Crack-based and hair-like sensors inspired from arthropods: A review

C Zhang, J Zhang, D Chen, X Meng, L Liu… - Journal of Bionic …, 2020 - Springer
Over a long period of time, arthropods evolve to have two excellent mechanical sensilla of
slit sensilla and trichobothria sensilla, which construct a perfect perception system. The …

Enhanced flow sensing with interfacial microstructures

Y Jiang, P Zhao, Z Ma, D Shen, G Liu… - Biosurface and …, 2020 - Wiley Online Library
Biological flow receptors show astonishing performance and are used as models for the
design of novel flow sensors. However, the functional importance of interfacial …

Nonlinear estimation-based dipole source localization for artificial lateral line systems

AT Abdulsadda, X Tan - Bioinspiration & biomimetics, 2013 - iopscience.iop.org
As a flow-sensing organ, the lateral line system plays an important role in various behaviors
of fish. An engineering equivalent of a biological lateral line is of great interest to the …

Soft airflow sensors with artificial hair structures and printed ionogel channels for wind gust detection for small uncrewed vehicles

T Kim, HS Shin, KH Nam… - … ASME Transactions on …, 2023 - ieeexplore.ieee.org
This article describes the design of a soft airflow sensor capable of detecting the direction
and the magnitude of airflow, taking advantage of an additive manufacturing technique for …

Air flow sensing using micro-wire-bonded hair-like hot-wire anemometry

MM Sadeghi, RL Peterson, K Najafi - Journal of Micromechanics …, 2013 - iopscience.iop.org
We introduce a novel, low-cost and high-performance hot-wire air flow sensor which utilizes
a bond-wire as the sensing element. Standard wire-bonding methods are used to form the …

Fabrication of graphene/polyimide nanocomposite-based hair-like airflow sensor via direct inkjet printing and electrical breakdown

Y Jiang, D Shen, M Liu, Z Ma, P Zhao… - Smart Materials and …, 2019 - iopscience.iop.org
Herein we describe the fabrication and characterization of a novel flexible airflow sensor,
consisting of a hair-like polyimide (PI) cantilever beam, a graphene/polyimide …

Bio-inspired flexible airflow sensor with self-bended 3D hair-like configurations

D Shen, Y Jiang, Z Ma, P Zhao, Z Gong, Z Dong… - Journal of Bionic …, 2022 - Springer
This paper presents a novel flexible airflow sensor based on four curved microcantilevers
arranged in a cross-form configuration. A self-bending method based on MEMS technology …

Tactile sensors

U Martinez-Hernandez - Scholarpedia of Touch, 2016 - Springer
Tactile Sensors | SpringerLink Skip to main content Advertisement SpringerLink Account Menu
Find a journal Publish with us Track your research Search Cart Book cover Scholarpedia of …

Bio-inspired flow sensor from printed PEDOT: PSS micro-hairs

H Devaraj, J Travas-Sejdic, R Sharma… - Bioinspiration & …, 2015 - iopscience.iop.org
This paper reports on the creation of a low-cost, disposable sensor for low flow velocities,
constructed from extruded micro-sized'hair'of conducting polymer PEDOT. These …

Flow separation sensing on airfoil using a 3D printed biomimetic artificial hair sensor

K Rajasekaran, HD Bae, S Bergbreiter… - Bioinspiration & …, 2022 - iopscience.iop.org
Small-scale unmanned air vehicles require lightweight, compact, and low-power sensors
that encompass a variety of sensing modalities to enable flight control and navigation in …