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    • 1. 发明申请
    • CONTAINER FLANGE INSPECTION SYSTEM USING AN ANNULAR LENS
    • 集成法兰检查系统使用一个透镜
    • WO1996027782A1
    • 1996-09-12
    • PCT/US1996003156
    • 1996-03-07
    • ALLTRISTA CORPORATION
    • ALLTRISTA CORPORATIONFEDOR, Richard, L.
    • G01N21/00
    • G01N21/909G01N21/9054G02B3/06
    • The present invention inspects the flanges (20) of metal containers (10) that can reliably detect flange defects. The inspection device comprises apparatus (54) for producing an enlarged image of selected portions of the flange (20) with an annular lens (52) between the apparatus (54) and flange (20) and an apparatus (64) for capturing and processing the image. The method involves directing light onto the flange (20) of an article from a light source (28), forming light rays reflected from the flange (20) into radially expanded image of the flange (20) by positioning the annular lens (52) to redirect reflected light rays into the radially expanded image of the flange (20), and providing apparatus (64) for capturing and processing the image to inspect the flange (20) for defects. The annular lens (52) enlarges the image and any defects relative to a pixel of an inspection system.
    • 本发明检查能够可靠地检测凸缘缺陷的金属容器(10)的凸缘(20)。 该检查装置包括用于通过设备(54)和法兰(20)之间的环形透镜(52)产生凸缘(20)的选定部分的放大图像的装置(54)和用于捕获和处理的装置(64) 图片。 该方法包括将光从光源(28)引导到制品的凸缘(20)上,通过定位环形透镜(52)将从凸缘(20)反射的光线形成到凸缘(20)的径向展开的图像中, 以将反射光线重定向到凸缘(20)的径向展开的图像中,以及提供用于捕获和处理图像以检查凸缘(20)的缺陷的装置(64)。 环形透镜(52)相对于检查系统的像素放大图像和任何缺陷。
    • 2. 发明申请
    • METHOD AND APPARATUS FOR COATING GLASSWARE
    • 涂层玻璃的方法和装置
    • WO1995017263A1
    • 1995-06-29
    • PCT/US1994014847
    • 1994-12-22
    • ALLTRISTA CORPORATION
    • ALLTRISTA CORPORATIONSCHOLES, Addison, B.
    • B05B05/025
    • C03C17/005B05B5/001B05B5/025B05B5/0533B05B5/08B05B5/084B05B7/0012B05B16/00B05B16/95C03C17/28C03C17/328C03C17/34C03C2217/42
    • In a system and method for forming a metal oxide coating on glassware, heated glassware (21) is provided in a coating zone (24), preferably by a grounded conveyor (22). An electrostatic charging and depositing field (60) is established to a surface of the glassware (21) in the coating zone (24), and a flow of metallic vapor (56) is generated and introduced into the electrostatic charging and depositing field (60). The metallic vapor (56) is electrostatically deposited on the surface of the heated glassware (21), and reacts with oxygen at the surface of the heated glassware (21) to form a metal oxide coating on the surface of the glassware (21). The system and method can be used in either cold end coating or hot end coating, and can provide a dual cold end coating with an initial metal oxide cold end coating and a subsequent conventional cold end coating, providing improved surface lubricity at reduced costs.
    • 在用于在玻璃器皿上形成金属氧化物涂层的系统和方法中,加热的玻璃器皿(21)设置在涂覆区(24)中,优选地由接地的输送机(22)提供。 静电充电和沉积场(60)被建立到涂覆区(24)中的玻璃器皿(21)的表面,并且产生金属蒸气(56)的流并将其引入到静电充电和沉积场(60 )。 金属蒸汽(56)被静电沉积在加热的玻璃器皿(21)的表面上,并与加热的玻璃器皿(21)表面的氧气反应,以在玻璃器皿(21)的表面上形成金属氧化物涂层。 该系统和方法可以用于冷端涂层或热端涂层,并且可以提供具有初始金属氧化物冷端涂层和随后的常规冷端涂层的双冷端涂层,以降低的成本提供改进的表面润滑性。
    • 3. 发明申请
    • ELECTRO-OPTICAL INSPECTION SYSTEM AND METHOD
    • 电光检测系统及方法
    • WO1996031768A1
    • 1996-10-10
    • PCT/US1996004376
    • 1996-03-29
    • ALLTRISTA CORPORATION
    • ALLTRISTA CORPORATIONFEDOR, Richard, L.PALOMBO, Thomas, H.
