通过引入两种类型的硼源——bnnss和LaB6,实现了TiBw/TC4复合材料的高性能

IF 8.1 2区 材料科学 Q1 ENGINEERING, MANUFACTURING
Yu Wang , Hongmei Zhang , Xingwang Cheng , Xiaonan Mu , Jiaqi Zhang , Xiujun Li
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引用次数: 0

摘要

粉末冶金不连续增强钛基复合材料(DRTiMCs)的室温脆性仍然是一个有待解决的问题,其主要原因是脆性陶瓷增强材料的加入和钛基中氧(O)含量过高。氮化硼纳米片(BNNSs)由于其二维结构和优异的力学性能而成为DRTiMCs的理想补强材料。本研究采用LaB6和2d结构BNNSs作为杂化硼源来解决TiBw/TC4 (Ti6Al4V)复合材料的强度-塑性权衡问题。采用场辅助烧结技术(FAST)结合热轧(HR)对复合材料进行固结。结果表明:当添加0.1 wt%的BNNSs + 0.1 wt%的LaB6增强剂时,TC4基复合材料的屈服强度为1339 MPa,断裂伸长率为17.9%,强度和延展性均比TC4基体提高了20%和38%。特别是部分反应的BNNSs在复合材料中具有明显的抗裂和损伤容限能力,而LaB6通过原位形成的La2O3纳米颗粒有效地降低了O杂质的浓度。通过原位扫描电镜实验,我们解决了已有的争论,揭示了BNNSs和非均相界面的协同增韧效应,有效地抑制了微裂纹的扩展。它们共同发挥了积极的作用,说明了drtimc的高性能。本研究为解决DRTiMCs的强度-延性协同作用提供了实用的方法和有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Achieving high-performance in TiBw/TC4 composites via introducing two types of boron sources-BNNSs and LaB6
Room-temperature brittleness was still an open issue in powder metallurgy discontinuously reinforced titanium matrix composites (DRTiMCs) which was mainly attributed to the addition of brittle ceramic reinforcements and excessive oxygen (O) content to the titanium matrix. Boron nitride nanosheets (BNNSs) is an idea reinforcement in DRTiMCs due to its two-dimensional structure and excellent mechanical property. The present study employed the LaB6 and 2D-structured BNNSs as hybrid boron sources to address the strength-ductility trade-off in TiBw/TC4 (Ti6Al4V) composites. Field-Assisted sintering technique (FAST) in conjunction with hot rolling (HR) was applied to consolidate the composite. The results showed that TC4-based composite exhibited the yield strength of 1339 MPa with fracture elongation of 17.9 % when adding merely 0.1 wt% BNNSs + 0.1 wt% LaB6 reinforcements, achieving simultaneously enhanced strength (+20 %) and ductility (+38 %) compared with TC4 matrix. In particular, the partial reacted BNNSs provided an obviously crack resistance and damage tolerance capability in composite, while the LaB6 effectively reduced the concentration of O impurity via in-situ formed La2O3 nano-particles. By employing the in-situ SEM experiment, we solve an existing debate, uncovering the synergistic toughening effect from BNNSs and heterogeneous interface which effectively inhibited the micro-cracks propagation. Together they made positive function that account for the high-performance in DRTiMCs. This study paved a pragmatic approach and valuable insights for addressing the strength-ductility synergy in DRTiMCs.
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来源期刊
Composites Part A: Applied Science and Manufacturing
Composites Part A: Applied Science and Manufacturing 工程技术-材料科学:复合
CiteScore
15.20
自引率
5.70%
发文量
492
审稿时长
30 days
期刊介绍: Composites Part A: Applied Science and Manufacturing is a comprehensive journal that publishes original research papers, review articles, case studies, short communications, and letters covering various aspects of composite materials science and technology. This includes fibrous and particulate reinforcements in polymeric, metallic, and ceramic matrices, as well as 'natural' composites like wood and biological materials. The journal addresses topics such as properties, design, and manufacture of reinforcing fibers and particles, novel architectures and concepts, multifunctional composites, advancements in fabrication and processing, manufacturing science, process modeling, experimental mechanics, microstructural characterization, interfaces, prediction and measurement of mechanical, physical, and chemical behavior, and performance in service. Additionally, articles on economic and commercial aspects, design, and case studies are welcomed. All submissions undergo rigorous peer review to ensure they contribute significantly and innovatively, maintaining high standards for content and presentation. The editorial team aims to expedite the review process for prompt publication.
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