Handbook of force transducers principles and components

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1. Verfasser: Ştefǎnescu, Dan Mihai (VerfasserIn)
Format: Buch
Sprache:English
Veröffentlicht: Berlin [u.a.] Springer 2011
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adam_text IMAGE 1 CONTENTS PART I: PRINCIPLES AND METHODS OF FORCE MEASUREMENT 1 INTRODUCTION TO FORCE MEASUREMENT 3 1.1 VARIOUS APPROACHES TO FORCE TRANSDUCTION 3 1.2 NEWTON - MEASUREMENT UNIT OF FORCE 6 1.3 MECHANICAL MEASUREMENTS OF FORCES & TRIBOLOGY 8 1.4 FORCE TRANSDUCERS OTHER THAN ELECTRICAL 10 1.5 TERMINOLOGY: SENSORS OR TRANSDUCERS? 13 1.6 FORCE MEASUREMENT SYSTEMS 16 REFERENCES 20 2 ELECTRICAL METHODS OF FORCE MEASUREMENT 23 2.1 ENERGETICAL ASPECTS IN FORCE TRANSDUCTION 24 2.2 EXAMPLES OF FORCE MEASUREMENT IN THERMAL PROCESSES 27 2.3 TYPICAL REQUIREMENTS FOR FORCE TRANSDUCERS 29 2.4 FORCE TRANSDUCERS (FTS) CLASSIFICATIONS 30 2.4.1 FIRST ATTEMPTS OF FORCE TRANSDUCERS SYSTEMATIZATION 30 2.4.2 GERMAN FT CLASSIFICATIONS 32 2.4.3 DUTCH FT CLASSIFICATIONS 34 2.4.4 ENGLISH FT CLASSIFICATIONS 35 2.5 NONCONVENTIONAL TYPES OF FORCE TRANSDUCERS 37 2.5.1 ELECTRODYNAMIC FORCE TRANSDUCERS 37 2.5.2 GALVANOMAGNETIC FORCE TRANSDUCERS (BASED ON HALL EFFECT) 37 2.5.3 ACOUSTIC FORCE TRANSDUCERS (SAWS) 38 2.6 AN ENLARGED CLASSIFICATION OF FORCE TRANSDUCERS 40 REFERENCES 44 3 RESISTIVE FORCE TRANSDUCERS 49 3.1 RESISTIVE FORCE TRANSDUCERS TYPES 50 3.2 POTENTIOMETERS 52 3.3 PRETENSIONED WIRES 53 3.4 STRAIN GAUGES 54 3.5 PIEZORESISTIVE SENSORS 56 3.5.1 SILICON DEVICES 57 3.5.2 CARBON FILM COATINGS AND CARBON NANOTUBES (CNTS) 59 BIBLIOGRAFISCHE INFORMATIONEN HTTP://D-NB.INFO/100897255X DIGITALISIERT DURCH IMAGE 2 XIV D.M. CTEFANESCU 3.6 FORCE SENSING RESISTORS (FSRS) 62 3.7 FORCE SENSING RESISTIVE NETWORKS 65 REFERENCES 68 4 INDUCTIVE FORCE TRANSDUCERS 73 4.1 LVDT (LINEAR VARIABLE DIFFERENTIAL TRANSFORMER) 74 4.2 VARIABLE RELUCTANCE TRANSDUCERS 78 4.3 MUTUAL INDUCTANCE VARIATION FORCE TRANSDUCERS 79 4.4 INDUCTIVE EDDY CURRENT TRANSDUCER 81 4.5 BIPARAMETRIC INDUCTIVE FORCE TRANSDUCERS 81 4.5.1 BIPARAMETRIC LR 81 4.5.2 BIPARAMETRIC LC 82 REFERENCES 85 5 CAPACITIVE FORCE TRANSDUCERS 87 5.1 CAPACITIVE FORCE TRANSDUCERS CLASSIFICATION 87 5.2 CAPACITIVE FORCE TRANSDUCERS (CFTS) WITH PLATES 88 5.2.1 CFT WITH VARIABLE THICKNESS OF THE