• 제목/요약/키워드: micro-powder

검색결과 473건 처리시간 0.029초

홍삼의 패키지 현황과 디자인 개선 방안 (A Study on the Korean Red Ginseng Packaging)

  • 김미자
    • 디자인학연구
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    • 제17권2호
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    • pp.373-382
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    • 2004
  • 고려인삼은 예로부터 신비의 영약으로 불려질 만큼 뛰어난 효능을 인정받아 왔다. 인삼을 수분함량 14% 이하가 되도록 하는 가공건조를 통하여 만들어진 홍삼은 부피와 무게를 감소시켜 저장과 운반이 용이해진다. 이 때 특히 사포닌을 비롯한 인삼의 유효성분들이 추가로 생성된다. 고려홍삼에 대한 선행연구들은 홍삼이 두뇌활동 촉진을 비롯한 항암작용, 인슐린억제작용, 지질대사 개선 등과 같은 성인병 치료 및 예방 효과가 있음을 입증하고 있으며, 최근에는 에이즈와 비만치료 효과에 이르기까지 다양한 효능이 밝혀지고 있다. 이처럼 고려홍삼은 약효와 품질의 우수성으로 인하여 세계인삼시장에서 인정받고 있으나, 증가된 생산과 수요, 수출 부진 등으로 인한 어려움을 겪고 있다. 실제 판매와 밀접한 관계가 있는 패키지 디자인에 대한 문제점과 개선 전략 등 디자인 측면에서의 연구는 매우 미흡한 실정이다. 따라서 변화하는 사회 환경과 국제 시장에 대응하는 적절한 패키지디자인 방안이 요구되고 있다. 본 논문에서는 홍삼제품 특성과 시장 환경의 변화, 그리고 세계인삼시장의 현황과 같은 실질적인 분석 결과를 바탕으로 국내외 홍삼과 홍삼류 제품들의 종류 및 패키지 실태를 비교, 분석하여 그 문제점과 해결방안을 모색해 본다. 이를 위한 홍삼제품은 크게 홍삼근류, 진액제품, 분말, 캡슐 및 타블렛, 드링크, 연질제품, 차 그리고 기타 캔디 등으로 나누어 살펴보았다. 앞으로 우리는 이러한 문제점과 방안을 바탕으로 적절한 포장재와 포장방법, 포장단위를 배려한 패키지디자인을 개발하는데 관심을 두어야 할 것이다.

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진동필터가 설치된 그라우트 믹서의 시멘트 응집 저감 효과에 대한 실험적 연구 (Experimental Study on Cement Cohesion Reduction Effect of Grout Mixer with Vibration Filter)

  • 황성필;정재형;김창용;이우제
    • 지질공학
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    • 제28권1호
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    • pp.61-67
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    • 2018
  • 그라우팅 공법은 보통 포틀랜드 시멘트로 대표되는 경화재를 사용하여 지반 또는 구조물에 주입하여 보강 및 차수 등에 이용하는 공법이다. 분말 상태의 시멘트에 물을 혼합하여 교반 시키면 입자들이 응집하게 된다. 시멘트 입자들이 응집하게 되면 입자의 크기가 커져 미세한 균열에서 주입성이 낮아진다. 본 연구에서는 이러한 시멘트 입자의 응집성을 저감시키기 위해 그라우트 믹서 내부에 거름망을 설치하고 진동 발생시켜 통과하는 시멘트 입자가 분리되도록 하였다. 설치된 진동필터의 효과를 확인하기 위하여 보통 포틀랜드 시멘트, 슬래그 시멘트, 마이크로 시멘트를 각각 사용하여 비교시험을 수행하였다. 점도, 블리딩, 입도분석, 압축강도 시험을 통해 진동망을 통과하는 경우 그 특성이 현저하게 변화하는 것을 확인할 수 있었다. 그라우트 믹서 내부에 진동필터를 설치하면 물과 교반 시 발생되는 응집현상을 감소시켜 줄 수 있을 것으로 기대된다.

