Properties of Lightweight Aggregate Concrete Reinforced with Carbon and/or Polypropylene Fibers. [PDF]
Wei H, Wu T, Yang X.
europepmc +1 more source
Nature‐Derived Chitosan Biopolymer: A Promising Candidate for Sustainable Electronics
In the creation of environmentally friendly devices, nature‐derived chitosan biopolymer is a promising contender for sustainable electronic research. It can be utilized to create more ecologically friendly scalable gadgets and has a variety of uses in different active layers of electronics.
Joshua McDonald +3 more
wiley +1 more source
Recycled Expanded Polystyrene as Lightweight Aggregate for Environmentally Sustainable Cement Conglomerates. [PDF]
Petrella A, Di Mundo R, Notarnicola M.
europepmc +1 more source
Flexible Tactile Actuator Arrays With Integrated Electroosmotic Pumps for Wearable Haptic Systems
1 ×$\times$ 9 and 4 ×$\times$ 4 flexible tactile actuator arrays integrating electroosmotic pumps are developed to deliver pressure and vibration feedback on wearable platforms. Their thin, compliant structure conforms seamlessly to curved body surfaces, providing intimate contact and enhanced haptic sensations.
Heejin Yu, Joonbum Bae
wiley +1 more source
Size Effect in Compressive Strength Tests of Cored Specimens of Lightweight Aggregate Concrete. [PDF]
Domagała L.
europepmc +1 more source
LIGHTWEIGHT AGGREGATE·ARTIFICIAL AGGREGATE
openaire +1 more source
In this study, a highly conductive polymer ink was developed and printed using a high‐resolution 3D printing technique. The printed structures showed excellent electrical performance and fine detail. These features make them suitable for biosensing applications, enabling accurate detection and improved device performance in compact and customizable ...
Farnaz Rezaei +3 more
wiley +1 more source
Strength, Drying Shrinkage, and Carbonation Characteristic of Amorphous Metallic Fiber-Reinforced Mortar with Artificial Lightweight Aggregate. [PDF]
Choi SJ, Kim JH, Bae SH, Oh TG.
europepmc +1 more source
A strain‐activated mechanical metamaterial is developed to achieve programmable dual‐phase stiffness through an intrinsic geometric locking mechanism. Finite element modeling and parametric analysis identify the key design parameters governing activation strain, stiffness transition, and energy absorption.
Ramin Yousefi‐Nooraie +3 more
wiley +1 more source
Performance Degradation and Microscopic Analysis of Lightweight Aggregate Concrete after Exposure to High Temperature. [PDF]
Yao W, Pang J, Liu Y.
europepmc +1 more source