DIELECTRIC PAD 88 5.2.2 CFT WITH VARIABLE DISTANCE BETWEEN PLATES 90 5.2.3 CFT WITH PLATES ARRANGED UNDER A CERTAIN ANGLE 91 5.3 MULTIPLE PLATES CAPACITIVE FORCE TRANSDUCERS 92 5.4 INTERDIGITATED AND MATRIX OF CAPACITIVE SENSORS 94 5.4.1 CFT WITH INTERDIGITATED ELECTRODES 94 5.4.2 CFT USING A MATRIX OF CAPACITIVE SENSING ELEMENTS 96 5.5 CYLINDRICAL CAPACITIVE FORCE TRANSDUCERS 97 5.6 APPLICATIONS BASED ON ELECTROSTATIC FORCES 100 5.6.1 ELECTROSTATIC FORCE BALANCES 100 5.6.2 OTHER APPLICATIONS OF ELECTROSTATIC FORCES FOR THE MEASUREMENT OF MECHANICAL QUANTITIES 102 5.7 ELECTRONIC CIRCUITS FOR CAPACITIVE TRANSDUCERS 103 REFERENCES 105 6 PIEZOELECTRIC FORCE TRANSDUCERS (PZFTS) 109 6.1 PIEZOELECTRIC MATERIALS 110 6.1.1 QUARTZ CRYSTALS 110 6.1.2 SENSORS WITH ORGANIC POLYMERS I LL 6.1.3 SOLID STATE DEVICES 113 6.2 UNIDIRECTIONAL PIEZOELECTRIC FORCE TRANSDUCERS 114 6.3 TRIDIRECTIONAL PIEZOELECTRIC FORCE TRANSDUCERS 117 6.4 PIEZOELECTRIC BIMORPH AS FORCE TRANSDUCER 120 6.5 ELECTRONIC CIRCUITS FOR PIEZO FORCE TRANSDUCERS 123 6.6 COMPLEX APPLICATIONS WITH PIEZOELECTRIC DEVICES 125 REFERENCES 126 IMAGE 3 CONTENTS XV 7 ELECTROMAGNETIC FORCE TRANSDUCERS 131 7.1 CLASSIFICATION 131 7.2 MAGNETORESISTIVE FORCE TRANSDUCERS 135 7.3 FORCE MEASUREMENTS IN MAGNETIC FIELD 138 7.3.1 RESISTIVE FORCE TRANSDUCERS IN MAGNETIC FIELD 139 7.3.2 CAPACITIVE FORCE TRANSDUCERS IN MAGNETIC FIELD 140 7.3.3 PRESSURE TRANSDUCERS BASED ON MAGNETIC HIGHER-ORDER HARMONIC FIELDS 141 7.4 ELECTROMAGNETIC WEIGHING BY FORCE COMPENSATION 142 7.5 ELECTROMAGNETIC DEVICES FOR SMALL FORCES 144 7.5.1 ELECTROMAGNETIC PROBES FOR MICRO- AND NANO-FORCE MEASUREMENTS 144 7.5.2 MAGNETIC FLUX QUANTUM AS A SUB-PICO-NEWTON WEIGHT 146 7.5.3 CASIMIR FORCES AND LEVITATION PRESSURES MEASUREMENT 148 REFERENCES 149 8 ELECTRODYNAMIC FORCE TRANSDUCERS 153 8.1 ELECTRODYNAMIC FORCE COMPENSATION PRINCIPLE 155 8.2 LOAD CELLS WITH ELECTRODYNAMIC FEEDBACK 156 8.3 ELECTRODYNAMIC FORCE COMPENSATION BALANCES 157 8.3.1 HYDRODYNAMIC GRAVIMETRIC BALANCE 157 8.3.2 ELECTRODYNAMIC VACUUM MICROBALANCE 158 8.3.3 ELECTRODYNAMIC DEVICES FOR SMALL PARTICLES EXPERIMENTS 159 8.4 MICROMECHANICAL TESTERS WITH MOVING COILS 160 8.5 MULTIFUNCTIONAL TRANSDUCERS WITH MOVING COILS 161 REFERENCES 163 9 MAGNETOELASTIC FORCE TRANSDUCERS 165 9.1 THE MAGNETOSTRICTIVE PRINCIPLE 166 9.2 CLASSIFICATION