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ISBN 10 : 710008962X ISBN 13 : 9787100089623
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Ajouter au panierPaperback. Etat : Very Good. No Jacket. May have limited writing in cover pages. Pages are unmarked. ~ ThriftBooks: Read More, Spend Less 1.01.
Edité par Princeton University Press (edition ), 2020
ISBN 10 : 0691205736 ISBN 13 : 9780691205731
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Edité par World Scientific Publishing Company, 2008
ISBN 10 : 9812837078 ISBN 13 : 9789812837073
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ISBN 10 : 9812837078 ISBN 13 : 9789812837073
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Ajouter au panierEtat : new. Pages: 352 Language: Russian. Garvard zanimaet pervoe mesto po kolichestvu vypusknikov, stavshikh millionerami. Etot universitet okonchili 8 prezidentov SSHA i 160 laureatov Nobelevskoj premii. Postupit tuda krajne tjazhelo, a poluchit diplom Garvarda - eto kak vytjanut schastlivyj bilet v uspeshnuju zhizn. No v chem zhe sekret izvestnogo uchebnogo zavedenija i chto otlichaet ego ot drugikh? Na eti i drugie voprosy otvechaet Vej Sjuin - chelovek, posvjativshij zhizn izucheniju fenomena Garvarda. Po mneniju avtora, odno iz naibolee jarkikh otlichij Garvarda v tom, chto on pochti ne spit. Dazhe v 4 utra koridory, biblioteki i komnaty otdykha perepolneny studentami, kotorye chitajut, konspektirujut i o chem-to dumajut. Dejstvitelno li v ikh zhizni net mesta otdykhu ili vse delo v prioritetakh? S pomoschju etoj knigi vy: - nauchites otlichat vazhnoe ot vtorostepennogo; - prekratite otkladyvat dela na potom; - vnedrite v svoju zhizn novye poleznye privychki; - obretete uverennost v svoikh silakh i nachnete sledovat svoim mechtam. 9785042153495.
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Edité par World Scientific Publishing Company, 2008
ISBN 10 : 9812837078 ISBN 13 : 9789812837073
Langue: anglais
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Ajouter au panierPaperback. Etat : New. One of the most important tools in the metal forming technology is the integrated process and microstructual simulation using Finite Element Methods (FEM). It has become more and more popular in recent years, especially in the segment of hot metal forming, e.g. open die forging of large scaled and hardly deformable materials, such as nickel-based super alloys for turbine shaft. Theoretically using this method it is possible to calculate the microstructual evolution along the whole process chain in the numerical simulation of the considered metal forming process. Based on this knowledge a series of benefits can be achieved for the practice, such as to optimize a present metal forming process, to predict the mechanical properties of the final products under the given forming conditions, to detect the possible product failures prematurely, to assist the design of a new production chain and so on. In the face of these trends of the scientific research as well as the industrial demands, different material models have been released in the market to combine the commercial FEM programs specialized in the numerical simulation of metal forming. Among others microstructure-based ow stress models show outstanding performance. Through this kind of material model not only the microstructure such as recrystallization and grain size, but also the interaction between the microstructual evolution and the working hardening, effectively ow stress, can be quantitatively represented.Towards accurate and efficient material modeling, the model parameters have to be determined conveniently and reliably. For this propose a new Hybrid strategy combining the advantages both of direct and indirect methods has been proposed using the example of StrucSim, which is a very good representative of a mircostructure-based ow stress model. At first different aspects, which lead to the disadvantages of the conventional method, i.e. direct method, were discussed. In doing so a high manganese steel was characterized as an example by stepwise graphical and regression analysis. It was found that, the precondition of direct methods, namely recording ow curves under constant Zener-hollomon-parameter conditions, are basically not possible due to both limitations of test equipment and unconquerable physical mechanism like dissipation heating. The common solution to compensate these factors may lead to further inaccuracies, uncertainties and complexities despite large testing and evaluating efforts. Further in order to improve the model quality calibrated by the conventional direct method an efficient hybrid strategy has been derived by combining inverse analysis with offline calculation of ow stress and microstructure. Three different variations of the hybrid strategy were introduced to deal with different available experimental databases, such as isothermal and non-isothermal ow curves. To demonstrate the developed routines of these three hybrid possibilities two kinds of materials including.
