• Title/Summary/Keyword: aging properties

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A Study on the Effect of Primer Processing Method on the Mechanical Properties of Impact Relief Air Cushion Materials Prepared through Thermal Film Laminating (프라이머 가공 방법이 열융착 필름 라미네이팅으로 제조한 고충격 대응 에어쿠션 소재의 물성에 미치는 영향 연구)

  • Kim, Ji Yeon;Kim, Hun Min;Min, Mun Hong
    • Textile Coloration and Finishing
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    • v.34 no.3
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    • pp.173-184
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    • 2022
  • In this study, the TPU film was laminated on an aramid fabric or circular knits in order to implement an air cushion material that can respond to high impact forces in case of a fall and is easy to expand. To increase the bonding strength between the fabric layer and the film layer, a primer layer was formed in two ways: one for thermally bonding and laminating PET film and two for coating and aging hot melt type PUR adhesive. The tensile strength of the aramid air cushion was 2.5 times higher than that of the circular knits, but the tensile elongation of the aramid air cushion was very low compared to that of the circular knits. The tear strength of the aramid air cushion was about twice or more superior to that of the circular knits, the primer treatment method was good at A, and the peel strength was excellent at method A. The aramid air cushion was the lightest in weight. Summarizing the above results, it was best to combine the air cushion material with aramid woven fabric and primer treatment method A to cope with the high impact force applied when falling.

Seismic Fragility Analysis of Reinforced Concrete Shear Walls Considering Material Deterioration (재료의 열화를 고려한 철근콘크리트 전단벽의 지진 취약도 분석)

  • Myung Kue, Lee;Jang Ho, Park
    • Journal of the Korean Society of Safety
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    • v.37 no.6
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    • pp.81-88
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    • 2022
  • It is necessary to better understand the effect of age-related degradation on the performance of reinforced concrete shear walls in nuclear power plants in order to ensure their structural safety in the event of earthquakes. Therefore, this paper studies seismic fragility of the typical shear wall in nuclear power plants under earthquake excitation Reinforced concrete shear wall is composed of wall, horizontal and vertical flanges. Due to characteristics of its geometry, it is difficult to predict the ultimate behavior of shear wall under earthquake excitation. In this study, for more realistic numerical simulation, the Latin Hyper-Cube (LHC) simulation technique was used to generate uncertain variables for the material properties of concrete shear walls. The effects of crack, characteristics of inelastic behavior of concrete, and loss of cross section were considered in the nonlinear finite element analysis. The effects of aging-related deterioration were investigated on the performance of reinforced concrete shear walls through analysis of undegraded concrete shear walls and degraded concrete shear walls. The resulting seismic fragility curves present the change of performance of concrete shear wall due to age-related degradation.

Trends in Canadian Dietary Supplements Enhanced with Female Hormones Required in Response to the COVID-19 Pandemic (코로나19 (COVID-19) 팬데믹에 대응하여 요구되는 여성호르몬이 강화된 캐나다산 식이 보충제의 동향)

  • Shim, Youn Young;Reaney, Martin J.T.;Lee, Hak Sung;Kim, Hye-Jin
    • Journal of the FoodService Safety
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    • v.3 no.1
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    • pp.1-7
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    • 2022
  • As one of the post-COVID-19 response strategies, representative processed products derived from the natural plant material flaxseed and a dietary supplement fortified with female hormones (estrogens) were developed in Canada, an eco-friendly country was introduced. These products were: 1) flaxseed oil to help maintain cognitive and immune function, 2) Lignan50, a substance with effects similar to estrogen, a female hormone, 3) XanFlax, a thickener for confectionery/baking and egg substitute, 4) MediFlax, a constipation reliever, 5) SesaFlax, which has a fragrance similar to sesame, 6) Linusorb, which is effective for its pharmaceutical anti-inflammatory/anti-oxidation and anti-aging properties, and 7) LinuLyte, a water/electrolyte supplement containing high dietary fiber. It is expected that these dietary products will help maintain and promote health as part of a response to the COVID-19 pandemic.

Investigation on effect of neutron irradiation on welding residual stresses in core shroud of pressurized water reactor

  • Jong-Sung Kim;Young-Chan Kim;Wan Yoo
    • Nuclear Engineering and Technology
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    • v.55 no.1
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    • pp.80-99
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    • 2023
  • This paper presents the results of investigating the change in welding residual stresses of the core shroud, which is one of subcomponents in reactor vessel internals, performing finite element analysis. First, the welding residual stresses of the core shroud were calculated by applying the heat conduction based lumped pass technique and finite element elastic-plastic stress analysis. Second, the temperature distribution of the core shroud during the normal operation was calculated by performing finite element temperature analysis considering gamma heating. Third, through the finite element viscoelastic-plastic stress analysis using the calculated temperature distribution and setting the calculated residual stresses as the initial stress state, the variation of the welding residual stresses was derived according to repeating the normal operation. In the viscoelastic-plastic stress analysis, the effects of neutron irradiation on mechanical properties during the cyclic normal operations were considered by using the previously developed user subroutines for the irradiation agings such as irradiation hardening/embrittlement, irradiation-induced creep, and void swelling. Finally, the effect of neutron irradiation on the welding residual stresses was analysed for each irradiation aging. As a result, it is found that as the normal operation is repeated, the welding residual stresses decrease and show insignificant magnitudes after the 10th refueling cycle. In addition, the irradiation-induced creep/void swelling has significant mitigation effect on the residual stresses whereas the irradiation hardening/embrittlement has no effect on those.

