Suppr超能文献

新型胎压监测系统及三明治结构随机点阵芯体的低速冲击响应

Low-Velocity Impact Response of Novel TPMS and Stochastic Lattice Cores of Sandwich Structures.

作者信息

Vasile Alexandru, Constantinescu Dan Mihai, Coropețchi Iulian Constantin, Sorohan Ștefan, Indreș Andrei Ioan

机构信息

Department of Strength of Materials, National University for Science and Technology POLITEHNICA Bucharest, Splaiul Independeţei 313, 060042 Bucharest, Romania.

Faculty of Aircraft and Military Vehicles, Military Technical Academy "Ferdinand I", Boulevard George Coşbuc 39-49, 050141 Bucharest, Romania.

出版信息

Materials (Basel). 2025 Jun 18;18(12):2889. doi: 10.3390/ma18122889.

Abstract

This study explores the mechanical performance of triply periodic minimal surface (TPMS) and stochastic lattice structures subjected to low-velocity impact. Two structurally promising geometries-one TPMS-based and one stochastic-were tested and compared with the well-established gyroid. Specimens were fabricated using stereolithography (SLA) and subjected to impact energies of 30 J and 40 J to assess the structural response and energy absorption capabilities. Experimental results show that the proposed TPMS structure exhibits higher impact forces compared with the gyroid, which are associated with significant impactor displacement and deep indentation. These samples demonstrated extensive damage, with cracking propagating through the entire core at higher energies, highlighting their susceptibility to structural failure despite their high initial strength. On the contrary, the stochastic structures allowed localized deformation in the impacted region, thus successfully avoiding catastrophic failure. The impact force efficiency was higher for both gyroid and stochastic geometries, with values ranging between 0.6 and 0.7, indicating effective energy absorption with reduced internal stress gradients. Furthermore, the evaluation of damping performance showed that most structures displayed high damping, as minimal energy was transferred back to the impactor. This work highlights the feasibility and functional versatility of TPMS and stochastic geometries for use in impact mitigation, vibration control, and related engineering applications.

摘要

本研究探讨了三重周期性极小曲面(TPMS)和随机晶格结构在低速冲击下的力学性能。测试了两种在结构上有前景的几何形状——一种基于TPMS,另一种是随机的——并与成熟的类螺旋面进行了比较。使用立体光刻(SLA)制造样本,并使其承受30 J和40 J的冲击能量,以评估结构响应和能量吸收能力。实验结果表明,与类螺旋面相比,所提出的TPMS结构表现出更高的冲击力,这与显著的冲击器位移和深凹痕有关。这些样本显示出广泛的损伤,在较高能量下裂纹贯穿整个核心,突出了它们尽管初始强度高但仍易发生结构失效的特点。相反,随机结构允许在冲击区域局部变形,从而成功避免了灾难性失效。类螺旋面和随机几何形状的冲击力效率都更高,值在0.6到0.7之间,表明能有效吸收能量并降低内部应力梯度。此外,阻尼性能评估表明,大多数结构显示出高阻尼,因为极少能量反馈回冲击器。这项工作突出了TPMS和随机几何形状在冲击缓解、振动控制及相关工程应用中的可行性和功能多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9ff/12195225/40e1b5c0ec7d/materials-18-02889-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验