Results 41 to 50 of about 198 (159)
This review presents recent advances in highly oxidized SWCNTs, which retain sp2 structural integrity while offering abundant surface functionalities and dispersant‐free processability. It highlights controlled oxidation strategies, enhanced interfacial reactivity, and their broad applicability—from wet‐spun fibers and chemical sensors to ...
Joo Hwan Jin +9 more
wiley +1 more source
A Laminating Strategy to Manyfold Enhance the Elastic Stretchability of Stretchable Electronics
We propose a laminating strategy that laminates a thick‐polymer layer onto the thin‐ribbon metallic structure. Using serpentine structures on soft and hard substrates as representative cases, this approach increases elastic stretchability by 3.5‐fold and 2.3‐fold.
Zanxin Zhou +6 more
wiley +1 more source
Hybrid wrinkled topographies coordinate immune, tissue, and bacterial interactions. The surfaces promote osteointegration, tune macrophage polarization, and inhibit biofilm formation, highlighting a multifunctional strategy for next‐generation implant design.
Mohammad Asadi Tokmedash +4 more
wiley +1 more source
Effect of Prestrain on Bake Hardening property of Ultra-Low Carbon Bake Hardening (ULC-BH) Steel
The bake hardening values ( BH) of ULC-BH steel 1 mm annealed cold rolled sheet (/%: 0. 002C, 0. 008Si, 0. 60Mn, 0. 043P, 0. 009S, 0. 031 Al, 0.017Ti) with prestraining by 2% ~ 10% and baking al 170 °C for 20 min have been measured, and the effect of ...
杨晰, 李维娟, 金晓龙, 孙成钱
doaj
A computational framework for optimizing strain sensor placement in wearable motion tracking systems is presented. By combining dense strain mapping with a genetic algorithm, the method discovers counterintuitive yet highly effective configurations that reduce joint angle error by 32%.
Minu Kim +4 more
wiley +1 more source
The Tunable Usability‐Nourished Electrostatic‐based self‐powered force sensor (TUNE sensor) is presented as a solution to the inherent limitation of fixed detection performance in conventional single sensors. Its tunable sensing capability is realized through mechano‐guided geometric adaptation of a three‐dimensional (3D) structure formed via ...
Dongik Kam +11 more
wiley +1 more source
Sustainable Liquid Metal Composites for Soft Electronics and E‐Waste Reduction
Liquid metal (LM) composites embody recyclability, repairability, renewability, and resilience (4R), offering a sustainable route for soft electronics. With exceptional conductivity, stretchability, and eco‐friendly recovery, these systems enable closed‐loop lifecycles and reduce e‐waste.
Abdollah Hajalilou +2 more
wiley +1 more source
The effects of room temperature compressive pre-straining on mechanical properties and microstructure of Selected Laser Melted (SLM) inconel 718 (IN718) is elucidated and compared with those of forged material.
Sajjad Lohrasbi, Soheil Nakhodchi
doaj +1 more source
Effect of Cyclic Heat Treatment on the Mechanical Properties and Microstructure of Al 6061 Alloy
This study investigates the influence of different cyclic heat‐treatment schedules on the mechanical behavior and microstructural evolution of Al 6061 alloy. Five identically sourced plates were subjected to controlled variations in quenching rate, aging temperature, and cooling conditions to establish a consistent microstructure–property relationship.
Saurabh Dewangan +4 more
wiley +1 more source
Severe plastic deformation (SPD) is a well‐known processing technique used to impose large plastic strains and modify the mechanical properties of metal‐based materials. In this work, SPD was introduced into A6061 aluminum alloy sheets via two forming processes: differential diameter rolling (DDR) and V‐bending.
Raed R. Shwaish +5 more
wiley +1 more source

