MX343944B - Metodo de simulacion de una relacion tension-deformacion, metodo de prediccion de una cantidad de recuperacion elastica, y analizador de recuperacion elastica. - Google Patents

Metodo de simulacion de una relacion tension-deformacion, metodo de prediccion de una cantidad de recuperacion elastica, y analizador de recuperacion elastica.

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Publication number
MX343944B
MX343944B MX2015012272A MX2015012272A MX343944B MX 343944 B MX343944 B MX 343944B MX 2015012272 A MX2015012272 A MX 2015012272A MX 2015012272 A MX2015012272 A MX 2015012272A MX 343944 B MX343944 B MX 343944B
Authority
MX
Mexico
Prior art keywords
stress
spring back
prescribed
elastic
formula
Prior art date
Application number
MX2015012272A
Other languages
English (en)
Other versions
MX2015012272A (es
Inventor
Ishiwatari Akinobu
Sumikawa Satoshi
Original Assignee
Jfe Steel Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Jfe Steel Corp filed Critical Jfe Steel Corp
Publication of MX2015012272A publication Critical patent/MX2015012272A/es
Publication of MX343944B publication Critical patent/MX343944B/es

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F30/00Computer-aided design [CAD]
    • G06F30/20Design optimisation, verification or simulation
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N3/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N3/08Investigating strength properties of solid materials by application of mechanical stress by applying steady tensile or compressive forces
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N33/00Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
    • G01N33/44Resins; Plastics; Rubber; Leather
    • G01N33/442Resins; Plastics
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F17/00Digital computing or data processing equipment or methods, specially adapted for specific functions
    • G06F17/10Complex mathematical operations
    • G06F17/16Matrix or vector computation, e.g. matrix-matrix or matrix-vector multiplication, matrix factorization
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D22/00Shaping without cutting, by stamping, spinning, or deep-drawing
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2203/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N2203/0058Kind of property studied
    • G01N2203/0069Fatigue, creep, strain-stress relations or elastic constants
    • G01N2203/0075Strain-stress relations or elastic constants
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2203/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N2203/0058Kind of property studied
    • G01N2203/0092Visco-elasticity, solidification, curing, cross-linking degree, vulcanisation or strength properties of semi-solid materials

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Theoretical Computer Science (AREA)
  • Biochemistry (AREA)
  • Analytical Chemistry (AREA)
  • General Health & Medical Sciences (AREA)
  • Pathology (AREA)
  • Immunology (AREA)
  • Mathematical Physics (AREA)
  • Data Mining & Analysis (AREA)
  • Computational Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
  • Mathematical Analysis (AREA)
  • Mathematical Optimization (AREA)
  • Pure & Applied Mathematics (AREA)
  • Medicinal Chemistry (AREA)
  • Food Science & Technology (AREA)
  • Databases & Information Systems (AREA)
  • Software Systems (AREA)
  • Computing Systems (AREA)
  • Algebra (AREA)
  • Computer Hardware Design (AREA)
  • Evolutionary Computation (AREA)
  • Geometry (AREA)
  • Shaping Metal By Deep-Drawing, Or The Like (AREA)
  • Investigating Strength Of Materials By Application Of Mechanical Stress (AREA)
  • Bending Of Plates, Rods, And Pipes (AREA)
  • Mechanical Engineering (AREA)

Abstract

Desplazamiento o una carga se aplica a un material elastoplástico para deformar el material elastoplástico plásticamente para adquirir valores experimentales de una relación tensión-deformación. Con un vector incremental de endurecimiento cinemático da de una superficie de fluencia en un modelo constitutivo elastoplástico como una primera ecuación predeterminada, el modelo constitutivo elastoplástico estando definido como una función de tensión y contratensión, una computadora identifica constantes de materiales contenidas en el modelo constitutivo elastoplástico con los valores experimentales adquiridos. La computadora identifica constantes de materiales contenidas en una segunda ecuación predeterminada con base en los valores experimentales adquiridos y la primera ecuación predeterminada en la cual se sustituyen las constantes de materiales identificadas. La computadora simula la relación tensión-deformación del material elastoplástico con la primera ecuación predeterminada, la segunda ecuación predeterminada, y el modelo constitutivo elastoplástico en los cuales se sustituyen las constantes de materiales identificadas.
MX2015012272A 2013-03-14 2014-02-10 Metodo de simulacion de una relacion tension-deformacion, metodo de prediccion de una cantidad de recuperacion elastica, y analizador de recuperacion elastica. MX343944B (es)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2013051385A JP5582211B1 (ja) 2013-03-14 2013-03-14 応力−ひずみ関係シミュレート方法、スプリングバック量予測方法およびスプリングバック解析装置
PCT/JP2014/053069 WO2014141794A1 (ja) 2013-03-14 2014-02-10 応力-ひずみ関係シミュレート方法、スプリングバック量予測方法およびスプリングバック解析装置

Publications (2)

Publication Number Publication Date
MX2015012272A MX2015012272A (es) 2016-01-25
MX343944B true MX343944B (es) 2016-11-30

Family

ID=51536470

Family Applications (1)

Application Number Title Priority Date Filing Date
MX2015012272A MX343944B (es) 2013-03-14 2014-02-10 Metodo de simulacion de una relacion tension-deformacion, metodo de prediccion de una cantidad de recuperacion elastica, y analizador de recuperacion elastica.

