首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Suppression of Boride Formation in Transient Liquid Phase Bonding of Pairings of Parent Superalloy Materials with Different Compositions and Grain Structures and Resulting Mechanical Properties
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Suppression of Boride Formation in Transient Liquid Phase Bonding of Pairings of Parent Superalloy Materials with Different Compositions and Grain Structures and Resulting Mechanical Properties

机译:组成和晶粒结构不同的母体高温合金配对中液相瞬态键合中硼化物的形成及其力学性能

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摘要

Two Ni-based superalloys, columnar grained Alloy 247 and single-crystal PWA1483, are joined by transient liquid phase bonding using an amorphous brazing foil containing boron as a melting point depressant. At lower brazing temperatures, two different morphologies of borides develop in both base materials: plate-like and globular ones. Their ratio to each other is temperature dependent. With very high brazing temperatures, the deleterious boride formation in Alloy 247 can be totally avoided, probably because the three-phase-field moves to higher alloying element contents. For the superalloy PWA1483, the formation of borides cannot be completely avoided at high brazing temperatures as incipient melting occurs. During subsequent solidification of these areas, Chinese-script-like borides precipitate. The mechanical properties (tensile tests at room and elevated temperatures and short-term creep rupture tests at elevated temperatures) for brazed samples without boride precipitation are very promising. Tensile strengths and creep times to 1 pct strain are comparable, respectively, higher than the ones of the weaker parent material for all tested temperatures and creep conditions (from 90 to 100 pct rsp. 175 to 250 pct).
机译:两种镍基高温合金,即圆柱状晶粒合金247和单晶PWA1483,通过使用包含硼作为熔点抑制剂的非晶钎焊箔通过瞬态液相键合而连接在一起。在较低的钎焊温度下,两种基材中都会形成两种不同形态的硼化物:板状和球形。它们彼此的比例取决于温度。在非常高的钎焊温度下,可以完全避免在247号合金中形成有害的硼化物,这可能是因为三相磁场移向了更高的合金元素含量。对于高温合金PWA1483,由于开始熔化,在高钎焊温度下无法完全避免硼化物的形成。在这些区域的随后固化过程中,出现了类似中文文字的硼化物沉淀。没有硼化物沉淀的钎焊样品的机械性能(在室温和高温下的拉伸试验以及在高温下的短期蠕变断裂试验)非常有前途。在所有测试的温度和蠕变条件下(从90到100 pct rsp。175到250 pct),拉伸强度和到1 pct应变的蠕变时间分别是可比的,高于较弱的母材。

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