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Design, development, and optimizatio...
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Kumar, K. (1968-)
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Design, development, and optimization of bio-mechatronic engineering products
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Design, development, and optimization of bio-mechatronic engineering products/ Kaushik Kumar and J. Paulo Davim, editors.
其他作者:
Kumar, K.
出版者:
Hershey, Pennsylvania :IGI Global, : 2019.,
面頁冊數:
1 online resource (xix, 312 p.)
內容註:
Section 1. Review of the state of the art. Chapter 1. A systematic aurvey of the realm of biomechanics: a mechanical engineer's perspective ; Chapter 2. A brief history of prosthetics and orthotics of the lower body and their types ; Chapter 3. Bioresorbable composites and implant -- Section 2. Scaffolds and tissue engineering. Chapter 4. Scaffolds and tissue engineering applications by 3D bio-printing process: a new approach -- Section 3. Prosthesis: design, machining, and optimization. Chapter 5. Design of a prosthetic ankle complex: a study in biomimetic system design ; Chapter 6. Experimental investigation on ECMM with nimonic 75 alloy for prosthetic component ; Chapter 7. Correction of artifacts and optimization of atomic force microscopy imaging: a case of thin aluminum films for prosthetic applications ; Chapter 8. Optimization methods for minimizing induced stress during tensile testing of prosthetic composite materials -- Section 4. Orthotics. Chapter 9. A review on materials for orthotic devices: processing and characterization ; Chapter 10. Modeling and numerical analysis of advanced machining for orthotic components.
標題:
Prosthesis - Design and construction. -
電子資源:
http://services.igi-global.com/resolvedoi/resolve.aspx?doi=10.4018/978-1-5225-8235-9
ISBN:
9781522582366 (ebk.)
Design, development, and optimization of bio-mechatronic engineering products
Design, development, and optimization of bio-mechatronic engineering products
[electronic resource] /Kaushik Kumar and J. Paulo Davim, editors. - Hershey, Pennsylvania :IGI Global,2019. - 1 online resource (xix, 312 p.)
Includes bibliographical references and index.
Section 1. Review of the state of the art. Chapter 1. A systematic aurvey of the realm of biomechanics: a mechanical engineer's perspective ; Chapter 2. A brief history of prosthetics and orthotics of the lower body and their types ; Chapter 3. Bioresorbable composites and implant -- Section 2. Scaffolds and tissue engineering. Chapter 4. Scaffolds and tissue engineering applications by 3D bio-printing process: a new approach -- Section 3. Prosthesis: design, machining, and optimization. Chapter 5. Design of a prosthetic ankle complex: a study in biomimetic system design ; Chapter 6. Experimental investigation on ECMM with nimonic 75 alloy for prosthetic component ; Chapter 7. Correction of artifacts and optimization of atomic force microscopy imaging: a case of thin aluminum films for prosthetic applications ; Chapter 8. Optimization methods for minimizing induced stress during tensile testing of prosthetic composite materials -- Section 4. Orthotics. Chapter 9. A review on materials for orthotic devices: processing and characterization ; Chapter 10. Modeling and numerical analysis of advanced machining for orthotic components.
"This book explores the design and development of bio-mechanical engineering products across the globe"--
ISBN: 9781522582366 (ebk.)Subjects--Topical Terms:
3510641
Prosthesis
--Design and construction.
LC Class. No.: RD130 / .D47 2019
Dewey Class. No.: 617.9
Design, development, and optimization of bio-mechatronic engineering products
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Section 1. Review of the state of the art. Chapter 1. A systematic aurvey of the realm of biomechanics: a mechanical engineer's perspective ; Chapter 2. A brief history of prosthetics and orthotics of the lower body and their types ; Chapter 3. Bioresorbable composites and implant -- Section 2. Scaffolds and tissue engineering. Chapter 4. Scaffolds and tissue engineering applications by 3D bio-printing process: a new approach -- Section 3. Prosthesis: design, machining, and optimization. Chapter 5. Design of a prosthetic ankle complex: a study in biomimetic system design ; Chapter 6. Experimental investigation on ECMM with nimonic 75 alloy for prosthetic component ; Chapter 7. Correction of artifacts and optimization of atomic force microscopy imaging: a case of thin aluminum films for prosthetic applications ; Chapter 8. Optimization methods for minimizing induced stress during tensile testing of prosthetic composite materials -- Section 4. Orthotics. Chapter 9. A review on materials for orthotic devices: processing and characterization ; Chapter 10. Modeling and numerical analysis of advanced machining for orthotic components.
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http://services.igi-global.com/resolvedoi/resolve.aspx?doi=10.4018/978-1-5225-8235-9
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