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Gauge Factor and Stretchability of Silicon-on-Polymer Strain Gauges

机译:硅聚合物应变片的应变片系数和可拉伸性

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摘要

Strain gauges are widely applied to measure mechanical deformation of structures and specimens. While metallic foil gauges usually have a gauge factor slightly over 2, single crystalline silicon demonstrates intrinsic gauge factors as high as 200. Although silicon is an intrinsically stiff and brittle material, flexible and even stretchable strain gauges have been achieved by integrating thin silicon strips on soft and deformable polymer substrates. To achieve a fundamental understanding of the large variance in gauge factor and stretchability of reported flexible/stretchable silicon-on-polymer strain gauges, finite element and analytically models are established to reveal the effects of the length of the silicon strip, and the thickness and modulus of the polymer substrate. Analytical results for two limiting cases, i.e., infinitely thick substrate and infinitely long strip, have found good agreement with FEM results. We have discovered that strains in silicon resistor can vary by orders of magnitude with different substrate materials whereas strip length or substrate thickness only affects the strain level mildly. While the average strain in silicon reflects the gauge factor, the maximum strain in silicon governs the stretchability of the system. The tradeoff between gauge factor and stretchability of silicon-on-polymer strain gauges has been proposed and discussed.
机译:应变仪广泛用于测量结构和试样的机械变形。尽管金属箔规的规规系数通常略大于2,但单晶硅的固有规规系数高达200。尽管硅是一种固有的刚性和脆性材料,但通过在其上集成薄硅条可以实现柔性甚至可拉伸的应变规柔软且可变形的聚合物基材。为了基本了解所报道的柔性/可拉伸聚合物基硅应变片的应变系数和可拉伸性的巨大差异,建立了有限元模型和分析模型以揭示硅带的长度,厚度和厚度的影响。聚合物基材的模量。两种极限情况的分析结果,即无限厚的基底和无限长的条带,已经与有限元结果很好地吻合。我们已经发现,硅电阻器中的应变会随不同的基板材料而变化几个数量级,而条带长度或基板厚度只会轻微影响应变水平。硅中的平均应变反映了应变系数,而硅中的最大应变决定了系统的可拉伸性。已经提出并讨论了应变系数和聚合物上硅应变计的可拉伸性之间的折衷。

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