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    • 4. 发明授权
    • Electrolytic test machine
    • 电解试验机
    • US6080293A
    • 2000-06-27
    • US876094
    • 1997-06-10
    • Toshihiro TakeuchiTadashi ImanakaShigeru AkutsuKeiji KiuchiYoshio Takada
    • Toshihiro TakeuchiTadashi ImanakaShigeru AkutsuKeiji KiuchiYoshio Takada
    • G01N27/26G01N17/02G01N27/28G01N27/42
    • G01N27/42G01N17/02
    • An electrolytic test machine is used for a corrosion resistance test for a test material comprised of a metal blank and a coating film. The electrolytic test machine is constructed so that an adverse influence, due to chlorine gas generated during a test, can be inhibited. The electrolytic test machine includes an electrolytic cell in which an aqueous solution of NaCl is stored so that a test material is immersed in the aqueous solution of NaCl. An electrode is immersed in the aqueous solution of NaCl. A DC power source supplies electric current between the electrode and the test material. A chlorine gas treating device collects chlorine gas which is generated with electrolysis of the aqueous solution of NaCl and which is released out of the aqueous solution of NaCl along with the aqueous solution of NaCl. The chlorine gas treating device includes a treating pipe line, a suction pump mounted on the treating pipe line, and a chlorine gas purifying member.
    • 电解试验机用于由金属坯料和涂膜组成的试验材料的耐腐蚀试验。 电解试验机的构造使得可以抑制在试验期间产生的氯气产生的不利影响。 电解试验机包括其中储存NaCl水溶液使得试验材料浸入NaCl水溶液中的电解池。 将电极浸入NaCl的水溶液中。 直流电源在电极和测试材料之间提供电流。 氯气处理装置收集氯化水溶液中产生的氯气,氯气与NaCl水溶液一起从NaCl水溶液中释放出来。 氯气处理装置包括处理管线,安装在处理管线上的抽吸泵和氯气净化部件。
    • 6. 再颁专利
    • Recording/reproducing separation type magnetic head
    • 记录/再现分离式磁头
    • USRE37785E1
    • 2002-07-09
    • US09598770
    • 2000-06-20
    • Yukio SasadaTadashi ImanakaHiroaki KoyanagiFumiomi Ueda
    • Yukio SasadaTadashi ImanakaHiroaki KoyanagiFumiomi Ueda
    • G11B560
    • G11B5/4853G11B5/17G11B5/3103G11B5/3116G11B5/313G11B5/3967G11B5/486G11B33/122
    • A slider including a recording and reproducing separation type magnetic head includes that a proximal end of a first lead-out conductor is connected to a proximal end of a central winding portion of a coil sued for record, a distal end of the first lead-out conductor is connected to one terminal used for the record; a proximal end of second lead-out conductor is connected to a proximal end of the winding coil, and extended to an opposite direction against the first lead-out conductor along the upper surface of the slider, a distal end of the second lead-out conductor is connected to another terminal used for the recording device; a proximal end of a third lead-out conductor is connected to a reproducing device; a proximal end of a fourth lead-out conductor is connected to the reproducing device; the third lead-out conductor is extended along an air bearing surface of the slider in a lateral direction; the fourth lead-out conductor is extended along the air bearing surface of the slider in a direction opposite to the lateral direction; and the respective distal ends of the third and fourth lead-out conductors are connected to one and another terminals for the reproduction, making such an integrated circuit and the like connected to the terminals to be readily standardized and racking an electrode for a reproducing device short.
    • 包括记录和再现分离型磁头的滑块包括:第一引出导体的近端连接到被记录的线圈的中心绕组部分的近端,第一引出线的远端 导体连接到用于记录的一个端子; 第二引出导体的近端连接到绕组线圈的近端,并且沿着滑块的上表面延伸到与第一引出导体相反的方向,第二引出线的远端 导体连接到用于记录装置的另一端子; 第三引出导体的近端连接到再现装置; 第四引出导体的近端连接到再现装置; 第三引出导体沿着滑块的空气轴承表面沿横向方向延伸; 第四引出导体沿着与横向方向相反的方向沿着滑块的空气轴承表面延伸; 并且第三和第四引出导体的各个远端连接到一个和另一个端子用于再现,使得这样的集成电路等连接到端子以便容易地标准化并且用于再现用于再现装置的电极 。
    • 10. 发明授权
    • Electric anticorrosion method and apparatus
    • 电防腐方法及装置
    • US6024861A
    • 2000-02-15
    • US147410
    • 1998-12-18
    • Toshihiro TakeuchiTadashi Imanaka
    • Toshihiro TakeuchiTadashi Imanaka
    • B63B59/04C23F13/00C23F13/02
    • C23F13/00C23F13/04
    • In an electrically corrosion-proofing process in which the polarity of a metal member having a coating film is set at negative, the duration of setting the polarity of the metal member immersed in an aqueous solution of NaCl at negative is made discontinuous, and a positive-set duration in which the polarity of the metal member is set at positive, is interposed between a proceeding negative-set duration and a succeeding negative-set duration. The switching-over of the polarity is carried out by a polarity switch-over relay between the metal member and a DC power source. In the negative-set duration, the treatment for corrosion-proofing of the metal member is carried out, but the peeling-off of the coating film from a starting point provided by a damaged portion is produced. In the positive-set duration, an electrolytic product is produced in an exposed portion of the metal member, and the peeling-off of the coating film in the next negative-set duration is prevented by the electrolytic product. Thus, it is possible to carry out the corrosion-proofing treatment of the metal member having the coating film and to inhibit the peeling-off of the coating film by the corrosion-proofing.
    • PCT No.PCT / JP97 / 02318 Sec。 371 1998年12月18日第 102(e)1998年12月18日日期PCT 1997年7月3日PCT公布。 公开号WO98 / 01603 日期1998年1月15日在具有涂膜的金属构件的极性设定为负的电气防腐蚀方法中,将浸渍在NaCl水溶液中的金属构件的极性设定为负的持续时间 不连续,并且将金属构件的极性设定为正的正设定持续时间介于进行负设定持续时间和后续负设定持续时间之间。 极性的切换由金属构件和直流电源之间的极性切换继电器进行。 在负设定的持续时间内,进行金属构件的防腐处理,但是产生从受损部分提供的起点剥离涂膜。 在正设定的持续时间内,在金属部件的露出部分中产生电解产物,并且通过电解产物防止在下一个负设定持续时间内的涂膜的剥离。 因此,可以进行具有涂膜的金属构件的防腐处理,并且通过防腐蚀来抑制涂膜的剥离。