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    • 1. 发明申请
    • PROCESS FOR PRODUCTION OF SYNDIOTACTIC PROPYLENE POLYMER
    • 生产聚丙烯聚合物的方法
    • US20100069588A1
    • 2010-03-18
    • US12312483
    • 2007-11-16
    • Tomohiro YamaguchiJunpei TanakaShiro OtsuzukiYasushi TohiKouji NagahashiNobukazu YamahiraShigenobu IkenagaSunil Krzysztof MoorthiKazunori Kamio
    • Tomohiro YamaguchiJunpei TanakaShiro OtsuzukiYasushi TohiKouji NagahashiNobukazu YamahiraShigenobu IkenagaSunil Krzysztof MoorthiKazunori Kamio
    • C08F4/52C08F4/76
    • C08F10/06C08F4/65912C08F110/06Y10S526/943C08F4/65927C08F2/06C08F2500/16C08F2500/17C08F2500/12C08F2500/26
    • It is an object of the present invention to provide a process for producing a syndiotactic propylene polymer with high polymerization activity and high efficiency by a solution polymerization method without deposition of polymers (excluding a white state), and a production process capable of conducting the above production continuously, provided that these processes could not be attained conventionally.The present invention is: a process for producing a syndiotactic propylene polymer having a syndiotactic pentad fraction (rrrr fraction), as measured by 13C-NMR, of at least 85%, a melting point (Tm), as measured by DSC, of from 145° C. to 170° C., and an intrinsic viscosity [η] of 0.1 to 10 dl/g, which process comprises a step (P1) of solution polymerizing propylene singly or propylene and at least one monomer selected from ethylene and an α-olefin having 4 to 10 carbon atoms at a polymerization temperature (TR) of from 30° C. to 250° C. in an inert hydrocarbon solvent in the presence of an olefin polymerization catalyst which comprises; (A) a bridged metallocene compound represented by the following formula (I), and (B) at least one compound selected from (b-1) an organoaluminum oxy compound, (b-2) a compound capable of forming an ion pair by reacting with the metallocene compound (A), and (b-3) an organoaluminum compound. in which M is a titanium atom or the like, Q is a halogen atom or the like, j is an integer of 1 to 4, Ra and Rb may be identically or differently a single nuclear or polynuclear hydrocarbon residue capable of forming a sandwich structure together with M, Y is a carbon atom or a silicon atom, and Rc and Rd may be the same or different from each other, is selected from hydrogen, a hydrocarbon group and a silicon atom-containing group and further may be bonded each other to form a ring.
    • 本发明的目的是提供一种通过不沉积聚合物(不包括白色状态)的溶液聚合法制备具有高聚合活性和高效率的间同立构丙烯聚合物的方法,以及能够进行上述 只要这些方法不能常规地实现即可。 本发明是通过13 C-NMR测定的具有间同立构五单元组分(rrrr分数)的间同立构丙烯聚合物的方法,其通过DSC测定为至少85%,熔点(Tm) 145℃至170℃,特性粘度[η]为0.1至10dl / g,该方法包括使丙烯单独或丙烯和至少一种选自乙烯和/或丙烯的单体的溶液聚合的步骤(P1) 在烯烃聚合催化剂存在下,在惰性烃溶剂中,在30℃至250℃的聚合温度(TR)下具有4至10个碳原子的α-烯烃,其包含: (A)由下式(I)表示的桥连金属茂化合物和(B)至少一种选自(b-1)有机铝氧化合物的化合物,(b-2)能够形成离子对的化合物 与茂金属化合物(A)和(b-3)有机铝化合物反应。 其中M为钛原子等,Q为卤素原子等,j为1〜4的整数,Ra和Rb可以相同或不同,能形成夹层结构的单核或多核烃残基 与M一起,Y是碳原子或硅原子,并且R c和R d可以相同或不同,选自氢,烃基和含硅原子的基团,并且可以彼此键合 形成一个戒指。
    • 3. 发明申请
    • IMAGE PROCESSING APPARATUS AND IMAGE PROCESSING METHOD
    • 图像处理装置和图像处理方法
    • US20120308146A1
    • 2012-12-06
    • US13483430
    • 2012-05-30
    • Masaki UchidaKazunori Kamio
    • Masaki UchidaKazunori Kamio
    • G06K9/36
    • H04N19/86H04N19/117H04N19/154H04N19/182H04N19/503H04N19/82
    • An image processing apparatus includes: a noise reduction processing amount calculator configured to calculate a noise reduction processing amount based on input image data and previous-frame output image data subjected to data compression/decompression processing; a feedback ratio correction unit configured, based on compression error information, to output the uncorrected noise reduction processing amount calculated by the noise reduction processing amount calculator with regard to a pixel having a noise reduction feedback ratio less than 100%, and to correct the noise reduction processing amount with regard to a pixel having a noise reduction feedback ratio of 100% or more such that the feedback ratio is less than 100%, and to output the corrected noise reduction processing amount; and an adder configured to add the noise reduction processing amount output from the feedback ratio correction unit to the input image data to thereby obtain output image data.
