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Influence of PVD-duplex-treated, Bionic Surface Structures on the Wetting Behavior for Sheet-Bulk Metal Forming Tools

机译:PVD双相处理的仿生表面结构对钣金成形工具润湿行为的影响

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摘要

Bionic surface structures,inspired by the flora,were developed for Sheet-Bulk Metal Forming (SBMF) in order to locally control the friction condition by adjusting the wetting behavior.Five bionic structures were micromilled on ASP(R)2023,in annealed as well as hardened and tempered conditions.Subsequently,the structured surfaces were plasma-nitrided and coated with a CrA1N thin film.The influence of the treatment method on the structural geometry was investigated with the aid of a scanning electron microscope and 3D-profilometer.The wetting behaviors of water and deep drawing oil (Berufluid ST6007) on bionic surfaces were evaluated using contact angle measurements.The resulting micro-milled structures exhibit an almost identical shape as their bionic models.However,the roughness of the structured surfaces is influenced by the microstructure.The combination of plasma-nitriding and Physical Vapor Deposition (PVD) leads to an increase in roughness.All bionic structures possess higher contact angles than that of the unstructured surfaces when wetted by water.This can be explained by the fact that the structural elevations block the spreading.When the bionic surfaces are wetted by deep drawing oil,the lubricant spreads in the structural cavities,leading to smaller contact angles.Furthermore,the anisotropy of the structure has an influence on the wetting behavior.
机译:研发了一种以菌群为灵感的仿生表面结构,用于片材散装成型(SBMF),以便通过调节润湿行为来局部控制摩擦条件。还对5种仿生结构在ASP(R)2023上进行了微研磨,并进行了退火随后,对结构化表面进行了等离子氮化处理并涂上CrA1N薄膜。借助扫描电子显微镜和3D轮廓仪,研究了处理方法对结构几何形状的影响。使用接触角测量法评估了水和深冲油(Berufluid ST6007)在仿生表面上的行为,所得微铣削结构的形状与仿生模型几乎相同,但是结构化表面的粗糙度受微结构的影响等离子体氮化和物理气相沉积(PVD)的结合导致粗糙度增加。所有仿生结构都具有较高的含量当被水润湿时,其作用角要比非结构化表面的作用角大。这可以用以下事实解释:结构隆起阻止了扩散。当仿生表面被深冲油润湿时,润滑剂会在结构腔中扩散,从而减小接触角。此外,结构的各向异性会影响润湿性能。

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  • 来源
    《仿生工程学报(英文版)》 |2017年第3期|520-531|共12页
  • 作者单位

    Institute of Materials Engineering, TU Dortmund, 44227 Dortmund, Germany,Leonhard-Euler-Straβe 2;

    Institute of Materials Engineering, TU Dortmund, 44227 Dortmund, Germany,Leonhard-Euler-Straβe 2;

    Institute of Materials Engineering, TU Dortmund, 44227 Dortmund, Germany,Leonhard-Euler-Straβe 2;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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