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    • 53. 发明授权
    • Butyl rubber ionomer nanocomposites
    • 丁基橡胶离聚物纳米复合材料
    • US07915333B2
    • 2011-03-29
    • US11973233
    • 2007-10-05
    • Rui ResendesDana Adkinson
    • Rui ResendesDana Adkinson
    • C08K3/34
    • C08F210/12C08L23/32C08L91/00C08L2312/00C08L91/06C08F236/08
    • The invention relates to nanocomposites and processes for making nanocomposites comprising butyl rubber ionomers having at least 3.5 mol % of repeating units derived from a multiolefin monomer, such as isoprene. More particularly, the invention relates to butyl rubber ionomer nanocomposites comprising high aspect ratio fillers. In one preferred aspect of the invention, the nanocomposites comprise ionomers that are generated in situ during formation of the nanocomposite, leading to intercalation of the ionomer with the nanocomposite. Nanocomposites according to the present invention exhibit improved impermeability and tensile properties as compared with prior art nanocomposites made using conventional brominated butyl rubber.
    • 本发明涉及纳米复合材料和制备纳米复合材料的方法,所述纳米复合材料包含具有至少3.5摩尔%衍生自多烯烃单体的重复单元如丁二烯的丁基橡胶离聚物。 更具体地说,本发明涉及包含高纵横比填料的丁基橡胶离聚物纳米复合材料。 在本发明的一个优选方面,纳米复合材料包含在纳米复合材料形成期间原位产生的离聚物,导致离聚物与纳米复合材料嵌入。 与使用常规溴化丁基橡胶制备的现有技术的纳米复合材料相比,根据本发明的纳米复合材料表现出改进的不渗透性和拉伸性能。
    • 54. 发明申请
    • Butyl rubber ionomer nanocomposites
    • 丁基橡胶离聚物纳米复合材料
    • US20080207815A1
    • 2008-08-28
    • US11973233
    • 2007-10-05
    • Rui ResendesDana Adkinson
    • Rui ResendesDana Adkinson
    • C08K3/34
    • C08F210/12C08L23/32C08L91/00C08L2312/00C08L91/06C08F236/08
    • The invention relates to nanocomposites and processes for making nanocomposites comprising butyl rubber ionomers having at least 3.5 mol % of repeating units derived from a multiolefin monomer, such as isoprene. More particularly, the invention relates to butyl rubber ionomer nanocomposites comprising high aspect ratio fillers. In one preferred aspect of the invention, the nanocomposites comprise ionomers that are generated in situ during formation of the nanocomposite, leading to intercalation of the ionomer with the nanocomposite. Nanocomposites according to the present invention exhibit improved impermeability and tensile properties as compared with prior art nanocomposites made using conventional brominated butyl rubber.
    • 本发明涉及纳米复合材料和制备纳米复合材料的方法,所述纳米复合材料包含具有至少3.5摩尔%衍生自多烯烃单体的重复单元如丁二烯的丁基橡胶离聚物。 更具体地说,本发明涉及包含高纵横比填料的丁基橡胶离聚物纳米复合材料。 在本发明的一个优选方面,纳米复合材料包含在纳米复合材料形成期间原位产生的离聚物,导致离聚物与纳米复合材料嵌入。 与使用常规溴化丁基橡胶制备的现有技术的纳米复合材料相比,根据本发明的纳米复合材料表现出改进的不渗透性和拉伸性能。
    • 55. 发明授权
    • Polyolefin wax for coating materials and printing ink composition
    • 聚烯烃蜡用于涂料和印刷油墨组合物
    • US06858765B2
    • 2005-02-22
    • US10278031
    • 2002-10-23
    • Hideo Toyoda
    • Hideo Toyoda
    • C08L23/08C08L23/32C09D123/08C09D123/32C07C2/06
    • C09D123/0815C08L23/0815C08L23/32C09D123/32Y10S526/943C08L2666/06
    • A polyolefin wax for a coating material which includes an ethylene (co)polymer having a number-average molecular weight within the range of from 400 to 5000 as measured by gel permeation chromatography. The polyolefin wax has a volume average particle diameter in the range of from 0.3 μm to 20 μm wherein the relation between a particle diameter a (μm), in which the weight ratio of the large particle diameter side in weight particle-size distribution is 10%, and a particle diameter b (μm), in which the weight ratio of the small particle diameter side in weight particle size distribution is 10%, satisfies the a/b≦4 and the relation between the crystallization temperature Tc (° C.), measured at a cooling rate of 2° C./min) as measured by differential scanning calorimetry (DSC) and the density D (kg/m3) as measured by the density gradient tube method satisfies the equation 0.501×D−366≧Tc. A printing ink composition the polyolefin wax and an liquid dispersion containing particles of an ethylene polymer composition are also set forth.
