Influence of specimen geometry to the tensile property of 316L stainless steel: Study case on raw material of stents

A. Syaifudin, Julendra Bambang Ariatedja
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Abstract

Considering the raw material of balloon-expandable stent that usually obtained from tube-type geometry, it is still unclear how the multilinear isotropic model obtained from flat-type specimen can be used to represent the actual behavior of stent expansion. In this experimental study, non-standard sheet-type and tube-type tensile test specimens are prepared, which are made from stainless steel 316L. To assure equality of both chemical composition, the testing is carried out using Optical Emission Spectrometer. For the tube-type (axial and tangential), three pieces of specimens are prepared for the tensile test. The forces and yielded elongations are recorded in order to generate stress-strain relationship. The study indicated that the correlation between the stresses and the strains was not similar among various geometry of specimens. Tangential tube-type specimen experienced increasing of total strain faster than other specimen type. It differed significantly compared to a sheet-type specimen. A moderate correlation between the stress and the strain is obtained by a axial tube-type specimen. This investigation suggested a new value of material properties obtained from tangential tube-type specimen to be used in the FE study of balloon-expandable stent.Considering the raw material of balloon-expandable stent that usually obtained from tube-type geometry, it is still unclear how the multilinear isotropic model obtained from flat-type specimen can be used to represent the actual behavior of stent expansion. In this experimental study, non-standard sheet-type and tube-type tensile test specimens are prepared, which are made from stainless steel 316L. To assure equality of both chemical composition, the testing is carried out using Optical Emission Spectrometer. For the tube-type (axial and tangential), three pieces of specimens are prepared for the tensile test. The forces and yielded elongations are recorded in order to generate stress-strain relationship. The study indicated that the correlation between the stresses and the strains was not similar among various geometry of specimens. Tangential tube-type specimen experienced increasing of total strain faster than other specimen type. It differed significantly compared to a sheet-type specimen. A moderate...
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试样几何形状对316L不锈钢拉伸性能的影响——以支架原料为例
考虑到球囊膨胀支架的原材料通常是由管型几何形状获得的,如何用平面型试样获得的多线性各向同性模型来代表支架的实际膨胀行为,目前还不清楚。本试验研究制备非标准板型和管型拉伸试样,材料为316L不锈钢。为了保证两种化学成分的相等,用光学发射光谱仪进行了测试。对于管型(轴向和切向),准备三个试件进行拉伸试验。为了生成应力-应变关系,记录了力和屈服伸长率。研究表明,在不同几何形状的试样中,应力与应变之间的相关性并不相似。切向管型试样的总应变增加速度比其他类型试样快。它与薄板型试样相比有显著差异。应力和应变之间的适度相关性是通过轴向管型试样获得的。本研究提出了切向管型试样材料性能的新价值,可用于球囊膨胀支架的有限元研究。考虑到球囊膨胀支架的原材料通常是由管型几何形状获得的,如何用平面型试样获得的多线性各向同性模型来代表支架的实际膨胀行为,目前还不清楚。本试验研究制备非标准板型和管型拉伸试样,材料为316L不锈钢。为了保证两种化学成分的相等,用光学发射光谱仪进行了测试。对于管型(轴向和切向),准备三个试件进行拉伸试验。为了生成应力-应变关系,记录了力和屈服伸长率。研究表明,在不同几何形状的试样中,应力与应变之间的相关性并不相似。切向管型试样的总应变增加速度比其他类型试样快。它与薄板型试样相比有显著差异。一个温和的…
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