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    • 91. 发明授权
    • Heating apparatus for a transversely stretched nonwoven fabric
    • 横向拉伸无纺布加热装置
    • US06637128B2
    • 2003-10-28
    • US10309970
    • 2002-12-04
    • Yuki KuroiwaYoshiro MorinoKazuhiko KuriharaShuichi Murakami
    • Yuki KuroiwaYoshiro MorinoKazuhiko KuriharaShuichi Murakami
    • F26B1306
    • B29C55/08D06C3/00D06C7/00Y10T442/60Y10T442/601Y10T442/614
    • A transversely stretched nonwoven fabric is manufactured by transversely stretching a nonwoven fabric. First, an original web comprising a plurality of un-oriented filaments is heated to a temperature higher than its stretch suitable temperature by 5° C. or more. Next, the heated original web is stretched at a rate of 1.2 to 3 in its transverse direction to stretch the filaments of the original web with almost no molecular orientation involved. Then, the original web stretched transversely at a rate of 1.2 to 3 is heated to the stretch suitable temperature and the original web is further stretched transversely at the stretch suitable temperature. With these steps, a transversely stretched nonwoven fabric in which the original web is stretched transversely at a rate of 7 times or more in total as compared with the state of the stretch thereof is manufactured with a high tensile strength of 132.5 mN/tex (1.5 g/d) in the transverse direction.
    • 通过横向拉伸无纺布制造横向拉伸的无纺布。 首先,将包含多个未取向长丝的原始纤维网加热至比其拉伸合适温度高5℃或更高的温度。 接下来,加热的原料纤维网在其横向上以1.2-3的速率拉伸,几乎不涉及分子取向,从而拉伸原料纤维网的长丝。 然后,将以1.2-3的速率横向拉伸的原始纤维网加热至拉伸适宜温度,并且在拉伸适当温度下将原纤维网进一步横向拉伸。 通过这些步骤,制造横向拉伸的无纺布,其中原始纤维网与其拉伸状态相比以总共7倍或更多的速率横向拉伸,以高的拉伸强度为132.5mN / tex(1.5 g / d)。
    • 93. 发明授权
    • Liquid discharge head, driving method therefor, and cartridge, and image forming apparatus
    • 液体排出头,其驱动方法和墨盒以及图像形成装置
    • US06443561B1
    • 2002-09-03
    • US09643822
    • 2000-08-22
    • Shuichi Murakami
    • Shuichi Murakami
    • B41J205
    • B41J2/05B41J2/04543B41J2/04563B41J2/0458B41J2/04591B41J2/1404B41J2/14129B41J2/17503B41J2/1752B41J2002/14169B41J2002/14387B41J2002/14475
    • A liquid discharge head comprises discharge ports for discharging liquid; electrothermal transducing elements arranged to face the discharge ports; and a layer covering the electrothermal transducing elements. The gap between the discharge ports and the covering layer is 34 &mgr;m or less, and the thickness of the covering layer is 6,300 Å or less. One of the electrothermal transducing elements generates thermal energy of 0.0027 &mgr;J/&mgr;m2 or less by the application of a single driving pulse of 1.2 &mgr;s or less to produce film boiling to discharge liquid from the corresponding discharge port. Fluctuation of liquid bubbling on the surface of the electrothermal transducing element is reduced, and since the resultant meniscus retraction becomes smaller upon discharge, liquid can return to the surface of the electrothermal transducing element quickly and the meniscus faces the discharge port, improving displacement accuracy of liquid droplets on a printing medium even when driving is executed at high frequency.
    • 液体排出头包括用于排出液体的排出口; 布置成面对排出口的电热转换元件; 以及覆盖电热转换元件的层。 排出口和覆盖层之间的间隙为34μm以下,覆盖层的厚度为6300以下。 其中一个电热转换元件通过施加1.2微米或更小的单次驱动脉冲产生0.0027微克/平方米或更小的热能,以产生薄膜沸腾以从相应的排出口排出液体。 电热转换元件表面的液体起泡的波动减小,由于在放电时所产生的弯液面回缩变小,液体可以快速返回到电热转换元件的表面,并且弯月面面向排出口,提高位移精度 即使在高频下执行驱动时,打印介质上的液滴也是如此。
    • 97. 发明授权
    • Pellicle and mask adhesive therefor
    • 防护薄膜和面膜粘合剂
    • US08685598B2
    • 2014-04-01
    • US13500513
    • 2010-10-06
    • Shuichi MurakamiTakashi KozekiMinehiro Mori
    • Shuichi MurakamiTakashi KozekiMinehiro Mori
    • G03F1/00C08L23/00
    • C09J123/10C08L23/10C08L23/142C08L23/145C08L23/18C08L2205/02C08L2666/06C08L2666/08C09J153/025G03F1/64
    • Disclosed is a pellicle having a mask adhesive layer having appropriate softness, having a small adhesive residue after being peeled off from a mask, and having good handling characteristics; and a pellicle for preventing position deviation of patterns, in particular in double patterning. The pellicle of the present invention includes a pellicle frame, a pellicle membrane disposed on one end surface of the pellicle frame, and a mask adhesive layer disposed on other end surface of the pellicle frame; wherein the mask adhesive layer includes 35 to 170 weight parts of a hardness adjuster (B) containing a polypropylene (b1) and a propylene based elastomer (b2) per 100 weight parts of a styrene resin (A); and in an electron microscopic photograph of the mask adhesive layer, a phase-separated structure of a continuous phase of the styrene resin (A) and a discontinuous phase of the hardness adjuster (B) is observed.
