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    • 88. 发明授权
    • Multi-component assembly casting
    • 多组件组装铸造
    • US09156086B2
    • 2015-10-13
    • US12795002
    • 2010-06-07
    • Allister W. James
    • Allister W. James
    • F01D5/18B22D19/00B22C9/04C22C19/03F01D5/14F01D5/28
    • B22D19/00B22C9/04C22C19/03F01D5/147F01D5/187F01D5/28F05D2230/211F05D2300/607Y10T29/4932Y10T29/49341
    • Multi-component vane segment and method for forming the same. Assembly includes: positioning a pre-formed airfoil component (12) and a preformed shroud heat resistant material (18) in a mold, wherein the airfoil component (12) and the shroud heat resistant material (18) each comprises an interlocking feature (24); preheating the mold; introducing molten structural material (46) into the mold; and solidifying the molten structural material such that it interlocks the pre-formed airfoil component (12) with respect to the preformed shroud heat resistant material (18) and is effective to provide structural support for the shroud heat resistant material (18). Surfaces between the airfoil component (12) and the structural material (46), between the airfoil component (12) and the shroud heat resistant material (18), and between the shroud heat resistant material (18) and the structural material (46) are free of metallurgical bonds.
    • 多部件叶片段及其形成方法。 组件包括:将预先形成的翼型件(12)和预制的护罩耐热材料(18)定位在模具中,其中翼型件(12)和护罩耐热材料(18)各自包括互锁特征(24 ); 预热模具; 将熔融结构材料(46)引入模具中; 并且使熔融的结构材料凝固,使得其相对于预成型的护罩耐热材料(18)将预先形成的翼型件(12)联锁起来,并有效地为护罩耐热材料(18)提供结构支撑。 机翼部件(12)和结构材料(46)之间,翼型部件(12)和护罩耐热材料(18)之间以及护罩耐热材料(18)和结构材料(46)之间的表面 没有冶金债券。
    • 90. 发明申请
    • Target for Neutron-Generating Device and Manufacturing Method Therefor
    • 中子发电装置的目标及其制造方法
    • US20150216029A1
    • 2015-07-30
    • US14414252
    • 2013-07-11
    • Yagami Co., Ltd.
    • Kazuki Tsuchida
    • H05H6/00B23K20/02B22D19/00
    • H05H6/00A61N2005/109B22D19/00B23K20/021G21G4/02
    • Provided are a long-lived target for a neutron-generating device and a method for manufacturing the target therefore. The target is for a neutron-generating device and includes: a metal substrate retaining a target material; and a metal thin film for sealing that holds the target material at a retention surface X side. The retention surface X side of the metal substrate includes: a frame portion; and an embossed structure including: a plurality of island portions that are surrounded by the frame portion; and the rest recessed portion that is created by decreasing a thickness of a region other than the frame portion and the island portions by a thickness of the target material. The metal thin film and surfaces of the frame portion and the island portions are subjected to hot isostearic pressing (HIP) bonding to seal the target material onto the recessed portion by using the metal thin film.
    • 因此,提供了用于中子产生装置的长寿命靶和因此制造靶的方法。 目标是用于中子产生装置,并且包括:保持靶材料的金属基板; 以及用于密封的金属薄膜,其将目标材料保持在保持面X侧。 金属基板的保持面X侧包括:框架部; 以及压花结构,包括:由所述框架部分包围的多个岛部; 以及通过将框架部分和岛部以外的区域的厚度减小目标材料的厚度而产生的剩余凹部。 金属薄膜和框架部分和岛部分的表面经受热等静压(HIP)接合,以通过使用金属薄膜将目标材料密封到凹部上。