• 제목/요약/키워드: MC Nylon

검색결과 18건 처리시간 0.028초

골반교정 및 자세균형능력 증진을 위한 균형의자 개발 (Development of the Balance Chair for Improving Postural Control Ability & Pelvic Correction)

  • 오승용;신선혜;강승록;홍철운;권대규
    • 재활복지공학회논문지
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    • 제11권3호
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    • pp.271-277
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    • 2017
  • 본 연구에서는 사용자의 자세에 따라 실시간으로 제공되는 진동모터에 의해서 촉각 피드백이 구현되는 골반교정 및 자세균형능력 증진을 위한 균형의자(balance chair)를 개발하고 그 유효성을 평가하고자 하였다. 이를 위해 MC Nylon을 이용하여 몸체을 제작하고 사용자 인터페이스를 위한 터치 TFT와 아두이노를 사용한 주 제어모듈, 사용자 자세판별을 위한 9축 가속센서, 촉각피드백을 위한 진동모듈을 내장하고 사용자의 편안한 착석감을 위한 쿠션으로 외부를 둘러싼 균형의자 시제품을 제작하였다. 제작된 시제품을 이용한 자세균형 훈련시스템의 유효성을 확인하기 위해 여성 피험자 10명을 대상으로 척추움직임의 주요근육인 좌우 요장늑근에 대한 근활성도(%MVIC)를 측정하였고 자세균형능력 평가장비인 Spine Balance 3D를 이용하여 훈련 전후의 균형능력을 측정하였다. 균형의자를 통한 운동 및 자세균형 유지 시 진동을 통한 피드백 방법에 의해 사용자의 좌우 요장늑근이 균형적으로 활성화되고 또한 이를 통한 훈련 전후 균형능력이 증진되는 결과를 얻었다. 향후 본 연구는 다양한 자세균형 제품 개발에 기초 연구로 활용 가능하다고 사료된다.

플라스틱칩 결체(結締) 톱밥보드의 기계적(機械的) 및 물리적(物理的) 성질(性質)에 관(關)한 연구(硏究) (A Study on the Mechanical and Physical Properties of Sawdustboard combined with Plastic Chip)

  • 이필우;서진석
    • Journal of the Korean Wood Science and Technology
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    • 제15권3호
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    • pp.44-55
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    • 1987
  • In order to study the effect of sawdustboard combined with plastic chips, 0.5mm($T_1$), 1mm($T_2$), 1.4mm($T_3$) thick nylon fiber. polypropylene rope fiber(RP), and 0.23mm thick moth-proof polypropylene net fiber(NP) were cut into 0.5, 1, 2cm long plastic chips. Thereafter, sawdustboard combined with plastic chips prepared as the above and plastic non-combined sawdustboard(control) were manufactured into 3 types of one-, two-, and three layer with 5 or 10% combination level. By the discussions and results at this study, the significant conclusions of mechanical and physical properties were summarized as follows: 1. The MORs were shown in the order of 3 layer> 2 layer> 1 layer among plastic non-combined boards, and $T_3$ < $T_2$ < $T_1$ < RP (NP(5%) < NP(l0%) among plastic combined boards. In 2cm long plastic chip in 1 layer board, the highest strength through all the composition was recognized. 1 layer board showing the lower strength with 0.5cm plastic chip rendered to the bending strength improvement by 2 or 3 layer board composition. On the other hand, 2 or 3 layer combined with 1, 2cm long polypropylene net fiber chips incurred MOR's conspicuous decrease requiring optimum plastic chip combined level and consideration to combined type. 2. MOE in plastic non-combined 3 layer board exhibited sandwich construction effect by higher resin content application to surface layer in the order of 3layer>1layer>2layer with the highest stiffness of the board combined with polypropylene chip, while nylon chip-combined board had little difference from plastic non-combined board. In relevant to length and layer effect, 3 layer board combined with the 0.5cm long polypropylene net fiber chip in 5% and 10% combined level presented 34-43% and 44-76% stiffness increase against plastic non-combined board(control), respectively. Moreover, in 1 layer board, 30% stiffness increase with 10% against 5% combined level in the 1 and 2cm long polypropylene net fiber chip was obtained. 3. Stress at proportional limit(Spl) showing the fiber relationship (r: 0.81-0.97) between MOR presented in the order of 1 layer<2 layer<3 layer in plastic non-combined board. Correspondingly, combined effect by layer and plastic chip length was similar to MOR's. 4. Differently from previous properties(MOR, MOE, Spl). work to maximum load(Wml) of 2 layer board approached to that of 3 layer board. Conforming the above phenomenon. 2 layer combined with 0.5cm long polypropylene net fiber chip kept the greater work than 1 layer. The polypropylene combined board superior to nylon -and plastic non - combined board seemed to have greater anti - failing capacity. 5. Internal bond strength(IB), in contrast to MOR's tendency. showed in the order of T1