OF MAGNETOELASTIC FTS 168 9.3 AXIAL MAGNETOELASTIC FORCE TRANSDUCERS 170 9.3.1 MAGNETOSTRICTIVE STRIPS AND BARS 170 9.3.2 MAGNETOSTRICTIVE AMORPHOUS WIRES 172 9.4 FRAME-SHAPED MAGNETOELASTIC FORCE TRANSDUCERS 173 9.5 TUBULAR MAGNETOELASTIC FORCE TRANSDUCERS 174 9.6 CIRCULAR MAGNETOELASTIC FORCE TRANSDUCERS 176 9.7 BLOCK-SHAPED MAGNETOELASTIC FORCE TRANSDUCERS 178 9.8 MAGNETOELASTIC SHAFTS FOR TORQUE TRANSDUCERS 180 9.9 MAGNETOELASTIC FTS ELECTRONIC CIRCUITRY 181 REFERENCES 183 10 GALVANOMAGNETIC FORCE TRANSDUCERS 185 10.1 HALL EFFECT AND ITS APPLICATIONS 186 10.2 FORCE TRANSDUCERS BASED ON THE HALL EFFECT 189 IMAGE 4 XVI D.M. STEFAENESCU 10.2.1 HALL EFFECT IN GEOTECHNICAL ENGINEERING 189 10.2.2 MEDICAL APPLICATIONS WITH HALL SENSORS 190 10.3 HALL DEVICES FOR OTHER MECHANICAL QUANTITIES 191 10.3.1 DISPLACEMENT AND POSITION MEASUREMENTS USING HALL SENSORS 191 10.3.2 WEIGHING BASED ON HALL DEVICES 192 10.3.3 PRESSURE AND FLOW MEASUREMENTS BY MEANS OF HALL SENSORS 193 10.3.4 SHOCK MEASUREMENTS USING HALL DEVICES 194 10.3.5 PENETRATION VELOCITY AND ROTATIONAL SPEED MEASURED WITH HALL SENSORS 195 10.4 GALVANOMAGNETIC FTS IN COMPLEX MEASUREMENT CHAINS 196 10.4.1 COMBINED MEASURANDS IN GALVANOMAGNETIC FORCE TRANSDUCERS 196 10.4.2 TRIAXIAL GALVANOMAGNETIC FORCE TRANSDUCERS 198 10.5 OTHER ELECTROMAGNETIC PRINCIPLES IN FORCE MEASUREMENT 199 REFERENCES 200 11 VIBRATING-WIRE FORCE TRANSDUCERS 203 11.1 VIBRATING WIRE AS FORCE MEASUREMENT PRINCIPLE 203 11.2 VWFTS'STRUCTURES AND CHARACTERISTICS 206 11.3 ELECTRONIC CIRCUITS FOR VWTS 209 11.3.1 VIBRATING-WIRE EXCITATION METHODS 209 11.3.2 MEASURING CIRCUITS FOR VIBRATING-WIRE TRANSDUCERS 211 11.3.3 DIGITAL WEIGHING BASED ON VIBRATING-WIRE TRANSDUCERS 211 11.3.4 VIRTUAL MUSICAL INSTRUMENTS INVESTIGATED BY MEANS OF VWFTS 212 11.4 DIFFERENT TYPES OF VIBRATING-WIRE TRANSDUCERS 213 11.5 VWTS' APPLICATIONS FOR OTHER PHYSICAL QUANTITIES 217 11.5.1 VISCOMETERS AND DENSIMETERS 217 11.5.2 "PIEZOMETERS" (FOR UNDERGROUND WATER PRESSURE) 219 11.5.3 TILTMETERS / INCLINOMETERS AND SLOPE INDICATORS 220 11.6 VWTS' PROGRESS AND THEIR EXTENDED UTILIZATION 220 REFERENCES 223 12 RESONATOR FORCE TRANSDUCERS '. 