首页> 外文期刊>Granular matter >On a hybrid method to characterize the mechanical behavior of thin hollow glass microspheres
【24h】

On a hybrid method to characterize the mechanical behavior of thin hollow glass microspheres

机译:表征薄空心玻璃微球力学行为的混合方法

获取原文
获取原文并翻译 | 示例
           

摘要

Hollow glass microspheres possess niche markets and future research areas due to their high strength-to-density ratio and low thermal conductivity. For example, these qualities make them a viable alternative insulation medium. For this study, Scotchlite™ k 1 hollow glass micro-spheres (HGMs) manufactured by 3M™ were used; however, one of the challenges in investigating their mechanical properties was due to the limited availability of published data. Most importantly, the thickness (or the range of thicknesses) of produced thin hollow microspheres is not measured by the manufacturer, so the authors needed to develop a hybrid characterization method that depended on both experiments and simulations to estimate the HGMs mechanical properties. The experimental method utilizes a nano-indenter with a spherical sapphire tip of 500 |xm in diameter. Each HGM was uniaxialy compressed under the indenter to yield the stiffness, diameter, and the force-displacement at fracture of each HGM tested. ABAQUS™ was used to numerically model an HGM of mean diameter and stiffness to obtain a relation between the mechanical and geometrical properties of each HGM to its thickness, and investigate the development of stresses on an HGM during its uniaxial compression. The data show large scatter in the measured stiffness of each HGM as a function of diameter. The authors conjecture this is due to a large fluctuation of the microsphere thickness. Finally, the work necessary to deform an HGM was successfully correlated to its radius-to-thickness ratio. This gives us a unique insight on the force-displacement behavior against the geometrical features of HGMs.
机译:中空玻璃微球由于具有高的强度密度比和低的热导率而拥有利基市场和未来的研究领域。例如,这些品质使它们成为可行的替代绝缘介质。在这项研究中,使用了3M™制造的Scotchlite™k 1中空玻璃微球(HGM);然而,研究其机械性能的挑战之一是由于公开数据的可用性有限。最重要的是,制造商没有测量所生产的薄空心微球的厚度(或厚度范围),因此作者需要开发一种混合表征方法,该方法依赖于实验和模拟来估计HGM的机械性能。实验方法使用了直径为500μm的球形蓝宝石尖端的纳米压头。每个HGM在压头下被单轴压缩,以产生每个测试HGM的刚度,直径和断裂时的力位移。 ABAQUS™用于对平均直径和刚度的HGM进行数值建模,以获得每个HGM的机械和几何特性与其厚度之间的关系,并研究HGM单轴压缩过程中应力的发展。数据显示每个HGM的测得刚度随直径的变化很大。作者推测这是由于微球厚度的较大波动所致。最后,使HGM变形所需的工作已成功地与其半径/厚度比相关。这为我们提供了针对HGM几何特征的力-位移行为的独特见解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号