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    • 1. 发明授权
    • Liquid cooling of glassware molds
    • 玻璃器皿模具的液体冷却
    • US06442976B1
    • 2002-09-03
    • US09513049
    • 2000-02-24
    • Robin L. Flynn
    • Robin L. Flynn
    • C03B914
    • C03B9/3875C03B9/3532
    • A system and method of cooling glassware molds by directing liquid coolant to the blank or blow mold halves of a glassware forming machine through an enclosed pivotal rotary union-type structure. A coolant manifold is carried by each pivotal mold arm, and communicates with coolant inlet and outlet ports at the lower end of each mold part. The manifold is connected by a floating shaft seal and a rotary union assembly and a crank arm to a coolant source and coolant return in the section box of the associated machine section. Each pivotal connection—i.e., between the section box and the crank arm, between the crank arm and the rotary union assembly, and between the rotary union assembly and the floating shaft seal—comprises a bi-directional rotary union for feeding liquid coolant to the manifold and mold parts, and returning coolant from the manifold and mold parts. Dynamic floating seals between the coolant manifold and the mold parts, and between the coolant manifold and the rotary union mechanism, accommodate relative motion between these components as the mold parts are opened and closed.
    • 通过将液体冷却剂通过封闭的枢转旋转联结型结构引导到玻璃器皿成型机的坯件或吹塑半模来冷却玻璃器皿模具的系统和方法。 冷却剂歧管由每个枢转模臂承载,并与每个模具部件的下端处的冷却剂入口和出口连通。 歧管通过浮动轴密封件和旋转接头组件和曲柄臂连接到冷却剂源并且冷却剂在相关联的机器部分的分段箱中返回。 每个枢转连接 - 即在分段箱和曲柄臂之间,在曲柄臂和旋转接头组件之间以及旋转接头组件和浮动轴密封件之间 - 包括用于将液体冷却剂供给到 歧管和模具部件,以及从歧管和模具部件返回的冷却剂。 冷却液歧管和模具部件之间以及冷却剂歧管和旋转联接机构之间的动态浮动密封在模具部件打开和关闭时适应这些部件之间的相对运动。
    • 2. 发明授权
    • Apparatus for delivering glass gobs in a glass forming machines
    • 用于在玻璃成型机中输送玻璃料滴的装置
    • US6038888A
    • 2000-03-21
    • US937743
    • 1997-09-25
    • Robin L. FlynnDan M. HayesGeorge A. Nickey
    • Robin L. FlynnDan M. HayesGeorge A. Nickey
    • C03B7/16C03B9/40C03B13/16
    • C03B7/16
    • A glass gob delivery system for conveying gobs of molten glass from an oscillating gob delivery chute to a blank mold of a glass container forming machine of the I.S. type. The delivery system comprises an elongate trough that extends downwardly from an inlet to an outlet and a deflector with an inlet near the outlet from the trough and an outlet near the blank mold. The trough has a cross-section in the form of an upwardly facing U whose opposed legs extend parallel or substantially parallel to one another, the spacing between the opposed legs tapering gradually from a greater spacing at the inlet to a lesser spacing at the outlet. The deflector has a curved portion that curves downwardly from a higher elevation at a location near the inlet to a lower elevation at a location away from the inlet and has a cross-section in the shape of a downwardly facing U whose opposed legs extend parallel or substantially parallel to one another, the spacing between the opposed legs of the deflector gradually tapering from a greater spacing at the inlet to a lesser spacing at the outlet. The trough and the deflector are formed from an aluminum alloy with gob contacting surfaces that are coated with a nickel-graphite composition.
    • 一种玻璃料滴输送系统,用于将熔融玻璃的料滴从振荡的料滴输送槽输送到I.S.的玻璃容器成型机的坯模上。 类型。 输送系统包括从入口向出口向下延伸的细长槽和具有从槽的出口附近的入口和靠近坯模的出口的偏转器。 槽具有呈向上的U形式的横截面,其相对的腿彼此平行或基本平行地延伸,相对的腿之间的间隔从入口处的较大间隔逐渐变细到出口处较小的间隔。 偏转器具有弯曲部分,其从远离入口的位置处的入口附近的位置处的较高高度向下弯曲,并且具有向下的U形状的横截面,其相对的腿平行延伸或 基本上彼此平行,偏转器的相对的腿之间的间隔从入口处的较大间隔逐渐变细到出口处较小的间隔。 槽和偏转器由具有涂覆有镍 - 石墨组合物的料滴接触表面的铝合金形成。
    • 3. 发明授权
    • Glass gob shearing apparatus with internally cooled blades
    • 具有内部冷却叶片的玻璃料滴剪切装置
    • US5987925A
    • 1999-11-23
    • US947302
    • 1997-10-08
    • Robin L. Flynn
    • Robin L. Flynn
    • C03B7/10C03B7/11C03B9/46C03B21/02C03B33/00
    • C03B7/11C03B7/10Y10T83/0414Y10T83/263Y10T83/293Y10T83/8835
    • A parallel shear apparatus (20) for simultaneously shearing a plurality of streams of molten glass (A, B, C) into gobs comprising opposed carriages (22, 24) which are repetitively moved along rectilinear opposed paths toward and away from one another by a unidirectionally acting servo motor/gear reducer (44) acting through an oscillating bell crank (30). Each of the carriages carries a plurality of shear blades (40a, 40b, 40c/42a, 42b, 42c) which cooperate with one another to shear the glass streams into gobs when the carriages are positioned close to one another. The shear blades carried by each of the carriages have internal flow passages (66) to permit the blades to be internally liquid cooled by liquid entering the carriages from inlet lines (52, 56), and the blades carried by one of the carriages (22) are biased by compression springs (82) into contact with the blades carried by the other carriage (24) to prevent excessive contact loads between the blades in their shearing positions. A contact lubricator (88) is provided to lubricate the contact surfaces of the blades carried by one of the carriages (22).
