• 제목/요약/키워드: hybrid type materials

검색결과 261건 처리시간 0.028초

3D Infill을 활용한 PC 모듈러공법과 기존공법과의 시공프로세스 비교 연구 (A Study on the Comparison of the Construction Process between the PC Modular Construction Method Using 3D Infill and the Existing Construction Method)

  • 정준수;임석호;양현정
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2023년도 봄 학술논문 발표대회
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    • pp.87-88
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    • 2023
  • In accordance with changes in the domestic construction environment, interest in off-site construction methods (factory-manufactured construction methods) including modular construction methods is rapidly increasing. Among various off-site (OSC) construction methods, the front runner is the steel-based box-type modular construction method. Compared to the existing wet construction method, the steel modular construction method is increasing in terms of securing economic feasibility by shortening the construction period and increasing the prefabrication rate. However, due to the recent rise in raw materials and a sharp rise in the exchange rate, the economic feasibility of the wet method is deteriorating compared to the wet method. Therefore, a hybrid between 9-Matrix-based OSC construction methods is considered as a solution, away from the steel-box type combination, and a comparative study of the construction process between each construction method is being conducted. It was analyzed that the PC modular construction method shortened the construction period by 9% compared to the existing steel modular construction method. On the other hand, when comparing the construction period of the Gayang-dong demonstration complex calculated assuming that all modules are applied, it is estimated that there will be a 12% reduction in construction period compared to the steel modular method and a whopping 43% compared to the RC method.

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탄화규소섬유와 탄소섬유 하이브리드 직물을 강화재로 한 SiC 매트릭스 세라믹복합재의 기계적물성, 산화 및 삭마 저항성 개선 연구 (Study on Improvement of Mechanical Property, Oxidation and Erosion Resistance of SiC Matrix Ceramic Composites Reinforced by Hybrid Fabric Composed of SiC and Carbon Fiber)

  • 윤병일;김명주;김재성;권향주;윤성태;김정일
    • Composites Research
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    • 제32권3호
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    • pp.148-157
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    • 2019
  • 본 연구에서는 탄소섬유, 탄화규소섬유 그리고 하이브리드섬유를 강화재로 하여 TGCVI와 PIP 혼합 공정으로 $C_f/SiC$, $SiC_f/SiC$, $C_f-SiC_f/SiC$의 세라믹복합재를 제조하였다. 열충격싸이클시험, 3점 굴곡시험과 Oxy-Acetylene 토취 시험후에 그들의 기계적물성, 산화저항성과 내삭마성을 평가하였다. $C_f/SiC$복합재는 온도 증가에 따라서 기계적물성의 감소와 준 연성의 파단모드, 그리고 높은 삭마량을 보였다. $SiC_f/SiC$복합재는 $C_f/SiC$ 복합재에 비하여 강한 기계적물성, 낮은 삭마량을 그리고 취성의 파단모드를 나타냈다. 한편 하이브리드 복합재는 가장 우수한 기계적물성과 $SiC_f/SiC$보다는 연성의 파단모드 그리고 $C_f/SiC$ 보다 낮은 삭마량의 결과를 나타냈다. Oxy-Acetylene 토취 시험 중에 SiC매트릭스는 산화되어 $SiO_2$층을 형성하였으며, 특히 이 층은 $C_f-SiC_f/SiC$$SiC_f/SiC$ 복합재에서 섬유의 추가적인 삭마를 막는 역할을 하는 것으로 나타났다. 결론적으로 낮은 기공율을 갖는 하이브리드 복합재를 제조한다면, $C_f/SiC$의 산화로 인한 기계적물성의 감소와 $SiC_f/SiC$ 복합재의 취성 파단모드의 개선으로 고온 산화분위기에서 고온열구조재로의 적용이 높을 것으로 기대한다.

