• Title/Summary/Keyword: anti-swelling efficiency

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Vacuum Pressure Treatment of Water-Soluble Melamine Resin Impregnation for Improvement of Dimensional Stability on Softwoods (목재의 치수안정성 개선을 위한 진공가압 멜라민 수지함침처리)

  • Oh, Seung-Won;Park, Hee-Jun
    • Journal of the Korean Wood Science and Technology
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    • v.43 no.3
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    • pp.327-333
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    • 2015
  • To measure the dimensional stability of three softwoods by vacuum pressurization of water soluble melamine-formaldehyde (MF) resin impregnation process, properties of resin treated compressed woods (compregs) were measured after impregnating the water soluble MF resin into three coniferous wood species for different impregnation times and resin concentrations. As the resin concentration was higher and impregnation time was longer, coefficients of volumetric shrinkage and anti-volumetric swelling efficiency increased, but coefficients of volumetric swelling, anti-volumetric swelling efficiency and absorption decreased. Also, weight percent gain increased remarkably as the resin concentration was high, but there was no uniform relationship with impregnation time.

Quality Enhancement of Falcataria-Wood through Impregnation

  • SUMARDI, Ihak;DARWIS, Atmawi;SAAD, Sahriyanti;ROFII, Muhammad Navis
    • Journal of the Korean Wood Science and Technology
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    • v.48 no.5
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    • pp.722-731
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    • 2020
  • The purpose of this research is to determine the efficiency of impregnation using phenol formaldehyde resin to enhance Falcataria wood's stability and better mechanical properties. Impregnation process was carried out after moisture content stabilized at 12% on samples with a dimension of 20 mm × 20 mm × 300 mm at various concentrations and pressure time. Dimensional stability was evaluated by thickness swelling (TS) and anti-swelling efficiency (ASE) and the young's modulus was conducted according to BS 573. The mechanical properties and dimensional stability of impregnated wood were evaluated. Dimensional stability and mechanical properties of Falcataria wood were successfully increased after impregnation. PF impregnation can improve the mechanical properties and the density from 0.26 g/㎤ to 0.30 g/㎤ even with only 10% of weight percent grain. Dimensional stability increases with increasing resin concentration and time pressure. The highest increase in mechanical properties was found at a higher concentration of PF. The penetration of PF into the wood's cell darkens the color of impregnated wood.

Improvement of Dimensional Stability of Acacia mangium Wood by Heat Treatment: A Case Study of Vietnam

  • Tran, Van Chu
    • Journal of Forest and Environmental Science
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    • v.29 no.2
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    • pp.109-115
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    • 2013
  • Fast-grown wood generally contains a high proportion of juvenile wood that results in inferior dimensional stability and durability against biological deteriorations. In the present research, the Acacia mangium wood from plantation forests in Vietnam was treated with high temperature in air. The effects of heat treatment on physical properties of Acacia mangium wood, including mass loss (ML), water absorption (WA), water-repellent effectiveness (WRE) and anti-swelling efficiency (ASE) were examined. The results showed that the dimensional stability and the water-repellent effectiveness are increased by about 15-46% and 8-18%, respectively. However, the mass and dimension of wood are decreased. The results also indicated that both treatment temperature and treatment duration significantly affect the wood properties of Acacia mangium. It is thus concluded that heat treatment demonstrates an interesting potential to improve the wood quality of Acacia mangium for solid timber products. This technology provides an environmentally safe method of protecting sustainable common woods to give a new generation of value-added biomaterials with increased stability without the use of toxic chemicals.

Improvement of Dimensional Stability of Tropical Light-Wood Ceiba pentandra (L) by Combined Alkali Treatment and Densification

  • Deded Sarip NAWAWI;Andita MARIA;Rizal Danang FIRDAUS;Istie Sekartining RAHAYU;Adesna FATRAWANA;Fadlan PRAMATANA;Pamona Silvia SINAGA;Widya FATRIASARI
    • Journal of the Korean Wood Science and Technology
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    • v.51 no.2
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    • pp.133-144
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    • 2023
  • Densification is an effective method for improving the physical and mechanical properties of low-density wood. However, the set-recovery of dimensions was found to be the problem of densified wood due to low fixation during the densification process. Alkali pretreatment before densification is thought to be a modification process to improve the dimensional stability of densified wood. In this research, the wood samples used were boiled in a 1.25 N sodium hydroxide (NaOH) solution at different times, followed by densification for 5 h at 100℃. The alkali pretreatment for 1, 3, and 5 h of boiling increased the dimensional stability of densified woods and anti-swelling efficiency values were 8.52%, 63.24%, and 48.94%, respectively. The boiling of wood in NaOH solution decreased the holocellulose content, as well as lignin to a lesser degree, and a lower crystallinity index was observed. The lower hydroxyl groups and a higher proportion of lignin in treated samples seem to have contributed to the high dimensional stability detected.

