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3D printing and additive manufacturing. 2024 Jun 18;11(3):e1209-e1212. doi: 10.1089/3dp.2023.0010 Q32.12025

Mechanical Characterization and Constitutive Modeling of 3D Printable Soft Materials

三维打印软材料的力学表征与本构模型研究 翻译改进

Lawrence Smith  1, Robert MacCurdy  1

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  • 1 MACLab, Department of Mechanical Engineering, University of Colorado Boulder, Boulder, Colorado, USA.
  • DOI: 10.1089/3dp.2023.0010 PMID: 39359602

    摘要 中英对照阅读

    Numerical modeling of soft matter has the potential to enable exploration of the soft robotic field's next frontier: human/machine cooperative design. However, access to material models suitable for predicting the behavior of soft matter is limited, and analysts typically conduct their own mechanical characterization on every new material they work with. In this work we present detailed mechanical characterization of 14 3D-printable soft materials suitable... ...点击完成人机验证后继续浏览

    软物质的数值模拟有可能使软机器人领域的下一个前沿领域——人机合作设计成为可能。然而,可用于预测软物质行为的材料模型有限,分析师通常会对他们使用的所有新材料进行自己的机械表征。在这项工作中,我们详细介绍了14种适合用于制造软机器人的可3D打印软材料的机械特性。为了允许其他研究人员扩展这项工作,我们的测试程序、原始数据、本构模型系数以及曲线拟合代码可在www.SoRoForge.com免费获取。

    关键词: 3D 打印;本构模型;材料表征;软机器人。

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    期刊名:3d printing and additive manufacturing

    缩写:3D PRINT ADDIT MANUF

    ISSN:2329-7662

    e-ISSN:2329-7670

    IF/分区:2.1/Q3

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    Mechanical Characterization and Constitutive Modeling of 3D Printable Soft Materials