복합소재를 활용한 B필러 강화재의 구조해석 및 설계 (Structural Analysis and Design of B-pillar Reinforcement using Composite Materials)

  • 강지헌;김건우;장진석;김지욱;양민석;구윤식;안태민;권순덕;이재욱
    • Composites Research
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    • 제34권1호
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    • pp.35-46
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    • 2021
  • 본 논문은 차량에 사용되는 B필러의 강화재를 기존의 스틸 소재에서 CFRP(Carbon Fiber Reinforced Plastics)와 GFRP(Glass Fiber Reinforced Plastics)로 대체하여 경량화하는 것이 목표다. 이를 위해서는 무게는 감소시키면서 기존 B필러를 대체할 수 있는 구조안정성을 확보해야 한다. 기존 B필러는 스틸 아우터(outer)를 포함하여 다양한 형상의 스틸 강화재로 구성되며, 이와 같은 스틸 강화재 중 2가지의 스틸 강화재를 복합재로 대체하고자 한다. 이와 같은 스틸 강화재는 강화재 각각을 따로 제작하여 용접을 통해 결합되지만, 복합재 강화재는 패치(patch) 형태의 CFRP와 리브(rib) 구조의 GFRP를 활용하여 압축과 사출 공정을 통해 한번에 제작된다. CFRP는 B필러의 고강도부에 부착되어 측면 하중에 저항하도록 하였으며, GFRP 리브는 위상 최적화(Topology optimization) 기법을 통해 비틀림과 측면 하중을 저항하도록 설계하였다. 구조해석을 통해 기존 스틸 강화재와 비교 분석을 수행하였고, 경량화율을 산출하였다.

New Classification of Plasmodiophora brassicae Races Using Differential Genotypes of Chinese Cabbage

  • Kim, Hun;Choi, Gyung Ja
    • 한국균학회소식:학술대회논문집
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    • 한국균학회 2015년도 춘계학술대회 및 임시총회
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    • pp.28-28
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    • 2015
  • Clubroot disease caused by Plasmodiophora brassicae induces severe losses of cruciferous vegetables worldwide. To control clubroot of Chinese cabbage, many CR (clubroot resistance) F1 hybrid cultivars have been bred and released in Korea, China and Japan. In this study, we determined the race of P. brassicae 12 field isolates, which collected from 10 regions in Korea, using Williams' differential varieties including two cabbage ('Jersey Queen', 'Badger Shipper') and two rutabaga ('Laurentian', 'Whilhelmsburger'). By Williams' differential varieties, 12 clubroot pathogens were assigned into one (GN2), two (HS and YC), two (HN1 and HN2), three (DJ, KS and SS) and four (GS, GN1, JS and PC) isolates for races 1, 2, 4, 5 and 9, respectively. In addition, the degree of resistance of 45 CR cultivars that were from Korea, China and Japan was tested with the 12 isolates. The 45 CR cultivars of Chinese cabbage were differentiated into three genotypes according to their resistance responses. Even though the 12 P. brassicae isolates were same race by Williams' differential varieties, three CR genotypes showed different resistance response to the isolates. These results indicate that races of P. brassicae by Williams' differentials were not related with resistance of CR cultivars, and three CR genotypes represented qualitative resistance to the P. brassicae isolates. CR genotype I including 'CR-Cheongrok' showed resistance to GN1, GN2, JS, GS, HS, DJ and KS isolates and susceptibility to YC, PC, HN1, HN2 and SS isolates. And CR genotype II such as 'Hangkunjongbyungdaebaekchae' was resistant to GN1, GN2, JS, GS, HS, YC, PC and HN1 and susceptible to DJ, KS, SS and HN2. CR genotype III including 'Chunhajangkun' and 'Akimeki' represented resistance to 10 isolates except for SS and HN2 isolates. Based on these results, we selected 'CR-Cheongrok', 'Hangkunjongbyungdaebaekchae', and 'Chunhajangkun' as a representative cultivar of three CR genotypes and 'Norangkimjang' as a susceptible cultivar. Furthermore, we investigated the resistance of 15 lines of Chinese cabbage, which were provided by seed companies, to 11 isolates except for HN1 of P. brassicae. The results showed that three lines were susceptible to all the tested isolates, whereas five, four, and three lines represented the similar responses corresponding to the CR genotypes I, II, and III, respectively; there is no line of Chinese cabbage showing different resistance patterns compared to three CR genotypes. In particular, line 'SS001' showing resistance responses of CR genotype II was a parent of 'Saerona' that have been commercialized as a CR $F_1$ cultivar of Chinese cabbage. Together, we divided 12 isolates of P. brassicae into 4 races, designated by wild type, mutant type 1, mutant type 2, and mutant type 3. Wild type including GN1, GN2, JS, GS, and HS isolates of P. brassicae was not able to infect all the cultivars of three CR genotypes, whereas, mutant type 3 such as SS and HN2 isolates developed severe clubroot disease on all the CR genotype cultivars. To mutant type 1 including DJ and KS isolates, CR genotypes I, II and III were resistant, susceptible and resistant, respectively. In contrast, to mutant type 2 including YC, PS, and HN1 isolates, CR genotypes I, II and III showed susceptibility, resistance and resistance, respectively. Taken together, our results provide the extended knowledge of classification of P. brassicae races, which is useful information for the breeding of resistant crops, with a suggestion that 'Norangkimjang', 'CR-Cheongrok', 'Saerona' and 'Chunhajangkun' cultivars of Chinese cabbage could be used as new race differentials of P. brassicae for clubroot disease assay.

