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    • 1. 发明申请
    • Higher alpha-olefin copolymers and process for preparation thereof
    • 高级α-烯烃共聚物及其制备方法
    • US20050049373A1
    • 2005-03-03
    • US10925037
    • 2004-08-25
    • Yutaka MinamiTakenori FujimuraMasanori SeraTomoaki Takebe
    • Yutaka MinamiTakenori FujimuraMasanori SeraTomoaki Takebe
    • C08F4/645C08F4/659C08F4/6592C08F210/14C08F4/44
    • C08F210/14C08F4/65908C08F4/65912C08F4/65927C08F2500/20C08F2500/03
    • An object of the present invention is to provide crystalline high α-olefin copolymers which have excellent compatibility with thermoplastic resins, especially polyolefins, and compatibility with lubricant oils, fuel oils or waxes, excellent miscibility with inorganic fillers and secondary processability, and which have narrow temperature ranges for melting and crystallization, and to provide a process for preparation thereof. The present invention provides a crystalline higher α-olefin copolymer obtained by copolymerizing at least two higher α-olefins having 10 or more carbon atoms or at least one higher α-olefin having 10 or more carbon atoms with at least one other olefin, wherein it satisfies the following (1) to (3): (1): the content of higher α-olefin units is 50 mol % or greater, (2): the melting point (Tm) which is measured, by using a differential scanning calorimeter (DSC), from the melting endothermic curve obtained by maintaining the copolymer at 190° C. for 5 minutes under a nitrogen atmosphere, cooling it to −10° C. at a rate of 5° C./min, maintaining it at −10° C. for 5 minutes, and then elevating its temperature to 190° C. at 10° C./min is in the range of 20 to 100° C., and (3): in the intensity distribution of wide-angle X-ray scattering, a single peak X1 resulting from crystallization of side chains is observed at 15 deg
    • 本发明的目的是提供与热塑性树脂特别是聚烯烃具有优异相容性的结晶高α-烯烃共聚物,与润滑油,燃料油或蜡的相容性,与无机填料的混溶性和二次加工性,并且具有窄 熔化和结晶的温度范围,并提供其制备方法。 本发明提供通过使至少两种具有10个或更多个碳原子的高级α-烯烃或至少一个具有10个或更多个碳原子的高级α-烯烃与至少一种其它烯烃共聚得到的结晶高级α-烯烃共聚物,其中 满足以下(1)〜(3):(1):高级α-烯烃单元的含量为50摩尔%以上,(2):使用差示扫描量热计测定的熔点(Tm) (DSC)中,从在氮气气氛下将共聚物在190℃下保持5分钟而获得的熔融吸热曲线,以5℃/ min的速度将其冷却至-10℃, 10℃下5分钟,然后在10℃/分钟将其温度升至190℃/分钟在20至100℃的范围内,和(3):在广角度的强度分布 在15度<2度<30度观察到X射线散射,由侧链结晶产生的单峰X1。
    • 2. 发明申请
    • Higher alpha-olefin copolymers and process for preparation thereof
    • 高级α-烯烃共聚物及其制备方法
    • US20060111526A1
    • 2006-05-25
    • US11324304
    • 2006-01-04
    • Yutaka MinamiTakenori FujimuraMasanori SeraTomoaki Takebe
    • Yutaka MinamiTakenori FujimuraMasanori SeraTomoaki Takebe
    • C08F4/44
    • C08F210/14C08F4/65908C08F4/65912C08F4/65927C08F2500/20C08F2500/03
