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A new push-pull sample design for microscale mode 1 fracture toughness measurements under uniaxial tension

机译:一种新的推拉样品设计,用于单轴拉伸下的微米级模式1断裂韧性测量

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摘要

A sample geometry is proposed for performing microscale tensile experiments based on a push-pull design. It allows measuring mode 1 fracture toughness under uniform far-field loading. Finite element simulations were performed to determine the geometry factor, which was nearly constant for Young's moduli spanning 2 orders of magnitude. It was further verified that mode 1 stress intensity factor K_I is nearly constant over the width of the tension rods and an order of magnitude higher than K_Ⅱ and K_Ⅲ. Notched samples with different a/w ratios were prepared in (100)-oriented Si by a combination of reactive ion etching and focused ion beam milling. The mode 1 fracture toughness K_(I,q) was constant with a/w and in average 1.02 ± 0.06 MPa√m in good agreement with existing literature. The geometry was characterized and experimentally validated and may be used for fracture toughness measurements of all material classes. It is especially interesting when a uniaxial, homogeneous stress field is desired, if crack tip plasticity is important, or when positioning of the indenter is difficult.
机译:提出了一种样品几何形状,用于基于推挽设计进行微尺度拉伸实验。它允许在均匀的远场载荷下测量模式1的断裂韧性。进行了有限元模拟以确定几何因子,对于跨越2个数量级的杨氏模量,该几何因子几乎恒定。进一步验证了,模式1应力强度因子K_I在拉杆的整个宽度上几乎恒定,并且比K_Ⅱ和K_Ⅲ高一个数量级。通过反应离子刻蚀和聚焦离子束铣削的组合,在(100)取向的Si中制备了具有不同a / w比的缺口样品。模式1的断裂韧性K_(I,q)以a / w恒定,平均为1.02±0.06MPa√m,与现有文献一致。对几何形状进行了表征并进行了实验验证,可用于所有材料类别的断裂韧性测量。当需要单轴的均匀应力场,裂纹尖端的塑性很重要或压头的定位困难时,这尤其有趣。

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    Empa Swiss Federal Laboratory for Material Science and Technology, Laboratory for Mechanics of Materials and Nanostructures, Thun, Switzerland;

    Empa Swiss Federal Laboratory for Material Science and Technology, Laboratory for Mechanics of Materials and Nanostructures, Thun, Switzerland;

    Empa Swiss Federal Laboratory for Material Science and Technology, Laboratory for Mechanics of Materials and Nanostructures, Thun, Switzerland;

    Empa Swiss Federal Laboratory for Material Science and Technology, Laboratory for Mechanics of Materials and Nanostructures, Thun, Switzerland;

    Empa Swiss Federal Laboratory for Material Science and Technology, Laboratory for Mechanics of Materials and Nanostructures, Thun, Switzerland;

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  • 正文语种 eng
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  • 关键词

    fracture toughness; micromechanics; push-pull design; silicon; single-edge notch tension;

    机译:断裂韧性微力学推挽式设计硅;单边缺口张力;

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