Engineering

Engineering

ISSN Print: 1947-3931
ISSN Online: 1947-394X
www.scirp.org/journal/eng
E-mail: eng@scirp.org
"A Study on Mechanical Properties of PMMA/Hydroxyapatite Nanocomposite"
written by S. M. Zebarjad, S. A Sajjadi, T. Ebrahimi Sdrabadi, S. A Sajjadi, A Yaghmaei, B Naderi,
published by Engineering, Vol.3 No.8, 2011
has been cited by the following article(s):
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[3] PMMA-Based Nanocomposites for Odontology Applications: A State-of-the-Art
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[4] Preparation of new bio-based antibacterial acrylic bone cement via modification with a biofunctional monomer of nitrofurfuryl methacrylate
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[5] Filler loading effect of Al2O3/TiO2 nanoparticles on physical and mechanical characteristics of dental base composite (PMMA)
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[6] Fabrication of elastin additive on polymethyl methacrylate and hydroxyapatite-based bioactive bone cement
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[7] Mechanical and morphological characterization of nano-hydroxyapatite (nHA) for bone regeneration: A mini review
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[8] Development of modified polymethyl methacrylate and hydroxyapatite (PMMA/HA) biomaterial composite for orthopaedic products
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[9] Promoting in-vivo bone regeneration using facile engineered load-bearing 3D bioactive scaffold
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[10] Enhancing structural strength and improving cell survival through Polycaprolactone/(gelatin/hydroxyapatite) Core‐Shell nanofibers for tissue engineering
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[11] Incorporation of graphene nanoplatelets/hydroxyapatite in PMMA bone cement for characterization and enhanced mechanical properties of biopolymer composites
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[12] Comparison between Conventional PMMA and 3D Printed Resins for Denture Bases: A Narrative Review
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[13] Physicochemical changes of hydroxyapatite, V2O5, and graphene oxide composites for medical usages
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[14] Mechanical Properties and Wear Behavior of Polypropylene/Hydroxyapatite Nanocomposite
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[15] Graphene quantum dots, graphene nanoplatelets, and graphene nanoribbons with polymers
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[16] Investigation of the Effect of Waste Materials on the Properties of the Composite Polymer Prosthetics Limbs.
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[17] Mixed Polymethylmethacrylate and Hydroxyapatite as a Candidate of Synthetic Graft Materials for Cleft Palate
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[18] طراحی و مشخصه‌یابی نوری و حرارتی پنجره هوشمند نانوکامپوزیت خودتمیزشونده با ویژگی تغییر حالت انکساری شفاف-کدر‎
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[19] Pmma bone cements modified with silane-treated and pmma-grafted hydroxyapatite nanocrystals: Preparation and characterization
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[21] Design and Characterization of Thermal and Optical Properties of Nano-Composite Self-Cleaning Refractive Transparent-Opaque Smart Window
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[22] Dynamics of different ion release from denture-base acrylic resins and their mechanical properties after the addition of bioactive materials
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[23] Three-Dimensional Printing of Hydroxyapatite for Biomedical Applications. Crystals 2021, 11, 353
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[24] The study of optical and photodielectric properties of polymethyl methacrylate and tris‐(8‐hydroxy‐quinoline) aluminum (Alq3) composites
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[25] A review on enhancements of PMMA Denture Base Material with Different Nano-Fillers
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[26] Three-Dimensional Printing of Hydroxyapatite Composites for Biomedical Application
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[27] Effect of Low Hydroxyapatite Loading Fraction on the Mechanical and Tribological Characteristics of Poly (Methyl Methacrylate) Nanocomposites for Dentures
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[28] Synthesis and characterization of magnetic and antibacterial nanoparticles as filler in acrylic cements for bone cancer and comorbidities therapy
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[29] Cellulose bionanocomposites for sustainable planet and people: A global snapshot of preparation, properties, and applications
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[30] Composite Materials for Oral and Craniofacial Repair or Regeneration
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[31] Desenvolvimento, caracterização física e química e análise de propriedades osteogênicas de cimento ósseo poroso à base de PMMA contendo estrôncio
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[32] Mechanical and thermal properties of PMMA resin composites for interim fixed prostheses reinforced with calcium β-pyrophosphate.
