• 제목/요약/키워드: Asymmetry loading

검색결과 14건 처리시간 0.027초

Poisson's ratios of fabric materials in use for large-span membrane structures

  • Jianhui Hu;Wujun Chen;Chengjun Gao;Yibei Zhang;Yonglin Chen;Pujin Wang
    • Structural Engineering and Mechanics
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    • 제90권6호
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    • pp.543-549
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    • 2024
  • The utilization of the fabric materials for lightweight building structures has attracted considerable attention due to the multiple functions and high strength-to-weight ratio. The mechanical properties of the fabric materials evolve with the loading cycle, especially for the Poisson's ratio that requires the full cyclic strain to determine the accurate values. The digital image correlation method has been justified but needs to meet the flexibility and complexity requirements of the fabric materials. This paper thus proposes a modified digital image correlation method to quantify the Poisson's ratio of fabric materials. To obtain the accurate Poisson's ratio of fabric materials in the cyclic experiments using non-contact measuring method, a speckle generation of the digital image correlation method is implemented to obtain the strain distribution and strain characteristics. The uniaxial cyclic experiments for the fabric materials are carried out in the warp, weft and 45° directions. The digital image correlation photos are taken when the material properties become stable in the cyclic loading. The results show that the strain distributions are non-uniform and dependent on the specimen directions. The reliable Poisson's ratios of the fabric materials in the warp, weft and 45° directions are 0.016, 1.2 and 2.6. The strain asymmetry at the maximum strain position is related with the weaving architecture. These observations and results are indispensable to understand the Poisson's ratios of fabric materials and to guide the proper analysis of the large-span membrane structures.

세라밴드를 이용한 근육강화운동이 뇌졸중 환자의 하지기능에 미치는 효과 (Effects of Muscle Strengthening Exercises Using a Thera Band on Lower Limb Function of Hemiplegic Stroke Patients)

  • 한상숙;허정자;김연정
    • 대한간호학회지
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    • 제37권6호
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    • pp.844-854
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    • 2007
  • Purpose: This study was to verify the effect of muscle strengthening exercises using a Thera-Band on the lower limbs. Methods: The design utilized for this study was a nonequivalent control group pretest-posttest design. A control group (16) and experimental group (16) were selected from stroke patients of K Oriental Medicine Hospital who were hospitalized for 5 months from December 2005 through April 2006. While only acupuncture therapy and physical therapy were used on the control group, acupuncture, physical therapy and additional muscle strengthening exercises using a red thera band were used on the experimental group. Muscle strengthening was performed 20 minutes per session, more than one session a day for 4 weeks. Hypotheses for this study were verified using Two-way repeated ANOVA and ANCOVA using a pre test score as a covariate. Results: The experimental group with thera band muscle strengthening exercises showed a decrease in asymmetry weight loading percentage(F=14.704, P= .010), range of knee (Z=-3.15, P= .001) & deep tendon reflex score(Z=-2.52, P= .012) and moving performance(F=12.328, P= .001)compared to the control group. Conclusion: It is confirmed that muscle strengthening exercises using a Thera-Band can be used as an effective nursing intervention to improve the function of the lower limb of hemiplegic stroke patients.

통과차량으로 인한 풍하중에 대한 곡선 강재 터널라이닝의 동적 거동 분석 (Dynamic Behaviors of the Curved Steel Tunnel Lining due to Wind Loads by Passing Vehicles)

  • 마호성;조광일;박인준
    • 한국터널지하공간학회 논문집
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    • 제14권4호
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    • pp.309-320
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    • 2012
  • 본 논문에서는 곡률이 각기 다른 곡선터널 내 단독주행 통과차량에 의하여 발생하는 풍하중으로 인한 강재터널 라이닝의 동적거동에 대하여 분석하였다. 뒷채움이 없는 경우, 라이닝의 여유 공간에 대한 검토를 위하여 터널라이닝의 동적거동은 우선적으로 이루어 져야 한다. 풍하중의 영향을 보다 쉽게 파악하기 위하여 강재라이닝을 대상으로 하였으며 풍하중은 압축 및 흡인력으로 단순화시켜 모형화 하였다. 직선터널에 비해 곡선터널의 변위는 곡률반경이 작아질수록 작게 나타나며, 이는 곡률반경이 작을수록 변형형태의 비대칭성이 작아져 터널라이닝에 작용하는 변형에 대한 강성이 높아지는 것으로 판단된다. 또한, 주행속도가 증가할수록 응답변위도 증가하는 것으로 나타났다.

대퇴신경 손상 환아의 보행분석 : 사례연구 (Gait Analysis of a Pediatric-Patient with Femoral Nerve Injury : A Case Study)

  • 황선홍;박선우;손종상;박정미;권성주;최익선;김영호
    • 대한의용생체공학회:의공학회지
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    • 제32권2호
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    • pp.165-176
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    • 2011
  • The femoral nerve innervates the quadriceps muscles and its dermatome supplies anteromedial thigh and medial foot. Paralysis of the quadriceps muscles due to the injury of the femoral nerve results in disability of the knee joint extension and loss of sensory of the thigh. A child could walk independently even though he had injured his femoral nerve severely due to the penetrating wound in the medial thigh. We measured and analyzed his gait performance in order to find the mechanisms that enabled him to walk independently. The child was eleven-year-old boy and he could not extend his knee voluntarily at all during a month after the injury. His gait analysis was performed five times (GA1~GA5) for sixteen months. His temporal-spatial parameters were not significantly different after the GA2 or GA3 test, and significant asymmetry was not observed except the single support time in GA1 results. The Lower limb joint angles in affected side had large differences in GA1 compared with the normal normative patterns. There were little knee joint flexion and extension motion during the stance phase in GA1 The maximum ankle plantar/dorsi flexion angles and the maximum knee extension angles were different from the normal values in the sound side. Asymmetries of the joint angles were analyzed by using the peak values. Significant asymmetries were found in GA1with seven parameters (ankle: peak planter flexion angle in stance phase, range of motion; ROM, knee: peak flexion angles during both stance and swing phase, ROM, hip: peak extension angle, ROM) while only two parameters (maximum hip extension angle and ROM of hip joint) had significant differences in GA5. The mid-stance valleys were not observed in both right and left sides of vertical ground reaction force (GRF) in the GA1, GA2. The loading response peak was far larger than the terminal stance peak of vertical ground reaction curve in the affected side of the GA3, GA4, GA5. The measured joint moment curves of the GA1, GA2, GA3 had large deviations and all of kinetic results had differences with the normal patterns. EMG signals described an absence of the rectus femoris muscle activity in the GA1 and GA2 (affected side). The EMG signals were detected in the GA3 and GA4 but their patterns were not normal yet, then their normal patterns were detected in the GA5. Through these following gait analysis of a child who had selective injuries on the knee extensor muscles, we could verify the actual functions of the knee extensor muscles during gait, and we also could observe his recovery and asymmetry with quantitative data during his rehabilitation.