• 제목/요약/키워드: viscoelastic properties

검색결과 433건 처리시간 0.019초

고무블록의 수직 하중 및 수평 속도에 따른 마찰에너지 연구 (Study on Friction Energy of Rubber Block Under Vertical Load and Horizontal Velocity)

  • 김진규;유새롬;이일용;김두만
    • 대한기계학회논문집A
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    • 제37권7호
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    • pp.905-912
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    • 2013
  • 고무는 독특한 점탄성적 성질로 인하여 여러 분야에서 광범위하게 사용되고 있다. 고무의 마찰은 지속적인 지면과의 접지로 인하여 발생되고, 결과적으로 마모가 발생한다. 이때 마찰에 의해 발생되는 마찰에너지는 마모 메커니즘의 중요 요인으로, 마찰에너지는 온도, 지면의 거칠기, 형상, 하중, 물성 등의 조건에 영향을 받는다. 본 연구에서는 마찰에너지에 대한 수직 하중과 수평 이동속도의 영향을 ABAQUS/explicit을 이용하여 해석하였고, 접지압, 전단력과 슬립 거리를 이용하여 마찰에너지를 계산하였다. 또한 실제 고무의 거동에 대한 실험 결과와 해석 결과를 비교하였다.

Effects of prestretch on stress relaxation and permanent deformation of orthodontic synthetic elastomeric chains

  • Chang, Jee Hae;Hwang, Chung-Ju;Kim, Kyung-Ho;Cha, Jung-Yul;Kim, Kwang-Mahn;Yu, Hyung Seog
    • 대한치과교정학회지
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    • 제48권6호
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    • pp.384-394
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    • 2018
  • Objective: This study was performed to investigate an appropriate degree of prestretch for orthodontic synthetic elastomeric chains focusing on time-dependent viscoelastic properties. Methods: Orthodontic synthetic elastomeric chains of two brands were prestretched to 50, 100, 150, and 200% of the original length in one and three cycles, and the hysteresis areas of the obtained stress-strain curves were determined. Acrylic plates were employed to maintain constant strain during the experiment. A total of 180 samples were classified into nine groups according to brand, and their stresses and permanent deformations were measured immediately after prestretch (0 hour), after 1 hour and 24 hours, and after 1, 2, 3, 4, 5, 6, 7, and 8 weeks. The relationship between stress relaxation and permanent deformation was investigated for various degrees of prestretch, and the estimated stress resulting from tooth movement was calculated. Results: The degree of prestretch and the stress relaxation ratio exhibited a strong negative correlation, whereas no correlation was found between the degree of prestretch and the average normalized permanent strain. The maximal estimated stress was observed when prestretch was performed in three cycles to 200% of the original length. Conclusions: Although prestretch benefited residual stress, it did not exhibit negative effects such as permanent deformation. The maximal estimated stress was observed at the maximal prestretch, but the difference between prestretch and control groups decreased with time. In general, higher residual stresses were observed for product B than for product A, but this difference was not clinically significant.

혼수비에 따른 초경석고의 파절강도 (FRACTURE STRENGTH OF IMPROVED DENTAL STONE ACCORDING TO WATER/POWDER RATIO)

