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    • 2. 发明授权
    • Arrangement for adjusting the mass of thermoplastic gobs for a molding
machine
    • US4369053A
    • 1983-01-18
    • US312852
    • 1981-10-19
    • Kurt BeckerGerhard GeiselSiegfried SchwarzerHans-Georg Seidel
    • Kurt BeckerGerhard GeiselSiegfried SchwarzerHans-Georg Seidel
    • C03B7/08B29B9/00B29C31/00B29C31/06C03B7/084C03B9/193C03B9/41C03B11/16G05B11/00C03B7/14
    • C03B9/1936C03B11/16C03B7/084C03B9/1932C03B9/41
    • An arrangement for adjusting the mass of gobs of thermoplastic material, especially molten glass, which are deformed in a positive manner in the mold of a molding machine by means of a pressing member which penetrates into the gobs. A distance transducer mechanically detects the maximum depth of penetration reached by the pressing member during each molding-machine operating cycle. The distance transducer is connected with a metallic actuating element for a differential transducer, at whose output is produced an electrical signal proportional to the maximum penetration depth reached, this signal being applied to an automatic regulating circuit which adjusts the setting of a dosing structure which controls the mass of the gobs. The regulating circuit includes, at the output of the differential transformer and connected one after the next, a measurement transducer, a maximum-value storage, a sample-and-hold circuit, a summing junction, a PI- or PID-regulator and an adjusting motor which drives an adjusting member for the dosing structure, as well as a feedback transducer. The feedback transducer is connected to the PI- or PID-regulator via a rotary-angle-to-voltage converter. A control and display panel is connected to a control logic circuit, the latter connected to the maximum-value storage and to the sample-and-hold circuit, the control logic circuit receiving a machine synchronization signal once per machine operating cycle. A desired-value potentiometer furnishes a desired-value voltage representing the optimum penetration depth for the pressing member, this voltage being applied to the summing junction. A weighting circuit can be provided to take into account the different maximum diameters of different pressing members which may from time to time be used. The feedback transducer is automatically returned to a middle angular setting thereof. The distance transducer can be constructed in several different ways, disclosed.
    • 3. 发明授权
    • Routing apparatus for a train of containers of glass or the like
    • 用于玻璃容器等的列车装置
    • US5501316A
    • 1996-03-26
    • US256008
    • 1994-06-17
    • Heinz HermeningSiegfried SchwarzerHans-Georg Seidel
    • Heinz HermeningSiegfried SchwarzerHans-Georg Seidel
    • B65G47/84C03B35/04C03B35/06B65G47/26
    • B65G47/846B65G47/841C03B35/04C03B35/062B65G2201/0244
    • Containers (2) arrive on a first conveyor belt (3) at comparatively large initial spacings (8) from one another and at comparatively high speed in a first direction of movement (4). The containers (2) are routed on a continuously curved path (11) into a second direction of movement (5) onto a second conveyor belt (6). Between the conveyor belts (3, 6) is arranged an intermediate belt (14) whose upper run (15) is driven in a third direction of movement (16) with a lower speed than the first conveyor belt (3). The second conveyor belt (6) likewise runs at lower speed than the first conveyor belt (3), so that finally a comparatively small second gap (7) results between the containers (2). A drive member (10) carries on the one hand transportation fingers (9) which engage between successive containers (2), and on the other hand stopping members (13) of a support device (12) with which the containers ( 2) are kept in continuous contact up to their delivery on to the second conveyor belt (6). A working section (31) of the drive member (10) is automatically guided in accordance with the continuously curved path (11).
