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    • 1. 发明授权
    • Means and method for inspecting in-process aerosol container closures
    • 检查过程中气溶胶容器盖的方法和方法
    • US4047613A
    • 1977-09-13
    • US700085
    • 1976-06-28
    • George W. Wright
    • George W. Wright
    • B07C5/34B65G47/34
    • B07C5/365B07C5/34
    • An optical and electromagnetic system for checking aerosol container closures for split curls, and for the presence of a continuous bead of sealing compound. The compound is applied to a depression about the periphery of inverted closures, and closures conveyed in single file fashion to an inspection station. A light source disposed in a rotating head above the inspection station scans the periphery of each closure, while a sensor rotating with the source responds to interruptions or voids in the compound. An electromagnetic transducer is rotatably mounted beneath the station and simultaneously scans the curl at the bottom of the inverted closure, producing a defect signal if a split curl is detected. A signal processing system prevents the system from reacting to spurious signals caused by the transit of closures past the inspection station. A counting stage delays the application of a reject signal until the defective closure has passed to an ejection station, at which time an ejection mechanism is triggered and the closure removed from the conveying system.
    • 一种光学和电磁系统,用于检查用于分割卷发的气溶胶容器封闭件,以及用于密封化合物的连续珠的存在。 复合物被施加到围绕倒置的封闭件的周边的凹陷处,并且封闭件以单文件方式传送到检查站。 设置在检查台上方的旋转头中的光源扫描每个封闭件的周边,而与源旋转的传感器响应于化合物中的中断或空隙。 电磁换能器可旋转地安装在工位下方,同时扫描倒置的封闭件底部的卷曲,如果检测到分流卷曲则产生缺陷信号。 信号处理系统防止系统对通过检查站的封闭件的过境引起的杂散信号作出反应。 计数台延迟拒绝信号的应用,直到有缺陷的关闭已经过去到喷射站,此时弹出机构被触发并且封闭件从输送系统移除。
    • 5. 发明授权
    • Burial capsule with anti-decay system
    • 具有防衰减系统的埋囊
    • US5659932A
    • 1997-08-26
    • US641105
    • 1996-04-29
    • George W. Wright
    • George W. Wright
    • A01N1/00A61G17/00
    • A01N1/00A61G17/02A61G17/048A61G17/007
    • Burial capsule with an internal inert gas atmosphere for use to contain the human corpse, or other valuable items, and to protect such items from decay and/or decomposition for an infinite period of time. The burial capsule comprises a one (1) piece elongated, cylindrically shaped enclosure, accomplished by chemically welding two (2) identically configured, homogeneous plastic parts together along a common interfacing surface area. The enclosure contains a single, minute aperture at each opposing end, into which a compatible plastic material female reducer means is chemically welded. A plastic hose adapter is temporarily installed into each reducer; a remote vacuum pump is attached to one (1) adapter, and a remote inert gas means is temporarily attached to the other adapter. The simultaneous activation of the pump and gas means effectively evacuates essentially all of the contaminated gases, and injects an oxygen free, inert gas, environment directly into the confines of the burial capsule. The systematic removal of first the vacuum means, immediately followed by the prompt chemical weldment of a male plug closure means into the reducer means void, and then the removal of the inert gas means, followed by the prompt chemical weldment of a male plug into the other reducer means void, produces a burial capsule which consists of only one (1) homogeneous material part. The hermetically sealed, inert gas filled, one (1) part burial capsule, will effectively protect all items deposited therein from the ravages of decay and/or decomposition indefinitely.
    • 具有用于容纳人类尸体或其他有价值物品的内部惰性气体气氛的埋入胶囊,并且在无限期内保护这些物品免于腐烂和/或分解。 埋葬胶囊包括通过沿着公共接口表面区域将两(2)相同构造的均质塑料部件化学焊接在一起而实现的一(1)件细长的圆柱形外壳。 外壳在每个相对的端部处包含单个微小的孔,其中兼容的塑料材料阴减速器装置被化学焊接在该孔中。 每个减速机暂时安装塑胶软管接头; 远程真空泵连接到一个(1)适配器,并且远程惰性气体装置临时连接到另一个适配器。 泵和气体装置的同时激活有效地排除了所有被污染的气体,并且将无氧的惰性气体环境直接注入到埋葬胶囊的范围内。 首先系统地去除真空装置,紧接着将公插头封闭装置迅速地化学焊接到减速机中,即空隙,然后除去惰性气体装置,随后将公插塞迅速地化学焊接到 其他的减速器意味着无效,产生一个仅由一个(1)均质材料部分组成的埋葬胶囊。 密封的惰性气体填充的一(1)部分埋藏胶囊将有效地保护所有沉积在其中的物品免于衰减和/或分解的破坏。
    • 6. 发明授权
    • Apparatus for inspecting containers
    • 用于检查容器的装置
    • US4029958A
    • 1977-06-14
    • US599070
    • 1975-07-25
    • George W. Wright
    • George W. Wright
    • B07C5/34B07C5/344
    • B07C5/365B07C5/3404
    • A stream of cylindrical metal containers is fed into apparatus having a rotatable turret. The turret indexes each container past a driven wheel for imparting rotation thereto, and the rotating containers are scanned by a split flange detector. At the same or another point about the turret, a proximity detector disposed in close conjunction with the periphery of the rotating container detects any substantial runout of the periphery, indicating a dented container. Still another inspection station comprises a source of diffuse light directed against the sidewalls within a container, and a photosensor directed toward the container end for registering the intensity of reflected light. The light intensity is used as an indication of the presence (or absence) of coating material on substantial areas of the container interior. A compressed air nozzle downstream of the inspection stations is operated by an electrically-controlled valve in timed relationship with the various inspection apparatus to selectively discharge faulty containers from the container stream.
    • 将圆筒形金属容器流送入具有可旋转转台的设备中。 转台将每个容器对准通过一个从动轮的旋转装置,并且旋转的容器被分开的凸缘检测器扫描。 在与转台相同或另一个点处,与旋转容器的周边紧密配合的接近检测器检测周边的任何实质的跳动,指示凹陷的容器。 另一个检查站包括指向容器内的侧壁的漫射光源,以及朝向容器端的光电传感器,用于记录反射光的强度。 光强度用作在容器内部的实质区域上存在(或不存在)涂层材料的指示。 在检查站下游的压缩空气喷嘴通过与各种检查装置定时关系的电控阀来操作,以选择性地从容器流中排出故障容器。