227 12.1 RESONATOR PRINCIPLE IN FORCE MEASUREMENT 228 12.2 MATERIALS FOR RESONATORS AND THEIR Q-FACTORS 230 12.2.1 QUARTZ RESONATORS FOR FORCE TRANSDUCERS 231 12.2.2 SILICON RESONATORS FOR FORCE TRANSDUCERS 232 12.3 VARIOUS SHAPES OF RESONATORS 235 12.3.1 RESONATING BEAMS FOR FORCE TRANSDUCERS 235 12.3.2 RESONATING DIAPHRAGMS / MEMBRANES FOR FORCE / PRESSURE TRANSDUCERS 237 12.3.3 RESONATING TUBES FOR FORCE TRANSDUCERS 238 IMAGE 5 CONTENTS XVII 12.4 SINGLE BEAM (MICRO)RESONATORS 238 12.5 DOUBLE BEAM (MICRO)RESONATORS 240 12.5.1 CLASSICAL DOUBLE-ENDED TUNING FORKS (DETFS) 240 12.5.2 MODERN SOLUTIONS FOR DETF RESONATORS ,. 242 12.6 METALLIC TRIPLE BEAM RESONATORS (MTBRS) 244 12.6.1 FORCE TRANSDUCERS WITH MTBRS 244 12.6.2 TORQUE TRANSDUCERS WITH MTBRS 246 REFERENCES 247 13 ACOUSTIC FORCE TRANSDUCERS 251 13.1 INTERDIGITAL TRANSDUCERS (IDTS) 252 13.2 ACOUSTIC EMISSION AND WAVEGUIDES 254 13.2.1 ACOUSTIC EMISSION APPLICATIONS 254 13.2.2 ACOUSTIC WAVEGUIDES APPLICATIONS 254 13.3 ULTRASOUND FORCE TRANSDUCERS 256 13.3.1 INDUSTRIAL APPLICATIONS OF ULTRASOUND FORCE TRANSDUCERS 256 13.3.2 ULTRASOUND FORCE TRANSDUCERS FOR FOOD AND FARMACOLOGY 259 13.3.3 MEDICAL APPLICATIONS OF ULTRASOUND FORCE TRANSDUCERS 260 13.4 ACOUSTIC RADIATION FORCE TRANSDUCERS 261 13.4.1 ACOUSTIC RADIATION FORCE TRANSDUCERS IN MEDICINE 261 13.4.2 ACOUSTIC RADIATION FORCE TRANSDUCERS IN METROLOGY 262 13.5 SURFACE ACOUSTIC WAVE (SAW) TRANSDUCERS 264 13.5.1 SAW FORCE TRANSDUCERS 265 13.5.2 SAW TORQUE TRANSDUCERS 266 13.5.3 SAW PRESSURE TRANSDUCERS 267 13.5.4 SAW FLUIDIC TRANSDUCERS 267 13.6 SAW ELECTRONIC CIRCUITS 268 REFERENCES 272 14 GYROSCOPIC FORCE TRANSDUCERS 275 14.1 THE GYROSCOPIC PRINCIPLE IN FORCE MEASUREMENT 275 14.2 CONVENTIONAL GYROSCOPIC FORCE TRANSDUCERS 277 14.3 TYPES OF MICRO-GYROSCOPIC FORCE TRANSDUCERS 279 14.3.1 INERTIAL GYROSCOPES 279 14.3.2 PIEZOELECTRIC GYROSCOPES 281 14.3.3 RESONATOR / VIBRATING GYROSCOPES 282 14.3.4 ACOUSTIC (AND SAW) GYROSCOPES 284 14.3.5 CORIOLIS FORCE TRANSDUCERS IN MEDICAL APPLICATIONS 285 14.4 OPTICAL GYROSCOPES 286 14.4.1 FIBER OPTIC GYROSCOPES (FOGS) 286 14.4.2 LASER GYROSCOPES 288 14.4.3 MOEMS (MICRO-OPTO-ELECTRO-MECHANICAL SYSTEM) GYROSCOPE 288 14.5 A TOPICAL REVIEW OF GYROSCOPES 288 REFERENCES 290 IMAGE 6 XVIII D.M. STEFAENESCU 15 FORCE BALANCE TECHNIQUES 293 15.1 FORCE BALANCE PRINCIPLE APPLIED TO TRANSDUCERS 294 15.2 ELECTROMAGNETIC FORCE COMPENSATION (EMFC) 297 15.3 ELECTROSTATIC FORCE COMPENSATION 299 15.4 OPTICAL DEVICES BASED ON FORCE FEEDBACK 302 REFERENCES 304 16 MIXED METHODS IN FORCE MEASUREMENTS 307 16.1 FORCE TRANSDUCERS USING ADVANCED ELECTRONICS '. 