XC Open source finite element analysis program
MinMaxMaterial.h
1 //----------------------------------------------------------------------------
2 // XC program; finite element analysis code
3 // for structural analysis and design.
4 //
5 // Copyright (C) Luis Claudio Pérez Tato
6 //
7 // This program derives from OpenSees <http://opensees.berkeley.edu>
8 // developed by the «Pacific earthquake engineering research center».
9 //
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11 // of the original program (see copyright_opensees.txt)
12 // XC is free software: you can redistribute it and/or modify
13 // it under the terms of the GNU General Public License as published by
14 // the Free Software Foundation, either version 3 of the License, or
15 // (at your option) any later version.
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19 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20 // GNU General Public License for more details.
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24 // along with this program.
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26 //----------------------------------------------------------------------------
27 /* ****************************************************************** **
28 ** OpenSees - Open System for Earthquake Engineering Simulation **
29 ** Pacific Earthquake Engineering Research Center **
30 ** **
31 ** **
32 ** (C) Copyright 1999, The Regents of the University of California **
33 ** All Rights Reserved. **
34 ** **
35 ** Commercial use of this program without express permission of the **
36 ** University of California, Berkeley, is strictly prohibited. See **
37 ** file 'COPYRIGHT' in main directory for information on usage and **
38 ** redistribution, and for a DISCLAIMER OF ALL WARRANTIES. **
39 ** **
40 ** Developed by: **
41 ** Frank McKenna (fmckenna@ce.berkeley.edu) **
42 ** Gregory L. Fenves (fenves@ce.berkeley.edu) **
43 ** Filip C. Filippou (filippou@ce.berkeley.edu) **
44 ** **
45 ** ****************************************************************** */
46 
47 // $Revision: 1.3 $
48 // $Date: 2003/02/14 23:01:39 $
49 // $Source: /usr/local/cvs/OpenSees/SRC/material/uniaxial/MinMaxMaterial.h,v $
50 
51 // Written: MHS
52 // Created: Aug 2001
53 //
54 // Description: This file contains the class definition for
55 // MinMaxMaterial. MinMaxMaterial wraps a UniaxialMaterial
56 // and imposes min and max strain limits.
57 
58 #ifndef MinMaxMaterial_h
59 #define MinMaxMaterial_h
60 
61 #include <material/uniaxial/EncapsulatedMaterial.h>
62 
63 namespace XC {
65 //
68  {
69  private:
70  double minStrain;
71  double maxStrain;
72 
73  bool Tfailed;
74  bool Cfailed;
75  public:
76  MinMaxMaterial(int tag, UniaxialMaterial &material, double min, double max);
77  MinMaxMaterial(int tag);
78  MinMaxMaterial(void);
79 
80  int setTrialStrain(double strain, double strainRate = 0.0);
81  double getStress(void) const;
82  double getTangent(void) const;
83  double getDampTangent(void) const;
84  inline double getInitialTangent(void) const {return theMaterial->getInitialTangent();}
85 
86  int commitState(void);
87  int revertToLastCommit(void);
88  int revertToStart(void);
89 
90  UniaxialMaterial *getCopy(void) const;
91 
92  int sendSelf(CommParameters &);
93  int recvSelf(const CommParameters &);
94 
95  void Print(std::ostream &s, int flag =0);
96  };
97 } // end of XC namespace
98 
99 
100 #endif
101 
Stores max and min strain values.
Definition: MinMaxMaterial.h:67
double getDampTangent(void) const
default operation for damping tangent is zero
Definition: MinMaxMaterial.cpp:110
void Print(std::ostream &s, int flag=0)
Imprime el objeto.
Definition: MinMaxMaterial.cpp:181
UniaxialMaterial * getCopy(void) const
Virtual constructor.
Definition: MinMaxMaterial.cpp:145
Communication parameters between processes.
Definition: CommParameters.h:65
================================================================================
Definition: ContinuaReprComponent.h:34
??.
Definition: EncapsulatedMaterial.h:37
Base class for uniaxial materials.
Definition: UniaxialMaterial.h:88