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    • 1. 发明授权
    • Method for purifying high-temperature reducing gas
    • 纯化高温还原气的方法
    • US4994257A
    • 1991-02-19
    • US41868
    • 1987-04-23
    • Mitsugi SuehiroToshikuni SeraKenji InoueAkira Shimada
    • Mitsugi SuehiroToshikuni SeraKenji InoueAkira Shimada
    • C01B3/56C01B17/52C10K1/20
    • C10K1/20C01B17/52C01B3/56C01B2203/043C01B2203/0485
    • The present invention is directed to a method for purifying a high-temperature reducing gas by continuously circulating the processes of reducing a regenerated absorbent with the high-temperature reducing gas, until concentrations of aimed reducing gases have become uniform on upstream and downstream sides of the absorbent, and absorbing sulfur compounds by the use of this absorbent and thereby removing these sulfur compounds therefrom; the aforesaid method being characterized by using at least three reactors filled with the absorbent, by consisting of the four steps of reduction, absorption, SO.sub.2 reduction and regeneration, and by comprising the steps of feeding a circulating gas from the regenerating step to the SO.sub.2 reducing step; converting an SO.sub.2 gas produced in the regenerating step and the SO.sub.2 reducing step into elemental sulfur and recovering the latter as liquid sulfur; and introducing a part of the SO.sub.2 gas into the reducing step and returning the remaining SO.sub.2 gas to the regenerating step.
    • 本发明涉及一种通过连续循环利用高温还原气体还原再生吸收剂的方法来提纯高温还原气体的方法,直到目标还原气体的浓度在上游和下游侧变得均匀 通过使用该吸收剂吸收和吸收硫化合物,从而从其中除去这些硫化合物; 上述方法的特征在于使用至少三个填充有吸收剂的反应器,通过还原,吸收,SO2还原和再生的四个步骤组成,并且包括以下步骤:将循环气体从再生步骤进料到SO 2还原 步; 将再生步骤中产生的SO 2气体和SO 2还原步骤转化为元素硫,并将其回收为液态硫; 并将一部分SO 2气体引入到还原步骤中并将剩余的SO 2气体返回到再生步骤。
    • 2. 发明授权
    • Magnetic recording medium with controlled grain diameters
    • 具有受控晶粒直径的磁记录介质
    • US08592061B2
    • 2013-11-26
    • US12443372
    • 2007-09-26
    • Takahiro OnoueAkira Shimada
    • Takahiro OnoueAkira Shimada
    • G11B5/65
    • G11B5/66G11B5/65
    • In order to provide a magnetic recording medium having excellent electromagnetic conversion characteristics, a magnetic recording medium (10) is provided with a substrate (12), and a magnetic recording layer (20) formed on the substrate (12). The magnetic recording layer (20) is provided with a granular layer (32), i.e., a magnetic layer, including magnetic grains and a nonmagnetic material surrounding the magnetic grains in a section parallel to the main surface of the substrate. The ratio of the long diameter to the short diameter of each magnetic grain contained in the granular layer (32) is calculated in the section. In the histogram of such ratio, a half width at half maximum of the histogram is 0.6 or less and the variance of grain diameters of the magnetic grains in the section is 20% or less of the average grain diameter of the magnetic grains.
    • 为了提供具有优异的电磁转换特性的磁记录介质,磁记录介质(10)设置有基板(12)和形成在基板(12)上的磁记录层(20)。 磁记录层(20)在平行于基板的主表面的部分中设置有包括磁性颗粒的磁性层(32),包括磁性颗粒的非磁性材料的磁性层(32)。 在该部分中计算包含在颗粒层(32)中的每个磁性颗粒的长径与短径的比率。 在该比率的直方图中,直方图的半值半宽度为0.6以下,截面中的磁性粒子的粒径的变化为磁性粒子的平均粒径的20%以下。
    • 4. 发明申请
    • METHOD OF DRIVING PIEZOELECTRIC DEVICE
    • 驱动压电器件的方法
    • US20120161578A1
    • 2012-06-28
    • US13306495
    • 2011-11-29
    • Akira ShimadaKaishi Ohashi
    • Akira ShimadaKaishi Ohashi
    • H01L41/09
    • H01L41/042H01L41/1871H01L41/1873
    • Provided is a method of driving a piezoelectric device including a piezoelectric material having at least two phase transition temperatures and is polarized in one of thickness directions, and electrodes disposed on both end surfaces of the piezoelectric material in a direction orthogonal to the polarized direction, the method including: applying an alternating electric field to the piezoelectric device by an electric field applying unit; and applying a bias electric field in accordance with a variation of a coercive electric field due to temperature variation so that an absolute value of an electric field in a direction opposite to the polarized direction in the alternating electric field applied by the electric field applying unit becomes smaller than the coercive electric field and so that a polarization of the piezoelectric material is not reversed by the electric field in the direction opposite to the polarized direction.
