Optimization of wear behavior of heat-treated Ti-6Al-7Nb biomedical alloy by response surface methodology

SA Hussain, M Panchal, KV Allamraju, U Rajak… - Environmental …, 2023 - Elsevier
Titanium-based metals are used most often in biomedical implant studies because they
have good qualities like being biocompatible, not being poisonous, Osseo-integration, high …

Optimization of wear behavior of heat-treated Ti-6Al-7Nb biomedical alloy by response surface methodology.

SA Hussain, M Panchal, KV Allamraju, U Rajak… - 2023 - cabidigitallibrary.org
Titanium-based metals are used most often in biomedical implant studies because they
have good qualities like being biocompatible, not being poisonous, Osseo-integration, high …

Optimization of wear behavior of heat-treated Ti-6Al-7Nb biomedical alloy by response surface methodology.

SA Hussain, M Panchal, KV Allamraju… - Environmental …, 2023 - europepmc.org
Titanium-based metals are used most often in biomedical implant studies because they
have good qualities like being biocompatible, not being poisonous, Osseo-integration, high …

Optimization of wear behavior of heat-treated Ti-6Al-7Nb biomedical alloy by response surface methodology

SA Hussain, M Panchal, KV Allamraju… - Environmental …, 2023 - ui.adsabs.harvard.edu
Titanium-based metals are used most often in biomedical implant studies because they
have good qualities like being biocompatible, not being poisonous, Osseo-integration, high …

Optimization of wear behavior of heat-treated Ti-6Al-7Nb biomedical alloy by response surface methodology

SA Hussain, M Panchal, KV Allamraju… - Environmental …, 2023 - pubmed.ncbi.nlm.nih.gov
Titanium-based metals are used most often in biomedical implant studies because they
have good qualities like being biocompatible, not being poisonous, Osseo-integration, high …

[引用][C] Optimization of wear behavior of heat-treated Ti-6Al-7Nb biomedical alloy by response surface methodology

SA Hussain, M Panchal, KV Allamraju… - Environmental …, 2023 - ui.adsabs.harvard.edu
Optimization of wear behavior of heat-treated Ti-6Al-7Nb biomedical alloy by response surface
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