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고압 펄스 성형라인 충전을 위한 공심형 고압 펄스트랜스의 제작과 동작 특성 (Fabrication and Operation Testing of an Air-cored Pulse Transformer for Charging a High Voltage Pulse Forming Line)

  • 진윤식;김영배;김종수;류홍제;조주현;임근희;임수원
    • 전기학회논문지
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    • 제59권5호
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    • pp.939-944
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    • 2010
  • A high voltage air-cored helical strip/wire type pulse transformer has been fabricated for charging of a high voltage pulse forming line. As a primary coil, copper strip of 25mm width was wound helically around a MC nylon cylinder. For a secondary coil, copper enameled wire of 1mm diameter was wound around conical cylinder in order to provide insulation between two windings. The coupling coefficient of 0.53 was obtained when two coils were combined coaxially in the insulation oil filled chamber. Voltage gain and energy transfer efficiency were investigated by varying the parameters of primary and secondary circuit. Test results shows that the voltage gain increases up to 17 with increasing the primary capacitance up to 200nF. And highest energy transfer efficiency of 44% was obtained when the dual resonant operation condition was nearly satisfied. The pulse transformer developed in this study can be used for charging the middle conductor of a Blumlein pulse forming line.

Simulations of fiber spinning and film blowing based on a molecular/continuum model for flow-induced crystallization

  • McHugh, Anthony J.;Doufas, A.K.
    • Korea-Australia Rheology Journal
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    • 제13권1호
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    • pp.1-12
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    • 2001
  • This paper describes the application of our recently developed two-phase model for flow-induced crystallization (FIC) to the simulation of fiber spinning and film blowing. 1-D and 2-D simulations of fiber spinning include the combined effects of (FIC), viscoelasticity, filament cooling, air drag, inertia, surface tension and gravity and the process dynamics are modeled from the spinneret to the take-up roll device (below the freeze point). 1-D model fits and predictions are in very good quantitative agreement with high- and low-speed spinline data for both nylon and PET systems. Necking and the associated extensional softening are also predicted. Consistent with experimental observations, the 2-D model also predicts a skin-core structure at low and intermediate spin speeds, with the stress, chain extension and crystallinity being highest at the surface. Film blowing is simulated using a "quasi-cylindrical" approximation for the momentum equations, and simulations include the combined effects of flow-induced crystallization, viscoelasticity, and bubble cooling. The effects of inflation pressure, melt extrusion temperature and take-up ratio on the bubble shape are predicted to be in agreement with experimental observations, and the location of the frost line is predicted naturally as a consequence of flow-induced crystallization. An important feature of our FIC model is the ability to predict stresses at the freeze point in fiber spinning and the frost line in film blowing, both of which are related to the physical and mechanical properties of the final product.l product.