    • 公开了一种具有适当柔软度的掩模粘合剂层的防护薄膜组件,在从掩模剥离之后具有小的粘合剂残留物,并且具有良好的处理特性; 以及用于防止图案的位置偏移的防护薄片,特别是在双重图案化中。 本发明的防护薄膜组件包括防护薄膜组件框架,设置在防护膜框架的一个端面上的防护薄膜组件和设置在防护薄膜组件框架的另一个端面上的掩模粘合剂层; 其中,所述掩模粘合剂层每100重量份苯乙烯树脂(A)含有35〜170重量份含有聚丙烯(b1)和丙烯系弹性体(b2)的硬度调节剂(B) 并且在掩模粘合剂层的电子显微镜照片中,观察到苯乙烯树脂(A)的连续相的相分离结构和硬度调节剂(B)的不连续相。
    • 99. 发明授权
    • Pellicle frame and pellicle containing same
    • 防护薄膜组件和含有相同的防护薄膜
    • US08507158B2
    • 2013-08-13
    • US13383891
    • 2010-07-06
    • Shuichi MurakamiTakashi Kozeki
    • Shuichi MurakamiTakashi Kozeki
    • G03F1/00
    • G03F1/64Y10T428/265Y10T428/31511Y10T428/31529
    • Provided is a pellicle that has appropriate membrane strength, high resistance to chemicals, and a low degree of sulfate ion generation and outgassing. A provided pellicle frame supports the outer rim of a pellicle membrane, and an epoxy resin coating is formed on the surface of the pellicle frame. In the infrared absorption spectrum of said epoxy resin coating, the ratio of the absorbance of a peak in the range between 1450 cm−1 and 1550 cm−1 to the absorbance of a peak in the range between 1200 cm−1 and 1275 cm−1 is at least 0.5 and at most 3; also, the ratio of the absorbance of a peak in the range between 1450 cm−1 and 1550 cm−1 to the absorbance of a peak in the range between 905 cm−1 and 930 cm−1 is at least 1 and less than 7.
    • 提供了具有合适的膜强度,高耐化学性和低硫酸根离子产生和脱气的防护薄膜组件。 提供的防护薄膜框架支撑防护薄膜组件的外缘,并且在防护薄膜组件框架的表面上形成环氧树脂涂层。 在所述环氧树脂涂层的红外吸收光谱中,1450cm -1和1550cm -1之间的峰的吸光度与在1200cm -1和1275cm -1之间范围内的峰的吸光度的比率, 1至少为0.5,最多为3; 另外,在1450cm -1与1550cm -1之间的峰的吸光度与在905cm -1和930cm -1之间的峰的吸光度的比率也至少为1且小于7 。
    • 100. 发明授权
    • Ink jet print head
    • 喷墨打印头
    • US08454131B2
    • 2013-06-04
    • US12060029
    • 2008-03-31
    • Shuichi MurakamiMasataka Eida
    • Shuichi MurakamiMasataka Eida
    • B41J2/06B41J2/04
    • B41J2/1404B41J2/14145B41J2/16532B41J2/17563B41J2002/14403B41J2002/14467B41J2202/07
    • An ink jet print head is provided which, during a suction-based recovery operation, can effectively remove air bubbles from the common ink path by producing an ink flow in the common ink path. In each of a plurality of bubble forming chambers where an element is installed to generate a thermal energy, there are provided a first ink path for leading ink directly from the ink supply port and a second ink path for leading ink from the common ink path formed on a far side of the array of the bubble forming chambers with respect to the ink supply port. The plurality of the first ink paths include those ink paths with less flow resistance than that of the second ink paths and those ink paths with higher flow resistance than that of the second ink paths.
    • 提供了一种喷墨打印头,其在基于抽吸的回收操作期间,通过在公共油墨通道中产生墨水流可以有效地从公共油墨通道去除气泡。 在安装元件以产生热能的多个气泡形成室的每一个中,设置有用于从供墨口直接引导墨水的第一墨水路径和用于从形成的公共墨水路径引导墨水的第二墨水路径 在相对于供墨口的气泡形成室的阵列的远侧。 多个第一墨水路径包括那些具有比第二墨水通道的流动阻力小的那些油墨路径以及那些具有比第二个油墨路径更高流动阻力的油墨通道。