• 제목/요약/키워드: Inhomogeneous material

검색결과 150건 처리시간 0.021초

Multiscale modeling of elasto-viscoplastic polycrystals subjected to finite deformations

  • Matous, Karel;Maniatty, Antoinette M.
    • Interaction and multiscale mechanics
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    • 제2권4호
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    • pp.375-396
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    • 2009
  • In the present work, the elasto-viscoplastic behavior, interactions between grains, and the texture evolution in polycrystalline materials subjected to finite deformations are modeled using a multiscale analysis procedure within a finite element framework. Computational homogenization is used to relate the grain (meso) scale to the macroscale. Specifically, a polycrystal is modeled by a material representative volume element (RVE) consisting of an aggregate of grains, and a periodic distribution of such unit cells is considered to describe material behavior locally on the macroscale. The elastic behavior is defined by a hyperelastic potential, and the viscoplastic response is modeled by a simple power law complemented by a work hardening equation. The finite element framework is based on a Lagrangian formulation, where a kinematic split of the deformation gradient into volume preserving and volumetric parts together with a three-field form of the Hu-Washizu variational principle is adopted to create a stable finite element method. Examples involving simple deformations of an aluminum alloy are modeled to predict inhomogeneous fields on the grain scale, and the macroscopic effective stress-strain curve and texture evolution are compared to those obtained using both upper and lower bound models.

Ni-Zn-Cu계 페라이트 시트에서 충진 밀도에 따른 시트 휨 현상 (The Effect of Packing Density on the Warpage Behavior of Ni-Zn-Cu Ferrite Sheets)

  • 김시연;여동훈;신효순;송우창;윤호규
    • 한국전기전자재료학회논문지
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    • 제28권12호
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    • pp.781-786
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    • 2015
  • It is necessary for ferrite sheets to be fabricated with high packing density for excellent electrical properties and high strength. In this study, the relationship between the warpage and the packing density of ferrite green sheet, was investigated with amount variation of organic additives. With 0.4 wt% of dispersant, the packing density was about 48% and warpage appeared 0.5~1.3 mm high. With 1.4 wt% of dispersant, the packing density increased up to 57% and warpage appeared 0.8~2.1 mm high. With high packing density, warpage appeared along the edges of specimen, while with low packing density, deformation appeared over whole specimen inhomogeneously. It is thought that inhomogeneous deformation after sintering came from the inhomogeneity in green sheet prepared with badly dispersed slurry. With good homogeneity in green sheet from well-dispersed slurry, isotropic shrinkage is thought to have occurred along the distance from center to edges of specimen during sintering.

일축 이방성 자성체의 M-H 이력 곡선 측정의 새방법 (A New Method for Measuring M-H Hysteteresis Loop of a Uniaxially Anisotropic Magnetic Material)

  • 허진;신성철
    • 한국자기학회지
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    • 제5권5호
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    • pp.900-904
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    • 1995
  • 돌림힘 자력계를 이용하여 일축 이방성 자성체의 M-H 이력 곡선을 측정하는 새방법을 개발하였다. 본 방법에 의한 M-H 이력 곡선으로부터 포화 및 잔류 자기화량과 보자력을 얻을 수 있었다. 본 방법의 정확도는 자기회사 비균질한 보자력 근처의 인가 자기 마당에서도 영향받지 않았다. $2{\times}10^{-3}$ dyn cm의 측정 감도를 갖는 돌림힘 자력계를 이용한 자기화량 측정에서 $10^{-6}$ emu 이상의 고감도를 얻었다.

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PWSCC growth rate model of alloy 690 for head penetration nozzles of Korean PWRs

  • Kim, Sung-Woo;Eom, Ki-Hyun;Lim, Yun-Soo;Kim, Dong-Jin
    • Nuclear Engineering and Technology
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    • 제51권4호
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    • pp.1060-1068
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    • 2019
  • This work aims to establish a model of a primary water stress corrosion crack growth rate of Alloy 690 material for the head penetration nozzles of Korean pressurized water reactors. The test material had an inhomogeneous microstructure with bands of fine-grains and intragranular carbides in the matrix of coarse-grains, which was similar to the archive materials of the head penetration nozzles. The crack growth rate was measured from the strain-hardened materials as a function of the stress intensity factor in simulated primary water at various temperatures and dissolved hydrogen contents. The effects of strain-hardening, temperature, and dissolved hydrogen on the crack growth rate were analyzed independently, and were then introduced as normalizing factors in the crack growth rate model. The crack growth rate model proposed in this work provides a key element of the tools needed to assess the progress of a stress corrosion crack when detected in thick-wall Alloy 690 components in Korean reactors.

