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    • 1. 发明专利
    • Method and device for modifying surface by applying inorganic material to base material
    • 通过将无机材料应用于基材来修饰表面的方法和装置
    • JP2012126956A
    • 2012-07-05
    • JP2010278907
    • 2010-12-15
    • Nm:KkUniv Of Fukui国立大学法人福井大学株式会社エヌエム
    • IWAI YOSHIROOTA TAKESHIITO SHIGEOMORI NAOMICHI
    • C25D13/02C23C14/32C23C24/00C23C24/04
    • PROBLEM TO BE SOLVED: To provide a method and a device for modifying a surface capable of modifying the surface of a base material which consists of various materials.SOLUTION: In the method, particles containing an inorganic material eluted from ceramics are electrified by electrolyzing a treatment solution 3 in which the particles are formed. Then, the particles are applied to the surface of the base material 1 and dried so that the inorganic material is fixed thereto. The surface of the base material 1 fixed with the inorganic material is reformed to provide various properties such as hydrophilicity, an antifouling property, and an antireflection property. For example, boric acid silica water is electrolyzed and electrodeposited to a surface of a stainless steel plate, and then the inorganic material such as silica or the like is fixed thereto, so that the surface is reformed to have the hydrophilicity and antifouling property.
    • 要解决的问题:提供一种用于改变能够改变由各种材料构成的基材的表面的表面的方法和装置。 解决方案:在该方法中,通过电解形成颗粒的处理溶液3,使从陶瓷洗脱出的含有无机材料的颗粒通电。 然后,将该颗粒施加到基材1的表面,并干燥,使无机材料固定在基材1上。 用无机材料固定的基材1的表面进行重整以提供亲水性,防污性和抗反射性等各种性能。 例如,将硼酸二氧化硅水电解并电沉积到不锈钢板的表面,然后将诸如二氧化硅等的无机材料固定在其上,使得表面被重整以具有亲水性和防污性。 版权所有(C)2012,JPO&INPIT
    • 4. 发明专利
    • Abrasion sensor with conductive film formed on its surface
    • 具有导电膜的研磨传感器在其表面形成
    • JP2006064487A
    • 2006-03-09
    • JP2004246138
    • 2004-08-26
    • Japan Atom Power Co Ltd:TheUniv Of Fukui国立大学法人福井大学日本原子力発電株式会社
    • IWAI YOSHIROHONDA TOMOKIUNO RYOJIINAGAKI SHIGERU
    • G01B7/00
    • PROBLEM TO BE SOLVED: To provide an abrasion sensor for accurately measuring abrasion loss of a slide part in stages.
      SOLUTION: This abrasion sensor for detecting abrasion of a sliding surface of a component member of an industrial machine is equipped with an end part equipped with a plurality of step parts 20a to 20e of insulating material having steps different in height from each other and conductive film parts 51a to 51e formed on the surfaces of the plurality of step parts 20a to 20e. This sensor is characterized by including a body part 2 fixable to the component member so as to cause an end surface 2a of the end part to be flush with a sliding surface of the component member, and worn away in stages starting from step parts closer to the sliding surface among the plurality of step parts 20a to 20e in concurrence with the wear of the component member.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种用于准确测量滑动部件的磨损量的磨损传感器。 解决方案:用于检测工业机器的部件的滑动表面的磨损的该磨损传感器配备有端部,该端部配备有具有彼此高度不同高度的绝缘材料的多个台阶部20a至20e 以及形成在多个台阶部20a〜20e的表面上的导电膜部51a〜51e。 该传感器的特征在于,包括能够固定到部件上的主体部分2,以使端部的端面2a与部件的滑动面齐平,并从阶梯部分开始磨损 多个台阶部20a〜20e中的滑动面与部件的磨损一致。 版权所有(C)2006,JPO&NCIPI
    • 5. 发明专利
    • Sliding material
    • 滑动材料
    • JP2006057642A
    • 2006-03-02
    • JP2004236902
    • 2004-08-17
    • Univ Of Fukui国立大学法人福井大学
    • IWAI YOSHIROHONDA TOMOKIYONEZAWA SUSUMUMINAMI NAOKI
    • F16C33/12F16C33/20
    • PROBLEM TO BE SOLVED: To provide a sliding material having characteristics where metal and resin are well-balancedly and stably dispersed.