    • An object of the present invention is to provide crystalline high α-olefin copolymers which have excellent compatibility with thermoplastic resins, especially polyolefins, and compatibility with lubricant oils, fuel oils or waxes, excellent miscibility with inorganic fillers and secondary processability, and which have narrow temperature ranges for melting and crystallization, and to provide a process for preparation thereof. The present invention provides a crystalline higher α-olefin copolymer obtained by copolymerizing at least two higher α-olefins having 10 or more carbon atoms or at least one higher α-olefin having 10 or more carbon atoms with at least one other olefin, wherein it satisfies the following (1) to (3): (1): the content of higher α-olefin units is 50 mol % or greater, (2): the melting point (Tm) which is measured, by using a differential scanning calorimeter (DSC), from the melting endothermic curve obtained by maintaining the copolymer at 190° C. for 5 minutes under a nitrogen atmosphere, cooling it to −10° C. at a rate of 5° C./min, maintaining it at −10° C. for 5 minutes, and then elevating its temperature to 190° C. at 10° C./min is in the range of 20 to 100° C., and (3): in the intensity distribution of wide-angle X-ray scattering, a single peak X1 resulting from crystallization of side chains is observed at 15 deg
    • 本发明的目的是提供与热塑性树脂特别是聚烯烃具有优异相容性的结晶高α-烯烃共聚物,与润滑油,燃料油或蜡的相容性,与无机填料的混溶性和二次加工性,并且具有窄 熔化和结晶的温度范围,并提供其制备方法。 本发明提供通过使至少两种具有10个或更多个碳原子的高级α-烯烃或至少一个具有10个或更多个碳原子的高级α-烯烃与至少一种其它烯烃共聚得到的结晶高级α-烯烃共聚物,其中 满足以下(1)〜(3):(1):高级α-烯烃单元的含量为50摩尔%以上,(2):使用差示扫描量热计测定的熔点(Tm) (DSC)中,从在氮气气氛下将共聚物在190℃下保持5分钟而获得的熔融吸热曲线,以5℃/ min的速度将其冷却至-10℃, 10℃下5分钟,然后在10℃/分钟将其温度升至190℃/分钟在20至100℃的范围内,和(3):在广角度的强度分布 在15度<2度<30度观察到X射线散射,由侧链结晶产生的单峰X1。
    • 7. 发明授权
    • Heat-storage material composition
    • 储热材料组成
    • US07714081B2
    • 2010-05-11
    • US10577496
    • 2004-10-27
    • Masanori SeraYutaka MinamiTakenori Fujimura
    • Masanori SeraYutaka MinamiTakenori Fujimura
    • C08L23/00C08L23/02
    • C09K5/063
    • The present invention relates to a heat storage material composition comprising 20 to 100% by weight of a heat storage material, 80 to 0% by weight of crystalline polyolefin (B) and 50 to 0% by weight of an elastomer (C), and the heat storage material described above contains a side chain-crystalline polymer (A), wherein the heat storage material described above comprises preferably a higher α-olefin polymer (a) containing 50 mole % or more of higher α-olefin having 10 or more carbon atoms and a petroleum wax (b) in which a melting point (Tm) is higher by 10° C. or more than that of the polymer (a). Provided is a heat storage material composition which has less bleeding and stickiness and is excellent in stability at high temperature and which can meet a change in temperature such as a difference in room temperature when applied to a material for floor heating and can avoid a heating state deviated to high temperature or low temperature.
