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    • 91. 发明授权
    • Sizing composition to yield sized glass fibers with improved UV stability
    • 定型组合物以获得具有改进的UV稳定性的尺寸的玻璃纤维
    • US4271229A
    • 1981-06-02
    • US72392
    • 1979-09-04
    • Chester S. Temple
    • Chester S. Temple
    • C03C25/26C03C25/32C08J5/08D06M13/513D06M15/564D06M15/643D04H1/58
    • D06M15/6436C03C25/26C03C25/326C08J5/08D06M13/513D06M15/564Y10T428/2962Y10T428/2964Y10T428/31551Y10T428/31612Y10T428/31663Y10T442/2402Y10T442/259
    • Sizing compositions, sized glass fiber strands are used to produce reinforced polymeric materials that have improved UV stability while maintaining good physical properties. The sizing composition, sized glass fiber strands and reinforced polymeric materials having sized glass fiber strands involve the use of materials in the sizing composition, such as polyurethane polymers, ureidofunctional silanes, aminofunctional silanes, lubricants and processing aids.One particular aspect of the present invention has materials associated with the sizing composition, sized glass fiber strands and reinforced polymers such as polyamides, polyethyleneterephthlate, polybutyleneterephthlate, polystyrenics, thermosetting esters, and chemically coupled polypropylene that are thermoplastic, aliphatic, polyurethane polymer dispersions, ureidofunctional silane, gamma-aminopropyltriethoxysilane, a lubricant modified gamma-aminopropyltriethoxysilane, dibutyphthalate, polyalkylene polyol lubricant, and a polyester film former.
    • 上胶组合物尺寸的玻璃纤维股线用于生产具有改善的UV稳定性同时保持良好物理性能的增强聚合材料。 具有尺寸的玻璃纤维线的施胶组合物,尺寸的玻璃纤维束和增强的聚合物材料涉及使用上浆组合物中的材料,例如聚氨酯聚合物,脲基官能硅烷,氨基官能硅烷,润滑剂和加工助剂。 本发明的一个特定方面具有与上胶组合物,大小的玻璃纤维丝束和增强聚合物如聚酰胺,聚对苯二甲酸乙二酯,聚对苯二甲酸丁二酯,聚苯乙烯,热固性酯和化学偶合聚丙烯相关联的材料,它们是热塑性,脂肪族,聚氨酯聚合物分散体,脲基官能团 硅烷,γ-氨丙基三乙氧基硅烷,润滑剂改性γ-氨基丙基三乙氧基硅烷,二邻苯二甲酸酯,聚亚烷基多元醇润滑剂和聚酯成膜剂。
    • 92. 发明授权
    • Size for forming glass fibers having a reduced tendency to give gumming
deposits
    • 用于形成具有降低趋向于涂胶沉积物的玻璃纤维的尺寸
    • US4221602A
    • 1980-09-09
    • US39472
    • 1979-05-16
    • Douglas M. Walser
    • Douglas M. Walser
    • C03C25/26C03C25/32C03C25/02
    • C03C25/321C03C25/26Y10T428/2938
    • A method and composition are provided for producing an improved sized glass fiber strand that has a reduced tendency to form gummy deposits on fabrication machinery under high relative humidity conditions. The glass fiber strand is treated with a starch based forming size comprising about 50 to about 65 weight percent of the non-aqueous components of the composition being a starch containing cross-links that has been partially cooked along with a hydrogenated vegetable oil, or fatty triglyceride, cationic wetting agent, emulsifying agent, and water. The forming size composition can also contain a salt of a polyamino functional polyamide resin and a carboxylic acid and a wax and a coupling agent.
    • 提供了一种制备改进尺寸的玻璃纤维股线的方法和组合物,其在高相对湿度条件下在制造机械上形成粘性沉积物的倾向降低。 用基于淀粉的成型尺寸处理玻璃纤维束,其中所述淀粉基成型尺寸包含约50%至约65%重量百分数的组合物的非水性组分,其是含有与氢化植物油一起部分煮熟的交联物的淀粉或脂肪 甘油三酯,阳离子润湿剂,乳化剂和水。 成型粒度组合物还可以含有聚氨基官能聚酰胺树脂和羧酸以及蜡和偶联剂的盐。
    • 93. 发明授权
    • Reversible shear thinning gel forming coating composition for glass
fibers
    • 用于玻璃纤维的可逆剪切变薄凝胶形成涂料组合物
    • US4065417A
    • 1977-12-27
    • US593601
    • 1975-07-07
    • Robert WongHomer G. Hill
    • Robert WongHomer G. Hill
    • C03C25/26C08L1/00C08L31/04C08L63/02C08L77/00
    • C03C25/26
    • An improved method of coating fibers and particularly glass fibers with a solution of materials containing a reversible shear thinning gel producing agent which causes the coating to be transformed into a shear thinning gel under predetermined conditions. The predetermined conditions may be brought about after the coated fibers are brought together into touching engagement in a package, or may be caused to occur before the coated fibers are brought together in touching engagement in the package. The fibers can be removed from the package and still retain a coating on the fibers, since the shearing action of the fibers through the gel converts the gel to a liquid which adheres to the fibers as they are being pulled through the gel. The predetermined conditions may involve a change in temperature, or a change in concentration of solids. The change in temperature will usually be a cooling of the coating materials to a temperature below the gelation point, and the change in concentration will usually be an evaporation of solvent to form at least a skin of gel on the surface of the coating materials. The change in temperature technique can be used to increase the amount of solids that is applied to the fibers. The uncoated fibers, however, are preferably drawn through the gel to subject the reversible shear thinning gel to shear which causes the materials to flow around and adhere to the fibers, following which the coating reverts to a gel.
    • 一种用包含可逆剪切稀化凝胶产生剂的材料溶液涂覆纤维,特别是玻璃纤维的改进方法,其使得涂层在预定条件下转变成剪切稀化凝胶。 在将涂覆的纤维聚集在包装中的接触接合之后,可能会导致预定条件,或者可能在涂覆的纤维在包装中接触接合在一起之前发生。 纤维可以从包装中移除并且仍然保留在纤维上的涂层,因为通过凝胶的纤维的剪切作用将凝胶转化成当被拉动通过凝胶时粘附到纤维上的液体。 预定条件可能涉及温度的变化或固体浓度的变化。 温度的变化通常是将涂层材料冷却到低于凝胶化点的温度,并且浓度的变化通常是溶剂的蒸发,以在涂层表面上形成至少一层凝胶。 温度技术的变化可用于增加施加到纤维上的固体的量。 然而,未涂布的纤维优选通过凝胶拉伸以使可逆剪切稀化凝胶经受剪切,这导致材料流动并粘附到纤维上,随后涂层还原成凝胶。