308 16.2 CANTILEVER BEAMS FOR VARIOUS FORCE TRANSDUCERS 310 16.3 CNTS FOR MEASURING MECHANICAL QUANTITIES 312 16.4 COMBINED METHODS OF FORCE TRANSDUCTION 316 16.4.1 FORCE TRANSDUCERS IN MEDICAL INSTRUMENTS 316 16.4.2 EM AT (ELECTRO-MAGNETIC ACOUSTIC TRANSDUCER) AND LORENTZ FORCE 318 16.4.3 MULTITRANSDUCER EQUIPMENT 320 16.4.4 FORCE TRANSDUCERS INVOLVING OPTICAL TECHNIQUES 321 REFERENCES 324 PART II: FORCE TRANSDUCERS COMPONENTS 17 THE FORCE MEASUREMENT CHAIN 331 17.1 FORCE MEASUREMENT CHAIN COMPONENTS 331 17.2 STRAIN GAUGE SENSING 334 17.3 STRAIN GAUGES SIGNAL CONDITIONING 337 17.4 STRAIN GAUGES SIGNAL PROCESSING 340 17.5 DATA PRESENTATION FOR FORCE TRANSDUCERS 343 REFERENCES 345 18 WHEATSTONE BRIDGE - THE BASIC CIRCUIT FOR STRAIN GAUGE FORCE TRANSDUCERS 347 18.1 WHEATSTONE BRIDGE - GENERAL PRESENTATION 347 18.2 WHEATSTONE BRIDGE - FUNDAMENTAL PROPERTIES 348 18.3 BRIDGE COMPENSATION AND ADJUSTING RESISTORS 350 18.4 SUPPLY POSSIBILITIES FOR WHEATSTONE BRIDGES 352 18.5 DIFFERENT APPLICATIONS WITH MEASURING BRIDGES 353 18.6 FURTHER CONNECTIONS FOR WHEATSTONE BRIDGES 356 REFERENCES 358 19 STRAIN GAUGES ELECTRONIC CIRCUITS 361 19.1 SIGNAL CONDITIONING FOR FORCE TRANSDUCERS 361 19.2 SIGNAL CONDITIONERS 362 19.2.1 PRE- AND POST-CONDITIONING 362 19.2.2 HIGH-GAIN SIGNAL CONDITIONING 363 19.2.3 "QUANTUMX" UNIVERSAL CONDITIONER 363 IMAGE 7 CONTENTS XIX 19.3 ANALOG-TO-DIGITAL CONVERTERS 365 19.3.1 DIFFERENT CONVERSIONS TO FREQUENCY 365 19.3.2 RESISTANCE-TO-TIME CONVERTER 365 19.3.3 SIGMA-DELTA CONVERTER 366 19.4 BRIDGE OSCILLATORS 367 19.4.1 WIEN BRIDGE BASED OSCILLATOR 367 19.4.2 WHEATSTONE BRIDGE BASED OSCILLATOR 368 19.5 AC GENERATORS 369 19.5.1 SINE WAVE GENERATOR 369 19.5.2 SAW-TOOTH WAVE GENERATOR 369 19.5.3 RECTANGULAR WAVE GENERATOR 370 19.6 STRAIN GAUGED FORCE TRANSDUCERS CONNECTED TO PC 371 19.6.1 DIRECT RESISTANCE CHANGE MEASUREMENT 371 19.6.2 STRAIN GAUGE BRIDGE SIGNAL PROCESSING 371 REFERENCES 373 20 CLASSIFICATION OF ELASTIC ELEMENTS 375 20.1 ELASTIC ELEMENTS LOADING MODES 375 20.2 EXAMPLES OF ELASTIC ELEMENTS CLASSIFICATIONS 378 20.3 COMPREHENSIVE CLASSIFICATION OF ELASTIC ELEMENTS 381 REFERENCES 387 21 STRETCHED / COMPRESSED COLUMNS 389 21.1 CLASSICAL COLUMNS 389 21.2 OPTIMIZED COLUMNS 