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    • 1. 发明专利
    • 超音波切断装置
    • 超声波切割装置
    • JP2015047689A
    • 2015-03-16
    • JP2013197483
    • 2013-09-04
    • 大西 一正Kazumasa Onishi一正 大西
    • ONISHI KAZUMASA
    • B24B1/04B24B27/06
    • 【課題】硬く且つ脆い材料から形成された加工対象物に対して、優れた切断性能を安定して示す円盤状のブレードを用いた超音波切断装置を提供する。【解決手段】ボルト締めランジュバン型超音波振動子15を回転アダプター3に挿入し、中空ボルト4の支持フランジ16aと回転アダプター3に取り付けられた固定用リング10aを接触させる。次に回転アダプター3の先端に固定用リング10bをねじ込み、中空ボルト4の支持フランジ16bと固定用リング10bを接触させ、ボルト締めランジュバン型超音波振動子15を回転アダプター3に支持固定する。【選択図】図1
    • 要解决的问题:提供一种使用盘状刀片的超声波切割装置,其对由硬且脆性材料制成的工件稳定地显示出优异的切割性能。解决方案:将螺栓紧固兰格温型超声波振动器15插入旋转 适配器3和中空螺栓4的支撑凸缘16a和连接到旋转适配器3的用于固定的环10a彼此接触。 然后,用于固定的环10b被拧入旋转适配器3的末端,并且中空螺栓4的支撑凸缘16b和用于固定的环10b彼此接触,以支撑螺栓紧固朗文型超声波 振动器15并将其固定到旋转适配器3。
    • 2. 发明专利
    • Ultrasonic flow meter
    • 超声波流量计
    • JP2014016330A
    • 2014-01-30
    • JP2012164147
    • 2012-07-05
    • Kazumasa Onishi一正 大西
    • ONISHI KAZUMASA
    • G01F1/66
    • PROBLEM TO BE SOLVED: To provide an ultrasonic flowmeter which is less influenced by air bubbles with little air bubbles accumulated in the ultrasonic wave propagation path.SOLUTION: A flow meter body 7 is created by fitting a measurement pipe 4 (external diameter 6.35 mm, inner diameter 4.35 mm) made of PFA (polytetrafluoroethylene), an inflow pipe 5 (external diameter 6.35 mm, inner diameter 4.35 mm) made of PFA, and an outlet pipe 6 (external diameter 6.35 mm, inner diameter 4.35 mm) made of PFA to one another by thermal welding. The flow meter body 7 is coupled with a matching plate 8 and a piezo electric element 9, thereby creating an ultrasonic flow meter body. A flow rate is measured using a measurement circuit for operating the ultrasonic flow meter body. An average surface roughness (Ra) of the inner face of the PFA pipe which is used for the flow meter body 7 is 160 mm.
    • 要解决的问题:提供一种受超声波传播路径中积聚少量气泡的气泡影响较小的超声波流量计。解决方案:流量计体7通过将测量管4(外径6.35mm, 内径4.35mm),由PFA制成的流入管5(外径6.35mm,内径4.35mm)和由PFA制成的出口管6(外径6.35mm,内径4.35mm)构成的PFA(聚四氟乙烯) 通过热焊接彼此。 流量计本体7与匹配板8和压电元件9连接,从而形成超声波流量计本体。 使用用于操作超声波流量计主体的测量电路测量流量。 用于流量计主体7的PFA管的内表面的平均表面粗糙度(Ra)为160mm。
    • 3. 发明专利
    • Grinding tool
    • 研磨工具
    • JP2013031887A
    • 2013-02-14
    • JP2009284510
    • 2009-11-25
    • Kazumasa Onishi一正 大西
    • ONISHI KAZUMASA
    • B24B1/04B24D7/00
    • B24B1/04B24B41/0475
    • PROBLEM TO BE SOLVED: To provide a grinding tool of small grinding resistance which hardly generates partial abrasion.SOLUTION: In the grinding tool 1, a connecting part 3 of a disk-like grinding wheel mounting plate is connected to a support plate 10 vertically fixed to a rotary shaft 8 at a lower end of the rotary shaft 8 with an unillustrated bolt. The grinding wheel mounting plate 2 has the connecting part 3 of a ring form to connect a grinding wheel holding part 4 of a ring form for holding the grinding wheel 5 with the support plate 10. A disk-like ultrasonic oscillator 7 is adhered on an upper surface of the grinding wheel mounting plate 2 at a center thereof with an epoxy resin. For instance, the connecting part 3 of the grinding wheel mounting plate is fixed to the support plate 10 with the unillustrated bolt. The grinding wheel mounting plate 2 has the grinding wheel holding part 4 of the ring form. A peripheral groove 6 is formed on the lower surface of the grinding wheel holding part 4. The grinding wheel 5 is fitted and fixed to the peripheral groove 6.
