• Title/Summary/Keyword: PMMA(Polymethyl methacrylate)

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콜로이드 ZnO 양자점을 포함한 Polymethyl methacrylate층을 저장 영역으로 사용한 유기 쌍안정성 소자의 기억 메커니즘

  • Sim, Jae-Ho;Son, Dong-Ik;Jeong, Jae-Hun;Kim, Tae-Hwan
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.02a
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    • pp.185-185
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    • 2010
  • 유기물과 무기물이 혼합된 나노 복합재료는 저전력 동작을 요구하는 휘어짐이 가능한 차세대 전자소자 응용에 대단히 유용한 소재이다. 간단하고 저렴한 제조 공정과 휘어짐이 가능한 유기물과 무기물이 혼합된 나노 복합재료를 사용한 비휘발성 메모리 소자의 제작과 전기적 특성은 연구되었다. 최근에 간단한 방법으로 고집적화된 휘어짐이 가능한 유기 쌍안정성 소자의 제작에 대한 연구가 진행되고 있다. 그러나 유기 쌍안정 소자의 기억 메커니즘에 대한 연구는 비교적 적게 연구되었다. 유기 쌍안정성 소자의 기억 메커니즘에 대한 연구는 효율과 신뢰성을 증진하기 위하여 대단히 중요하다. 본 연구에서는 polymethyl methacrylate (PMMA) 층에 콜로이드 ZnO 양자점을 혼합하여 제작한 유기 쌍안정성 소자의 전기적 성질과 기억 메커니즘에 대한 것을 연구하였다. 본 연구에 사용된 콜로이드 ZnO 양자점은 dimethylformamide를 사용한 환원법을 이용하여 제작하였다. 소자를 제작하기 위하여 PMMA에 대한 콜로이드 ZnO 양자점의 조성비가 1.5 wt% 가 되도록 dimethylformamide에 녹여 혼합한 용액을 하부 전극인 ITO가 증착된 유리기판위에 스핀코팅 방법을 이용하여 박막을 형성하였다. 콜로이드 ZnO 양자점을 포함한 PMMA 박막위에 상부전극으로 Al을 증착하였다. 복합 소재에 대한 투과 전자 현미경 상은 콜로이드 ZnO 양자점이 PMMA 층 안에 형성되어 있음을 보여주었다. 측정된 전류-전압(I-V) 특성은 쌍안정성 특성을 나타내었으며 이 결과는 콜로이드 ZnO 양자점에서 전하 포획, 저장과 방출 과정에 의한 것이다. 콜로이드 ZnO 양자점을 포함한 PMMA 박막을 저장 영역으로 사용한 유기 쌍안정성 소자의 I-V 측정결과를 바탕으로 전하 수송 모델과 전자적 구조를 사용하여 기억 메커니즘을 논하였다.

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Optimum Reaction Kinetics Model of Heat-resistant and Flame-Retardant Polymethyl Methacrylate (내열 및 난연성 Polymethyl Methacrylate의 최적 반응속도 모델에 관한 연구)

  • Kim, Dong-Keun;Seul, Soo-Duk;Sohn, Jin-Eon
    • Elastomers and Composites
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    • v.22 no.4
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    • pp.324-332
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    • 1987
  • The thermal degradation of the homopolymer poly(methyl methacrylate) (PMMA) and flame-retardant tetrabrormobisphenol-A(TBBA) as well as of their blends were carried out using the thermogravimetric method in the stream of nitrogen gas with 60ml/min at various heating rate from 1 to $20^{\circ}C/min$. Friedman and Ozawa mathematical methods were used to obtain the value of activation energy.

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Development of electro-spray micro-thruster and measurement of nano-scale thrust (Electro-spray 마이크로 추진 장치 개발 및 나노 크기의 힘 측정)

  • Lee Young-Jong;Si Bui Quang Tran;Byun Do-Young
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2007.04a
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    • pp.45-48
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    • 2007
  • Conventional force sensors such as piezoelectric sensor has limitations for measuring micro/nano-scale thrust. In this study we developed nano-scale measurement system using laser displacement sensor and cantilever. And electrospray microthruster was fabricated by using stainless capillary and extraction electrode, to generate nano-scale thrust. The measurement system can measure the around 90 nN thrust from this thruster. In addition, we designed and fabricated electrospray micro thruster based on PMMA(Polymethyl methacrylate), which has a nozzle protruded from the substrate.