Axial frequency analysis of axially functionally graded Love-Bishop nanorods using surface elasticity theory

  • Nazemnezhad, Reza;Shokrollahi, Hassan
    • Steel and Composite Structures
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    • 제42권5호
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    • pp.699-710
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    • 2022
  • This work presents a comprehensive study on the surface energy effect on the axial frequency analyses of AFGM nanorods in cylindrical coordinates. The AFGM nanorods are considered to be thin, relatively thick, and thick. In thin nanorods, effects of the inertia of lateral motions and the shear stiffness are ignored; in relatively thick nanorods, only the first one is considered; and in thick nanorods, both of them are considered in the kinetic energy and the strain energy of the nanorod, respectively. The surface elasticity theory which includes three surface parameters called surface density, surface stress, and surface Lame constants, is implemented to consider the size effect. The power-law form is considered for variation of the material properties through the axial direction. Hamilton's principle is used to derive the governing equations and boundary conditions. Due to considering the surface stress, the governing equation and boundary condition become inhomogeneous. After homogenization of them using an appropriate change of variable, axial natural frequencies are calculated implementing harmonic differential quadrature (HDQ) method. Comprehensive results including effects of geometric parameters and various material properties are presented for a wide range of boundary condition types. It is believed that this study is a comprehensive one that can help posterities for design and manufacturing of nano-electro-mechanical systems.

Novel quasi-3D and 2D shear deformation theories for bending and free vibration analysis of FGM plates

  • Younsi, Abderahman;Tounsi, Abdelouahed;Zaoui, Fatima Zohra;Bousahla, Abdelmoumen Anis;Mahmoud, S.R.
    • Geomechanics and Engineering
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    • 제14권6호
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    • pp.519-532
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    • 2018
  • In this work, two dimensional (2D) and quasi three-dimensional (quasi-3D) HSDTs are proposed for bending and free vibration investigation of functionally graded (FG) plates using hyperbolic shape function. Unlike the existing HSDT, the proposed theories have a novel displacement field which include undetermined integral terms and contains fewer unknowns. The material properties of the plate is inhomogeneous and are considered to vary continuously in the thickness direction by three different distributions; power-law, exponential and Mori-Tanaka model, in terms of the volume fractions of the constituents. The governing equations which consider the effects of both transverse shear and thickness stretching are determined through the Hamilton's principle. The closed form solutions are deduced by employing Navier method and then fundamental frequencies are obtained by solving the results of eigenvalue problems. In-plane stress components have been determined by the constitutive equations of composite plates. The transverse stress components have been determined by integrating the 3D stress equilibrium equations in the thickness direction of the FG plate. The accuracy of the present formulation is demonstrated by comparisons with the different 2D, 3D and quasi-3D solutions available in the literature.

스퍼터링 타겟용 저온 분사 Cu-15 at.%Ga 코팅 소재의 특성에 미치는 열처리 분위기의 영향 (Effect of Heat Treatment Environment on the Properties of Cold Sprayed Cu-15 at.%Ga Coating Material for Sputtering Target)

  • 최병철;박동용;김형준;오익현;이기안
    • 한국분말재료학회지
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    • 제18권6호
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    • pp.552-561
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    • 2011
  • This study attempted to manufacture a Cu-15 at.%Ga coating layer via the cold spray process and investigated the effect of heat treatment environment on the properties of cold sprayed coating material. Three kinds of heat treatment environments, $5%H_2$+argon, pure argon, and vacuum were used in this study. Annealing treatments were conducted at $200{\sim}800^{\circ}C$/1 hr. With the cold sprayed coating layer, pure ${\alpha}$-Cu and small amounts of $Ga_2O_3$ were detected in the XRD, EDS, EPMA analyses. Porosity significantly decreased and hardness also decreased with increasing annealing temperature. The inhomogeneous dendritic microstructure of cold sprayed coating material changed to the homogeneous and dense one (microstructural evolution) with annealing heat treatment. Oxides near the interface of particles could be reduced by heat treatment especially in vacuum and argon environments. Vacuum environment during heat treatment was suggested to be most effective one to improve the densification and purification properties of cold sprayed Cu-15 at.%Ga coating material.

