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Hierarchical surface patterning of Ni- and Be-free Ti- and Zr-based bulk metallic glasses by thermoplastic net-shaping

机译:通过热塑性网状形成Ni-和无可无ZR和Zr基散装金属玻璃的层次表面图案化

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摘要

In order to establish a strong cell-material interaction, the surface topography of the implant material plays an important role. This contribution aims to analyze the formation kinetics of nickel and beryllium-free Ti- and Zr-based Bulk Metallic Glasses (BMGs) with potential biomedical applications. The surface patterning of the BMGs is achieved by thermoplastic net-shaping (TPN) into anisotropically etched cavities of silicon chips. The forming kinetics of the BMG alloys is assessed by thermal and mechanical measurements to determine the most suitable processing temperature and time, and load applied. Array of pyramidal micropattems with a tip resolution down to 50 nm is achievable for the Zr-BMG, where the generated hierarchical features are crucial for surface furtctionalization, acting as topographic cues for cell attachment The unique processability and intrinsic properties of this new class of amorphous alloys make them competitive with the conventional biomaterials. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了建立强的细胞材料相互作用,植入物材料的表面形貌起着重要作用。该贡献旨在通过潜在的生物医学应用来分析镍和无铍的Ti和Zr基散装金属玻璃(BMG)的形成动力学。通过热塑性网状(TPN)实现BMG的表面图案化入硅芯片的各向异性蚀刻空腔中。通过热和机械测量评估BMG合金的形成动力学,以确定最合适的加工温度和时间,并施加载荷。 Zr-BMG可以实现具有尖端分辨率的金字塔阵列阵列,用于ZR-BMG,产生的分层特征对于表面诱惑化至关重要,作为细胞附着的地形提示,这是这种新的无定形类的独特可加工性和本质性质合金使它们与常规生物材料具有竞争力。 (c)2016年Elsevier B.v.保留所有权利。

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