• 제목/요약/키워드: Uneven Deformation

검색결과 53건 처리시간 0.03초

초박육 사출성형에서 Moldflow 시뮬레이션을 활용한 전자부품의 형상 최적화 (Dimensional Optimization of Electric Component in Ultra Thin-wall Injection Molding by Using Moldflow Simulation)

  • 이정희;배현선;곽재섭
    • 한국기계가공학회지
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    • 제19권7호
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    • pp.1-6
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    • 2020
  • Micro-structure components applied to various disciplines are steadily demanded with lighter weight and better quality. This is because that ultra thin-wall injection molding has been paid attention with a lot of benefits such as cost reduction, shorter process period, and so forth. However, this technology is complicate and difficult to obtain high quality of products compared with conventional injection molding due to warpage caused by uneven shrinkage and molecular orientation. Since warpage of products directly affects product quality and overall performance of devices, it is essential to predict deformation behavior to achieve high precision of molded products. Therefore, this study aims to find out adequate thin-wall mold design for FPC connector housing by employing Moldflow simulation before application. In addition, experimental research is performed by using a fabricated mold structure based on simulated results to prove accuracy and reliability of the suggested simulation for warpage analysis.

Wave dispersion properties in imperfect sigmoid plates using various HSDTs

  • Batou, Belaid;Nebab, Mokhtar;Bennai, Riadh;Atmane, Hassen Ait;Tounsi, Abdeldjebbar;Bouremana, Mohammed
    • Steel and Composite Structures
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    • 제33권5호
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    • pp.699-716
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    • 2019
  • In this paper, wave propagations in sigmoid functionally graded (S-FG) plates are studied using new Higher Shear Deformation Theory (HSDT) based on two-dimensional (2D) elasticity theory. The current higher order theory has only four unknowns, which mean that few numbers of unknowns, compared with first shear deformations and others higher shear deformations theories and without needing shear corrector. The material properties of sigmoid functionally graded are assumed to vary through thickness according sigmoid model. The S-FG plates are supposed to be imperfect, which means that they have a porous distribution (even and uneven) through the thickness of these plates. The governing equations of S-FG plates are derived employed Hamilton's principle. Using technique of Navier, differential equations of S-FG in terms displacements are solved. Extensive results are presented to check the efficient of present methods to predict wave dispersion and velocity wave in S-FG plates.

Thermo-mechanical vibration analysis of temperature-dependent porous FG beams based on Timoshenko beam theory

  • Ebrahimi, Farzad;Jafari, Ali
    • Structural Engineering and Mechanics
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    • 제59권2호
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    • pp.343-371
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    • 2016
  • In this paper thermo-mechanical vibration analysis of a porous functionally graded (FG) Timoshenko beam in thermal environment with various boundary conditions are performed by employing a semi analytical differential transform method (DTM) and presenting a Navier type solution method for the first time. The temperature-dependent material properties of FG beam are supposed to vary through thickness direction of the constituents according to the power-law distribution which is modified to approximate the material properties with the porosity phases. Also the porous material properties vary through the thickness of the beam with even and uneven distribution. Two types of thermal loadings, namely, uniform and linear temperature rises through thickness direction are considered. Derivation of equations is based on the Timoshenko beam theory in order to consider the effect of both shear deformation and rotary inertia. Hamilton's principle is applied to obtain the governing differential equation of motion and boundary conditions. The detailed mathematical derivations are presented and numerical investigations are performed while the emphasis is placed on investigating the effect of several parameters such as porosity distributions, porosity volume fraction, thermal effect, boundary conditions and power-low exponent on the natural frequencies of the FG beams in detail. It is explicitly shown that the vibration behavior of porous FG beams is significantly influenced by these effects. Numerical results are presented to serve benchmarks for future analyses of FG beams with porosity phases.

