Class information for: |
Basic class information |
ID | Publications | Average number of references |
Avg. shr. active ref. in WoS |
---|---|---|---|
1603 | 2491 | 23.9 | 67% |
Classes in level above (level 2) |
ID, lev. above |
Publications | Label for level above |
---|---|---|
150 | 22256 | ENGINEERING FRACTURE MECHANICS//INTERNATIONAL JOURNAL OF FRACTURE//STRESS INTENSITY FACTOR |
Terms with highest relevance score |
Rank | Term | Type of term | Relevance score (tfidf) |
Class's shr. of term's tot. occurrences |
Shr. of publ. in class containing term |
Num. of publ. in class |
---|---|---|---|---|---|---|
1 | FIELD INTENSITY FACTORS | Author keyword | 85 | 92% | 1% | 34 |
2 | PIEZOELECTRIC SOLIDS | Author keyword | 62 | 92% | 1% | 24 |
3 | PIEZOELECTRIC MATERIAL | Author keyword | 52 | 27% | 7% | 164 |
4 | INTENSITY FACTORS | Author keyword | 52 | 75% | 2% | 38 |
5 | PIEZOELECTRIC STRIP | Author keyword | 51 | 91% | 1% | 21 |
6 | IMPERMEABLE CRACK | Author keyword | 45 | 94% | 1% | 16 |
7 | MAGNETOELECTROELASTIC MATERIALS | Author keyword | 45 | 80% | 1% | 28 |
8 | ELECTRIC DISPLACEMENT INTENSITY FACTOR | Author keyword | 42 | 94% | 1% | 15 |
9 | INTENSITY FACTOR | Author keyword | 41 | 67% | 1% | 37 |
10 | FIELD INTENSITY FACTOR | Author keyword | 41 | 87% | 1% | 20 |
Web of Science journal categories |
Author Key Words |
Rank | Web of Science journal category | Relevance score (tfidf) |
Class's shr. of term's tot. occurrences |
Shr. of publ. in class containing term |
Num. of publ. in class |
LCSH search | Wikipedia search |
---|---|---|---|---|---|---|---|
1 | FIELD INTENSITY FACTORS | 85 | 92% | 1% | 34 | Search FIELD+INTENSITY+FACTORS | Search FIELD+INTENSITY+FACTORS |
2 | PIEZOELECTRIC SOLIDS | 62 | 92% | 1% | 24 | Search PIEZOELECTRIC+SOLIDS | Search PIEZOELECTRIC+SOLIDS |
3 | PIEZOELECTRIC MATERIAL | 52 | 27% | 7% | 164 | Search PIEZOELECTRIC+MATERIAL | Search PIEZOELECTRIC+MATERIAL |
4 | INTENSITY FACTORS | 52 | 75% | 2% | 38 | Search INTENSITY+FACTORS | Search INTENSITY+FACTORS |
5 | PIEZOELECTRIC STRIP | 51 | 91% | 1% | 21 | Search PIEZOELECTRIC+STRIP | Search PIEZOELECTRIC+STRIP |
6 | IMPERMEABLE CRACK | 45 | 94% | 1% | 16 | Search IMPERMEABLE+CRACK | Search IMPERMEABLE+CRACK |
7 | MAGNETOELECTROELASTIC MATERIALS | 45 | 80% | 1% | 28 | Search MAGNETOELECTROELASTIC+MATERIALS | Search MAGNETOELECTROELASTIC+MATERIALS |
8 | ELECTRIC DISPLACEMENT INTENSITY FACTOR | 42 | 94% | 1% | 15 | Search ELECTRIC+DISPLACEMENT+INTENSITY+FACTOR | Search ELECTRIC+DISPLACEMENT+INTENSITY+FACTOR |
9 | INTENSITY FACTOR | 41 | 67% | 1% | 37 | Search INTENSITY+FACTOR | Search INTENSITY+FACTOR |
10 | FIELD INTENSITY FACTOR | 41 | 87% | 1% | 20 | Search FIELD+INTENSITY+FACTOR | Search FIELD+INTENSITY+FACTOR |
Key Words Plus |
Rank | Web of Science journal category | Relevance score (tfidf) |
Class's shr. of term's tot. occurrences |
Shr. of publ. in class containing term |
Num. of publ. in class |
---|---|---|---|---|---|
1 | FRACTURE MECHANICS | 176 | 28% | 21% | 526 |
2 | CERAMIC STRIP | 174 | 94% | 2% | 62 |
3 | PIEZOMAGNETIC PHASES | 156 | 67% | 6% | 139 |