Country Status (7)

Country Link
US (1) US10089422B2 (es)
EP (1) EP2975377B1 (es)
JP (1) JP5582211B1 (es)
KR (1) KR101819474B1 (es)
CN (1) CN105122033B (es)
MX (1) MX343944B (es)
WO (1) WO2014141794A1 (es)

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CN107305174B (zh) * 2016-04-20 2020-12-11 中国特种设备检测研究院 一种材料应力应变本构关系的数值表征方法及系统
JP6649187B2 (ja) * 2016-06-27 2020-02-19 株式会社神戸製鋼所 引張特性の推定方法
CN106295086A (zh) * 2016-10-18 2017-01-04 山东理工大学 端部接触式少片抛物线型主副簧限位挠度的设计方法
JP6547763B2 (ja) * 2017-01-05 2019-07-24 Jfeスチール株式会社 スプリングバック量予測方法
CN106769555B (zh) * 2017-01-19 2019-04-19 北京工业大学 一种拉扭载荷下的高温多轴应力应变关系建模方法
CN107220485B (zh) * 2017-05-12 2018-02-23 华中科技大学 一种适用于多道次压缩的本构模型的建立方法
CN107478189B (zh) * 2017-07-03 2019-10-22 航天材料及工艺研究所 一种适用于层合板载荷-变形映射关系的测量装置及方法
US10508978B2 (en) * 2017-11-03 2019-12-17 Saudi Arabian Oil Company Strain energy-based method and apparatus to determine the coefficient of resilience of lost circulation materials
CN107908917B (zh) * 2017-12-29 2020-05-05 清华大学 一种高强板冲压成形回弹预测方法
JP6988599B2 (ja) * 2018-03-14 2022-01-05 トヨタ自動車株式会社 解析装置
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JP6958521B2 (ja) * 2018-09-14 2021-11-02 Jfeスチール株式会社 応力−ひずみ関係推定方法
KR102163021B1 (ko) 2018-09-28 2020-10-07 대주코레스(주) 차량용 중공형 알루미늄 범퍼빔의 프레스 성형해석 방법
CN109317543B (zh) * 2018-10-11 2020-03-20 福建工程学院 一种薄板自由曲面弯曲回弹预测方法
CN109446731A (zh) * 2018-12-11 2019-03-08 哈工大机器人(合肥)国际创新研究院 一种基于abaqus的岩土工程数值模拟方法
CN109684753A (zh) * 2018-12-28 2019-04-26 西北工业大学 一种管材弯曲回弹角逆向预测和补偿方法
TWI677383B (zh) * 2019-02-12 2019-11-21 中國鋼鐵股份有限公司 拉直機之拉直率的調整方法
US20220118501A1 (en) * 2019-02-14 2022-04-21 Northwestern University In-Situ Springback Compensation In Incremental Sheet Forming
JP6852750B2 (ja) * 2019-04-25 2021-03-31 Jfeスチール株式会社 スプリングバック量乖離要因部位特定方法および装置
CN110096841B (zh) * 2019-05-19 2023-04-25 北京工业大学 多轴热机械加载下缺口根部应力-应变状态评估方法
CN110303070B (zh) * 2019-05-28 2020-06-26 太原科技大学 一种双金属复合板矫直工艺新方法
CN110231215B (zh) * 2019-06-05 2021-06-08 重庆大学 挠度受弹性限制的预应力圆形薄膜的最大挠度的确定方法
CN110208099B (zh) * 2019-06-05 2021-06-08 重庆大学 一种液体作用下预应力圆形薄膜的弹性能的确定方法
CN111143975B (zh) * 2019-12-11 2023-05-26 南京理工大学 一种锻造的碳纤维复合材料压缩力学本构计算方法
CN111090957B (zh) * 2019-12-23 2024-04-12 北京工业大学 一种高温结构危险点应力-应变计算方法
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CN112161865A (zh) * 2020-08-28 2021-01-01 中国科学院金属研究所 一种高强钢的室温拉伸试验方法
JP6981521B1 (ja) * 2020-12-08 2021-12-15 Jfeスチール株式会社 残留応力の算出方法
CN112872118B (zh) * 2020-12-18 2023-12-12 内蒙古大学 大口径直缝焊管的精密弯曲成形工艺
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CN112924305B (zh) * 2021-01-27 2022-06-21 中国地质大学(北京) 获取被动桩板拦石墙在崩塌落石地质灾害中动态响应数据的方法
CN113139238B (zh) * 2021-04-29 2022-09-27 四川大学 基于材料本构优化模型的汽车高强度钢冲压回弹优化方法
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Also Published As

Publication number Publication date
CN105122033B (zh) 2018-01-02
KR101819474B1 (ko) 2018-01-17
JP5582211B1 (ja) 2014-09-03
JP2014178168A (ja) 2014-09-25
KR20150110780A (ko) 2015-10-02
US10089422B2 (en) 2018-10-02
WO2014141794A1 (ja) 2014-09-18
US20150370936A1 (en) 2015-12-24
CN105122033A (zh) 2015-12-02
EP2975377A1 (en) 2016-01-20
EP2975377A4 (en) 2016-03-30
EP2975377B1 (en) 2019-04-03
MX2015012272A (es) 2016-01-25

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