Enhancement of Quick-Charge Performance by Fluoroethylene Carbonate additive from the Mitigation of Electrode Fatigue During Normal C-rate Cycling

  • Tae Hyeon Kim;Sang Hyeong Kim;Sung Su Park;Min Su Kang;Sung Soo Kim;Hyun-seung Kim;Goojin Jeong
    • Journal of Electrochemical Science and Technology
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    • v.14 no.4
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    • pp.369-376
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    • 2023
  • The quick-charging performance of SiO electrodes is evaluated with a focus on solid electrolyte interphase (SEI)-reinforcing effects. The study reveals that the incorporation of fluoroethylene carbonate (FEC) into the SiO electrode significantly reduced the electrode fatigue, which is from the the viscoelastic properties of the FEC-derived SEI film. The impact of FEC is attributed to its ability to minimize the mechanical failure of the electrode caused by additional electrolyte decomposition. This beneficial outcome arises from volumetric stain-tolerant characteristics of the FEC-derived SEI film, which limited exposure of the bare SiO surface during 0.5 C-rate cycling. Notably, FEC greatly improves Li deposition during quick-charge cycles following aging at 0.5 C-rate cycling due to its ability to maintain a strong electrical connection between active materials and the current collector, even after extended cycling. Given these findings, we assert that mitigating SEI layer deterioration, which compromises the electrode structure, is vital. Hence, enhancing the interfacial attributes of the SiO electrode becomes crucial for maintaining kinetic efficiency of battery system.

A Comparative study of Uihagimmun(醫學入門) and Donguibogam(東醫寶鑑) on Prescription of Insomnia (『의학입문・외감(外感)』 「불면」과 『동의보감』 「몽(夢)」의 불면에 대한 처방 비교 연구)

  • JO Na-young;JO Hak-Jun
    • The Journal of Korean Medical History
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    • v.35 no.2
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    • pp.19-34
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    • 2022
  • Objectives : The purpose of this study was to compare the prescriptions used for insomnia in Uihagimmun and Donguibogam. Methods : In Uihagimmun, 17 prescriptions were selected. If there was a change in the medicinal material, the altered herbal medicine was indicated along with the prescription name. In Donguibogam, 14 prescriptions were selected. Each prescription was analyzed by dividing it into prescription composition, and herbal medicine. Medications constituting a prescription were classified according to the classification of Korean herbal medicines and arranged based on their frequency of appearance. Result : The causes of insomnia were classified mainly as exhaustion in Uihagimmun and as exhaustion, stress, low energy, aging and discomfort in Donguibogam. In Uihagimmun, numerous medicines were used to relieve fever, and in Donguibogam, the use of stabilizers increased. More warm medicines were used in Donguibogam than in Uihagimmun, and the taste trend was similar in each. Conclusions : The types of causes of insomnia increased more in Donguibogam than Uihagimmun. Accordingly, the two books showed differences in drug classification and properties of a medicine. However, in terms of taste and action of medicinal herbs, they showed similar patterns, and there was only a difference in the order of frequency.

Accuracy Evaluation of Machine Learning Model for Concrete Aging Prediction due to Thermal Effect and Carbonation (콘크리트 탄산화 및 열효과에 의한 경년열화 예측을 위한 기계학습 모델의 정확성 검토)

  • Kim, Hyun-Su
    • Journal of Korean Association for Spatial Structures
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    • v.23 no.4
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    • pp.81-88
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    • 2023
  • Numerous factors contribute to the deterioration of reinforced concrete structures. Elevated temperatures significantly alter the composition of the concrete ingredients, consequently diminishing the concrete's strength properties. With the escalation of global CO2 levels, the carbonation of concrete structures has emerged as a critical challenge, substantially affecting concrete durability research. Assessing and predicting concrete degradation due to thermal effects and carbonation are crucial yet intricate tasks. To address this, multiple prediction models for concrete carbonation and compressive strength under thermal impact have been developed. This study employs seven machine learning algorithms-specifically, multiple linear regression, decision trees, random forest, support vector machines, k-nearest neighbors, artificial neural networks, and extreme gradient boosting algorithms-to formulate predictive models for concrete carbonation and thermal impact. Two distinct datasets, derived from reported experimental studies, were utilized for training these predictive models. Performance evaluation relied on metrics like root mean square error, mean square error, mean absolute error, and coefficient of determination. The optimization of hyperparameters was achieved through k-fold cross-validation and grid search techniques. The analytical outcomes demonstrate that neural networks and extreme gradient boosting algorithms outshine the remaining five machine learning approaches, showcasing outstanding predictive performance for concrete carbonation and thermal effect modeling.

