Language:
English
繁體中文
Help
Login
Back
Switch To:
Labeled
|
MARC Mode
|
ISBD
Temperature-dependent Deformation an...
~
Degenhardt, David.
Temperature-dependent Deformation and Fracture Behavior of a Talcum-filled Co-polymer
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Temperature-dependent Deformation and Fracture Behavior of a Talcum-filled Co-polymer/ by David Degenhardt.
Author:
Degenhardt, David.
Description:
XXVI, 121 p. 62 illus., 25 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Materials science. -
Online resource:
https://doi.org/10.1007/978-3-658-30155-2
ISBN:
9783658301552
Temperature-dependent Deformation and Fracture Behavior of a Talcum-filled Co-polymer
Degenhardt, David.
Temperature-dependent Deformation and Fracture Behavior of a Talcum-filled Co-polymer
[electronic resource] /by David Degenhardt. - 1st ed. 2020. - XXVI, 121 p. 62 illus., 25 illus. in color.online resource. - AutoUni – Schriftenreihe,1471867-3635 ;. - AutoUni – Schriftenreihe,90.
Material Modeling; Yield Functions and Flow Rules -- Static and Dynamic Material Testing -- Temperature-dependent Material Model -- Model Validation with Component Tests.
David Degenhardt develops an elasto-viscoplastic material model in order to predict the temperature and strain rate-dependent deformation and fracture behavior of thermoplastic polymers. The model bases on three supporting ambient temperatures, where a thermoplastic polymer has been characterized profoundly at the stress states 1) uni-axial tension and compression, 2) bi-axial tension and 3) shear. The core of the material model builds a pressure-dependent yield function with a non-associated flow rule. Further, it contains an analytical hardening law and a strain rate-dependent fracture criterion. The model is validated with components subjected to impact loading at different ambient temperatures. The comparison of the simulation and the experiments shows that stiffness, hardening, fractures strain as well as thicknesses can be well captured. Contents Material Modeling; Yield Functions and Flow Rules Static and Dynamic Material Testing Temperature-dependent Material Model Model Validation with Component Tests Target Groups Scientists and students in the field of material sciences and simulation Practitioners in industry in the field of material characterization About the Author David Degenhardt is a calculation engineer in the chassis development department of a German automobile manufacturer and earned his doctorate while working at the Technische Universität Carolo-Wilhelmina zu Braunschweig, Germany.
ISBN: 9783658301552
Standard No.: 10.1007/978-3-658-30155-2doiSubjects--Topical Terms:
557839
Materials science.
LC Class. No.: TA404.6
Dewey Class. No.: 620.11
Temperature-dependent Deformation and Fracture Behavior of a Talcum-filled Co-polymer
LDR
:03018nam a22003975i 4500
001
1028054
003
DE-He213
005
20200704075622.0
007
cr nn 008mamaa
008
210318s2020 gw | s |||| 0|eng d
020
$a
9783658301552
$9
978-3-658-30155-2
024
7
$a
10.1007/978-3-658-30155-2
$2
doi
035
$a
978-3-658-30155-2
050
4
$a
TA404.6
072
7
$a
TGMT
$2
bicssc
072
7
$a
TEC021000
$2
bisacsh
072
7
$a
TGMT
$2
thema
082
0 4
$a
620.11
$2
23
100
1
$a
Degenhardt, David.
$e
author.
$4
aut
$4
http://id.loc.gov/vocabulary/relators/aut
$3
1324572
245
1 0
$a
Temperature-dependent Deformation and Fracture Behavior of a Talcum-filled Co-polymer
$h
[electronic resource] /
$c
by David Degenhardt.
250
$a
1st ed. 2020.
264
1
$a
Wiesbaden :
$b
Springer Fachmedien Wiesbaden :
$b
Imprint: Springer,
$c
2020.
300
$a
XXVI, 121 p. 62 illus., 25 illus. in color.
$b
online resource.
336
$a
text
$b
txt
$2
rdacontent
337
$a
computer
$b
c
$2
rdamedia
338
$a
online resource
$b
cr
$2
rdacarrier
347
$a
text file
$b
PDF
$2
rda
490
1
$a
AutoUni – Schriftenreihe,
$x
1867-3635 ;
$v
147
505
0
$a
Material Modeling; Yield Functions and Flow Rules -- Static and Dynamic Material Testing -- Temperature-dependent Material Model -- Model Validation with Component Tests.
520
$a
David Degenhardt develops an elasto-viscoplastic material model in order to predict the temperature and strain rate-dependent deformation and fracture behavior of thermoplastic polymers. The model bases on three supporting ambient temperatures, where a thermoplastic polymer has been characterized profoundly at the stress states 1) uni-axial tension and compression, 2) bi-axial tension and 3) shear. The core of the material model builds a pressure-dependent yield function with a non-associated flow rule. Further, it contains an analytical hardening law and a strain rate-dependent fracture criterion. The model is validated with components subjected to impact loading at different ambient temperatures. The comparison of the simulation and the experiments shows that stiffness, hardening, fractures strain as well as thicknesses can be well captured. Contents Material Modeling; Yield Functions and Flow Rules Static and Dynamic Material Testing Temperature-dependent Material Model Model Validation with Component Tests Target Groups Scientists and students in the field of material sciences and simulation Practitioners in industry in the field of material characterization About the Author David Degenhardt is a calculation engineer in the chassis development department of a German automobile manufacturer and earned his doctorate while working at the Technische Universität Carolo-Wilhelmina zu Braunschweig, Germany.
650
0
$a
Materials science.
$3
557839
650
0
$a
Automotive engineering.
$3
1104081
650
1 4
$a
Characterization and Evaluation of Materials.
$3
674449
650
2 4
$a
Automotive Engineering.
$3
683772
650
2 4
$a
Materials Science, general.
$3
683521
710
2
$a
SpringerLink (Online service)
$3
593884
773
0
$t
Springer Nature eBook
776
0 8
$i
Printed edition:
$z
9783658301545
776
0 8
$i
Printed edition:
$z
9783658301569
830
0
$a
AutoUni – Schriftenreihe,
$x
1867-3635 ;
$v
90
$3
1267366
856
4 0
$u
https://doi.org/10.1007/978-3-658-30155-2
912
$a
ZDB-2-CMS
912
$a
ZDB-2-SXC
950
$a
Chemistry and Materials Science (SpringerNature-11644)
950
$a
Chemistry and Material Science (R0) (SpringerNature-43709)
based on 0 review(s)
Multimedia
Reviews
Add a review
and share your thoughts with other readers
Export
pickup library
Processing
...
Change password
Login