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    • 72. 发明申请
    • Gob distributor for a glass forming machine
    • Gob玻璃成型机经销商
    • US20050022559A1
    • 2005-02-03
    • US10792353
    • 2004-03-03
    • Heinz HermeningHermann Bogert
    • Heinz HermeningHermann Bogert
    • C03B7/14C03B7/16
    • C03B7/16C03B7/14
    • The gob distributor (1) for a plurality of sections of a glass forming machine has at least one scoop channel which can be pivoted in a reciprocating manner about a vertical axis. A lower end of each scoop channel can be successively orientated, by the pivoting motion, so as to be aligned with a channel system leading to the respective section. An annular pinion (58, 59, 60) is disposed coaxially and in a driving connection with an upper end of each scoop channel. A drive has an electric servomotor which is connected to the at least one annular pinion (58, 59, 60) via a gear mechanism. The gear mechanism comprises: A screw (44) which can be rotationally driven in a reciprocating manner by the electric servomotor, a worm wheel engaged with the screw (44), and a toothed wheel (53) which is non-rotational and coaxial with respect to the worm wheel. The toothed wheel (53) is in a driving connection with the at least one annular pinion (58, 59, 60) by means of intermediate wheels (54, 55).
    • 用于玻璃成型机的多个部分的料滴分配器(1)具有至少一个可以围绕垂直轴线往复运动地枢转的铲斗通道。 可以通过枢转运动来连续地定向每个铲斗通道的下端,以便与通向相应部分的通道系统对齐。 环形小齿轮(58,59,60)同轴布置并且与每个铲斗通道的上端驱动连接。 驱动器具有通过齿轮机构连接到至少一个环形小齿轮(58,59,60)的电动伺服电动机。 齿轮机构包括:螺杆(44),其可以由电动伺服马达以往复方式旋转地驱动;蜗轮与螺杆(44)啮合;以及齿轮(53),其不旋转并与 尊重蜗轮。 齿轮(53)通过中间轮(54,55)与至少一个环形小齿轮(58,59,60)驱动连接。
    • 74. 发明申请
    • Device and method for the simultaneous production of glass products with varying masses
    • 同时生产质量不同的玻璃制品的装置和方法
    • US20030172675A1
    • 2003-09-18
    • US10333944
    • 2003-01-23
    • Franz MuellerAlfred KrischkeWilfried Jungkunz
    • G05B001/00C03B011/16
    • C03B7/14C03B7/005
    • The invention relates to a manufacturing apparatus for simultaneously making different hollow glass products having different gob sizes comprising at least one feed apparatus (12), that has at least one glass reservoir (14), at least one plunger (18a, b), and at least one appurtenant cutting device (24a, b) in the discharge from the reservoir, at least one conveying means (28) to successively transport at least one of the gobs discharged from the feed apparatus (12) into a plurality of shape-imparting units (32a-c) disposed next to each other for variously sized gobs, at least one controller (22) to control the plunger (18a, b) and the cutting device (24a, b) of the feed apparatus (12), the conveying means (28), and the shape-imparting units (32a-c), and said controller (22) controls the activity of the shape-imparting units (32a-c), the feed apparatus (12), and the conveying means (28) in coordination with the gob-size-specific processing time of the products in the shape-imparting units (32a-c) or their cycle time, and the controller (22) is embodied in such a way that, when it determines that the feed times of at least two shape-imparting units (32a-c) will coincide, or if the interval between the times that two of the shape-imparting units (32a-c) are fed will be less than the time necessary for a feed operation, the feeding of one of the shape-imparting units (32a-c) that is to be fed will be delayed and shifted to a subordinate available time window that is long enough to allow the feeding of the not-yet-fed shape-imparting unit(s) to be performed. The invention also relates to a manufacturing process for hollow glass products that uses the said apparatus. Glass products having different masses can be made simultaneously in a single manufacturing apparatus.
