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    • 1. 发明专利
    • Solution exchanging device and exchanging method
    • 解决方案交换设备和交换方法
    • JP2008275295A
    • 2008-11-13
    • JP2007146130
    • 2007-05-01
    • Masatomo MatsuoShigeto MatsuoTakuya MatsuoAkiko Sakai拓也 松尾栄人 松尾雅智 松尾亜希子 酒井
    • MATSUO SHIGETOMATSUO TAKUYAMATSUO MASATOMOSAKAI AKIKO
    • F28F25/00
    • PROBLEM TO BE SOLVED: To solve the problem wherein, in a liquid desiccant device, energy saving is performed by a solution-exchanging heat exchanger for performing heat exchange between a high temperature concentrated solution and a low temperature dilute solution, but as in the conventional liquid desiccant device, because the amount of a solution and time for the solution to pass through the solution-exchanging heat exchanger of the thick solution and the dilute solution are not controlled, the time that the amounts of the concentrated liquid and the dilute liquid passing through the solution-exchanging heat exchanger are different is long, the exchanged heat amount is small, and the saved energy is small; and to solve the problem wherein the solution becomes diluted as the solution amount in a solution tank of a processor is increased by moisture absorbed by the processor, and moisture absorbing function is deteriorated.
      SOLUTION: As a means for solving the two problems, the pump rotational speeds of the concentrated solution and the dilute solution are controlled, or the pump rotational speed or a valve is controlled so that the feed amount of the dilute solution is increased to the absorbed moisture amount or more by the valve provided in a solution-exchanging conduit line.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 解决的问题为了解决在液体干燥装置中,通过用于进行高温浓缩液和低温稀释溶液之间的热交换的溶液交换热交换器进行节能,但是作为 在传统的液体干燥装置中,由于不能控制溶液通过溶液和稀溶液的溶液交换热交换器的溶液量和时间,所以浓缩液体和 通过溶液交换热交换器的稀液体长短不一,交换热量小,能量消耗小; 并且解决了当处理器的溶液罐中的溶液量被处理器吸收的水分增加时溶液变稀的问题,并且吸湿功能劣化。 解决方案:作为解决这两个问题的手段,控制浓溶液和稀溶液的泵转速,或者控制泵转速或阀,使稀溶液的进料量增加 通过设置在溶液交换管线中的阀的吸收水分量或更多。 版权所有(C)2009,JPO&INPIT
    • 3. 发明专利
    • Instant cooling type beverage dispenser
    • 即时冷却型饮料分配器
    • JP2006021825A
    • 2006-01-26
    • JP2004228714
    • 2004-07-07
    • Matsuo MasatomoShigeto MatsuoTakuya MatsuoSakai Akiko拓也 松尾栄人 松尾松尾 雅智酒井 亜希子
    • MATSUO SHIGETOMATSUO TAKUYA
    • B67D1/08
    • PROBLEM TO BE SOLVED: To solve the problem that an instant cooling type beverage dispenser, employing a type wherein water is cooled with a low-temperature cooling medium generated by a refrigerator to cool a beverage with the spiral arrangement of a cooling medium cooling pipe and a beverage cooling pipe in a cooling water tank, causes various components remaining and accumulated in the beverage cooling pipeline to be sometimes deteriorated and decomposed to deteriorate smell and taste of the beverage, and prompts to consider various cleaning methods to prevent them, and that its perfect cleaning is difficult by any methods and needs a long time.
      SOLUTION: This beverage dispenser is constituted so that it is formed by dividing it into a beverage cooling instrument main part for forming a beverage flow path and a plate-like lid, to make disassembling and assembling able to facilitate cleaning.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 解决问题的方案为了解决即将冷却型饮料分配器的问题,即使用由冷藏室产生的低温冷却介质来冷却水的类型的冷却型饮料分配器,其中冷却介质的螺旋布置来冷却饮料 在冷却水箱中的冷却管和饮料冷却管,使得饮料冷却管道中残留和积聚的各种成分有时劣化并分解,从而劣化饮料的气味和味道,并提示考虑各种清洗方法以防止它们, 并且通过任何方法和需要很长时间,其完美的清洁是困难的。 解决方案:该饮料分配​​器构成为通过将饮料分配器分成饮料冷却装置主要部分来形成饮料流动路径和板状盖而形成,以进行拆卸和组装以便于清洁。 版权所有(C)2006,JPO&NCIPI
    • 4. 发明专利
    • Bicycle handle provided with lock function
    • 自行车手柄提供锁定功能
    • JP2005125984A
    • 2005-05-19
    • JP2003365508
    • 2003-10-27
    • Takuya Matsuo拓弥 松尾
    • MATSUO TAKUYA
    • B62K21/12B62H5/00
    • PROBLEM TO BE SOLVED: To provide a strong lock device with high anti-theft effect without causing excessive increase of weight.
