Sandblasting Peek

Sandblasting PEEK is a surface-treatment method that modifies polyether ether ketone, a chemically resistant, high-performance engineering thermoplastic, to improve its surface characteristics. In this process, pressurized abrasive particles strike the polymer, removing surface material and creating controlled microscale roughness that can increase wettability and mechanical interlocking with coatings, cements, or composite materials. In chemistry and materials research, sandblasting PEEK supports adhesion studies, surface functionalization, and the preparation of polymer components for biomedical, dental, and engineering applications. The treatment parameters, including abrasive type, particle size, pressure, and exposure time, influence surface topography and the resulting performance of the modified material.

Sandblasting Peek - Related Videos

Research

JoVE Journal - Chemistry

Standardized Protocol to Evaluate the Effect of Surface Treatments, Luting Cements, and Thermocycling on PEEK–Composite Bond Strength

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2026

This protocol aims to evaluate the effects of surface treatment protocols, luting cement selection, and thermocycling on the shear bond strength between PEEK and an indirect composite resin.

Research

JoVE Journal - Bioengineering
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Medical-grade Sterilizable Target for Fluid-immersed Fetoscope Optical Distortion Calibration

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Cited by 6 •

2017

This article describes the design and development of a sterilizable custom camera optical distortion calibration target for the peri-operative, fluid-immersed calibration of endoscopes during endoscopic interventions.

Fast Enzymatic Processing of Proteins for MS Detection with a Flow-through Microreactor

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Cited by 1 •

2016

A quick protocol for proteolytic digestion with an in-house built flow-through tryptic microreactor coupled to an electrospray ionization (ESI) mass spectrometer is presented. The fabrication of the microreactor, the experimental setup and the data acquisition process are described.

Exploring X Chromosomal Aberrations in Ovarian Cells by Using Fluorescence In Situ Hybridization

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2023

This article presents two methods based on fluorescence in situ hybridization to determine the X chromosomal content of ovarian cells in non-grafted and grafted ovarian cortex tissue from females with X chromosomal aberrations.

In Situ Characterization of Shewanella oneidensis MR1 Biofilms by SALVI and ToF-SIMS

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Cited by 8 •

2017

This article presents a method for growing a biofilm for in situ time-of-flight secondary ion mass spectrometry for chemical mapping in its hydrated state, enabled by a microfluidic reactor, System for Analysis at the liquid Vacuum Interface. The Shewanella oneidensis MR-1 with green fluorescence protein was used as a model.

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