    • 本发明涉及一种用于同时制造具有不同料粒尺寸的不同中空玻璃制品的制造装置,其包括至少一个进料装置(12),其具有至少一个玻璃储存器(14),至少一个柱塞(18a,b)和 至少一个附加的切割装置(24a,b),其从所述储存器排出;至少一个输送装置(28),以将从所述进给装置(12)排出的至少一个料滴输送到多个形状赋予 用于各种尺寸的料滴彼此靠近设置的单元(32a-c),用于控制进料装置(12)的柱塞(18a,b)和切割装置(24a,b)的至少一个控制器(22) 输送装置(28)和形状赋予单元(32a-c),并且所述控制器(22)控制形状赋予单元(32a-c),进给装置(12)和输送装置 (28)与产品在形状赋予单位的特定尺寸处理时间协调 其(32a-c)或其循环时间,并且控制器(22)被实施为使得当其确定至少两个形状赋予单元(32a-c)的馈送时间将重合时,或者如果 两个形状赋予单元(32a-c)被馈送的时间之间的间隔将小于进给操作所需的时间,将形状赋予单元(32a-c)中的一个的供给为 被馈送将被延迟并且转移到足够长的从属可用时间窗口,以允许进行尚未馈送的形状赋予单元的馈送。 本发明还涉及使用所述装置的中空玻璃制品的制造方法。 具有不同质量的玻璃制品可以在单个制造装置中同时制造。
    • 75. 发明授权
    • Apparatus for delivering a glass stream
    • 用于输送玻璃流的装置
    • US6076375A
    • 2000-06-20
    • US274592
    • 1999-03-23
    • Michael T. DembickiGarrett L. Scott
    • Michael T. DembickiGarrett L. Scott
    • C03B5/26C03B7/08C03B7/088C03B7/094C03B7/096C03B7/098C03B7/14C03B7/16C03B17/02
    • C03B7/088C03B17/025C03B5/26C03B7/08C03B7/094C03B7/096C03B7/14C03B7/16Y10S65/04
    • A method and apparatus for delivering a glass stream comprising a first inner layer and a second outer layer, comprising a generally vertical orifice, and delivering glass from a second source such that the glass from said second source provides an outer layer about the glass from the first source as it flows through said orifice. A resistance heated tube assembly is made of platinum or material having similar resistance heating properties and extends from a glass source to an orifice through which the glass flows from a glass source for the inner layer. The tube assembly includes a tube portion having an inlet end that communicates with the source for the outer layer and an outlet end that communicates with the source. The tube portion has an axis positioned at any angle ranging between the horizontal and vertical but preferably has an axis which is more vertical than horizontal. Flanges are secured to the ends of said tube portion, and the flanges are connected to an electric power supply. The cross sectional thickness of said flanges is preferably greater than the thickness of the tube portion. Each flange includes an annular groove adjacent its respective end of the tube portion into which the end of said tube portion extends. The flanges are welded to the tube portion. Flange heater modules surround each end of the tube portion.