    • PCT No.PCT / EP93 / 02434 371日期:1994年6月17日 102(e)日期1994年6月17日PCT 1993年9月9日PCT公布。 出版物WO94 / 08879 日期1994年4月28日。容器(2)以相对较大的初始间隔(8)以第一移动方向(4)的较高速度到达第一传送带(3)。 容器(2)在连续弯曲的路径(11)上被引导到第二传送带(6)上的第二移动方向(5)上。 在输送带(3,6)之间布置有中间带(14),其上游(15)以比第一输送带(3)更低的速度在第三运动方向(16)上被驱动。 第二输送带(6)同样地以比第一输送带(3)更低的速度运行,使得最终在容器(2)之间产生相对较小的第二间隙(7)。 驱动构件(10)一方面承载在相继的容器(2)之间接合的运送指状物(9),另一方面承载容器(2)与支撑装置(12)的止动构件(13) 保持与第二输送带(6)的输送持续接触。 驱动构件(10)的工作部分(31)根据连续弯曲的路径(11)被自动地引导。
    • 5. 发明授权
    • Apparatus for severing gobs from glass streams
    • 从玻璃条切割谷歌的装置
    • US5188653A
    • 1993-02-23
    • US762447
    • 1991-09-19
    • Hermann BogertHans-Georg Seidel
    • Hermann BogertHans-Georg Seidel
    • C03B7/10
    • C03B7/10Y10T83/8805Y10T83/8807
    • Each glass gob is severed by a shear blade pair (6; 9). The shear blades (7, 8; 10, 11) are arranged on shear arms (12, 13) whose movement is synchronized with each other by means of a gear mechanism (16) A first shear arm (12) is drivable pivotably by a drive means (36), while a second shear arm (13) is supported by an air spring (28). The drive means (36) is carried on a carriage (39) which is displaceable by piston-cylinder units (48, 49). The drive means (36) drives a crank pin (43) which is connected by means of a coupling rod (44) with the first shear arm (12). By displacement of the carriage (39) one achieves a servicing stroke (34) which is greater than the working stroke (32) of the shears.
    • 每个玻璃料滴被剪切刀对(6; 9)切断。 剪切刀片(7,8; 10,11)布置在剪切臂(12,13)上,其剪切臂(12,13)通过齿轮机构(16)相互同步运动。第一剪切臂(12)可由一个 驱动装置(36),而第二剪切臂(13)由空气弹簧(28)支撑。 驱动装置(36)承载在可由活塞 - 气缸单元(48,49)移动的托架(39)上。 驱动装置(36)驱动曲柄销(43),该曲柄销通过联接杆(44)与第一剪切臂(12)连接。 通过滑架(39)的位移,实现了大于剪切机的工作行程(32)的维修行程(34)。
    • 6. 发明授权
    • Machine for forming hollow articles of vitreous material
    • 玻璃材料中空制品成型机
    • US4576624A
    • 1986-03-18
    • US275238
    • 1981-06-19
    • Hans-Georg Seidel
    • Hans-Georg Seidel
    • C03B9/28C03B9/34C03B9/40C03B9/14
    • C03B9/342C03B9/28C03B9/3537
    • A machine for forming a hollow article of vitreous material has a neck mold having a neck ring with a pair of separable neck ring halves, a pair of holding elements each holding a respective one of the neck ring halves, a transporting element for transporting the neck molds along a predetermined path and having guiding bars, a driving element for moving each of the holding elements relative to the guide bars between closed and open end positions with locking of the same, and carriages displaceably mounted on the guide bars, wherein each of the holding elements for holding a respective one of the neck ring halves is releasably connected with one of the carriages.
    • 用于形成玻璃质材料的中空制品的机器具有颈部模具,其具有带有一对可分离颈环的颈环,一对保持元件,每个保持元件分别保持颈环半部中的一个,用于输送颈部的输送元件 模具沿着预定路径并具有引导杆,驱动元件,用于使锁定元件相对于引导杆在关闭位置和开口端位置之间移动;以及可移动地安装在引导杆上的滑架,其中每个 用于保持颈环半部中的相应一个的保持元件可与其中一个滑架可释放地连接。
    • 7. 发明授权
    • Pressurized fluid distributing arrangement for a forming tool for
shaping thermoplastic material
    • 用于成形热塑性材料成形工具的加压流体分配装置
    • US4388099A
    • 1983-06-14
    • US312851
    • 1981-10-19
    • Helmut HermeningNorbert MondenLothar SchaarWilhelm SchneiderHans-Georg Seidel
    • Helmut HermeningNorbert MondenLothar SchaarWilhelm SchneiderHans-Georg Seidel
    • F28F13/00B29C49/00B29C49/48B29C49/58B29C49/64B29C65/00C03B9/38F28F27/00
    • C03B9/3875C03B9/3816
    • A distributing arrangement for a pressurized cooling fluid, especially air, for cooling a forming tool of a machine for forming thermoplastic material, especially molten glass, wherein the forming tool includes at least one split mold including mold segments which are respectively mounted on mold segment holders for movement therewith relative to one another and each of which is provided with a plurality of fluid channels for the flow of the pressurized of fluid channels for the flow of the pressurized cooling fluid therethrough, comprises a fluid distributing box including for each of the mold segments at least two branch channels individually communicating with at least one of the fluid channels when the distributing box is mounted on the mold segment holder. The branch conduits can either directly communicate with the fluid channels across an interface formed by juxtaposed connecting and opposing surfaces of the distributing box and the associated mold segment, or a connecting box including a plurality of connecting channels may be interposed between the distributing box and the respective mold segment, in which case the interface is provided between the distributing and connecting boxes. The connection at the interface is established by merely resting the connecting surface on the opposing surface which has a complementary configuration to the connecting surface.
