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    • 41. 发明授权
    • Sub-zero temperature plastic working process for metal
    • 金属低温塑料加工工艺
    • US4083220A
    • 1978-04-11
    • US678933
    • 1976-04-21
    • Masaru KobayashiAtsuya KamadaTakao TerabayashiHiroshi Asao
    • Masaru KobayashiAtsuya KamadaTakao TerabayashiHiroshi Asao
    • C21D7/02C21D8/00C22F1/00B21D31/00
    • C21D7/02C21D8/005C22F1/00Y10S72/70
    • Improvements in a plastic working process for face-centered cubic metals, and titanium and zirconium having close-packed-hexagonal lattice, which process utilizes a phenomenon that the ductility of these metals is increased at sub-zero temperatures, i.e., temperatures below 0.degree. C. This process includes the steps of (i) imparting plastic flow including at least a uniaxial tensile stress field a metal at a temperature below zero, (ii) subjecting the metal to plastic flow to an extent that the strain of the metal is within the limit of uniform elongation of the metal, and then to plastic flow including at least a uniaxial tensile stress field continuously thereafter, or (iii) using frost as a lubricant for plastic working at temperatures below 0.degree. C according to either one of the foregoing steps.
    • 对于面心立方金属的塑性加工工艺以及具有紧密堆积六边形晶格的钛和锆的改进,该方法利用了这样的现象:这些金属的延展性在零度以下,即低于0℃ C.该方法包括以下步骤:(i)在低于零的温度下赋予包括至少单轴拉伸应力场金属的塑性流动,(ii)使金属塑性流动达到金属应变范围内的塑性流动 金属的均匀伸长极限,然后至少包括至少单轴拉伸应力场的塑性流动,或者(iii)根据上述任一项,使用霜作为在0℃以下的温度下进行塑性加工的润滑剂 脚步。
    • 43. 发明授权
    • Wave generator for wave gear device
    • 波轮发生器用于波齿轮装置
    • US09109662B2
    • 2015-08-18
    • US13810846
    • 2012-05-23
    • Masaru Kobayashi
    • Masaru Kobayashi
    • F16H37/04F16H1/32F16H49/00
    • F16H1/32F16H49/001
    • A wave generator for a wave gear device is provided with a pair of first rollers arranged in a position that is point-symmetric in relation to the center of a flexible externally toothed gear, a pair of second rollers, and a pair of third rollers. The first rollers are located on a long axis of the flexible externally toothed gear that is being flex into an ellipsoidal shape, and the second and third rollers are located in positions that are linearly symmetric in relation to the long axis between the long axis and a short axis. Support bearings of the first rollers are larger than those of the second and third rollers. The rolling fatigue life of a roller-type of the wave generator can be to be enhanced.
    • 一种用于波齿轮装置的波发生器设置有一对第一辊,其布置在相对于柔性外齿轮的中心点对称的位置,一对第二辊和一对第三辊。 第一辊位于柔性外齿轮的长轴上,该长轴弯曲成椭圆形,第二和第三辊位于相对于长轴与长轴之间的长轴线性对称的位置 短轴。 第一辊的支撑轴承大于第二和第三辊的支承​​轴承。 可以提高滚筒式波发生器的滚动疲劳寿命。
    • 45. 发明授权
    • Image forming method and image forming device
    • 图像形成方法和图像形成装置
    • US08740373B2
    • 2014-06-03
    • US13366407
    • 2012-02-06
    • Masaru Kobayashi
    • Masaru Kobayashi
    • B41J2/01
    • B41J11/002B41J11/0015
    • An image forming method includes an ejecting step, a drying step after the ejecting step, and a particle-providing step after the drying step. The ejecting step includes ejecting aqueous ink onto a recording medium and forming an image. The drying step includes drying such that a difference between a water amount contained in the recording medium after the drying and a water amount that was contained in the recording medium before the ejecting is from 1.0 g/m2 to 4.0 g/m2. The particle-providing step includes supplying particles to the surface of a roller and, via the roller, providing the particles to a face of the recording medium at which the image has been formed.