전자레인지의 가열조리 시 포장재의 열변형 원인 규명을 위한 온도 측정 방법 비교 (Comparison of temperature measurements methods to investigate the causes of deformation of packaging materials during microwave heating)

  • 윤찬석;이화신;토마스파이퍼;조아름;문상권;이근택
    • 한국식품저장유통학회지
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    • 제23권3호
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    • pp.422-431
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    • 2016
  • 일부 소스류 제품에 사용된 스탠딩 파우치에서 전자레인지 가열조리 시 열변형이 발견되어 이의 원인을 규명하고자 온도 변화 패턴을 조사하였다. 전자레인지로 포장된 식품을 가열 시 포장재의 온도 변화는 식품 자체의 온도보다 높고 국소적인 온도 측정 기술을 요한다. 공시 시료로 매운맛 닭 소스와 인도카레의 전자레인지 가열 시 포장재와 시료의 온도를 열화상 카메라, 온도센서 테이프 및 광섬유 온도계를 이용하여 측정하였다. 스탠딩 파우치 형태의 포장은 전자레인지 가열 조리 시 내용물의 불균일한 가열이 관찰되어 특정 부위, 특히 액위선 상단과 측면 sealing layer에 열이 집중되는 현상이 발생하였다. 열화상 카메라를 이용한 온도 측정 방법은 식품의 표면 온도를 측정하는 제약이 있고 실제 식품의 온도보다 낮게 측정되는 경향을 보였다. 온도센서 테이프를 이용할 경우 $200^{\circ}C$까지 온도까지 측정되어 전자레인지 가열 과정 중 포장재 변형 현상이 야기될 수 있는 가능성을 확인할 수 있었다. 그리고 전자레인지 가열 시 포장재 표면의 온도 변화를 기존 광섬유 온도계로 측정할 경우 실제 온도보다 낮게 측정되는 결과가 초래되므로, 좁은 범위에서의 hot spot의 온도 변화를 감지할 수 있는 방법으로 GaAS crystal 센서를 사용함으로서 기존 센서보다 더 민감하고 정확한 온도 측정이 가능하였다.

The Change of Sagittal Alignment of the Lumbar Spine after Dynesys Stabilization and Proposal of a Refinement

  • Park, Won Man;Kim, Chi Heon;Kim, Yoon Hyuk;Chung, Chun Kee;Jahng, Tae-Ahn
    • Journal of Korean Neurosurgical Society
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    • 제58권1호
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    • pp.43-49
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    • 2015
  • Objective : $Dynesys^{(R)}$ is one of the pedicle-based dynamic lumbar stabilization systems and good clinical outcome has been reported. However, the cylindrical spacer between the heads of the screws undergoes deformation during assembly of the system. The pre-strain probably change the angle of instrumented spine with time and oblique-shaped spacer may reduce the pre-strain. We analyzed patients with single-level stabilization with $Dynesys^{(R)}$ and simulated oblique-shaped spacer with finite element (FE) model analysis. Methods : Consecutive 14 patients, who underwent surgery for single-level lumbar spinal stenosis and were followed-up more than 24 months (M : F=6 : 8; age, $58.7{\pm}8.0$ years), were analyzed. Lumbar lordosis and segmental angle at the index level were compared between preoperation and postoperative month 24. The von Mises stresses on the obliquely-cut spacer ($5^{\circ}$, $10^{\circ}$, $15^{\circ}$, $20^{\circ}$, $25^{\circ}$, and $30^{\circ}$) were calculated under the compressive force of 400 N and 10 Nm of moment with validated FE model of the L4-5 spinal motion segment with segmental angle of $16^{\circ}$. Results : Lumbar lordosis was not changed, while segmental angle was changed significantly from $-8.1{\pm}7.2^{\circ}$ to $-5.9{\pm}6.7^{\circ}$ (p<0.01) at postoperative month 24. The maximum von Mises stresses were markedly decreased with increased angle of the spacer up to $20^{\circ}$. The stress on the spacer was uneven with cylindrical spacer but it became even with the $15^{\circ}$ oblique spacer. Conclusion : The decreased segmental lordosis may be partially related to the pre-strain of Dynesys. Further clinical and biomechanical studies are required for relevant use of the system.

