• Title/Summary/Keyword: Vacuum Impregnation

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Preparation and Thermal-property Analysis of Heat Storage Concrete with SSPCM for Energy Saving in Buildings (축열 성능 향상 SSPCM 혼합 콘크리트 제조 및 열적특성 분석)

  • Jeong, Su-Gwang;Chang, Seong Jin;Lim, Jae-Han;Kim, Hee-Sun;Ryu, Seong-Ryong;Kim, Sumin
    • Journal of the Korean Solar Energy Society
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    • v.35 no.1
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    • pp.89-96
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    • 2015
  • n-octadecnae based shape stabilized phase change material (SSPCM) was prepared by using vacuum impregnation method. And an exfoliated graphite nanoplate (xGnP) which has high thermal conductivity properties is used as a PCM container. And then we made heat storage concretes which contains SSPCM for reducing heating and cooling load in buildings. In the prepararion process, the SSPCM was mixed to a concrete as 10, 20 and 30wt% of cement weight. The thermal properties and chemical properties of heat storage concrete were analyzed from Scanning electron microscope (SEM), Fourier transformation infrared spectrophotometer (FT-IR), Deferential scanning calorimeter (DSC), Thermogravimetric analysis (TGA) and TCi thermal conductivity analyzer. And we conducted surface temperature analysis of SSPCM and xGnP by using heat plate and insulation mold.

Termite Resistance of Impregnated Jabon Wood (Anthocephalus Cadamba Miq.) with Combined Impregnant Agents

  • Arsyad, Wa Ode Muliastuty;Basri, Efrida;Hendra, Djeni;Trisatya, Deazy Rachmi
    • Journal of the Korean Wood Science and Technology
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    • v.47 no.4
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    • pp.451-458
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    • 2019
  • Jabon (Anthocephalus cadamba Miq.) is a fast-growing species that exhibits a lower natural resistance than that exhibited by the timber sourced from natural forests. Jabon's resistance to termite attack can be improved by impregnating its wood structure with poisonous organic materials. This study examined jabon's resistance to termite attack when impregnated with wood vinegar and an animal adhesive. The wood specimens were impregnated using sengon wood vinegar and an animal adhesive (8% and 10%, respectively) using a vacuum pressure machine. The specimens were tested for their resistance to subterranean and dry-wood termites according to Indonesian National Standard (SNI 7207-2014). The results denoted that jabon impregnated with wood vinegar and an animal adhesive concentration of at least 8% with the addition of 4% borate was effective to resist termite attacks. The impregnated jabon exhibited a lower weight loss and higher termite mortality when compared with those exhibited by the control specimens. Thus, the resistance class improved from class IV to class I.

Manufacturing Fiber-Reinforced Composite Materials Based on PLA (Poly L-Lactide) Resin Using In-Situ Polymerization and Molecular Weight Measurement Using GPC (현장 중합을 이용한 PLA(Poly L-Lactide) 수지 기반 섬유 강화 복합 재료 제조 및 GPC를 이용한 분자량 측정)

  • Seon-Ju Kim;Beom-Joo Lee;Hyeong-Min Yoo
    • Design & Manufacturing
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    • v.17 no.3
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    • pp.28-33
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    • 2023
  • The conventional FRP (Fiber Reinforced Plastic) manufacturing process used thermoset resins for ease of molding but faced the issue of non-recyclability. To address these shortcomings, a new process utilizing thermal plastic resin was developed. However, due to the high viscosity of thermal plastic resin, problems such as fiber deformation and a reduced fiber volume fraction occurred during the high-temperature, high-pressure process. In this study, to overcome the limitations of the conventional process, fiber-reinforced composite materials were manufactured through in-situ polymerization using PLA (Poly L-Lactide) resin in the VA-RTM (Vacuum Assistance Resin Transfer Molding) process. The fiber volume of the produced specimens was calculated, and resin impregnation and porosity were confirmed through optical microscopy. Additionally, molecular weight analysis using GPC (Gel Permission Chromatography) demonstrated improvements over the conventional process and emphasized the essential requirement of temperature control.