    • G01N21/90
    • G01N21/909
    • A system and method for inspecting metal beverage containers (10) includes an ellipsoidal mirror (32) above the container (10). Above the ellipsoidal mirror (32) is an image splitting mirror (52) which presents two images to a first camera (42) and a second camera (62). The first camera (42) views the upper interior portion (15) of the container (10) and the second camera (62) views the flange (14) of the container (10). An image combiner (70) electro-optically combines the two images to produce a composite image of substantially the entire upper interior portion of the container (10) which is analyzed for defects. A third camera (142) is located at a separate location for viewing lower interior portion (12) of the container (10) with a computer (170) receiving the image from the third camera (142) and analyzing the image for defects.
    • 用于检查金属饮料容器(10)的系统和方法包括在容器(10)上方的椭圆面镜(32)。 椭圆镜(32)之上的是分割镜(52),其向第一相机(42)和第二相机(62)呈现两个图像。 第一相机(42)观察容器(10)的上部内部部分(15),第二相机(62)观察容器(10)的凸缘(14)。 图像组合器(70)电光组合两个图像以产生基本上整个容器(10)的上部内部的合成图像,该图像被分析出缺陷。 第三相机(142)位于用于观察容器(10)的下部内部部分(12)的单独位置,计算机(170)接收来自第三相机(142)的图像并分析图像的缺陷。
    • 4. 发明申请
    • JACKETED SACRIFICIAL ANODE CATHODIC PROTECTION SYSTEM
    • 夹套阳极阳极保护系统
    • WO1996030561A1
    • 1996-10-03
    • PCT/US1996003897
    • 1996-03-22
    • ALLTRISTA CORPORATIONLASA, Ivan, R.POWERS, Rodney, G.
    • ALLTRISTA CORPORATIONLENG, Douglas, L.
    • C23F13/00
    • C23F13/16
    • A jacketed anode assembly (10) for use in a sacrificial anode cathodic protection system deployed to impede corrosion of steel or steel reinforcement (16) in pilings (15) or similar supporting columns. A non-conductive jacket formed of mating shell halves (40, 50) is lined along its interior surface with sheets (65, 66) of expanded metal such as expanded zinc. The metal sheets serve as sacrificial anodes when coupled with the steel reinforcement. The jacket and zinc lining are installed as a unit on the piling with the jacket interior surface facing the periphery of the piling and in spaced apart relationship therewith. In this space, a filling material (95) can be introduced to both secure the metal sheets in place between the jacket and piling as well as serve as an electrolyte between the steel reinforcement and the metal sheet.
    • 一种用于在牺牲阳极阴极保护系统中使用的夹套阳极组件(10),其部署以阻止在桩(15)或类似支撑柱中的钢或钢筋(16)的腐蚀。 由配合半壳体(40,50)形成的非导电套管沿着其内表面与诸如膨胀锌的膨胀金属片(65,66)排列。 当与钢筋相结合时,金属板用作牺牲阳极。 夹套和锌衬层作为一个单元安装在桩上,其夹套内表面面向桩的周边并且与其间隔开的关系。 在该空间中,可以引入填充材料(95)以将金属片固定在护套和打桩之间的适当位置,并且用作钢筋和金属片之间的电解质。
    • 6. 发明申请
    • COLD END GLASSWARE COATING APPARATUS
    • 冷端玻璃涂装设备
    • WO1995032316A1
    • 1995-11-30
    • PCT/US1995006354
    • 1995-05-19
    • ALLTRISTA CORPORATIONSCHOLES, Addison, B.LAMIRAND, JosephSALTSGAVER, Duane
    • ALLTRISTA CORPORATION
    • C23C16/00
    • C03C17/005B05B12/36C23C16/4486
    • An apparatus for forming a coating on glassware articles comprises a source of pressurized air and source (121) of liquid coating material. The source (121) of liquid coating material includes a reservoir (122) and a vapor-forming chamber (115). An adjustable gas pressure regulator (65) provides a regulated gas pressure in the reservoir and a regulated flow of liquid coating material out of the reservoir. A plurality of vapor-forming atomizers (134) are positioned and configured to atomize the liquid coating material and direct the coating material vapor into the vapor chamber (115). The apparatus further includes a vapor booth (40, 202) and a conveyor operable to convey glassware articles to the vapor booth to be coated. A plurality of fans (42, 222) provide circulating flows of coating material vapor within the booth and along the conveyor portion.