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Neuroprotective Effects of KC0244, a Glycine Site Antagonist, in a Rat Model of Transient Focal Ischemia

  • Ku, Hee-Jung;Churlmin Seong;Park, No-Sang;Changbae Jin
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 1998년도 Proceedings of UNESCO-internetwork Cooperative Regional Seminar and Workshop on Bioassay Guided Isolation of Bioactive Substances from Natural Products and Microbial Products
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    • pp.143-143
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    • 1998
  • Antagonists acting at the glycine site of the NMDA receptor have been gaining safer alternatives for stroke therapy because they have few adverse effect competitive and noncompetitive NMDA antagonists. Therefore, the neuroprotect novel glycine site antagonist KC0244 were evaluated in a rat model of transient comparison with GV150526A in a developmental phase. Middle cerebral artery oc was produced by insertion of a silicone-coated 4-0 nylon monofilament to the o in male Sprague-Dawley rats under isoflurane anesthesia. After 90 or 120 min retracted and the ischemic tissue reperfused. In 90-min MCAO model, GV150526A was administered 30 min before MCAO or immediately after MCAO. In 120-min MC KC0244 or GV150526A (10 mg/kg, i.p.) was administered 1 hr before MCAO or imme MCAO. Infarct volume was measured 24 hr after MCAO using the 2,3,5-triphe chloride staining method. In 90-min MCAO model, treatments with GV1505 significantly reduce infarct volume although they tended to slightly reduce cor approximately 19% compared with the nontreated group. In 120-min MCAO model with GV150526A did not either significantly reduce infarct volume although the reduce total infarct volume by approximately 16% compared with the vehicle-tre However, 1-hr preischemic and immediate treatments with KC0244 reduced total i 39 and 30% (corrected total infarct volume by 44 and 32%), respectively, co vehicle-treated control group. The results suggest that KC0244 can provid against transient focal ischemic damage with greater in vivo potency than GV150

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원위치 동적강성 분석기의 개발 및 성능평가 (Development and Performance Evaluation of In-situ Dynamic Stiffness Analyzer)

  • 김동주;변용훈
    • 한국농공학회논문집
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    • 제61권2호
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    • pp.41-50
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    • 2019
  • Stiffness characteristic of subgrade is one of the most important aspects for the design and evaluation of pavement and railway. However, adequate field testing methods for evaluating the stiffness characteristics of the subgrade have not been developed yet. In this study, an in-situ dynamic stiffness analyzer (IDSA) is developed to evaluate the characteristics of subgrade stiffness along the depth, and its performance is evaluated in elastic materials and a compacted soil. The IDSA consists of a falling hammer system, a connecting rod, and a tip module. Four strain gauges and an accelerometer are installed at the tip of the rod to analyze the dynamic response of the tip generated by the drop of hammer. Based on the Boussinesq's method, the stiffness and Young's modulus of the specimens can be calculated. The performance of IDSA was tested on three elastic materials with different hardness and a compacted soil. For the repeatability of test performance, the dynamic signals for force and displacement of the tip are averaged from the hammer impact tests performed five times at the same drop height. The experimental results show that the peak force, peak displacement, and the duration depend on the hardness of the elastic materials. After calculating the stiffness and elastic modulus, it is revealed that as the drop height of hammer increases, the stiffness and elastic moduli of MC nylon and the compacted soil rapidly increase, while those of urethanes less increase.

Influence of Temperature and pH on Fermentation Pattern and Methane Production in the Rumen Simulating Fermenter (RUSITEC)

