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Biaxial Mooney-Rivlin Coefficient of Silicone Sheet by Additive Manufacturing

机译:增材制造的硅片双轴门尼-里夫林系数

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This study evaluates the biaxial Mooney-Rivlin coefficient for silicone sheets made by additive manufacturing (AM) for custom wearable assistive devices and soft robotics. The extrusion-based layer-by-layer technique is applied for AM of moisture cured silicone sheets. A progressive cavity pump controls the precise, continuous flow of high viscosity silicone for low void AM of the cruciform shaped specimen. A biaxial tensile test apparatus with four independent linear actuators was built for testing the cruciform specimens. Digital Image Correlation method was utilized to calculate the distribution of strain. This study show the value of the biaxial Mooney-Rivlin coefficient for the AM silicone sheet is independent of the thickness and in the range of 114.7 kPa to 132.1 kPa for C 10 and –17.9 kPa to –9.04 kPa for C 01 . The geometry of the specimen is shown to affect the biaxial quality of the specimen.
机译:这项研究评估了用于定制可穿戴辅助设备和软机器人的通过增材制造(AM)制造的有机硅片材的双轴Mooney-Rivlin系数。基于挤出的逐层技术适用于湿固化有机硅片材的增材制造。螺杆泵控制着精确,连续的高粘度硅酮流,以降低十字形样品的低孔隙度AM。建立了具有四个独立的线性致动器的双轴拉伸测试设备,用于测试十字形样品。利用数字图像相关法计算应变分布。这项研究表明,AM硅树脂片的双轴门尼-里夫林系数值与厚度无关,对于C 10而言,其范围为114.7 kPa至132.1 kPa,对于C 01而言,其范围为–17.9 kPa至–9.04 kPa。样品的几何形状显示出会影响样品的双轴质量。

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