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[33] The effect of addition of hydroxyapatite from skipjack tuna (katsuwonus pelamis) fish bone flour to the transverse, impact, and tensile strength of heat cured acrylic …
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[34] THE EFFECT OF HYDROXYAPATITE ADDITIVE PRODUCED FROM DIFFERENT RAW MATERIALS TO STRENGTH OF BONE CEMENT
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[35] N-(9-Fluorenylmethoxycarbonyl)-L-Phenylalanine/nano-hydroxyapatite hybrid supramolecular hydrogels as drug delivery vehicles with antibacterial property and …
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[36] Comparative study of some mechanical properties of nanocomposites based on the polymer's blends used for dentures base applications
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[37] Impact Strength, Flexural Modulus and Wear Rate of PMMA Composites Reinforced by Eggshell Powders
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[38] Poly (methyl methacrylate) bone cement, its rise, growth, downfall and future
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[39] Nonbrittle Nanocomposite Materials Prepared by Coprecipitation of TEMPO-Oxidized Cellulose Nanofibers and Hydroxyapatite
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[40] Wear behavior of new biomaterial composite for dental application
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[41] Development prospects of curable osteoplastic materials in dentistry and maxillofacial surgery
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[42] Effect of hydroxyapatite filler concentration on mechanical properties of poly (methyl methacrylate) denture base
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[43] A Disposable Passive Microfluidic Device for Cell Culturing
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[44] A Brief Review on Biomedical Applications of Hydroxyapatite Use as Fillers in Polymer
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[45] Optimasi Parameter Mesin 3D Bioprinter dengan Response Surface Method
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[46] Interactions between HA/GO/epoxy resin nanocomposites: optimization, modeling and mechanical performance using central composite design and genetic algorithm
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[47] Zinc Doped Hydroxyapatite Thin Films Prepared by Sol–Gel Spin Coating Procedure
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[48] Mechanical Properties of Poly Methyl Methacrylate Filled with Orange Peels
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[49] Properties of PMMA Bone Cement Modified with Nano-hydroxyapatite and Acetone
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[50] The Academic Research Community Publication
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[51] Mechanical Properties of (PMMA/CaTiZrO5) the Biocompatible
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[52] The Fracture Toughness of Heat Cured Acrylic-Natural Rubber/Silicone Rubber Blend Reinforced with Pomegranate Peels Powder
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[53] An Experimental Study and Statistical Modelling on Compressive Properties of Epoxy/Graphene/Hydroxyapatite Nanocomposites
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[54] In-vitro biocompatibility, bioactivity, and mechanical strength of PMMA-PCL polymer containing fluorapatite and graphene oxide bone cements
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[55] مطالعه تجربی و مدلسازی آماری خواص فشاری نانوکامپوزیت های اپوکسی/گرافن اکساید/هیدروکسی آپاتیت‎
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[56] Image analysis and the finite element method in the characterization of the influence of porosity parameters on the mechanical properties of porous EVA/PMMA …
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[57] Phosphorylated Chitosan Armed Hydroxyapatite Nanocomposite for Advancing Activity on Osteoblast and Osteosarcoma cells
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[58] Inclusion of Modified Lignocellulose and Nano-hydroxyapatite in Development of New Bio-based Adjuvant Flame Retardant for Poly (lactic acid)
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[59] Physical, mechanical, chemical and thermal properties of nanoscale graphene oxide-poly methylmethacrylate composites
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[60] Sliding Wear and Friction Characteristics of Polymer Nanocomposite PAEK-PDMS with nano-hydroxyapatite and nano-carbon fibres as fillers
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[61] Three in one: β‐cyclodextrin, nanohydroxyapatite, and a nitrogen‐rich polymer integrated into a new flame retardant for poly (lactic acid)
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[62] Synthesis of a hydroxyapatite/poly (methyl methacrylate) nanocomposite using dolomite
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[63] Effects of hydrothermal pressure on in situ synthesis of 3D graphene-hydroxyapatite nano structured powders
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[66] A phosphorylated chitosan armed hydroxyapatite nanocomposite for advancing activity on osteoblast and osteosarcoma cells
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[67] Effect of Polymethylmethacrylate-Hydroxyapatite Composites on Callus Formation and Compressive Strength in Goat Vertebral Body
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[68] Review on poly-methyl methacrylate as denture base materials
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[69] Experimental Evaluation On Mechanical Properties And Wear Resistance In PMMA Seashell Bionanocomposite For Medical Application
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[70] The tension-shear fracture behavior of polymeric bone cement modified with hydroxyapatite nano-particles
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[71] Factorial Design Applied for Evaluation of Effect of Interactions among Precursors on the Thermal Decomposition Temperature of Montmorillonite/Poly (Methyl Methacrylate) Nanocomposites
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[72] Effect of structural transformation of C+-ion implanted PMMA into quasi-continuous carbonaceous layer on its optical and electrical properties
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[73] The mechanical response of a polyetheretherketone femoral knee implant under a deep squatting loading condition
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[74] In Vitro Assessment of Retention and Resistance Failure Loads of Teeth Restored with a Complete Coverage Restoration and Different Core Materials
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[78] Bone Model to Optimize Implant Selection in Total Hip Arthroplasty
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[80] Effect of modified nanohydroxyapatite fillers addition on some properties of heat cured acrylic denture base materials
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[81] Experimental study of 3D-printable biocomposite of [HA/PMMA/Sericin] materials
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[82] Natural and synthetic materials for the regeneration of osseous tissue
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[83] Synthesis of Hydroxyapatite thin films on PMMA Printed Substrates
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[86] Effect of Modified Nano Hydroxyapatite Fillers Addition on Some Properties of Heat Cured Acrylic Denture Base Materials
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[96] Mechanical and tribological properties of hydroxyapatite nanoparticles extracted from natural bovine bone and the bone cement developed by nano-sized bovine hydroxyapatite filler
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1984
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