• Title/Summary/Keyword: resin impregnation

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The Manufacture of High-Density Woodceramic through the Secondary Carbonization

  • Oh, Seung Won
    • Journal of the Korean Wood Science and Technology
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    • v.41 no.2
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    • pp.105-110
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    • 2013
  • A repeated impregnation and carbonization process was performed to prepare high-density woodceramics using MDF. The physical properties were estimated to further confirm morphologically structurally occurred changes of one-time and two-time phenolic resin treated and carbonized woodceramics. As compare one-time and two-time carbonized woodceramics, the increasing rate of weight and density declined after second carbonization as the resin impregnation ratio grew higher, and when the resin impregnation ratio was 40 percent, the weight and density of the second carbonization increased more than in the first step by 20.5% and 33.9% respectively which were the highest rates.

The Resin Impregnation with Silane Coupling on Graphite (흑연의 실란커플링에 의한 수지함침)

  • 조광연;김경자;정윤중
    • Journal of the Korean Ceramic Society
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    • v.40 no.10
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    • pp.1021-1026
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    • 2003
  • Resin impregnation of carbon materials was affected by surface of carbon materials. The surface of carbon materials with coupling treatment improved comparability and wettability with resin, and that increased impregnation efficiency and properties of carbon materials. As a results of FT-IR, The silanol was coated on carbon surface with one layer. Coupling treatment of carbon materials increased impregnation efficiency, which improved porosity, mechanical strength, density and friction behavior.

Effect of Phenol Formaldehyde Impregnation on The Physical and Mechanical Properties of Soft-Inner Part of Oil Palm Trunk

  • Hartono, Rudi;Hidayat, Wahyu;Wahyudi, Imam;Febrianto, Fauzi;Dwianto, Wahyu;Jang, Jae-Hyuk;Kim, Nam-Hun
    • Journal of the Korean Wood Science and Technology
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    • v.44 no.6
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    • pp.842-851
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    • 2016
  • The objective of this study was to improve physical and mechanical properties of soft-inner part of oil palm trunk (S-OPT) after impregnation with phenol formaldehyde (PF) resin and densification by close system compression (CSC) method. Effect of different methods of PF resin impregnation (i.e., no vacuum-pressure, vacuum, and vacuum-pressure) was evaluated. The results showed that PF resin impregnation and CSC significantly improved the physical and mechanical properties of S-OPT up to: (1) 176% in density; (2) 309% in modulus of rupture (MOR); (3) 287% modulus of elasticity (MOE); and (4) 191% in the compressive strength. Physical and mechanical properties of S-OPT showed their best performances when PF resin impregnated with vacuum-pressure method as shown by higher weight gain, density, MOR, MOE, compressive strength, and lower recovery of set due to better penetration of PF resin into S-OPT. Combining PF resin impregnation and densification by CSC method could be a good method to improve physical and mechanical properties of S-OPT.

Properties of Woodceramics Made from Thinned Logs(I) - Effect of Resin Impregnation Rate and Burning Temperature - (간벌재로 제조된 우드세라믹의 성질(I) - 수지 함침율 및 소성온도의 영향 -)

  • Oh, Seung-Won;Piao, Jin-Ji
    • Journal of the Korean Wood Science and Technology
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    • v.32 no.1
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    • pp.73-79
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    • 2004
  • Research investigated the variation of density, weight loss and dimensional decreasing rate, heat conduction rate by the resin impregnation rate and burning temperature of woodceramics, which were formed by impregnation rate of 40~80% and burning temperature of 600~1500℃ with sawdust board impregnated with phenolic resin made from thinned logs of pinus densiflora, Larix kaemferi and pinus koraiensis. As the resin impregnation rate and the burning temperature increased, the density increased, however, as the burning temperature increased to at 1200℃ or more, the density decreased. The more the resin impregnation rate increased, the more the decreasing rate of weight and size decreased; the more the burning temperature increased, the more the decreasing rate of weight and size increased. When the resin impregnation rate was high, the heat conduction (mm/sec) was superior.

Manufacturing of High Density Woodceramics by Recarbonization Using a Resin Impregnation Board - Change of Density Profile - (수지함침보드의 2차 탄화에 의한 고밀도 우드세라믹 제조 - 밀도경사 변화 -)

  • Oh, Seung-Won;Jeon, Soon-Sick;Byeon, Hee-Seop
    • Journal of the Korean Wood Science and Technology
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    • v.39 no.1
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    • pp.60-67
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    • 2011
  • A repeated impregnation and carbonization process was introduced to product high-density woodceramics using a resin impregnation board. The density profile were measured to further confirm morphologically and structurally occurred changes of one-time and two-time phenolic resin-treated and carbonized woodceramics. After the two-time carbonization of the products, the minimum, average and maximum densities increased more than those of the one-time carbonized woodceramics, and the increase of density profile. Therefore, it is considered that the preparation of uniformed woodceramics with high-density and low density dissipation can be produced by a repeated impregnation and carbonization).

