• 제목/요약/키워드: Compressive Fracture Strain

검색결과 113건 처리시간 0.019초

간척지에 플라스틱 온실 설치 시의 문제점 분석 및 개선방안 (An analysis of problems and countermeasures in the installation of plastic greenhouse on reclaimed lands)

  • 유인호;구양규;조명환;류희룡;문두경
    • 농업과학연구
    • /
    • 제41권4호
    • /
    • pp.473-480
    • /
    • 2014
  • Upon setting up a dedicated plastic greenhouse for tomato cultivation developed by the Rural Development Administration on the Gyehwa reclaimed land, this study was aimed at analyzing the problems can be occurred in the installation of plastic greenhouse on reclaimed lands as well as finding out solutions for improvement. A relatively cheaper wooden pile was used in the installation in order to supplement the soft ground conditions. Based on the results of ground investigation of the installation site, both the allowable bearing capacity and pulling resistance of the wooden pile with a diameter of 150 mm and a length of 10 m were computed and came out to be 30.645 kN. It was determined that the values were enough to withstand the maximum compressive force (17.206 kN) and the pullout force (20.435 kN) that are generally applied to the greenhouse footing. There are three problems aroused in the process of greenhouse installation, and the corresponding countermeasures are as follow. First, due to the slightly bent shape of the wooden pile, there were phenomenon such as deviation, torsion, and fracture when driving the pile. This could be prevented by the use of the backhoe (0.2) rotating tongs, which are holding the pile, to drive the pile while pushing to the direction of the driving and fixing it until 5 m below ground and applying a soft vibrating pressure until the first 2 m. Second, there exists a concrete independent footing between the column of the greenhouse and the wooden pile driven to the underground water level. Since it is difficult to accurately drive the pile on this independent footing, the problem of footing baseplate used to fix the column being off the independent footing was occurred. In order to handle with this matter, the diameter of the independent footing was changed from 200 mm to 300 mm. Last, after films were covered in the condition that the reinforcing frame and bracing are not installed, there was a phenomenon of columns being pushed away by the strong wind to the maximum of $11m{\cdot}s^{-1}$. It is encouraged to avoid constructions in winter, and the film covering jobs always to be done after the frame construction is completely over. The height of the independent footing was measured for 9 months after the completion of the greenhouse installation, and it was found to be within the margin of error meaning that there was no subsidence. The extent to the framework distortion and the value of inclinometers as well showed not much alteration. In other words, the wooden pile was designed to have a sufficient bearing capacity.

임플란트와 상부구조물 사이의 micromotion에 관한 연구 (A study on the micromotion between the dental implant and superstructure)

  • 김지혜;송광엽;장태엽;박주미
    • 구강회복응용과학지
    • /
    • 제19권1호
    • /
    • pp.17-25
    • /
    • 2003
  • Treatment with implants of single tooth missing cases is both functional and esthetic. Although the success rate of single-tooth implant treatments is increasing, sometimes it makes some problems. Problems with single-tooth implant treatments include soft tissue complications, abutment screw fracture, and most commonly, abutment screw loosening, and these involve the instability of the dental implant-superstructure interface. This study investigated and compared dental implant screw joint micromotion of various implant system with external connection or internal connection when tested under simulated clinical loading, Six groups (N=5) were assessed: (1) Branemark AurAdapt (Nobel Biocare, Goteborg, Sweden), (2) Branemark EsthetiCone (Nobel Biocare, Goteborg, Sweden), (3) Neoplant Conical (Neobiotec, Korea), (4) Neoplant UCLA (Neobiotec, Korea), (5) Neoplant 5.5mm Solid (Neobiotec, Korea), and (6) ITI SynOcta (Institute Straumann, Waldenburg, Switzerland). Six identical frameworks were fabricated. Abutment screws were tightened to 32-35 Ncm and occlusal screw were tightened to 15-20 Ncm with an electronic torque controller. A mechanical testing machine applied a compressive cyclic load of 20kg at 10Hz to a contact point on each implant crown. Strain gauge recorded the micromotion of the screw joint interface once a second. Data were selected at 1, 500, 5,000, 10,000, 20,000, 30,000, 40,000 and 50,000 cycle and 2-way ANOVA test was performed to assess the statistical significance. The results of this study were as follows; The micromotion of the implant-superstructure in the interface increased gradually through 50,000 cycles for all implant systems. In the case of the micromotion according to cycle increase, Neoplant Conical and Neoplant UCLA system exhibited significantly increasing micromotion at the implant-superstructure interface (p<0.05), but others not significant. In the case of the micromotion of the implant-superstructure interface at 50,000 cycle, the largest micromotion were recorded in the Branemark EsthetiCone, sequently followed by Neoplant Conical, Neoplant UCLA, Branemark AurAdapt, ITI SynOcta and Neplant Solid. Internal connection system showed smaller micromotion than external connection system. Specially, Neoplant Solid with internal connection system exhibited significantly smaller micromotion than other implant systems except ITI SynOcta with same internal connection system (p<0.05). In the case of external connection, Branemark EsthetiCone and Neoplant Conical system with abutment showed significantly larger micromotion than Branemark AurAdapt without abutment (p<0.05).

일축압축하에서 포천화강암의 역학적 이방성 (Mechanical Anisotropy of Pocheon Granite under Uniaxial Compression)

  • 박덕원
    • 지질공학
    • /
    • 제15권3호
    • /
    • pp.337-348
    • /
    • 2005
  • 포천 지역에 분포하는 쥬라기 화강암을 대상으로 미세균열 분포특성이 화강암의 역학적 성질에 미치는 영향에 대하여 연구하였다. 3종의 방향성 시편을 대상으로 일축압축시험이 실시되었으며, 각 시편은R(riftplane), G(grain plane) 및 H(hardway plane) 축에 각각 직각이다. 다양한 탄성 상수 중, 3 방향에 따른 포아송비의 변화가 검토되었다 파괴 강도 비-포아송비의 관계도에서 포아송비의 범위는 H-시편에서 가장 높은 분포양상을 보이며 G-시편, R-시편의 순으로 감소한다. 분포곡선은 $I\simIII$ 단계에서는 거의 선형이며, IV-3 단계에서는 기울기의 급격한 증가를 보인다. 관계도에서 보는바와 같이 파괴강도비 $0.92\sim0.96$에서 변곡점이 형성된다. IV-3단계는 탄성 영역의 밖에 속한다. 4단계의 파괴단계에서의 거동은 응력-체적변형율 곡선에서 분석되었다 암석의 거동을 지배하는 응력증분-체적변형율 방정식에서 특징적인 재료상수인 a, n, Q, m 및 $\varepsilon_v^{mcf}$가 결정되었다. 이들 상수중에서 미세균열의 폐합영역( I 단계)에서 고유의 미세균열의 공극률$(a, 10^{-3})$ 그리고 압축지수(n)는 각각 $a^R(3.82)>a^G(3.38)>a^H(2.32)$ 그리고 $n^R(3.69)>n^G(2.79)>n^H(1.99)4의 순서로 나타난다. 특히 IV 단계의 미세균열의 임계체적변형율($\varepsilon_v^{mcf}$)은 3번 면에 수직인 H-시편에서 가장높게 나타난다. 이러한 결과에서 포아송비 및 재료상수와 같은 역학적 성질은 2 조의 미세균열과 밀접한 관계를 보이고있다. 강도 이방성과 미세균열의 방향성과의 상관성은 암석의 파괴 연구에 주요하게 적용될 수 있다.