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    • 1. 发明专利
    • Coating apparatus and coating method
    • 涂装和涂装方法
    • JP2011005441A
    • 2011-01-13
    • JP2009152657
    • 2009-06-26
    • Kansai Paint Co LtdKansai Paint Hanbai KkShikoku Res Inst Inc株式会社四国総合研究所関西ペイント株式会社関西ペイント販売株式会社
    • NAKAOKA TOYOHITONISHIMORI SHUJIKATO YUJITANIGUCHI YOSHIKAZU
    • B05C17/00B05C11/10B05D1/28
    • PROBLEM TO BE SOLVED: To provide a coating tool capable of coping with a coating material having any viscosity from low to high and improving coating speed, and to provide a coating method using the same.SOLUTION: The coating tool is detachably connected to a supply member 5 to which the coating material is supplied by the work of a compressed gas and is provided with a body having a flow path through which the coating material supplied from the supply member 5 flows, a plurality of discharge nozzles 63a-63c branched from the flow path, and a brush 62 formed by bundling many furs and attached to the body to house the plurality of discharge nozzles 63a-63c branched from the flow path, and is constituted so that the discharge quantity of the coating material from the discharge nozzle 63a farthest from the supply member 5 in the plurality of discharge nozzles 63a-63c is more than the discharge quantity of the coating material from the discharge nozzle 63c nearest to the supply member 5.
    • 要解决的问题:提供一种能够处理从低到高具有任何粘度的涂料的涂布工具,并提高涂布速度,并提供使用该涂料的涂布方法。溶液:涂布工具可拆卸地连接到电源 通过压缩气体的工作供给涂料的构件5设置有从供给构件5供给的涂料流过的流路的主体,从供给构件5供给的涂料流过的多个排出喷嘴63a〜63c, 流动路径以及通过捆扎许多毛皮并附接到主体而形成的刷62,以容纳从流路分支的多个排出喷嘴63a-63c,并且构成为使得来自排出喷嘴63a的涂料的排出量 与多个排出喷嘴63a-63c中的供给部件5最远的排出量比最靠近供给部件5的排出喷嘴63c的涂布材料的排出量多。
    • 2. 发明专利
    • Probe cap and probe
    • 探索CAP和探索
    • JP2013200165A
    • 2013-10-03
    • JP2012067570
    • 2012-03-23
    • Kansai Paint Co Ltd関西ペイント株式会社
    • MORI KENJINAKAOKA TOYOHITO
    • G01N21/01
    • PROBLEM TO BE SOLVED: To provide a probe cap and a probe capable of facilitating accurate inquiry.SOLUTION: A probe cap 1 to be mounted on a probe 10 for inquiring an object to be inquired includes: a cap body 2; a contact face 3 formed at an end portion of the cap body 2; and a light guide path formed inside the cap body 2. The contact face 3 is bent along one direction X, and the light guide path includes an opening part 40 extending to the contact face 3 and opened at the contact face 3, and linearly extends along a normal direction Z of the contact face 3 in the opening part 40.
    • 要解决的问题:提供能够促进准确查询的探针盖和探针。解决方案:安装在探针10上用于询问被查询物体的探针盖1包括:盖体2; 形成在盖主体2的端部的接触面3; 以及形成在盖主体2内的导光路径。接触面3沿着一个方向X弯曲,导光路径包括延伸到接触面3并在接触面3处开口的开口部40,并且线性延伸 沿开口部40的接触面3的法线方向Z。
    • 3. 发明专利
    • Spray gun, coating system
    • 喷枪,涂装系统
    • JP2012086152A
    • 2012-05-10
    • JP2010234850
    • 2010-10-19
    • Kansai Paint Co Ltd関西ペイント株式会社
    • MIKI NOBUHIRONAKAOKA TOYOHITO
    • B05B7/02
    • B05B7/1272B05B7/0815B05B12/1409
    • PROBLEM TO BE SOLVED: To develop a spray gun for easily preventing a tip of a gun from being contaminated with a coating material discharged from a coating material discharge hole after the supply of the coating material is stopped, and to develop a coating system using the spray gun.SOLUTION: In a body including a plurality of coating material flow passages 21 and an air flow passage 22 through which compressed air for atomizing the discharged coating material from the coating material discharge hole at one end of each of the coating material flow passages 21 is supplied, the spray gun 10 provided with an opening and closing valve 40 for opening and closing the coating material flow passages 21 and the coating system constituted using the spray gun 10 are provided.