탄소성유강화플라스틱으로 만들어진 소형 인장 시험편에서 여러 종류의 심재에 따른 파손 연구 (Fracture Study due to Various Core at Compact Tension Specimen Made of Carbon Fiber Reinforced Plastic)

  • 김재원;조재웅
    • 예술인문사회 융합 멀티미디어 논문지
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    • 제8권3호
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    • pp.589-596
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    • 2018
  • 현대 사회에서 의식주 중에서 구조물이나 운송수단은 중요한 역할을 가진다. 만약 구조물이나 운송수단에 작은 크랙이라도 생기고 크랙이 진전되면 그 부품들이 파괴되어 큰 사고를 야기할 수 있다. 이러한 상황을 방지하기 위한 본 연구에서는 크랙의 진전에 따른 파손 경향을 조사하기 위하여 시험편을 이용하였다. CT 시험편의 재질로는 요즘 각광받는 복합재료인 단방향 탄소섬유 강화플라스틱을 사용하였다. 시험편 모델은 단방향성 섬유로서 적층각도를 주었고 적층각도는 [60/-60/60/-60]순으로 지정하였다. 해석 조건으로는 하단부의 홀을 고정시킨후 상단부 홀을 15mm의 강제 변위를 가하였다. 본 연구 결과로는 구조용 강, 구리, 티타늄, 알루미늄 순으로 등가응력과 전단응력이 높게 나왔다. 이러한 결과는 이종재료로 만들어진 CT 시험편의 파손을 검증하는 데 유용하게 사용될 수 있다고 사료된다.

시뮬레이션 해석을 통한 소재 별 소형 인장 시험편의 내구성 및 강도 특성에 관한 연구 (A Study on Durability and Strength Properties of Compact Tension Specimen by Material through Simulation Analysis)

  • 이정호;조재웅
    • 예술인문사회 융합 멀티미디어 논문지
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    • 제8권3호
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    • pp.579-588
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    • 2018
  • 소재들에는 플라스틱 수지와 섬유 및 단일 금속 등으로 만들어진 소재들과 경량 특성들을 가지는 복합소재, 각 소재들의 장점들을 취합하여 내구성을 극대화시키는 방식의 이종재료 등이 있다. 본 연구에서는 경량 복합소재인 CFRP에 주목하여 단일 소재로서 보편적으로 쓰이는 소재들인 스테인리스 강, 알루미늄과의 강도 특성을 CFRP와 비교 및 분석하고, 데이터를 확보하기 위해 각 소재 별로 동일한 규격의 소형 인장 시험편(C-T specimen)을 설계하여 시뮬레이션 인장 해석 연구를 수행하였다. 연구 결과, CFRP 시험편 모델의 경우 최대 변형량은 약 0.0148mm, 최대 응력은 약 59.104MPa, 최대 변형률 에너지는 약 0.00529mJ로 나타났으며, 스테인리스 강 시험편 모델의 최대 변형량은 약 0.0106mm, 최대 응력은 약 42.22MPa, 최대 변형률 에너지는 약 0.002699mJ로 나타났고, 알루미늄 시험편 모델의 최대 변형량은 약 0.023mm, 최대 응력은 약 33.29MPa, 최대 변형률 에너지는 약 0.00464mJ로 나타나는 것을 확인할 수 있었다. 이와 같이 본 연구에서 도출한 데이터들을 향후 복합소재에 대한 연구에서 기초적인 데이터로서 활용하고자 하였다.

초음파 열화상 검사를 이용한 박판 용접시편의 결함 검출 (A Defect Detection of Thin Welded Plate using an Ultrasonic Infrared Imaging)

  • 조재완;정진만;최영수;정승호;정현규
    • 제어로봇시스템학회논문지
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    • 제13권11호
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    • pp.1060-1066
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    • 2007
  • When a high-energy ultrasound propagates through a solid body that contains a crack or a delamination, the two faces of the defect do not ordinarily vibrate in unison, and dissipative phenomena such as friction, rubbing and clapping between the faces will convert some of the vibrational energy to heat. By combining this heating effect with infrared imaging, one can detect a subsurface defect in material efficiently. In this paper a detection of the welding defect of thin SUS 304 plates using the UIR (ultrasonic infrared imaging) technology is described. A low frequency (20kHz) ultrasonic transducer was used to infuse the welded thin SUS 304 plates with a short pulse of sound for 280ms. The ultrasonic source has a maximum power of 2kW. The surface temperature of the area under inspection is imaged by a thermal infrared camera that is coupled to a fast frame grabber in a computer. The hot spots, which are a small area around the defect tip and heated up highly, are observed. From the sequence of the thermosonic images, the location of defective or inhomogeneous regions in the welded thin SUS 304 plates can be detected easily.