• 제목/요약/키워드: chemical stress

검색결과 1,222건 처리시간 0.023초

Solvent Effect on Stress Relaxation of PET Filament Fibers and Self Diffusion of Crystallites

  • Nam Jeong Kim;Eung Ryul Kim;Sang Joon Hahn
    • Bulletin of the Korean Chemical Society
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    • 제12권5호
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    • pp.468-473
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    • 1991
  • Viscoelastic properties of PET filament fibers on stress relaxation were investigated in the solvents of $H_2$O, 0.05% NaOH and 50% DMF using an Instron (UTM4-100 Tensilon) with solvent chamber. The theoretical stress relaxation equation derived by applying the Ree-Eyring's hyperbolic sine law to dashpot of three element non-Newtonian model was applied to the experimental stress relaxation curves, and the model parameters $G_1,G_2$, ${\alpha}$ and ${\beta}$ were obtained. By analyzing temperature dependency of the relaxation time, the values of activation entropy, activation enthalpy and activation free energy for flow in PET filament fiber were evaluated, the activation free energy being about 25.7 kcal/mol. The self diffusion coefficient and hole distance were obtained from parameters ${\alpha}$, ${\beta}$ and crystallite size in order to study the self diffusion and the orientation of crystallites in amorphous region and the effect of solvent.

Kevlar-29 섬유강화 복합재료의 기계적 계면 특성 연구 (Studies on Mechanical Interfacial Properties of Kevlar-29 Fibers Reinforced Composites)

  • Park, Soo-Jin;Seo, Min-Kang;Ma, Tae-Jun;Lee, Jae-Rock
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2001년도 추계학술발표대회 논문집
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    • pp.158-162
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    • 2001
  • The effects of chemical treatment on Kevlar-29 fibers have been studied in a composite system. The surface characteristics of the Kevlar-29 fibers were characterized by pH, acid-base value and X-ray photoelectron spectroscopy (XPS). The mechanical interfacial properties of final composites were studied by interlaminar shear strength (ILSS) and critical stress intensity factor ($K_{IC}$). Also, the impact properties of the composites were investigated in the differentiating studies between initiation and propagation energies, and ductile index (DI) along with maximum farce and total energy. It was found that the chemical treatment with phosphoric acid ($H_3PO_4$) solution significantly affected the degree of adhesion at interfaces between fibers and resin matrix, resulting in improving the mechanical interfacial strength of the composites. This was probably due to the presence of chemical polar groups on Kevlar surfaces, leading to an increment of interfacial binding force in a composite system.

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PEMFC에서 전극과 전해질 막의 열화 가속 시험 (Degradation Accelerated Stress Test of Electrode and Membrane in PEMFC)

  • 송진훈;김세훈;안병기;고재준;박권필
    • Korean Chemical Engineering Research
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    • 제50권5호
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    • pp.778-782
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    • 2012
  • 최근까지 대부분의 PEMFC MEA (Membrane and Electrode Assembly) 열화 연구는 전극과 전해질막 각각 분리되어 연구되었다. 그런데 실재 PEMFC 운전조건에서는 전극과 막은 동시에 열화된다. 그래서 본 연구에서는 전극과 막열화가 동시에 일어나는 조건에서 열화 가속시험을 하였다. 실험결과 전극과 막 열화가 서로 상호작용함을 보였다. 막열화는 촉매의 활성면적 감소폭을 줄였고, 전극열화는 막의 수소투과 전류와 불소유출속도(FER) 증가폭을 감소시켰다.

자동차 냉각기 호스용 고무의 전기화학적 복합노화시험 (An Electro-chemical Combined-stress Degradation Test of Rubber for Automotive Radiator Hoses)

  • 곽승범;서부석;최낙삼
    • 한국자동차공학회논문집
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    • 제19권4호
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    • pp.107-113
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    • 2011
  • Coolant rubber hoses for automotive radiators under thermal and mechanical loadings can be degraded and thus failed due to the influences of the locally formed electricity. In this study, an advanced test method was developed to simulate the failure problem of the rubber hose. For carbon black filled EPDM (ethylene-propylene dine monomer) rubber used as a radiator hose material the ageing behaviors by the electro-chemical stresses combined with a tensile strain were analyzed. As the tensile strain increased, the current of the rubber specimen reduced indicating an increase of the internal defects and electrical resistance of the rubber specimen. Elongation at break and IRHD hardness rapidly decreased with increasing the ageing time. Both electro-chemical stress and mechanical tensile stress clearly accelerated the degradation of EPDM rubber.

