Process for producing resin composition for optical semiconductor
    617.
    发明授权
    Process for producing resin composition for optical semiconductor 有权
    光半导体用树脂组合物的制造方法

    公开(公告)号:US09243129B2

    公开(公告)日:2016-01-26

    申请号:US14138763

    申请日:2013-12-23

    Abstract: The present invention relates to a process for producing a resin composition for an optical semiconductor from a powdery material and a liquid material using a kneader having a first supply port and a secondary supply port disposed at a downstream side of the first supply port, the process including: a step of supplying the powdery material into the kneader from the first supply port and delivering the powdery material to a second supply port side by the kneader at a temperature at which the powdery material is not melted; a step of melting the powdery material by heating and simultaneously supplying the liquid material from the second supply port under a pressure higher than a pressure in the kneader to knead a melted product of the powdery material and the liquid material; and a step of further kneading a kneaded product thereof while cooling.

    Abstract translation: 本发明涉及使用具有配置在第一供给口的下游侧的第一供给口和二次供给口的捏合机从粉末状物质和液态物质制造光半导体用树脂组合物的方法,该方法 包括:从第一供给口将粉末状材料供给到捏合机的步骤,并且在粉末状材料不熔融的温度下,通过捏合机将粉末状材料输送到第二供给口侧; 通过加热熔化粉末状材料的步骤,同时在高于捏合机的压力的压力下从第二供给口供给液体材料,以捏合粉末状材料和液体材料的熔融产物; 以及在冷却时进一步捏合其捏合物的步骤。

    Polymeric materials
    618.
    发明授权
    Polymeric materials 有权
    聚合材料

    公开(公告)号:US09139704B2

    公开(公告)日:2015-09-22

    申请号:US13996578

    申请日:2011-12-19

    CPC classification number: C08J3/201 C08J3/2053 C08J3/22 C08J2367/00

    Abstract: A method of introducing an additive, for example a dye, into a polymeric material comprises using a liquid formulation comprising the additive, a vehicle and an active compound added to increase the melt viscosity of the polymeric material. The active compound may be a multi-functional anhydride. The liquid formulation is suitably contacted with the polymeric material in a melt processing apparatus and suitably a cavity transfer mixer is used in the process. A fiber is suitably subsequently produced.

    Abstract translation: 将添加剂例如染料引入聚合物材料的方法包括使用包含添加剂,载体和添加的活性化合物以增加聚合物材料的熔体粘度的液体制剂。 活性化合物可以是多官能酐。 液体制剂在熔融加工装置中适当地与聚合物材料接触,并且在该方法中适当地使用空腔传输混合器。 随后生产纤维。

    PROCESS FOR PRODUCING RESIN COMPOSITION CONTAINING ACTIVE PARTICLES
    619.
    发明申请
    PROCESS FOR PRODUCING RESIN COMPOSITION CONTAINING ACTIVE PARTICLES 有权
    生产含活性颗粒的树脂组合物的方法

    公开(公告)号:US20150225513A1

    公开(公告)日:2015-08-13

    申请号:US14415656

    申请日:2013-07-19

    Abstract: There is provided a process for producing a resin composition in a safe and cost-effective manner, the resin composition being a dispersion of active particles reactive with oxygen in a thermoplastic resin. The process is one for producing a resin composition containing at least a thermoplastic resin and active particles that have been dispersed in the thermoplastic resin and are reactive with oxygen in an atmosphere, the process comprising the steps of: protecting the active particles with a dispersion medium to prevent oxygen in the atmosphere from contacting with the active particles; removing the dispersion medium while melt-kneading the thermoplastic resin and the active particles protected with the dispersion medium to replace the dispersion medium with the thermoplastic resin; and cooling and solidifying the thermoplastic resin with the active particles dispersed therein.

    Abstract translation: 提供了以安全且成本有效的方式制备树脂组合物的方法,该树脂组合物是在热塑性树脂中与氧反应的活性颗粒的分散体。 该方法是用于生产至少含有热塑性树脂的树脂组合物和分散在热塑性树脂中并在大气中与氧反应的活性颗粒的方法,该方法包括以下步骤:用分散介质保护活性颗粒 以防止大气中的氧与活性颗粒接触; 除去分散介质,同时熔融捏合热塑性树脂和用分散介质保护的活性颗粒,以用热塑性树脂代替分散介质; 并将活性颗粒分散在其中来冷却和固化热塑性树脂。

    Clean flame retardant compositions with carbon nano tube for enhancing mechanical properties for insulation of wire and cable
    620.
    发明授权
    Clean flame retardant compositions with carbon nano tube for enhancing mechanical properties for insulation of wire and cable 有权
    具有碳纳米管的清洁阻燃组合物,用于增强电线和电缆绝缘的机械性能

    公开(公告)号:US09085678B2

    公开(公告)日:2015-07-21

    申请号:US12684139

    申请日:2010-01-08

    Abstract: Commercial thermoplastic clean flame retardant materials in wire and cable insulation are mechanically unstable due to high filler loading. In the present invention, thermoplastic, black color, clean flame retardant composition using carbon nano tubes (CNT) is made. The resultant compositions possess very low smoke and toxicity. CNT with outer diameter of 40-60 nm and length of under 20 μm are used to increase mechanical properties and flame retardancy. Thermo plastically extruded composition consists of each component by parts by weight as follows: 100 of resin (polyolefin or 100 of polyolefin/ethylene propylene diene monomer (EPDM)), 90-150 of non halogen containing flame retardants, 1-20 of auxiliary secondary flame retardant agents, 2-4 of CNT (outer diameter of 40-60 nm) and length under 20 μm and 0.2-1.0 of antioxidants. A reliable method for producing thermoplastic black color clean flame retardant insulation material for wire and cable without deterioration of mechanical properties is discussed.

    Abstract translation: 电线和电缆绝缘中的商业热塑性清洁阻燃材料由于填料填充量高而机械不稳定。 在本发明中,制造了使用碳纳米管(CNT)的热塑性,黑色,清洁的阻燃组合物。 所得组合物具有非常低的烟雾和毒性。 使用外径为40-60nm,长度为20μm以下的CNT来增加机械性能和阻燃性。 热塑性挤出组合物由以下重量份的每种组分组成:100份树脂(聚烯烃或100份聚烯烃/乙烯丙烯二烯单体(EPDM)),90-150份非卤素阻燃剂,1-20份辅助二级 阻燃剂,2-4的CNT(外径为40-60nm),长度为20μm以及0.2-1.0的抗氧化剂。 讨论了不劣化机械性能的电线电缆生产热塑性黑色清洁阻燃绝缘材料的可靠方法。

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