    • 用于在玻璃器皿制品上形成涂层的装置包括加压空气源和液体涂层材料源(121)。 液体涂料的源(121)包括储存器(122)和蒸气形成室(115)。 可调节的气体压力调节器(65)在储存器中提供调节的气体压力,并且将液体涂层材料的调节流体从储存器中提供。 多个蒸气形成雾化器(134)被定位和配置成雾化液体涂料并将涂料蒸气引导到蒸气室(115)中。 该设备还包括蒸气室(40,202)和可操作以将玻璃器皿物品输送到要涂覆的蒸气室的输送器。 多个风扇(42,222)在展位内沿着输送机部分提供涂料蒸气的循环流动。
    • 7. 发明公开
    • ELECTRO-OPTICAL INSPECTION SYSTEM AND METHOD
    • 电光检测系统和方法
    • EP0819246A1
    • 1998-01-21
    • EP96912506.0
    • 1996-03-29
    • ALLTRISTA CORPORATION
    • FEDOR, Richard, L.PALOMBO, Thomas, H.
    • G01N21
    • G01N21/909
    • A system and method for inspecting metal beverage containers (10) includes an ellipsoidal mirror (32) above the container (10). Above the ellipsoidal mirror (32) is an image splitting mirror (52) which presents two images to a first camera (42) and a second camera (62). The first camera (42) views the upper interior portion (15) of the container (10) and the second camera (62) views the flange (14) of the container (10). An image combiner (70) electro-optically combines the two images to produce a composite image of substantially the entire upper interior portion of the container (10) which is analyzed for defects. A third camera (142) is located at a separate location for viewing lower interior portion (12) of the container (10) with a computer (170) receiving the image from the third camera (142) and analyzing the image for defects.
    • 用于检查金属饮料容器(10)的系统和方法包括在容器(10)上方的椭圆面镜(32)。 在椭圆面镜32的上方是图像分割镜52,其向第一照相机42和第二照相机62提供两个图像。 第一照相机42观察容器10的上部内部15并且第二照相机62观察容器10的凸缘14。 图像组合器(70)电光组合这两个图像以产生容器(10)的基本上整个上部内部部分的复合图像,其被分析缺陷。 用计算机(170)接收来自第三照相机(142)的图像并分析图像的缺陷,第三照相机(142)位于用于观察容器(10)的下部内部部分(12)的分离位置。
    • 9. 发明公开
    • Optical sheet inspection system
    • 系统zur optischen分析vonBlättern。
    • EP0477536A2
    • 1992-04-01
    • EP91114092.9
    • 1991-08-22
    • ALLTRISTA CORPORATION
    • Wertz, Ronald D.Minet, H. KentMesserschmidt, Daniel J.Brown, Carey, S.
    • G01N21/89G01N21/86
    • G01N21/8903B65H43/04B65H2553/42B65H2553/45G01N2021/845G01N2021/8887G01N2021/891G01N2201/06126
    • An optical inspection system inspects individual sheets having scrolled and unscrolled edges for defects in a production line with high transfer velocities. Each of the individual sheets are delivered in a production line with some spacing between them and potentially with some degree of skewness and offset from the production center line. The inspection system of the present invention utilizes a formed viewing window over which individual sheets from the production line are delivered. As each sheet is delivered over the formed viewing window, the undersurface of each individual sheet is uniformly and continuously illuminated along the length of the formed viewing window with high intensity diffused light. The reflected light from the surface of each moving individual sheet is captured by at least one video camera. As the sheet moves across the formed viewing window, a line-by-line video image is captured and stored according to a rectangularization technique which eliminates the need for customized masks. An analyzer receives the stored information and analyzes the stored information for the presence of defects.
    • 光学检查系统检查具有高转印速度的生产线中具有滚动和未旋转边缘的各个片材的缺陷。 每个单独的纸张在生产线上交付,其间具有一定间距,并且潜在地具有一定程度的偏度并偏离生产中心线。 本发明的检查系统利用形成的观察窗,来自生产线的各个片材在其上被输送。 当每个片材在形成的观察窗口上传送时,每个单独片材的下表面沿着形成的观察窗口的长度以高强度漫射光均匀且连续地照亮。 来自每个移动的单张纸的表面的反射光被至少一台摄像机捕获。 当纸张移动穿过形成的观看窗口时,根据矩形化技术捕获并存储逐行视频图像,这消除了对定制掩码的需要。 分析仪接收存储的信息,并分析存储的信息是否存在缺陷。