    • 要解决的问题:提供几乎不产生部分磨损的耐磨性小的研磨工具。 解决方案:在研磨工具1中,盘状砂轮安装板的连接部分3连接到在未图示的旋转轴8的下端垂直固定到旋转轴8的支撑板10上 螺栓。 砂轮安装板2具有环形连接部3,以将用于将砂轮5保持在支撑板10上的环形轮的砂轮保持部4连接。盘状超声波振子7粘附在 砂轮安装板2在其中心处具有环氧树脂的上表面。 例如,砂轮安装板的连接部3用未图示的螺栓固定在支承板10上。 砂轮安装板2具有环形砂轮保持部4。 在砂轮保持部4的下表面上形成有周缘槽6.砂轮5嵌合并固定在周缘槽6上。(C)2013,JPO&INPIT
    • 4. 发明专利
    • Ultrasonic flowmeter
    • 超声波流量计
    • JP2012230095A
    • 2012-11-22
    • JP2011110817
    • 2011-04-25
    • Kazumasa Onishi一正 大西
    • ONISHI KAZUMASA
    • G01F1/66
    • PROBLEM TO BE SOLVED: To provide an ultrasonic flowmeter having high accuracy of measurement and high safety.SOLUTION: In the ultrasonic flowmeter 1, an inflow part 4 and an outflow part 5 that are pipes made of PFA (a thermoplastic fluorocarbon resin) are attached to piping blocks 6a, 6b also made of PFA by welding. A measurement pipe 2 (outer diameter of 14 mm, inner diameter of 10 mm, and length of 100 mm) made of PFA are welded to the piping blocks 6a, 6b. Furthermore, rectangular composite piezoelectric elements 3a, 3b each having a size of 5.5 mm square and a thickness of 2 mm are joined to respective end faces of the piping blocks 6a, 6b using an epoxy resin.
    • 要解决的问题:提供具有高测量精度和高安全性的超声波流量计。 解决方案:在超声波流量计1中,作为由PFA制成的管(热塑性氟碳树脂)的流入部4和流出部5通过焊接安装在也由PFA制的管道块6a,6b上。 将由PFA制成的测量管2(外径14mm,内径10mm,长度100mm)焊接到管道块6a,6b。 此外,使用环氧树脂将具有5.5mm正方形和2mm厚度的矩形复合压电元件3a,3b接合到管道块6a,6b的各个端面。 版权所有(C)2013,JPO&INPIT
    • 5. 发明专利
    • Coriolis flowmeter
    • CORIOLIS流量计
    • JP2012220486A
    • 2012-11-12
    • JP2011102196
    • 2011-04-12
    • Kazumasa Onishi一正 大西
    • ONISHI KAZUMASA
    • G01F1/84
    • PROBLEM TO BE SOLVED: To provide a Coriolis flowmeter in which measuring precision is improved and excellent temperature characteristics can be obtained.SOLUTION: A curved Coriolis flowmeter comprises a symmetric surface including a central axis of a flow tube 2 and a symmetric surface being vertical with the central axis of the flow tube 2. A flow passage of the stainless flow tube 2 includes a vertical portion and a horizontal portion. A vibration body 3 has a central axis passing through an intersection of a central axis 7a and a central axis 7b. The vibration body 3 is created by joining a vibration body 3a and a vibration body 3b. The flow tube 2 and the vibration body 3 are joined to a stainless support 6 by welding. The support 6 includes an inflow port 8, an inflow path 9, an outflow path 10, and an outflow port 11 for circulating a fluid.
    • 要解决的问题:提供一种科里奥利流量计,其中提高了测量精度并获得了优异的温度特性。 解决方案:弯曲的科里奥利流量计包括包括流动管2的中心轴线的对称表面和与流量管2的中心轴垂直的对称表面。不锈钢流量管2的流动通道包括垂直 部分和水平部分。 振动体3具有穿过中心轴线7a和中心轴线7b的交叉点的中心轴线。 振动体3通过接合振动体3a和振动体3b产生。 流管2和振动体3通过焊接与不锈钢支架6接合。 支撑件6包括用于使流体循环的流入口8,流入路径9,流出路径10和流出口11。 版权所有(C)2013,JPO&INPIT
    • 6. 发明专利
    • Method and apparatus for compacting silicon powder
    • 用于压制硅粉的方法和装置
    • JP2011201709A
    • 2011-10-13
    • JP2008331394
    • 2008-12-01
    • Kazumasa Onishi一正 大西
    • ONISHI KAZUMASA
    • C01B33/02B28B3/02C02F11/12
    • Y02W10/37
    • PROBLEM TO BE SOLVED: To provide a compacting apparatus for producing a silicon powder compact serving as a raw material for a polycrystalline silicon ingot, and a silicon powder compacting method using the same.SOLUTION: The compacting apparatus 1 comprises a die 4 as a pressurization vessel, an upper punch 2 as a part of a pressure applying unit, and a lower pressurization vessel in which a lower punch 3 and a base 5 are integrated. In the die 4, the upper punch 2 is disposed in an upper part. The upper punch 2 has an organic resin O-ring 6a at the tip. An organic resin O-ring 6b is attached to the lower punch 3. A filtration sheet 13 is disposed on the upper surface of the lower punch 3. In the lower punch 3 and the base 5, four drainage paths 9 are formed and connected to a drain outlet 10. The drain outlet 10 is connected to a water sucking unit. The water sucking unit 7 is composed of a water sucking pipe 11, a suction filtration bottle 12 and an oil rotation vacuum pump 8.