Dimensional Stability and Mechanical Properties of Citric Acid Impregnated Samama Wood (Anthocephalus macrophyllus (Roxb) Havil) at High Curing Temperatures

  • Sarah AUGUSTINA;Sari Delviana MARBUN;SUDARMANTO;NARTO;Deazy Rachmi TRISATYA;Eko Budi SANTOSO;Dhimas PRAMADANI;Nanda Nur AFNI;Tushliha Ayyuni FARIHA;Gabriel Wiwinda L. TOBING;Wasrin SYAFI'I;Tekat Dwi CAHYONO;Eka NOVRIYANTI;Muhammad BULA;Adik BAHANAWAN;Prabu Satria SEJATI;Nam Hun KIM;Wahyu DWIANTO;Philippe GERARDIN
    • Journal of the Korean Wood Science and Technology
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    • v.51 no.6
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    • pp.431-446
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    • 2023
  • Samama wood (Anthocephalus macrophyllus (Roxb) Havil) is a fast-growing and lesser-utilized wood species that has inferior properties; therefore, its quality needs to be improved. This research aimed to determine the effect of citric acid impregnation at high curing temperatures on the dimensional stability and mechanical properties of wood. Citric acid solution with 10% concentration (w/w) was impregnated into wood samples by vacuum-pressure method (-0.5 cmHg, 30 min; 0.7 MPa, 3 h), followed by curing process at 140℃, 160℃, and 180℃ of temperature for 1 h. In comparison, the other wood samples were heat treated at the same temperatures and time. The results showed that the increase in curing and heat temperatures for both treatments were directly proportional to the dimensional stability, but inversely proportional to the mechanical properties. Citric acid impregnated had higher density, dimensional stability, and mechanical properties, except for modulus of rupture, than that of heat treatment. The optimum temperature is suggested at 160℃ in both treatments.

The Vacuum Freeze-Drying Experiment for Water-logged Wood Excavated from Wolpyongdong in Taejon (수침목재(水浸木材)의 동결건조(東結乾燥) 실험보고 -대전(大田) 월평동출토(月平洞出土) 유물을 중심(中心)으로-)

  • Kim, Kyoung-su;Yi, Yong-hee
    • Conservation Science in Museum
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    • v.1
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    • pp.27-35
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    • 1999
  • To get the best result from vacuum freeze drying of water-logged wood, it is necessary for objects to find out the best conditions such as chemicals, appropriate concentration of solution, impregnation method and etc. Such best conditions could be set up by pre-treatment experiments. Two kinds of wood(Pinus densiflora S. et Z. and Quercus acutissima Carruth) were pre-treated by four methods: 2-step PEG treatment(PEG#200-PEG#4000), sorbitol treatment, PEG#200+PEG#4000 treatment, and sorbitol+PEG#4000 treatment. After those pre-treatment, vacuum freeze-drying was undertaken. Then the effect of dimensional stability were compared. When using 2-step PEG treatment, a solution of 60% PEG #4000 got the best dimensional stability for pine and in case of the oak, a solution of 40% PEG#4000 got the best. Sorbitol treatment got rather good result for the pine only when applied with 40% solution of sorbitol. Sorbitol, PEG#200+PEG#4000 and sorbitol+PEG#4000 treatments to the oak didn't affect on dimensional stability sufficiently.

A Study on the Atmospheric Pressure Control of the VARTM Process for Increasing the Fiber Volume Fraction and Reducing Void (섬유부피분율 증가와 공극 감소를 위한 VARTM 공정의 대기압 제어에 관한 연구)

  • Kwak, Seong-Hun;Kim, Tae-Jun;Tak, Yun-Hak;Kwon, Sung-Il;Lee, Jea-Hyun;Kim, Sang-Yong;Lee, Jong-Cheon
    • Composites Research
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    • v.34 no.2
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    • pp.88-95
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    • 2021
  • VARTM (Vacuum-assisted resin transfer molding) process is a low-cost process technology and affiliated with OoA (Out of Autoclave). Besides, it has been widely used in various fields. However, because of its lower quality than the autoclave process, it isn't easy to apply the VARTM process to the aerospace industry, which requires high reliability. The main problem of the VARTM process is the loss of mechanical properties due to the low fiber volume fraction and high void content in comparison to the autoclave. Therefore, many researchers have studied to reduce void and increase fiber volume fraction. This study examines whether the method of controlling atmospheric pressure could increase the fiber volume fraction and reduce void during the resin impregnation process. Reliability evaluation was confirmed by compressive strength test, fiber volume fraction analysis, and optical microscopy. As a result, it was confirmed that increasing the atmospheric pressure step by step in the VARTM process of impregnating the preform with resin effectively increases the fiber volume fraction and reduces void.