나도 반도전층 재료의 기계적/화학적 특성 향상에 관한 연구 (A Study on the Improvement of Mechanical and Chemical Properties in Nano Semiconducting Materials)

  • 신동훈;국정호;나창운;박대희;양종석
    • 전기학회논문지
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    • 제56권4호
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    • pp.739-744
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    • 2007
  • In this paper, we have investigated mechanical and chemical properties by changing the content of carbon nanotube, which is component part of semiconductive shield in underground power transmission cable. Specimens were made of sheet with the eight of those for measurement. The condition of specimens was a solid sheet. Chemical properties of specimens was measured by FT-ATR (Fourier Transform Attenuated Total Reflectance). Stress-strain of specimens was measured by TENSOMETER 2000. A speed of measurement was 200[mm/min], ranges of stress and strain were 400[Kgf/Cm] and 600[%]. We could observe (unctional group (C=O, carbonyl group) of specimens through FT-ATR. From these experimental result, the concentration of functional group [C=O] was high accor야ng to increasing the content of carbon nanotube. We could know CNT/EEA was excellent more than other specimens from above experimental results. In Addition, the elongation ratio was decreased, and yield strength was increased according to increasing the content of carbon nanotube. Also, from these experimental result, we could know that a small amount of CNT/EEA has a excellent mechanical and chemical properties.

Numerical prediction of stress and displacement of ageing concrete dam due to alkali-aggregate and thermal chemical reaction

  • Azizan, Nik Zainab Nik;Mandal, Angshuman;Majid, Taksiah A.;Maity, Damodar;Nazri, Fadzli Mohamed
    • Structural Engineering and Mechanics
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    • 제64권6권
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    • pp.793-802
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    • 2017
  • The damage of concrete due to the expansion of alkali-aggregate reaction (AAR) and thermal-chemical reactions affecting the strength of concrete is studied. The empirical equations for the variations of expansion of AAR, compressive strength and degradation of the modulus of elasticity with time, and compressive strength with degradation of the modulus of elasticity are proposed by analysing numerous experimental data. It is revealed that the expansion of AAR and compressive strength increase with time. The proposed combination of the time variations of chemical and mechanical parameters provides a satisfactory prediction of the concrete strength. Seismic analysis of the aged Koyna dam is conceded for two different long-term experimental data of concrete incorporating the proposed AAR based properties. The responses of aged Koyna dam reveal that the crest displacement of the Koyna dam significantly increases with time while the contour plots show that major principal stress at neck level reduces with time. As the modulus of elasticity decreases with ages the stress generated in the concrete structure get reduces. On the other hand with lesser value of modulus of elasticity the structure becomes more flexible and the crest displacement becomes very high that cause the seismic safety of the dam reduce.

PMDA/6FDA-PDA 공중합 폴리이미드의 잔류응력 거동 (Residual Stress Behavior of PMDA/6FDA-PDA Copolyimide Thin Films)

