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Microstructure Investigation Of Bronze/steel Brazed Joints Proposed For Hhf Components Of Iter Manufacturing

机译:用于Iter制造的Hhf部件的青铜/钢钎焊接头的显微组织研究

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摘要

Brazing is considered as one of the perspective option of high heat flux components of ITER manufacturing. CuCrZr bronze, austenitic steel AISI 321 -type and PM-17-type (Ni-Mn-Fe-Si-Sn-B alloy) brazed material were used for the development of brazing technology. Two type of brazing have been studied within the framework of recent investigation: 1. Hot isostatic pressing (HlP)-assisted brazing. 2. Furnace-assisted brazing (with uniaxial compression loading). For the hydrostatic pressing (HIP) the brazed components were pressed out for about 175 MPa during 2.5 h at the temperature 1035-1040℃. For the furnace-assisted brazing all components were inserted into the sealed can, vacuumed and heated up to brazing temperature ~950℃. Fast cooling and ageing heat treatment (500℃ and 4 h) were applied to provide high strength of CuCrZr bronze. Microsections of specimens cut from the joints were studied by optical microscopy and by scanning electron microscopy (SEM). The microstructure, distribution of alloying elements of base metals and of brazed material components were studied in the joints. Results of these studies are discussed in this paper. The data shows that there is a potential for using more simple and cheap (in comparison with common HIP) technologies of bronze to steel joining with satisfactory quality.
机译:钎焊被认为是ITER制造中高热通量组件的一种选择。 CuCrZr青铜,奥氏体AISI 321型和PM-17型(Ni-Mn-Fe-Si-Sn-B合金)钎焊材料被用于钎焊技术的发展。在最近的研究框架内已研究了两种类型的钎焊:1.热等静压(HIP)辅助钎焊。 2.炉辅助钎焊(具有单轴压缩载荷)。为了进行静水压制(HIP),在温度1035-1040℃的2.5小时内,将钎焊组件压出约175 MPa。对于炉辅助钎焊,将所有组件插入密封罐中,抽真空并加热到钎焊温度〜950℃。快速冷却和时效热处理(500℃和4 h)用于提供高强度的CuCrZr青铜。通过光学显微镜和扫描电子显微镜(SEM)研究了从关节切下的标本的显微切片。在接头中研究了贱金属和钎焊材料成分的微观结构,合金元素的分布。这些研究的结果在本文中进行了讨论。数据表明,有可能使用更简单,更便宜(与常见的HIP相比)的青铜到钢连接技术,并获得令人满意的质量。

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