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    • 6. 发明专利
    • Apparatus and method for conveying gobs of glass to a glass container forming machine
    • AU6187901A
    • 2002-02-28
    • AU6187901
    • 2001-08-17
    • OWENS BROCKWAY GLASS CONTAINER
    • HAYES DAN MTIPPING MARK R
    • B65G51/03C03B7/08C03B7/16C03B9/13C03B35/04C03B7/14
    • An inclined trough assembly (10) for conveying, by gravity, formable gobs of glass at an elevated temperature to a section of a glass container forming machine of the I.S. type, the trough assembly having a trough member (12) configured, in cross-section, generally corresponding to that of an upwardly facing V and a manifold (14) at least partly underlying the trough member and having a configuration, in cross-section, generally corresponding to that of an upwardly facing U. The trough member 12 is inserted into the manifold partly to the bottom thereof, and the manifold has a compressed air inlet (14a) for receiving compressed or fan air to flow along the manifold in cooling contact with the trough member to cool the trough member and thereby reduce the coefficient of friction between the gobs of glass flowing through the trough assembly and the trough member thereof. The trough member has an opposed pair of legs (12a, 12b) joined at the bottoms thereof in a bight (12c), the upper free ends of the legs being spaced apart a greater distance than the width of gobs of the largest size in a wide range of sizes of gobs to be passed through the trough assembly, the bight having a radius greater than the width of gobs of the smallest size in the range of sizes. The trough member has a plurality of apertures (12e) extending therethrough, to permit compressed or fan air flowing in the manifold to flow into the trough member, to thereby further cool the trough member and at least partly levitate the gobs in the trough member to further reduce frictional forces acting on the gobs as they flow through the trough assembly.
    • 7. 发明专利
    • ES2142892T3
    • 2000-05-01
    • ES94111099
    • 1994-07-16
    • OWENS BROCKWAY GLASS CONTAINER
    • NICKEY GEORGE AMOORE JOHN KTIPPING MARK R
    • B07C5/34B07C5/36
    • A system (10) for inspecting and sorting molded containers (C), such as glass bottles that includes a finished product inspection station (14) for inspecting containers transported in sequence along a predetermined path, identifying containers to be sorted from the path on the basis of container mold of origin, and providing an electrical signal indicative of such containers. A conveyor (28) is disposed adjacent to the container path downstream of the finished product inspection station, and is responsive to an electronic control signal for selectively removing a container from the path as the container passes adjacent to the conveyor. A timer (98) receives the electrical signal from the inspection station, and applies the electronic control signal to the conveyor after a time delay coordinated with distance between the inspection station and the conveyor, and velocity of travel of containers along the path between the inspection station and the conveyor.
    • 9. 发明专利
    • BR9402898A
    • 1995-04-11
    • BR9402898
    • 1994-07-21
    • OWENS BROCKWAY GLASS CONTAINER
    • NICKEY GEORGE AMOORE JOHN KTIPPING MARK R
    • B07C5/34B07C5/36
    • A system (10) for inspecting and sorting molded containers (C), such as glass bottles that includes a finished product inspection station (14) for inspecting containers transported in sequence along a predetermined path, identifying containers to be sorted from the path on the basis of container mold of origin, and providing an electrical signal indicative of such containers. A conveyor (28) is disposed adjacent to the container path downstream of the finished product inspection station, and is responsive to an electronic control signal for selectively removing a container from the path as the container passes adjacent to the conveyor. A timer (98) receives the electrical signal from the inspection station, and applies the electronic control signal to the conveyor after a time delay coordinated with distance between the inspection station and the conveyor, and velocity of travel of containers along the path between the inspection station and the conveyor.