  • Bhatta, R.;Tajima, K.;Kurihara, M.
    • Asian-Australasian Journal of Animal Sciences
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    • 제19권3호
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    • pp.376-380
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    • 2006
  • An experiment was conducted to study the effect of temperature and pH on in vitro nutrient degradability, volatile fatty acid profile and methane production. The fermenter used was the semi-continuous system, known as the rumen simulation technique (RUSITEC). Sixteen cylinders were used at one time with a volume of 800 ml, the dilution rate was set at 3.5%/hour, the infused buffer being McDougall's artificial saliva. Basal diet (9.6 g DM) used in RUSITEC consisted of (DM) 6.40 g Timothy hay, 1.86 g crushed corn and 1.34 g soybean meal. The food for the fermentation vessel was provided in nylon bags, which were gently agitated in the liquid phase. The experiment lasted for 17 d with all the samples taken during the last 5 d. Treatments were allocated at random to four vessels each and were (1) two temperature levels of $39^{\circ}C$ and $41^{\circ}C$ (2) two pH levels of 6.0 and 7.0. The total diet contained ($g\;kg^{-1}$ DM) 957 OM, 115 CP and $167MJ\;kg^{-1}$ (DM) GE. Although increase in temperature from $39^{\circ}C$ to $41^{\circ}C$ reduced degradation of major nutrients in vitro, it was non-significant. Interaction effect of temperature with pH also reflected a similar trend. However, pH showed a significant (p<0.05) negative effect on the degradability of all the nutrients in vitro. Altering the in vitro pH from 7 to 6 caused marked reduction in DMD from 60.2 to 41.8, CPD from 76.3 to 55.3 and GED from 55.3 to 35.1, respectively. Low pH (6) depressed total VFA production (61.9 vs. 34.9 mM) as well as acetate to propionate ratio in vitro (from 2.0 to 1.5) when compared to pH 7. Compared to pH 7, total gas production decreased from 1,841 ml to 1,148 ml at pH 6, $CO_2$ and $CH_4$ production also reduced from 639 to 260 ml and 138 to 45 ml, respectively. This study supported the premise that pH is one of the principal factors affecting the microbial production of volatile fatty acids and gas. Regulating the ruminal pH to increase bacterial activity may be one of the methods to optimize VFA production, reduce methane and, possibly, improve animal performance.

매설관 주변부 누수 탐지를 위한 매설형 TDR 모듈 개발 (Development of Buried Type TDR Module for Leak Detection from Buried Pipe)

  • 홍원택
    • 한국지반환경공학회 논문집
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    • 제22권11호
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    • pp.31-37
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    • 2021
  • 매설관으로부터의 누수에 의한 지반 내 공동 및 이완구간 형성에 따른 사고를 사전에 방지하기 위하여 매설관의 파손 및 누수와 동반한 지반 내 함수상태 변화의 평가가 요구된다. 흙의 함수상태 평가를 위한 기법으로써 시계열반사계(TDR)의 적용이 고려될 수 있으나 표준 TDR 프로브의 경우 세장비가 매우 큰 전극을 이용하므로 지반 내 설치 시 전극의 변형 및 파손이 발생할 수 있다. 본 연구에서는 지반 내에서 안정적으로 형태를 유지하며 함수상태를 평가할 수 있는 매립형 TDR 모듈을 개발하였다. 매립형 TDR 모듈은 동축케이블의 내부도체 및 외부도체에 연결되는 세 개의 전극과 지반 내에서 전극의 변형방지 및 평행배열 유지를 위한 MC Nylon 재질의 케이싱으로 구성된다. 매립형 TDR 모듈로부터 획득된 유도전자기파의 신뢰도 검증을 위하여 표준 TDR 프로브로부터 획득한 유도전자기파와 상호비교 하였으며 보정실험을 통하여 체적함수비와 유도전자기파의 전파시간 상관관계가 수립되었다. 매립형 TDR 모듈의 현장적용 적정성을 평가하기 위하여 실내 모형실험이 수행되었으며, 모형 매설관으로부터의 누수에 따른 흙 시료의 체적함수비 변화가 명확히 관찰되었다. 그러므로 본 연구에서 개발된 매립형 TDR 모듈은 도심지 포장 하부에 설치된 매설관의 건전도 평가 및 매설관 주변부 지반의 함수상태 평가에 효과적으로 이용될 수 있을 것이라 판단된다.