstract translation: 本发明涉及一种有机硅多孔沸石,其制备方法及其用途。 本发明的有机硅多孔沸石的摩尔比为:(1 / n)Al2O3:SiO(2-m / 2):mR:xM,其中n = 5〜1000,m = 0.001〜1,x = 0.005至2,R是选自烷基,烯基和苯基中的至少一种,并且与沸石骨架中的硅原子连接,M是有机胺模板剂,其中沸石的固体Si 29 NMR光谱 具有至少一个在-80至+50ppm范围内的Si29核磁共振峰,并且其中该沸石的X射线衍射图显示了对应于d间距为12.4±0.2,11.0±0.3,9.3 ±0.3,6.8±0.2,6.1±0.2,5.5±0.2,4.4±0.2,4.0±0.2和3.4±0.1。 多孔沸石可以用作吸附剂或用作转化有机化合物的催化剂的组分。

    POROUS ZEOLITE OF ORGANOSILICON, A METHOD FOR PREPARING THE SAME AND THE USE OF THE SAME
    58.
    发明申请
    POROUS ZEOLITE OF ORGANOSILICON, A METHOD FOR PREPARING THE SAME AND THE USE OF THE SAME 有权
    有机硅的多孔沸石,其制备方法及其使用方法

    公开(公告)号:US20090247776A1

    公开(公告)日:2009-10-01

    申请号:US12377159

    申请日:2007-07-17

    Abstract: The present invention relates to an organosilicon porous zeolite, preparation of the same, and use of the same. The organosilicon porous zeolite of the invention has the following composition on molar basis: (1/n)Al2O3:SiO(2-m/2):mR:xM, wherein n=5 to 1000, m=0.001 to 1, x=0.005 to 2, R is at least one selected from the group consisting of alkyl, alkenyl and phenyl and connected to a silicon atom in the framework of the zeolite, and M is an organic amine templating agent, wherein a solid Si29NMR spectrum of the zeolite has at least one Si29 nuclear magnetic resonance peak in the range of from −80 to +50 ppm, and wherein a X-ray diffraction pattern of the zeolite exhibits diffraction peaks corresponding to d-spacing of 12.4±0.2, 11.0±0.3, 9.3±0.3, 6.8±0.2, 6.1±0.2, 5.5±0.2, 4.4±0.2, 4.0±0.2 and 3.4±0.1 Å. The porous zeolite can be used as an adsorbent or as a component of a catalyst for the conversion of an organic compound.

    Abstract translation: 本发明涉及一种有机硅多孔沸石,其制备方法及其用途。 本发明的有机硅多孔沸石的摩尔比为:(1 / n)Al2O3:SiO(2-m / 2):mR:xM,其中n = 5〜1000,m = 0.001〜1,x = 0.005至2,R是选自烷基,烯基和苯基中的至少一种,并且与沸石骨架中的硅原子连接,M是有机胺模板剂,其中沸石的固体Si 29 NMR光谱 具有至少一个在-80至+50ppm范围内的Si29核磁共振峰,并且其中该沸石的X射线衍射图显示了对应于d间距为12.4±0.2,11.0±0.3,9.3 ±0.3,6.8±0.2,6.1±0.2,5.5±0.2,4.4±0.2,4.0±0.2和3.4±0.1。 多孔沸石可以用作吸附剂或用作转化有机化合物的催化剂的组分。

    Near Real-time Traffic Routing
    59.
    发明申请
    Near Real-time Traffic Routing 有权
    近实时流量路由

    公开(公告)号:US20090043486A1

    公开(公告)日:2009-02-12

    申请号:US12181249

    申请日:2008-07-28

    CPC classification number: G01C21/3492

    Abstract: A near real-time physical transportation network routing system comprising: a traffic simulation computing grid and a dynamic traffic routing service computing grid. The traffic simulator produces traffic network travel time predictions for a physical transportation network using a traffic simulation model and common input data. The physical transportation network is divided into a multiple sections. Each section has a primary zone and a buffer zone. The traffic simulation computing grid includes multiple of traffic simulation computing nodes. The common input data includes static network characteristics, an origin-destination data table, dynamic traffic information data and historical traffic data. The dynamic traffic routing service computing grid includes multiple dynamic traffic routing computing nodes and generates traffic route(s) using the traffic network travel time predictions.

    Abstract translation: 一种近实时物理运输网络路由系统,包括:交通模拟计算网格和动态交通路由服务计算网格。 交通模拟器使用交通模拟模型和公共输入数据来生成物理交通网络的交通网络旅行时间预测。 物理交通网络分为多个部分。 每个部分都有一个主区域和一个缓冲区域。 交通模拟计算网格包括多个交通模拟计算节点。 公共输入数据包括静态网络特征,原始目的地数据表,动态交通信息数据和历史交通数据。 动态流量路由服务计算网格包括多个动态流量路由计算节点,并使用流量网络旅行时间预测生成流量路由。

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