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    • 5. 发明授权
    • Foamable polyorganosiloxane compositions
    • 可发泡聚有机硅氧烷组合物
    • US4572918A
    • 1986-02-25
    • US766621
    • 1985-08-19
    • Chi-Long LeeJames A. Rabe
    • Chi-Long LeeJames A. Rabe
    • C08J9/00C08J9/12C08J9/14C08J9/08C08J9/10
    • C08J9/0061C08J9/122C08J9/14C08J2207/04C08J2383/04C08J2483/00
    • Polyorganosiloxane foams exhibiting a desirable combination of low density, an average cell size below 4 mm. and an average cell concentration greater than 4 per linear centimeter are obtained by dispensing oxygen curable mercaptoorganosiloxane compositions containing a cobaltocene catalyst, a dispersed liquid or gaseous blowing agent and, as a foam stabilizer, a resinous organosiloxane copolymer comprising trimethylsiloxy units, SiO.sub.4/2 units and specified fluorine-containing organosiloxane units. The polymer portion of the composition includes at least one polyorganosiloxane containing at least 20 mole percent of dimethylsiloxane units and an average of more than 2 mercaptoalkyl or mercaptoalkylene groups per molecule.
    • 表现出低密度,平均泡孔尺寸低于4mm的期望组合的聚有机硅氧烷泡沫。 并且通过分配含有可待因催化剂,分散液体或气体发泡剂的氧可固化巯基有机硅氧烷组合物和作为泡沫稳定剂的包含三甲基甲硅烷氧基单元的SiO 4/2单元的树脂有机硅氧烷共聚物,获得大于4每线性厘米的平均电池浓度 并指定含氟有机硅氧烷单元。 组合物的聚合物部分包含至少一种含有至少20摩尔百分数的二甲基硅氧烷单元的聚有机硅氧烷,每个分子平均含有多于2个巯基烷基或巯基亚烷基。
    • 8. 发明授权
    • Preparation of substantially polycrystalline silicon carbide fibers from
methylpolydisilylazanes
    • 从甲基聚二甲基硅氮烷制备基本上多晶的碳化硅纤维
    • US5268336A
    • 1993-12-07
    • US539265
    • 1990-06-18
    • David C. DeleeuwJonathan LipowitzJames A. Rabe
    • David C. DeleeuwJonathan LipowitzJames A. Rabe
    • D01F9/10C04B35/571C04B35/52
    • C04B35/571C04B35/62281C04B2235/3895C04B2235/486C04B2235/5264C04B2235/77C04B2235/785
    • A process for the preparation of substantially polycrystalline silicon carbide fibers is provided. The fibers may be fabricated to have a small diameter and are thermally stable at high temperatures. The process is carried out by initially forming fibers from a preceramic polymeric precursor comprising methylpolydisilylazane resins. The fibers are then infusibilized to render them nonmelting followed by a pyrolysis step in which the fibers are heated to a temperature in excess of 1600.degree. C. in a nonoxidizing atmosphere to form substantially polycrystalline silicon carbide fibers. The substantially polycrystalline silicon carbide fibers which are formed by the process of the present invention have at least 75% crystallinity and have a density of at least about 2.9 gm/cc.The polymeric precursor or the fibers contain, or have incorporated therein, at least about 0.2% by weight boron. This incorporation of boron may be accomplished either prior to or during formation of the fibers or during at least one of the infusibilizing or pyrolyzing steps of the process.
