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040 _aOCoLC-P
_beng
_cOCoLC-P
020 _a9781000022636
020 _a1000022633
020 _a9780429283949
_q(electronic bk.)
020 _a0429283946
_q(electronic bk.)
020 _a9781000022933
_q(electronic bk. : EPUB)
020 _a1000022935
_q(electronic bk. : EPUB)
020 _a9781000022780
_q(electronic bk. : Mobipocket)
020 _a1000022781
_q(electronic bk. : Mobipocket)
020 _z0367246821
020 _z9780367246822
035 _a(OCoLC)1101783701
_z(OCoLC)1101788905
035 _a(OCoLC-P)1101783701
050 4 _aTA407
072 7 _aTEC
_x009000
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072 7 _aTEC
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072 7 _aTG
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082 0 4 _a620.1/12
_223
100 1 _aYu, Maohong,
_d1934-
245 1 0 _aIntroduction to Unified Strength Theory
_h[electronic resource].
260 _aMilton :
_bCRC Press LLC,
_c2019.
300 _a1 online resource (114 p.)
500 _aDescription based upon print version of record.
505 0 _aCover; Half Title; Title; Copyright; Contents; Preface; 1 Introduction; 1.1 Strength of materials in tension and compression; 1.2 Strength of materials under complex stress; 1.3 Single strength theory; 1.4 Voigt-Timoshenko conundrum; 1.5 The development of unified strength theory; 1.6 Applications of the Yu-UST; 1.7 Summary; References; Readings; 2 Stress state and elements; 2.1 Introduction; 2.2 Stresses on the oblique plane; 2.3 Cubic hexahedron and octahedron; 2.4 Mohr stress circle; 2.5 Stress space; 2.6 Summary; References; Readings; 3 Yu-unified strength theory (Yu-UST)
505 8 _a5.7 Strength design of an automobile transmission shaft: outer diameter design of drive shaft5.8 Strength design of a transmission axle; 5.9 Unified solution for elastic limit pressure of a thick-walled cylinder subjected to internal pressure; 5.10 Analysis of plastic ultimate pressure for a thick-walled cylinder with internal pressure; 5.11 Unified solution of plastic limit internal pressure for a thick-walled cylinder with the same tensile strength and compressive strength materials
505 8 _a5.12 Unified solution of plastic limit internal pressure for a thick-walled cylinder with different tensile strength and compressive strength materials5.13 Barrel strength design of artillery; 5.14 The economic significance of the use of Yu-unified strength theory; 5.15 Procedure of the applications of the Yu-UST and Yu-UYC; 5.16 Summary; References; Readings
520 _aStrength theory deals with the yield or failure of materials under complex stress state. It is very important in mechanics of materials, strength of structures, and mechanical and civil engineering. Unified strength theory is a series of yield criteria and failure criteria other than a single strength theory. The unified strength theory can be adopted for various kinds of materials, such as metallic materials, geomaterials, polymers etc. It is the solution to the Voigt-Timoshenko Conundrum. Its limit surfaces cover all regions of the convex strength theory from the lower bound to the upper bound. This book gives a clear and brief description about the unified strength theory both in figures and text. Some applications of unified strength theory are also given in this book. This book is suitable for undergraduate students, who are studying the mechanics of materials and engineering mechanics, as well as for graduate students who are interested in this field. Researchers and engineers can also benefit from this book.
588 _aOCLC-licensed vendor bibliographic record.
650 0 _aStrength of materials
_xMathematical models.
650 7 _aTECHNOLOGY & ENGINEERING / Engineering (General)
_2bisacsh
650 7 _aTECHNOLOGY & ENGINEERING / Reference.
_2bisacsh
650 7 _aTECHNOLOGY / General
_2bisacsh
650 7 _aTECHNOLOGY / Engineering / Civil
_2bisacsh
650 7 _aTECHNOLOGY / Engineering / Mechanical
_2bisacsh
700 1 _aYu, Shu-Qi.
856 4 0 _3Taylor & Francis
_uhttps://www.taylorfrancis.com/books/9780429283949
856 4 2 _3OCLC metadata license agreement
_uhttp://www.oclc.org/content/dam/oclc/forms/terms/vbrl-201703.pdf
999 _c126318
_d126318