    • 一种用于同时将多个熔融玻璃流(A,B,C)剪切成包括相对的托架(22,24)的平行剪切装置(20),所述相对的托架(22,24)沿着直线相对的路径彼此反向移动并彼此远离 单向作用的伺服电动机/齿轮减速器(44)通过振荡钟形曲柄(30)作用。 每个托架承载多个剪切刀片(40a,40b,40c / 42a,42b,42c),当刀架彼此靠近时,它们彼此协作以将玻璃流剪切成料滴。 由每个托架承载的剪切刀片具有内部流动通道(66),以允许叶片由从入口管线(52,56)进入托架的液体在内部液体冷却,并且由托架(22,56)中的一个承载的叶片 )被压缩弹簧(82)偏置成与另一个托架(24)承载的叶片接触,以防止叶片在其剪切位置中的过大的接触负载。 提供接触润滑器(88)以润滑由一个滑架(22)承载的叶片的接触表面。
    • 5. 发明授权
    • Neck ring and method of making for a glass container forming machine
    • 颈环和玻璃容器成型机的制造方法
    • US08640501B2
    • 2014-02-04
    • US12080974
    • 2008-04-08
    • Robin L. FlynnDavid L. Lewis
    • Robin L. FlynnDavid L. Lewis
    • C03B11/00
    • C03B9/325C03B9/48Y02P40/57
    • A neck ring for molding a glass container neck finish that includes at least one closure attachment feature. The neck ring includes two semi-annular bi-metal neck ring halves, each consisting essentially of a neck ring insert of wear-resistant metal construction, and a neck ring body of heat-conductive metal construction different from said wear-resistant metal construction and formed around said neck ring insert so as to embed it in said neck ring body. Each of said neck ring halves has a glass-contacting cavity face that includes a first surface portion formed by said inserts for molding the at least one closure attachment feature on the neck finish, and a second surface portion formed by said bodies for molding portions of the neck finish excluding the at least one closure attachment feature.
    • 用于模制玻璃容器颈部的颈环,其包括至少一个闭合附接特征。 颈环包括两个半环形双金属颈环半部,每个半环形二环颈部半部分基本上由耐磨金属结构的颈环插入件和不同于所述耐磨金属结构的导热金属结构的颈环体和 形成在所述颈环插入件周围,以便将其嵌入所述颈环体中。 每个所述颈环半部具有玻璃接触腔体表面,其包括由所述插入件形成的第一表面部分,所述第一表面部分用于模制颈部末端处的至少一个封闭附接特征,以及由所述主体形成的第二表面部分,用于模制部分 不包括至少一个闭合件附接特征的颈部完成。
    • 6. 发明授权
    • Method and apparatus for transferring articles from a first position to a second position
    • 用于将物品从第一位置转移到第二位置的方法和装置
    • US06966428B1
    • 2005-11-22
    • US10746450
    • 2003-12-24
    • Robin L. Flynn
    • Robin L. Flynn
    • B65G25/00C03B9/447
    • C03B9/447
    • A takeout arm assembly (10) for an I.S. glass container forming machine, the arm assembly having a housing (14) that is oscillatable about a fixed shaft (12). The housing has a split first pulley (16a/16b) that is coaxial with the fixed shaft and oscillatable with the housing, and a second pulley (18) that is positioned within and is rotatable with respect to the housing, the second pulley being spaced from the first pulley with the axes of the first and second pulleys being parallel to one another. A double-ended first cable is trained in untoothed peripheral grooves around the first half (16a) of the first pulley and the second pulley with its opposed ends respectively secured at spaced locations to a first half of the first pulley and the second pulley (18), and a double-ended second cable is trained in untoothed peripheral grooves around the second half (16b) of the first pulley with its opposed ends respectively secured at spaced locations to the second half of the first pulley and the second pulley (18). The halves of the first pulley are circumferentially variable with respect to one another to permit independent adjustment of tension levels in the first and second cables.