Development of Clamped Tesla Superconducting Magnet. (16 Tesla급 고자장 발생용 초전도 마그네트 개발)

  • Kwon, Young-Kil;Cho, Jeon-Wook;Lee, Eon-Yong;Jin, Hong-Bum;Ha, Dong-Woo;Oh, Bong-Hwan;Kim, Hae-Jong;Oh, Sang-Soo;Ryu, Kang-Sik
    • Proceedings of the KIEE Conference
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    • 1996.07a
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    • pp.199-201
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    • 1996
  • The design and manufacturing results of a 16 tesla/45mm bore superconducting magnet is presented. The system consists of an 8.2 tesla(at 4.2K) outer NbTi coil with a bore I.D. of 261mm, a winding O.D. of 453mm and the length of 430mm which is connected in series with a 5.6 tesla(at 4.2K) middle and a 4.7 tesla(at 4.2K) inner insert coil constructed of multifilamentary $Nb_3Sn$. The middle and inner insert coil are reacted after winding. Also, epoxy impregnation is accomplished at $Nb_3Sn$ coils using a low viscosity crack resistant epoxy which is forced into the coil with a series of vacuum and over atmosphere pressure cycle.

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Preparation and properties of glass fiber-reinforced endodontic (root canal therapy) posts (유리섬유 강화 근관치료 포스트의 제조 및 특성에 대한 연구)

  • Son, Jae-Yong;Kim, Kyoung-Ja;Kim, Kyoung-Hun;Park, Joo-Seok;Shim, Kwang-Bo
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.25 no.3
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    • pp.105-110
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    • 2015
  • The fiber-reinforced endodontic posts were prepared using a photocurable resin and a glass fiber. The mechanical property of the posts increased with increasing density of glass fiber and the micro-pores in the post were removed by a vacuum impregnation process. To improve the interfacial adhesion between glass fiber and polymer, silane coupling agent was used. The surface treatment of glass fiber increased the surface wettability of resing on glass fiber and increased the adhesion property with resin, consequently improved the mechanical property of posts.

Efficiency of catalyst-coated ceramic filter with acid treatment (촉매담지 세라믹 필터의 표면 산처리 효과)

  • Cho, Eul-Hoon;Suh, Kwang-Suck;Kim, Su-Hyo;Shin, Min-Chul;Shin, Byeong-Kil;Kim, Jin-Seong;Lee, Hee-Soo
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.18 no.2
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    • pp.91-95
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    • 2008
  • Ceramic filter was prepared using cordierite powder and it was coated with $V_2O_5$ catalyst by vacuum impregnation method. The filter had the apparent porosity of 58 %, the compressive strength of 10 MPa and the pressure drop of 1200 Pa at the face velocity of 5 cm/see and 400$^{\circ}C$. $NO_x$ removal efficiency of only $V_2O_5$ coated on cordierite filter showed the removal efficiency of 80 %, and it was improved up to 90 % by increasing specific surface area of filter elements from the acid treatment. The high surface area is due to the removal of Mg and Al ions from the silicate structure and subsequent generation of free amorphous silicate on the surface of the cordierite.

Simultaneous Removal of NOx/SOx by Catalyst-loaded Cordierite Porous Filter (촉매 담지 코디어라이트 다공성 필터의 NOx/SOx 동시제거에 대한 연구)

  • Lee, Shi-Hee;Chung, Koo-Chun;Kim, Jee-Woong;Shin, Min-Chul;Lee, Hee-Soo
    • Analytical Science and Technology
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    • v.15 no.3
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    • pp.256-262
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    • 2002
  • After porous filters were manufactured using cordierite powder whose mean paricle size was 200${\mu}m$, they were loaded with catalysts such as $V_2O_5$, CuO and $LaCoO_3$ by vacuum impregnation method. And the NOx/SOx simultaneous removal efficiency was measured by passing NO and $SO_2$ through catalyst-loaded ceramic filters. The cordierite porous filters had the apparent porosity of 61.6%, the compressive strength of 12.3 MPa and the pressure drop of 147 pa at the face velocity of 5 cm/sec. According to the analysis of NO/$SO_2$ simultaneous removal efficiency, perovskite $LaCoO_3$ catalyst was the most efficient for the simultaneous NO and $SO_2$ removal. The $LaCoO_3$ catalyst-loaded filter could remove more than 90% for NO and more than 80% for $SO_2$.