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Titlebook: Advances in Manufacturing II; Volume 4 - Mechanica Bartosz Gapiński,Marek Szostak,Vitalii Ivanov Conference proceedings 2019 Springer Natur

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期刊全称Advances in Manufacturing II
期刊简称Volume 4 - Mechanica
影响因子2023Bartosz Gapiński,Marek Szostak,Vitalii Ivanov
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发行地址Presents advances in simulation, virtual reality techniques, constructing and machine manufacturing.Discusses the use of optimization and computer-aided techniques for mechanical engineering challenge
学科分类Lecture Notes in Mechanical Engineering
图书封面Titlebook: Advances in Manufacturing II; Volume 4 - Mechanica Bartosz Gapiński,Marek Szostak,Vitalii Ivanov Conference proceedings 2019 Springer Natur
影响因子.This book covers a variety of topics related to machine manufacturing and concerning machine design, product assembly, technological aspects of production, mechatronics and production maintenance. Based on papers presented at the 6.th. International Scientific-Technical Conference MANUFACTURING 2019, held in Poznan, Poland on May 19-22, 2019, the different chapters reports on cutting-edge issues in constructing machine parts, mechatronic solutions and modern drives. They include new ideas and technologies for machine cutting and precise processing. Chipless technologies, such as founding, plastic forming, non-metal construction materials and composites, and additive techniques alike, are also analyzed and thoroughly discussed. All in all, the book reports on significant scientific contributions in modern manufacturing, offering a timely guide for researchers and professionals developing and/or using mechanical engineering technologies that have become indispensable for modern manufacturing. .
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Cloud Radiative and Microphysical Processes,eometry and the pressure effect on the material viscosity in the simulation model are considered. The determination of a proper heat transfer coefficient (HTC) is also vital for the simulation accuracy. The agreement between the warpage of the experiment molded parts and simulated parts was not good
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https://doi.org/10.1007/978-1-4020-8276-4ected holes (porosity 34%) is highest, resulting into highest weight gain of 6.23%, for this sample, whereas, solid sample shows negligible weight gain of 0.58%. The loss in mechanical load bearing capacity is found lowest at 5.58% in scaffold having interconnected holes (with porosity 34%). Thus, i
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