      SOLUTION: The strong lock device is provided with a handle bar 1 having an integral structure made to a C shape in viewing from an upper surface and having both ends of a rod-like handle forwardly bent and projected; and a rod-like lock bar 2 for closing an opened part of the C shape. The handle bar and the lock bar are integrated at locking and takes an annular structure with no break part. The handle bar is separated from a handle shaft 6 of a bicycle body. Thereby, a part of the bicycle is tightened to an external structure object such as a pillar similarly to a conventional ring-like wire lock to carry out locking.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供具有高防盗效果的强力锁​​定装置,而不会引起重量的过度增加。 解决方案:强力装置设有手柄1,该手柄1具有从上表面观察而形成为C形的一体结构,并且具有向前弯曲和突出的杆状手柄的两端; 以及用于封闭C形开口部分的杆状锁杆2。 把手杆和锁杆集成在锁定中,并且具有没有断裂部分的环形结构。 把手杆与自行车主体的手柄轴6分离。 因此,与常规的环状线锁相似,自行车的一部分被紧固到诸如支柱的外部结构物体上以执行锁定。 版权所有(C)2005,JPO&NCIPI
    • 5. 发明专利
    • Switching type liquid desiccant apparatus
    • 开关式液体吸附装置
    • JP2009287911A
    • 2009-12-10
    • JP2008163809
    • 2008-05-27
    • Shigeto MatsuoTakuya MatsuoAkiko Sakai拓也 松尾栄人 松尾亜希子 酒井
    • MATSUO SHIGETOMATSUO TAKUYASAKAI AKIKO
    • F24F3/14
    • PROBLEM TO BE SOLVED: To solve a problem that heating and cooling is switched by a four-way valve provided at an inlet/outlet of a refrigerant compressor in a liquid desiccant air conditioner controlling the temperature and humidity of indoor air and in a dehumidifying-heating time, a high temperature refrigerant is supplied to a regenerator side heat exchanger to heat a solution, then passes through an expansion valve to become low in temperature, and enters a processor side heat exchanger to cool the solution, and at this time, if it is set to form the counterflow of the refrigerant and solution, the refrigerant flows in a reverse direction in a humidifying-heating time to form the parallel flow of the refrigerant and solution in a heat exchanger, thereby lowing the heat exchange efficiency.
      SOLUTION: Solution piping is provided with a selector valve to switch the flow of the solution to/form the counterflow of the refrigerant and solution in the heat exchanger.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了解决设置在制冷剂压缩机的入口/出口处的四通阀在控制室内空气的温度和湿度的液体干燥剂空调中切换的问题,并且 除湿加热时间后,向再生器侧热交换器供给高温制冷剂以加热溶液,然后通过膨胀阀变为低温,进入处理器侧热交换器以冷却溶液,在此 时间,如果设定为形成制冷剂和溶液的逆流,则制冷剂在加湿加热时间相反地流动,以在热交换器中形成制冷剂和溶液的平行流动,从而降低热交换效率 。 解决方案:解决方案管道设置有选择阀,以将溶液的流动切换到/形成热交换器中的制冷剂和溶液的逆流。 版权所有(C)2010,JPO&INPIT
    • 7. 发明专利
    • Regenerative heat exchanger
    • 再生热交换器
    • JP2006098035A
    • 2006-04-13
    • JP2004311534
    • 2004-09-28
    • Masatomo MatsuoShigeto MatsuoTakuya MatsuoAkiko Sakai拓也 松尾栄人 松尾雅智 松尾亜希子 酒井
    • MATSUO SHIGETOMATSUO TAKUYAMATSUO MASATOMOSAKAI AKIKO
    • F28D9/00F02C7/08F28F3/08
    • PROBLEM TO BE SOLVED: To solve a problem wherein a technique is applied limitedly only to mass production because of depreciating an inexpensive molding die and facility, in a regenerative heat exchanger of a small gas turbine using a primary surface and a brazed plate and fin of complicated shapes, and joined by welding a blade manufactured by press work using the expensive molding die, and a problem wherein scroll and wiring are required for connecting a turbine and a compressor, when using a general quadrangular heat exchanger installed separately, to make size reduction difficult, since a useless space space is generated on a circumference in a heat exchanger arranged on the circumference with a plurality of rectangular heat exchangers using a general fin.
