• 제목/요약/키워드: foaming process

검색결과 192건 처리시간 0.026초

발포 복합재료 Pultrusion 공정에서의 발포 거동 해석 (Analysis of the foaming behavior in pultrusion process of phenolic foam composites)

  • 윤명석;정재원;이우일
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2005년도 춘계학술발표대회 논문집
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    • pp.130-133
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    • 2005
  • An experimental and theoretical study was carried out to estimate the foaming characteristics in the pultrusion process of phenolic foam composite. For the experimental study, a lab-scale pultrusion apparatus was constructed. Methylene chloride(CH2Cl2) was used as a physical blowing agent, glass fiber roving was used as reinforcement and the polymer used was a resol type phenolic resin. Pultruded products were observed to count bubble size by a SEM(Scanning Electron Microscopy). For the theoretical study, a model for bubble growth in a gradually hardening resin was considered and solved for a few foaming conditions.

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Effect of pH on Successive Foam and Sonic Droplet Fractionation of a Bromelain-invertase Mixture

  • Ko Samuel;Prokop Ales;Tanner Robert D.
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제7권1호
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    • pp.26-30
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    • 2002
  • A droplet fractionation method was previously developed to concentrate a dilute nonfoaming protein solution. In that earlier study with invertase, it was demonstrated that droplets created by ultrasonic energy waves could be enriched up to 8 times that of the initial dilute invertase solution. In this study, a mixture of bromelain (a foaming protein) and invertase (a nonfoaming protein) is investigated as a preliminary step to determine if droplet fractionation can also be used to separate a non-foaming protein from foaming proteins. The foaming mixture containing bromelain is first removed by bubbling the binary mixture with air. After the foam is removed, the protein rich air-water interfacial layer is skimmed off (prior to droplet fractionation) so as not to interfere with the subsequent droplet production from the remaining bulk liquid, rich in non-foaming protein. Finally, sonic energy waves are then applied to this residual bulk liquid to recover droplets containing the non-foaming protein, presumed to be invertase. The primary control variable used in this droplet fractionation process is the pH, which ranged for separate experiments between 2 and 9. It was observed that the maximum overall protein partition coefficients of 5 and 4 were achieved at pH 2 and 4, respectively, for the initial foaming experiment followed by the post foaming droplet fractionation experiment.

화학적 초미세 발포 사출성형을 이용한 에어컨 드레인 펜의 공정 최적화에 대한 연구 (A study on the process optimization of microcellular foaming injection molded air-conditioner drain pen)

  • 김주권;곽재섭;김준민;이준한;김종선
    • Design & Manufacturing
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    • 제11권2호
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    • pp.1-8
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    • 2017
  • In this study, we applied microcellular foaming injection molding process to improve the performance of system air-conditioner drain fan which had been produced by injection molding process and studied the optimization of process conditions through 6-sigma process and response surface method (RSM) to reduce weight and deformation of products. Additive type, melt temperature, mold temperature, and injection screw shape were selected as the factor affecting the weight and deformation of the products by carrying out analysis of trivial many through ANOVA and design of experiment (DOE) method. Among the effect factor, we set the addictive type to Long G/F and screw shape to foaming screw which had the highest level of weight reduction and deformation reduction. The amount of foaming agent gas was set at 60 ml, which was the limit beyond which the weight of product did not decrease any more. For melt temperature and mold temperature, we studied the conditions where both weight and deformation were minimized using the RSM. As a result, we set the melt temperature to $250^{\circ}C$, fixed mold temperature to $20^{\circ}C$, and moving mold temperature to $40^{\circ}C$. The improvement effect was analyzed by appling the selected optimal conditions to the production process using the microcellular foaming injection molding. The results showed that the mean weight of product was measured to be 1,420g which was 19% lower than that measured in the current process. The standard deviations of the weights were found to be similar to those in the current process and it showed a low dispersion. The mean deformation was measured to be 0.9237mm, which represented a 57% reduction compared to the mean deformation in the current process, and the standard deviation decreased from 0.3298mm to 0.1398mm. Moreover, we analyzed the process capability for deformation, and the results showed that the short-term process capability increased from 2.73 to 6.60 which was even higher than targeted level of 6.0.

미세기공 알루미늄 소재의 기계적 성질 (Mechanical Properties of Aluminium Alloy with Cellular Structure.)

  • 윤성원;이승후;강충길
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2002년도 춘계학술대회 논문집
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    • pp.695-698
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    • 2002
  • Induction heating process is one of the most efficient heating process in terms of temperature control accuracy and heating time saving. In the past study, fabrication process of cellular 6061 alloys by powder metallurgical route and induction heating process was studied. To supplement the framing conditions that studied in past study, effect of induction heating capacity and holding time at foaming temperature were investigated. Under the achieved framing conditions, teamed 6061 alloys were fabricated for variation of foaming temperature, and porosities(%)-foaming temperature curves were obtained by try-error experimental method. Uniaxial compression tests were performed to investigate the relationship between porosities(%) and stress-strain curves of framed 6061 alloy. Also, energy absorption capacity and efficiency were calculated from stress-strain curves to investigated. Moreover, dependence of plateau stress on strain rate was investigated in case of cellular 6061 alloy with low porosities(%)

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발포공정을 이용한 경량의 연질 세라믹 보온단열재의 제조 (Preparation of Flexible and Light Thermal Insulating Ceramic Composites Using Foaming Technology)