Manufacturing Characteristics of Wood ceramics from Thinned Small Logs (I) - Resin Impregnation Rate and Bending Strength -

  • Oh, Seung-Won;Hirose, Takashi;Okabe, Toshihiro
    • Journal of the Korean Wood Science and Technology
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    • v.28 no.4
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    • pp.51-55
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    • 2000
  • The woodceramics which are new porous carbon materials were obtained by carbonizing from thinned small log of Aomori HIBA (Thujopsis dolabrata S. et. Z. var. hondae M.) impregnated with phenol resin in a vacuum furnace. During the carbonization process, the resin changes into glassy carbon, which has superior property. The resin impregnation rate and bending strength depend on the types of board and density. In this paper, the manufacturing method of woodceramics made from thinned small logs of Aomori HIBA was introduced and some properties were examined.

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Mechanical and Magnetic Properties of YBCO Superconductor with Bi/CNT Composite and Resin/CNT Impregnation (Bi/CNT 화합물과 Resin/CNT를 보강한 YBCO 초전도체의 기계적, 자기적 특성 변화)

  • Oh, W.S.;Jang, G.E.;Han, Y.H.;Sung, T.H.
    • Progress in Superconductivity
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    • v.9 no.1
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    • pp.107-110
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    • 2007
  • Bi/CNT composite and resin/CNT were chosen to improve the mechanical properties of $YBa_2Cu_3O_7$(YBCO) superconductor. In order to elucidate the effects of Bi/CNT composite and resin/CNT in YBCO superconductors, melt texture superconductor were impregnated by mixed compound of Bi and CNT into the artificial holes parallel to the c-axis, which were drilled on the YBCO superconductor. Various amount of Bi/CNT and resin/CNT were impregnated to YBCO superconductor with different holes diameters. Typical artificial holes diameters were 0.5, 0.7, and 1.0 mm respectively. Result of three-point bending test measurement, the bending strength with resin/CNT impregnation was improved up to 59.64 MPa as compared with 50.79 MPa of resin/CNT free bulk. Resin/CNT impregnation has been found to be one of the effective ways in improving the mechanical properties of bulk superconductor.

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Mechanical Properties and Density Profile of Ceramics Manufactured from a Board Mixed with Sawdust and Mandarin Peels

  • Jung-Woo HWANG;Seung-Won OH
    • Journal of the Korean Wood Science and Technology
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    • v.51 no.2
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    • pp.98-108
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    • 2023
  • In this study, the boards were manufactured according to the mandarin peels addition rate using sawdust and mandarin orange peel. After that, the mechanical properties and density profile of ceramics prepared by conditions through resin impregnation process and carbonization process were investigated. The bending and compression strengths of ceramics tended to increase as the resin impregnation rate increased. When the resin impregnation rate was 70%, the highest values were 8.58 MPa and 14.77 MPa, respectively. Also, the mechanical properties of ceramics according to carbonization temperature showed the highest values at 1,200℃ for bending strength of 11.09 MPa and compression strength of 17.20 MPa. The bending strength and compression strength according to the mandarin peels addition rate showed the highest values at 8.62 MPa and 14.16 MPa, respectively, when the mandarin orange peel addition rate was 5%. The mechanical properties tended to decrease when the addition rate of mandarin orange was increased. The density profile of ceramics showed a similar tendency to the mechanical properties. It can be seen that the density distribution from the surface layer to the center layer is more uniform as the resin impregnation rate and carbonization temperature increase and the mandarin peels addition rate decreases.

A Study on the Three Phase Glass Fiber/Nylon 6/Polyproylene Composites (나일론 6과 폴리프로필렌 수지에 유리섬유가 보강된삼상 복합재료에 관한 연구)

  • 서문호
    • The Korean Journal of Rheology
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    • v.10 no.2
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    • pp.57-64
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    • 1998
  • A pultrusion resin impregnation (PRI) die, which has been developed recently in our laboratory, was used to pre-pare various composite system. The continuous fiber reinforced composites of glass fiber/polypropylene(GFPP) and glass fiber/polyamide 6 (GFPA) were first manufactured by means of the PRI die and then cut into chopped pellets of predet-ermined length. These pellets and either virgin or modified thermoplastic resin were melt-mixed by a twin screw extruder to prepare GF/PA/PP and GF/PA/PPMA system. The mechanical properties of these blends were investigated and discussed in terms of their morphological observations. These preliminary results revealed that this new impregnation die could be suc-cessfully applied to produce prepregs suitavle for the final shaping process.

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Effect of Percentage of Resin Impregnation on the Preparation of High Density Woodceramics and the Physical Properties (수지함침율이 고밀도 우드세라믹 제조와 물성에 미치는 영향)

  • Oh, Seung Won;Jeon, Soon Sick
    • Journal of the Korean Wood Science and Technology
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    • v.36 no.3
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    • pp.39-46
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    • 2008
  • Repeated impregnation and carbonization processes were performed to prepare high-density woodceramics using a sawdust board. The physical properties were investigated to confirm morphological and structural changes of one-time and two-time phenolic resin-treated and carbonized woodceramics. As comparing between one-time and two-time carbonized woodceramics, the weight and the density of the two-time carbonized woodceramics decreased with an increase of the amount of impregnated phenolic resin. In addition, when the amount of impregnated phenolic resin was about 40% in these woodceramics, the two-time carbonized woodceramics showed higher weight (23.8%) and density (30.0%) than the one-time treatment.