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    • 1. 发明授权
    • Dead plate arrangement
    • 死板安排
    • US09272939B2
    • 2016-03-01
    • US13611503
    • 2012-09-12
    • Dennis IsenseeBenedikt FelgenhauerWaldemar Kaessner
    • Dennis IsenseeBenedikt FelgenhauerWaldemar Kaessner
    • C03B27/06C03B9/453C03B9/38
    • C03B9/4535C03B9/3891
    • A dead plate arrangement for a glass forming machine is characterized by a housing (33) which is bordered on the upper side by a dead plate (1) which is divided into fields (16, 16′, 16″) intended for putting hollow glass articles to be cooled thereon, wherein to each field, a dynamic pressure chamber (3) is allocated which is connected to a supply air chamber (4) via a valve (9), and wherein the supply air chamber (4) is connected to a cooling air supply via a valve (5). The valves (5, 9) are continuously controllable between an opening position and a closed position so that the pressure can be set for each of the dynamic pressure chambers (3), and therefore the cooling capacity of each of the fields (16, 16′, 16″) can be set individually depending on the properties of the hollow glass article to be cooled. In connection with database-supported setpoint values for article-specific dimensioning of the cooling air flows of each field, an individual cooling capacity according to demand can be implemented which is adapted to the respective hollow glass article.
    • 用于玻璃成型机的死板装置的特征在于:壳体(33),其在上侧边界由死板(1),该死板(1)被分成用于放置中空玻璃的场(16,16',16“) 要在其上冷却的物品,其中在每个场中分配有经由阀(9)连接到供气室(4)的动压室(3),并且其中所述供气室(4)连接到 经由阀(5)的冷却空气供给。 阀(5,9)在打开位置和关闭位置之间可连续地控制,以便可以为每个动压室(3)设定压力,因此每个场(16,16)的冷却能力 ',16“)可以根据待冷却的中空玻璃制品的性质分别设定。 结合数据库支持的每个场的冷却空气流量尺寸标注的设定值,可以实现根据需要的独立冷却能力,其适应于相应的中空玻璃制品。
    • 3. 发明授权
    • Apparatus for pushing glass articles onto a belt conveyor
    • 用于将玻璃制品推到带式输送机上的装置
    • US08381898B2
    • 2013-02-26
    • US12997634
    • 2009-06-04
    • Dirk WinkelhakeMatthias HübnerBenedikt Felgenhauer
    • Dirk WinkelhakeMatthias HübnerBenedikt Felgenhauer
    • B65G25/00
    • C03B9/453
    • An apparatus for pushing hollow glass articles from a depositing plate of an IS glass molding machine onto a belt conveyor comprises a transfer pusher (11), one end of which is rigidly connected to a vertical shaft (10) and the other end of which carries an arrangement of pushing fingers for the glass articles. The shaft (10) is supported in a rotary table (6) and functionally connected to a first rotary drive (13) carried by the rotary table while the rotary plate (6) is mounted on a bell-shaped bearing (24) supported on a console (1) by means of a hollow shaft (22), namely such that it is functionally connected to a second rotary drive (15′). An approximately exponential transfer curve of the pushing fingers that begins at the depositing plate and ends on the belt conveyor and subjects the hollow glass articles to the least possible stress can be realized.
    • 用于将中空玻璃制品从IS玻璃成型机的沉积板推到带式输送机上的装置包括传送推动器(11),其一端刚性连接到垂直轴(10),另一端承载 推动玻璃制品的手指的布置。 轴(10)被支撑在旋转台(6)中,并且功能上连接到由旋转台承载的第一旋转驱动器(13),同时旋转板(6)安装在支撑在其上的钟形轴承(24)上 通过中空轴(22)的控制台(1),即使得其功能性地连接到第二旋转驱动器(15')。 可以实现从沉积板开始并终止在带式输送机上并且使空心玻璃制品达到最小可能应力的推指的近似指数传递曲线。
    • 4. 发明申请
    • Device For Pushing Glass Objects Onto a Conveyor Belt
    • 将玻璃物件推入输送带的装置
    • US20130087431A1
    • 2013-04-11
    • US13500986
    • 2011-03-03
    • Benedikt FelgenhauerMatthias Hubner
    • Benedikt FelgenhauerMatthias Hubner
    • B65G47/04
    • B65G47/04C03B9/453
    • A device for pushing glass objects onto a conveyor belt consists of a pusher (5), which is supported on a crank arm (6) in such a way that it can be swiveled about an axis (7), which crank arm is in driving engagement with a first electric motor (1) by means of a shaft (12) and a spur-gear transmission. A second electric motor (2) is in driving engagement with a sleeve (20) by means of a cantilever (18), in which sleeve the shaft (12) is mounted, wherein the shaft (12) can be swiveled about a central stationary axis (19). A third electric motor (3) is in driving engagement by means of a further spur-gear transmission by means of a hollow shaft (8), which within the sleeve (20), supporting the shaft (12) [sic], with an annular element (28) on which one end of a push rod is supported in such a way that it can be swiveled about an axis, the other end of the push rod is supported on the pusher (5) in such a way that it can be swiveled about an axis, so that a rotational motion of the said third electric motor (3) can be converted into a swivel motion of the pusher (5) about the axis (7). All transmission components are in the pot-like upper part (33) of a housing (4), and specifically below the plane of a dead plate. The low number of transmission stages results in a design that is very simple, compact and protected against environmental influences and thus results in particular suitability for use under the operating conditions of a glassworks.