    • 提供了制备基本上多晶碳化硅纤维的方法。 纤维可以制造成具有小直径并且在高温下是热稳定的。 该方法通过首先由包含甲基聚二甲基硅氮烷树脂的预陶瓷聚合物前体形成纤维来进行。 然后将纤维熔融以使其不熔化,随后进行热解步骤,其中将纤维在非氧化气氛中加热至超过1600℃的温度以形成基本上多晶的碳化硅纤维。 通过本发明的方法形成的基本上多晶的碳化硅纤维具有至少75%的结晶度,并具有至少约2.9gm / cc的密度。 聚合物前体或纤维含有至少约0.2重量%的硼或其中并入其中。 这种硼的掺入可以在纤维形成之前或期间或在该方法的至少一个不熔化或热解步骤期间完成。
    • 9. 发明授权
    • Preparation of substantially polycrystalline silicon carbide fibers from
polyorganosiloxanes
    • 从聚有机硅氧烷制备基本上多晶碳化硅纤维
    • US5167881A
    • 1992-12-01
    • US649315
    • 1991-01-31
    • William H. AtwellDuane R. BujalskiEric J. JoffreGary E. LeGrowJonathan LipowitzJames A. Rabe
    • William H. AtwellDuane R. BujalskiEric J. JoffreGary E. LeGrowJonathan LipowitzJames A. Rabe
    • C04B35/571
    • C04B35/571
    • A process for the preparation of substantially polycrystalline silicon carbide fibers are provided. The fibers may be fabricated to have a small diameter and are thermally stable at high temperature. The process is carried out by initially forming fibers from a preceramic polymeric precursor comprising phenyl-containing polyorganosiloxane resins. The fibers are then infusibilized to render them nonmelting followed by a pyrolysis step in which the fibers are heated to a temperature in excess of 1600.degree. C. in a nonoxidizing atmosphere to form substantially polycrystalline silicon carbide fibers. The substantially polycrystalline silicon carbide fibers which are formed have at least 75% crystallinity and have a density of at least about 2.9 gm/cm.sup.3. The polymeric precursor or the fibers contain, or have incorporated therein, at least about 0.2 % by weight boron. This incorporation of boron may be accomplished either prior to or during formation of the fibers or during at least one of the infusibilizing or pyrolyzing steps of the process.
    • 提供了制备基本上多晶碳化硅纤维的方法。 纤维可以制造成具有小直径并且在高温下是热稳定的。 该方法通过初始形成来自包含含苯基的聚有机硅氧烷树脂的陶瓷前体聚合物前体的纤维进行。 然后将纤维熔融以使其不熔化,随后进行热解步骤,其中将纤维在非氧化气氛中加热至超过1600℃的温度以形成基本上多晶的碳化硅纤维。 形成的基本上多晶的碳化硅纤维具有至少75%的结晶度并且具有至少约2.9gm / cm 3的密度。 聚合物前体或纤维含有至少约0.2重量%的硼或其中并入其中。 这种硼的掺入可以在纤维形成之前或期间或在该方法的至少一个不熔化或热解步骤期间完成。
    • 10. 发明授权
    • Process for preparing ceramic materials with reduced carbon levels
    • 制备碳含量降低的陶瓷材料的工艺
    • US4761389A
    • 1988-08-02
    • US717354
    • 1985-04-01
    • James A. RabeDuane R. Bujalski
    • James A. RabeDuane R. Bujalski
    • C04B35/626C01B31/36C04B35/565C04B35/571C04B35/589D01F9/10C04B35/52C04B35/58
    • C04B35/571C04B35/589
    • A process for preparing ceramic materials with reduced carbon levels is described. The process involves treating a silicon-containing preceramic polymer with ammonia at a temperature of 550.degree.-800.degree. C. for a time sufficient to reduce the carbon content prior to pyrolysis at 900.degree.-1500.degree. C. Another process also involves the pyrolysis of a silicon-containing preceramic polymer in an ammonia atmosphere. The carbon level of ceramic materials produced by this invention can be controlled to a given, desired level by varying the process conditions. Suitable silicon-containing preceramic polymers include polycarbosilanes, polysilazanes, polysilanes, organosilsesquioxane-containing sol-gels, and organopolysiloxanes which are capable of being converted to ceramic materials when fired to elevated temperatures. Ceramic fibers can be prepared by the processes disclosed which contain less than 0.25 weight percent carbon.
    • 描述了制备具有降低的碳水平的陶瓷材料的方法。 该方法包括在550℃-800℃的温度下用氨处理含硅预陶瓷聚合物足够的时间以在900℃-1500℃下热解之前降低碳含量。另一种方法还涉及热解 在氨气氛中的含硅预陶瓷聚合物。 通过改变工艺条件可以将本发明生产的陶瓷材料的碳含量控制在给定的期望水平。 合适的含硅预陶瓷聚合物包括聚碳硅烷,聚硅氮烷,聚硅烷,含有机倍半硅氧烷的溶胶凝胶和有机聚硅氧烷,当被烧制到升高的温度时能够转化为陶瓷材料。 陶瓷纤维可以通过公开的含有小于0.25重量%碳的方法制备。