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Edité par World Scientific Publishing Company, 2008
ISBN 10 : 9812837078 ISBN 13 : 9789812837073
Langue: anglais
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Edité par Artvoices Art Books 2/16/2018, 2018
ISBN 10 : 0998748439 ISBN 13 : 9780998748436
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Ajouter au panierPaperback or Softback. Etat : New. Wei Xiong: Unaltered Landscapes 1.6. Book.
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Edité par World Scientific Publishing Company, 2008
ISBN 10 : 9812837078 ISBN 13 : 9789812837073
Langue: anglais
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Edité par Peking University Press Pub. Date :1999-11, 2000
ISBN 10 : 7301043856 ISBN 13 : 9787301043851
Langue: anglais
Vendeur : liu xing, Nanjing, JS, Chine
EUR 37,47
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Ajouter au panierpaperback. Etat : New. Language:Chinese.Pages Number: 170 Publisher: Peking University Press Pub. Date :1999-11. book easy manner of speech. about the world and the development of China s manned space flight history. technical principles. command and control center of China s first spacecraft from 12 hours to prepare to launch into orbit of the site . The principle part of the main layers of anatomical structure of the rocket and spacecraft. depicts the track. opened the manned space technology insider. Book. clari.
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Vendeur : Rarewaves.com USA, London, LONDO, Royaume-Uni
EUR 49,06
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Ajouter au panierPaperback. Etat : New. One of the most important tools in the metal forming technology is the integrated process and microstructual simulation using Finite Element Methods (FEM). It has become more and more popular in recent years, especially in the segment of hot metal forming, e.g. open die forging of large scaled and hardly deformable materials, such as nickel-based super alloys for turbine shaft. Theoretically using this method it is possible to calculate the microstructual evolution along the whole process chain in the numerical simulation of the considered metal forming process. Based on this knowledge a series of benefits can be achieved for the practice, such as to optimize a present metal forming process, to predict the mechanical properties of the final products under the given forming conditions, to detect the possible product failures prematurely, to assist the design of a new production chain and so on. In the face of these trends of the scientific research as well as the industrial demands, different material models have been released in the market to combine the commercial FEM programs specialized in the numerical simulation of metal forming. Among others microstructure-based ow stress models show outstanding performance. Through this kind of material model not only the microstructure such as recrystallization and grain size, but also the interaction between the microstructual evolution and the working hardening, effectively ow stress, can be quantitatively represented.Towards accurate and efficient material modeling, the model parameters have to be determined conveniently and reliably. For this propose a new Hybrid strategy combining the advantages both of direct and indirect methods has been proposed using the example of StrucSim, which is a very good representative of a mircostructure-based ow stress model. At first different aspects, which lead to the disadvantages of the conventional method, i.e. direct method, were discussed. In doing so a high manganese steel was characterized as an example by stepwise graphical and regression analysis. It was found that, the precondition of direct methods, namely recording ow curves under constant Zener-hollomon-parameter conditions, are basically not possible due to both limitations of test equipment and unconquerable physical mechanism like dissipation heating. The common solution to compensate these factors may lead to further inaccuracies, uncertainties and complexities despite large testing and evaluating efforts. Further in order to improve the model quality calibrated by the conventional direct method an efficient hybrid strategy has been derived by combining inverse analysis with offline calculation of ow stress and microstructure. Three different variations of the hybrid strategy were introduced to deal with different available experimental databases, such as isothermal and non-isothermal ow curves. To demonstrate the developed routines of these three hybrid possibilities two kinds of materials including.
Edité par Princeton University Press, 2020
ISBN 10 : 0691205736 ISBN 13 : 9780691205731
Langue: anglais
Vendeur : Labyrinth Books, Princeton, NJ, Etats-Unis
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Ajouter au panierEtat : Very Good.