니트 소재의 조직특성과 객관적 태에 관한 연구 -인타샤와 칼라자카드를 중심으로- (A Study on Structural Characteristics and Objective Hand of Knit Fabrics -A Focus on Intarsia and Color Jacquard-)

  • 임기정;이미식
    • 한국의류학회지
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    • 제35권8호
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    • pp.968-981
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    • 2011
  • This study examines the effect of the structure of Intarsia and Jacquard knit on mechanical properties of knit fabrics to suggest data for knit design. Intarsia and 7 types of Color Jacquard (Floating Jacquard, Normal Jacquard, Bird's eye Jacquard, Tubular Jacquard, Ladder's back Jacquard, Blister Jacquard, and Transfer Jacquard) were used. The samples with a gauge of 14 were knitted using 100% wool 2/48's yarn by Shima Seiki SIG computer knitting machine. The Objective Hand was measured by KES-FB system and HV and THV were calculated by the formula of KN-402-KT and KN-301-winter respectively. The results showed that Intarsia and Floating Jacquard are thin, flexible and light, Bird's eye Jacquard is slick, flat and slim, Tubular Jacquard is stiff and undrapable, Ladder's back Jacquard is difficult in shearing deformation and relatively bulky, Blister Jacquard is thickest and transfer jacquard is uneven in surface contour. The selection of proper structure is important for the knit apparel production since the thickness and weight of knit determine the amount of yarn needed and consequently the production cost. The hands of Ladder's back Jacquard and Tubular Jacquard are superior to those of other structures. Intarsia and Floating Jacquard which are thin, light and flexible seem to be good structures for designs showing a body silhouette whereas, Bird's eye Jacquard, Tubular Jacquard and Blister Jacquard (which are thick, heavy, and stiff) are suitable for a boxy silhouette.

탈색된 머리카락의 미세구조적 변화 (Ultrastructural Changes of Hair Treated with Bleaching Agent)

  • 장병수;이귀영
    • Applied Microscopy
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    • 제36권1호
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    • pp.25-33
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    • 2006
  • 정상성인 여성의 머리카락에 미용실에서 일반적으로 시술하는 탈색제를 사용한 다음 탈색직후, 탈색 후 10일, 20일이 경과한 머리카락을 채취하여 머리카락의 손상정도를 고배율의 투과 및 주사전자현미경으로 관찰하였다. 탈색직후 머리카락의 표면은 정상 머리카락과 비슷한 상태로 관찰되었으며 비늘이 분리되거나 손상됨 없이 나타났다. 탈색 후 10일 경과된 머리카락은 비늘이 분리되어 있고 일부 큐티클세포의 세포질은 조각이 나 있거나 떨어져 나갔다. 이 시기에 머리카락은 비늘이 떨어져 나가면서 표면에 세포부스러기들이 그대로 부착되어 있고, 비늘의 모양은 끝 쪽이 날카로운 모양을 하고 있었다. 탈색 후 20일이 경과된 머리카락은 표면 전체가 비늘의 분리에 의해서 거칠게 나타났다.

