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组合梯度体心立方晶格结构的力学性能与能量吸收特性:数值研究

Mechanical Properties and Energy Absorption Characteristics of a Combined Gradient BCC Lattice Structure: A Numerical Study.

作者信息

Zhao Xiangheng, Wang Xiaoqiang, Shang Yunmiao

机构信息

International Education College, Shenyang Aerospace University, Shenyang 110136, China.

Aeronautical and Astronautical College, Shenyang Aerospace University, Shenyang 110136, China.

出版信息

Materials (Basel). 2025 Aug 4;18(15):3652. doi: 10.3390/ma18153652.

Abstract

As a new functional graded lattice structure construction strategy, the relative density gradient strategy has a promising future due to its ease of realization in various lattice structures. This paper proposes a BCC lattice structure combining two different lattice single cells. Based on this, the single cells of different structures are assigned different relative density gradients, resulting in 18 combined gradient lattice structures. Based on proving the experimental feasibility of numerical simulation, the mechanical properties and energy absorption characteristics of the combined gradient lattice structure are investigated by numerical simulation. When applied to composite lattice structures, the proposed wave-like gradient design significantly improves mechanical properties. Among the various gradient strategies examined, several have achieved mechanical performance close to that of uniform lattice structures. To some extent, this approach mitigates the common drawback of gradient lattice structures-where the relative density of the weakest layer is consistently lower than the interlayer relative density of uniform lattice structures-resulting in varying degrees of mechanical performance degradation compared to their uniform counterparts. The proposed linearly enhanced gradient strategy (Strategy-LE) possesses higher SEA and CLE values when the lattice structure is subjected to compressive loading, with an improvement of 6.36% in SEA and 61.6% in CLE over the uniform structure. Through the relative density gradient design, the adaptability of the BCC lattice structure in actual complex application scenarios is greatly enhanced, and the energy-absorbing properties of the lattice structure are greatly improved.

摘要

作为一种新型的功能梯度晶格结构构建策略,相对密度梯度策略因其易于在各种晶格结构中实现而具有广阔的前景。本文提出了一种结合两种不同晶格单胞的体心立方晶格结构。在此基础上,为不同结构的单胞赋予不同的相对密度梯度,从而得到18种组合梯度晶格结构。在证明数值模拟实验可行性的基础上,通过数值模拟研究了组合梯度晶格结构的力学性能和能量吸收特性。当应用于复合晶格结构时,所提出的波浪状梯度设计显著提高了力学性能。在所研究的各种梯度策略中,有几种已实现的力学性能接近均匀晶格结构。在一定程度上,这种方法减轻了梯度晶格结构的常见缺点,即最薄弱层的相对密度始终低于均匀晶格结构的层间相对密度,导致与其均匀对应结构相比,力学性能有不同程度的下降。所提出的线性增强梯度策略(策略-LE)在晶格结构承受压缩载荷时具有更高的比吸能(SEA)和比能容(CLE)值,与均匀结构相比,SEA提高了6.36%,CLE提高了61.6%。通过相对密度梯度设计,大大增强了体心立方晶格结构在实际复杂应用场景中的适应性,同时极大地提高了晶格结构的吸能性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/131a/12348561/2f7aa97002e5/materials-18-03652-g004.jpg

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