In this work, laser coating of biphasic calcium phosphate/titanium (BCP/Ti) nanocomposite on Ti-6Al-4 V substrates was developed. A continuous wave neodymium-doped yttrium aluminium garnet (Nd:YAG) laser was used to form a robust multilayer of BCP/Ti nanocomposite starting from hydroxyapatite and titanium nanoparticles. In this process, low power coating is realized because of the strong laser−nanoparticle interaction and good sinterability of nanosized titanium. To guide the optimization of laser processing conditions for the coating process, a multiphysics model coupling electromagnetic module with heat transfer module was developed. This model was validated by laser coating experiments. Important features of the coated samples, including...
Apatite coatings were deposited on titanium surfaces modified by Nd:YVO(4) laser at different energy...
Apatite coating was applied on titanium surfaces modified by Nd:YVO4 laser ablations with different ...
To accelerate the bone growth around a metallic implant and to achieve the mechanical characteristic...
Coating of bioceramic material, Hydroxyapatite (HAp), on metal implant has attracted many attentions...
Though calcium phosphate (CaP) coated implants are commercially available, its acceptance is still n...
A method of synthesising a biocompatible HAP coating is presented. In the current study, Nd:YAG lase...
Calcium phosphate coatings are known to enhance long-term fixation, reliability and promote osteoint...
Composite coatings of titanium reinforced separately with hydroxyapatite (HAp) and bioglass (BG) wer...
Calcium phosphate coatings are known to enhance long-term fixation, reliability and promote osteoint...
Calcium phosphate bioceramics are recognized as one of the most biocompatible materials and are wide...
The surface physico-chemistry of metallic implants governs their successful long-term functionality ...
Hydroxyapatite (HAP) coatings on bioinert metals such as Ti–6Al–4V are necessary for biomedical appl...
AbstractApatite coating was applied on titanium surfaces modified by Nd:YVO4 laser ablations with di...
Composite coatings made of hydroxyapatite (HA) and titanium alloy (Ti-6Al-4V) have potential biomedi...
Hydroxyapatite (HA) is one of the most commonly used materials for the coating of bioceramic titaniu...
Apatite coatings were deposited on titanium surfaces modified by Nd:YVO(4) laser at different energy...
Apatite coating was applied on titanium surfaces modified by Nd:YVO4 laser ablations with different ...
To accelerate the bone growth around a metallic implant and to achieve the mechanical characteristic...
Coating of bioceramic material, Hydroxyapatite (HAp), on metal implant has attracted many attentions...
Though calcium phosphate (CaP) coated implants are commercially available, its acceptance is still n...
A method of synthesising a biocompatible HAP coating is presented. In the current study, Nd:YAG lase...
Calcium phosphate coatings are known to enhance long-term fixation, reliability and promote osteoint...
Composite coatings of titanium reinforced separately with hydroxyapatite (HAp) and bioglass (BG) wer...
Calcium phosphate coatings are known to enhance long-term fixation, reliability and promote osteoint...
Calcium phosphate bioceramics are recognized as one of the most biocompatible materials and are wide...
The surface physico-chemistry of metallic implants governs their successful long-term functionality ...
Hydroxyapatite (HAP) coatings on bioinert metals such as Ti–6Al–4V are necessary for biomedical appl...
AbstractApatite coating was applied on titanium surfaces modified by Nd:YVO4 laser ablations with di...
Composite coatings made of hydroxyapatite (HA) and titanium alloy (Ti-6Al-4V) have potential biomedi...
Hydroxyapatite (HA) is one of the most commonly used materials for the coating of bioceramic titaniu...
Apatite coatings were deposited on titanium surfaces modified by Nd:YVO(4) laser at different energy...
Apatite coating was applied on titanium surfaces modified by Nd:YVO4 laser ablations with different ...
To accelerate the bone growth around a metallic implant and to achieve the mechanical characteristic...