Assessment of porosity influence on dynamic characteristics of smart heterogeneous magneto-electro-elastic plates

  • Ebrahimi, Farzad;Jafari, Ali;Mahesh, Vinyas
    • Structural Engineering and Mechanics
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    • 제72권1호
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    • pp.113-129
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    • 2019
  • A four-variable shear deformation refined plate theory has been proposed for dynamic characteristics of smart plates made of porous magneto-electro-elastic functionally graded (MEE-FG) materials with various boundary conditions by using an analytical method. Magneto-electro-elastic properties of FGM plate are supposed to vary through the thickness direction and are estimated through the modified power-law rule in which the porosities with even and uneven type are approximated. Pores possibly occur inside functionally graded materials (FGMs) due the result of technical problems that lead to creation of micro-voids in these materials. The variation of pores along the thickness direction influences the mechanical properties. The governing differential equations and boundary conditions of embedded porous FGM plate under magneto-electrical field are derived through Hamilton's principle based on a four-variable tangential-exponential refined theory which avoids the use of shear correction factors. An analytical solution procedure is used to achieve the natural frequencies of embedded porous FG plate supposed to magneto-electrical field with various boundary condition. A parametric study is led to carry out the effects of material graduation exponent, coefficient of porosity, magnetic potential, electric voltage, elastic foundation parameters, various boundary conditions and plate side-to-thickness ratio on natural frequencies of the porous MEE-FG plate. It is concluded that these parameters play significant roles on the dynamic behavior of porous MEE-FG plates. Presented numerical results can serve as benchmarks for future analyses of MEE-FG plates with porosity phases.

Porosity-dependent vibration investigation of functionally graded carbon nanotube-reinforced composite beam

  • Abdulmajeed M. Alsubaie;Ibrahim Alfaqih;Mohammed A. Al-Osta;Abdelouahed Tounsi;Abdelbaki Chikh;Ismail M. Mudhaffar;Saeed Tahir
    • Computers and Concrete
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    • 제32권1호
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    • pp.75-85
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    • 2023
  • This work utilizes simplified higher-order shear deformation beam theory (HSDBT) to investigate the vibration response for functionally graded carbon nanotube-reinforced composite (CNTRC) beam. Novel to this work, single-walled carbon nanotubes (SWCNTs) are distributed and aligned in a matrix of polymer throughout the beam, resting on a viscoelastic foundation. Four un-similar patterns of reinforcement distribution functions are investigated for the CNTRC beam. Porosity is another consideration taken into account due to its significant effect on functionally graded materials (FGMs) properties. Three types of uneven porosity distributions are studied in this study. The damping coefficient and Winkler's and Pasternak's parameters are considered in investigating the viscosity effect on the foundation. Moreover, the impact of different parameters on the vibration of the CNTRC beam supported by a viscoelastic foundation is discussed. A comparison to other works is made to validate numerical results in addition to analytical discussions. The findings indicate that incorporating a damping coefficient can improve the vibration performance, especially when the spring constant factors are raised. Additionally, it has been noted that the fundamental frequency of a beam increases as the porosity coefficient increases, indicating that porosity may have a significant impact on the vibrational characteristics of beams.

폴피스 변형을 통한 기어비 변환형 마그네틱 기어의 토크 리플 개선 (Improved Torque Ripple Through Pole Piece Deformation of Gear Ratio Transformed Magnetic Gear)

  • 변범석;박의종;김용재
    • 한국전자통신학회논문지
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    • 제19권1호
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    • pp.77-84
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    • 2024
  • 기어비 변환을 목적으로 설계한 전자석 마그네틱 기어는 영구자석을 이용한 마그네틱 기어와 비교해 낮은 토크 밀도를 가져 토크 밀도의 개선이 필요하다. 이를 보완하고자 기어비 변환 시 각각의 회전자의 자화 방향이 일정한 치를 확인하여 이에 영구자석을 부착해 부족한 토크 밀도를 높이는 연구를 진행했다. 하지만 영구자석이 고르게 부착되지 않으면서 발생한 자속밀도의 불균일로 인해 토크 리플이 증가하는 현상이 문제점으로 발생 되었다. 따라서 전자석 마그네틱 기어의 토크 리플을 감소시키고자 진행된 선행연구를 토대로 폴피스 브릿지, 필레 방식을 적용하여 기어비 변환을 하더라도 각각의 토크 리플을 개선할 수 있는 최적의 방법을 모색하고자 한다.