The need for more effective and efficient manufacturing processes to transform the biocompatible materials into high standard artificial human body components (implants) is rapidly growing. Machining of biocompatible materials as one of the key processes in manufacturing of implants need to be improved due to the significant effects of machined surface quality to the compatibility and osseointegration with human organs such as tissues, bones, and environment of the human body. The challenges of machining biocompatible materials due to their applications as bio-implants in the human body and the nature of materials properties and microstructures have been explored and solved by various researchers. This article reviews the trends and develop...
The article is devoted to the scientific problem associated with the production and processing of bi...
Mechanical engineering is science discipline, which directly influence all industrial sectors. It is...
This review discusses various grades of titanium biomaterials and their sustainable grindability for...
Machining of biocompatible materials is facing the fundamental challenges due to the specific materi...
The machining process is the most common method for metal cutting, especially in the fabrication of ...
Nowadays, biomaterials have attained great importance in medical sector owing to the urgent requirem...
There has been an increasing demand for biomedical devices including various instruments, apparatus...
There is a tremendous increase in the demand for converting biomaterials into high-quality industria...
Additive manufacturing (AM) is the opposite of conventional manufacturing technologies, creating an ...
The modern orthopaedic implants for applications in hips, knees, shoulders, and spines are composed ...
AbstractBesides high geometrical accuracy medical devices strongly require a good surface integrity ...
The demand of synthetic implants for good quality of life is high and increasing continuously due to...
Micro-end milling is one of the promising methods for rapid fabrication of features with 3D complex ...
The chapter describes the machining of compact and cancellous bone using a micromachining tool with ...
With the ability to fabricate complex structures while meeting individual needs, additive manufactur...
The article is devoted to the scientific problem associated with the production and processing of bi...
Mechanical engineering is science discipline, which directly influence all industrial sectors. It is...
This review discusses various grades of titanium biomaterials and their sustainable grindability for...
Machining of biocompatible materials is facing the fundamental challenges due to the specific materi...
The machining process is the most common method for metal cutting, especially in the fabrication of ...
Nowadays, biomaterials have attained great importance in medical sector owing to the urgent requirem...
There has been an increasing demand for biomedical devices including various instruments, apparatus...
There is a tremendous increase in the demand for converting biomaterials into high-quality industria...
Additive manufacturing (AM) is the opposite of conventional manufacturing technologies, creating an ...
The modern orthopaedic implants for applications in hips, knees, shoulders, and spines are composed ...
AbstractBesides high geometrical accuracy medical devices strongly require a good surface integrity ...
The demand of synthetic implants for good quality of life is high and increasing continuously due to...
Micro-end milling is one of the promising methods for rapid fabrication of features with 3D complex ...
The chapter describes the machining of compact and cancellous bone using a micromachining tool with ...
With the ability to fabricate complex structures while meeting individual needs, additive manufactur...
The article is devoted to the scientific problem associated with the production and processing of bi...
Mechanical engineering is science discipline, which directly influence all industrial sectors. It is...
This review discusses various grades of titanium biomaterials and their sustainable grindability for...