4 | MAGNETOELECTROELASTIC SOLIDS | 127 | 92% | 2% | 49 |
5 | ELECTROMECHANICAL IMPACT | 126 | 95% | 2% | 41 |
6 | MODE III CRACK | 83 | 66% | 3% | 77 |
7 | PIEZOELECTRIC PIEZOMAGNETIC MATERIALS | 81 | 96% | 1% | 25 |
8 | PENNY SHAPED CRACK | 81 | 53% | 4% | 106 |
9 | ANTIPLANE SHEAR CRACK | 67 | 89% | 1% | 31 |
10 | ELECTROMECHANICAL FRACTURE | 64 | 100% | 1% | 21 |
Journals |
Reviews |
Title | Publ. year | Cit. | Active references | % act. ref. to same field |
---|---|---|---|---|
Fracture of piezoelectric ceramics | 2002 | 172 | 154 | 70% |
Fracture behaviors of piezoelectric materials | 2004 | 151 | 92 | 61% |
Influence of electric field and mechanical stresses on the fracture of ferroelectrics | 2007 | 57 | 70 | 76% |
Cracks and fracture in piezoelectrics | 2003 | 32 | 185 | 80% |
Design and fabrication of multilayer actuator using floating electrode | 2005 | 8 | 5 | 80% |
On the fundamental equations of electromagnetoelastic media in variational form with an application to shell/laminae equations | 2010 | 9 | 75 | 35% |
Phase-Field Modeling of Fracture in Ferroelectric Materials | 2015 | 0 | 131 | 66% |
Electromechanical deformation and fracture of piezoelectric/ferroelectric materials | 2001 | 6 | 148 | 56% |
Stress and strain in ferroelectrics | 1998 | 13 | 32 | 22% |
Address terms |
Rank | Address term | Relevance score (tfidf) |
Class's shr. of term's tot. occurrences |
Shr. of publ. in class containing term |
Num. of publ. in class |
---|---|---|---|---|---|
1 | HENAN KEY ENGN ANTIFATIGUE MFG TECHNOL | 17 | 100% | 0.3% | 8 |
2 | MECH SENSOR TECHNOL | 16 | 41% | 1.2% | 29 |
3 | STATE MSSV | 8 | 100% | 0.2% | 5 |
4 | MECAN MEDIOS CONTINUOS | 6 | 48% | 0.4% | 10 |
5 | UMR UBP CNRS IFMA 6602 | 6 | 80% | 0.2% | 4 |
6 | MECH FLUID DYNAM | 6 | 18% | 1.1% | 27 |
7 | INGN CIVIL MAT FABRICAC | 4 | 27% | 0.6% | 14 |
8 | MECAN MED CONTINUOS | 4 | 75% | 0.1% | 3 |
9 | FRENCH ADV MECH | 4 | 36% | 0.4% | 9 |
10 | ENGN MECH DESIGN | 3 | 20% | 0.6% | 16 |
Related classes at same level (level 1) |
Rank | Relatedness score | Related classes |
---|---|---|
1 | 0.0000120134 | FUNCTIONALLY GRADED MATERIALS//CRACK DIVIDER//FUNCTIONALLY GRADED STEEL |
2 | 0.0000115773 | DISTRIBUTION EXPONENT//CRACK SENSING//ENGN INORGAN MAT MEGURO KU |
3 | 0.0000111058 | DOMAIN SWITCHING//CERAM MECH ENGN//FERROELECTRIC CERAMICS |
4 | 0.0000102916 | IMPERFECT INTERFACE//ESHELBYS PROBLEM//INTERFACIAL DEBONDING AND DECOHESION |
5 | 0.0000096597 | NORMAL POINT LOADING//ORTHOTROPIC MEDIUM//HALF PLANE CRACK |
6 | 0.0000078279 | THERMAL STRESS INTENSITY FACTOR TSIF//MODIFIED CRACK CLOSURE INTEGRAL//ACCURACY OF SIF COMPUTATION |
7 | 0.0000072757 | SYMPLECTIC ORTHOGONALITY//CYLINDRICAL ANISOTROPY//STATE SPACE FORMALISM |
8 | 0.0000065159 | PIEZOELECT DEVICE//INITIAL FIELDS//MECH SENSING TECHNOL |
9 | 0.0000065106 | GENERALIZED IMAGES METHOD//TRANSVERSELY ISOTROPIC BODY//TRANSVERSELY ISOTROPIC HALF SPACE |
10 | 0.0000065000 | SOFT FERROMAGNETIC MATERIALS//UNCONVENTIONAL HAMILTON TYPE VARIATIONAL PRINCIPLE//ELECTRO MAGNETO MECHANICAL COUPLING |