  • 엄정희;박찬운;박광선
    • 대한치과보철학회지
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    • 제39권2호
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    • pp.220-229
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    • 2001
  • This study was performed to evaluate the fracture resistance of three improved die stone materials according to water/powder ratio. There are lots of handling conditions which affect the physical properties of improved dental stone, and it's well known that the water/powder ratio significantly affect the strength of die stone. If water/power ratio was incorrect, following disadvantages were showed : (1) susceptibility to dimensional change due to abrasion, (2) limited reproduction of fine detail, (3) lack of strength. The maxillary master casts were made of additional silicone impressions(Exaflex, GC America. Inc. USA). Three type IV die stones such as Fuji Rock (GC Europe Intreleuvenlaan, Leuven, Belgium), Velmix(Kerr, Manufacturing company, USA), and Crytal Rock( Maruishi Gypsum Co. Ltd, Japan) were tested. A total of 160 casts were prepared, separated, and tested on the Instron Testing Machine(Model 4201, Co. USA). The obtained results of this study were as follows : 1. Fuji Reck and Velmix less 3ml than the water/power ratio of manufacturer's instruction showed the highest resistance to fracture. According to increasing water/powder ratio, fracture resistance was significantly increased(P<0.05). Crystal Rock showed the highest fracture value when it was mixed with the water/power ratio of manufacturer's instruction. 2. Water/powder ratio of the manufacturer's instructions and less 3ml than that showed lower fracture value of hand mix than that of vacuum mix. Water/powder ratio of more 3ml, 6ml than manufacturer's instructions was not significantly different between hand mix and vacuum mix(p>0.05). 3. Velmix had the highest viscoelastic value among three die materials when it was mixed with the manufacturer's instruction. Viscoelasticity was decreased according to increasing water/powder ratio.

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파킨슨병 환자의 경직에 대한 약물과 DBS 의 효과의 정량화 (Quantification of the Effect of Medication and Deep Brain Stimulation on Parkinsonian Rigidity)

  • 권유리;엄광문;박상훈;김지원;김민직;이혜미;장지완;고성범
    • 한국정밀공학회지
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    • 제30권5호
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    • pp.559-563
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    • 2013
  • This study aims to quantify the effects of medication (Med) and deep brain stimulation (DBS) on resting rigidity in patients with Parkinson's disease. We tested 10 limbs of five patients under each of four treatment conditions: 1) baseline, 2) DBS, 3) Med, 4) DBS + Med. Rigidity at the wrist joint was assessed using the Unified Parkinson's Disease Rating Scale (UPDRS). The examiner randomly imposed flexion and extension movement on patient's wrist joint. Resistance to passive movement was quantified by viscoelastic properties. Not only rigidity score but also damping constant showed improvements in rigidity by DBS and Med treatments (p<0.05). This indicates that the viscosity can represent the change in rigidity due to DBS as well as Med, which was manifested by UPDRS score.

A Review on Transfer Process of Two-dimensional Materials

  • Kim, Chan;Yoon, Min-Ah;Jang, Bongkyun;Kim, Jae-Hyun;Kim, Kwang-Seop
    • Tribology and Lubricants
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    • 제36권1호
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    • pp.1-10
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    • 2020
  • Large-area two-dimensional (2D) materials synthesized by chemical vapor deposition on donor substrates are promising functional materials for conductors, semiconductors, and insulators in flexible and transparent devices. In most cases, 2D materials should be transferred from a donor substrate to a target substrate; however, 2D materials are prone to damage during the transfer process. The damages to 2D materials during transfer are caused by contamination, tearing, and chemical doping. For the commercialization of 2D materials, a damage-free, large-area, and productive transfer process is needed. However, a transfer process that meets all three requirements has yet to be developed. In this paper, we review the recent progress in the development of transfer processes for 2D materials, and discuss the principles, advantages, and limitations of each process. The future prospects of transfer processes are also discussed. To simplify the discussion, the transfer processes are classified into four categories: wet transfer, dry transfer, mechanical transfer, and electro-chemical transfer. Finally, the "roll-to-roll" and "roll-to-plate" dry transfer process is proposed as the most promising method for the commercialization of 2D materials. Moreover, for successful dry transfer of 2D materials, it is necessary to clearly understand the adhesion properties, viscoelastic behaviors, and mechanical deformation of the transfer film used as a medium in the transfer process.