      SOLUTION: A number of particulates formed with metal coating on the surface of thermoplastic resin by metallic plating are bonded with each other and integrally formed, so that metal is formed inside, having a network shape. The sliding material processed in such a way provides abrasive resistance and electric conductivity, in which metal and resin are well-balancedly and stably dispersed on the sliding surface. The electric conductivity is stably exerted especially by being used for a submerged bearing.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供具有金属和树脂平衡均匀且分散稳定的特征的滑动材料。 解决方案:通过金属电镀在热塑性树脂表面上形成有金属涂层的许多颗粒彼此结合并整体形成,使得内部形成有网状的金属。 以这种方式加工的滑动材料提供耐磨性和导电性,其中金属和树脂在滑动表面上平衡均匀地分散。 特别是通过用于浸没式轴承,电导率稳定。 版权所有(C)2006,JPO&NCIPI
    • 6. 发明专利
    • Abrasion sensor
    • 磨损传感器
    • JP2014002028A
    • 2014-01-09
    • JP2012137209
    • 2012-06-18
    • Univ Of Fukui国立大学法人福井大学
    • IWAI YOSHIROTOUGE MASANORIMIYAJIMA TOSHIRO
    • G01B7/00
    • PROBLEM TO BE SOLVED: To provide an abrasion sensor capable of gradually and accurately measuring an abrasion quantity of a sliding part.SOLUTION: In the abrasion sensor allowed to be fixed so that a tip part is directed to a sliding member of an industrial machine to detect abrasion of the sliding member, a plurality of circuit insulating plates are laminated, one abrasion detecting print line is arranged in each of the plurality of circuit insulating plates, an abrasion detecting print line on a predetermined circuit insulating plate out of the plurality of circuit insulating plates is arranged at a predetermined pitch in a direction vertical to a lamination direction from the tip part of the abrasion sensor against abrasion detecting print lines on the other circuit insulating plates in the plurality of circuit insulating plates, and the abrasion detecting print lines formed on the respective circuit insulating plates are gradually worn successively from an abrasion detecting print line close to the tip part with abrasion of the sliding member.
    • 要解决的问题:提供能够逐渐且准确地测量滑动部件的磨耗量的磨损传感器。解决方案:在允许固定的磨损传感器中,使得尖端部分被引导到工业机器的滑动构件 检测滑动构件的磨损,层叠多个电路绝缘板,在多个电路绝缘板中的每一个中布置有一个磨损检测用打印线,在多个电路中的预定电路绝缘板上的磨损检测用打印线 绝缘板沿着与磨料传感器的前端垂直于层叠方向的方向以预定间距排列在多个电路绝缘板中的其它电路绝缘板上的磨损检测打印线上,并形成磨损检测打印线 各自的电路绝缘板从磨损检测印刷体逐渐磨损 靠近滑动部件磨损的尖端部分。
    • 7. 发明专利
    • Coating evaluation method
    • 涂料评价方法
    • JP2010237073A
    • 2010-10-21
    • JP2009086083
    • 2009-03-31
    • Macoho Co LtdUniv Of Fukuiマコー株式会社国立大学法人福井大学
    • IWAI YOSHIROMIYAJIMA TOSHIROMATSUBARA TORU
    • G01N3/56
    • PROBLEM TO BE SOLVED: To provide an innovative coating evaluation method which demonstrates unconventional action effects.