  • 이철태
    • 공업화학
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    • 제26권1호
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    • pp.59-66
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    • 2015
  • 본 연구는 유기계 보온단열재의 장점인 경량성과 연질특성을 갖는 무기계 보온단열재의 제조를 위한 새로운 개념의 무기질 저온 발포 공정에 관한 것이다. 새로운 무기질 발포 공정은 섬유상인 해포석 및 규산알루미늄으로 하여금 발포체의 골격을 형성토록 하고, 저온에서 기체 발생이 가능한 발포제를 사용하여 무기질 섬유상 골격체가 팽창되어 공동을 형성하게 하며, 이 형성된 공동 속에 낮은 열전도도를 갖는 무기질 다포체인 팽창진주암을 채우는 것이다. 총괄적으로 무기질 재료를 고온 용융함이 없이 저온에서 무기질 발포체의 제조가 가능하게 된다. 이를 위해서 섬유상인 해포석의 해섬처리과정, 발포를 위한 섬유상 슬러리의 열처리공정 등 다양한 준비공정이 필요하며, 열처리 전 슬러리의 최적 조성물 조건이 요구된다. 제조된 발포체는 경량, 연질의 보온단열재로서의 겉보기 밀도, 내력 강도, 굽힘강도, 고내열성 등의 물성을 보여주었다.

폐 소다석회 유리의 조성조절에 의한 발포유리블록의 제조 (Preparation of Foamed Glass Block from Recycled Soda-lime-silicate Glasses by Chemical Composition Control)

  • 김정민;이철태
    • 공업화학
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    • 제24권4호
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    • pp.382-390
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    • 2013
  • 소다석회 조성의 폐 병유리를 대상으로 효율적인 재활용방안을 찾기 위해서 발포화에 적절한 조성의 조절을 통해 직접 보온단열재 발포유리블럭을 제조할 수 있는 공정을 조사하였다. 폐 병유리의 직접 발포화를 위해 첨가되는 성분 및 조성은, 폐 유리분말 100중량부에 대하여 $SiO_2$ 10중량부, $Na_2SO_4$ 0.5중량부, $B_2O_3$ 3.0중량부, 그리고 발포제로서 카본 블랙류 탄소재 0.3중량부이다. 발포공정은 턴넬키른에서 진행하며, 발포소성 조건은 폐 유리분말의 입도는 -325 mesh, 발포소성온도는 $830{\sim}850^{\circ}C$, 발포시간은 30~35 min이 바람직하다. 상기 조건하에 제조된 발포체는 밀도가 $0.17{\sim}0.21g/cm^3$, 열전도도 $0.06{\pm}0.005kcal/h{\cdot}m{\cdot}^{\circ}C$, 수분 흡수율 1.1~1.5%, 압축강도는 $20{\sim}30kgf/mm^2$의 물성을 나타내었다.

전기로 슬래그 포밍에 미치는 가탄재 종류의 영향 (Effect of Carbon Materials on the Slag Foaming in EAF Process)

  • 김영환;유정민;엄형식
    • 자원리싸이클링
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    • 제28권2호
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    • pp.40-45
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    • 2019
  • 전기로 공정은 스크랩을 재활용하여 주원료로 사용하고 아크에 의해 용해하며, 전력을 주 에너지로 사용한다. 슬래그 포밍은 전력에너지 저감에 중요한 요소 기술이다. 투입되는 가탄재(분탄)와 슬래그 중 FeO와의 반응과 용강 중의 카본과 투입되는 산소와의 반응에 의해 CO가스가 발생된다. 이러한 반응에 의해 발생된 CO가스는 슬래그에 포집되어 슬래그 포밍 현상이 일어난다. 전기로 제강 공정에서 일반적으로 가탄재는 가공분탄(무연탄)과 cokes를 사용하고 있다. 본 연구는 전기로 제강 공정에 사용되는 가탄재에 따른 슬래그 포밍의 영향을 조사하였다. 연구 결과 가공분탄 보다는 cokes에 의해 슬래그 포밍 높이가 증가 되었으며, 입도 $500{\mu}m$ 이하의 입자 함량이 증가할수록 포밍높이가 증가하는 결과를 나타내었다. 이러한 결과를 바탕으로 조업에 적용한 결과, 슬래그 포밍높이 증가와 가탄재 원단위 저감, 전력에너지 저감의 효과를 얻었다.

초미세발포 사출성형을 이용한 천정형 에어컨 4-way 판넬의 공정 최적화에 관한 연구 (A Study on the Process Optimization of Microcellular Foaming Injection Molded Ceiling Air-Conditioner 4-Way Panel)

  • 김주권;이정희;김종선;이준한;곽재섭
    • 한국기계가공학회지
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    • 제17권6호
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    • pp.98-104
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    • 2018
  • Deflected 4-way panels of ceiling air conditioners produced by injection molding process have caused dew condensation at the edge of products. In order to prevent this drawback with reducing weight and deformation, this study proposed renovated process adopting microcellular foaming. According to results from 2-sample t-test and analysis of variance(ANOVA), the critical factors affecting weight were melt temperature and injection speed. In addition, the vital effects on deformation were structure at the edge, mold temperature and cooling time. Optimal conditions of these parameters were derived by regressive analysis with CAE and response surface method(RSM), and then applied to an actual design and process stage to analyze performance. As a results, it clearly showed that new process improved process capability as well as reduced both weight and deformation by 18.8% and 71.9% respectively compared to the conventional method.