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TiB/Ti-6Al-4V 非连续增强钛基复合材料的微观结构建模与强化机制

Microstructural Modeling and Strengthening Mechanism of TiB/Ti-6Al-4V Discontinuously-Reinforced Titanium Matrix Composite.

作者信息

Zhao Shuai, Xu Yangjian, Pan Changliang, Liang Lihua, Wang Xiaogui

机构信息

College of Mechanical Engineering, Zhejiang University of Technology, Hangzhou 310014, China.

出版信息

Materials (Basel). 2019 Mar 11;12(5):827. doi: 10.3390/ma12050827.

Abstract

A novel modeling method was proposed to provide an improved representation of the actual microstructure of TiB/Ti-6Al-4V discontinuously-reinforced titanium matrix composite (DRTMC). Based on the Thiessen polygon structure, the representative volume element (RVE) containing the complex microstructures of the DRTMC was first generated. Thereafter, by using multiple user-defined subroutines in the commercial finite element software ABAQUS, the application of asymmetric mesh periodic boundary conditions on the RVE was realized, and the equivalent elastic modulus of the DRTMC was determined according to the homogenization method. Through error analyses on the experimental and calculated results regarding the equivalent elastic parameters of the DRTMC, the rationality of generating the DRTMC finite element model by using the present method was validated. Finally, simulations based on four types of network-like models revealed that the present simplifications to the particle shape of the reinforcement phase had less of an influence on the overall composite strength. Moreover, the present study demonstrates that the DRTMC enhancement is mainly attributed to the matrix strengthening, rather than the load-transferring mechanism. The strengthening influences of the distribution forms of the reinforcement phases, including their distribution density and orientation, were studied further. It was found that both the higher distribution density and limited distribution orientation of the particles would increase the probability of overlapping and merging between particles, and; therefore, higher strength could be yielded when the volume fraction of the reinforcement phase reached a certain threshold. Owing to the versatility of the developed methods and programs, this work can provide a useful reference for the characterization of the mechanical properties of other composites types.

摘要

提出了一种新颖的建模方法,以更好地表示TiB/Ti-6Al-4V非连续增强钛基复合材料(DRTMC)的实际微观结构。基于泰森多边形结构,首先生成了包含DRTMC复杂微观结构的代表性体积单元(RVE)。此后,通过在商业有限元软件ABAQUS中使用多个用户定义的子程序,实现了在RVE上应用非对称网格周期性边界条件,并根据均匀化方法确定了DRTMC的等效弹性模量。通过对DRTMC等效弹性参数的实验结果和计算结果进行误差分析,验证了采用本方法生成DRTMC有限元模型的合理性。最后,基于四种类型的网络状模型进行的模拟表明,目前对增强相颗粒形状的简化对复合材料的整体强度影响较小。此外,本研究表明,DRTMC的增强主要归因于基体强化,而非载荷传递机制。进一步研究了增强相分布形式的强化影响,包括其分布密度和取向。结果发现,颗粒的较高分布密度和有限的分布取向都会增加颗粒之间重叠和合并的概率,因此,当增强相的体积分数达到一定阈值时,可以获得更高的强度。由于所开发方法和程序的通用性,这项工作可为其他类型复合材料力学性能的表征提供有用的参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a19c/6427391/f5b770ad1d8e/materials-12-00827-g001.jpg

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