    • 提供了一种驱动包括具有至少两个相变温度的压电材料并在厚度方向中的一个方向极化的压电装置的方法,以及设置在与偏振方向正交的方向上的压电材料的两个端面上的电极, 方法,包括:通过电场施加单元向压电装置施加交变电场; 以及根据温度变化引起的矫顽电场的变化施加偏置电场,使得由电场施加单元施加的交变电场中与偏振方向相反的方向的电场的绝对值成为 小于矫顽电场,并且使得压电材料的极化不被与偏振方向相反的方向的电场反转。
    • 8. 发明申请
    • Electrophotographic photosensitive member, method for manufacturing electrophotographic photosensitive member, process cartridge and electrophotographic apparatus
    • 电子照相感光构件,电子照相感光构件的制造方法,处理盒和电子照相设备
    • US20060019185A1
    • 2006-01-26
    • US11236691
    • 2005-09-28
    • Shoji AmamiyaKoichi NakataTatsuya IkezueTakahiro MitsuiAkira ShimadaHiroki UematsuShuji IshiiAkio Maruyama
    • Shoji AmamiyaKoichi NakataTatsuya IkezueTakahiro MitsuiAkira ShimadaHiroki UematsuShuji IshiiAkio Maruyama
    • G03G5/147
    • G03G5/06G03G5/04G03G5/0567G03G5/0614G03G5/0618G03G5/0625G03G5/0629G03G5/0633G03G5/0638G03G5/064G03G5/0648G03G5/071
    • An object of the present invention is to improve a phenomenon of the life-shortening of the endurance life due to scratch occurring when recesses of a fixed dimple shape are formed on the surface of the surface layer, in order to inhibit the chattering and folding back of a cleaning blade and the fracture of an edge, which occurs because friction between the surface layer of the surface of an electrophotographic photosensitive member and an abutting member is high; and particularly to improve the above described problems, from initial printing through printing on many sheets, which become particularly remarkable when using an electrophotographic photosensitive member with the use of a curable resin that is improved so as to have a high elastic deformation rate for the surface layer, in order to improve the strength of the surface layer, for the purpose of increasing the durability of an electrophotographic photosensitive member. An electrophotographic photosensitive member for achieving the object, which has a support and an organic photosensitive layer, is characterized in that the electrophotographic photosensitive member has dimple-shaped concavities formed on the surface of the surface layer of the electrophotographic photosensitive member, and further has the recesses with the same pattern as that on the surface of the surface layer, formed on the interface created between the surface layer of the organic photosensitive member and the layer directly under the surface layer (a subsurface layer).
    • 本发明的目的是改善在表层的表面上形成固定凹坑形状的凹坑时由于划痕而产生的耐久寿命的使用寿命的现象,以便抑制颤动和折回 并且由于电子照相感光构件的表面的表面层与抵接构件之间的摩擦力高而发生的边缘的断裂; 并且特别是为了改善上述问题,从初期打印到许多片材上的印刷,当使用改进的电子照相感光构件以使表面具有高的弹性变形率时,其变得特别显着 为了提高电子照相感光构件的耐久性,为了提高表面层的强度。 用于实现该目的的电子照相感光构件,其具有支撑体和有机感光层,其特征在于,电子照相感光构件具有在电子照相感光构件的表面层的表面上形成的凹陷形凹部,并且还具有 形成在与有机感光构件的表面层和直接在表面层(地下层)之下的层之间形成的界面上的与表面层表面相同的图案的凹部。