Dynamic response of functionally graded plate under harmonic load with variable gradient parameters

IF 1.9 4区 材料科学 Q3 Materials Science Science and Engineering of Composite Materials Pub Date : 2022-01-01 DOI:10.1515/secm-2022-0019
Jianhui Tian, Hongrui Zhang, Jinjuan Sun, Jialiang Wu, G. Hu
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Abstract

Abstract This article used the strip element method to study the dynamics problems of the functionally graded plate with variable gradient parameters under the harmonic loads. The dynamic model of the functionally graded plate is established by using the strip element method, the rationality and accuracy of the theoretical results are verified by finite element method, and the displacement response under different gradient parameters is also calculated. The results show that under the different gradient parameters, the displacement varies harmonically with time, and with the increase of gradient parameters, the fluctuation period of displacement with time increases continuously, and the displacement peak also gradually increases. The displacement along the thickness direction also shows the harmonic form. Through comparison, it is found that the gradient parameters have a greater impact on the dynamic response for the functionally graded plate; with the increase in the gradient parameters, the displacement response also increases, but the displacement response trend slows down.
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变梯度参数下谐波荷载作用下功能梯度板的动力响应
本文采用条单元法研究了变梯度参数功能梯度板在谐波载荷作用下的动力学问题。采用条单元法建立了功能梯度板的动力学模型,用有限元法验证了理论结果的合理性和准确性,并计算了不同梯度参数下的位移响应。结果表明,在不同的梯度参数下,位移随时间和谐变化,随着梯度参数的增加,位移随随时间的波动周期不断增加,位移峰值也逐渐增大。沿厚度方向的位移也呈现出谐波形式。通过比较发现,梯度参数对功能梯度板的动力响应影响较大;随着梯度参数的增加,位移响应也增加,但位移响应趋势变慢。
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来源期刊
Science and Engineering of Composite Materials
Science and Engineering of Composite Materials 工程技术-材料科学:复合
CiteScore
3.10
自引率
5.30%
发文量
0
审稿时长
4 months
期刊介绍: Science and Engineering of Composite Materials is a quarterly publication which provides a forum for discussion of all aspects related to the structure and performance under simulated and actual service conditions of composites. The publication covers a variety of subjects, such as macro and micro and nano structure of materials, their mechanics and nanomechanics, the interphase, physical and chemical aging, fatigue, environmental interactions, and process modeling. The interdisciplinary character of the subject as well as the possible development and use of composites for novel and specific applications receives special attention.
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