LEADER 04947nam 2200649Ia 450 001 9910139509503321 005 20170809152941.0 010 $a1-282-25392-1 010 $a9786613814579 010 $a0-470-61103-0 010 $a0-470-39361-0 035 $a(CKB)2550000000005877 035 $a(EBL)477665 035 $a(OCoLC)469799534 035 $a(SSID)ssj0000343317 035 $a(PQKBManifestationID)11243033 035 $a(PQKBTitleCode)TC0000343317 035 $a(PQKBWorkID)10290590 035 $a(PQKB)11350049 035 $a(MiAaPQ)EBC477665 035 $a(PPN)223424560 035 $a(EXLCZ)992550000000005877 100 $a20070521d2008 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 10$aStructural components$b[electronic resource] $emechanical tests and behavioral laws /$fedited by Dominique Franc?ois 210 $aLondon $cISTE ;$aHoboken, NJ, USA $cWiley $cISTE$d2008 215 $a1 online resource (343 p.) 225 1 $aISTE ;$vv.18 300 $aDescription based upon print version of record. 311 $a1-84821-015-9 320 $aIncludes bibliographical references and index. 327 $aStructural Components; Table of Contents; Chapter 1. Introduction; Chapter 2. Constitutive Equations; 2.1. Introduction; 2.2. Fundamental concepts; 2.2.1. Domain of elasticity; 2.2.2. Hardening; 2.2.3. Normality rules; 2.3. Unified theory of viscoplasticity; 2.3.1. General form of the constitutive law; 2.3.2. Choice of viscosity law; 2.3.3. Isotropic hardening laws; 2.3.4. Kinematic hardening laws; 2.3.5. Cyclic hardening and softening; 2.3.6. Static recovery; 2.3.7. Time-independent limit case; 2.3.8. Methods of determination 327 $a2.3.8.1. Determination of hardening laws within independent time-scheme2.3.8.2. Determination of the viscosity law; 2.3.8.3. Determination of static recovery effects; 2.3.9. Other unified approaches; 2.4. Other types of modeling; 2.4.1. Plasticity-creep partition; 2.4.2. Methods by means of micro-macro transposition; 2.4.3. More advanced hardening laws; 2.4.4. Aging; 2.4.5. Damage; 2.5. Conclusion; 2.6. Bibliography; Chapter 3. Measurement of Elastic Constants; 3.1. Elastic constants; 3.1.1. The perfect crystal - elastic constants; 3.1.2. Isotropic solid - elastic moduli 327 $a3.1.3. From isotropic solid to real material3.1.4. Dynamic modulus; 3.2. Quasi-static mechanical tests; 3.2.1. Uni-axial tensile and compression tests; 3.2.2. Torsion and bending tests; 3.2.3. Hydrostatic compression tests; 3.3. Ultrasonic methods; 3.3.1. Principle; 3.3.2. Measurement error sources; 3.3.3. Measurements at high temperatures; 3.3.4. Immersion-bath ultrasound interferometry; 3.4. Resonant methods; 3.4.1. Introduction to resonant methods; 3.4.2. Various experimental methods; 3.4.3. Bar and disk tests; 3.4.4. Bending tests on foil; 3.4.5. Torsion tests; 3.4.6. Other tests 327 $a3.5. Modulus measurements of coatings3.5.1. Vibratory methods; 3.5.2. Instrumented indentation; 3.6. Bibliography; Chapter 4. Tensile and Compression Tests; 4.1. Introduction; 4.2. Description of the tensile test; 4.2.1. Test piece; 4.2.2. Gripping; 4.2.3. Tensile testing machine; 4.2.3.1. Arrangements; 4.2.3.2. Stiffness; 4.3. Standard data; 4.4. Determination of constitutive equations; 4.4.1. True stress and strain; 4.4.2. Empirical expressions of the work hardening curve; 4.4.3. Necking; 4.4.3.1. Condition with no strain rate effect; 4.4.3.2. Strain rate sensitivity; 4.4.3.3. Yield drops 327 $a4.5. Damage determination4.6. Compression test; 4.7. Conclusion; 4.8. Notations; 4.9. Bibliography; Chapter 5. Hardness Tests; 5.1. Introduction; 5.2. Standard hardness tests; 5.2.1. Vickers hardness tests; 5.2.2. Micro-hardness; 5.2.3. Nano-hardness (Berkovich type indenter); 5.2.4. Brinell and Rockwell ball tests; 5.3. Analytical approaches of hardness tests; 5.3.1. Identification of the modulus of elasticity (Hertz contact); 5.3.2. Identification of the yield strength (Hill's analysis); 5.4. Finite element analysis of hardness test; 5.4.1. Finite element method 327 $a5.4.2. Effect of work-hardening amplitude 330 $aThe mechanical tests presented in this book are essential for determining the basic properties of the materials used. Areas covered include elasticity, tensile and compression tests, hardness, endurance tests and dynamic tests. 410 0$aISTE 606 $aMaterials$xMechanical properties 606 $aDeformations (Mechanics) 615 0$aMaterials$xMechanical properties. 615 0$aDeformations (Mechanics) 676 $a620.1/123 676 $a624.1 701 $aFranc?ois$b Dominique$f1948-$0916518 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910139509503321 996 $aStructural components$92054515 997 $aUNINA LEADER 02009nas 2200625 c 450 001 996206934703316 005 20171201161000.0 035 $a(CKB)1000000000531885 035 $a(DE-599)ZDB2106615-2 035 $a(OCoLC)405883007 035 $a(DE-101)024530107 035 $a(EXLCZ)991000000000531885 100 $a20030409a19989999 |y | 101 0 $aeng 135 $aur||||||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aShionogi annual report 210 31$aO?saka$cKenkyu?sho$d1998- 215 $aOnline-Ressource 300 $aGesehen am 13.01.14 606 $3(DE-588)4007842-5$3https://d-nb.info/gnd/4007842-5$3(DE-101)040078426$aBotanik$2gnd 606 $3(DE-588)4009816-3$3https://d-nb.info/gnd/4009816-3$3(DE-101)040098168$aChemie$2gnd 606 $3(DE-588)4316357-9$3https://d-nb.info/gnd/4316357-9$3(DE-101)043163572$aMikrobiologie$2gnd 606 $3(DE-588)4045705-9$3https://d-nb.info/gnd/4045705-9$3(DE-101)040457052$aPharmazie$2gnd 606 $3(DE-588)4006777-4$3https://d-nb.info/gnd/4006777-4$3(DE-101)040067777$aBiochemie$2gnd 608 $aZeitschrift$2gnd-content 608 $aForschungsbericht$2gnd-content 608 $aForschungsbericht$2gnd 608 $aOnline-Publikation$2gnd 608 $aZeitschrift$2gnd 608 $aOnline-Publikation$2gnd 608 $aZeitschrift$2gnd 608 $aOnline-Publikation$2gnd 608 $aZeitschrift$2gnd 608 $aOnline-Publikation$2gnd 608 $aZeitschrift$2gnd 608 $aOnline-Publikation$2gnd 608 $aZeitschrift$2gnd 608 $aOnline-Publikation$2gnd 615 7$aBotanik 615 7$aChemie 615 7$aMikrobiologie 615 7$aPharmazie 615 7$aBiochemie 676 $a540 676 $a610 801 0$b4002 801 1$bDE-101 801 2$b9999 906 $aJOURNAL 912 $a996206934703316 996 $aShionogi annual report$92049516 997 $aUNISA