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February 24, 20260 citationsOpen Access

3D−Printed Gradient TPMS Sandwich Structures: A Study on Bending Performance

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SYShuguang YaoXGXinyu GuMXMinhan Xie

Key Points

  • This research aims to explore the bending performance of gradient TPMS sandwich structures produced via 3D printing.
  • Designed and fabricated three gradient TPMS core sandwich structures using SLM 3D printing.
  • Conducted three-point bending tests to evaluate bending performance.
  • Developed finite element models to validate experimental findings.
  • Gradient TPMS structures show improved bending stiffness and energy absorption compared to conventional designs.
  • Flexural performance can be adjusted using gradient coefficients, enhancing overall efficiency.

Abstract

Triply Periodic Minimal Surface (TPMS) sandwich structures are excellent lightweight load−bearing structures, yet existing 3D printing solutions focus on homogeneous TPMS lattices or their compressive behavior, lacking research on gradient−thickness TPMS core flexural performance. This study designs and fabricates three gradient TPMS core sandwich structures via SLM 3D printing, systematically investigating their bending performance, failure mechanisms and energy absorption through three−point bending tests and validated finite element models (deviation < 7.9%). We reveal the gradient coefficient’s regulatory effect on different TPMS topologies, propose a z−axis gradient−thickness design to synergistically optimize local stiffness and global lightweight, and establish accurate performance prediction models. Compared with conventional 3D−printed structures, the proposed gradient TPMS structures exhibit superior bending stiffness, peak load and energy absorption, with flexural performance flexibly tunable via gradient coefficients. This work fills key research gaps and provides a novel, efficient design approach for high−performance lightweight structures in aerospace and rail transportation.

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Cite This Study

Yao et al. (2026) studied this question.

synapsesocial.com/papers/699d4028de8e28729cf65352https://doi.org/10.3390/app16042129
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Field-driven design of functionally graded TPMS-based 3D printed sandwich structures: Modeling, printing and testing2025
  2. 2Novel triply periodic minimal surfaces sandwich structures: Mechanical performance and failure analysis2024 · 21 citations
  3. 3Deformation and Energy Absorption Performance of Functionally Graded TPMS Structures Fabricated by Selective Laser Melting2024 · 34 citations
  4. 4Comparative mechanical performance of radially graded triply periodic minimal surface cored sandwich structures2026
  5. 5Bending performance and failure mechanisms of composite sandwich structures with 3D printed hybrid triply periodic minimal surface cores2024 · 10 citations