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    • 2. 发明专利
    • Information value evaluation device, information value evaluation method and information value evaluation program
    • 信息价值评估设备,信息价值评估方法和信息价值评估方案
    • JP2014002620A
    • 2014-01-09
    • JP2012138239
    • 2012-06-19
    • Kenji Okada憲司 岡田
    • OKADA KENJI
    • G06Q50/10
    • PROBLEM TO BE SOLVED: To provide an information value evaluation device or the like capable of acquiring an appropriate value of information.SOLUTION: An information value evaluation device comprises: an evaluation point acquisition section 121b acquiring information, which are acquired by a plurality of evaluators respectively through a network, on points given to predetermined evaluation target information by the evaluators; a fund point acquisition section 121c acquiring a part of the acquired points as fund points; an allocation section 121e specifying evaluators who have already given a point to the predetermined evaluation target information when the evaluation point acquisition section 121b acquired a point, as an evaluator of an allocation target, and dividing the fund points to supply them to the specified evaluators of an allocation target; and a value calculation section 121f calculating a value of evaluation target information on the basis of the amount of points given to the predetermined evaluation target information.
    • 要解决的问题:提供能够获取信息的适当值的信息值评估装置等。解决方案:信息值评估装置包括:评估点获取部分121b获取由多个评估者获取的信息 分别通过网络,由评估者给予预定的评估目标信息的点; 获取部分获取点作为资金点的资金点获取部分121c; 指定评价点取得部121b取得点时已经指定了预定评价对象信息的评价者作为分配对象的评价者的分配部121e,并且将资源点分割为指定的评价对象 分配目标; 以及值计算部121f,其基于给予预定评估对象信息的点数来计算评价对象信息的值。
    • 4. 发明专利
    • Method for manufacturing expanded metal
    • 制造膨胀金属的方法
    • JP2010274308A
    • 2010-12-09
    • JP2009130203
    • 2009-05-29
    • Kenji Okada建二 岡田
    • OKADA KENJI
    • B21D31/04
    • PROBLEM TO BE SOLVED: To provide a method applicable even to a thin plate by using a simple apparatus.
      SOLUTION: A forming material 3 consisting of a thin plate and a supporting material 4 having the thickness larger than that of the forming material 3 are fed in a double superposed manner into a space between a fixed lower die 1 and a movable upper die 2 which is vertically movable with respect to the fixed lower die 1 and having a corrugated cutting blade 2a on its lower end face. By reciprocating the movable upper die 2 in the vertical direction, cutouts of the predetermined pitch are formed in the forming material 3, and the cutouts are expanded to form a mesh.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:通过使用简单的装置来提供甚至适用于薄板的方法。 解决方案:由薄板和厚度大于成形材料3的厚度的支撑材料4组成的成形材料3以双重重叠的方式进入固定下模1和可移动上模 模具2,其相对于固定下模1可上下移动,并在其下端面上具有波纹状切割刀片2a。 通过使可动上模2沿垂直方向往复运动,在成形材料3中形成预定间距的切口,并且将切口扩大以形成网。 版权所有(C)2011,JPO&INPIT
    • 5. 发明专利
    • Aquatic living thing video image appreciation device and see-through water tank
    • 水生生活视频图像摄影装置和看透水槽
    • JP2005252530A
    • 2005-09-15
    • JP2004058624
    • 2004-03-03
    • Kenji Okada憲二 岡田
    • OKADA KENJI
    • H04N5/64
    • PROBLEM TO BE SOLVED: To provide an aquatic living thing video image appreciation device whereby a user can appreciate a vivid video image of an aquatic living thing by a DVD displayed on a liquid crystal display screen of a television receiver and to provide a see-through water tank used for the device.
      SOLUTION: The see-through water tank 4 is additionally provided on a front face of the liquid crystal display screen 3 of the television receiver 2, and the see-through water tank 4 produces air bubbles 23 supplied in water. Further, the see-through water tank 4 comprises: a water tank main body 11 formed to be a flat rectangular solid, having an opening 7 at its upper part, provided with a transparent part at the same phase of the front and rear sides, and provided with a joining means at the circumference; an opening/closing lid 13 covering the opening 7 with a ventilation path 19; an air jet pipe 16 placed along the inner circumference of the water tank main body 11 and opened with many air jet holes 15 on its circumferential face; an air supply tube 17 connected to the air jet pipe 16; and an air pump 18 compressingly delivering air to the air supply tube 17.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种水生生物视频图像欣赏装置,由此用户可以通过显示在电视接收机的液晶显示屏上的DVD欣赏水生生物的生动的视频图像,并且提供 透明水箱用于设备。 解决方案:透视水箱4另外设置在电视接收机2的液晶显示屏3的正面,透视水箱4产生在水中供应的气泡23。 此外,透明水箱4包括:水箱主体11,其形成为扁平矩形固体,在其上部具有开口7,在前侧和后侧的相同相位处设置有透明部分, 并在圆周设置有接合装置; 用通风路19覆盖开口7的打开/关闭盖13; 沿着水箱主体11的内周放置并在其周面上开有多个空气喷射孔15的喷气管16; 连接到空气喷射管16的空气供应管17; 和空气泵18将空气压缩到空气供应管17中。(C)2005年,JPO和NCIPI
    • 6. 发明专利
    • Turntable
    • 转台
    • JP2011236003A
    • 2011-11-24
    • JP2010108481
    • 2010-05-10
    • Kenji OkadaKunihiro Okada健治 岡田邦弘 岡田
    • OKADA KUNIHIROOKADA KENJI
    • B65G47/80
    • PROBLEM TO BE SOLVED: To provide a structurally simple turntable which enables an under ring and an upper ring to be fixed in arbitrary positions and which enables the position of the upper ring to be finely adjusted in a lightly braked state.SOLUTION: In the turntable including the annular under ring 2 and the annular upper ring 3 turnably placed thereon, a supporting member 7 is provided in an outward protruding manner on the bottom plate 2a of the under ring 2; a supporting pipe 8 is attached to the supporting member 7; a sliding rod 9 is slidably fitted into the supporting pipe 8; a spring means 10 makes the sliding rod 9 urged in the direction of getting closer to a vertical wall 3b of the upper ring 3; and a disc-shaped cam plate 12 is attached to a leading end of the sliding rod 9 in such a manner as to be rotatable in an eccentric position thereof, supported swingably with respect to a cam retainer portion 13 attached to the supporting pipe 8, and manually rotated.
