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    • 19. 发明授权
    • Continuous in-line system for producing high temperature glass fiber materials
    • 连续生产高温玻璃纤维材料的在线系统
    • US06810693B1
    • 2004-11-02
    • US09333356
    • 1999-06-15
    • David R. HartmanWilliam C. BradyDavid V. StotlerSusan M. Pierik
    • David R. HartmanWilliam C. BradyDavid V. StotlerSusan M. Pierik
    • C03B3708
    • C03B37/08C03B37/02C03B37/083
    • The invention relates to an in-line process for producing high-temperature stable glass. A sizing composition is advantageously used to reduce plasticizing between the resinous matrix and the glass fibers. The in-line process uses a melter or furnace apparatus, including a top charging and melting section and an intermediate flow regulator section having a baffle system improving the heat pattern across the glass flow, and a bushing having a tip plate for receiving molten glass from a furnace. The bushing has an enlarged size that allows drawing of a significantly increased number of glass fibers at one time. The fibers have essentially no catenary and may be wound to create a tightly wrapped package of glass fibers of uniform exterior diameter throughout their width. High-strength, high-silica fiber made according to the invention may be advantageously used in filament-winding, pultrusion and weaving processes.
    • 本发明涉及用于生产高温稳定玻璃的在线方法。 上浆组合物有利地用于减少树脂基质和玻璃纤维之间的塑化。 在线方法使用熔化器或炉装置,包括顶部充填和熔化部分以及具有改善跨过玻璃流的热图案的挡板系统的中间流量调节器部分,以及具有用于接收熔融玻璃的顶板的衬套 一炉 衬套具有一个放大的尺寸,允许一次拉伸显着增加的玻璃纤维数量。 纤维基本上没有悬链线并且可以被卷绕以在整个宽度上形成具有均匀外径的玻璃纤维的紧密包裹的包装。 根据本发明制备的高强度,高二氧化硅纤维可有利地用于纤维缠绕,拉挤和织造过程中。