首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >(V014T11A005)PREDICTION OF TRANSFORMATION-INDUCED RESIDUAL STRESSES DURING GAS NITRIDING OF H13 STEELS USING PHASE FIELD APPROACH
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(V014T11A005)PREDICTION OF TRANSFORMATION-INDUCED RESIDUAL STRESSES DURING GAS NITRIDING OF H13 STEELS USING PHASE FIELD APPROACH

机译:(V014T11A005)使用相场方法对H13钢气体氮化过程中的转化诱导的残余应力预测

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Gas nitriding is a common surface treatment practice to improve the wear resistance of AISI H13 hot extrusion die cavities. However, due to the presence of complex and sharp features of die cavities, it has been observed that non-uniform nitride layer develops in these regions. Moreover, the formation of compound layer in the surface vicinity of nitrided surfaces leads to the development of transformation-induced stresses. The present work presents the application of the phase field method in predicting the evolution of the nitride layers and associated residual stresses during the gas nitriding of AISI H13 tool steels. Nitriding process is modeled and simulated in line with experimental set-up which uses automated two-stage controlled nitriding process. Some representative samples having commonly used geometric features are manufactured and nitrided for validation purpose. Both experimental and numerical results are found in close agreement in terms of nitrogen concentration and corresponding micro-hardness profiles. The results show that high stresses are induced at the surface due to formation of the nitride layers and these stresses are found to be higher at the sharp corners. In view of the current results, some process and design strategies are suggested for improved and more effective nitriding treatment of hot extrusion dies used in the industry.
机译:气体氮化是一种常见的表面处理实践,以改善AISI H13热挤出模腔的耐磨性。然而,由于模腔的复杂和尖锐特征存在,已经观察到在这些区域中产生不均匀的氮化物层。此外,氮化表面的表面附近的化合物层的形成导致转化诱导的应力的显影。本作者介绍了相现场方法在AISI H13工具钢的气体氮化过程中预测氮化物层和相关残余应力的施加。氮化过程采用实验设置模拟和模拟,使用自动化的两阶段控制的氮化过程。用于常用几何特征的一些具有常用几何特征的代表性样本用于验证目的。在氮浓度和相应的微硬度谱方面,在密切协议中发现了实验和数值结果。结果表明,由于氮化物层的形成,在表面诱导高应力,并且发现这些应力在尖角下更高。鉴于目前的结果,提出了一些工艺和设计策略,以改善和更有效地氮化工业中使用的热挤出模具的氮化处理。

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