SIZING COMPOSITION FOR CHARGES USED IN THERMOPLASTIC POLYMERIC MATERIAL REINFORCEMENT, REINFORCED POLYMERIC MATERIALS AND METHOD OF MANUFACTURE
    2.
    发明申请
    SIZING COMPOSITION FOR CHARGES USED IN THERMOPLASTIC POLYMERIC MATERIAL REINFORCEMENT, REINFORCED POLYMERIC MATERIALS AND METHOD OF MANUFACTURE 审中-公开
    用于热塑性聚合物材料加固的电荷尺寸组合物,增强聚合材料及其制造方法

    公开(公告)号:WO2013017471A3

    公开(公告)日:2013-04-18

    申请号:PCT/EP2012064468

    申请日:2012-07-24

    Abstract: The invention relates to an aqueous sizing composition for reinforcing charges, preferably glass fibers, comprising a silane coupling agent, an epoxy film forming polymer comprising 2-8 reactive epoxy groups per chain and compatible with thermoplastic polyester matrix resin selected from PET and PBT, and a hypophosphite in an amount of 5 to 30 w% of the composition, preferably 7 to 25 w%, more preferably 10 to 20 w% and most preferably 12 to 18 w% of the composition. A thermoplastic polyester resin reinforced with glass fibers coated with a sizing composition of the invention shows improved resistance to staining and improved tensile elongation at break. The sizing composition further improves processability of the sized fibres.

    Abstract translation: 本发明涉及一种用于增强电荷的水性上胶组合物,优选玻璃纤维,其包含硅烷偶联剂,每链含2-8个活性环氧基并与选自PET和PBT的热塑性聚酯基体树脂相容的环氧成膜聚合物和 组合物的5〜30重量%的次磷酸盐,优选为7〜25重量%,更优选为10〜20重量%,最优选为12〜18重量%的次磷酸盐。 用涂覆有本发明的施胶组合物的玻璃纤维增​​强的热塑性聚酯树脂显示出改善的耐污染性和改善的断裂拉伸伸长率。 上胶组合物进一步改善了尺寸纤维的加工性能。

    SIZING COMPOSITION FOR CHARGES USED IN THERMOPLASTIC POLYMERIC MATERIAL REINFORCEMENT, REINFORCED POLYMERIC MATERIALS AND METHOD OF MANUFACTURE
    3.
    发明申请
    SIZING COMPOSITION FOR CHARGES USED IN THERMOPLASTIC POLYMERIC MATERIAL REINFORCEMENT, REINFORCED POLYMERIC MATERIALS AND METHOD OF MANUFACTURE 审中-公开
    热塑性聚合物增强材料,增强聚合物材料及其制造方法中使用的带电粒度组合物

    公开(公告)号:WO2013017471A2

    公开(公告)日:2013-02-07

    申请号:PCT/EP2012/064468

    申请日:2012-07-24

    Abstract: The invention relates to an aqueous sizing composition for reinforcing charges, preferably glass fibers, comprising a silane coupling agent, an epoxy film forming polymer comprising 2-8 reactive epoxy groups per chain and compatible with thermoplastic polyester matrix resin selected from PET and PBT, and a hypophosphite in an amount of 5 to 30 w% of the composition, preferably 7 to 25 w%, more preferably 10 to 20 w% and most preferably 12 to 18 w% of the composition. A thermoplastic polyester resin reinforced with glass fibers coated with a sizing composition of the invention shows improved resistance to staining and improved tensile elongation at break. The sizing composition further improves processability of the sized fibres.

    Abstract translation: 本发明涉及一种用于增强电荷的含水上胶组合物,优选玻璃纤维,其包含硅烷偶联剂,每个链包含2-8个反应性环氧基并且与热塑性聚酯基体相容的环氧成膜聚合物 选自PET和PBT的树脂以及占组合物5至30重量%,优选7至25重量%,更优选10至20重量%,最优选12至18重量%的次磷酸盐。 用涂覆有本发明的施胶组合物的玻璃纤维增​​强的热塑性聚酯树脂显示出改善的抗着色性和改善的断裂拉伸伸长率。 上浆组合物进一步改善了上浆纤维的可加工性。

    NANOFIBER-BASED HETEROJUNCTION APPROACH FOR HIGH PHOTOCONDUCTIVITY ON ORGANIC MATERIALS
    4.
    发明申请
    NANOFIBER-BASED HETEROJUNCTION APPROACH FOR HIGH PHOTOCONDUCTIVITY ON ORGANIC MATERIALS 审中-公开
    基于纳米纤维的异质结方法在有机材料上的高光电性

    公开(公告)号:WO2012051553A2

    公开(公告)日:2012-04-19

    申请号:PCT/US2011/056394

    申请日:2011-10-14

    Abstract: The present disclosure provides methods and compositions for an organic nanofiber- based heterojunction material, comprising nano fibers of an acceptor molecule, the nano fibers coated with a donor molecule, where the acceptor molecule contains a group and the donor molecule contains a companion group, wherein the group and companion group enables strong binding between the acceptor molecule and donor molecule, the strong binding providing for efficient forward electron transfer between the acceptor molecule and donor molecule, and wherein the group and companion group minimize charge carrier recombination between the acceptor molecule and the donor molecule.

