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    • 4. 发明授权
    • Method and device for detecting defects in material distribution in transparent containers
    • 检测透明容器材料分布缺陷的方法和装置
    • US09244020B2
    • 2016-01-26
    • US13985965
    • 2012-02-16
    • Marc LeconteGuillaume Bathelet
    • Marc LeconteGuillaume Bathelet
    • G01B11/06G01N21/90G01N21/958
    • G01N21/958G01B11/06G01B11/0691G01N21/90
    • An inspection process for detecting defects of thin type, on transparent containers for a series of inspection points distributed over an inspection region superposed according to a determined height of the container taken according to central axis thereof, and according to the circumference of the container comprising: sending a light beam so as to recover on a light sensor the reflected beams by the internal and external faces of the wall of the container, measuring at each inspection point the thickness of the wall as a function of separation at the level of the light sensor between the reflected beams by the internal and external faces, processing the thickness measurements by analyzing their distribution over the inspection region to extract therefrom geometric characteristics, and comparing these geometric characteristics to reference values to determine if the container has a material distribution defect.
    • 一种用于检测薄型缺陷的检查过程,用于根据根据其中心轴线所确定的容器重叠的检查区域分布在一系列检查点的透明容器上,并且根据容器的周长,包括: 发送光束,以便在光传感器上通过容器的壁的内表面和外表面在光检测器上回收反射光束,在每个检查点处测量作为在光传感器的水平处的分离的函数的壁的厚度 在内部和外部面之间的反射光束之间,通过分析其在检查区域上的分布来提取其几何特征并将这些几何特征与参考值进行比较,以确定容器是否具有材料分布缺陷来处理厚度测量。
    • 5. 发明授权
    • Optoelectronic method and appliance for measuring the inside diameter of a hollow body
    • 用于测量中空体内径的光电法和器具
    • US09243893B2
    • 2016-01-26
    • US14236917
    • 2012-08-08
    • Marc Leconte
    • Marc Leconte
    • G01B11/02G01B11/12G01J1/08G01J1/42G06T7/60
    • G01B11/12G01J1/08G01J1/42G06T7/62
    • The invention relates to a method of measuring the inside diameter of a hollow body. According to the invention: the hollow body is illuminated from one side by a diffuse light source presenting two light boundaries that are spaced apart along the measurement axis so as to create two light transitions in an image, which transitions are spaced apart from each other and diametrically opposite; from the side of the hollow body that is opposite from its illuminated side, the light rays that are reflected and refracted by the hollow body are recovered to form at least one image in which there appear at least the two light transitions; and the image is processed in order to determine the distance between the two light transitions in order to determine a measurement for the inside diameter of the hollow body.
    • 本发明涉及一种测量中空体内径的方法。 根据本发明:中空体从一侧被扩散光源照亮,该漫射光源具有沿着测量轴线间隔开的两个光边界,从而在图像中产生两个光跃迁,该转变彼此间隔开,并且 完全相反 从空心体的与其照射侧相反的一侧,回收由中空体反射和折射的光线,以形成至少一个至少出现两个光转变的图像; 并且处理图像以确定两个光跃迁之间的距离,以便确定中空体的内径的测量。
    • 6. 发明申请
    • OPTOELECTRONIC METHOD AND APPLIANCE FOR MEASURING THE INSIDE DIAMETER OF A HOLLOW BODY
    • 用于测量中空身体内径的光电方法和装置
    • US20140347678A1
    • 2014-11-27
    • US14236917
    • 2012-08-08
    • Marc Leconte
    • Marc Leconte
    • G01B11/12G01J1/42G06T7/60G01J1/08
    • G01B11/12G01J1/08G01J1/42G06T7/62
    • The invention relates to a method of measuring the inside diameter of a hollow body (2). According to the invention: the hollow body (2) is illuminated from one side by a diffuse light source (9) presenting two light boundaries (91, 92) that are spaced apart along the measurement axis (x) so as to create two light transitions in an image, which transitions are spaced apart from each other and diametrically opposite; from the side of the hollow body that is opposite from its illuminated side, the light rays that are reflected and refracted by the hollow body (2) are recovered to form at least one image in which there appear at least the two light transitions; and the image is processed in order to determine the distance between the two light transitions in order to determine a measurement for the inside diameter of the hollow body.