    • 用于I.S.的取出臂组件(10) 玻璃容器成型机,所述臂组件具有围绕固定轴(12)可摆动的壳体(14)。 所述壳体具有与所述固定轴同轴且与所述壳体振动的分离的第一滑轮(16a / 16b)和位于所述壳体内并且可相对于所述壳体旋转的第二滑轮(18),所述第二滑轮 与第一滑轮间隔开,第一和第二滑轮的轴线彼此平行。 在第一滑轮的前半部(16a)周围的无端周边槽中训练双端第一电缆,其第二滑轮的相对端分别固定在第一滑轮和第二滑轮的前半部分 并且在第一滑轮的第二半(16b)周围的无端周边槽中训练双端第二缆线,其相对端分别固定在与第一滑轮和第二滑轮的第二半部分 18)。 第一滑轮的一半相对于彼此是周向可变的,以允许对第一和第二缆线中的张力水平的独立调节。
    • 7. 发明授权
    • Glass gob shearing apparatus with internally cooled blades and method of
shearing employing same
    • 具有内部冷却叶片的玻璃料滴剪切装置及其剪切方法
    • US5772718A
    • 1998-06-30
    • US602874
    • 1996-02-06
    • Robin L. Flynn
    • Robin L. Flynn
    • C03B7/10C03B7/11
    • C03B7/11C03B7/10Y10T83/0414Y10T83/263Y10T83/293Y10T83/8835
    • A parallel shear apparatus (20) for simultaneously shearing a plurality of streams of molten glass (A, B, C) into gobs including opposed carriages (22, 24) which are repetitively moved along rectilinear opposed paths toward and away from one another. Each of the carriages carries a plurality of shear blades (40a, 40b, 40c/42a, 42b, 42c) which cooperate with one another to shear the glass streams into gobs when the carriages are positioned close to one another. The shear blades carried by each of the carriages have internal flow passages (66) to permit the blades to be internally liquid cooled by liquid entering the carriages from inlet lines (52, 56), and the blades carried by one of the carriages (22) are biased by compression springs (82) into contact with the blades carried by the other carriage (24) to prevent excessive contact loads between the blades in their shearing positions. A contact lubricator (88) is provided to lubricate the contact surfaces of the blades carried by one of the carriages (22). The shear apparatus is employed in a method for shearing streams of molten glass by moving the carriages toward and away from one another to repetitively bring the three ends of the shear blades into partly overlapping relationship.
    • 一种用于将多个熔融玻璃流(A,B,C)同时剪切成包括相对的托架(22,24)的料滴的平行剪切装置(20),其沿着直线相对的路径彼此反向移动。 每个托架承载多个剪切刀片(40a,40b,40c / 42a,42b,42c),当刀架彼此靠近时,它们彼此协作以将玻璃流剪切成料滴。 由每个托架承载的剪切刀片具有内部流动通道(66),以允许叶片由从入口管线(52,56)进入托架的液体在内部液体冷却,并且由托架(22,56)中的一个承载的叶片 )被压缩弹簧(82)偏置成与另一个托架(24)承载的叶片接触,以防止叶片在其剪切位置中的过大的接触负载。 提供接触润滑器(88)以润滑由一个滑架(22)承载的叶片的接触表面。 剪切装置用于通过使托架朝向彼此移动并远离彼此而使剪切叶片的三个端部部分重叠的关系来剪切熔融玻璃流的方法。
    • 8. 发明授权
    • Neck ring cooling
    • 颈环冷却
    • US07748238B2
    • 2010-07-06
    • US11974449
    • 2007-10-12
    • Robin L Flynn
    • Robin L Flynn
    • C03B15/00C03B11/00C03B19/00C03B13/00
    • C03B9/3833
    • A system for directing cooling air onto a neck ring in a glassware molding machine that includes at least one air plenum stationarily disposed at a blank mold station and having an internal cavity for receiving cooling air flowing laterally inwardly toward the axis and at least one outlet opening adjacent to the axis, a plunger wear plate disposed overlying at least a portion of the air plenum, and having an array of axially oriented openings for receiving air directed from the air plenum, a plurality of openings in the neck ring arm for receiving air from the openings in the plunger wear plate across a gap between the neck ring arm and the plunger wear plate when the neck ring arm overlies the plunger wear plate, and a plurality of air passages in the neck ring for receiving air from the neck ring arm openings.
    • 一种用于将冷却空气引导到玻璃器皿模制机中的颈环上的系统,该系统包括固定地设置在空白模具站处的至少一个空气增压室,并具有用于接收朝向轴线向内侧流动的冷却空气的至少一个出口开口 邻近所述轴线的柱塞耐磨板,所述柱塞耐磨板设置在所述空气通风室的至少一部分上方,并且具有用于接收从所述空气通风室引导的空气的轴向定向开口的阵列,所述颈环臂中的多个开口用于从 当颈环臂位于柱塞耐磨板上时,柱塞耐磨板中的开口穿过颈环臂和柱塞耐磨板之间的间隙,并且颈环中的多个空气通道用于从颈环臂开口接收空气 。