디지털 3차원 실물복제기 시스템 및 공정기술 개발 (Development of Digital 3D Real Object Duplication System and Process Technology)

  • 김동수;안영진;이원희;최병호;장민호;백영종;최경현
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2005년도 춘계학술대회 논문집
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    • pp.732-737
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    • 2005
  • Distal 3D Real Object Duplication System(RODS) consists of 3D Scanner and Solid Freeform Fabrication System(SFFS). It is a device to make three-dimensional objects directly from the drawing or the scanning data. In this research, we developed an office type SFFS based on Three Dimensional Printing Process and a industrial SFFS using Dual Laser. An office type SFFS applied sliding mode control with sliding perturbation observer(SMCSPO) algorithm for control of this system. And we measured process variables about droplet diameter measurement and powder bed formation etc. through experiments. Also, in order to develop more elaborate and speedy system for large objects than existing SLS process, this study applies a new Selective Multi-Laser Sintering(SMLS) process and 3-axis dynamic Focusing Scanner for scanning large area instead of the existing $f\theta$ lens. In this process, the temperature has a great influence on sintering of the polymer. Also the laser parameters are considered like that laser beam power, scan speed, scan spacing. Now, this study is in progress to eveluate the effect of experimental parameters on the sintering process.

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고령자를 위한 영양강화 유제품 개발 II. 고령자 영양강화 적용 기술 현황 (Application of Dairy Food Processing Technology Supplemented with Enriched-nutrients for the Elderly: II. The Applicable Technology of Carefoods for the Elderly)

  • 김범근;장혜원;최가희;문용일;오세종;박동준
    • Journal of Dairy Science and Biotechnology
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    • 제37권4호
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    • pp.213-222
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    • 2019
  • Milk and dairy products are the high value foods for the elderly population. In particular, fermented milk is the best source of calcium for people in the specific age group of over 79 years. It provides a good source of protein. Regular exercise and active lifestyle are recommended to slow down the muscle loss. However, exercising without proper nutrient intake is simply not sufficient at this age. Milk and dairy products provide the iron and protein content required for effective exercise-assisted growth. Milk nutrients have the advantage of being produced in various food forms, such as liquid, semi-solid, and powder types. Fat-soluble vitamins such as retinol and vitamin K can be encapsulated using various technologies for milk and dairy products. Using the encapsulation method, spray drying and fluidized-bed coating have been used for adding the micro-nutrients to the food. Microencapsulation technology is being applied in case of the fermented dairy products too. In particular, various wall materials are being developed to enhance the viability of probiotics. In the near future, advanced high-efficiency technologies that can effectively nourish the dairy products with nutrients will be developed to produce targeted high-nutrition value food for the elderly.

직접 에너지 적층을 통한 STS316L 소재의 보수 공정에서 그루브 형상이 기계적 특성에 미치는 효과 (Effect of Groove Shapes on Mechanical Properties of STS316L Repaired by Direct Energy Deposition)

  • 오욱진;손용;손종윤;신광용;심도식
    • 소성∙가공
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    • 제29권2호
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    • pp.103-112
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    • 2020
  • This study explores the effects of different pre-machining conditions on the deposition characteristics and mechanical properties of austenitic stainless steel samples repaired using direct energy deposition (DED). In the DED repair process, defects such as pores and cracks can occur at the interface between the substrate and deposited material. In this study, we varied the shape of the pre-machined zone for repair in order to prevent cracks from occurring at the slope surface. After repairs by the DED process, macro-scale cracks were observed in samples that had been pre-machined with elliptic and trapezoidal grooves. In addition, it was not possible to completely prevent micro-crack generation on the sloped interfaces, even in the capsule-type grooved sample. From observation of the fracture surfaces, it was found that the cracks around the inclined interface were due to a lack of fusion between the substrate and the powder material, which led to low tensile properties. The specimen with the capsule-type groove provided the highest tensile strength and elongation (respective of 46% and 571% compared to the trapezoidal grooved specimen). However, the tensile properties were degraded compared to the non-repaired specimen (as-hot rolled material). The fracture characteristics of the repaired specimens were determined by the cracks at the sloped interfaces. These cracks grew and coalesced with each other to form macro-cracks, they then coalesced with other cracks and propagated to the substrate, causing final fracture.