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하이브리드 콘크리트 보수재료로 보수된 흄관의 휨 거동 평가 (An Evaluation of Flexural Behavior of Fume Pipe Repaired by Hybrid Concrete Repair Materials)

  • 유성원;최영철
    • 한국구조물진단유지관리공학회 논문집
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    • 제23권6호
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    • pp.92-98
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    • 2019
  • 본 연구에서는 기존콘크리트와의 부착성능 및 수밀성을 향상하기 위해 기존의 현장에서 사용하는 초속경 시멘트에 PVA 분말수지, 나일론 섬유를 혼입한 보수재료를 개발하고 개발된 보수재료로 보수된 흄관의 보수 후 휨거동 평가를 수행하였다. 주요 실험변수는 PVA 분말수지, 나일론 섬유 혼입률 및 손상유형이며, 성능 실험으로는 압축강도와 보수재료 후 휨거동평가를 수행하였으며 개발된 보수재료는 PVA 분말수지 혼입량이 증가할수록 압축강도가 감소하는 경향이 나타났으며, 모든 배합에서 보수재료의 요구 성능을 충분히 만족하는 것으로 나타났다. 보수된 관 시험체들의 휨강도 실험결과, 나일론 섬유를 혼입하고 PVA분말을 적정량을 첨가하여야 보수재료의 성능이 최대가 되는 것으로 나타났다. 모든 시험체들의 휨거동은 다소 철근비가 작은 구조부재에서 나타나는 휨거동 양상을 보이는 것으로 나타나, 국내의 흄관에 배근되는 철선량이 다소 부족함을 추정할 수 있었다. 즉, 철선의 배근량이 다소 적어 콘크리트와 철선의 거동이 극한상태에 도달하기 전에 콘크리트에 균열이 발생되고 곧바로 콘크리트의 인장강도를 초과하여 파괴되는 것을 확인할 수 있었다.

