In this study, the shape evaluation and design of the spare tire carrier for SUV (sports utility vehicle) were addressed through structural analysis. Spare Tire Carrier analysis was conducted to evaluate rigidity, and strength and improvement measures for appropriate shapes were found and reflected in the design. Through structural analysis of the spare tire carrier, this study was conducted to derive an optimal design plan as the stiffness and strength needed to be increased for stable installation of the spare tire carrier. Compared to the existing model, the bar, which was curved, was changed to a straight line to shorten the length, thereby increasing rigidity. In addition, because the moment was concentrated in the structure of the rear hanger mounting bracket, the side part of the bracket was extended, but the cross member stiffness was relatively weak, so it did not have a significant effect.
In this study, the shape evaluation and design of clamp mount for SUVs (sports utility vehicles) was dealt with through structural analysis. The clamp mount analysis was performed to evaluate stiffness, strength and improvement plans for appropriate shape were found and reflected in the design. In addition, strength analysis and was performed in parallel to solve the problem of rib design around the edge part of the clamp mount and the thickness effect results were reflected in the design. As a result of analysis through various design changes, it was possible to present an appropriate reinforcement design shape. In addition, when the thickness of the fuel tank was changed from 3.2mm to 4.0mm, the stiffness of the fuel tank decreased by approximately 30%, and reinforcement was required.
The aim of this study is to define the new expressive techniques for multicolored clamp resist (hyuphill) dyeing, based on empirical verification on relics that are estimated to be dyed by the exchange of more than two wood blocks: a previously undiscovered technique. Clamp resist dyeing (assumed to be made by exchanging wood blocks) have uneven resist printing lines or cloudy gradation. These are reproduced as follows: first, they have uneven contour lines, particularly with the color blue. It is possible to exchange wood blocks separately on patterns with uneven resist printing lines, and it has been verified that the exchange of wood blocks makes these irregular resist printing lines. It has also been verified that exchanging the wood blocks according to the gradation (to emphasize the cubic effect on the patterns) yields clamp resist dyeing with no resist printing lines but with cloudy gradations that have accented borders. This study provides basic information that enables methods of multicolored clamp resist dyeing through wood block exchange to be deduced (something that has not been attempted for a long time). Thus, the revival of the modern Korean dyeing culture based on the conservation and perseverance of the traditional dyeing techniques can be achieved.
In order to remove rust and impurities from surface of raw SUS circular bar, peeling machine is used to make lustrous and clean surface of SUS circular bar. Drawing process system is used to manufacture SUS hexagonal bar. SUS hexagonal bar have been widely used to make hexagonal bolt/nut, adapter and fittings and so on. The purpose of this study is to investigate the stabilities for guide bar of clamp in drawing process system. As the results, the guide bar showed structural stability in cases of below load of 50 Ton and over hook radius of 3.0mm. Further as the thickness of guide bar hooking with jaw was increased, minimum safety factor was decreased.
One of the important advantages of Thermosonics is that it can be applied to complex structures such as a turbine blade as a convenient and quick screening test method. For a reliable thermosonic test, the vibrational characteristics of the system comprising the tested structure and the clamp at ultrasonic frequency range should be identified. Therefore, this study presented the analysis results of frequency response functions and mode shapes of the turbine blade and clamp system and investigate the possibility of the reliable excitation system for the thermosonic test.
본 연구에서는 플라스틱 온실에서 사용하는 죔쇠의 성능 평가 시 시험편 끝단의 구속조건이 미끄럼 저항력에 미치는 영향을 분석하기 위해 시험편 구속조건을 실험변수로 판형죔쇠의 미끄럼 저항력을 측정하였다. 각 구속조건별로 측정한 미끄럼 저항력의 평균값은 서까래 고정-고정단이 가장 컸으며, 내재해형 죔쇠의 평가 기준 값과 비교한 결과에서도 서까래 고정-고정단의 경우에만 기준을 만족하는 것으로 나타났다. 그러나 서까래 고정-고정단 구속조건은 다른 구속조건들에 비해 산 포도가 상대적으로 크게 나타나 신뢰성이 떨어지는 결과를 보였다. 또한, 일원분산 분석결과에서도 서까래 고정- 고정단은 다른 구속조건들과 비교해 미끄럼 저항력이 유의한 차이를 보였다. 따라서 시험편 구속조건이 미끄럼 저항력 평가에 영향을 미친다고 판단하며 연구자 및 기술자들이 죔쇠의 미끄럼 저항력을 측정할 때에는 시험편의 구속조건이 결과값의 신뢰성에 미치는 영향을 면밀히 검토해야 할 것으로 판단된다.
