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141.
A novel approach to nanoscale broadband viscoelastic spectroscopy is presented. The proposed approach utilizes the recently developed modeling-free inversion-based iterative control (MIIC) technique to achieve accurate measurement of the material response to the applied excitation force over a broad frequency band. Scanning probe microscope (SPM) and nanoindenter have become enabling tools to quantitatively measure the mechanical properties of a wide variety of materials at nanoscale. Current nanomechanical measurement, however, is limited by the slow measurement speed: the nanomechanical measurement is slow and narrow-banded and thus not capable of measuring rate-dependent phenomena of materials. As a result, large measurement (temporal) errors are generated when material is undergoing dynamic evolution during the measurement. The low-speed operation of SPM is due to the inability of current approaches to (1) rapidly excite the broadband nanomechanical behavior of materials, and (2) compensate for the convolution of the hardware adverse effects with the material response during high-speed measurements. These adverse effects include the hysteresis of the piezo actuator (used to position the probe relative to the sample); the vibrational dynamics of the piezo actuator and the cantilever along with the related mechanical mounting; and the dynamics uncertainties caused by the probe variation and the operation condition. In the proposed approach, an input force signal with frequency characteristics of band-limited white-noise is utilized to rapidly excite the nanomechanical response of materials over a broad frequency range. The MIIC technique is used to compensate for the hardware adverse effects, thereby allowing the precise application of such an excitation force and measurement of the material response (to the applied force). The proposed approach is illustrated by implementing it to measure the frequency-dependent plane-strain modulus of poly(dimethylsiloxane) (PDMS) over a broad frequency range extending over 3 orders of magnitude (~1 Hz to 4.5 kHz). 相似文献
142.
Taimin Wang Xuecheng Zhu Qingqing Tao Wei Xu Haiyan Sun Ping Wu Bin Cheng Hongbin Zhai 《中国化学快报》2021,32(12):3972-3975
Pyridinium 1,4-zwitterionic thiolates were applied to a formal [3 + 2] annulation reaction with modified activated alkynes, affording various tetrasubstituted thiophenes with aryl, alkenyl, alkyl or silyl group at the special position. The structural modification of alkyne substrates enabled the synthesis of diverse thiophenes to be achieved using the pyridinium 1,4-zwitterionic thiolates as the sulfur-containing building blocks. This approach is metal-free and catalyst-free. 相似文献
143.
Li Shi Zhang Shouguo Chao Yuesheng Ji Guiquan Xu Yingting Zheng Jinshan 《Hyperfine Interactions》1986,27(1-4):419-423
The structural relaxation and crystallization of amorphous Fe80P20 alloys have been investigated by Mössbauer spectroscopy. The result indicates that the process of the crystallization of Fe80P20 makes slow progress and it was occur from outside into inside. The amorphous alloys may be classified into six different stages from amorphous to crystalline state during annealing. 相似文献
144.
145.
本文用ESR方法研究了五种硝基芴酮与九种脂肪胺间的相互作用。讨论了芴酮衍生物的电子亲合势、脂肪胺的电离势及其空间位阻对相互作用的影响。 相似文献
146.
147.
We illustrate that the recursion method is useful in the study of the electronic structure of metallic superlattices.It reduces considerably the amount of computational works,and gives,nevertheless,fairly satisfactory densities of states. 相似文献
148.
介绍了一种简便易行的降低疏松固体物质冲击波温度的方法,其要点是用液体石蜡充填样品的空隙。以用粉末锐钛矿压装成型的样品为例,对比了不充填和充填液态石蜡时冲击波作用的结果。在同样的冲击加载条件下(均为钢飞片,撞击速度为3.16 km/s),估算两种样品中达到的压力分别为36.3 GPa和46.8 GPa,平均温度分别约为4.7×103 ℃和2.0×103 ℃,即:充填液态石蜡的样品中压力增加了约10 GPa,但平均温度降低了近3×103 ℃。对冲击后回收样品的分析结果表明,不充填石蜡样品的主要产物为金红石,即冲击波产生的高温起了主要作用。而充填液态石蜡时,主要生成β-TiO2高压相,即高压起了主要作用。 相似文献
149.
报道了在兰州重离子加速器国家实验室电子回旋共振离子源原子物理实验平台上,用高电荷态40Arq+(1≤q≤12)离子作用于半导体Si固体表面时的电子发射产额实验测量.实验中,通过改变炮弹离子的电荷态和引出电压选取其不同的势能和动能,系统地研究了入射离子势能沉积和与其在固体中的电子能损对表面电子发射产额的贡献.结果表明,作为引起表面电子发射的两个主要因素,单离子的电子发射产额与炮弹离子在固体表面的势能沉积和电子能损都有近似的正比关系. 相似文献
150.