EFFECT OF ANTIOXIDANT ON THE STABILITY AND EFFICACY ON ANTI-WRINKLE OF INDOLE-3-ACETIC ACID

  • H. S. Jung;Park, Y. H.;Kim, J. H.;Park, K. H.;J. S. Koh;Kim, E. J.
    • Proceedings of the SCSK Conference
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    • 2003.09a
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    • pp.617-629
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    • 2003
  • A recent development in cosmetics has been the pursuit of wrinkling in the skin. The cosmetics composed of anti-wrinkle agent stand out from the point of view of environmental contamination and pollution. Among them, Indole-3-acetic acid (IAA), studied with wrinkling pigmentation and swelling conditions in the area of the eye, showed clinically significant reduction in depth of lines during one month trial using skin treatment. But, IAA has shown some problems when used in cosmetic formulations, such as stability, permeability and toxicity. The results of the clinical examination were shown that its permeability and toxicity didn't matter. To increase the stability of IAA, antioxidants such as Licorice, ubiquinone, tocopherol, Baicalin, ferulic acid, BHT, ascorbic acid, sodium metabisulfite, and so on were employed in cosmetic formulations. Our main purpose is the study for the stability efficiency and effect of each other of cream formulations containing optimal dosage antioxidants (o/w type emulsion), This study evaluated wrinkle reduction effect of IAA, which is used in cosmetics.

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Properties of Recycled Board Made of Disused Wooden Furniture Carbonized at Low Temperature (저온탄화처리 폐가구재로 제조한 재생보드의 물성)

  • Seo, In-Su;Lee, Min-Gyoung;Lee, Hwa-Hyoung;Kang, Ho-Yang
    • Korean Journal of Agricultural Science
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    • v.36 no.1
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    • pp.19-25
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    • 2009
  • This study was carried for recycling laminated PB and MDF of disused furniture. PB and MDF particles taken from disused furniture were heat-treated at $250^{\circ}C$ and four levels of treatment time, 2, 4, 6 and 8 hours. The recycled boards were made with heat-treated particles after milling and screening with 100 mesh. The bending strength of the recycled boards were lower than that of virgin boards while their anti-swelling efficiency were much improved. Their formaldehyde emissivity were very low. Thus it was concluded that the recylcled boards are prospective environment-friendly material for interial consturction.

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Characterization and Preparation of the Hydrogel has Excellent Release Effect of the Active Ingredients Using a Radiation Cross-linking Technology (방사선 가교 기술을 이용한 유효성분 방출력이 우수한 하이드로겔 제조 및 특성 분석)

  • Hwang, Seung-Hyun;Ahn, Sung-Jun;Park, Jong-Seok;Jeong, Sung In;Gwon, Hui-Jeong;Lee, Dong Yun;Lim, Youn-Mook
    • Journal of Radiation Industry
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    • v.9 no.4
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    • pp.199-207
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    • 2015
  • Typical radiation cross-linked hydrogels has the characteristic that high water content, but low emission efficiency of active ingredients. Therefore, the hydrogel was prepared by the addition to collagen, which is closely related to the formation of skin wrinkles in biocompatibility and highly water-soluble carboxymethyl cellulose sodium salt (CMC) in order to preparation of hydrogels has excellent emission efficiency of active ingredients. Hydrogels were prepared by dissolving CMC and collagen each of 0.5%, 10% concentration in deionized water. Then, prepared hydrogels are performed by gamma-radiation at 1, 3, 5 kGy irradiation dose. The results showed that the gel fraction of after irradiated 3 kGy hydrogel was higher than before irradiated gelation as long as the 55.3%. The swelling rate of irradiated 3 kGy hydrogel was lower than the non-irradiated sample. The compressive strength of 3 kGy irradiated hydrogel was the highest. The visco-elastic did not show any significant differences, even after irradiation. The CMC hydrogel in this study suggested a potential use as a material for the mask pack for improved emission efficiency of the active ingredient and anti-wrinkles.