394 21.3 INCREASING SENSITIVITY FOR COLUMNAR TRANSDUCERS 394 21.4 COMPLEX STRUCTURES COMPOSED BY BARS / COLUMNS 395 21.5 DYNAMIC TESTING FOR CYLINDRICAL TRANSDUCERS 396 REFERENCES 397 22 STRETCHED / COMPRESSED TUBES 399 21.1 CLASSICAL TUBES 399 22.2 CONCENTRIC TUBES 403 22.3 PROFILED TUBES 404 22.4 TUBES WITH HOLES OR SLOTS 408 22.5 TUBULAR STRUCTURES UNDER COMPLEX LOADING 410 REFERENCES 411 23 BENT LAMELLA (CANTILEVER BEAMS) 415 23.1 VARIOUS APPLICATIONS WITH CANTILEVER BEAMS 415 23.2 CANTILEVER BEAMS FOR LOWER FORCES 419 23.3 (BIO)CHEMICAL CANTILEVERS 424 23.4 SEVERAL SHAPES OF CANTILEVER BEAMS 428 23.5 CANTILEVER BEAMS IN MULTICOMPONENT FTS 431 REFERENCES 434 IMAGE 8 XX D.M. CTEFANESCU 24 BENT AND/OR TORSION SHAFTS -: 437 24.1 BENDING OF CANTILEVER TUBE OR CYLINDER 437 24.2 ROTATING SHAFTS 439 24.3 COMPLEX LOADED SHAFTS 441 REFERENCES 443 25 MIDDLE BENT BARS WITH FIXED ENDS 445 25.1 EXAMPLES OF MIDDLE BENT BARS WITH FIXED ENDS 445 25.2 SLOTTED STRUCTURES FOR MIDDLE BENT BARS WITH FIXED ENDS 448 25.3 DYNAMIC APPLICATIONS OF DOUBLE ENDED BEAMS 450 25.4 VARIOUS MODELS OF FOUR-SPOKE WHEELS 452 REFERENCES 455 26 SHEARING STRAINED ELASTIC ELEMENTS 457 26.1 T-PROFILES SUBJECTED TO SHEARING 459 26.2 LOAD MEASURING PINS / BOLTS 460 26.3 HOLLOW DISCS / WHEELS 462 26.4 S (Z) SHAPED ELASTIC ELEMENTS 464 26.5 HELIX LOAD CELLS 465 REFERENCES 466 27 BENT YOKES AND FRAMES 469 27.1 VARIOUS SHAPES OF BENT YOKES AND FRAMES 471 27.2 FORCE-MEASURING CLAMPS 474 REFERENCES 475 28 BENT RINGS AND "GLASSES" 477 28.1 VARIOUS SHAPES OF BENT RINGS 477 28.1.1 CIRCULAR RINGS 477 28.1.2 "SQUARE" RINGS 480 28.1.3 HEXAGONAL RINGS 481 28.1.4 OCTAGONAL RINGS 481 28.1.5 OTHER SHAPES OF BENT RINGS 482 28.2 "GLASSES"-SHAPED ELASTIC STRUCTURES 484 28.3 MULTIPLE "GLASSES"-SHAPED ELASTIC ELEMENTS 490 REFERENCES 491 29 BENT MEMBRANES 495 29.1 VARIOUS TYPES OF BENT MEMBRANES 495 29.2 CIRCULAR MEMBRANES 500 29.3 SQUARE MEMBRANES 505 29.4 MEMBRANES WITH VARIOUS SHAPES OF APERTURES 509 29.5 OTHER SHAPES OF MEMBRANES 511 REFERENCES 514 IMAGE 9 CONTENTS XXI 30 COMPLEX LOADED TORUS 517 30.1 TORUS AS ELASTIC ELEMENT FOR FORCE TRANSDUCERS 517 30.2 TOROIDAL ELASTIC ELEMENTS IN SPECIAL APPLICATIONS 520 REFERENCES 522 31 AXISYMMETRIC ELASTIC ELEMENTS 523 31.1 VARIOUS AXISYMMETRIC EES FOR FORCE TRANSDUCERS 523 31.2 AXISYMMETRICAL EES FOR VERY