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首页> 外文期刊>Materials Characterization >Multi-scale and multi-technic microstructure analysis of a linear friction weld of the metastable-beta titanium alloy Ti-5Al-2Sn-2Zr-4Mo-4Cr (Ti17) towards a new Post-Weld Heat Treatment
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Multi-scale and multi-technic microstructure analysis of a linear friction weld of the metastable-beta titanium alloy Ti-5Al-2Sn-2Zr-4Mo-4Cr (Ti17) towards a new Post-Weld Heat Treatment

机译:稳定 - β钛合金Ti-5Al-2Sn-2ZR-4MO-4CR(TI17)对新型焊接后热处理的多规模和多技术微观结构分析

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摘要

Linear Friction Welding (LFW) is a solid-state joining process producing narrow joints mainly developed for the aircraft industry. The Thermo-Mechanical Processing (TMP) loads imposed on the material cause complex microstructure transformations. This study aimed at characterizing the local microstructures and crystallographic configurations to identify the mechanisms impacting the stability and the mechanical properties of a Ti17 LFW joint with the objective of establishing an innovative homogenizing Post-Weld Heat Treatment (PWHT). The process caused a narrow zone of +/- 2 mm from the friction interface to reach the isothermal a - beta transformation temperature under a heating rate of 500 K/s followed by quenching (-100 K/s). The TMP resulted in the formation a +/- 3 mm wide soft Process Affected Zone (PAZ) delimited by three characteristic zones: the Welding Line (WL width approximate to 400 mu m), The Thermo-Mechanically Affected Zone (TMAZ width approximate to 1 mm) and the Heat Affected Zone (HAZ). beta TMP resulted in the total dissolution of the alpha phase in the joint core (WL + TMAZ) and formed strongly textured {110}011 beta recrystallized grains in the WL by continuous dynamic recrystallization of squeezed prior-beta grains in the TMAZ. alpha + beta TMP led to a gradual loss of hardness in the HAZ whose microstructure is similar to the one of the base material (BM) but is subject to gradual a laths dissolution due to the local temperatures experienced during LFW. A PWHT consisting in a beta annealing followed by an alpha + beta ageing resulted in a uniformly hardened weld with a homogenized Widmanstatten microstructure in the whole assembly.
机译:线性摩擦焊接(LFW)是一种固态连接过程,生产主要为飞机行业开发的窄接头。施加在材料上的热机械加工(TMP)负载导致复杂的微观结构变换。该研究旨在表征局部微观结构和晶体构造,以确定影响TI17 LFW接头的稳定性和机械性能的机制,其目的是建立创新的均质焊接后热处理(PWHT)。该过程导致距离摩擦界面的窄区域距离摩擦界面达到等温α - & β在500k / s的加热速率下的变化温度,然后淬火(-100k / s)。 TMP导致形成A +/- 3毫米宽软化过程受影响的区域(PAZ)由三个特征区分隔:焊接线(WL宽度近似为400μm),热机械受影响的区域(Tmaz宽度近似1 mm)和热影响区域(HAZ)。 βTMP导致连续核(WL + TMAZ)中的α相的总溶解,并形成强烈纹理的{110}& 011& β通过连续动态再结晶在TMAZ中挤压的先前β谷物重结晶谷物。 alpha +βTMP导致HAZ中的硬度逐渐丧失,其微观结构类似于基材(BM),而是由于在LFW期间经历的局部温度而受到逐渐溶解。在β退火中组成的pWHT,然后是α+β衰老,导致整个组件中具有均匀的Widmantatten微观结构的均匀硬化的焊缝。

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  • 来源
    《Materials Characterization》 |2018年第2018期|共10页
  • 作者单位

    Univ Technol Compiegne Sorbonne Univ Lab Roberval Mecan UMR CNRS 7337 CS 60319 Rue Roger Couttolenc F-60203 Compiegne France;

    Univ Technol Compiegne Sorbonne Univ Lab Roberval Mecan UMR CNRS 7337 CS 60319 Rue Roger Couttolenc F-60203 Compiegne France;

    Univ Technol Compiegne Sorbonne Univ Lab Roberval Mecan UMR CNRS 7337 CS 60319 Rue Roger Couttolenc F-60203 Compiegne France;

    Tech Univ Denmark Prod Torvet Bldg 425 Room 124 DK-2800 Lyngby Denmark;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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