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Evaluation of physical properties of polycarbonate temporary restoration materials (폴리카보네이트 임시수복재료의 물성 평가)

  • Kim, Gwang-Yun;Kwak, Young-Hun;Kim, Hee-Jung
    • Journal of Dental Rehabilitation and Applied Science
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    • v.36 no.3
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    • pp.168-175
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    • 2020
  • Purpose: The purpose is to test and evaluate the physical properties of commonly used temporary restoration materials and newly emerged materials. Materials and Methods: Four groups of polymer materials were evaluated: Polymethyl methacrylate (PMMA) 2 groups, Polyetheretherketone (PEEK), Polycarbonate. Four physical properties were tested: surface hardness, bending strength, abrasion resistance during wear, wear behavior. The 3-axis bending strength and Vickers hardness test were measured using a universal testing machines respectively. The microstructure was observed with a scanning electron microscope and weight comparison was evaluated after 100,000 chewing tests using a chewing simulator. Kruskal wallis test was performed to evaluate statistical significance. Results: The four groups showed the highest flexural strength and Vickers hardness of PEEK, followed by PC, PMMA-H, PMMA-T. Microstructure observation also showed the least surface roughness in the PEEK group, followed by PC, PMMA-H, PMMA-T. Conclusion: PC is considered to have sufficient mechanical properties that can be applied to the manufacture of temporary teeth. However, further studies, such as biocompatibility, are considered to be necessary for practical clinical applications.

Customized Cranioplasty Implants Using Three-Dimensional Printers and Polymethyl-Methacrylate Casting

  • Kim, Bum-Joon;Hong, Ki-Sun;Park, Kyung-Jae;Park, Dong-Hyuk;Chung, Yong-Gu;Kang, Shin-Hyuk
    • Journal of Korean Neurosurgical Society
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    • v.52 no.6
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    • pp.541-546
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    • 2012
  • Objective : The prefabrication of customized cranioplastic implants has been introduced to overcome the difficulties of intra-operative implant molding. The authors present a new technique, which consists of the prefabrication of implant molds using three-dimensional (3D) printers and polymethyl-methacrylate (PMMA) casting. Methods : A total of 16 patients with large skull defects (>100 $cm^2$) underwent cranioplasty between November 2009 and April 2011. For unilateral cranial defects, 3D images of the skull were obtained from preoperative axial 1-mm spiral computed tomography (CT) scans. The image of the implant was generated by a digital subtraction mirror-imaging process using the normal side of the cranium as a model. For bilateral cranial defects, precraniectomy routine spiral CT scan data were merged with postcraniectomy 3D CT images following a smoothing process. Prefabrication of the mold was performed by the 3D printer. Intraoperatively, the PMMA implant was created with the prefabricated mold, and fit into the cranial defect. Results : The median operation time was $184.36{\pm}26.07$ minutes. Postoperative CT scans showed excellent restoration of the symmetrical contours and curvature of the cranium in all cases. The median follow-up period was 23 months (range, 14-28 months). Postoperative infection was developed in one case (6.2%) who had an open wound defect previously. Conclusion : Customized cranioplasty PMMA implants using 3D printer may be a useful technique for the reconstruction of various cranial defects.

Irreversible Charge Trapping at the Semiconductor/Polymer Interface of Organic Field-Effect Transistors (유기전계효과 트랜지스터의 반도체/고분자절연체 계면에 발생하는 비가역적 전하트래핑에 관한 연구)

  • Im, Jaemin;Choi, Hyun Ho
    • Journal of Adhesion and Interface
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    • v.21 no.4
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    • pp.129-134
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    • 2020
  • Understanding charge trapping at the interface between conjugated semiconductor and polymer dielectric basically gives insight into the development of long-term stable organic field-effect transistors (OFET). Here, the charge transport properties of OFETs using polymer dielectric with various molecular weights (MWs) have been investigated. The conjugated semiconductor, pentacene exhibited morphology and crystallinity, insensitive to MWs of polymethyl methacrylate (PMMA) dielectric. Consequently, transfer curves and field-effect mobilities of as-prepared devices are independent of MWs. Under bias stress in humid environment, however, the drain current decay as well as transfer curve shift are found to increase as the MW of PMMA decreases (MW effect). The charge trapping induced by MW effect is irreversible, that is, the localized charges are difficult to be delocalized. The MW effect is caused by the variation in the density of polymer chain ends in the PMMA: the free volumes at the PMMA chain ends act as charge trap sites, corresponding to drain current decay depending on MWs of PMMA.

STUDY OF POLYMETHYL METHACRYLATE BONE CEMENT CONTAINING BOVINE-DERIVED DEFATTING DEMINERALIZED BONE POWDER (탈지방탈회우골분말과 Polymethyl Methacrylate(PMMA) Bone Cement 혼합제에 관한 연구)

