Mine detector and inspection apparatus

    公开(公告)号:US06609451B1

    公开(公告)日:2003-08-26

    申请号:US09830170

    申请日:2001-07-23

    IPC分类号: G01V300

    摘要: A mine detector is provided for detecting buried land mines safely and promptly. A sensor head (12) is connected to a detector body (1) through hinges (11-1 to 11-4) and arms (12-1 to 12-3). The sensor head (12) includes a transmitting and receiving means for emitting electromagnetic impulses to the ground within a range of detection of land mines. When the transmitting and receiving means receives electromagnetic waves reflected from a land mine, information on the three-dimensional structure of the land mine buried under the ground is generated on the basis of the time of arrival of the reflected wave, the level of the reflected wave and the x and y coordinates of the transmitting and receiving means, and the information is displayed on a display (1). The detector is also applicable to the inspection of steel rods and bars for concrete reinforcement.

    Mine detector and inspection apparatus
    2.
    发明授权
    Mine detector and inspection apparatus 失效
    矿山检测仪和检验仪器

    公开(公告)号:US06679153B2

    公开(公告)日:2004-01-20

    申请号:US10281238

    申请日:2002-10-28

    IPC分类号: G01V308

    摘要: A mine detector is provided for detecting buried land mines safely and promptly. A sensor head (12) is connected to a detector body (1) through hinges (11-1 to 11-4) and arms (12-1 to 12-3). The sensor head (12) includes a transmitting and receiving means for emitting electromagnetic impulses to the ground within a range of detection of land mines. When the transmitting and receiving means receives electromagnetic waves reflected from a land mine, information on the three-dimensional structure of the land mine buried under the ground is generated on the basis of the time of arrival of the reflected wave, the level of the reflected wave and the x and y coordinates of the transmitting and receiving means, and the information is displayed on a display (1). The detector is also applicable to the inspection of steel rods and bars for concrete reinforcement.

    摘要翻译: 提供了一种安全,及时地检测埋地雷的探雷器。 传感器头(12)通过铰链(11-1至11-4)和臂(12-1至12-3)连接到检测器主体(1)。 传感器头(12)包括用于在地雷检测范围内向地面发射电磁脉冲的发射和接收装置。 当发射和接收装置接收到从地雷反射的电磁波时,就会根据反射波的到达时间生成埋在地下的地雷的三维结构信息,反射的水平 波形和发送和接收装置的x和y坐标,并且信息被显示在显示器(1)上。 检测器也适用于钢筋和钢筋混凝土加固的检查。

    Camera module whose lens and image sensor can be easily positioned relative to each other
    3.
    发明申请
    Camera module whose lens and image sensor can be easily positioned relative to each other 审中-公开
    相机模块的镜头和图像传感器可以相对于彼此轻松定位

    公开(公告)号:US20070160370A1

    公开(公告)日:2007-07-12

    申请号:US11602875

    申请日:2006-11-20

    IPC分类号: G03B17/00

    摘要: A camera module includes a lens held in a cylindrical holder and an image sensor disposed at a predetermined distance from the lens. The image sensor is disposed on a substrate. The holder integrally has a protrusion that protrudes toward the image sensor and an outer peripheral portion provided outside the protrusion, the lower end of the outer peripheral portion being lower than the lower end of the protrusion. The lower end surface of the protrusion is fixed to the upper surface of the image sensor with an adhesive, and the lower end surface of the outer peripheral portion is fixed to the upper surface of the substrate with an adhesive.

    摘要翻译: 相机模块包括保持在圆柱形保持器中的透镜和设置在与透镜预定距离处的图像传感器。 图像传感器设置在基板上。 保持器一体地具有朝向图像传感器突出的突起和设置在突起外侧的外周部,外周部的下端低于突起的下端。 突出部的下端面用粘合剂固定在图像传感器的上表面,外周部的下端面用粘合剂固定在基板的上表面。

    Fuel tank arrangement structure for vehicle
    4.
    发明申请
    Fuel tank arrangement structure for vehicle 有权
    车辆油箱布置结构

    公开(公告)号:US20060097507A1

    公开(公告)日:2006-05-11

    申请号:US11261475

    申请日:2005-10-31

    IPC分类号: B60P3/22

    摘要: Disclosed is a fuel tank arrangement structure for a vehicle, which is designed to position a fuel tank 30 under a floor panel 4 forming a floor of a passenger compartment of the vehicle. In the fuel tank arrangement structure, at least a laterally inward portion of the floor panel 4 is formed as a convex floor portion 7 protruding upward from a general surface 8 of the floor panel 4, and at least a laterally inward portion of the fuel tank 30 is formed as a convex fuel-tank portion 30a protruding upward. The convex fuel-tank portion 30a is positioned within a space defined by the convex floor portion 7 while positioning the remaining portion of the fuel tank 30 at a height position lower than the general surface 8 of the floor panel 4, and a seat 9 (10) is positioned inside the passenger compartment and above the convex floor portion 7.