    • 一种图像处理装置包括:噪声降低处理量计算器,被配置为基于输入的图像数据和经过数据压缩/解压缩处理的前一帧输出图像数据来计算噪声降低处理量; 反馈比率校正单元,基于压缩误差信息,对噪声降低反馈比小于100%的像素输出由噪声降低处理量计算器计算出的未校正噪声降低处理量,并且校正噪声 减少处理量相对于噪声降低反馈比为100%以上的像素,使得反馈比小于100%,并输出校正后的噪声降低处理量; 以及加法器,其将从反馈比率校正单元输出的噪声降低处理量相加于输入图像数据,从而获得输出图像数据。
    • 4. 发明授权
    • Image processing apparatus and image processing method
    • 图像处理装置和图像处理方法
    • US08682088B2
    • 2014-03-25
    • US13483430
    • 2012-05-30
    • Masaki UchidaKazunori Kamio
    • Masaki UchidaKazunori Kamio
    • G06K9/36
    • H04N19/86H04N19/117H04N19/154H04N19/182H04N19/503H04N19/82
    • An image processing apparatus includes: a noise reduction processing amount calculator configured to calculate a noise reduction processing amount based on input image data and previous-frame output image data subjected to data compression/decompression processing; a feedback ratio correction unit configured, based on compression error information, to output the uncorrected noise reduction processing amount calculated by the noise reduction processing amount calculator with regard to a pixel having a noise reduction feedback ratio less than 100%, and to correct the noise reduction processing amount with regard to a pixel having a noise reduction feedback ratio of 100% or more such that the feedback ratio is less than 100%, and to output the corrected noise reduction processing amount; and an adder configured to add the noise reduction processing amount output from the feedback ratio correction unit to the input image data to thereby obtain output image data.
    • 一种图像处理装置包括:噪声降低处理量计算器,被配置为基于输入的图像数据和经过数据压缩/解压缩处理的前一帧输出图像数据来计算噪声降低处理量; 反馈比率校正单元,基于压缩误差信息,对噪声降低反馈比小于100%的像素输出由噪声降低处理量计算器计算出的未校正噪声降低处理量,并且校正噪声 减少处理量相对于噪声降低反馈比为100%以上的像素,使得反馈比小于100%,并输出校正后的噪声降低处理量; 以及加法器,其将从反馈比率校正单元输出的噪声降低处理量相加于输入图像数据,从而获得输出图像数据。
    • 5. 发明申请
    • Image processing apparatus and method
    • 图像处理装置及方法
    • US20100002130A1
    • 2010-01-07
    • US12459619
    • 2009-07-02
    • Kazunori Kamio
    • Kazunori Kamio
    • H04N7/015
    • G09G5/363G09G2340/0457
    • An image processing apparatus includes an input image processor configured to perform image processing on a received first image as first sub-pixels of a second image having a resolution higher than a resolution of the first image; at least one sub-pixel generator configured to generate, by shifting a phase of the first image, different sub-pixels that are different from the first sub-pixels of the second image; at least one sub-pixel image processor configured to perform image processing on the different sub-pixels generated by the at least one sub-pixel generator; and an output unit configured to output the first sub-pixels that have been subjected to the image processing by the input image processor and the different sub-pixels that have been subjected to the image processing by the at least one sub-pixel image processor, as the second image, to a subsequent stage.
    • 一种图像处理装置,包括输入图像处理器,被配置为对接收的第一图像执行图像处理,作为具有比第一图像的分辨率高的分辨率的第二图像的第一子像素; 至少一个子像素发生器,被配置为通过移位所述第一图像的相位来生成与所述第二图像的所述第一子像素不同的不同子像素; 至少一个子像素图像处理器,被配置为对由所述至少一个子像素生成器生成的不同子像素执行图像处理; 以及输出单元,被配置为输出已经由输入图像处理器进行了图像处理的第一子像素和由至少一个子像素图像处理器进行了图像处理的不同子像素, 作为第二个图像,到后续阶段。