    • 用于将玻璃物件推到传送带上的装置包括推动器(5),该推动器支撑在曲柄臂(6)上,使得其可以围绕该曲柄臂驱动的轴线(7)旋转 通过轴(12)和正齿轮传动装置与第一电动机(1)接合。 第二电动机(2)通过悬臂(18)与套筒(20)驱动接合,其中安装有轴(12)的套筒,其中轴(12)可围绕中心静止 轴(19)。 第三电动机(3)通过借助于中空轴(8)的另一个正齿轮传动装置进行驱动接合,所述中空轴(8)在套筒(20)内支撑轴(12) 环形元件(28),推杆的一端被支撑在其上,使得其能够绕轴线旋转,推杆的另一端以这样的方式被支撑在推动器(5)上, 围绕轴线旋转,使得所述第三电动机(3)的旋转运动可以被转换成推动器(5)围绕轴线(7)的旋转运动。 所有传动部件都位于壳体(4)的锅状上部(33)中,并且特别地位于死板的平面之下。 低数量的传输阶段导致设计非常简单,紧凑并且防止环境影响,因此特别适合在玻璃制品的操作条件下使用。
    • 5. 发明申请
    • Device For Pushing Glass Objects Onto A Conveyor Belt
    • 将玻璃物件推入输送带的装置
    • US20130153367A1
    • 2013-06-20
    • US13512160
    • 2011-04-23
    • Benedikt FelgenhauerMatthias Hübner
    • Benedikt FelgenhauerMatthias Hübner
    • B65G47/04
    • B65G47/04C03B9/453
    • The invention relates to a device for pushing glass objects from a resting depositing plate to a conveyor belt moving at a uniform speed, characterized by a first electric motor (1) arranged in a stationary manner within a housing (49). The electric motor has a driving connection to a cantilever (4) that is rotatably supported about a vertical axis (8). An accommodating element (9) is located on the cantilever. The accommodating element carries a second electric motor (12), the output shaft of which extends vertically and is connected at the free end thereof to a crank arm (17) in a rotationally fixed manner. A pusher (18) is attached to the free end of the crank arm in an articulated manner in such a way that the pusher can be pivoted relative to the crank arm (17) about a vertical axis (19); By means of an annular element (26), which is rotatably supported about the axis (23) of said output shaft and which has a drive connection to a third electric motor that is likewise carried by the accommodating element (9), the pusher (18) can be pivoted relative to the crank arm about the axis (19) via an intermediately arranged push rod. After two of the three electric motors, which can be controlled independently of each other, are arranged on the cantilever (4), a significant reduction of transmission parts is achieved compared to three electric motors arranged in a stationary manner. The mechanism of a pivoting motion of the pusher (18) relative to the crank arm (17) by means of a push rod is robust, low-maintenance, and suitable in particular for the usage conditions in a glassworks.
    • 本发明涉及一种用于将玻璃物体从静止沉积板推到以均匀速度移动的输送带的装置,其特征在于以固定方式布置在壳体(49)内的第一电动机(1)。 电动机具有与绕垂直轴线(8)可旋转地支撑的悬臂(4)的驱动连接。 容纳元件(9)位于悬臂上。 容纳元件承载第二电动机(12),其输出轴垂直延伸,并且其自由端以旋转固定的方式连接到曲柄臂(17)。 推动器(18)以铰接方式附接到曲柄臂的自由端,使得推动器可相对于曲柄臂(17)围绕垂直轴线(19)枢转; 通过环形元件(26),该环形元件围绕所述输出轴的轴线(23)可旋转地支撑,并且具有与同样地由容纳元件(9)承载的第三电动机的驱动连接,推动器 18)可以通过中间布置的推杆相对于曲柄臂围绕轴线(19)枢转。 在能够彼此独立地控制的三个电动机中的两个之间布置在悬臂(4)上,与以静止方式布置的三个电动机相比,实现了传动部件的显着减少。 推动器(18)通过推杆相对于曲柄臂(17)的枢转运动的机构是坚固的,低维护的,并且特别适合于玻璃制品的使用条件。
    • 7. 发明申请
    • Method and Device for Supplying Lubricant to an I.S. Glassware Forming Machine
    • 润滑油供应给I.S.的方法和装置 玻璃器皿成型机
    • US20100058808A1
    • 2010-03-11
    • US12552410
    • 2009-09-02
    • Benedikt FelgenhauerDennis IsenseeThomas Engler
    • Benedikt FelgenhauerDennis IsenseeThomas Engler
    • C03B40/02C03B5/24
    • F16N7/385C03B9/403C03B40/027F16N29/02F16N2230/02F16N2230/06F16N2250/08F16N2270/30
    • The invention relates to a method for supplying lubricating points of an I.S. glassware forming machine, wherein a used lubrication system comprises a plurality of lubricant metering devices (29) that are provided to output lubricant to a plurality of lubricating points, that are to be lubricated, of the glassware forming machine and are allocated in each case to one of several lubrication circuits (23-28). The lubricant metering devices of a respective lubrication circuit simultaneously output a predetermined amount of lubricant in each case cyclically with a time interval allocated to the lubrication circuit. The lubricant metering devices are allocated to lubrication circuits in dependence upon temperatures that have been measured in direct proximity to lubricating points, and are allocated such that the temperatures of the lubricating points of a lubrication circuit are within a predetermined temperature range. The amounts of lubricant provided at the lubricating points are controlled in that the length of the time interval allocated to a lubrication circuit is determined in dependence upon temperatures, that have been measured in direct proximity to lubricating points of the lubrication circuit, using a set of evaporation characteristics of the lubricant. In accordance with the invention, the consumption of lubricant can be further reduced. The invention further relates to a device for implementing the method.
