The reduction of noises, achieved through absorption, is of paramount importance to the well‐being of both humans and machines. Lattice structures, defined as architectured …
Porous solids are widely utilized in natural and engineering systems due to their exceptional specific mechanical response and customizable properties. However, lightweight cellular …
With noises being omnipresent in the modern society, sound-insulating materials are implemented in almost all walks of life. For implementations in practical applications, those …
X Wang, Z Li, J Deng, T Gao, K Zeng… - Advanced Functional …, 2024 - Wiley Online Library
Simultaneous high strength and high toughness are highly sought‐after in lattice metamaterials, but these properties are typically mutually exclusive. To overcome this …
X Wang, X Li, Z Li, Z Wang, W Zhai - Small, 2024 - Wiley Online Library
Characterized by periodic cellular unit cells, microlattices offer exceptional potential as lightweight and robust materials. However, their inherent periodicity poses the risk of …
Helmholtz resonance, based on resonance through a pore-and-cavity structure, constitutes the primary sound absorption mechanism in majority of sound-absorbing metamaterials …
Z Li, X Li, X Wang, Z Wang, W Zhai - ACS Applied Materials & …, 2023 - ACS Publications
Owing to the pervasive noise and crash hazards, tough microlattices with sound absorption capabilities are sought-after. However, typical truss microlattices are unable to fulfill this …
S Pyo, K Park - International Journal of Precision Engineering and …, 2024 - Springer
Mechanical metamaterials (MMs) have emerged as a promising class of engineered materials, distinguished by their unique mechanical behaviors derived from architectural …
X Wang, Z Li, X Li, K Wei, Z Wang - Materials & Design, 2023 - Elsevier
Customizable stress plateau of lattice structure is sought-after for various engineering applications. In this study, we present a new design strategy to achieve customizable …