Piezoelectric Pins

Piezoelectric pins are compact engineering components that convert mechanical force, vibration, or pressure into an electrical signal, or use an applied voltage to produce controlled motion. They rely on the piezoelectric effect, in which deformation of a piezoelectric material shifts electric charge and creates a measurable voltage, while an electric field causes the material to strain. Their pin-shaped form supports localized force detection, impact sensing, vibration monitoring, and precision actuation in mechanical and electromechanical systems. Because they respond rapidly and require no conventional magnetic components, piezoelectric pins are useful for compact sensors, condition monitoring, and feedback systems where high sensitivity and fast response are important.

Piezoelectric Pins - Related Videos

Research

JoVE Journal - Engineering

Characterization of Full Set Material Constants and Their Temperature Dependence for Piezoelectric Materials Using Resonant Ultrasound Spectroscopy

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Cited by 8 •

2016

This protocol describes the procedure of measuring the temperature dependence of the full set material constants of piezoelectric materials using resonant ultrasound spectroscopy (RUS).

Preparation of ZnO Nanorod/Graphene/ZnO Nanorod Epitaxial Double Heterostructure for Piezoelectrical Nanogenerator by Using Preheating Hydrothermal

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Cited by 4 •

2016

One-step fabrication method for obtaining freestanding epitaxial double heterostructure is presented. This approach could achieve ZnO coverage with a higher number density than that of the epitaxial single heterostructure, leading to a piezoelectric nanogenerator with an increased output electrical performance.

Education

JoVE Core - Mechanical Engineering

Euler's Formula for Pin-Ended Columns

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2024

In structural engineering, the stability of columns under compressive axial loads is a critical consideration, described as buckling. A typical example involves a column PQ, which is pin-connected at both ends and subjected to a centric axial load F applied at one end, with a reaction force of F' = -F at the other end. Here, it is crucial to understand that when an applied load exceeds the critical load, buckling occurs as the system becomes unstable. To calculate the critical load, envision...

Experiments on Ultrasonic Lubrication Using a Piezoelectrically-assisted Tribometer and Optical Profilometer

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Cited by 3 •

2015

We present a protocol for using a piezoelectrically-assisted tribometer and optical profilometer to investigate the dependence of ultrasonic wear and friction reduction on linear velocity, contact pressure, and surface properties.

Transverse Fracture of the Mouse Femur with Stabilizing Pin

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Cited by 3 •

2021

This protocol describes a method to perform fractures on adult mice and monitor the healing process.

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