会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Method for continuous annealing of a metal strip
    • 金属条的连续退火方法
    • US4571274A
    • 1986-02-18
    • US649425
    • 1984-09-11
    • Fumiya YanagishimaToru SasakiTakaaki HiraHideo AbeKouichi TaharaYuji Shimoyama
    • Fumiya YanagishimaToru SasakiTakaaki HiraHideo AbeKouichi TaharaYuji Shimoyama
    • C21D9/56C21D9/52
    • C21D9/563
    • In the operation of a continuous-process annealing furnace for a steel strip of a continuous length which is guided through the high-temperature zones of the furnace by the upper and lower hearth rolls in an alternate up and down vertical movement, each of the hearth rolls having an end-tapered or crowned configuration to correct the meandering of the running strip, each of the hearth rolls is coupled with one or a plural number of straightly cylindrical auxiliary rolls in contact with the strip at a position close to the hearth roll. By virtue of the installation of the auxiliary rolls, the phenomenon of wrinkling or buckling in the steel strip can be effectively prevented without causing meandering and the effect is more remarkable when specific relationships are held among the values of the diameters of the hearth roll and auxiliary roll and the position of the auxiliary roll relative to the hearth roll.
    • 在连续长度的钢带的连续加工退火炉的操作中,通过上下炉底辊在上下垂直运动中被引导通过炉的高温区域,每个炉床 具有端部锥形或凸起构造的辊以校正行进条的曲折,每个炉床辊在靠近炉床辊的位置处与一个或多个直圆柱形辅助辊联接,该辊与条带接触。 通过安装辅助辊,可以有效地防止钢带中的起皱或翘曲现象,而不会产生曲折,并且当炉床辊和辅助辊的直径的值之间保持特定关系时效果更显着 辊和辅助辊相对于炉床辊的位置。
    • 4. 发明授权
    • Steel strip continuous annealing apparatus
    • 钢带连续退火装置
    • US4363472A
    • 1982-12-14
    • US201586
    • 1980-10-28
    • Yuji ShimoyamaFumiya YanagishimaHideo SunamiYukio IdaGoji KatsushimaTakeo OhnishiTakeo Fukushima
    • Yuji ShimoyamaFumiya YanagishimaHideo SunamiYukio IdaGoji KatsushimaTakeo OhnishiTakeo Fukushima
    • C21D1/26C21D9/573
    • C21D9/573
    • A steel strip continuous annealing apparatus comprising: a steel strip feeder; a heating-soaking zone for heating and soaking the steel strip at a predetermined temperature; a first cooling zone for rapidly cooling the steel strip at a predetermined cooling rate; a second cooling zone for slowly cooling the steel strip or holding same at a predetermined temperature; a third cooling zone for cooling the steel strip to substantially the room temperature; and a steel strip carry-out device; wherein the first cooling zone incorporates therein forcible cooling means, the second cooling zone incorporates therein hot-cold change-over means and said forcible cooling means incorporated in the first cooling zone is provided thereon with self-cooling means; so that steel strips of various grades of steel different in required heat cycle to be applied thereto can be efficiently and stably annealed.
    • 一种钢带连续退火装置,包括:钢带供料器; 用于将钢带加热和浸泡在预定温度的加热均热区; 用于以预定冷却速度快速冷却钢带的第一冷却区; 第二冷却区,用于在预定温度下缓慢冷却钢带或将其保持; 用于将钢带冷却至基本上为室温的第三冷却区; 和钢带搬运装置; 其特征在于,所述第一冷却区包含强制冷却装置,所述第二冷却区包括热冷转换装置,并且在所述第一冷却区中结合的所述强制冷却装置设置有自冷却装置; 从而可以有效且稳定地退火,使得在所需的热循环中不同的各种等级的钢的钢带被施加到其上。
    • 6. 发明授权
    • Steel strip continuous annealing apparatus
    • 钢带连续退火装置
    • US4363471A
    • 1982-12-14
    • US199199
    • 1980-10-21
    • Fumiya YanagishimaYuji ShimoyamaHideo SunamiYukio IdaGoji KatsushimaMunetoshi SuzukiTakeo Ohnishi
    • Fumiya YanagishimaYuji ShimoyamaHideo SunamiYukio IdaGoji KatsushimaMunetoshi SuzukiTakeo Ohnishi
    • C21D9/56C21D9/573
    • C21D9/56C21D9/573
    • A steel strip continuous annealing apparatus comprising: a steel strip feeder; a heating-soaking zone for heating and soaking a steel strip at a predetermined temperature; a first cooling zone for rapidly cooling the steel strip at a predetermined cooling rate; a second cooling zone for slowly cooling the steel strip or holding same at a predetermined temperature; a third cooling zone for cooling the steel strip to substantially room temperature; and a steel strip carryout device; wherein the first cooling zone incorporates therein forcible cooling means, the second cooling zone incorporates therein hot-cold change-over means and the third cooling zone incorporates therein forcible cooling means, while said steel strip continuous annealing apparatus further comprises: means for directly bypassing the steel strip from the heating-soaking zone through a first bypass passageway to the second cooling zone; and means for directly bypassing the steel strip from the first cooling zone through a second bypass passageway to the steel strip carry-out device; so that the steel strips different in dimensions and required heat cycle can be efficiently annealed.