LARGE FORCE TRANSDUCERS 528 31.3 N-SHAPED AXISYMMETRIC ELASTIC ELEMENTS 534 REFERENCES 537 32 VOLUMETRIC ELASTIC ELEMENTS 539 32.1 SPHERES 539 32.2 CUBES 542 32.2.1 FULL CUBES 542 32.2.2 CUBIC BLOCKS WITH SLOTS 543 32.3 COMPLEX BODIES WITH OBLIQUE SLOTS 547 REFERENCES 548 33 COMPLEX, COMPOSED AND COMBINED ELASTIC STRUCTURES 549 33.1 COMPLEX ELASTIC STRUCTURES 550 33.1.1 PLANE COMPLEX STRUCTURES 550 33.1.2 SPATIAL COMPLEX STRUCTURES 552 33.2 COMPOSED ELASTIC STRUCTURES 554 33.3 COMBINED ELASTIC STRUCTURES 558 33.3.1 PLANE COMBINATIONS OF ELASTIC ELEMENTS 558 33.3.2 AXISYMMETRIC COMBINATIONS OF ELASTIC ELEMENTS 559 33.3.3 SPATIAL COMBINATIONS OF ELASTIC ELEMENTS 560 REFERENCES 562 34 ELASTIC ELEMENTS SELECTION CRITERIA 563 34.1 ELASTIC ELEMENTS (EES) EVALUATION CRITERIA 565 34.2 ELASTIC ELEMENTS COMPARATIVE ANALYSIS 566 34.3 EE SELECTION FOR SPECIFIC APPLICATIONS 569 34.3.1 FROM SINGLE- TO MULTI-COMPONENT FORCE TRANSDUCERS 569 34.3.2 FORCE TRANSDUCERS IN MECHATRONICS 570 34.3.3 EES FOR VERY LARGE FORCES 571 34.4 ELASTIC ELEMENTS AUTOMATIC SELECTION 572 REFERENCES 574 IMAGE 10 XXII D.M. STEFANESCU 35 DIGITAL AND INTELLIGENT FORCE TRANSDUCERS 577 35.1 EVOLUTION FROM ANALOG TO DIGITAL 577 35.2 AUTOMATIC RECOGNITION OF FORCE TRANSDUCERS 579 35.3 FORCE TRANSDUCERS IN DYNAMIC REGIME 581 35.4 INTELLIGENT (SMART) FORCE TRANSDUCERS 582 35.5 FURTHER PROSPECTS: MATERIALS, TECHNOLOGIES, IDEAS 583 35.5.1 SMART MATERIALS AND STRUCTURES 583 35.5.2 INTELLIGENT DESIGN AND SMART TECHNOLOGY 584 35.5.3 NEURO-FUZZY CONCEPTS 585 35.6 UPDATED FORCE TRANSDUCERS + DATA COMMUNICATION 585 35.6.1 DUAL OUTPUT FORCE TRANSDUCERS 585 35.6.2 DATA DISPLAY AND COMMUNICATION 587 REFERENCES 589 ANNEX 1. RULES FOR STRAIN GAUGES PLACEMENT ON THE ELASTIC ELEMENTS OF FORCE TRANSDUCERS 591 ANNEX 2. THE NEWTON'S APPLE TREE IN KOREA 595 INDEX 597
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author Ştefǎnescu, Dan Mihai
author_facet Ştefǎnescu, Dan Mihai
author_role aut
author_sort Ştefǎnescu, Dan Mihai
author_variant d m ş dm dmş
building Verbundindex
bvnumber BV039108232
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(DE-599)DNB100897255X
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681.2
dewey-hundreds 600 - Technology (Applied sciences)
dewey-ones 620 - Engineering and allied operations
681 - Precision instruments and other devices
