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    • 71. 发明公开
    • HIGH-STRENGTH TITANIUM ALLOY MEMBER AND PROCESS FOR PRODUCTION THEREOF
    • VERFAHREN ZU SEINER HERSTELLUNG的HOCHFESTES TITANLEGIERUNGSELEMENT
    • EP2607507A4
    • 2015-09-23
    • EP11818260
    • 2011-08-15
    • NHK SPRING CO LTD
    • ARAOKA YUJISHIRAISHI TOHRUONO YOSHIKI
    • C22C1/04B22F1/00B22F3/14B22F3/24B22F9/04C22C14/00C22F1/00C22F1/18C23C8/24
    • C22C14/00B22F1/004B22F1/0081B22F1/0088B22F3/14B22F3/24B22F2003/248C22C47/14C22C49/11C22F1/183C23C8/02C23C8/24C23C8/80
    • A titanium alloy material having high overall strength is produced by applying nitrogen to ±-² type titanium alloys that are widely used. A production method for a titanium alloy member includes preparing a titanium alloy material for sintering as a raw material of a sintered body; nitriding the titanium alloy material for sintering, thereby forming a nitrogen compound layer and/or a nitrogen solid solution layer in a surface layer of the titanium alloy material for sintering and yielding a nitrogen-containing titanium alloy material for sintering; mixing the titanium alloy material for sintering and the nitrogen-containing titanium alloy material for sintering, thereby yielding a titanium alloy material for sintering mixed with nitrogen-containing titanium alloy material; sintering the titanium alloy material for sintering mixed with nitrogen-containing titanium alloy material, thereby bonding the material each other and dispersing nitrogen contained in the nitrogen-containing titanium alloy material for sintering in a condition in which nitrogen is uniformly dispersed into an entire inner portion of the sintered body by solid solution.
    • 通过将氮施加到广泛使用的±2型钛合金上来制造具有高整体强度的钛合金材料。 钛合金构件的制造方法包括制备用于烧结的钛合金材料作为烧结体的原料; 氮化钛合金材料进行烧结,从而在钛合金材料的表面层中形成氮化合物层和/或氮固溶体层,用于烧结并产生用于烧结的含氮钛合金材料; 混合用于烧结的钛合金材料和用于烧结的含氮钛合金材料,从而产生用含氮钛合金材料混合的烧结钛合金材料; 烧结与含氮钛合金材料混合的钛合金材料,由此将材料彼此粘合并将氮气均匀分散在氮气均匀分散的状态下分散在整个内部的氮含量的钛合金材料中分散氮 的烧结体。
    • 72. 发明公开
    • FILM FORMATION METHOD AND FILM FORMATION DEVICE
    • FILMFORMUNGSVERFAHREN UND FILMFORMUNGSVORRICHTUNG
    • EP2907896A1
    • 2015-08-19
    • EP13845899.7
    • 2013-10-08
    • NHK Spring Co., Ltd.
    • HIRANO, Satoshi
    • C23C24/04B05B7/14B05D1/12
    • B05B1/02B05B7/1422B05B7/1481B05D1/12B05D3/0466B05D3/0486C23C24/04
    • A film forming method and a film forming apparatus are provided, which achieve: suppression of oxidation of a film being formed; a simple and inexpensive configuration of the apparatus; and replacement of a base member to be subjected to film formation without time and effort. A film forming apparatus 100 is a film forming apparatus that forms a film by accelerating powder 2 of a material with gas and spraying and depositing the powder 2 onto a surface of a substrate 1 with the powder 2 being kept in a solid state; the film forming apparatus 100 includes a chamber 10, a holding unit 11 that is provided in the chamber 10 and holds the base member 1, a spray nozzle 12 that jets out the powder with inert gas, and a drive unit 15 that moves any one of the spray nozzle 12 and holding unit 11 with respect to the other; and inside of the chamber 10 is caused to be under positive pressure by the inert gas jetted out from the spray nozzle 12.
    • 提供一种成膜方法和成膜装置,其实现:抑制所形成的膜的氧化; 该装置的简单且廉价的构造; 并且不用时间和精力地更换要成膜的基底构件。 成膜装置100是通过用气体加速材料的粉末2并且将粉末2保持为固态并喷射并沉积到基材1的表面上而形成膜的成膜装置; 成膜装置100包括:室10,设置在室10中并保持基部构件1的保持单元11;喷射喷嘴12,其用惰性气体喷出粉末;驱动单元15,其移动任何一个 的喷嘴12和保持单元11相对于另一个; 通过从喷嘴12喷出的惰性气体使室10的内部成为正压。
    • 79. 发明公开
    • STRUCTURE WITH EMBEDDED PIPE AND MANUFACTURING METHOD THEREFOR
    • STRUKTUR MIT EINGEBETTETEM ROHR UND HERSTELLUNGSVERFAHRENDAFÜR
    • EP2871261A1
    • 2015-05-13
    • EP13813218.8
    • 2013-07-01
    • NHK Spring Co., Ltd.
    • MORI, ShogoYAMAUCHI, YuichiroAKABAYASHI, Masaru
    • C23C24/04F16L1/00
    • F16L3/00B05D1/12C23C24/04F28D2021/0029F28F1/00F28F1/02F28F1/20F28F2255/146F28F2275/02
    • Provided is a pipe buried structure with improved adhesiveness between a pipe forming a flow path and a metal member, and a method of manufacturing the same. A pipe buried structure 1 is provided with a pipe 10 made of metal or alloy, an outer periphery on a cross section of which has a flattened shape obtained by curving both ends in a longitudinal direction, a base material 11 made of metal or alloy on which a concave portion 11a is formed, the portion including an inner wall which an outer peripheral portion 10c in the longitudinal direction abuts and to which the pipe 10 is fitted, and a deposition layer 12 formed by accelerating powder made of metal or alloy together with gas and spraying the same in a solid phase state on surfaces of the pipe 10 and the base material 11, thereby depositing the powder in a state in which the pipe 10 is fitted to the concave portion 11a, wherein a ratio h/R between a protruding amount h by which the pipe 10 protrudes from the surface of the base material 11 and a curvature R at ends 10a and 10b is not smaller than 0.25 and not larger than 0.5.
    • 提供一种具有改善的形成流路的管道与金属构件的粘合性的管埋式结构体及其制造方法。 管埋结构体1具有由金属或合金构成的管10,其外周的横截面为通过使长度方向的两端弯曲而得到的扁平形状,由金属或合金制成的基材11 形成有凹部11a的部分,该部分包括外壁部分10c在纵向方向上邻接并且配管10的内壁,以及沉积层12,其通过将由金属或合金制成的粉末与 气体并在管10和基材11的表面上以固相状态喷涂,从而将管10装配到凹部11a的状态下沉积粉末,其中a 管10从基材11的表面突出的突出量h,端部10a,10b的曲率R为0.25以上,0.5以下。