Optical Diagnostics of Nanopowder Processed in Liquid Plasmas

  • Bratescu, M.A.;Saito, N.;Takai, O.
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제40회 동계학술대회 초록집
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    • pp.17-18
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    • 2011
  • Plasma in liquid phase has attracted great attention in the last few years by the wide domain of applications in material processing, decomposition of organic and inorganic chemical compounds and sterilization of water. The plasma in liquid is characterized by three main regions which interact each - other during the plasma operation: the liquid phase, which supply the plasma gas phase with various chemical compounds and ions, the plasma in the gas phase at atmospheric pressure and the interface between these two regions. The most complex region, but extremely interesting from the fundamental, chemical and physical processes which occur here, is the boundary between the liquid phase and the plasma gas phase. In our laboratory, plasma in liquid which behaves as a glow discharge type, is generated by using a bipolar pulsed power supply, with variable pulse width, in the range of 0.5~10 ${\mu}s$ and 10 to 30 kHz repetition rate. Plasma in water and other different solutions was characterized by electrical and optical measurements. Strong emissions of OH and H radicals dominate the optical spectra. Generally water with 500 ${\mu}S/cm$ conductivity has a breakdown voltage around 2 kV, depending on the pulse width and the repetition rate of the power supply. The characteristics of the plasma initiated in ultrapure water between pairs of different materials used for electrodes (W and Ta) were investigated by the time-resolved optical emission and the broad-band absorption spectroscopy. The deexcitation processes of the reactive species formed in the water plasma depend on the electrode material, but have been independent on the polarity of the applied voltage pulses. Recently, Coherent anti-Stokes Raman Spectroscopy method was employed to investigate the chemistry in the liquid phase and at the interface between the gas and the liquid phases of the solution plasma system. The use of the solution plasma allows rapid fabrication of the metal nanoparticles without being necessary the addition of different reducing agents, because plasma in the liquid phase provides a reaction field with a highly excited energy radicals. We successfully synthesized gold nanoparticles using a glow discharge in aqueous solution. Nanoparticles with an average size of less than 10 nm were obtained using chlorauric acid solutions as the metal source. Carbon/Pt hybrid nanostructures have been obtained by treating carbon balls, synthesized in a CVD chamber, with hexachloro- platinum acid in a solution plasma system. The solution plasma was successfully used to remove the template remained after the mesoporous silica synthesis. Surface functionalization of the carbon structures and the silica surface with different chemical groups and nanoparticles, was also performed by processing these materials in the liquid plasma.

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아르곤 레이저를 이용한 광중합 수복재의 물리적 성질에 관한 연구 (A STUDY ON THE PHYSICAL PROPERTIES OF RESTORATIVE MATERIALS FOR PHOTO-POLYMERIZATION OF ARGON LASER)

  • 주상호;최형준;김성오;이종갑
    • 대한소아치과학회지
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    • 제25권2호
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    • pp.368-382
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    • 1998
  • The purpose of this study is to evaluate and compare the results of argon laser for 5 seconds, argon laser for 10 seconds, and visible light for 40 seconds photo-polymerization in compressive strength, microhardness, curing depth, temperature rising during polymerization, and polymerization shrinkage. Hybrid type composite resin(Z-100) and compomer(Dyract) were used to be compared. The compressive strength was measured by an Instron(1mm/min cross head speed) in 60 specimens and the microhardness of the surface was expressed by Vickers Hardness Number(VHN) in 30 specimens. The curing depth was evaluated comparing the different values of upper and lower VHN according to irradiation time and thickness for the light source polymerization in 60 specimens. The temperature rising during photopolymerization was observed by the temperature change with thermocouple sensitizer beneath 40 specimens at the argon laser for 10 seconds and visible light 40 seconds irradiation. The polymerization shinkage was evaluated by calculating the decrease of % volume by using a dilatometer in 30 specimens. The results were as follows ; 1. In the case of compressive strength, the argon laser polymerization groups were higher than visible light group in Z-100 (p<0.05). In Dyract, the argon laser 5 seconds group did not show a significant difference with the visible light 40 seconds group. The argon laser 10 seconds group showed the markedly low value when compared with other groups (p<0.05) 2. In microhardness, Z-100 was better than Dyract when comparing by VHNs (p<0.05); however, there was not a significant difference between two materials in the visible light 40 seconds group and the argon laser 10 seconds group. 3. In the study of curing depth, Z-100 showed the consistent polymerization in argon laser irradiation because there was no difference in the VHN decrease according to the thickness change. Over the thickness control, the results did not show a significant difference between visible light and argon laser group in Z-100; however, in the case of Dyract, the visible light 40 seconds group was better than the argon laser groups(p<0.05). 4. There was a significant difference between the two materials in temperature rising during polymerization (p<0.05), but not a significant difference between irradiation times, 5. There was not a significant difference between the two materials in polymerization shrink age. The argon laser 5 seconds group was smaller than the other groups (p<0.05). It could be concluded that Z-100 polymerization was recommended to use the argon laser for reduction of the irradiation time while Dyract was recommended to use the visible light polymerization.