      SOLUTION: In the method for evaluating the characteristics of a surface coating of a subject 1 such as a metal material and a synthetic resin material, a blast material 4 in which abrasive grains 3 are mixed in a liquid 2 is blasted to the subject 1 with compressed air to reduce the weight of the subject 1. The causal relation between a reduced weight of the subject 1 and the amount of abrasive grains 3 required for the weight reduction is measured to evaluate the characteristics of the surface coating of the subject 1.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种创新的涂层评估方法,其表现出非常规的作用效果。 解决方案:在用于评估诸如金属材料和合成树脂材料的被检体1的表面涂层的特性的方法中,将其中在液体2中混合磨粒3的鼓风材料4喷射到 对象1与压缩空气一起减少对象1的重量。测量对象1的减轻重量与减轻重量所需的磨粒3的量之间的因果关系,以评估对象的表面涂层的特性 1.版权所有(C)2011,JPO&INPIT
    • 8. 发明专利
    • Corrosion resistance evaluation method of coating
    • 耐腐蚀性评估方法
    • JP2007178238A
    • 2007-07-12
    • JP2005376279
    • 2005-12-27
    • Univ Of Fukui国立大学法人福井大学
    • IWAI YOSHIROHONDA TOMOKIYOSHINAGA SHIGEKIKUBOTA YOSHIHIKO
    • G01N17/00G01N3/30
    • PROBLEM TO BE SOLVED: To provide a method capable of evaluating quickly and simply with high reliability corrosion resistance of a coating in various environmental conditions, by measuring susceptibility to individual defective damage causing corrosion in a coating material.
      SOLUTION: An ultrasonic wave generated in an ultrasonic wave generation device 1 is amplified by an amplifying horn 2 and transferred to a disk 3. A test solution 5 is stored in a water tank 4 so that an evaluation substrate 7 has a prescribed depth. The disk 3 is arranged in the immersed state into the test solution over the evaluation substrate 7. When ultrasonic vibration is generated in the test solution 5 by the disk 3, cavitation is generated, and a local impact pressure is applied to a coating 8 formed on the evaluation substrate 7. A broken state (the number of defects, a broken area or the like) starting from a defect existing on the coating 8 is measured, and corrosion resistance is evaluated based on measured data.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种能够在各种环境条件下快速且简单地评价涂层的高可靠性耐腐蚀性的方法,通过测量对涂覆材料中引起腐蚀的各种有害损伤的敏感性。 解决方案:在超声波发生装置1中产生的超声波被放大喇叭2放大并转移到盘3.将测试溶液5储存在水箱4中,使得评估基板7具有规定的 深度。 盘3以浸渍状态配置在评价基板7上的测试溶液中。当通过盘3在测试溶液5中产生超声波振动时,产生气穴,并且对形成的涂层8施加局部冲击压力 测量从涂层8上存在的缺陷开始的断裂状态(缺陷数量,断裂面积等),并根据测量数据评价耐腐蚀性。 版权所有(C)2007,JPO&INPIT
    • 10. 发明专利
    • Wear detection system and wear detection apparatus
    • 磨损检测系统和磨损检测装置
    • JP2013088173A
    • 2013-05-13
    • JP2011226793
    • 2011-10-14
    • Ihi Corp株式会社IhiUniv Of Fukui国立大学法人福井大学
    • BAEK KOAN SOKYOKOYAMA FUMIHIKOIWAI YOSHIROISHIKAWA DAISUKEMIYAJIMA TOSHIRO
    • G01B7/00F16C17/24F16D13/75F16D66/02
    • PROBLEM TO BE SOLVED: To stably fix a wear gauge to a wear side component in a simple configuration and enhance the maintenance ease of the component.SOLUTION: A wear detection system 200 comprises a hole part 210 having an opening toward a sliding face 152a of a wear side component 152; a wear detector 100 that can be inserted into the hole part 210 and detects the wear state of the wear side component 152; and a fixing mechanism 250 that fixes the wear detector 100 to the hole part 210 in a manner that a tip 130 of the wear detector 100 becomes flush with the sliding face 152a of the wear side component 152. The wear detector 100 is configured to include one or a plurality of wear detecting lines 114 composed of an electroconductive material, and the wear detecting line or lines 114 are wired so as to be disconnected by wear of the wear side component 152.
    • 要解决的问题:为了以简单的结构将磨损量稳定地固定在磨损侧部件上,并提高部件的维护容易性。 磨损检测系统200包括:孔部210,其具有朝向磨损侧部件152的滑动面152a的开口; 可以插入到孔部210中并检测磨损侧部件152的磨损状态的磨损检测器100; 以及固定机构250,其将磨损检测器100固定到孔部210,使得磨损检测器100的尖端130与磨损侧部件152的滑动面152a齐平。磨损检测器100被配置为包括 一个或多个由导电材料构成的磨损检测线114和磨损检测线或线114被布线以便通过磨损侧部件152的磨损而断开。(C)2013,JPO和INPIT