Analysis of the Causes of Cracks in Rocket Propellant in Thermal Cycling Test (로켓탄 추진기관 온도반복시험 균열 원인분석)

  • Bak, Jin Man;Park, Soon Woo
    • Journal of Korean Society for Quality Management
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    • v.51 no.4
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    • pp.735-749
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    • 2023
  • Purpose: The purpose of this study is to derive solutions and prevent similar cases from occurring by analyzing the causes of cracks found in temperature cycling tests of rocket motor. Methods: By combining the results of the current state confirmation test, non-destructive test, domestic and foreign rocket motor comparison test, cutting test, and adhesion test according to the number of times to apply mold release agent, a Cause and Effect Diagram analysis was performed to derive the cause of cracks. Results: Through this study, 26 factors that could cause cracking in rocket motors during temperature cycling tests were identified. Through various additional test results, a total of five causes were identified, including chemical and structural design of the joint between the propellant and stress relief insert, omission of procedure in the manufacturing procedures, natural aging due to temperature, and load accumulation due to temperature changes. The fundamental cause was confirmed to be insufficient consideration of the release properties of the propellant and stress relief insert. Conclusion: During the design process, it was confirmed that this could be solved by structurally or chemically designing the insert so that it does not combine with the propellant, or by applying a mold release agent during the manufacturing process.

Beneficial Effects of Riboflavin on Inflammatory Bowel Disease (리보플라빈의 염증성 장질환 개선 효과)

  • Sang Hee Lee;Sun Mi Hong;Mi Jeong Sung
    • Journal of the Korean Society of Food Culture
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    • v.39 no.1
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    • pp.74-81
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    • 2024
  • Ulcerative colitis (UC) is a chronic inflammatory intestinal disease characterized by an imbalance in immune function and the overexpression of inflammatory cytokines and mediators. Vitamin B2, also known as riboflavin (Libof), is an essential water-soluble vitamin with numerous beneficial properties, including antioxidant, anti-aging, anti-inflammatory, anti-nociceptive, and anti-cancer effects. In this study, we aimed to investigate the protective effects of Libof on dextran sulfate sodium (DSS)-induced experimental colitis. The C57BL/6 mice were used as the in vivo model of chronic colitis to investigate the anti-inflammatory effects of Libof. RAW 264.7 cells were used for the in vitro investigation of the molecular mechanisms underlying these effects. In vivo, Libof alleviated the DSS-induced disease activity index (DAI), colon length shortening, and colonic pathological damage. In vitro, Libof inhibited lipopolysaccharide (LPS)-induced tumor necrosis factor (TNF)-alpha and interleukin (IL)-6 production in RAW 264.7 cells. Moreover, Libof inhibited LPS-induced nitric oxide (NO) production and inducible nitric oxide synthase (iNOS) expression in RAW 264.7 cells. In conclusion, these findings indicate that Libof shows potential as an agent for the treatment of UC.

Quality Characteristics and Antioxidant Activities of Sulgidduk (Rice Cake) Added with Chia (Salvia hispanica L.) Seed Powder (치아시드 분말을 첨가한 설기떡의 품질 특성 및 항산화 활성)

  • O, Hyeonbin;Choi, Byung Bum;Kim, Young-Soon
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.46 no.1
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    • pp.61-67
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    • 2017
  • Chia seed (Salvia hispanica L.) originated from Central America is a highly nutritious food containing large amounts of linolenic acid, dietary fiber, and protein. This study investigated the quality properties and antioxidant activities of Sulgidduk prepared with chia seed powder as a functional material. Freeze-dried chia seed powder was replaced with 0, 1, 3, 5, and 7% of rice flour. The addition of chia seed powder did not affect water content, whereas the pH value of the chia seed group decreased as compared to the control. For color measurements, a and b values increased as the amount of chia seed powder increased, whereas L value decreased. Hardness and chewiness of Sulgidduk with chia seed powder were lower than those of the control, whereas springiness of the chia seed group was higher than that of the control. Cohesiveness was not significantly different in all samples. According to retrogradation analysis based on changes in hardness during storage, it was confirmed that addition of chia seed powder inhibited aging of Sulgidduk. Retrogradation of CSP5 was the slowest. Consumer acceptability analysis did not show significant differences in all samples. Total polyphenol and flavonoid contents tended to significantly increase as chia seed content increased. DPPH and ABTS radical scavenging activities of Sulgidduk were also elevated due to addition of chia seeds. From the results, addition of chia seed softened texture, inhibited aging, and enhanced antioxidant activities of Sulgidduk. It is concluded that addition of 5% chia seed powder, which showed high effectiveness for aging, is the most suitable for commercialization.