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首页> 外文期刊>Journal of Materials Engineering and Performance >An Investigation on Quench Cracking Behavior of Superalloy Udimet 720L1 Using a Fracture Mechanics Approach
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An Investigation on Quench Cracking Behavior of Superalloy Udimet 720L1 Using a Fracture Mechanics Approach

机译:用断裂力学方法研究Udimet 720L1合金的淬火裂纹行为

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摘要

Quench cracking can be a serious problem in the heat treatment of high strength superalloys. A new fracture mechanics approach, quench cracking toughness (K_Q), was introduced to evaluate the on-cooling quench cracking resistance of superalloy Udimet 720LI. A fully automatic computer controlled data acquisition and processing system was set up to track the on-cooling quenching process and to simulate the quench cracking. The influences of grain size, cooling rate, solution temperature, and alloy processing routes on quench cracking resistance were investigated. Research results indicate that quench cracking revealed a typical brittle and intergranular failure at high temperatures, which causes a lower quench cracking toughness in comparison to fracture toughness at room temperature. Fine grain structures show the higher quench cracking resistance and lower failure temperatures than intermediate grain structures at the same cooling rates. Moreover, higher cooling rate results in lower cracking toughness under the same grain size structures. In comparison of processing routes, powder metallurgy (PM) alloys show higher cracking resistance than cast and wrought (CW) alloys for fine grain structures at the same cooling rates. However, for intermediate grain structure, there is no obvious difference of K_Q between the two processing routes in this study.
机译:淬火裂纹在高强度高温合金的热处理中可能是一个严重的问题。引入了一种新的断裂力学方法,即淬火开裂韧性(K_Q),以评估超级合金Udimet 720LI的冷却后淬火开裂性。建立了全自动计算机控制的数据采集和处理系统,以跟踪冷却时的淬火过程并模拟淬火裂纹。研究了晶粒尺寸,冷却速率,固溶温度和合金加工路线对耐淬火裂纹性的影响。研究结果表明,淬火开裂显示出高温下典型的脆性和晶间破坏,与室温下的断裂韧性相比,淬火开裂的韧性较低。在相同的冷却速率下,细晶粒结构显示出比中间晶粒结构更高的抗淬裂性和更低的破坏温度。而且,较高的冷却速率导致在相同晶粒尺寸结构下较低的开裂韧性。通过比较工艺路线,在相同的冷却速率下,粉末冶金(PM)合金比细晶粒组织的铸造和锻造(CW)合金具有更高的抗裂性。但是,对于中间晶粒结构,本研究中两种加工路线之间的K_Q没有明显差异。

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