단백질/계면활성제 혼합계에서 기포안정성에 대한 계면조성과 분자확산 (Surface Composition and Molecular Diffusion on the Stability of Foams Formed from Protein/Surfactant Mixtures)

  • 박선영;김명수;정노희;남기대
    • 한국응용과학기술학회지
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    • 제17권3호
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    • pp.158-166
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    • 2000
  • A conductimetric study of foam formed from mixture of the protein, ${\beta}-lactoglobulin$, and the nonioinc surfactant, SML, revealed that their stability was reduced at concentrations of SML in the range $3{\sim}10mM$. The interaction of SML with ${\beta}-lactoglobulin$ was investigated by fluorimetry and a dissociation constant of $0.2{\mu}M$ was calculated for the complex. Surface tension studies confirmed the presence of interaction between the two components and provided evidence for the progressive displacement of ${\beta}-lactogloblin$ from the air/water interface with increasing SML concentration. Experiments using air-suspended microscopic thin liquid films revealed transitions in the chainage characteristics and thickness of the film at SML concentrations below that which resulted in destabilization of the foam. However, measurements of surface mobility of fluorescent-labeled ${\beta}-lactoglobulin$ by a photobleaching method identified that a transition to a mobile system occurred at a SML concentration which correlated with the onset of instability in the disperse phase. The results would indicate that maintenance of the viscoelastic properties of the surface is paramount importance in determining the stability of interfaces comprising mixtures of protein and surfactant.

황다랑어 복부 껍질로부터 추출한 gelatin의 물리화학적 특성 (Physicochemical Characteristics of Gelatin from Abdominal Skin of Yellowfin Tuna (Thunnus albacares))

  • 유승재;조승목;우진욱;김상호;변상훈;김태완;김선봉
    • 한국수산과학회지
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    • 제41권6호
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    • pp.419-426
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    • 2008
  • Physicochemical characteristics of gelatin extracted from abdominal skin of yellowfin tuna (Thunnus albacares), were investigated by comparing its proximate composition, pH, amino acid composition, viscoelastic properties, gel strength and SDS-PAGE patterns, with those of bovine and porcine gelatins. The effects of gelatin concentration, maturation time, heat and freeze treatments on the gel strength of yellowfin tuna abdominal skin gelatin were studied. Amounts of $\alpha$-chains, $\beta$- and $\gamma$-components of yellowfin tuna abdominal skin gelatin were higher than those of the two mammailan gelatins. Yellowfin tuna abdominal skin gelatin had the lowest imino acids (proline and hydroxyproline) content, which was consistent with that of other fishes. However, yellowfin tuna abdominal skin gelatin was highest in glycine, alanine, and lysine. The gel strengths of all gelatins were proportional to the concentration of gelatin, but yellowfin tuna abdominal skin gelatin exhibited the greatest gel strength at each concentration. Yellowfin tuna abdominal skin gelatin required a longer maturation time than the two mammalian gelatins to form a firm gel. Higher heating temperature decreased the gel strength of yellow fin tuna abdominal skin gelatin more than in the two mammalian gelatins. Freezing decreased the gel strength of bovine gelatin only slightly, but longer freezing times resulted in greater reductions in gel strength in the yellowfin tuna abdominal skin and porcine gelatins.

재료 비선형과 연속체 손상역학을 고려한 복합 적층판의 강도 예측 (Strength Prediction on Composite Laminates Including Material Nonlinearity and Continuum Damage Mechanics)

  • 박국진;강희진;신상준;최익현;김민기;김승조
    • 한국항공우주학회지
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    • 제42권11호
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    • pp.927-936
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    • 2014
  • 이 논문에서는 복합 적층판의 점진적 파손해석 기법을 개발하고 검증하였다. 강도 및 강성 예측의 정확성을 높이기 위해 재료 비선형 효과와 연속체 손상역학을 동시에 고려하였다. 파손 시작점과 성장을 예측하기 위한 식으로 Hashin의 판별식이 사용되었으며, 파손 모드는 수지인장/전단, 섬유 인장의 2가지 파손모드를 고려하였다. 비선형 탄성 및 점탄성의 구성방정식을 고려한 평형을 계산하기 위해 Newton-Raphson 방법이 사용되었다. 실험을 통해 얻어진 복합재료 단층의 물성을 이용하여 노치가 없는 시편에 인장력을 가했을 때 예상되는 적층복합재의 강도 및 변형률을 예측하였다. 이 경우 선형 물성과 저하계수만을 고려하여 예측된 강성/강도보다 실험결과에 근사하게 나타남을 확인하였다.

