首页> 外文会议>Conference on mechanical vibration and noise >DYNAMIC CHARACTERIZATION OF VERTICALLY ALIGNED CARBON NANOTUBE PADS FOR MATERIALS HANDLING APPLICATIONS
【24h】

DYNAMIC CHARACTERIZATION OF VERTICALLY ALIGNED CARBON NANOTUBE PADS FOR MATERIALS HANDLING APPLICATIONS

机译:用于材料处理应用的垂直对准碳纳米管焊盘的动态特征

获取原文

摘要

Vertically-aligned carbon nanotube (VACNT) pads have recently received widespread attention for use as contact surfaces in material handling processes that involve the transfer of bare silicon wafers. Such processes will benefit from the strong friction force interactions and minimal adhesion force offered by these pads, allowing the wafer to be picked up, carried, and quickly placed, without encountering problems which may arise due to excessive adhesive forces. Despite these benefits, practical implementation has been hindered because VACNTs have nonlinear mechanical characteristics which are still not well understood. Consequently, significant attention has been devoted to fully understand and determine the behaviors associated with their nonlinear dynamic mechanical properties. Along this line, several experimental techniques are applied in this paper to further develop a comprehensive understanding of the mechanical behavior of these pads under compressive loading. It is important to note that the samples used in this testing are not standard VACNTs, but have been grown separately from the final substrate on which they are mounted during testing. After growth, the samples are turned upside-down and fixed so that the bottom ends of all VACNTs are planar and present an ultra-flat top surface for contact during manipulation. The tests performed in this research include a low energy impact test and position controlled load-displacement testing with both constant and sinusoidal velocity loading and unloading. Through these testing procedures, the dependencies of the VACNT material properties to compression depth and displacement rate are observed and an attempt is made to incorporate them into a continuous model. For this, the results from the low energy impact testing provide grounds to state the nature of the nonlinear behavior in our VACNTs. By interrogating the available data from each testing technique, a combination of information provided by the theoretical energy balance and the identified coefficients from the Levenberg-Marquardt curve-fitting algorithm is then applied to generate a parametrized phenomenological model of the VACNT pad behavior. The proposed identified model is continuous and reasonably accounts for the overall material behavior as seen in the experimental data. The validity of this model is shown by means of normalized vector correlation of over 99% between the results of the numerical simulations and the existing experimental data. The material behaviors observed in this research qualitatively support those of several earlier investigators who have previously recognized the complex dissipative behavior of VACNTs.The proposed work itself paves the road for developing a useful engineering model of VACNT pad dynamics which will enable their introduction to mechanical applications in industry.
机译:垂直排列的碳纳米管(VACNT)焊盘最近得到了广泛的注意,用作涉及裸硅晶片的转移的材料处理过程中的接触表面。这些过程将受益于这些焊盘提供的强摩擦力相互作用和最小粘合力,允许晶片被拾取,携带和快速放置,而不会遇到可能由于过度粘合力而产生的问题。尽管有这些益处,但实际的实施已经受到阻碍,因为疫污具有非线性机械特性,这些特性仍未得到很好地理解。因此,致力于完全理解和确定与其非线性动态机械性能相关的行为的重大关注。在这条线上,本文应用了几种实验技术,以进一步了解压缩负载下这些垫的机械行为的全面了解。重要的是要注意,该测试中使用的样品不是标准疫苗,但是已经与在测试期间安装的最终基板分开生长。在生长之后,将样品倒置并固定,使得所有空隙的底端是平面的并且在操纵期间呈现超平顶表面以接触。本研究中进行的测试包括低能量冲击试验和位置控制负载 - 位移测试,具有恒定和正弦速度载荷和卸载。通过这些测试程序,观察到VACNT材料特性与压缩深度和位移率的依赖性,并尝试将它们结合到连续模型中。为此,低能量冲击检测的结果提供了对我们疫苗中非线性行为的性质的理由提供了理由。通过从每个测试技术询问可用数据,然后应用由理论能量平衡和来自Levenberg-Marquardt曲线拟合算法的识别系数提供的信息的组合,以产生VACT垫行为的参数化现象学模型。所识别的模型是连续的,合理地占实验数据中所见的整体材料行为。该模型的有效性通过归一化的向量相关示出了数值模拟结果与现有实验数据之间的99%超过99%。本研究中观察到的材料行为定性地支持先前认识到疫苗的复杂耗散行为的早期调查人员的行为。拟议​​的工作本身铺设了开发有用工程模型的Vacnt Pad动态的道路,这将能够引入机械应用在工业中。

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