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개량 스킨팀버의 압축 강도에 관한 연구 (A study on the Compressive Strength of the Improved Skin-timber)

  • 김광철
    • Journal of the Korean Wood Science and Technology
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    • 제38권4호
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    • pp.282-291
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    • 2010
  • 기존의 중공재에 비해 다량의 목질부를 제거하여 천공한 스킨 팀버는 짧은 건조시간과 건조 결함 발생이 적은 점, 상당히 낮은 수준(MC 8~9%)까지 함수율을 떨어트릴 수 있다는 이점, 약제 주입처리의 용이함, 한옥을 포함한 중목구조의 대단면 경량 구조부재로서의 사용 가능성, 다양한 가구나 생활용품으로의 가능성 등 많은 장점을 가지고 있는 재료이다. 하지만 고부가가치 재료로 사용되기 위해서, 그리고 일반 소비자들에게 구조적 신뢰감을 제공하기 위해서는 스킨 팀버를 하이브리드 구조부재로 만들 필요가 있다. 따라서 본 연구에서는 가능한 얇은 철판을 사용하여 소나무와 낙엽송 개량 스킨 팀버를 제작하고 압축 성능을 분석하였다. 이에 따른 본 연구의 결론은 다음과 같다: 1. 소나무와 낙엽송 개량 스킨 팀버의 경우 무처리 스킨 팀버에 비해 재료 성능의 균일성을 가져올 수 있었다. 2. 소나무나 낙엽송 개량 스킨 팀버 모두 철판두께별 압축 성능의 유의차가 존재하지 않아 두꺼운 철판을 사용 할 필요성이 없다고 판단되었다. 소나무 개량 스킨 팀버와 낙엽송 개량 스킨 팀버간의 압축 성능 역시 유의차가 존재하지 않아 사용자의 기호에 따라 사용할 수 있을 것으로 판단되었다. 4. 소나무 개량 스킨 팀버의 경우 다양한 파괴 형태를 보였지만 낙엽송 스킨 팀버의 경우 전체적으로 splitting의 파괴 모드를 보이는 것이 특징이었다.

영상처리를 이용한 사이징 제거 상태 측정 알고리즘과 전자파 차폐 성능을 갖는 탄소 섬유 개발 (Measurement Algorithms of Sizing removed state using Image Process And Development of Carbon fibers with Electromagnetic shielding Performance)

  • 조준호;전관구
    • 한국산학기술학회논문지
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    • 제18권2호
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    • pp.95-101
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    • 2017
  • 본 논문에서는 복합재료로 만들기 위한 전처리 단계에서 수행한 사이징 제거 상태를 영상처리 알고리즘을 적용하여 수치적으로 나타내었고, 전자파 차폐 성능을 높이기 위해서 건식 공정 방식으로 니켈도금 탄소섬유를 제작하였다. 탄소섬유 제조에서 폴리머 종류로 감싸져 나온 사이징은 건식 코팅을 위해서는 제거해야 한다. 사이징이 제거된 상태를 주사 전자현미경(scanning electron microscope, SEM)으로 촬영한 이미지에서 탄소 섬유의 규칙적인 패턴, 즉 상관성을 구함으로써 수치적인 값으로 나타낼 수 있다. 사이징의 제거 방식은 용액, 압축 공기와 용액과 압축공기(하이브리드)로 제거한 SEM 영상에 대하여 제안된 방법을 적용한 결과 하이브리드 방식이 우수함을 확인 할 수 있었다. 그리고 사이징이 제거된 스프레딩 탄소 섬유 롤을 롤투롤 스퍼터 방식으로 니켈도금 탄소 섬유를 제작할 수 있었다. 제작된 30um, 40um과 100um 니켈코팅 탄소섬유에 대해서 전자파 차폐 성능을 측정하였다. 한국산업기술시험원에서 100um 니켈코팅 탄소섬유의 전자파 차폐 성능을 평가한 결과 최저 66.7(dB)에서 최고 73.2(dB)의 전자파 차폐 성능을 보였다. 이것은 구리의 전자파 차폐율과 유사하여 EV/HEV자동차의 케이블로 사용될 수 있다.

