![]() Promising applications of PEEK biomaterial are dental implant 3, temporary abutment and fixed prosthesis 11 and removable denture 12, and finger prosthesis 13. Nothing contained herein is to be interpreted as a license or authorization to operate under or infringe any patent. The PEEK emerged in the late 1990s as a semi-crystalline material and showed excellent biological, mechanical, and physical properties for biomedical applications. Fluorotherm™ Polymers Inc does not assume legal responsibility for the use of data presented here in any form, under any circumstances, any application, test or communication. The suitability of any material under specific conditions of application is not guaranteed in any manner. ![]() NOTE: The information, recommendations and opinions contained herein is only a guide and is intended solely for your consideration, inquiry and verification. Glass Transition Temperature 240 ☌ 460 ☏ Heat Deflection Temperature At 1. ![]() As a thermoplastic, ABS material is recyclable. Set the chart below for details of the material properties of ABS. hardness, impact strength and elastic modulus. + Numerical rating for flame spread is not intended to reflect hazards presented by this or any other material under actual fire conditions Thermal Properties Coefficient of thermal expansion ( x10-6 K-1) 47/108: Heat-deflection temperature - 0. PEEK (Polyetheretherketone) PETG Polyethersulfone (PES) Polyethylene (HDPE/LDPE). Heat Distortion Temperature, 66 lb/sq.in (0.455 MPa) PFA – Perfluoroalkoxy (vinyl ether) - TYPICAL PROPERTIES Property (2016) Polymer Degradation and Stability, vol. We find that significant changes do occur, and our results have implications for the use of ion implantation to create plastic electronic and sensor devices.Chemical Properties and Reasoning Reduced Chain Length Antoine and Dantras, Eric and Lacabanne, Colette Specific heat capacity and thermal conductivity of PEEK/Ag nanoparticles composites determined by Modulated-Temperature Differential Scanning Calorimetry. The overall objectives of this study are to understand and quantify how ion implantation affects the thermal and optical properties of the polymer, particularly within the implant region. At low chopping frequencies information concerning the properties of the bulk is obtained. Since the thermal diffusion length varies inversely with the square root of chopping modulation frequency, at high chopping frequencies surface information is obtained. Contact us to discuss how we can fulfill your material needs. We also are a distributor of PEEK material. Additionally, using PAS we carried out a quantitative depth profile analysis of the optical properties of the ion implanted PEEK films. Contact a Dielectric Manufacturing knowledge expert to discuss the use of Polyetheretherketone (PEEK) thermoplastic for fabrication of your plastic parts. faq PEEK Compounds Carbon and glass-filled PEEK grades can enhance certain properties to deliver longer lifetime compared to metals. From these fits we obtained the thermal diffusivity coefficient, the thermal conductivity, and the specific heat of the samples, as well as a value for the condensed phase optical gap. 40+ fast fact 1 PEEK expert 40+ years unmatched knowledge and experience spanning polymers, forms and parts. Equations for both the intensity and the phase of the PPE signal were used to fit the experimental results. PEEK (Polyetheretherketone) Colour black Density 1. The photopyroelectric (PPE) intensity signal and its phase were independently measured as a function of wavelength and chopping frequency in the saturation part of the PPE spectrum. Photothermal spectroscopies, photopyroelectric spectroscopy and photoacoustic spectroscopy (PAS), were used to study the thermal and optical properties of untreated and N + ion implanted polyetheretherketone (PEEK) films. ![]()
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