    • 一种用于涂料的聚烯烃蜡,其包括通过凝胶渗透色谱法测量的数均分子量在400至5000范围内的乙烯(共)聚合物。 聚烯烃蜡的体积平均粒径在0.3μm〜20μm的范围内,其中粒径a(mum)之间的重量比粒径分布的重量比为10 %,重量粒径分布的小粒径侧的重量比为10%的粒径b(母体)满足a /b≤4,结晶化温度Tc(℃ ),通过差示扫描量热法(DSC)测定的以2℃/分钟的冷却速度测定,密度梯度管法测定的密度D(kg / m 3)满足公式0.501×D -366> = Tc。 印刷油墨组合物还包括聚烯烃蜡和含有乙烯聚合物组合物颗粒的液体分散体。
    • 58. 发明申请
    • Polyolefin wax for coating material, printing ink composition, ethylene polymer composition dispersion and use thereof
    • 用于涂料的聚烯烃蜡,印刷油墨组合物,乙烯聚合物组合物分散体及其用途
    • US20030171481A1
    • 2003-09-11
    • US10278031
    • 2002-10-23
    • Mitsui Chemicals, Inc.
    • Hideo Toyoda
    • C08K003/00
    • C09D123/0815C08L23/0815C08L23/32C09D123/32Y10S526/943C08L2666/06
    • A polyolefin wax for a coating material which includes an ethylene (co)polymer having a number-average molecular weight within the range of from 400 to 5000 as measured by gel permeation chromatography. The polyolefin wax has a volume average particle diameter in the range of from 0.3 nullm to 20 nullm wherein the relation between a particle diameter a (nullm), in which the weight ratio of the large particle diameter side in weight particle-size distribution is 10%, and a particle diameter b (nullm), in which the weight ratio of the small particle diameter side in weight particle size distribution is 10%, satisfies the a/bnull4 and the relation between the crystallization temperature Tc (null C.), measured at a cooling rate of 2null C./min) as measured by differential scanning calorimetry (DSC) and the density D (kg/m3) as measured by the density gradient tube method satisfies the equation 0.501nullD-366nullTc. A printing ink composition the polyolefin wax and an liquid dispersion containing particles of an ethylene polymer composition are also set forth.
    • 一种用于涂料的聚烯烃蜡,其包括通过凝胶渗透色谱法测量的数均分子量在400至5000范围内的乙烯(共)聚合物。 聚烯烃蜡的体积平均粒径在0.3μm〜20μm的范围内,其中粒径a(mum)之间的重量比粒径分布的重量比为10 %,重量粒径分布的小粒径侧的重量比为10%的粒径b(母体)满足a /b≤4,结晶化温度Tc(℃ ),通过差示扫描量热法(DSC)测定的以2℃/分钟的冷却速度测定,密度梯度管法测定的密度D(kg / m 3)满足公式0.501×D -366> = Tc。 印刷油墨组合物还包括聚烯烃蜡和含有乙烯聚合物组合物颗粒的液体分散体。