    • 一种用于输送包括第一内层和第二外层的玻璃流的方法和装置,包括大致垂直的孔,并且从第二源输送玻璃,使得来自所述第二源的玻璃从所述第二源提供围绕玻璃的外层 第一来源流经所述孔。 电阻加热管组件由具有相似电阻加热性能的铂或材料制成,并且从玻璃源延伸到玻璃从内层的玻璃源流过的孔。 管组件包括管部分,其具有与用于外层的源连通的入口端和与源连通的出口端。 管部分具有定位在水平和垂直之间的任何角度的轴线,但优选地具有比水平线更垂直的轴线。 法兰固定在所述管部分的端部,凸缘连接到电源。 所述凸缘的横截面厚度优选地大于管部分的厚度。 每个凸缘包括邻近管部分的相应端部的环形槽,所述管部分的端部延伸到其中。 凸缘焊接到管部分。 法兰加热器模块围绕管部分的每一端。
    • 76. 发明授权
    • Apparatus for continuously forming and processing a glass-ceramic
    • 用于连续地形成和加工玻璃陶瓷的装置
    • US5588979A
    • 1996-12-31
    • US371387
    • 1995-01-11
    • Mutsumi MiyazakiToshiaki Yoshida
    • Mutsumi MiyazakiToshiaki Yoshida
    • C03B7/07C03B7/10C03B7/14C03B11/02C03B11/06C03B11/08C03B32/02C03B11/00
    • C03B11/088C03B11/02C03B11/06C03B32/02C03B7/07C03B7/10C03B7/14C03B2215/44
    • An apparatus for continuously forming a glass-ceramic which melts raw materials and forms melted glass to a predetermined shape without cutting the melted glass and thereafter continuously crystallizes the formed glass to the glass-ceramic is provided. The apparatus includes a melting device for melting raw materials, a flow tube for conveying the melted glass, a flow quantity control device connected to the flow tube for controlling the flow quantity of the melted glass, a pressing device for pressing the melted glass from the flow tube into a predetermined form, a glass preform checking device for measuring the weight or volume of the glass preform and feeding back a difference signal corresponding to a difference between the measured value of the weight or volume and a reference value to the flow quantity control device, the flow quantity control device controlling the quantity of the melted glass flowing through the flow tube in response to the difference signal to reduce the difference between the measured value and the reference value, and a crystallizing device for crystallizing the glass preform. The flow tube has an inner diameter which becomes smaller toward a melted glass outlet.
    • 提供一种用于连续地形成将原料熔化并形成熔融玻璃至预定形状而不切割熔融玻璃并随后将形成的玻璃连续结晶化成玻璃陶瓷的玻璃陶瓷的设备。 该装置包括用于熔化原料的熔化装置,用于输送熔融玻璃的流动管,连接到用于控制熔融玻璃的流量的流动管的流量控制装置,用于将熔融玻璃从 流量管成预定形式,玻璃预制件检查装置,用于测量玻璃预型件的重量或体积,并将与重量或体积的测量值和参考值之间的差相对应的差异信号反馈到流量控制 装置,所述流量控制装置响应于所述差分信号控制流过所述流管的熔融玻璃的量,以减小所述测量值与所述参考值之间的差异,以及用于使所述玻璃预制件结晶的结晶装置。 流动管具有朝向熔融的玻璃出口变小的内径。
    • 77. 发明授权
    • Oscillating discharge chute
    • 振荡排料槽
    • US4846676A
    • 1989-07-11
    • US32866
    • 1987-03-31
    • Oscar Mathis
    • Oscar Mathis
    • B65G69/04C03B7/14C03B19/10F27D3/00F27D9/00
    • C03B7/14B65G69/0441C03B19/1045F27D3/00F27D9/00F27D2003/0006F27D2003/0007F27D2003/0038Y10S198/952
    • The invention relates to a structure for controllably discharging articles that are being continuously transported by a primary conveying structure. A discharge assembly is provided having a chute with an inlet and an outlet. Articles are diverted away from the primary conveying structure and delivered to the chute inlet. The discharge chute is mounted for rotation about a vertical axis and structure is provided for reciprocatively moving the chute outlet back and forth over an infeed portion of a secondary conveying structure to evenly distribute material in a serpentine path along the length of the infeed portion of the secondary conveying structure. In a preferred form, the secondary conveying structure has an associated trough for containing a cooling fluid.
    • 本发明涉及一种用于可控地排出由主输送结构连续输送的制品的结构。 排出组件设有具有入口和出口的滑槽。 物品从初级输送结构转向远离输送到滑槽入口。 排放滑槽安装成围绕垂直轴线旋转,并且提供结构用于在二次输送结构的进料部分上往复运动滑槽出口,以将材料均匀地沿着沿着第二输送结构的进料部分的长度分布在蛇形路径中 二次输送结构。 在优选形式中,二次输送结构具有用于容纳冷却流体的相关联的槽。