    • 本发明涉及一种用于提供I.S.的润滑点的方法。 玻璃器皿成型机,其中所用的润滑系统包括多个润滑剂计量装置(29),所述多个润滑剂计量装置(29)用于将玻璃制品成型机的润滑剂输出到多个待润滑的润滑点上,并在每种情况下被分配 几个润滑回路之一(23-28)。 相应的润滑回路的润滑剂计量装置在分配给润滑回路的时间间隔内循环地输出预定量的润滑剂。 润滑剂计量装置根据已经在润滑点附近测量的温度分配给润滑回路,并且被分配成润滑回路的润滑点的温度在预定的温度范围内。 控制在润滑点处提供的润滑剂的量被控制为:分配给润滑回路的时间间隔的长度取决于已经通过润滑回路的润滑点直接测量的温度,使用一组 润滑剂的蒸发特性。 根据本发明,可以进一步降低润滑剂的消耗。 本发明还涉及一种用于实现该方法的装置。
    • 9. 发明授权
    • Method and device for supplying lubricant to an I.S. glassware forming machine
    • 用于向I.S.供应润滑剂的方法和装置 玻璃器皿成型机
    • US08869557B2
    • 2014-10-28
    • US12552410
    • 2009-09-02
    • Benedikt FelgenhauerDennis IsenseeThomas Engler
    • Benedikt FelgenhauerDennis IsenseeThomas Engler
    • C03B40/027F16N17/02F16N29/00F16N29/02F16N7/38C03B9/40
    • F16N7/385C03B9/403C03B40/027F16N29/02F16N2230/02F16N2230/06F16N2250/08F16N2270/30
    • The invention relates to a method for supplying lubricating points of an I.S. glassware forming machine, wherein a used lubrication system comprises a plurality of lubricant metering devices (29) that are provided to output lubricant to a plurality of lubricating points, that are to be lubricated, of the glassware forming machine and are allocated in each case to one of several lubrication circuits (23-28). The lubricant metering devices of a respective lubrication circuit simultaneously output a predetermined amount of lubricant in each case cyclically with a time interval allocated to the lubrication circuit. The lubricant metering devices are allocated to lubrication circuits in dependence upon temperatures that have been measured in direct proximity to lubricating points, and are allocated such that the temperatures of the lubricating points of a lubrication circuit are within a predetermined temperature range. The amounts of lubricant provided at the lubricating points are controlled in that the length of the time interval allocated to a lubrication circuit is determined in dependence upon temperatures, that have been measured in direct proximity to lubricating points of the lubrication circuit, using a set of evaporation characteristics of the lubricant. In accordance with the invention, the consumption of lubricant can be further reduced. The invention further relates to a device for implementing the method.
    • 本发明涉及一种用于提供I.S.的润滑点的方法。 玻璃器皿成型机,其中所用的润滑系统包括多个润滑剂计量装置(29),所述多个润滑剂计量装置(29)用于将玻璃制品成型机的润滑剂输出到多个待润滑的润滑点上,并在每种情况下被分配 几个润滑回路之一(23-28)。 相应的润滑回路的润滑剂计量装置在分配给润滑回路的时间间隔内循环地输出预定量的润滑剂。 润滑剂计量装置根据已经在润滑点附近测量的温度分配给润滑回路,并且被分配成润滑回路的润滑点的温度在预定的温度范围内。 控制在润滑点处提供的润滑剂的量被控制为:分配给润滑回路的时间间隔的长度取决于已经通过润滑回路的润滑点直接测量的温度,使用一组 润滑剂的蒸发特性。 根据本发明,可以进一步降低润滑剂的消耗。 本发明还涉及一种用于实现该方法的装置。