    • 要解决的问题:为了开发一种喷枪,用于在停止涂覆材料供应之后容易地防止喷枪的尖端被从涂料排出孔排出的涂料污染,并且开发涂层 系统使用喷枪。 解决方案:在包括多个涂覆材料流动通道21和空气流动通道22的主体中,通过该空气流动通道22将每个涂覆材料流动通道的一端处的涂布材料排出孔的排出涂料物质雾化的压缩空气 如图21所示,设置有用于打开和关闭涂料流动通道21的打开和关闭阀40以及使用喷枪10构成的涂覆系统的喷枪10。 版权所有(C)2012,JPO&INPIT
    • 4. 发明专利
    • Apparatus for evaluating airless coating property and method of evaluating airless coating property using the apparatus
    • 用于评估无空气涂料性能的装置和使用装置评估无空气涂料的方法
    • JP2009050799A
    • 2009-03-12
    • JP2007220458
    • 2007-08-28
    • Kansai Paint Co Ltd関西ペイント株式会社
    • MOGI JUNICHINAKAOKA TOYOHITOTAKEUCHI TORU
    • B05C11/00B05D1/02
    • PROBLEM TO BE SOLVED: To provide an apparatus for evaluating airless coating property which quantitatively measures the airless coating property such as a spray pattern of a coating material used for airless coating and the pressure of the coating material and a method of evaluating the airless coating property for evaluating the airless coating property of the coating material based on the quantitative and continuous measurement result.
      SOLUTION: The apparatus for evaluating airless coating property is provided which performs the measurement of the spray pattern of the coating material and the pressure of the coating material, and the apparatus is equipped with: a coating means equipped with a nozzle for spraying the coating material, a cylinder housing the coating material, a piston slidable in the cylinder, a manifold arranged between the nozzle and the cylinder and an actuator to slide the piston in the cylinder; a means for measuring the spray pattern of the coating material sprayed by the coating means; and a means for measuring the pressure of the coating material in the manifold. The method of evaluating the airless coating property using the apparatus is also provided.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种用于评价无空气涂层性能的装置,其定量测量无空气涂层性能,例如用于无空气涂层的涂料的喷涂图案和涂层材料的压力,以及评价 基于定量和连续测量结果评估涂层材料的无空气涂层性能的无空气涂层性能。 < P>解决方案:提供用于评价无空气涂层性能的装置,其执行涂料的喷涂图案和涂料的压力的测量,并且该装置配备有:装备有用于喷涂的喷嘴的涂布装置 所述涂覆材料,容纳所述涂层材料的圆柱体,在所述气缸中可滑动的活塞,布置在所述喷嘴和所述气缸之间的歧管以及用于在所述气缸中滑动所述活塞的致动器; 用于测量由涂布装置喷涂的涂料的喷雾图案的装置; 以及用于测量歧管中的涂层材料的压力的装置。 还提供了使用该装置评估无空气涂层性能的方法。 版权所有(C)2009,JPO&INPIT
    • 5. 发明专利
    • 塗装ヘッド及び塗装装置
    • 涂料头和涂料装置
    • JP2014233650A
    • 2014-12-15
    • JP2013114895
    • 2013-05-31
    • 関西ペイント株式会社Kansai Paint Co Ltd
    • ICHIKAWA AKITONAKAOKA TOYOHITO
    • B05B7/06
    • 【課題】付着塗料を低減することが可能な塗装ヘッド及び塗装装置を提供する。【解決手段】ヘッド本体11から先端部12aが突出したノズル12を複数有する塗装ヘッド10であって、ノズル12は、塗料流路を囲む塗料流路用細管と、この塗料流路用細管の外周に設けられる霧化エア流路を囲む霧化エア流路用細管とを有し、ヘッド本体11からノズル12の先端部12aまでの距離Lが11.8mm以上である。また、塗装装置は、この塗装ヘッド10を有する。【選択図】図1
    • 要解决的问题:提供一种能够减少粘附涂层的涂布头和涂布装置。解决方案:在具有多个喷嘴12的涂覆头10中,其中尖端部分12a从头部主体11突出,喷嘴12具有 用于包围涂层流动通道的涂层流动通道的毛细管和围绕雾化空气流动通道的雾化空气流动通道的毛细管,并设置在用于涂覆流动通道的毛细管的外周。 从头主体11到喷嘴12的前端部12a的距离L为11.8mm以上。 涂覆装置包括涂覆头10。
    • 8. 发明专利
    • METHOD FOR MEASURING pH OF ELECTRODEPOSITION COATING MATERIAL
    • 测定电沉积涂料材料pH值的方法
    • JP2005226090A
    • 2005-08-25
    • JP2004033658
    • 2004-02-10
    • Kansai Paint Co Ltd関西ペイント株式会社
    • SHINDO KENICHINAKAOKA TOYOHITO
    • G01N27/28C25D13/22G01N27/36G01N27/403G01N27/416
    • PROBLEM TO BE SOLVED: To provide a pH measuring method by which an electrodeposition coating material hardly deposits on a reference electrode and a glass electrode even when a pH sensor is installed in a coating line, and the pH can be measured over a long period of time. SOLUTION: The method for measuring the pH of an electrodeposition coating material includes: a stage where an electrodeposition coating material is moved in piping forming a circulation path together with an electrodeposition tank at a flow velocity of 0.01 to 0.7 m/s; and a stage where a pH sensor comprising a composite electrode in which a reference electrode and a glass electrode are integrated is arranged inside the piping, the pH sensor is brought into contact with the electrodeposition coating material, and the pH of the electrodeposition coating material is measured. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供一种pH测量方法,其中即使在涂布线中安装pH传感器,电沉积涂料几乎不沉积在参比电极和玻璃电极上,并且可以通过 很长一段时间 解决方案:电沉积涂料的pH测量方法包括:在0.01〜0.7m / s的流速下,将电沉积涂料在与电沉积槽一起形成循环路的管道中移动的阶段; 并且在配管的内部配置有包含参考电极和玻璃电极一体化的复合电极的pH传感器的阶段,使pH传感器与电沉积涂料接触,电沉积涂料的pH为 测量。 版权所有(C)2005,JPO&NCIPI