가압 소결법으로 합성된 Ti3SiC2 소결체의 기계적 특성 (Mechanical Properties of Bulk Ti3SiC2 Synthesized by a Hot Press Sintering)

  • 조경선;황성식;권혁보;박상환
    • 한국세라믹학회지
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    • 제47권6호
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    • pp.560-565
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    • 2010
  • Nano laminated bulk $Ti_3SiC_2$ was synthesized by hot press process using TiCx/Si powder mixture at the temperature range of $1300^{\circ}C\sim1500^{\circ}C$. pure $Ti_3SiC_2$ was synthesized by a hot pressing above $1400^{\circ}C$, while unreacted TiCx were remained in bulk $Ti_3SiC_2$ which synthesized below $1400^{\circ}C$. The sintering density of bulk $Ti_3SiC_2$ were varied with the amount of TiCx. It was found that the mechanical properties and micro structures of bulk $Ti_3SiC_2$ were closely related to the amounts of TiCx which was controlled by the hot pressing temperature. The TiCx increase the flexural strength of bulk $Ti_3SiC_2$, while the fracture toughness and thermal shock resistance of bulk $Ti_3SiC_2$ were decreased with the content of TiCx. The plastic deformations of bulk $Ti_3SiC_2$ were appeared above $1000^{\circ}C$.

고온선박엔진용 MoSi$_2$금속간화합물의 경도와 방전가공특성 (Hardness and EDM Processing of MoSi$_2$Intermetallics for High Temperature Ship Engine)

  • 윤한기;이상필
    • 한국해양공학회지
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    • 제16권6호
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    • pp.60-64
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    • 2002
  • This paper describes the machining characteristics of the MoSi$_2$--based composites through the process of electric discharge drilling with various tubular electrodes. In addition to hardness characteristics, microstructures of Nb/MoSi$_2$laminate composites were evaluated from the variation of fabricating conditions, such as preparation temperature, applied pressure, and pressure holding time. MoSi$_2$-based composites have been developed in new materials for jet engines of supersonic-speed airplanes and gas turbines for high-temperature generators. These high performance engines may require new hard materials with high strength and high temperature-resistance. Also, with the exception of grinding, traditional machining methods are not applicable to these new materials. Electric discharge machining (EDM) is a thermal process that utilizes a spark discharge to melt a conductive material. The tool electrode is almost -unloaded, because there is n direct contact between the tool electrode and the work piece. By combining a non-conducting ceramic with more conducting ceramic, it was possible to raise the electrical conductivity. From experimental results, it was found that the lamination from Nb sheet and MoSi$_2$ powder was an excellent strategy to improve hardness characteristics of monolithic MoSi$_2$. However, interfacial reaction products, like (Nb, Mo)SiO$_2$and Nb$_2$Si$_3$formed at the interface of Nb/MoSi$_2$, and increased with fabricating temperature. MoSi$_2$composites, with which a hole drilling was not possible through the conventional machining process, enhanced the capacity of ED-drilling by adding MbSi$_2$, relative to that of SiC or ZrO$_2$reinforcements.

Ti-Al-Si-N 박막 제작을 위한 합금 타겟 제조 및 박막의 기계적 특성 (Fabrication of Alloy Target for Formation of Ti-Al-Si-N Composite Thin Film and Their Mechanical Properties)

