Cutting ability and durability of surgical blade fabricated from biocompatible Zr-based bulk metallic glass
A biocompatible Zr 54 Al 17 Co 29 bulk metallic glass (BMG) becomes a potential candidate for medical device materials due to its excellent properties; however, the effort to investigate the material performance in medical devices has never been attempted. Surgical blades were developed from Zr 54 A...
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Published in | Advances in materials and processing technologies (Abingdon, England) Vol. 10; no. 3; pp. 2313 - 2330 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
Taylor & Francis
02.07.2024
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Abstract | A biocompatible Zr
54
Al
17
Co
29
bulk metallic glass (BMG) becomes a potential candidate for medical device materials due to its excellent properties; however, the effort to investigate the material performance in medical devices has never been attempted. Surgical blades were developed from Zr
54
Al
17
Co
29
BMG composition using different sizes of plates to address the microstructural variation. Their cutting abilities were investigated using a designed indentation-cutting rig for sharpness tests and compared to commercial carbon steel (CS) blades. While the fully amorphous structure was confirmed in a 2 mm BMG, the presence of nanocrystal phases was implied in the 3 mm BMG. The BMG blades showed extremely higher cutting-edge quality compared to the commercial ones. In addition, the sharpness improvement was shown in 2- and 3-mm BMG blades with the blade sharpness index (BSI) of 0.29 and 0.34 compared to commercial blade BSI of 0.37. The BMG blades also showed good durability indicated by the higher edge resistance from deformation. These phenomena were determined by the absence of grain boundary and dislocation of BMG thus performing a higher elastic strain than the crystalline material to avoid plastic deformation on the extremely small cross-sectional area of the cutting edge during substrate incision. |
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AbstractList | A biocompatible Zr
54
Al
17
Co
29
bulk metallic glass (BMG) becomes a potential candidate for medical device materials due to its excellent properties; however, the effort to investigate the material performance in medical devices has never been attempted. Surgical blades were developed from Zr
54
Al
17
Co
29
BMG composition using different sizes of plates to address the microstructural variation. Their cutting abilities were investigated using a designed indentation-cutting rig for sharpness tests and compared to commercial carbon steel (CS) blades. While the fully amorphous structure was confirmed in a 2 mm BMG, the presence of nanocrystal phases was implied in the 3 mm BMG. The BMG blades showed extremely higher cutting-edge quality compared to the commercial ones. In addition, the sharpness improvement was shown in 2- and 3-mm BMG blades with the blade sharpness index (BSI) of 0.29 and 0.34 compared to commercial blade BSI of 0.37. The BMG blades also showed good durability indicated by the higher edge resistance from deformation. These phenomena were determined by the absence of grain boundary and dislocation of BMG thus performing a higher elastic strain than the crystalline material to avoid plastic deformation on the extremely small cross-sectional area of the cutting edge during substrate incision. |
Author | Pradana, Yanuar Rohmat Aji Aminnudin, Aminnudin Maulana, Arizal Wahono, Wahono Suryanto, Heru Jang, Jason Shian Ching |
Author_xml | – sequence: 1 givenname: Yanuar Rohmat Aji orcidid: 0000-0001-7749-8028 surname: Pradana fullname: Pradana, Yanuar Rohmat Aji email: yanuar.rohmat.ft@um.ac.id organization: Universitas Negeri Malang – sequence: 2 givenname: Arizal surname: Maulana fullname: Maulana, Arizal organization: Universitas Negeri Malang – sequence: 3 givenname: Aminnudin orcidid: 0000-0002-3883-0136 surname: Aminnudin fullname: Aminnudin, Aminnudin organization: Universitas Negeri Malang – sequence: 4 givenname: Wahono orcidid: 0000-0003-0486-305X surname: Wahono fullname: Wahono, Wahono organization: Universitas Negeri Malang – sequence: 5 givenname: Heru orcidid: 0000-0001-7037-1868 surname: Suryanto fullname: Suryanto, Heru organization: Universitas Negeri Malang – sequence: 6 givenname: Jason Shian Ching orcidid: 0000-0002-1894-3520 surname: Jang fullname: Jang, Jason Shian Ching organization: National Central University |
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Al
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Co
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bulk metallic glass (BMG) becomes a potential candidate for medical device materials due to its excellent properties;... |
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SubjectTerms | BMG durability sharpness surgical blade |
Title | Cutting ability and durability of surgical blade fabricated from biocompatible Zr-based bulk metallic glass |
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