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    • 1. 发明授权
    • Iron-based alloy powder
    • 铁基合金粉末
    • US08685180B2
    • 2014-04-01
    • US12918483
    • 2009-02-19
    • Hideo UenoYuji SodaHironori Hideshima
    • Hideo UenoYuji SodaHironori Hideshima
    • C22C38/12
    • F01L3/02B22F3/1039B22F5/008B22F2998/10C21D6/001C21D6/007C21D6/02C21D2211/001C21D2211/008C22C33/0285C22C38/02C22C38/105C22C38/12F01L2101/00F01L2103/00B22F9/082B22F3/02
    • A powder for a sintered valve sheet made of an iron-based alloy is provided, which has excellent compactibility and abrasion resistance and from which a carbide that may abrade a counterpart is not precipitated. A powder is provided, wherein a molten steel, in which carbon is controlled to be less than 0.1% by mass to avoid precipitation of a carbide, 0.5 to 8.5% by mass of Si, 10 to 25% by mass of Ni, 5 to 20% by mass of Mo, and 5 to 20% by mass of Co are contained, and a remainder includes Fe and incidental impurities, is rapidly cooled by a conventional technique such as a gas atomization method, a water atomization method, or a centrifugal force atomization method, so that a supersaturated solid solution of the alloy elements consisting mainly of austenite, which is effective in softening the powder, is formed. Since the powder has low hardness, the compactibility is excellent at the time of compression molding. On the other hand, since the powder is hardened after sintering, a valve sheet as a final product has excellent abrasion resistance. In addition, since no carbide is precipitated, the counterpart may not be abraded.
    • 提供了一种由铁基合金制成的烧结阀片的粉末,其具有优异的紧密性和耐磨性,并且可能磨损对应物的碳化物不会沉淀。 提供一种粉末,其中将碳控制在小于0.1质量%以防止碳化物沉淀的钢水,0.5〜8.5质量%的Si,10〜25质量%的Ni,5〜5质量% 含有20质量%的Mo和5〜20质量%的Co,余量包括Fe和杂质,通过常规技术如气体雾化法,水雾化法或离心法快速冷却 形成主要由奥氏体组成的合金元素的过饱和固溶体,其有效地软化粉末。 由于粉末硬度低,压缩成形时的压实性优异。 另一方面,由于粉末在烧结后硬化,作为最终产品的阀片具有优异的耐磨性。 此外,由于没有碳化物沉淀,对应物可能不被磨损。
    • 2. 发明申请
    • Iron-Based Alloy Powder
    • 铁基合金粉末
    • US20100316523A1
    • 2010-12-16
    • US12918483
    • 2009-02-19
    • Hideo UenoYuji SodaHironori Hideshima
    • Hideo UenoYuji SodaHironori Hideshima
    • C22C38/08C22C38/10C22C38/00
    • F01L3/02B22F3/1039B22F5/008B22F2998/10C21D6/001C21D6/007C21D6/02C21D2211/001C21D2211/008C22C33/0285C22C38/02C22C38/105C22C38/12F01L2101/00F01L2103/00B22F9/082B22F3/02
    • A powder for a sintered valve sheet made of an iron-based alloy is provided, which has excellent compactibility and abrasion resistance and from which a carbide that may abrade a counterpart is not precipitated. A powder is provided, wherein a molten steel, in which carbon is controlled to be less than 0.1% by mass to avoid precipitation of a carbide, 0.5 to 8.5% by mass of Si, 10 to 25% by mass of Ni, 5 to 20% by mass of Mo, and 5 to 20% by mass of Co are contained, and a remainder includes Fe and incidental impurities, is rapidly cooled by a conventional technique such as a gas atomization method, a water atomization method, or a centrifugal force atomization method, so that a supersaturated solid solution of the alloy elements consisting mainly of austenite, which is effective in softening the powder, is formed. Since the powder has low hardness, the compactibility is excellent at the time of compression molding. On the other hand, since the powder is hardened after sintering, a valve sheet as a final product has excellent abrasion resistance. In addition, since no carbide is precipitated, the counterpart may not be abraded.