    • 图像形成方法包括喷射步骤,喷射步骤之后的干燥步骤和干燥步骤之后的颗粒提供步骤。 喷射步骤包括将水性墨水喷射到记录介质上并形成图像。 干燥步骤包括干燥,使得干燥后的记录介质中所含的水量与喷射前记录介质中所含的水量之差为1.0g / m 2至4.0g / m 2。 颗粒提供步骤包括将颗粒供应到辊的表面,并且经由辊将颗粒提供到已经形成图像的记录介质的表面。
    • 46. 发明申请
    • WAVE GENERATOR OF WAVE GEAR DEVICE
    • 波形发电机波形发生器
    • US20130316868A1
    • 2013-11-28
    • US13696004
    • 2012-05-23
    • Masaru Kobayashi
    • Masaru Kobayashi
    • F16H1/32
    • F16H1/32F16H49/001Y10T74/19
    • An externally toothed portion of a cup-shaped flexible externally toothed gear of a wave gear device is flexed into an ellipsoidal shape by a six-roller-type wave generator. A region of an inner peripheral surface of the ellipsoidally flexed externally toothed portion that is positioned on a major axis of the ellipsoidal shape is maximally inclined. First rollers of the wave generator are arranged so that the incline is identical to the incline of the region of the inner peripheral surface. A circular outer peripheral surface of the first rollers can be brought into contact with the region of the inner peripheral surface in an external-tooth tooth-trace direction without deflection; therefore, the angular transmission precision of the wave gear device can be improved.
    • 波轮齿轮装置的杯形柔性外齿轮的外齿部分通过六辊式波发生器弯曲成椭圆形。 位于椭圆形长轴上的椭圆形外齿部的内周面的区域最大地倾斜。 波浪发生器的第一辊布置成使得倾斜与内周表面的区域的倾斜度相同。 第一辊的圆形外周面可以在外齿齿迹方向上与内周面的区域接触而不偏转; 因此,能够提高波齿轮装置的角度传递精度。
    • 47. 发明授权
    • Camera module
    • 相机模块
    • US08493504B2
    • 2013-07-23
    • US13009184
    • 2011-01-19
    • Masaru KobayashiTatsuhiko Hagihara
    • Masaru KobayashiTatsuhiko Hagihara
    • H04N5/225H04N3/14G02B7/04G03B17/00G03B17/02H01L31/0232H01L27/00
    • H04N5/2251H04N5/2257
    • A camera module according to one embodiment of this invention has a sensor substrate, a lens holder, and a shield being fixed to the lens holder. The lens holder is composed of a tubular portion including a lens and a top board having an opening. The lens holder is fixed by a second adhesive provided more inside than an edge of the sensor substrate. The shield has a tubular portion and a top board. The tubular portion is composed of a small-diameter portion, a step portion, and a large-diameter portion. The shield is disposed so that the step portion is in contact with a portion between the edge of the sensor substrate and the second adhesive, and, at the same time, the top board of the lens holder is located in an opening formed in the top board of the shield.
    • 根据本发明的一个实施例的相机模块具有传感器基板,透镜保持器和固定在透镜架上的屏蔽件。 透镜架由包括透镜的管状部分和具有开口的顶板组成。 透镜架通过比传感器基板的边缘更内侧设置的第二粘合剂固定。 屏蔽件具有管状部分和顶板。 管状部分由小直径部分,台阶部分和大直径部分组成。 屏蔽体设置成台阶部与传感器基板的边缘和第二粘合剂之间的部分接触,并且同时,透镜保持器的顶板位于形成在顶部的开口中 盾的板。
    • 49. 发明授权
    • Method for manufacturing rigid internal gear of wave gear device
    • 波形齿轮装置刚性内齿轮制造方法
    • US08051566B2
    • 2011-11-08
    • US12788768
    • 2010-05-27
    • Masaru KobayashiToshihiko Kaji
    • Masaru KobayashiToshihiko Kaji
    • B21K1/30
    • F16H49/001Y10T29/49462Y10T29/49467Y10T29/49474Y10T29/49476Y10T74/19
    • A method for manufacturing a rigid internal gear of a wave gear device in which an internally toothed portion formed with internal teeth and a gear main body portion are joined integrally, the method including preforming an internal teeth-forming ring or disc for forming the internally toothed portion by using a first aluminum alloy powder; manufacturing a forging in which the internal teeth-forming ring or disc is placed in a forging die and is integrally formed on its outer side with the gear main body portion using a second aluminum alloy powder, the first aluminum alloy powder being harder and having higher abrasion resistance than the second aluminum alloy powder; and applying post-processing including cutting teeth to the forging.
