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_a9781394197866 _q(electronic bk. : oBook) |
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_a1394197861 _q(electronic bk. : oBook) |
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| 020 | _z9781394197835 | ||
| 024 | 7 |
_a10.1002/9781394197866 _2doi |
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| 035 | _a(OCoLC)1425142587 | ||
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_aDG1 _beng _erda _epn _cDG1 _dOCLCO |
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| 041 | _aeng | ||
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_a670.286 _223/eng/20240306 |
| 245 | 0 | 0 |
_aSustainable machining and green manufacturing / _cedited by S. Thirumalai Kumaran and Tae Jo Ko, editors. |
| 264 | 1 |
_aHoboken, NJ : _bWiley ; _aBeverly, MA : _bScrivener Publishing, _c2024. |
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| 300 | _a1 online resource (352 pages) | ||
| 336 |
_atext _btxt _2rdacontent. |
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| 337 |
_acomputer _bc _2rdamedia. |
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| 338 |
_aonline resource _bcr _2rdacarrier. |
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_2rdacc _0http://rdaregistry.info/termList/RDAColourContent/1003. |
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| 504 | _aIncludes bibliographical references and index. | ||
| 505 | 0 | _aPreface -- 1 Effect of Granite Filler on Mechanical Properties and Free Damping of Silk-Sisal--Reinforced Epoxy Composites 1 K. Sripriyan and S. Karthick -- 1.1 Introduction -- 1.2 Material and Preparation -- 1.3 Result and Discussion -- 1.4 Conclusions -- 2 Effect of Plastic Particulate Addition on Polymer Composite Reinforced with Prosopis juliflora Fiber 13 Sakthi Balan G., Aravind Raj S., Jafrey Daniel James D. and Ramesh -- 2.1 Introduction -- 2.2 Materials and Methods -- 2.3 Results and Discussion -- 2.4 Conclusion -- 3 Effect of Various Manufacturing Techniques on Mechanical Properties of Biofiber-Reinforced Composites 33 M. Sasi Kumar, S. Sathish, M. Makeshkumar, S. Gokulkumar, L. Prabhu, S. Hemalatha, S. Ponnavan and Nancy Chopra -- 3.1 Introduction -- 3.2 Manufacturing Methods -- 3.3 Hand Layup Technique -- 3.4 Compression Techniques -- 3.5 Injection Technique -- 3.6 Filament Techniques -- 3.7 Vacuum-Assisted Resin Transfer Molding Technique -- 3.8 Spray Molding Technique -- 3.9 Conclusion -- 4 Electrical Discharge Machining of Al-B4C Composite for Biomedical Applications 65 S. Suresh Kumar, S. Thirumalai Kumaran, G. Kalusuraman and G. S. Samy -- 4.1 Introduction -- 4.2 Materials and Methods -- 4.3 Results and Discussion -- 4.4 Conclusion -- 5 Green Manufacturing of Natural Fiber Composite 79 Meenal Batra and Alka Bali -- 5.1 Introduction -- 5.2 Characteristics of Natural Fibers -- 5.3 Classes of Natural Fibers -- 5.4 Polymer Matrix -- 5.5 Applications of Natural Fiber Composites -- 5.6 Preprocessing of Natural Fiber Composites -- 5.7 Fabrication of Natural Fiber Composites -- 5.8 Additive Manufacturing -- 5.9 Additive Manufacturing of Different Composites -- 5.10 Critical Issues During Processing of Natural Fiber Composites -- 5.11 Conclusion -- 6 Manufacturing Issues and Process Parameters of Composite Filament for Additive Manufacturing Process 115 Jafrey Daniel James D., Ramesh M., Sakthi Balan G. and Aravind Raj S. -- 6.1 Introduction -- 6.2 Materials and Properties -- 6.3 Results and Discussion -- 6.4 Conclusion -- 7 Material Sustainability During Friction Stir Joining 131 Raheem Al-Sabur and M. Serier -- 7.1 Introduction -- 7.2 FSW Parameters -- 7.3 FSW Sustainability Review -- 7.4 FSW Sustainability Aspects -- 7.5 Recent Modifications in FSW Processes -- 7.6 Recent Applications of FSW -- 7.7 Conclusions -- 8 Plant-Based Biosorbents for Heavy Metal Removal From Wastewater 155 Narmadha V. and Siddhi Sreemahadevan -- 8.1 Introduction -- 8.2 Physical and Chemical Techniques for Heavy Metal Removal -- 8.3 Biological Methods for Heavy Metal Removal -- 8.4 Biochar -- 8.5 Plant-Based Biochar -- 8.6 A Comparison of Techniques for Removing Heavy Metals -- 8.7 Conclusion -- 9 Sustainability in Manufacturing: Welding's Role as a Frontier 177 