    Abstract translation: 本公开提供了用于基于有机纳米纤维的异质结材料的方法和组合物,所述有机纳米纤维基异质结材料包含受体分子的纳米纤维,所述纳米纤维涂覆有供体分子,其中受体分子包含基团, 供体分子含有伴侣组,其中所述基团和伴侣组使能受体分子和供体分子之间的强结合,所述强结合在受体分子和供体分子之间提供有效的正向电子转移,并且其中所述基团和伴侣组使得电荷最小化 载体分子与供体分子之间的载体重组。

    METHOD OF PROTECTING A PERSON FROM HOT HIGH HEAT CAPACITY MATERIALS AND HOT CORROSIVE MATERIALS
    8.
    发明申请
    METHOD OF PROTECTING A PERSON FROM HOT HIGH HEAT CAPACITY MATERIALS AND HOT CORROSIVE MATERIALS 审中-公开
    从高热容材料和热腐蚀材料中保护人的方法

    公开(公告)号:WO2011066308A2

    公开(公告)日:2011-06-03

    申请号:PCT/US2010/057854

    申请日:2010-11-23

    Abstract: Methods of protecting a person, animal or other object from hot high heat capacity and/or hot corrosive materials, such as hot molten metal, hot oily liquids (e.g., heating oil), hot gels, hot solids, hot sparks, and hot acids. The methods include protecting a person, animal or other object from hot molten metals, such as liquid metal zinc heated to a temperature of about 950 °F (510 °C) or greater, hot molten aluminum heated to a temperature of about 1150 0F (620 °C) or greater, burning phosphorus at temperature of about 1550 °F (843 °C) or greater, hot solid iron having a temperature of about 500 °F (260 °C) or greater, hot heating oil having a temperature of about 500 °F (260 °C) or greater, and hot hydrochloric acid having a temperature of about 300 °F (150 °C) or greater. The ability to protect a wearer from heat from hot high heat capacity materials and/or hot corrosive materials is quite different from simply shedding liquids, even flammable liquids, such as gasoline is unexpected.

    Abstract translation: 保护人,动物或其他物体免受热高热容量和/或热腐蚀性物质(例如热熔融金属,热油性液体(例如加热油)),热凝胶,热固体,热火花和热酸的方法 。 这些方法包括保护人,动物或其他物体免受热熔融金属,例如加热到约950°F(510℃)或更高温度的液态金属锌,加热到约1150°F的温度的热熔融铝 620℃)以上,在约1550°F(843℃)以上的温度下燃烧磷,温度为约500°F(260℃)以上的热固体铁,其温度为 约500°F(260℃)或更高的温度和约300°F(150℃)或更高温度的热盐酸。 保护穿戴者免受热的高热容材料和/或热腐蚀性材料的热量与简单的脱落液体的区别,即使是易燃液体,如汽油也是意想不到的。

    NANO-TUBE THERMAL INTERFACE STRUCTURE
    9.
    发明申请
    NANO-TUBE THERMAL INTERFACE STRUCTURE 审中-公开
    纳米管热界面结构

    公开(公告)号:WO2011017136A1

    公开(公告)日:2011-02-10

    申请号:PCT/US2010/043455

    申请日:2010-07-28

    Abstract: A structure, comprising: a semiconductor structure having an electrically and thermally conductive layer disposed on one surface of the semiconductor structure; an electrically and thermally conductive heat sink; an electrically and thermally conductive carrier layer; a plurality of electrically and thermally nano-tubes, a first portion of the plurality of nano-tubes having proximal ends disposed on a first surface of the carrier layer and a second portion of the plurality of nano-tubes having proximal ends disposed on an opposite surface of the carrier layer; and a plurality of electrically and thermally conductive heat conductive tips disposed on distal ends of the plurality of nano-tubes, the heat conductive tips on the first portion of the plurality of nano-tubes being attached to the conductive layer, the of heat conductive tips on the second portion of the plurality of nano-tubes being attached to the heat sink.

    Abstract translation: 一种结构,包括:半导体结构,其具有设置在所述半导体结构的一个表面上的导电和导热层; 电导热导电散热器; 导热载体层; 多个电和热纳米管,所述多个纳米管的第一部分具有设置在所述载体层的第一表面上的近端和所述多个纳米管的第二部分,所述多个纳米管的近端设置在相对的位置上 载体层表面; 以及设置在所述多个纳米管的远端上的多个导热导热末端,所述多个纳米管的所述第一部分上的所述导热末端附着于所述导电层,所述导热尖端 在多个纳米管的第二部分上连接到散热器。

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