  • 이한찬
    • 한국전기전자재료학회논문지
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    • 제29권10호
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    • pp.665-670
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    • 2016
  • Prevailing dissemination of machine tools and cutting technology have caused drastic developments of high speed dry machining with work materials of high hardness, and demands on the high-hardness-materials with high efficiency have become increasingly important in terms of productivity, cost reduction, as well as environment-friendly issue. Addition of Si to TiAlN has been known to form nano-composite coating with higher hardness of over 30 GPa and oxidation temperature over $1,000^{\circ}C$. However, it is not easy to add Si to TiAlN by using conventional PVD technologies. Therefore, Ti-Al-Si-N have been prepared by hybrid process of PVD with multiple target sources or PVD combined with PECVD of Si source gas. In this study, a single composite target of Ti-Al-Si was prepared by powder metallurgy of MA (mechanical alloying) and SPS (spark plasma sintering). Properties of he resulting alloying targets were examined. They revealed a microstructure with micro-sized grain of about $1{\sim}5{\mu}m$, and all the elements were distributed homogeneously in the alloying target. Hardness of the Ti-Al-Si-N target was about 1,127 Hv. Thin films of Ti-Al-Si-N were prepared by unbalanced magnetron sputtering method by using the home-made Ti-Al-Si alloying target. Composition of the resulting thin film of Ti-Al-Si-N was almost the same with that of the target. The thin film of Ti-Al-Si-N showed a hardness of 35 GPa and friction coefficient of 0.66.

PZT 캔틸레버의 길이와 면적에 따른 에너지 하베스팅 장치의 출력 특성 (Micro Power Properties of Harvesting Devices as a Function of PZT cantilever length and gross area)

  • 김인성;주현규;송재성;김민수;정순종;이대수
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2008년도 제39회 하계학술대회
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    • pp.1246-1247
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    • 2008
  • With recent advanced in portable electric devices, wireless sensor, MEMS and bio-Mechanics device, the new typed power supply, not conventional battery but self-powered energy source is needed. Particularly, the system that harvests from their environments are interests for use in self powered devices. For very low powered devices, environmental energy may be enough to use power source. Therefore, in other to made piezoelectric energy harvesting device, PMN-PZT thick film was formed by the screen printing method on the Ag/Pd coated alumina substrate. The layer was 8 layers and slurry where a-terpineol, ethycellulose, ferro B-75001 as Vehicle, PMN-PZT powder used are fabricated by ball mill. The output power quality was be also investigated by changing the load resistance, weight and frequency. The made piezoelectric energy harvesting device was resulted from the conditions of 33$k{\Omega}$, 0.25g, 197Hz respectively. The thick film was prepared at the condition of 2.75Vrms, and its power was 230${\mu} W$ and its thickness was 56${mu}m$. The piezoelectric energy harvesting device output voltage was increased, when the load weight, load resistance was increasing and resonance frequency was diminishing. The other side, resonance frequency was diminished, when the weight was increasing. And output power was continuously it changed by load resistance, output voltage, weight and resonance frequency.

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나노 실리카와 카본블랙이용 탄화열 반응으로 나노 SiC 합성 및 특성 (Synthesis of SiC Nanoparticles by a Sol-Gel Process)

  • 정광진;배동식
    • 한국재료학회지
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    • 제23권4호
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    • pp.246-249
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    • 2013
  • Nano-sized ${\beta}$-SiC nanoparticles were synthesized combined with a sol-gel process and a carbothermal process. TEOS and carbon black were used as starting materials for the silicon source and carbon source, respectively. $SiO_2$ nanoparticles were synthesized using a sol-gel technique (Stober process) combined with hydrolysis and condensation. The size of the particles could be controlled by manipulating the relative rates of the hydrolysis and condensation reactions of tetraethyl orthosilicate (TEOS) within the micro-emulsion. The average particle size and morphology of synthesized silicon dioxide was about 100nm and spherical, respectively. The average particles size and morphology of the used carbon black powders was about 20nm and spherical, respectively. The molar ratio of silicon dioxide and carbon black was fixed to 1:3 in the preparation of each combination. $SiO_2$ and carbon black powders were mixed in ethanol and ball-milled for 12 h. After mixing, the slurries were dried at $80^{\circ}C$ in an oven. The dried powder mixtures were placed in alumina crucibles and synthesized in a tube furnace at $1400{\sim}1500^{\circ}C$ for 4 h with a heating rate of $10^{\circ}C$/min under flowing Ar gas (160 cc/min) and furnace cooling down to room temperature. SiC nanoparticles were characterized by XRD, TEM, and SAED. The XRD results showed that high purity beta silicon carbide with excellent crystallinity was synthesized. TEM revealed that the powders are spherical shape nanoparticles with diameters ranging from 15 to 30 nm with a narrow distribution.