  • 장원봉;정현수;조영일;한학수
    • 공업화학
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    • 제10권7호
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    • pp.1014-1019
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    • 1999
  • Dianhydride로서 1,2,4,5-benzenetetracarboxylic dianhydried(PMDA)와 2,2'-bis(3,4-dicarboxyphenyl) hexafluoropropane dianhydride(6FDA)를, diamine으로서 1,4-phenylenediamine(PDA)을 사용하여 homopolyimides인 PMDA-PDA, 6FDA-PDA와 다른 당량비의 copolyimides를 각각의 ploy(amic acid)로부터 제조하였다. 이들 박막에 대하여, thin film stress analyzer(TFSA)를 이용하여 공중합체 폴리이미드 박막의 잔류 응력거동을 공정온도 ($25{\sim}400^{\circ}C$)하에서 전구체의 열적 이미드화에 따라 in-situ로 측정하였고, WAXD분석을 통해 모폴로지 변화를 알아보았다. 다른 단량비로 이루어진 공중합체 폴리이미드 박막의 잔류 응력 결과는 PMDA 분율이 증가함에 따라 잔류 응력이 큰 폭으로 감소하였고 순수 PMDA-PDA 폴리이미드에서는 압축모드로 5 MPa로 나타났다. 본 연구에서는 PMDA-PDA의 높은 $T_g$로 인한 공정상의 어려움과 6FDA-PDA의 상대적으로 높은 응력을 서로 보완해 기계적 물성이 좋은 저응력의 폴리이미드를 만들 수 있음을 보였다. 즉, random한 PMDA/6FDA-PDA 공중합체 폴리이미드 합성을 이용하여 사슬 내에 벌키한 di(trifluoromethyl)기와 같은 관절기로 인한 상대적으로 높은 응력을 보이는 6FDA-PDA 폴리이미드 사슬 내에 강직한 사슬 구조를 가진 PMDA-PDA 폴리이미드의 사슬 구조를 적당량 첨가함으로써 우수한 기계적 물성을 갖는 저응력 폴리이미드를 만들 수 있었다. 특히, PMDA/6FDA-PDA (0.9:0.1:1.0) 폴리이미드가 저유전 상수 층간 절연막으로서의 우수한 기계적 물성과 낮은 응력 수준을 보여주고 있다.

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Numerical simulation of pressure relief in hard coal seam by water jet cutting

  • Song, Dazhao;Wang, Enyuan;Xu, Jiankun;Liu, Xiaofei;Shen, Rongxi;Xu, Wenquan
    • Geomechanics and Engineering
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    • 제8권4호
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    • pp.495-510
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    • 2015
  • The applications of water jet cutting (WJC) in coal mine have progressed slowly. In this paper, we analyzed the possibility and reasonableness of WJC application to pressure relief in hard coal seam, simulated the distributive characteristics of stress and energy fields suffered by hard coal roadway wallrock and the internal relationships of the fields to the instability due to WJC (including horizontal radial slot and vertical annular slot) on roadway wallrock. The results showed that: (1) WJC can unload hard coal seam effectively by inducing stress release and energy dissipation in coal mass near its slots; its annular slots also can block or weaken stress and energy transfer in coal mass; (2) the two slots may cause "the beam structure" and "the small pillar skeleton", and "the layered energy reservoir structure", respectively, which lead to the increase in stress concentration and energy accumulation in coal element mass near the slots; (3) the reasonable design and optimization of slots' positions and their combination not only can significantly reduce the scope of stress concentration and energy accumulation, but also destroy coal mass structure on a larger scale to force stress to transfer deeper coal mass.

유도경화한 SCM440 강의 잔류응력 깊이에 따르는 무해화 균열 크기 평가 (Evaluation of Harmless Crack Size according to Residual Stress Depth of Induction Hardened SCM440 Steel)

  • 박종규;신기항;최병철;박인덕;남기우
    • 한국산업융합학회 논문집
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    • 제26권4_2호
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    • pp.571-576
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    • 2023
  • In this study, the harmless crack size(ahml) according to the residual stress depth was evaluated using the fatigue limit of SCM440 steel by quenching-tempering(QT) and induction hardening(IH), and threshold stress intensity factor of QT steel. Because the residual stress increased rapidly as the crack depth increased, ahml was determined at the depth of all the crack aspect ratio(As) regardless of Type I-III, and ahml also increased according to the residual stress depth. ahml was minimal at As=1.0 and maximal at As=0.1, but was almost similar on each Type. ahml was small the dependence on As.

On Stability of the Steady State, Thermodynamic Stabililty and Corresponding States in Rheology of Dense Simple Fluids$^\dag$

  • Ohr, Young-Gie;Eu, Byung-Chan
    • Bulletin of the Korean Chemical Society
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    • 제7권3호
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    • pp.204-210
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    • 1986
  • It is shown that the linear stability coincides with the thermodynamic stability in the case of stress tensor evolution for simple dense fluids even if the constitutive (evolution) equation for the stress tensor is nolinear. The domain of coincidence can be defined in the space of parameters appearing in the constitutive equation and we find the domain is confined in an elliptical cone in a three-dimensional parameter space. The corresponding state theory in rheology of simple dense fluids is also further examined. The validity of the idea is strengthened by the examination.