    摘要翻译: 公开了一种用于车辆的燃料箱配置结构,其被设计成将燃料箱30定位在形成车辆的乘客室的地板的地板面板4下方。 在燃料箱配置结构中,地板镶板4的至少横向内侧部分形成为从底板4的一般表面8向上突出的凸起的地板部分7,并且至少在燃料箱的横向内侧部分 30形成为向上突出的凸起的燃料箱部分30a。 凸起的燃料箱部分30a位于由凸出的地板部分7限定的空间内,同时将燃料箱30的剩余部分定位在低于地板镶板4的总表面8的高度位置处,并且座椅9 (10)位于乘客舱内部和凸起地板部分7的上方。

    Dispersing and grinding apparatus
    7.
    发明授权
    Dispersing and grinding apparatus 失效
    分散和研磨设备

    公开(公告)号:US5069393A

    公开(公告)日:1991-12-03

    申请号:US622426

    申请日:1990-12-05

    IPC分类号: B01F7/00 B02C17/16 B02C17/20

    CPC分类号: B02C17/166

    摘要: A dispersing and grinding apparatus comprises a vessel having an inlet for receiving a material to be processed and an outlet for discharging the processed material. A rotor is rotatably disposed within the vessel and positioned relative to the inner wall of the vessel to define therebetween a narrow, annular flow path for the passage therethrough of a mixture of the material and a grinding medium. The rotor has a plurality of axially extending grooves on the periphery thereof for guiding the mixture in the circumferential direction as the rotor rotates. The rotor is separated into a plurality of processing zones in the axial direction thereof, and the grooves in each processing zone are phase shifted in the circumferential direction with respect to the grooves in adjacent processing zones. When the mixture transfers from one processing zone to an adjacent processing zone, the velocity difference of the mixture is adjusted so that the mixture advances, as a whole, at approximately equal velocity through the narrow, annular flow path whereby the material is uniformly ground and dispersed.

    INFORMATION STORAGE MEDIUM AND IMAGE GENERATION SYSTEM
    9.
    发明申请
    INFORMATION STORAGE MEDIUM AND IMAGE GENERATION SYSTEM 有权
    信息存储介质和图像生成系统

    公开(公告)号:US20110039618A1

    公开(公告)日:2011-02-17

    申请号:US12851845

    申请日:2010-08-06

    IPC分类号: A63F13/00 A63F9/24

    摘要: An image generation system that generates an image includes: a movement control section that moves a player's moving object in a virtual three-dimensional space based on input information; and an image generation section that generates an image of the virtual three-dimensional space viewed from a given viewpoint. The movement control section performs a follow-up control process that causes the player's moving object to follow a target moving object based on previous movement information about the target moving object.

    摘要翻译: 生成图像的图像生成系统包括:移动控制部,其基于输入信息在虚拟三维空间中移动玩家的移动对象; 以及图像生成部,其生成从给定视点观看的虚拟三维空间的图像。 移动控制部执行跟随控制处理,其使得玩家的移动对象基于关于目标移动对象的先前移动信息跟随目标移动对象。

    Dispersion method and dispersing apparatus using supercritical state
    10.
    发明授权
    Dispersion method and dispersing apparatus using supercritical state 失效
    使用超临界状态的分散方法和分散装置

    公开(公告)号:US5921478A

    公开(公告)日:1999-07-13

    申请号:US975367

    申请日:1997-11-20

    摘要: A dispersion method for uniformly dispersing solid or liquid fine particles in a solvent utilizes a supercritical fluid. A dispersoid of a solid, a liquid or the like is mixed with a solvent, and the resulting mixture is fed to a supercritical vessel. A supercritical solvent is then fed to the supercritical vessel and heated and compressed to a level higher than the critical temperature and critical pressure thereof to convert it to a supercritical fluid. The supercritical fluid and mixture of dispersoid and solvent are mixed together to form a supercritical mixture, which is released to atmospheric pressure in an explosion-crashing tank and subjected to collision within the explosion-crashing tank to efficiently disperse the dispersoid in the solvent.

    摘要翻译: 将固体或液体微粒均匀分散在溶剂中的分散方法使用超临界流体。 将固体,液体等的分散体与溶剂混合,将所得混合物进料至超临界容器。 然后将超临界溶剂进料到超临界容器中并加热并压缩至高于临界温度和临界压力的水平以将其转化为超临界流体。 将超临界流体和分散相和溶剂的混合物混合在一起形成超临界混合物,在爆炸罐中释放至大气压力,并在爆炸罐内碰撞,有效地将分散质分散在溶剂中。