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    • 1. 发明申请
    • Spinning Nozzle Arrangement
    • 纺纱喷嘴布置
    • US20130125594A1
    • 2013-05-23
    • US13504523
    • 2010-10-28
    • Rudolf Singer
    • Rudolf Singer
    • C03B37/083
    • C03B37/083C03B37/08Y02P40/57
    • The object of the invention is to provide a spinning nozzle arrangement, which enables an increase, and thus an improvement, in productivity without the said drawbacks and displays as homogeneous a temperature distribution as possible in the region of the nozzle. The object is achieved by a spinning nozzle arrangement (10) for the manufacture of glass fibres, having a melting chamber (11) which is formed by side walls (12,12′), cover plates (14,14′), end plates, a base plate (1), which is provided with a multiplicity of openings or nozzles (2) aligned parallel to the side walls (12) of the spinning nozzle (10), and a feed line (13) for the glass melt (17), characterized in that the base plate (1) is provided on its top side with additional stiffening elements (4), which are connected to the cover plates (14,14′).
    • 本发明的目的是提供一种纺纱喷嘴装置,其能够增加生产率,从而提高生产率,而不会使所述缺点和显示器在喷嘴区域中尽可能均匀的温度分布。 该目的是通过用于制造玻璃纤维的纺丝喷嘴装置(10)实现的,该喷嘴装置具有由侧壁(12,12'),盖板(14,14'),端板 ,具有平行于纺丝喷嘴(10)的侧壁(12)排列的多个开口或喷嘴(2)的底板(1)和用于玻璃熔体的进料管线(13) 其特征在于,所述基板(1)在其顶侧设置有与所述盖板(14,14')连接的附加的加强元件(4)。
    • 6. 发明申请
    • Refining chamber made of platinum group metal materials
    • 精炼室由铂族金属材料制成
    • US20060096322A1
    • 2006-05-11
    • US10532270
    • 2003-10-23
    • Rudolf SingerHubertus Golitzer
    • Rudolf SingerHubertus Golitzer
    • C03B5/225
    • C03B5/1675C03B5/225Y02P40/57
    • In some embodiments, the invention provides a refining chamber for glass production, made of platinum group metal materials, with improved refining effectiveness. The refining chamber according has the shape of a tube with a cross section (1), with the cross section of the tube being shaped, in at least one segment, so that in the operating position the length (10) of a horizontal line (12) which divides the surface of the cross section into essentially a lower and an upper segment of the surface, both of which have essentially the same area, is greater than twice the maximum vertical extent (30) of the lower segment of the surface. The cross section of the refining chamber can, for example, have the shape of an oval, an ellipse, a slot, a rounded triangle or a polygon, and the stiffness of the shape of the refining chamber can be increased by forming radially peripheral creases, corners, waves or folds.
    • 在一些实施方案中,本发明提供了一种用于玻璃生产的精炼室,其由铂族金属材料制成,具有改进的澄清效果。 精炼室具有截面为(1)的管的形状,管的横截面在至少一个段中成形,使得在操作位置,水平线的长度(10)( 12),其将横截面的表面划分成基本上具有基本上相同面积的表面的下部和上部段,其大小是表面的下部段的最大垂直范围(30)的两倍。 精炼室的横截面可以例如具有椭圆形,椭圆形,槽形,圆形三角形或多边形的形状,并且可以通过形成径向周向折痕来增加精炼室的形状的刚度 ,角落,波浪或褶皱。
    • 7. 发明授权
    • Process for the production of tubular structural parts fabricated from PGM materials and having circumferential undulating bulges
    • 用于生产由PGM材料制成并具有圆周起伏凸起的管状结构部件的方法
    • US07007532B2
    • 2006-03-07
    • US09978792
    • 2001-10-18
    • Rudolf SingerHubertus Gölitzer
    • Rudolf SingerHubertus Gölitzer
    • B21D15/10
    • B21D15/10
    • A process for the production of tubular structural parts fabricated from PGM materials and having circumferential undulating bulges by forming from smooth-walled tube pieces. A smooth-walled tube piece (1) is inserted into a cylindrical forming die (2) with an internal diameter that corresponds substantially to the external diameter of the tube piece and that has radial undulating recesses (3). This die is provided at both axial ends with a press tool (4,5) that tightly seals the tube ends. The space that is thus formed is completely filled with an hydraulic fluid (6), and an hydraulic internal pressure is then produced by exerting an axial compression via the press tools (4,5) in such a way that under simultaneous shortening of the tube piece bulges (7) are formed in the wall of the latter that correspond to the recesses (3) of the forming die (2).
    • 一种用于生产由PGM材料制成的管状结构部件的方法,并且由平滑壁管件形成并具有圆周起伏的凸起。 将平滑壁管件(1)插入圆柱形成形模具(2)中,其内径基本上对应于管件的外径,并具有径向起伏的凹槽(3)。 该模具在两个轴向端设置有紧密地密封管端的冲压工具(4,5)。 这样形成的空间完全充满液压流体(6),然后通过经由压力工具(4,5)施加轴向压缩来产生液压内部压力,使得在同时缩短管子 在后者的壁上形成对应于成型模具(2)的凹部(3)的凸块(7)。
    • 8. 发明授权
    • Shaping tool with a structured surface for producing structures on glass, and the application thereof for structuring channel plates
    • 具有用于在玻璃上生成结构的结构化表面的成形工具及其用于构造通道板的应用
    • US06679085B1
    • 2004-01-20
    • US09720844
    • 2000-12-29
    • Rudolf SingerJoachim DisamChristiane Baum
    • Rudolf SingerJoachim DisamChristiane Baum
    • C03B1316
    • C03B13/16C03B13/08C03B13/14C03B23/02
    • While avoiding the disadvantages of the screen printing technique employed until now, the invention provides a shaping tool (1) with a structured surface for creating structures on glass (2) which, in an economical way, makes it possible to form high-precision microstructures by local heating of the region of glass to be structured. The shaping tool (1) has a rolling cylinder (3) including a metal hollow cylinder (7) and a shaping sheet (8) secured in a surface contact to it, as well as a continuous shaft (5) for continuously driving the rolling cylinder (3) via drivers (4) coupled to the hollow cylinder (7). Between the shaft (5) and the hollow cylinder (7), an electric heater (6) for targeted local heating of the glass during structuring is disposed in an electrically insulated fashion. The electric heater (6) is advantageously thermally insulated from the shaft (5) with a ceramic cylinder (14).
    • 在避免现在使用的丝网印刷技术的缺点的同时,本发明提供一种具有用于在玻璃(2)上产生结构的结构化表面的成形工具(1),其以经济的方式使得可以形成高精度微结构 通过局部加热来构造玻璃区域。 成形工具(1)具有包括金属中空圆筒(7)的滚动滚筒(3)和与其面接触地固定的成形薄片(8),以及用于连续地驱动轧制 气缸(3)通过联接到中空圆柱体(7)的驱动器(4)。 在轴(5)和中空圆筒(7)之间,在结构化期间用于目标局部加热玻璃的电加热器(6)以电绝缘方式设置。 电加热器(6)有利地与具有陶瓷圆筒(14)的轴(5)绝热。