    • 提供了一种由铁基合金制成的烧结阀片的粉末,其具有优异的紧密性和耐磨性,并且可能磨损对应物的碳化物不会沉淀。 提供一种粉末,其中将碳控制在小于0.1质量%以防止碳化物沉淀的钢水,0.5〜8.5质量%的Si,10〜25质量%的Ni,5〜5质量% 含有20质量%的Mo和5〜20质量%的Co,余量包括Fe和杂质,通过常规技术如气体雾化法,水雾化法或离心法快速冷却 形成主要由奥氏体组成的合金元素的过饱和固溶体,其有效地软化粉末。 由于粉末硬度低,压缩成型时的压实性优异。 另一方面,由于粉末在烧结后硬化,作为最终产品的阀片具有优异的耐磨性。 此外,由于没有碳化物沉淀,对应物可能不被磨损。
    • 5. 发明授权
    • Water-atomized spherical metal powders and method for producing the same
    • 水雾化球形金属粉末及其制造方法
    • US06221125B1
    • 2001-04-24
    • US08542399
    • 1995-10-12
    • Yuji SodaYukio TokuyamaHiroshi Usui
    • Yuji SodaYukio TokuyamaHiroshi Usui
    • B22F100
    • B22F1/0048B22F2998/10B22F9/082B22F1/0085
    • A water-atomized metal powder having a spherical particle shape, an average particle size of 25 &mgr;m or less and a tap density ratio of 50-60%. The spherical powder is produced by forming non-spherical metal particles, which have been produced from molten metal by water-atomization, into spherical particles using a high speed gas current which causes high speed collisions to occur between said particles and between said particles and a collision body. The thus obtained spherical metal powder is particularly suitable for injection molding since and, by using the powder, the blending proportion of organic binder used in injection molding can be reduced and high strength debound bodies can be obtained.
    • 具有球形颗粒形状,平均粒度为25μm或更小,振实密度比为50-60%的水雾化金属粉末。 通过使用高速气流将由熔融金属制成的非球形金属颗粒通过水雾化形成球形颗粒而产生球形粉末,该高速气流导致所述颗粒之间和所述颗粒之间发生高速碰撞和 碰撞体。 由此获得的球状金属粉末特别适合于注射成型,并且通过使用粉末,可以降低注射成型中使用的有机粘合剂的配合比例,并且可以获得高强度的脱模体。
    • 6. 发明授权
    • Image forming apparatus capable of saving energy, method of controlling the same, and storage medium
    • 能够节能的图像形成装置,控制方法和存储介质
    • US08699897B2
    • 2014-04-15
    • US13305998
    • 2011-11-29
    • Yuji Soda
    • Yuji Soda
    • G03G15/00
    • G03G15/5004G03G21/20
    • An image forming apparatus which makes it possible to save energy during the operation of a temperature rise control mode, and is capable of realizing energy saving without degrading performance by making the image forming apparatus ready for printing when returning from the temperature rise control mode. A temperature sensor detects internal temperature of the image forming apparatus. When the internal temperature of the image forming apparatus has reached a temperature at which the apparatus should shift to the temperature rise control mode during execution of printing, the printing operation is stopped. In stopping the printing operation, the image forming apparatus is shifted to an energy saving mode.
    • 一种图像形成装置,其能够在升温控制模式的操作期间节省能量,并且能够通过在从升温控制模式返回时使图像形成装置准备好进行打印而实现节能而不降低性能。 温度传感器检测图像形成装置的内部温度。 当图像形成装置的内部温度达到设备在执行打印时应该转移到升温控制模式的温度时,停止打印操作。 在停止打印操作时,图像形成装置转移到节能模式。
    • 7. 发明授权
    • Liquid crystal display element
    • 液晶显示元件
    • US08593607B2
    • 2013-11-26
    • US13233737
    • 2011-09-15
    • Yuji Soda
    • Yuji Soda
    • G02F1/1343
    • G02F1/134309G02F1/133707G02F1/134327G02F1/134336G02F1/1393G02F2001/13373
    • The object is to make alignment of liquid crystals more uniform by reducing alignment disorder when a voltage is applied and to improve the display quality. A liquid crystal display element comprises a first electrode (122), a second electrode (141) opposed to the first electrode, and a liquid crystal layer provided between the first electrode and the second electrode and having alignment of liquid crystal in the voltage-off state being vertical alignment, wherein either one of the first electrode and the second electrode is provided with a plurality of regularly disposed L-shaped slits, and the L-shaped slits (21) are formed so that at least within an area where the first electrode and the second electrode overlap each other, the electrode provided with the slits, is divided into a plurality of rectangular sub-pixel electrodes each having connection portions at three corners for connection to adjacent sub-pixel electrodes.