dewey-raw 620.0044
681.2
dewey-search 620.0044
681.2
dewey-sort 3620.0044
dewey-tens 620 - Engineering and allied operations
680 - Manufacture of products for specific uses
discipline Maschinenbau / Maschinenwesen
Handwerk und Gewerbe / Verschiedene Technologien
Mess-/Steuerungs-/Regelungs-/Automatisierungstechnik / Mechatronik
format Book
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illustrated Illustrated
indexdate 2024-07-20T11:12:35Z
institution BVB
isbn 9783642182952
9783642182969
language English
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physical XXIX, 612 S. Ill., graph. Darst.
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publishDateSearch 2011
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spelling Ştefǎnescu, Dan Mihai Verfasser aut
Handbook of force transducers principles and components Dan Mihai Ştefǎnescu
Berlin [u.a.] Springer 2011
XXIX, 612 S. Ill., graph. Darst.
txt rdacontent
n rdamedia
nc rdacarrier
Kraftsensor (DE-588)4165452-3 gnd rswk-swf
Kraftsensor (DE-588)4165452-3 s
DE-604
Erscheint auch als Online-Ausgabe Handbook of force transducers
X:MVB text/html http://deposit.dnb.de/cgi-bin/dokserv?id=3631577&prov=M&dok_var=1&dok_ext=htm Inhaltstext
DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=022652009&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis
spellingShingle Ştefǎnescu, Dan Mihai
Handbook of force transducers principles and components
Kraftsensor (DE-588)4165452-3 gnd
subject_GND (DE-588)4165452-3
title Handbook of force transducers principles and components
title_auth Handbook of force transducers principles and components
title_exact_search Handbook of force transducers principles and components
title_full Handbook of force transducers principles and components Dan Mihai Ştefǎnescu
title_fullStr Handbook of force transducers principles and components Dan Mihai Ştefǎnescu
title_full_unstemmed Handbook of force transducers principles and components Dan Mihai Ştefǎnescu
title_short Handbook of force transducers
title_sort handbook of force transducers principles and components
title_sub principles and components
topic Kraftsensor (DE-588)4165452-3 gnd
topic_facet Kraftsensor
url http://deposit.dnb.de/cgi-bin/dokserv?id=3631577&prov=M&dok_var=1&dok_ext=htm
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