    • 本发明涉及一种测量中空体(2)的内径的方法。 根据本发明:中空体(2)从一侧被扩散光源(9)照射,该扩散光源具有沿测量轴线(x)间隔开的两个光边界(91,92),以便产生两个光 图像中的转变,该转变彼此间隔开并且完全相反; 从空心体的与其照射侧相反的一侧,回收由中空体(2)反射和折射的光线,以形成至少一个至少出现两个光转变的图像; 并且处理图像以确定两个光跃迁之间的距离,以便确定中空体的内径的测量。
    • 7. 发明申请
    • METHOD AND DEVICE FOR MEASURING THE VERTICALITY OF A CONTAINER
    • 用于测量集装箱垂直度的方法和装置
    • US20140088916A1
    • 2014-03-27
    • US14008701
    • 2012-03-28
    • Marc LeconteJean-François Garin
    • Marc LeconteJean-François Garin
    • G01B21/02
    • G01B21/02G01B11/002G01B11/26G01N21/90
    • A method for measuring verticality of a container having a base and vertical wall comprises measuring at each rotational position of the container, at least the position along a first measurement axis, of at least one first measuring point located on the base, and a second measuring point located on the base diametrically opposite to the first measuring point, the position along a third measurement axis, of at least one third measuring point located on the vertical wall at a distance from the base. An angle defined between a first segment passing through the first and second measuring points and a second segment intersecting the first segment and passing through at least the third measuring point is selected to be representative of the container verticality. For each rotational position of the container, a quantity depending on the angle is calculated. Verticality is measured from the variations of the calculated quantity.
    • 用于测量具有基底和垂直壁的容器的垂直度的方法包括在容器的每个旋转位置处至少沿着第一测量轴线的位置测量位于基座上的至少一个第一测量点的第二测量 位于与第一测量点(沿着第三测量轴线)沿径向相对的基座上,位于垂直壁上距离基座一定距离的至少一个第三测量点。 选择通过第一和第二测量点的第一段和与第一段交叉并穿过至少第三测量点的第二段之间限定的角度来代表容器垂直度。 对于容器的每个旋转位置,计算取决于角度的量。 垂直度是根据计算量的变化量度量的。
    • 8. 发明申请
    • DEVICE FOR INSPECTING THE RINGS AND NECKS OF CONTAINERS
    • 检查集装箱的吊环和装置的装置
    • US20130247404A1
    • 2013-09-26
    • US13825615
    • 2011-09-28
    • Jean-Francois GarinDominique Pitaval
    • Jean-Francois GarinDominique Pitaval
    • G01B5/02
    • G01B5/02G01B5/061G01B5/08G01B5/12G01B7/12G01B21/10
    • A device for inspecting rings and necks of containers includes a movable element with an outer gauge for checking the outside of the ring of the containers, and an inner gauge for checking the inside of the ring and neck of the containers. The movable element includes a system for measuring the position of the movable element relative to the frame, a system for detecting contact between the inner gauge and the container, a system for detecting contact between the outer gauge and the container, and a processing unit for determining, on the basis of the measurements of the position of the movable element and of the instances of contact between the gauges and the container, whether or not the size of the rings and/or necks of the containers are acceptable, and the types of defects for the containers whereof the sizes of the rings and/or necks are not acceptable.
    • 用于检查容器的环和颈部的装置包括具有用于检查容器的环的外部的外部计量器的可移动元件和用于检查容器的环和颈部的内部的内部计量器。 可移动元件包括用于测量可移动元件相对于框架的位置的系统,用于检测内部规格和容器之间的接触的系统,用于检测外部规格和容器之间的接触的系统,以及用于 基于可移动元件的位置的测量和仪表与容器之间的接触的实例的确定,确定容器的环和/或颈部的尺寸是否可接受,并且类型 不能接受环和/或颈部尺寸的容器的缺陷。