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    • 21. 发明授权
    • Lithographic printing plate support and method of manufacturing the same
    • 平版印刷版支持及其制造方法
    • US07413844B2
    • 2008-08-19
    • US11377546
    • 2006-03-17
    • Atsushi MatsuuraHirokazu SawadaAkio Uesugi
    • Atsushi MatsuuraHirokazu SawadaAkio Uesugi
    • G03F7/00C25D5/44
    • B41N3/04B41N3/034C25F3/04
    • A lithographic printing plate support capable of obtaining a presensitized plate which is excellent in scumming resistance and scratch resistance and achieves a good balance between sensitivity and press life, and a method of manufacturing the support are provided. The support includes a surface which has an arithmetic mean roughness Ra of 0.36 to 0.50 μm; not more than 3.0 recesses with a depth of at least 4 μm per 400 μm square region; and a surface area ratio ΔS5(0.02-0.2) determined from Sx5(0.02-0.2) denoting the actual surface area of a 5 μm square surface region as determined by three-point approximation based on data obtained by extracting 0.02 to 0.2 μm wavelength components from three-dimensional data on the surface region measured with an atomic force microscope at 512×512 points and S0 denoting the geometrically measured surface area of the surface region, of 50 to 90%.
    • 提供一种能够获得耐浮渣性和耐划伤性优异并且在灵敏度和印刷寿命之间达到良好平衡的预敏板的平版印刷版支撑体,以及制造支持体的方法。 支撑体包括具有0.36至0.50μm的算术平均粗糙度R a a的表面; 不超过3.0个凹槽,每400平方米区域深度至少为4 mum; 并且由S×5(0.02-0.2)确定的表示面积比ΔS5(0.02-0.2)表示实际的表面积 基于通过用原子力显微镜在512×512点测量的表面区域上的三维数据提取0.02至0.2μm波长分量而获得的数据,通过三点近似确定的5个正方形表面区域,并且S < SUB表示表面区域的几何测量表面积,为50〜90%。
    • 22. 发明申请
    • Lithographic printing plate support and presensitized plate
    • 平版印刷版支持和预感板
    • US20060040212A1
    • 2006-02-23
    • US11205134
    • 2005-08-17
    • Atsushi MatsuuraHirokazu SawadaAkio Uesugi
    • Atsushi MatsuuraHirokazu SawadaAkio Uesugi
    • G03F7/00
    • B41N3/034C25F3/04
    • A lithographic printing plate support includes a surface which has a surface area ratio ΔS5(0.02-0.2) defined by formula (1): ΔS5(0.02-0.2) (%)=[(Sx5(0.02-0.2)−S0)/S0]×100 (%) (1) (Sx5(0.02-0.2) is the true surface area of a 5 μm square surface region as determined by three-point approximation based on data obtained by extracting 0.02 to 0.2 μm wavelength components from three-dimensional data on the surface region measured with an atomic force microscope at 512×512 points and S0 is the geometrically measured surface area of the surface region) of 50 to 90%; and an arithmetic average roughness Ra of 0.35 μm or less. The lithographic printing plate support can be used to obtain a presensitized plate, which exhibits both an excellent scumming resistance and a particularly long press life when being made into a lithographic printing plate.
    • 平版印刷版支撑体包括具有由式(1)定义的表面积比ΔS5(0.02-0.2)的表面:ΔS5(0.02-0.2)( %)= [(S×S)5(0.02-0.2)≤0 / S <0> x100 (%)(1)(S××5)(0.02-0.2)是通过三点近似法确定的5um方形表面区域的真实表面积,基于 通过用原子力显微镜以512×512点测量的表面区域上的三维数据提取0.02〜0.2μm波长成分而得到的数据为S&lt; 0&lt; S&gt;是表面区域的几何测定表面积) 50〜90%; 和0.35μm以下的算术平均粗糙度R a a a。 平版印刷版支撑体可以用于获得预制板,当制成平版印刷版时,它们具有优异的防浮渣性和特别长的印刷寿命。
    • 23. 发明授权
    • Electrolytic apparatus for forming a support for lithographic printing plate
    • 用于形成平版印刷版支撑体的电解装置
    • US06572739B2
    • 2003-06-03
    • US09764099
    • 2001-01-19
    • Atsushi MatsuuraAkio Uesugi
    • Atsushi MatsuuraAkio Uesugi
    • C25D1700
    • C25F7/00
    • An electrolytic apparatus, for supporting a lithographic printing plate, including a guide roller for transporting an aluminum web. The guide roller includes a skeleton section formed with a strong material, a liquid contact section on the surface of the skeleton section, and a nonwoven fabric is provided on the liquid contact section and contacts a surface of an aluminum web. The liquid contact section is formed with a fluororesin coating of 100-3000 &mgr;m in thickness, and the insulation resistance value of the fluororesin coating is 105 &OHgr;cm or more in volume resistivity. The nonwoven fabric is formed mainly with polyphenylene sulfite or fluororesin of 5-50 mm in thickness. Additionally, the nonwoven fabric is condensed in the direction of the guide roller axis, and is treated with a surface finish so as to have a surface hardness in the range of 50-95.