    • 目的是通过在施加电压时降低取向障碍,使液晶更均匀,并提高显示质量。 液晶显示元件包括第一电极(122),与第一电极相对的第二电极(141)和设置在第一电极和第二电极之间的液晶层,并且在电压断开中具有液晶的取向 状态是垂直对准,其中第一电极和第二电极中的任一个设置有多个规则设置的L形狭缝,并且形成L形狭缝(21),使得至少在第一 电极和第二电极彼此重叠,设置有狭缝的电极被分成多个矩形子像素电极,每个矩形子像素电极在三个角处具有用于连接到相邻子像素电极的连接部分。
    • 9. 发明授权
    • Image processing apparatus and its control method
    • 图像处理装置及其控制方法
    • US07679790B2
    • 2010-03-16
    • US11197997
    • 2005-08-05
    • Yuji Soda
    • Yuji Soda
    • H04N1/32H04N1/41G06K9/36G06K9/46
    • H04N1/32448H04N1/32358H04N2201/0082
    • An image processing apparatus includes a decompression unit (302) that is configurable by dynamic reconfigurable logic into either a first decompression circuit (302a) or a second decompression circuit (302b) that has a slower decompression speed and a lower power consumption than the first decompression circuit (302a), a buffer unit (304) that temporarily stores image data decompressed by the decompression unit (302) to be supplied to an engine unit, and a detection unit (305) that detects a data amount accumulated in the buffer unit (304). In accordance with the data amount detected by the detection unit (305), the decompression unit (302) carries out reconfiguration into the first or second decompression circuit (302a/302b).
    • 一种图像处理装置包括可解调单元(302),该解压缩单元(302)可由动态可重构逻辑配置到第一解压缩电路(302a)或第二解压缩电路(302b)中,所述第一解压缩电路(302a)或第二解压缩电路具有比第一解压缩更低的解压缩速度和更低的功率消耗 电路(302a),临时存储由提供给引擎单元的解压缩单元(302)解压缩的图像数据的缓冲单元(304),以及检测单元(305),其检测在缓冲单元 304)。 根据检测单元(305)检测到的数据量,解压缩单元(302)对第一或第二解压缩电路(302a / 302b)进行重新配置。
    • 10. 发明申请
    • IMAGE FORMING APPARATUS CAPABLE OF CONTROLLING PRINTING INTERRUPTION, METHOD OF CONTROLLING THE SAME, AND STORAGE MEDIUM
    • 控制打印中断的图像形成装置,控制打印中断的方法和存储介质
    • US20120134691A1
    • 2012-05-31
    • US13303674
    • 2011-11-23
    • Yuji Soda
    • Yuji Soda
    • G03G15/00
    • G03G21/20G03G15/55G03G15/553G03G15/556
    • An image forming apparatus which makes it possible to prevent interruption of printing due to shift to a temperature rise control mode and interruption of printing for execution of a cartridge replacement operation due to running-out of toner from occurring separately during execution of continuous printing. A temperature sensor detects that the internal temperature of the image forming apparatus has become equal to or higher than a predetermined temperature. The image forming apparatus also detects execution of toner cartridge replacement. When the temperature sensor detects, during execution of printing, that the internal temperature has become equal to or higher than the predetermined temperature, the image forming apparatus stops the printing being executed. Further, when execution of toner cartridge replacement is detected during suspension of the printing, the image forming apparatus resumes the printing being suspended.
    • 一种图像形成装置,其可以防止在连续打印期间单独发生由于转移到升温控制模式而导致的打印中断以及由于调色剂的耗尽而执行墨盒更换操作的打印中断。 温度传感器检测图像形成装置的内部温度已经变得等于或高于预定温度。 图像形成装置还检测墨粉盒更换的执行。 当温度传感器在打印执行期间检测到内部温度已经变得等于或高于预定温度时,图像形成装置停止执行打印。 此外,当在打印暂停期间检测到执行调色剂盒更换时,图像形成装置恢复暂停打印。