In the bipolar basidiomycete Pholiota nameko, a pair of homeodomain protein genes located at the A mating-type locus regulates mating compatibility. In the present study, we used a DNA-mediated transformation system in P. nameko to investigate the homeodomain proteins that control the clamp formation. When a single homeodomain protein gene (A3- hox1 or A3-hox2) from the A3 monokaryon strain was introduced into the A4 monokaryon strain, the transformants produced many pseudo-clamps but very few clamps. When two homeodomain protein genes (A3-hox1 and A3-hox2) were transformed either separately or together into the A4 monokaryon, the ratio of clamps to the clamp-like cells in the transformants was significantly increased to approximately 50%. We, therefore, concluded that the gene dosage of homeodomain protein genes is important for clamp formation. When the sip promoter was connected to the coding region of A3-hox1 and A3-hox2 and the fused fragments were introduced into NGW19-6 (A4), the transformants achieved more than 85% clamp formation and exhibited two nuclei per cell, similar to the dikaryon (NGW12 -163 × NGW19-6). The results of real-time RT-PCR confirmed that sip promoter activity is greater than that of the native promoter of homeodomain protein genes in P. nameko. So, we concluded that nearly 100% clamp formation requires high expression levels of homeodomain protein genes and that altered expression of the A mating-type genes alone is sufficient to drive true clamp formation.
쐐기형 레일클램프는 초기에는 작은 압착력으로 레일을 압착하다가 바람이 불면 쐐기작용에 의해 큰 압착력으로 레일을 압착하는 구조를 가지고 있다. 이 때쐐기작용을 위해 레일클램프는 레일을 따라 이동하게 되는데, 만약 지지대를 설치하지 않으면 밀림거리가 증가하여 구조물을 파괴에 이르게 하는 과부하가 발생하게 되므로 이를 방지하기 위한 지지대를 적절히 설치하여야 한다. 이러한 지지대의 적정위치는 초기압착력과 쐐기각에 따라서 결정되므로, 본 연구에서는 이러한 초기압착력과 지지대의 위치사이의 관계에 대하여 살펴보기 위하여 5가지 쐐기각을 설계변수로 하여 유한요소해석을 수행하였다.
항만에서 작동중인 컨테이너 크레인에 갑작스러운 돌풍에 의해 크레인이 밀리는 현상을 방지하기 위한 안전장치로 레일 클램프가 적용되고 있다. 본 연구에서는 이러한 레일 클램프 중에서 특히 레일의 손상과 레일 클램프 수명을 향상시킬 수 있는 쐐기형 레일 클램프을 제작하기 위한 기초 설계에 관한 연구를 수행하였다. 특히, 조의 회전을 방지하고 적절한 가압력을 발휘할 수 있는 쐐기각을 설정하기 위해, 우선조의 설계 치수와 회전력의 관계에 대한 하중분석을 수행하고, 여기에서 최대 쐐기각을 도출하고, 이후 수치 해석을 통한 강성도 분석을 통하여 최소 쐐기각 6˚를 제안한다. 또한, 제작된 레일 클램프를 통한 실험으로 검증하였다.
In cargo-working, it unavoidably happens that the quay crane slip along the rail and the container move from side to side. Especially, they involve a lot of risk in bad weather. The rail clamp is a mooring device to prevent that the quay crane slips along the rail due to bad weather or the wind blast while the quay crane do the cargo-working And it will play a greater role in port container terminal integration and automation To design the wedge type rail clamp, it is very important to determine the wedge angle. In this study, we expect that the design wind speed of the quay crane will change over 16m/s. Assuming that the design wind speed is 40m/s, we determined the proper wedge angle of the wedge type rail clamp for the 50ton class quay crane.