    • 一种用于支撑平版印刷版的电解设备,包括用于输送铝网的导辊。 引导辊包括形成有强材料的骨架部分,骨架部分表面上的液体接触部分,并且在液体接触部分上设置有无纺织物,并与铝纤维网的表面接触。 液体接触部分形成厚度为100-3000μm的氟树脂涂层,并且氟树脂涂层的绝缘电阻值为体积电阻率为10 5Ω/ cm以上。 无纺布主要由聚亚苯基亚硫酸盐或厚度为5-50毫米的氟树脂形成。 另外,无纺布沿着导辊轴线的方向被冷凝,并且用表面光洁度进行处理,以使其表面硬度在50-95的范围内。
    • 26. 发明申请
    • PROBE CARD
    • 探针卡
    • US20110043239A1
    • 2011-02-24
    • US12922378
    • 2009-03-09
    • Tadabumi TomitaYoshinori HottaAkio UesugiYusuke Hatanaka
    • Tadabumi TomitaYoshinori HottaAkio UesugiYusuke Hatanaka
    • G01R31/00
    • G01R1/0735G01R3/00G01R31/2863H01R12/7076H01R12/7082H01R13/2414
    • An object of the present invention is to provide a probe card which has good stability of the connection between testing electrodes and test electrodes even after exposure to high temperatures in the burn-in test, and is less susceptible to displacements in the positions of contact between the testing electrodes and conductive portions or between the conductive portions and probe needles or the test electrodes even after repeated use of the probe card. The probe card of the present invention is a probe card which includes a testing circuit board having the testing electrodes formed so as to correspond to the test electrodes and an anisotropic conductive member electrically connecting the test electrodes with the testing electrodes. The testing electrodes are formed so that at least ends of the testing electrodes protrude from a surface of the testing circuit board, and the anisotropic conductive member is a member which has an insulating base made of an anodized aluminum film having micropores therein and a plurality of conductive paths made of a conductive material, insulated from one another, and extending through the insulating base in a thickness direction of the insulating base.
    • 本发明的目的是提供一种探针卡,即使在老化试验中暴露于高温之后,测试电极和测试电极之间的连接也具有良好的稳定性,并且不太容易受到在 测试电极和导电部分,或者即使在重复使用探针卡之后,在导电部分和探针或测试电极之间。 本发明的探针卡是一种探针卡,其包括测试电路板,其具有形成为对应于测试电极的测试电极和将测试电极与测试电极电连接的各向异性导电部件。 测试电极形成为使得测试电极的至少一端从测试电路板的表面突出,并且各向异性导电构件是具有由其中具有微孔的阳极氧化铝膜制成的绝缘基底的构件,并且多个 由导电材料制成的导电路径彼此绝缘,并且在绝缘基底的厚度方向上延伸穿过绝缘基底。
    • 29. 发明授权
    • Support for lithographic printing plate and presensitized plate
    • 支持平版印刷版和预印版
    • US06808864B2
    • 2004-10-26
    • US10237884
    • 2002-09-10
    • Hirokazu SawadaAkio Uesugi
    • Hirokazu SawadaAkio Uesugi
    • G03F7085
    • C22C21/00B41N1/083B41N3/034Y10T428/12736
    • Disclosed is a support for a lithographic printing plate obtained by subjecting an aluminum plate to a graining treatment and an anodizing treatment, the support comprising at least any one of Mn in a range from 0.1 to 1.5 wt % and Mg in a range from 0.1 to 1.5 wt %; Fe of 0 to 1 wt %; Si of 0 to 0.5 wt %; Cu of 0 to 0.2 wt %; at least one kind of element out of the elements listed in items (a) to (d) below in a range of content affixed thereto, (a) 1 to 100 ppm each of one or more kinds of elements selected from a group consisting of Li, Be, Sc, Mo, Ag, Ge, Ce, Nd, Dy and Au, (b) 0.1 to 10 ppm each of one or more kinds of elements selected from a group consisting of K, Rb, Cs, Sr, Y, Hf, W, Nb, Ta, Tc, Re, Ru, Os, Rh, Ir, Pd, Pt, In, Tl, As, Se, Te, Po, Pr, Sm and Tb, (c) 10 to 500 ppm each of one or more kinds of elements selected from a group consisting of Ba, Co, Cd, Bi and La, and (d) 50 to 1000 ppm each of one or more kinds of elements selected from a group consisting of Na, Ca, Zr, Cr, V, P and S; and Al and incidental impurities as a remaining portion. When the presensitized plate is prepared from this support, a plate has an excellent resistance to aggressive ink staining against a wider range of image recording layers and plate developers corresponding thereto.
    • 公开了通过对铝板进行磨粒处理和阳极氧化处理获得的平版印刷版的载体,所述载体包含至少一种Mn在0.1至1.5重量%的范围内,Mg在0.1至1.5重量%的范围内 1.5重量% 0〜1重量%的Fe; Si为0〜0.5重量% 0〜0.2重量%的Cu; (a)〜(d)所示的元素中的至少一种元素,(a)1〜100ppm的一种或多种元素,所述元素选自: Li,Be,Sc,Mo,Ag,Ge,Ce,Nd,Dy和Au,(b)各自选自K,Rb,Cs,Sr,Y中的一种或多种元素 ,Hf,W,Nb,Ta,Tc,Re,Ru,Os,Rh,Ir,Pd,Pt,In,Tl,As,Se,Te,Po,Pr,Sm和Tb,(c)10〜 选自由Ba,Co,Cd,Bi和La组成的组中的一种或多种元素中的每一种,和(d)每种选自Na,Ca, Zr,Cr,V,P和S; Al和杂质作为剩余部分。 当从该载体制备预敏化板时,板对于与其相对应的更宽范围的图像记录层和板显影剂具有优异的抗侵蚀性油墨污染性。