    • 要解决的问题:提供一种用于制造用作多晶硅锭的原料的硅粉末压块的压实装置和使用其的硅粉末压制方法。解决方案:压实装置1包括作为加压的模具4 容器,作为压力施加单元的一部分的上冲头2和下冲头3和底座5相结合的下加压容器。 在模具4中,上冲头2设置在上部。 上冲头2在尖端具有有机树脂O形环6a。 有机树脂O形环6b安装在下冲头3上。在下冲头3的上表面上设置有过滤薄片13.在下冲头3和底座5中,形成有四个排水路径9, 排水口10.排水出口10连接到吸水单元。 吸水单元7由吸水管11,吸滤瓶12和油旋转真空泵8构成。
    • 7. 发明专利
    • Wet press apparatus and method for producing formed compact using the same
    • 湿式压力装置和使用该方法生产成型紧固件的方法
    • JP2011201707A
    • 2011-10-13
    • JP2008210161
    • 2008-07-22
    • Kazumasa Onishi一正 大西
    • ONISHI KAZUMASA
    • C01B33/02B01D33/00B30B9/06B30B9/28
    • PROBLEM TO BE SOLVED: To provide a wet press apparatus for a silicon powder formed compact and a silicon powder compacting method using the same.SOLUTION: The wet press apparatus 1 comprises a die 9, an upper punch 2, a lower punch 3, a base 8, etc. The inside of the die 9 made of steel is lined with a silicon sheet 10. The upper punch 2 comprises a silicon filter 4a at a face which comes in contact with slurry, a stainless filter 5a behind the filter 4a, and a block 6a with a steel drain outlet 7a behind the filter 5a. A fluorocarbon resin O-ring 19a is attached to the block 6a. In the die 9, the lower punch 3 is disposed behind the upper punch 2. The lower punch 3 comprises a silicon filter 4b, a stainless filter 5b behind the filter 4b, and a block 6b with a steel drain outlet 7b behind the filter 5b. A fluorocarbon resin O-ring 19b is attached to the block 6b. A lower press cylinder 13 which vertically slides the lower punch 3 is attached to the backside of the block 6b.
    • 要解决的问题:提供一种用于硅粉末成形体的湿式压制装置和使用该压粉装置的硅粉末压制方法。溶液:湿式压榨装置1包括模具9,上冲头2,下冲头3, 基座8等。由钢制成的模具9的内部衬有硅片10.上冲头2包括与浆料接触的面上的硅过滤器4a,过滤器4a后面的不锈钢过滤器5a, 以及在过滤器5a后面具有排水出口7a的块6a。 氟碳树脂O形环19a附接到块6a。 在模具9中,下冲头3设置在上冲头2的后面。下冲头3包括硅过滤器4b,过滤器4b后面的不锈钢过滤器5b,以及在过滤器5b后面具有钢排出口7b的块6b 。 碳块树脂O形环19b安装在块6b上。 将下冲头3垂直滑动的下压缸13安装在块体6b的背面。
    • 8. 发明专利
    • Method and apparatus for producing sapphire single crystal block
    • 用于生产SAPPHIRE单晶块的方法和装置
    • JP2011110929A
    • 2011-06-09
    • JP2009284511
    • 2009-11-25
    • Kazumasa Onishi一正 大西
    • ONISHI KAZUMASA
    • B28D5/04
    • PROBLEM TO BE SOLVED: To provide a working method piercing a sapphire single crystal ingot with high efficiency and high accuracy using a core bit.