    • 用于冷却用于形​​成热塑性材料,特别是熔融玻璃的机器的成形工具的加压冷却流体,特别是空气的分配装置,其中成形工具包括至少一个分开模具,其包括分别安装在模具段支架上的模具段 用于相对于彼此运动,并且每个流体通道设置有多个流体通道,用于加压流体通道的流动,用于加压冷却流体的流过,其包括流体分配箱,其包括用于每个模具段 当分配箱安装在模具段保持器上时,至少两个分支通道与至少一个流体通道单独连通。 分支管道可以通过跨接在分配箱和相关联的模具段的并置连接和相对表面形成的界面上的流体通道直接连通,或者包括多个连接通道的连接箱可以插在分配箱和 相应的模具段,在这种情况下,界面设置在分配盒和连接盒之间。 通过仅将连接表面放置在与连接表面具有互补构造的相对表面上来建立界面处的连接。
    • 8. 发明授权
    • Multi-station glass-forming machine
    • 多工位玻璃成型机
    • US4203752A
    • 1980-05-20
    • US947185
    • 1978-09-29
    • Kurt BeckerHermann BuogertSiegfried SchwarzerHans-Georg Seidel
    • Kurt BeckerHermann BuogertSiegfried SchwarzerHans-Georg Seidel
    • C03B35/08C03B9/41C03B9/453C03B9/44C03B35/00
    • C03B9/41C03B9/453
    • Each station has a push-off unit which transfers glass articles produced at such station onto a common outfeed conveyor. Each push-off unit comprises a cylinder-piston unit mounted for swinging movement on a vertical swing shaft, the piston thereof carrying a push-off arm. The push-off arm extends and engages the articles to be transferred, the cylinder swings towards the belt transferring the article, and the push-off arm retracts and the cylinder swings back. The push-off units of the plural stations are activated sequentially, in correspondence to the sequence in which glass gobs are fed into the respective machine stations. Plural electric motors are provided, one per station, and the swing motion of the push-off unit is generated by the respective electric motor. The rotation of each electric motor is controllable, by open- or closed-loop control, independently of the other electric motors. The operator selects the sequence in which the electric motors are to be activated. A common or shared desired-rpm voltage is applied to all electric motors, sequentially. The electric motors drive the push-off units through respective crank and rocker mechanisms.
    • 每个车站都有一个推出单元,将在这种车站生产的玻璃制品转移到公共的出料输送机上。 每个推出单元包括一个气缸 - 活塞单元,其安装成用于在垂直摆动轴上摆动,其活塞承载推出臂。 推出臂延伸并接合待传送的物品,汽缸朝向传送物品的带摆动,并且推出臂缩回并且汽缸向后摆动。 对应于将玻璃料滴送入相应的机器站的顺序,多个站的按压单元依次被激活。 提供多个电动机,每个站一个,并且推动单元的摆动由相应的电动机产生。 每个电动机的旋转可以通过开环或闭环控制来控制,而与其他电动机无关。 操作员选择要启动电动机的顺序。 共同或共享的期望转速电压依次施加到所有电动机。 电动马达通过相应的曲柄和摇臂机构驱动推动单元。