    • 9. 发明专利
    • Painting apparatus
    • 绘画设备
    • JP2014012252A
    • 2014-01-23
    • JP2012150536
    • 2012-07-04
    • East Japan Railway Co東日本旅客鉄道株式会社Kansai Paint Co Ltd関西ペイント株式会社
    • NAITO TAKAKAZUTSUYUKI HISASHINAKAOKA TOYOHITOICHIKAWA AKITOSAI KEISUKETAKEUCHI TORU
    • B05B13/04B05B7/06
    • PROBLEM TO BE SOLVED: To provide a painting apparatus capable of easily performing painting of a large structure.SOLUTION: A painting apparatus 10 includes: an apparatus body 11 provided with a painting head 12 for spraying paint 4 from a nozzle 13 to a surface 1 to be painted, to perform painting, and fixed to the surface 1 to be painted; a paint supply device 21 installed outside of the apparatus body 11, for supplying the paint to the nozzle 13; and a hose unit 22 connected from the paint supply device 21 to the painting head 12. The apparatus body 11 includes: a fixing jig 15 for supporting the painting head 12; a pair of running rails 17, 17 arranged parallel to the surface 1 to be painted and parallel with each other; an actuator 16 for driving the fixing jig 15 to reciprocate between the pair of running rails 17, 17; and a fixing part 20 for fixing the pair of running rails 17, 17 to the surface 1 to be painted, so as to be separated from the surface 1 to be painted respectively. Both ends of the actuator 16 are slidable in parallel along the pair of running rails 17, 17.
    • 要解决的问题:提供一种能够容易地进行大型结构的涂装的涂装设备。解决方案:涂装设备10包括:装置主体11,其具有用于从喷嘴13喷射到表面1的涂料4的涂装头12 要涂漆,进行涂漆,并固定在表面1上进行涂漆; 设置在装置主体11的外部的用于将油漆供给到喷嘴13的涂料供给装置21; 以及从涂料供给装置21连接到涂装头12的软管单元22.装置主体11包括:用于支撑涂装头12的固定夹具15; 一对平行于待涂装表面1平行的运行导轨17,17; 用于驱动固定夹具15在一对运行轨道17,17之间往复运动的致动器16; 以及用于将一对运行轨道17,17固定到待涂漆的表面1上以与要被涂漆的表面1分离的固定部分20。 致动器16的两端可沿着一对运行轨道17,17平行滑动。
    • 10. 发明专利
    • Electrochemical measurement probe and corrosion evaluation method
    • 电化学测量探针和腐蚀评估方法
    • JP2013238583A
    • 2013-11-28
    • JP2013019617
    • 2013-02-04
    • Kansai Paint Co Ltd関西ペイント株式会社
    • SAI KEISUKENAKAOKA TOYOHITOMATSUDA HIDEKI
    • G01N27/26G01N17/04
    • PROBLEM TO BE SOLVED: To provide an electrochemical measurement probe and a corrosion evaluation method, which prevent electrolyte from leaking on a non-flat portion and allow for high accuracy measurement.SOLUTION: In the electrochemical measurement probe, a counter electrode 15 and a reference electrode 16 to which DC current is applied are inserted in a probe 1 filled with an electrolyte 14 containing at least sodium chloride, a sponge 13 containing the electrolyte 14 is provided on a tip of the probe 1 to be contacted with a measurement object, and side faces of the sponge 13 are exposed. The sponge 13 preferably has 30% compression stress of 3.0 to 4.7 kPa, a pore diameter of 130 to 200 μm, and a water retention value of 1150 to 1300%. The electrolyte 14 preferably contains a surface active agent, and preferably contains water-soluble polymer and has a viscosity of 30 to 1000 mPa s.
    • 要解决的问题:提供电化学测量探针和腐蚀评估方法,其防止电解液在非平坦部分上泄漏并允许高精度测量。解决方案:在电化学测量探针中,对电极15和参考 将施加有直流电流的电极16插入填充有至少含有氯化钠的电解质14的探针1中,在探针1的与测量对象物接触的前端设有包含电解质14的海绵13, 海绵13的侧面露出。 海绵13优选具有3.0至4.7kPa的30%压缩应力,130至200μm的孔径和1150至1300%的保水值。 电解质14优选含有表面活性剂,优选含有水溶性聚合物,粘度为30〜1000mPa·s。