    • 要解决的问题:提供一种结构简单的转盘,其使下环和上环能够固定在任意位置,并且能够使上环的位置在轻度制动状态下微调。 解决方案:在包括环形环2和可转动地放置在其上的环形上环3的转盘中,支撑构件7以向下突出的方式设置在下环2的底板2a上; 支撑管8附接到支撑构件7; 滑动杆9可滑动地装配到支撑管8中; 弹簧装置10使得滑动杆9沿更靠近上环3的竖直壁3b的方向被推动; 并且盘状凸轮板12以能够相对于安装在支撑管8上的凸轮保持部13可摆动地支撑在其偏心位置的方式安装在滑动杆9的前端, 并手动旋转。 版权所有(C)2012,JPO&INPIT
    • 7. 发明授权
    • Optical fiber manufacturing apparatus and optical fiber manufacturing method
    • 光纤制造装置及光纤制造方法
    • US08631669B2
    • 2014-01-21
    • US13090693
    • 2011-04-20
    • Kenji Okada
    • Kenji Okada
    • C03B37/029
    • C03B37/029C03B37/02736C03B2205/80C03B2205/81
    • An optical fiber manufacturing apparatus including: a heating furnace in which an optical fiber is formed by melt-drawing an optical fiber preform; a sealing mechanism which is provided on an opening portion located at an upstream of the heating furnace and seals the heating furnace with an inert gas; a first pipe which is connected to the heating furnace and introduces the gas into the heating furnace; a second pipe which is connected to a lowermost compartment closest to the heating furnace among the compartments and introduces the gas into the lowermost compartment; and a gas flow rate control unit which controls a total sum of a flow rate of a gas supplied from the first pipe into the heating furnace and a flow rate of a gas supplied from the second pipe into the lowermost compartment to be substantially constant.
    • 一种光纤制造装置,包括:加热炉,其中通过熔融拉伸光纤预制棒形成光纤; 密封机构,设置在位于加热炉的上游侧的开口部,用惰性气体密封加热炉; 第一管,其连接到加热炉并将气体引入加热炉; 第二管,其连接到隔室中最靠近加热炉的最下室,并将气体引入最下室; 以及气体流量控制单元,其控制从第一管供给到加热炉中的气体的流量与从第二管供给到最下室的气体的流量的总和大致恒定。
    • 8. 发明授权
    • Plastic glass optical fiber
    • 塑料玻璃光纤
    • US08195019B2
    • 2012-06-05
    • US12648021
    • 2009-12-28
    • Kenji OkadaNaritoshi YamadaShoichiro Matsuo
    • Kenji OkadaNaritoshi YamadaShoichiro Matsuo
    • G02B6/36
    • G02B6/03622G02B6/02033
    • A plastic glass optical fiber includes a glass core (diameter a1, relative refractive index difference Δ1, and refractive index n1), a polymer core (diameter a2, relative refractive index difference Δ2, and refractive index n2), and a polymer cladding (refractive index n3), in which the diameter a1 of the glass core is within a range of 110 μm to 200 μm, a parameter X (X is a22/a12) is within a range of 1.15≦X≦2.9, a parameter Y (Y is Δ2/Δ1) is within a range of 0.25≦Y≦0.84X−0.68 (when 1.15≦X≦2) or 0.48X−0.71≦Y≦−(2/9)X+13/9 (when 2≦X≦2.9), a parameter ZR (ZR is Z2core/Z1core; Z2core=a22π/4×√(n12−n32) and Z1core=a12π/4×√(n12−n22)) is within a range of 1.25≦ZR≦4.
    • 塑料玻璃光纤包括玻璃芯(直径a1,相对折射率差Dgr; 1和折射率n1),聚合物芯(直径a2,相对折射率差Dgr; 2和折射率n2)和 聚合物包层(折射率n3),其中玻璃纤芯的直径a1在110μm至200μm的范围内,参数X(X是a22 / a12)在1.15< 1EE的范围内; X& 参数Y(Y为&Dgr; 2 /&Dgr; 1)在0.25≦̸ Y≦̸ 0.84X-0.68(当1.15≦̸ X< ll; 2)或0.48X-0.71&NlE; Y& 9)X + 13/9(当2≦̸ X≦̸ 2.9),参数ZR(ZR是Z2core / Z1core; Z2core = a22&pgr; / 4×√(n12-n32)和Z1core = a12&pgr; / 4×√ -n22))在1.25≤n1E的范围内; ZR≦̸ 4。