본 논문에서는 등방성판의 인장이나 전단변형은 물론 굽힘문제에도 적용할 수 있는 3차원 고체요소들 중에서 최소의 자유도를 갖는 수정 10절점 상당요소를 제안하였다. 제안된 수정 10절점 상당요소는 Q11요소나 20절점요소로부터 자유도가 줄어듬에 기인한 과대한 굽힘강성을 나타낸다. 이러한 상대적 강성과잉 현상을 수정하기 위한 효과적인 방법으로 가우스 적분점 수정 방법을 제안하였다. 수정량은 포아송 비의 함수이다. 수정 10절점 상당요소의 효과를 여러 가지 예에 적용하여 검증하였다. 제안된 수정 10절점 상당요소에 의한 등방성판의 정적해석과 자유진동 해석의 결과들은 20절점요소를 사용한 결과들과 잘 일치하였다.
The dynamic response characteristics with flexibility variations are examined for presenting the basic data for design of Tension Leg Platforms(TLPs)in waves. A numerical approach is based on the dynamic response analysis theory, in which the superstructure of TLPs is assumed flexible instead of the rigid body assumption used in two-step analysis method. The hydrodynamic interactions among TLP members, such as columns and pontoons are not included in the motion and structural analyse. The equations of motion of a whole structure are formulated using element-fixed coordinate systems which have the origin at the node of the each hull element.
The study was conducted to evaluate reliability of the longitudinal tensile properties of unidirectional carbon fiber reinforced composites. Two kinds of carbon fiber reinforced composites laminates were tested in order to examine the factors of variability and have the information concerning reliability improvement. Temperature dependence of the strength and its variability were investigated by means of testing at two kinds of temperatures. Statistical distributions of the respective mechanical properties were obtained from the tensile tests. As a result, strength of composites was directly proportional to the ultimate strain and was not proportional to the elastic modulus. The fracture behavior in bending of notched plate was studied for a composite material. The uniform bending tests of notched plates have been carried out for a wide range of notch radii. The experiment shows that the nominal stress at failure decreased with decreasing notch radius and it approaches a constant value when the notch radius is less than about 0.3mm. The critical maximum stress is governed by notch root radius alone in the case of a constant thickness of specimen.
균열이 있는 보의 굽힘진동수 계산을 위한 전산프로그램을 개발해서, 실험으로 검정하고, 미소균열이 진동수에 미치는 영향을 검토한 결과를 요약하면 다음과 같다. 1. 개발한 전산프로그램에 의한 계산치와 실험치는 비교적 잘 일치해서 미소균열이 있는 경우에도 본 프로그램의 적용이 가능하다. 2. 고정단부근에서 균열폭이 좁고 깊은 경우 실제의 굽힘진동수는 계산치와 상당히 달라질 수 있다. 3. 균열에 의한 굽힘진동수의 변화가 수 퍼센트에 불과하더라도 강도상으로는 치명적일 수 있다.
Previous shape sensors including bend sensors and optic fiber based sensors are widely used in various applications including goniometer and surgical robots. But theses sensors have large nonlinearity, limited in the range of sensing curvature, and sometimes are expensive. This study suggests a new concept of bend sensor using cable-conduit which consists of the outer sheath and the inner wire. The outer sheath is made of helical coil whose length of the central line changes as the sheath bends. This length change of the central line can be measured with the length change of the inner cable. The modeling and the experimental results show that the output signal of the proposed sensor is linearly related with the bend angle of the sheath with root mean square error of 5.3% of 450° sensing range. Also the polynomial calibration of the sensor can decrease the root mean square error to 2.1% of the full sensing range.
Complete closed-type carbon fiber reinforced polymer stirrups with a rectangular section (CFRPRS) were developed and tested in this research. The CFRPRS was intended to relieve stress concentration and to reduce the number of kinked fibers at the bent portion. A total of 16 B.5 specimens were tested regarding the bend strength of the CFRPRS and CFRP stirrups with circular section. Test results showed that CFRPRS improved the bend strength compared to its counterpart of conventional CFRP stirrups having a circular section, with the larger ratio of width to thickness being more effective for the same sectional area. The best correlation between the test results and predictions on CFRPRS bend strength was observed when the section of CFRPRS was modeled as a collection of transformed individual circular sections.
앉은 자세를 장시간 유지하면 허리의 만곡에 변화가 오면서 통증이 발생하게 된다. 본 연구에서는 양반 앉은자세에 서 SPINE-GUARD(허리 안정화 벨트) 착용이 허리뼈의 코브각과 허리통증 그리고 몸통 굽힘각도의 변화에 미치는 영 향에 대해 알아보았다. 대상자 15명(남자)은 2주 동안 주 5회 매회 90분씩 벨트를 착용한 채로 영화를 감상하거나 강 의를 들었다. 허리뼈의 코브각은 착용전 48.36±14.57에서 착용후 28.09±11.63로 유의한 감소를 보였다(p<0.05). 통 증은 착용전 4.53±2.36이고, 착용후 2.733±2.153로 유의하게 감소하였다(p<0.05). 몸통의 굽힘각도 또한 착용전 82.33±20.30에서 착용 후 70.2±19.43로 유의한 감소를 보였다(p<0.05). 이것으로 보아 SPINE-GUARD의 착용은 허리뼈의 코브각 및 몸통굽힘각도의 변화 그리고 통증의 감소에 영향을 주는 것으로 사료된다.