P. Arunkumar, N. Muthukumaran, K. S. Ramaneedharan, N. S. Mithun, B. Sanjay, K. Solaiyappan, S. Gokul and B. Arulmurugan -- 9.1 Introduction -- 9.2 Sustainability Assessment in Welding -- 9.3 Welding Processes Study on Sustainability Assessment -- 9.4 5S Lean Strategy for Sustainability Manufacturing -- 9.5 Conclusion -- 10 Sustainable Development of Redundant Articulated Robot Components Using Simscape Multibody 193 M. Saravana Mohan, P. S. Samuel Ratna Kumar and P. M. Mashinini -- 10.1 Introduction -- 10.2 CAD Modeling -- 10.3 Assigning Aluminum A308 Alloy for RAR -- 10.4 Kinematics and Dynamic Studies -- 10.5 Assigning DH Parameters -- 10.6 Simscape Multibody Simulation -- 10.7 Torque Results Using Simscape Multibody -- 10.8 Static Analysis Under Twisting Moment -- 10.9 Work Envelope of RAR -- 10.10 Fatigue Report of RAR -- 10.11 Conclusion -- 11 Implementation of Green Manufacturing Practices in Automobile Fields: A Review 221 Sampath Boopathi -- 11.1 Introduction -- 11.2 Green Manufacturing Production -- 11.3 Green Manufacturing in the Automobile Field -- 11.4 Green Manufacturing Practices in the Automotive Field -- 11.5 Case Study: Automobile Green Manufacturing Firm -- 11.6 Case Study: Water Conservation Technologies -- 12 Minimization of Manufacturing Industry Wastes Through the Green Lean Sigma Principle 249 Sampath Boopathi -- 12.1 Introduction -- 12.2 Challenges to the Manufacturing Sector -- 12.3 GT and Manufacturing Development Procedure -- 12.4 Green Lean Manufacturing Terminologies -- 12.5 Real-Time Problem Formulation and Research Approach -- 12.6 Green Lean Six Sigma Barriers -- 12.7 Conclusion -- 13 Design for Sustainable Methods in Additive Manufacturing 271 Akesh B. Kakarla and Ing Kong -- 13.1 Introduction -- 13.2 Ecological Impacts of Additive Manufacturing -- 13.3 Life Cycle Analysis -- 13.4 Implications of Sustainable Development in AM -- 13.5 Conclusions -- 14 Optimization of Fused Deposition Modeling Control Parameters Using Hybrid Taguchi and TOPSIS Method 289 B. Singaravel, T. Niranjan, M. Vasu Babu and K. Nagarjuna -- 14.1 Introduction -- 14.2 Literature Review -- 14.3 Experimental Setup -- 14.4 Methodology -- 14.5 Results and Discussion -- 14.6 Conclusions -- 15 Sustainable Machining of Monel 400 Using Cryogenic Treated Tool 305 S. Balakrishnan, K. Senthilkumar and S. Thirumalai Kumaran -- 15.1 Introduction -- 15.2 Materials and Methods -- 15.3 Results and Discussion -- 15.4 Conclusion -- References -- Index. | |
| 506 | _aAvailable to OhioLINK libraries. | ||
| 520 | _aThis book aims to be a source for understanding sustainable machining and green manufacturing. The goal is to gain new ideas and encourage readers to utilize fewer natural resources to reduce pollution. Some examples include cutting material needs, recycling and reusing materials, and promoting environmentally-friendly practices such as dry machining and eco-friendly cutting fluids. By reducing pollution and waste, more environmentally-friendly practices will help encourage a more environmentally conscious future. Ideas evaluated in this book The investigating of synergy between natural fibers and epoxy composites that enhance mechanical properties Explores the potential of sustainable reinforcements in polymer composites Uncovers the critical role of manufacturing methods in determining the mechanical prowess of biofiber-reinforced composites Details the importance of environmentally friendly conscious manufacturing processes Discusses topics on precision machining, additive manufacturing, and optimizing manufacturing processes. | ||
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_aManufacturing processes _0https://id.loc.gov/authorities/subjects/sh85080664 _xEnvironmental aspects. _0https://id.loc.gov/authorities/subjects/sh99005383. |
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| 655 | 4 | _aElectronic books. | |
| 700 | 1 |
_aKumaran, S. Thirumalai, _0https://id.loc.gov/authorities/names/n2022026769 _eeditor. |
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| 700 | 1 |
_aKo, Tae Jo, _eeditor. |
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| 856 |
_uhttps://onlinelibrary.wiley.com/doi/book/10.1002/9781394197866 _yFull text is available at Wiley Online Library Click here to view |
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