    • 一种用于制造波形齿轮装置的刚性内齿轮的方法,其中形成有内齿的内齿部分和齿轮主体部分一体地接合,所述方法包括预成型内齿形成环或圆盘,用于形成内齿 通过使用第一铝合金粉末; 制造其中内齿形成环或盘被放置在锻造模具中的锻造,并且使用第二铝合金粉末在其外侧与齿轮主体部分一体地形成,所述第一铝合金粉末更硬并且具有较高的 耐磨性比第二铝合金粉末; 并对锻造进行后处理,包括切割牙齿。
    • 50. 发明申请
    • OPTICAL CONNECTOR CLEANING TOOL
    • 光学连接器清洁工具
    • US20110047731A1
    • 2011-03-03
    • US12593911
    • 2009-03-19
    • Naoki SugitaMieko TsubamotoMasaaki KonishiMasaru Kobayashi
    • Naoki SugitaMieko TsubamotoMasaaki KonishiMasaru Kobayashi
    • B08B1/00
    • G02B6/3807G02B6/3866
    • An optical connector clearing tool (1) includes a holder (2), cleaner (5), and cap (6). The holder (2) includes, e.g., a cylindrical slider (10), a cylindrical body (12) installed to be rotatable and movable in the axial direction with respect to the slider (10), and a slider return spring (13) which biases the body (12) forward to return the slider (10) to the initial position. The slider (10) has a pair of elastic pieces (16) having guide projections (17). In the outer circumferential surface of the body (12), spiral grooves (25, 26) with which the guide projections (17) engage are formed within the angular range of 360°. When the slider (10) moves forward, the body (12) rotates by the cam action of the guide projections (17) and spiral grooves (25, 26). The cleaner (5) includes, e.g., a cleaning thread (41) accommodated in a rotary pod (40), a supply reel (42), a take-up reel (43), and a cleaning pin (44), and is connected to the body (12). The rotary pod (40) and cleaning pin (44) rotate together with the body (12), and the cleaning thread (41) supplied to the distal end face of the cleaning pin (44) cleans the connection surface of an optical connector. The cleaning thread (41) is supplied from the supply reel (42) and taken up to the take-up reel (43) by being given tension by the rotation of the cleaner (5).
    • 光学连接器清除工具(1)包括保持器(2),清洁器(5)和盖(6)。 保持器(2)包括例如圆柱形滑块(10),安装成能够相对于滑块(10)沿轴向旋转和移动的圆柱体(12),以及滑块复位弹簧(13),其中 向前偏压主体(12)以将滑块(10)返回到初始位置。 滑块(10)具有一对具有引导突起(17)的弹性片(16)。 在主体(12)的外周面中,在360°的角度范围内形成有与导向突起(17)接合的螺旋槽25,26。 当滑块(10)向前移动时,主体(12)通过引导突起(17)和螺旋槽(25,26)的凸轮作用而旋转。 清洁器(5)包括例如容纳在旋转容器(40)中的清洁线(41),供应卷轴(42),卷取卷轴(43)和清洁销(44),并且是 连接到主体(12)。 旋转盒(40)和清洁销(44)与主体(12)一起旋转,并且提供给清洁销(44)的远端面的清洁线(41)清洁光连接器的连接表面。 清洁线(41)从供带盘(42)供给,并通过由清洁器(5)的旋转赋予张力而被卷取到卷取卷轴(43)。