Structural Behavior of Mixed $LiMn_2O_4-LiNi_{1/3}Co_{1/3}Mn_{1/3}O_2$ Cathode in Li-ion Cells during Electrochemical Cycling

  • 윤원섭;이상우
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2011년도 춘계학술발표대회
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    • pp.5-5
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    • 2011
  • The research and development of hybrid electric vehicle (HEV), plug-in hybrid electric vehicle (PHEV) and electric vehicle (EV) are intensified due to the energy crisis and environmental concerns. In order to meet the challenging requirements of powering HEV, PHEV and EV, the current lithium battery technology needs to be significantly improved in terms of the cost, safety, power and energy density, as well as the calendar and cycle life. One new technology being developed is the utilization of composite cathode by mixing two different types of insertion compounds [e.g., spinel $LiMn_2O_4$ and layered $LiMO_2$ (M=Ni, Co, and Mn)]. Recently, some studies on mixing two different types of cathode materials to make a composite cathode have been reported, which were aimed at reducing cost and improving self-discharge. Numata et al. reported that when stored in a sealed can together with electrolyte at $80^{\circ}C$ for 10 days, the concentrations of both HF and $Mn^{2+}$ were lower in the can containing $LiMn_2O_4$ blended with $LiNi_{0.8}Co_{0.2}O_2$ than that containing $LiMn_2O_4$ only. That reports clearly showed that this blending technique can prevent the decline in capacity caused by cycling or storage at elevated temperatures. However, not much work has been reported on the charge-discharge characteristics and related structural phase transitions for these composite cathodes. In this presentation, we will report our in situ x-ray diffraction studies on this mixed composite cathode material during charge-discharge cycling. The mixed cathodes were incorporated into in situ XRD cells with a Li foil anode, a Celgard separator, and a 1M $LiPF_6$ electrolyte in a 1 : 1 EC : DMC solvent (LP 30 from EM Industries, Inc.). For in situ XRD cell, Mylar windows were used as has been described in detail elsewhere. All of these in situ XRD spectra were collected on beam line X18A at National Synchrotron Light Source (NSLS) at Brookhaven National Laboratory using two different detectors. One is a conventional scintillation detector with data collection at 0.02 degree in two theta angle for each step. The other is a wide angle position sensitive detector (PSD). The wavelengths used were 1.1950 ${\AA}$ for the scintillation detector and 0.9999 A for the PSD. The newly installed PSD at beam line X18A of NSLS can collect XRD patterns as short as a few minutes covering $90^{\circ}$ of two theta angles simultaneously with good signal to noise ratio. It significantly reduced the data collection time for each scan, giving us a great advantage in studying the phase transition in real time. The two theta angles of all the XRD spectra presented in this paper have been recalculated and converted to corresponding angles for ${\lambda}=1.54\;{\AA}$, which is the wavelength of conventional x-ray tube source with Cu-$k{\alpha}$ radiation, for easy comparison with data in other literatures. The structural changes of the composite cathode made by mixing spinel $LiMn_2O_4$ and layered $Li-Ni_{1/3}Co_{1/3}Mn_{1/3}O_2$ in 1 : 1 wt% in both Li-half and Li-ion cells during charge/discharge are studied by in situ XRD. During the first charge up to ~5.2 V vs. $Li/Li^+$, the in situ XRD spectra for the composite cathode in the Li-half cell track the structural changes of each component. At the early stage of charge, the lithium extraction takes place in the $LiNi_{1/3}Co_{1/3}Mn_{1/3}O_2$ component only. When the cell voltage reaches at ~4.0 V vs. $Li/Li^+$, lithium extraction from the spinel $LiMn_2O_4$ component starts and becomes the major contributor for the cell capacity due to the higher rate capability of $LiMn_2O_4$. When the voltage passed 4.3 V, the major structural changes are from the $LiNi_{1/3}Co_{1/3}Mn_{1/3}O_2$ component, while the $LiMn_2O_4$ component is almost unchanged. In the Li-ion cell using a MCMB anode and a composite cathode cycled between 2.5 V and 4.2 V, the structural changes are dominated by the spinel $LiMn_2O_4$ component, with much less changes in the layered $LiNi_{1/3}Co_{1/3}Mn_{1/3}O_2$ component, comparing with the Li-half cell results. These results give us valuable information about the structural changes relating to the contributions of each individual component to the cell capacity at certain charge/discharge state, which are helpful in designing and optimizing the composite cathode using spinel- and layered-type materials for Li-ion battery research. More detailed discussion will be presented at the meeting.

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