      SOLUTION: A V-shaped flow passage is formed by joining a wave-formed plate developed on the circumference with cylinders in inner and outer circumferences, and continuous rectangular fins are inserted into the flow passage in the plate to be joined to the plate.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 解决的问题为了解决由于贬低廉价的成型模具和设备而将技术局限于大量生产的问题,在使用主表面和钎焊板的小型燃气轮机的再生式热交换器中 以及复杂形状的翅片,并且通过使用昂贵的模具焊接通过冲压加工制造的刀片而接合,以及当使用分开安装的一般四边形热交换器时需要用于连接涡轮机和压缩机的涡旋和布线的问题, 由于在使用一般翅片的多个矩形热交换器的周围配置的热交换器的周围产生无用的空间,因此难以减小尺寸。 解决方案:通过将在圆周上形成的波形板与内圆周和圆周中的圆柱体接合形成V形流动通道,并且将连续的矩形翅片插入待接合的板中的流动通道 盘子。 版权所有(C)2006,JPO&NCIPI
    • 8. 发明专利
    • Instant cooling type beverage dispenser
    • 即时冷却型饮料分配器
    • JP2006021824A
    • 2006-01-26
    • JP2004228713
    • 2004-07-07
    • Matsuo MasatomoShigeto MatsuoTakuya MatsuoSakai Akiko拓也 松尾栄人 松尾松尾 雅智酒井 亜希子
    • MATSUO SHIGETOMATSUO TAKUYA
    • B67D1/08
    • PROBLEM TO BE SOLVED: To solve the problem that an instant cooling type beverage dispenser keeps a beverage cooled by a spiral beverage cooling pipeline by using a water in a cooling tank cooled with a low-temperature cooling medium generated by a refrigerator as an intermediate cooling medium, causes various components remaining and accumulated in the beverage cooling pipeline to be deteriorated and decomposed to sometimes deteriorate smell and taste of the beverage, and therefore, prompts to consider various cleaning methods to prevent them, and that its perfect cleaning is difficult by any methods and accordingly, needs a long time.
      SOLUTION: This beverage dispenser is formed by dividing a beverage cooling instrument into a beverage cooling instrument main part forming a beverage channel and a plate-like lid, to facilitate disassembling and assembling and it is constituted so that the beverage cooling instrument can be surely cleaned in a short time without any special hardware.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题为了解决即时冷却型饮料分配器通过使用在由冰箱产生的低温冷却介质冷却的冷却槽中的水来保持饮料冷却管道冷却的饮料的问题, 中间冷却介质使得饮料冷却管道中残留和积聚的各种成分劣化并分解,有时会降低饮料的气味和味道,因此提示考虑各种清洗方法以防止它们,并且其完美的清洁是 由于任何方法难以做到,所以需要很长时间。 解决方案:该饮料分配​​器通过将饮料冷却装置分成形成饮料通道和板状盖的饮料冷却装置主要部件而形成,以便于拆卸和组装,并且其构成使得饮料冷却装置能够 确保在短时间内清洁,无需任何特殊的硬件。 版权所有(C)2006,JPO&NCIPI
    • 9. 发明专利
    • Collapsible bicycle by four-point pivot
    • 可折叠自行车由四点派生
    • JP2005349846A
    • 2005-12-22
    • JP2004169303
    • 2004-06-08
    • Takuya Matsuo拓弥 松尾
    • MATSUO TAKUYA
    • B62K15/00
    • PROBLEM TO BE SOLVED: To provide a collapsible bicycle which can be folded into a long and thin simple shape, and also, is excellent in travel performance as well.
