Modelling and measurements of thermally induced residual stress in IN718 nickel-based superalloy during non-uniform quenching

IF 7.9 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Materials & Design Pub Date : 2025-02-01 Epub Date: 2025-01-15 DOI:10.1016/j.matdes.2025.113615
S. Rahimi , M. King , M. Amir Siddiq , B.P. Wynne
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Abstract

Residual stress induced during and as a result of manufacturing processes can have a significant impact on the later stages of manufacturing (e.g., machining), and in-service performance (e.g., resistance to fatigue) of a component. In this work, a novel approach is presented by combining FE based residual stress predictions with experimental verification at scales comparable to industrial components, which is rarely reported. Instrumented plates of IN718 nickel-based superalloys have been water-quenched and air-cooled from solution annealing temperature (980 °C) and the associated cooling curves were measured at specified locations. The cooling curves were used as boundary conditions for inverse calculation of zone-specific heat transfer coefficient (HTC), which is the main parameter to estimate the heat exchange rate between different regions of a heated part and its surrounding environment. The HTCs have then been implemented in an elastic–plastic finite-element model, which included temperature dependant thermo-mechanical properties to predict thermally induced residual stress fields during heterogeneous water/air quenching from. For the verification of the model, identical plates were heterogeneously quenched (half in water and half in air) from 980 °C, both vertically and horizontally, and residual stress was then measured in both plates using the contour method and incremental central hole drilling.

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IN718镍基高温合金非均匀淬火过程中热致残余应力的模拟与测量
在制造过程中产生的残余应力会对制造的后期阶段(例如,机加工)和使用性能(例如,抗疲劳)产生重大影响。在这项工作中,提出了一种新的方法,将基于有限元的残余应力预测与与工业部件相当的规模的实验验证相结合,这很少被报道。在溶液退火温度(980℃)下,对IN718镍基高温合金的测量板进行了水淬和风冷处理,并在指定位置测量了相应的冷却曲线。区域换热系数(HTC)是估算受热部件不同区域与周围环境之间热交换率的主要参数,冷却曲线作为区域换热系数(HTC)逆计算的边界条件。然后在弹塑性有限元模型中实现了HTCs,该模型包括与温度相关的热机械性能,以预测非均质水/空气淬火过程中的热诱导残余应力场。为了验证模型,在980°C的温度下,对相同的板进行了垂直和水平的非均匀淬火(一半在水中,一半在空气中),然后使用轮廓法和增量中心孔钻孔测量了两个板的残余应力。
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来源期刊
Materials & Design
Materials & Design Engineering-Mechanical Engineering
CiteScore
14.30
自引率
7.10%
发文量
1028
审稿时长
85 days
期刊介绍: Materials and Design is a multi-disciplinary journal that publishes original research reports, review articles, and express communications. The journal focuses on studying the structure and properties of inorganic and organic materials, advancements in synthesis, processing, characterization, and testing, the design of materials and engineering systems, and their applications in technology. It aims to bring together various aspects of materials science, engineering, physics, and chemistry. The journal explores themes ranging from materials to design and aims to reveal the connections between natural and artificial materials, as well as experiment and modeling. Manuscripts submitted to Materials and Design should contain elements of discovery and surprise, as they often contribute new insights into the architecture and function of matter.
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