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SPD Processed Materials Mechanical Properties Determination with the Use of Miniature Specimens

机译:SPD加工材料力学性能的微型标本测定

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摘要

The main reason why new technologies and treatment procedure are being developed is to attain special mechanical properties. However, these developments are nowadays done on a small material volume either using some laboratory simulators, applying sever plastic deformation procedures or chemical composition screening for multicomponent alloys development by laser or electron beam melting. In all these application a small volume of the material assessed is available and standard procedures for crucial mechanical properties determinations are not applicable. Thus small size techniques should be applied. There has been extensively used small punch test technique (SPT) for those cases in recent years. This technique is mainly based on the evaluation using correlation between standard and SPT tests for considered material. In cases when insufficient material volume is available, those correlations cannot be established and thus comparative evaluation only can be carried out. This kind of evaluation is insufficient for the contemporary purposes, when full material potential is to be utilized. Therefore, procedures providing results directly comparable with standard specimens are being developed. Fundamental properties are those determined from tensile tests. The current paper is presenting application of developed miniature tensile test specimen method to materials after SPD processes. Quasi static properties determination is shown here for Magnesium and Titanium alloys for ECAP and Rotary Swaging SPD techniques. The results obtained from testing can be used not only for a direct material properties assessment and comparison, but also as input data for FEM codes, significantly increasing the materials considered application potential assessment.
机译:正在开发新技术和处理程序的主要原因是要获得特殊的机械性能。但是,如今,这些发展是通过使用一些实验室模拟器,使用严重的塑性变形程序或通过激光或电子束熔化开发多组分合金的化学成分筛选,以较小的材料体积完成的。在所有这些应用中,只有少量的评估材料可用,并且不适用于确定关键机械性能的标准程序。因此,应采用小尺寸技术。近年来,针对这些情况,已经广泛使用了小型打孔测试技术(SPT)。该技术主要基于使用标准和SPT测试之间的相关性进行评估的材料。如果没有足够的材料量,则无法建立这些相关性,因此只能进行比较评估。当要充分利用物质潜力时,这种评估不足以用于当代目的。因此,正在开发提供与标准样品直接可比的结果的程序。基本性能是由拉伸试验确定的那些。目前的论文介绍了在SPD处理后开发的微型拉伸试样方法在材料上的应用。此处显示了用于ECAP和旋转型SPD技术的镁和钛合金的准静态性能确定。从测试中获得的结果不仅可以用于直接的材料性能评估和比较,还可以用作FEM代码的输入数据,从而大大增加了被认为具有应用潜力评估的材料。

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  • 来源
    《Materials science forum》 |2017年第1期|471-476|共6页
  • 作者单位

    COMTES FHT a.s., Prumyslova 995, 334 41 Dobrany, Czech Republic;

    COMTES FHT a.s., Prumyslova 995, 334 41 Dobrany, Czech Republic;

    COMTES FHT a.s., Prumyslova 995, 334 41 Dobrany, Czech Republic;

    Department of Physics of Materials, Faculty of Mathematics and Physics, Charles University in Prague, Ke Karlovu 5, 121 16 Praha 2, Czech Republic;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    SPD; ECAP; rotary swaging; mini tensile test;

    机译:SPD;亚太经社会旋转型锻微型拉伸试验;

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