    • 本发明涉及一种储热材料组合物,其包含20至100重量%的蓄热材料,80至0重量%的结晶聚烯烃(B)和50至0重量%的弹性体(C),以及 上述储热材料含有侧链状聚合物(A),其中上述储热材料优选包含含有50摩尔%以上的具有10个以上的高级α-烯烃的高级α-烯烃聚合物(a) 碳原子和熔点(Tm)高于聚合物(a)的10℃以上的石油蜡(b)。 本发明提供一种蓄热材料组合物,其具有较少的渗透性和粘性,并且在高温下的稳定性优异,并且当施加到用于地板加热的材料时可以满足诸如室温差的温度变化并且可以避免加热状态 偏向高温或低温。
    • 8. 发明申请
    • CROSSLINKED OLEFIN POLYMERS AND PROCESS FOR PRODUCTION THEREOF
    • 交联烯烃聚合物及其生产方法
    • US20090018288A1
    • 2009-01-15
    • US11718834
    • 2005-11-07
    • Ryo AburataniYutaka ObataTomoaki TakebeMasanori SeraYutaka Minami
    • Ryo AburataniYutaka ObataTomoaki TakebeMasanori SeraYutaka Minami
    • C08F10/14C08F8/00
    • C08F10/14C08F4/65908C08F4/65912C08F4/65927C08F8/00C08F110/14C08F210/14C08F2500/20C08F2500/04C08F2500/03
    • Crosslinked olefin polymers which are reduced in stickiness and improved in rigidity, heat resistance, light resistance, and water resistance while retaining the molding properties such as injection moldability, spinnability, film-forming properties and the physical properties such as toughness (including elongation and break strength) and tackiness; and a process for the production thereof. Crosslinked olefin polymers which are obtained by reacting an α-olefin polymer produced by polymerization of at least one α-olefin having 6 or more carbon atoms or polymerization of at least one α-olefin having 6 or more carbon atoms with at least one other α-olefin with a crosslinking agent and which satisfy the following requirements: (1) the content of units of α-olefins having 6 or more carbon atoms is 50 mol % or more, (2) the molecular weight distribution (Mw/Mn) as determined by gel permeation chromatography (GPC) is 7.0 or more in terms of polystyrene, (3) the content of components having weight-average molecular weights (Mw) of 106 or more is 5% by mass or more as determined by GPC, and (4) the stereoregularity indication M4 is 75 mol % or less; and a process for the production of the polymers.
    • 在保持成型性,如注塑成型性,纺丝性,成膜性以及韧性(包括伸长率和断裂性等)的物理性能的同时,粘合性降低,刚性,耐热性,耐光性和耐水性降低的交联烯烃聚合物 强度)和粘性; 及其生产方法。 通过使至少一种具有6个或更多个碳原子的至少一种α-烯烃聚合而产生的α-烯烃聚合物或至少一种具有6个或更多个碳原子的至少一个碳原子的α-烯烃与至少一种其它的α-烯烃反应而获得的交联烯烃聚合物 (1)具有6个或更多个碳原子的α-烯烃的单元含量为50摩尔%以上,(2)分子量分布(Mw / Mn)为 通过凝胶渗透色谱法(GPC)测定的聚苯乙烯换算为7.0以上,(3)通过GPC测定,重均分子量(Mw)为106以上的成分的含量为5质量%以上, (4)立构规整性指示M4为75摩尔%以下; 以及聚合物的制造方法。
    • 9. 发明申请
    • Heat-storage material composition
    • 储热材料组成
    • US20070079825A1
    • 2007-04-12
    • US10577496
    • 2004-10-27
    • Masanori SeraYutaka MinamiTakenori Fujimura
    • Masanori SeraYutaka MinamiTakenori Fujimura
    • F24J2/34
    • C09K5/063
    • The present invention relates to a heat storage material composition comprising 20 to 100% by weight of a heat storage material, 80 to 0% by weight of crystalline polyolefin (B) and 50 to 0% by weight of an elastomer (C), and the heat storage material described above contains a side chain-crystalline polymer (A), wherein the heat storage material described above comprises preferably a higher α-olefin polymer (a) containing 50 mole % or more of higher α-olefin having 10 or more carbon atoms and a petroleum wax (b) in which a melting point (Tm) is higher by 10° C. or more than that of the polymer (a). Provided is a heat storage material composition which has less bleeding and stickiness and is excellent in stability at high temperature and which can meet a change in temperature such as a difference in room temperature when applied to a material for floor heating and can avoid a heating state deviated to high temperature or low temperature.
    • 本发明涉及一种储热材料组合物,其包含20至100重量%的蓄热材料,80至0重量%的结晶聚烯烃(B)和50至0重量%的弹性体(C),以及 上述储热材料含有侧链结晶聚合物(A),其中上述储热材料优选包含含有50摩尔%以上的具有10个或更多个的高级α-烯烃的高级α-烯烃聚合物(a) 碳原子和熔点(Tm)高于聚合物(a)的10℃以上的石油蜡(b)。 本发明提供一种蓄热材料组合物,其具有较少的渗透性和粘性,并且在高温下的稳定性优异,并且当施加到用于地板加热的材料时可以满足诸如室温差的温度变化并且可以避免加热状态 偏向高温或低温。