      SOLUTION: In an ultrasonic core bit 1, the core bit 2 is joined to a circumferential groove of a holding part 4 of a core bit mounting plate 3 made of steel. The core bit mounting plate 3 includes a supporting part 5. The supporting part 5 is joined to a supporting plate 7 by bolts not shown. Also, the supporting plate 7 includes a supporting plate shaft 8. Further, the core bit mounting plate 3, the holding part 4 and the supporting part 5 form an integrated steel structure. Through-holes 16a, 16b are arranged in the supporting plate shaft 8 and a bolt 15 joining the supporting plate 7 and the supporting plate shaft 8.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供使用芯钻头以高效率和高精度刺穿蓝宝石单晶锭的工作方法。 解决方案:在超声波芯钻头1中,芯钻头2与由钢制的芯钻头安装板3的保持部分4的周向槽连接。 芯钻头安装板3包括支撑部分5.支撑部分5通过未示出的螺栓连接到支撑板7。 此外,支撑板7包括支撑板轴8.此外,芯钻头安装板3,保持部4和支撑部5形成一体的钢结构。 通孔16a,16b布置在支撑板轴8和连接支撑板7和支撑板轴8的螺栓15.版权所有(C)2011,JPO&INPIT
    • 9. 发明专利
    • Ultrasonic rotary working machine
    • 超声波旋转工作机
    • JP2010240745A
    • 2010-10-28
    • JP2007233334
    • 2007-08-13
    • Kazumasa Onishi一正 大西
    • ONISHI KAZUMASA
    • B23B1/00B23B31/117B23B31/20B24B1/04
    • B24B1/04B23B31/202B23B37/00B23B2270/10
    • PROBLEM TO BE SOLVED: To provide an ultrasonic rotary working machine with high working accuracy and reliability.
      SOLUTION: Voltage for exciting ultrasonic vibration of a desired vibration mode on a rotary tool 6 is applied to a cylindrical piezoelectric ceramic 12 joined with the rotary tool 6 to ultrasonically vibrate the rotary tool 6. To prevent the ultrasonic vibration from propagating to other than the rotary tool 6 to the extent possible, a tool holder 9 for carrying the rotary tool 6 is structured to prevent the ultrasonic vibration of the rotary tool 6 from propagating. To do so, numerous holes are made on the tool holder 9, and effects of the holes cause the ultrasonic vibration from the rotary tool 6 to be reflected or refracted, and the vibration to be propagated to a chucking device is reduced. Therefore, the ultrasonic vibration can be efficiently excited on the rotary tool 6.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供具有高加工精度和可靠性的超声波旋转加工机。 解决方案:将旋转工具6上所需振动模式的超声波振动的电压施加到与旋转工具6连接的圆柱形压电陶瓷12上,以使旋转工具6超声振动。为了防止超声波振动传播到 除了旋转工具6之外,用于承载旋转工具6的工具架9被构造成防止旋转工具6的超声波振动传播。 为此,在工具架9上形成许多孔,并且孔的作用引起来自旋转工具6的超声波振动被反射或折射,并且传播到夹紧装置的振动减小。 因此,可以在旋转工具6上有效地激发超声波振动。版权所有(C)2011,JPO&INPIT
    • 10. 发明专利
    • Method of deliquoring and molding organic matter, and apparatus for deliquoring and molding organic matter
    • 脱色和成型有机物的方法,以及脱模和成型有机物的设备
    • JP2010137211A
    • 2010-06-24
    • JP2008335979
    • 2008-12-09
    • Kazumasa Onishi一正 大西
    • ONISHI KAZUMASA
    • B09B3/00C02F11/00C02F11/12
    • Y02W30/58
    • PROBLEM TO BE SOLVED: To provide an apparatus for deliquoring and molding organic matter separating it into liquid and molded matter, and a method of deliquoring and molding using the same. SOLUTION: The molding apparatus 1 includes a die 4 serving as a pressurizing vessel, an upper punch 2 of one part of a pressure applying device, and a lower pressurizing vessel formed by integrating a lower punch 3 with a base 5. The upper punch 2 is disposed at the upper part of the die 4. The upper punch 2 has an organic resin O-ring 6a at its end. An organic resin O-ring 6b is attached to the lower punch 3. A filtering plate 13 is placed on an upper face of the lower punch 3. Four liquid discharge paths 9 are formed in the lower punch 3 and base 5, and connected to a drain port 10, the drain port 10 being connected to a liquid suction device. The liquid suction device 7 is constituted with a liquid suction pipe 12, a suction filtration bottle 12 and an oil rotary type vacuum pump 8. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种用于使其分离成液体和成型物质的有机物的脱模和成型装置,以及使用其进行脱模和成型的方法。 解决方案:成型装置1包括用作​​加压容器的模具4,一部分压力施加装置的上冲头2和通过将下冲头3与底座5整合而形成的下加压容器。 上冲头2设置在模具4的上部。上冲头2的端部具有有机树脂O形环6a。 有机树脂O形环6b安装在下冲头3上。过滤板13放置在下冲头3的上表面上。四个液体排出通道9形成在下冲头3和底部5中,并连接到 排水口10,排水口10连接到液体抽吸装置。 液体吸入装置7由液体吸入管12,吸滤瓶12和油旋转式真空泵8构成。版权所有(C)2010,JPO&INPIT