A Hydrogel Film Containing Propolis Nanoparticles as a Wound Healing Membrane

  • Kim, Jin;Kim, Yong-Moon;Kim, Dong-Woon;Lee, Ki-Young
    • Biomedical Science Letters
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    • v.18 no.2
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    • pp.175-179
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    • 2012
  • It is desirable that a wound healing membrane acts as a barrier for coverage of a damaged skin and has the biological activities such as anti-inflammatory effects. In this study, we prepared the hydrogel film containing the propolis nanoparticles as a wound healing membrane. The propolis nanoparticles were prepared by incorporation of propolis into the hydrophobic core of ${\gamma}$-cyclodextrin. The incorporation efficiency of propolis in the nanoparticles was $50{\pm}2.3%$. Propolis nanoparticles observed by a scanning electron microscope (SEM) were spherical with the size of 30~40 nm. The swelling behaviors of the hydrogel film containing propolis nanoparticles showed a similar pattern with the hydrogel film without propolis nanoparticles. The cumulative amount of propolis released from the hydrogel film containing propolis nanoparticles in the buffer of pH 7.4 and 5.5 was $86.0{\pm}2.0%$ and $64.6{\pm}1.0%$ of total propolis loaded in the hydrogel film within 9 h, respectively. These results provide a rationale for studying wound healing application of the hydrogel film containing propolis nanoparticles in a clinical setting.

Physicochemical Characteristics of Fe3O4 Magnetic Nanocomposites Based on Poly(N-isopropylacrylamide) for Anti-cancer Drug Delivery

  • Davaran, Soodabeh;Alimirzalu, Samira;Nejati-Koshki, Kazem;Nasrabadi, Hamid Tayefi;Akbarzadeh, Abolfazl;Khandaghi, Amir Ahmad;Abbasian, Mojtaba;Alimohammadi, Somayeh
    • Asian Pacific Journal of Cancer Prevention
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    • v.15 no.1
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    • pp.49-54
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    • 2014
  • Background: Hydrogels are a class of polymers that can absorb water or biological fluids and swell to several times their dry volume, dependent on changes in the external environment. In recent years, hydrogels and hydrogel nanocomposites have found a variety of biomedical applications, including drug delivery and cancer treatment. The incorporation of nanoparticulates into a hydrogel matrix can result in unique material characteristics such as enhanced mechanical properties, swelling response, and capability of remote controlled actuation. Materials and Methods: In this work, synthesis of hydrogel nanocomposites containing magnetic nanoparticles are studied. At first, magnetic nanoparticles ($Fe_3O_4$) with an average size 10 nm were prepared. At second approach, thermo and pH-sensitive poly (N-isopropylacrylamide -co-methacrylic acid-co-vinyl pyrrolidone) (NIPAAm-MAA-VP) were prepared. Swelling behavior of co-polymer was studied in buffer solutions with different pH values (pH=5.8, pH=7.4) at $37^{\circ}C$. Magnetic iron oxide nanoparticles ($Fe_3O_4$) and doxorubicin were incorporated into copolymer and drug loading was studied. The release of drug, carried out at different pH and temperatures. Finally, chemical composition, magnetic properties and morphology of doxorubicin-loaded magnetic hydrogel nanocomposites were analyzed by FT- IR, vibrating sample magnetometry (VSM), scanning electron microscopy (SEM). Results: The results indicated that drug loading efficiency was increased by increasing the drug ratio to polymer. Doxorubicin was released more at $40^{\circ}C$ and in acidic pH compared to that $37^{\circ}C$ and basic pH. Conclusions: This study suggested that the poly (NIPAAm-MAA-VP) magnetic hydrogel nanocomposite could be an effective carrier for targeting drug delivery systems of anti-cancer drugs due to its temperature sensitive properties.

Investigation of the Color Change and Physical Properties of Heat-treated Pinus koraiensis Square Lumbers (열처리 잣나무 정각재의 재색 변화 및 물성 조사)

  • Lim, Ho-Mook;Hong, Seung-Hyun;Kang, Ho-Yang
    • Journal of the Korean Wood Science and Technology
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    • v.42 no.1
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    • pp.13-19
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    • 2014
  • Three heat-treatment schedules were applied to $90{\times}90mm$ dimension square lumber of Pinus koraiensis, one of major domestic species, and their colors and physical properties were investigated for obtaining an optimum schedule. Each square lumber was heat-treated three times. The temperatures of $170^{\circ}C$ and $190^{\circ}C$, and the time of 9 hours and 13 hours were used for the first heat-treatment. The schedule of $190^{\circ}C$ and 7 hours were used for the next two heat-treatments. The averages of brightness $L^*$ decreased linearly as the heat-treatment repeated and its standard deviations also decreased slightly. While the averages of color difference ${\Delta}E^*$ increased linearly as the heat-treatment repeated and its standard deviations also increased slightly. The average compressive strength of the heat-treated specimen was higher than that of the control by 9%, which deviates from previous reports. ASE and WPG of the heat-treated specimens were measured to confirm that heat-treatment improved dimensional stability significantly.