  • Kim, Woon-Kyu;Kim, Su-Gwan;Cho, Se-In;Ko, Young-Moo;Yoon, Jung-Hoon;Ahn, Jong-Mo
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • v.27 no.6
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    • pp.491-497
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    • 2001
  • Polymethylmethacrylate(PMMA) is currently commonly used material for the reconstruction of bone defects and fixation of joint prosthetics following congenital and acquired causes. Although PMMA has widespread use, it does not possess the ideal mechanical characteristics with osteoconductivity and osteoinductivity required. In order to overcome these problem, addition of bovine bone drived defatting demineralized bone(BDB) powders to a PMMA bone cement was done for improvement of physical property and bone forming characteristics of composite. In order to investigate the influence of BDB reinforcement on the PMMA, we measured physical property of compressive, tensile, flexural strength, and scanning electron microscopic examinations. The results were obtained as follows: 1. The PMMA forms a solid cellular matrix with open cells about $100{\mu}m$ in variable size and incorporating BDB. BDB aggregates inside the cells form a porous network that is accessible from the outer surface. 2. The physical properties were compressive strength of mean $22.74{\pm}1.69MPa$, tensile strength of mean $22.74{\pm}1.69MPa$, flexural strength of mean $77.53{\pm}6.93MPa$. Scanning electron microscopic examinations were revealed that there was DBD particles form a highly porous agglomerates. BDB can be added PMMA in the form of dried powders, the composites are applicable as bone substitutes. BDB and PMMA mixture is shown to produce a class of composites that due to their microstructure and improved mechanical properties may be suitable for application as bone subsitutes. The mechanical and material properties of the BDB-PMMA bone substitute composites are competitive with those properties of a porous ceramic matrix of other hydroxyapatite and with those of natural bones.

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Mechanical properties by resin injection method of orthdontic acrylic resin (교정용 레진장치의 레진주입방법에 따른 기계적 특성)

  • Jo, Jeong-Ki
    • Journal of Digital Convergence
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    • v.18 no.4
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    • pp.341-346
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    • 2020
  • Polymethyl methacrylate (PMMA), a self-curing resin mainly used in removable orthodontic appliances, is an acrylic resin mainly used in the field of modern dentistry. As an advantage, it has been used for a long time as a material for orthodontic devices in dentistry due to its color and volume, tissue affinity, and stability. The production of PMMA can be divided into self-polymerization method and thermal polymerization method according to activation method. Self-curing resins have long been used as orthodontic devices. The resin injection method is largely divided into a sprinkle-on method and a mixing method. In this study, we intend to test the mechanical properties according to the resin injection method of the orthodontic device, such as strength, modulus of elasticity, and surface roughness. There was no significant difference in strength as a result of three-point bending strength test on rectangular specimens (1.4 × 3.0 × 19.0 mm) of orthodontic PMMA. There was also no significant difference in hardness. There was no significant difference in surface roughness. It was confirmed that the orthodontic PMMA had no significant difference in mechanical properties according to the resin injection method of the orthodontic device.

Polymer Replication Using Ultrasonic Vibration (초음파진동에너지를 이용한 고분자 마이크로구조물의 성형)

  • Yu, Hyun-Woo;Lee, Chi-Hoon;Ko, Jong-Soo;Shin, Bo-Sung;Rho, Chi-Hyun
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.32 no.5
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    • pp.419-423
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    • 2008
  • A new polymer replication technology using ultrasonic vibration is proposed and demonstrated. A commercial ultrasonic welder has been used in this experiment. Two different types of nickel molds have been fabricated: pillar type and pore type microstructures. Polymethyl methacrlylate (PMMA) has been used as the replication material and the optimal molding time was 2 sec and 2.5 sec for pillar-type and pore-type micromolds, respectively. Compared with the conventional polymer micromolding techniques, the proposed ultrasonic micromolding technique has the shortest processing time. In addition, only contact area between micromold and polymer substrate is melted so that the thermal shrinkage can be minimized. The fabricated PMMA microstructures have been very accurately replicated without vacuum. The proposed ultrasonic molding technique is a good alternative for high volume production.

Preparation of poly(methyl methacrylate)/clay nanocomposites by microwaveassisted in-situ radical polymerization

  • Jeong, Ji-Won;Kim, Dong-Hyun;Jang, Jae-Ho;Lee, Jung-Taek;Yoo, Kyung-Hyeon;Yoon, Seog-Young
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.29 no.1
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    • pp.19-23
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    • 2019
  • The PMMA (polymethyl methacrylate)/clay nanocomposites were synthesized by in situ radical polymerizations with different clay contents (3 and 7 wt%) using microwave heating. The nanostructure, optical, and thermal properties of the synthesized PMMA/clay nanocomposites were measured by XRD, TEM, AFM, UV-vis, and TGA. It was found that the intercalated- or exfoliated structure of PMMA/clay nanocomposites was strongly dependent on the content of clay. Thus, the imposition of microwave-assisted polymerization facilitated a delamination process of layered silicates to achieve exfoliation state of interlayer distance. The PMMA/3 wt% C10A nanocomposite with well-dispersed and exfoliated clay nano-layers showed the good optical transparency similar to pure PMMA in this study. The thermal decomposition rates of the PMMA/clay nanocomposites become to be lower compared to that of the pure PMMA, indicating the intercalated- or exfoliated inorganic silicate has high thermal stability. A possible reason is that the thermally segmental motion of PMMA polymer into inorganic silicate interlayer spacing has increased the thermal stability of the PMMA/clay nanocomposites.