      SOLUTION: In this collapsible bicycle, the frame of the bicycle is constituted by combining frame tubes 1 to 4 into a parallelogram, and at the time of folding, by a shaft 1a, a shaft 4a, a flange 1b, and a flange 4b which are located at respective apexes of the parallelogram, those four frame tubes slide and rotate (Figures 7 to 9) (not shown in the figure), and the collapsible bicycle is formed into the long and thin simple shape. By forming the parallelogram frame, the twisting rigidity is increased compared with a conventional collapsible bicycle for which the frame central section is carried by one piece of a pipe, and force at the time of pedaling is made hard to escape. In addition, by devising the angles of the frame tubes 1 to 4, the degree of freedom for the position or the adjustments of parts which determine the riding posture such as a saddle, a handle, or pedals are made equivalent to that of a mountain bike.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供可折叠成长而薄的简单形状的可折叠自行车,并且还具有优异的行驶性能。 解决方案:在这种可折叠的自行车中,自行车的框架通过将框架管1至4组合成平行四边形而构成,并且在折叠时由轴1a,轴4a,凸缘1b和 凸缘4b位于平行四边形的相应顶点处,这四个框架管滑动并旋转(图7至9)(图中未示出),并且可折叠自行车形成为长而薄的简单形状。 通过形成平行四边形框架,与通过一个管道承载框架中心部分的常规可折叠自行车相比,扭转刚度增加,并且踏脚踏板时的力难以逸出。 此外,通过设计框架管1至4的角度,确定了确定诸如鞍座,手柄或踏板的骑乘姿势的部件的位置的自由度或调节自由度等于山 自行车。 版权所有(C)2006,JPO&NCIPI
    • 10. 发明专利
    • Exhaust heat recovering refrigeration air conditioning system
    • 排气热回收制冷空调系统
    • JP2005345084A
    • 2005-12-15
    • JP2004196102
    • 2004-06-04
    • Matsuo MasatomoShigeto MatsuoTakuya MatsuoSakai Akiko拓也 松尾栄人 松尾松尾 雅智酒井 亜希子
    • MATSUO SHIGETOMATSUO TAKUYA
    • F01N5/02B60H1/32F01K23/10F02G5/04F25B27/02
    • Y02A30/274Y02E20/14Y02T10/16Y02T10/166
    • PROBLEM TO BE SOLVED: To save the energy, to reduce exhaust pollution (in particular, emission of CO2), to improve the efficiency of a heat recovering system and a using system of small scale, to simplify a structure, to reduce the cost and to control the balance of energy and quantity of medium.
      SOLUTION: The refrigerant capable of being used at a comparatively low temperature is evaporated by an evaporator by exhaust heat of a main engine, and a turbine is driven by utilizing the energy to drive a compressor directly connected with the turbine. The refrigerant vapor flowing out from the turbine is condensed by a condenser, and the liquefied refrigerant is pressurized by a pump and sent to the evaporator. The air-cooling system or a water-cooling system having a structure similar as a conventional radiator is applied in cooling the condenser. The power generator motor is mounted on the same axis directly connecting the turbine and the compressor to adjust the output. Further to highly adjust the output, a pressure-regulating valve is mounted at least at an inlet of the turbine or an inlet of the compressor.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了节约能源,减少废气污染(特别是二氧化碳排放),提高热回收系统和小规模使用系统的效率,简化结构,减少 成本和控制能量和媒体数量的平衡。 解决方案:能够在较低温度下使用的制冷剂由蒸发器通过主发动机的排气蒸发,并且通过利用能量来驱动与涡轮机直接连接的压缩机的涡轮机来驱动涡轮机。 从涡轮机流出的制冷剂蒸气由冷凝器冷凝,液化的制冷剂被泵加压并送到蒸发器。 将冷却系统或具有类似于常规散热器的结构的水冷却系统应用于冷凝冷凝器。 发电机电机安装在直接连接涡轮机和压缩机的同一轴线上,以调节输出。 除了高度调节输出外,压力调节阀至少安装在涡轮机的入口处或压缩机的入口处。 版权所有(C)2006,JPO&NCIPI