전기유변유체의 점탄성 특성에 관한연구 (Viscoelastic properties of electrorheological fluids)

  • 최윤대;김상국
    • 한국재료학회지
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    • 제2권3호
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    • pp.220-227
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    • 1992
  • 전기유변유체(electrorheological fluid : ERF)는 크기가 $10^{-6}m$정도를 가진 분극성이 강한 입자 분말을 유전유체속에 혼합하여 만든 콜로이드용액으로서 외부전기 장에 의하여 액체상태로부터 겔(gel)상태로 상태변환을 한다. 상태변환과정은 가역과정이며 $10^{-3}$초 정도의 빠른 시간내에 이루어진다. 본 논문에서는 주기적응력이나 주기적 변형이 가해지는 강제진동실험을 통하여 ERF의 점탄성 특성을 조사하였다. 점탄성은 복소수로서 실수부인 동적전단탄성율(storage shear modulus, G')과 허수부인 동적손실율(loss modulus, G")의 합으로 표현된다. 동적전단탄성율은 강제진동의 진폭과 주파수의 함수로 외부전기장에 의하여 크게 변화되었으나 손실계수(loss factor, ${\eta}=G"/G'$)는 진동의 진폭, 진동수 및 외부전기 장에 거의 독립적이었다. 실험(1)은 강제진동의 진폭을 고정하고 진동수를 변화하는 방법(frequency sweep)과 실험(2)는 진동 진폭을 변화시키는 방법(amplitude sweep)으로 실행했다. 본 실험에서는 cornstarch입자를 corn oil에 혼합한 것과 zeolite입자를 silicone oil에 흔합한 콜로이드 용액이 ERF로서 사용되었으며 인가된 전기장은 약$(1~3){\times}10^6V/m$의 직류전기장이 가하여졌다.기장이 가하여졌다.

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Properties of Glass-Ceramics in the System CaO-TiO2-SiO2 with the Additives of Al2O3, ZrO2 and B2O3 for Use in the Solid Oxide Fuel Cells.

  • Lee, Jun-Suk;Park, Min-Jin;Shin, Hyun-Ick;Lee, Jae-Chun
    • The Korean Journal of Ceramics
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    • 제5권4호
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    • pp.336-340
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    • 1999
  • Glasses in the system $CaO-TiO_2-SiO_2-Al_2O_3-ZrO_2-B_2O_3$ were investigated to find the glass seal compositions suitable for use in the planar solid oxide fuel cell (SOFC). Glass-ceramics prepared from the glasses by one-stage heat treatment at $1,000^{\circ}C$ showed various thermal expansion coefficients (i,e., $8.6\times10^{-6^{\circ}}C^{-1}$ to $42.7\times10^{-6^{\circ}}C^{-1}$ in the range 25-$1,000^{\circ}C$) due to the viscoelastic response of glass phase. The average values of contact angles between the zirconia substrate and the glass particles heated at 1,000-$1,200^{\circ}C$ were in the range of $131^{\circ}\pm4^{\circ}$~$137^{\circ}\pm9^{\circ}$, indicating that the glass-ceramic was in partial non-wetting condition with the zirconia substrate. With increasing heat treatment time of glass samples from 0.5 to 24 h at $1,100^{\circ}C$, the DC electrical conductivity of the resultant glass-ceramics decreased from at $800^{\circ}C$. Isothermal hold of the glass sample at $1100^{\circ}C$ for 48h resulted in diffusion of Ca, Si, and Al ions from glass phase into the zirconia substrate through the glass/zirconia bonding interface. Glass phase and diffusion of the moving ion such as $Ca^{2+}$ in glass phase is responsible for the electrical conduction in the glass-ceramics.

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