    • 一种钢带连续退火装置,包括:钢带供料器; 用于在预定温度下加热和浸渍钢带的加热均热区; 用于以预定冷却速度快速冷却钢带的第一冷却区; 第二冷却区,用于在预定温度下缓慢冷却钢带或将其保持; 用于将钢带冷却至基本室温的第三冷却区; 和钢带搬运装置; 其中所述第一冷却区包含强制冷却装置,所述第二冷却区包括热冷转换装置,并且所述第三冷却区包含强制冷却装置,而所述钢带连续退火装置还包括:用于直接绕过 从加热均热区通过第一旁路通道到第二冷却区的钢带; 以及用于通过第二旁通通道将钢带从第一冷却区域直接旁路到钢带进给装置的装置; 使得尺寸不同的钢带和所需的热循环可以被有效地退火。
    • 9. 发明申请
    • Pattern Forming Process
    • 图案形成过程
    • US20080113302A1
    • 2008-05-15
    • US11597741
    • 2005-05-25
    • Masanobu TakashimaHiromi IshikawaYuji Shimoyama
    • Masanobu TakashimaHiromi IshikawaYuji Shimoyama
    • G03F7/207
    • G03F7/70291G03F7/70275H05K3/0082
    • The present invention aims to provide a pattern forming process which allows efficiently, highly precisely forming of a permanent pattern such as interconnection patterns and also allows achieving both tent property and resolution at high level. The pattern forming process includes laminating a photosensitive layer on a substrate to be processed in a pattern forming material which comprises at least the photosensitive layer, and exposing two or more arbitrarily selected regions in the photosensitive layer with light of a different amount of energy, wherein a laser beam emitted from a light irradiating unit having ‘n’ imaging portions receiving light from a light irradiating unit and outputting the light is modulated before the photosensitive layer is exposed with the laser beam through a microlens array in which microlenses each having a non-spherical surface capable of compensating the aberration due to distortion of output surfaces of the imaging portions are arrayed.
    • 本发明的目的在于提供一种图案形成方法,其能够高效地,高度精确地形成诸如互连图案的永久性图案,并且还能够实现高水平的帐篷性能和分辨率。 图案形成工艺包括在至少包含感光层的图案形成材料中将感光层层压在待加工的基板上,并且用不同能量的光曝光感光层中两个或多个任意选择的区域,其中 在具有从光照射单元接收光并输出光的具有'n'个成像部分的光照射单元发射的激光束在激光束通过微透镜阵列曝光之前被调制,微透镜阵列中, 排列能够补偿由摄像部的输出面的畸变引起的像差的球面。
    • 10. 发明申请
    • Image-drawing device and image-drawing method
    • 图像绘图装置和图像绘制方法
    • US20050052708A1
    • 2005-03-10
    • US10895425
    • 2004-07-21
    • Yuji ShimoyamaTakeshi FujiiDaisuke Nakaya
    • Yuji ShimoyamaTakeshi FujiiDaisuke Nakaya
    • B41J2/44B41J2/445B41J2/45B41J2/455B41J2/47G02B27/18G02F1/13G03F7/20H04N1/04H04N1/10H04N1/195
    • H04N1/0408H04N1/0402H04N1/0458H04N1/1008H04N1/19505
    • An image-drawing device, which carries out image-drawing on the basis of image-drawing data, has image-drawing heads which are moved relatively in a predetermined scanning direction along an image-drawing surface. The image-drawing heads have a large number of image-drawing elements lined-up two-dimensionally within a plane which is parallel to the image-drawing surface. The straight lines along which the plural image-drawing elements are lined-up are inclined, with respect to the scanning direction, at a predetermined inclination angle such that an image-drawing magnification has an effective value after a decimal point. A data allocating unit allocates the image-drawing data to the respective image-drawing elements at predetermined timings corresponding to a resolution determined in accordance with the image-drawing magnification. In this way, resolution in the scanning direction can be increased without making a scanning speed of the image-drawing heads slower or making a modulation speed of the image-drawing elements faster.
    • 基于图像数据执行图像的图像绘制装置具有沿着图像绘制表面沿预定的扫描方向相对移动的图像绘制头。 图像绘制头具有在平行于图像绘制表面的平面内二维排列的大量图像绘制元件。 多个图像绘制元件沿其排列的直线相对于扫描方向以预定倾斜角度倾斜,使得图像绘制倍数在小数点后具有有效值。 数据分配单元以与根据图像绘制倍率确定的分辨率对应的预定定时将图像绘制数据分配给各个图像绘制元素。 以这种方式,可以增加扫描方向上的分辨率,而不会使得图像绘制头的扫描速度变慢或使得图像绘制元件的调制速度更快。