• 제목/요약/키워드: hypermesh software

검색결과 5건 처리시간 0.017초

Verification of Stress Analysis on the Bracket of Bus Bear Chassis

  • Kim, Gyu Sung
    • International journal of advanced smart convergence
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    • 제11권4호
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    • pp.266-272
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    • 2022
  • Structural stress analysis is performed to confirm the safety of the structures before the construction, and stress analysis is performed to evaluate the safety of various components before the ship or vehicle corresponding to the moving structure is manufactured. In this case, the stress analysis work is performed using the stress analysis software of each company. The results of the stress analysis based on the boundary conditions of the applied loads are analyzed to evaluate the safety of the structure, but the results are difficult to verify because most of the stress analysis software possessed by each company is one. In this paper, we were performed the stress analysis of the bracket applied to the bare chassis of the 30-passenger bus under development is performed by HYPERMESH. In order to verify this, the stress analysis is performed using ANSA/META under the same boundary condition. The stress analysis results of ANSA/META and HYPERMESH showed that they had the same stress distribution and the maximum stress occurred at the same location. Taken together, the results of stress analysis using HYPERMESH were reliable.

On soil-structure interaction models to simulate free vibrations and behavior under seismic loads of a RC building supported by a particular shallow foundation

  • Soelarso Soelarso;Jean-Louis Batoz;Eduard Antaluca;Fabien Lamarque
    • Coupled systems mechanics
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    • 제12권5호
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    • pp.461-479
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    • 2023
  • The paper deals with the finite element modelling of the free vibration and structural behavior of a particular four-floor reinforced concrete structure subjected to static equivalent seismic loads and supported by a shallow foundation system called SNSF (Spider Net System Footing). The two FE models are a simple 2D Matlab model and a detailed 3D model based on solid elastic elements using Altairworks (Hypermesh and Optistruct). Both models can simulate the soil structure interaction. We concentrate on the behavior of a representative cell involving two columns on five levels. The influence of the boundary conditions on the external vertical planes of the domain are duly studied. The Matlab model appears relevant for a primary estimation of frequencies and stiffness of the whole structure under vertical and lateral loads.

MRI 데이터를 이용한 쥐의 경추와 인접한 조직의 유한요소 모델화 (Finite Element Modeling of the Rat Cervical Spine and Adjacent Tissues from MRI Data)

  • 정태은
    • 한국CDE학회논문집
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    • 제17권6호
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    • pp.436-442
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    • 2012
  • Traumatic loading during car accidents or sports activities can lead to cervical spinal cord injury. Experiments in spinal cord injury research are mainly carried out on rabbit or rat. Finite element models that include the rat cervical spinal cord and adjacent soft tissues should be developed for efficient studies of mechanisms of spinal cord injury. Images of a rat were obtained from high resolution MRI scanner. Polygonal surfaces were extracted structure by structure from the MRI data using the ITK-SNAP volume segmentation software. These surfaces were converted to Non-uniform Rational B-spline surfaces by the INUS Rapidform rapid prototyping software. Rapidform was also used to generate a thin shell surface model for the dura mater which sheathes the spinal cord. Altair's Hypermesh pre-processor was used to generate finite element meshes for each structure. These processes in this study can be utilized in modeling of other biomedical tissues and can be one of examples for reverse engineering on biomechanics.

Research and Calculate 29/34-Seat Passenger Cars to Ensure Safety for Occupants in the Event of a Collision According to ECE R94 Standards

  • Vu Hoang, Phuong;Nguyen Cong, Thanh;Nguyen Quoc, Tuan;Ta Hong Thanh, Tu
    • International Journal of Internet, Broadcasting and Communication
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    • 제15권1호
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    • pp.140-144
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    • 2023
  • In recent years, there are so many serious crashes involving coaches, especially the frontal collision occupies 40% of the front of the vehicle, Frontal collisions account for 100% of the front of the vehicle affecting the driver and side-impact collisions that injure the person in the vehicle. Therefore, the research into improving and optimizing the structure is necessary for risk of injury for passengers in frontal accidents. In this paper, we have designed a Shock absorber that can absorb collision energy. Research using HYPERMESH software. to build the finite element model and calculate the meshing to suit the mesh size of 5mm. apply LS-DYNA software to calculate structural strength. In the study, for a vehicle to collide with a hard obstacle occupying 100% of the head of the vehicle. Then, the experimental design method, Minitab is used for find the structural parameters in the design. Improvement results showed that the acceleration of the impact on passengers and the driver is decreased by 55,17%. The mass of texture improvements is reduced by 11%, according to the requirements of European Standards ECE R94.

여러 가지 충돌 상황에 따른 FRP 어선 간의 충돌 해석 (Collision Analysis between FRP Fishing Boats According to Various Configurations)

  • 장인식;김용섭;김일동
    • 한국해양환경ㆍ에너지학회지
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    • 제9권4호
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    • pp.253-262
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    • 2006
  • 경제규모의 증대와 더불어 해상물동량이 많아지고 운행하는 선박의 숫자가 증가함에 따라 해상에서의 해난 사고가 빈번하게 발생하고 있다. 선박의 충돌 사고에 대한 연구는 주로 충돌 사고의 원인 분석에 중점을 두어 왔으나 보다 정확한 분석을 위해서는 역학적인 해석이 더 첨가되어야 한다. 본 연구는 FRP 재질의 어선간의 여러 충돌 상황에서의 시간에 따른 변형 거동에 대한 것이다. 선체에 대한 3차원 기하학적인 모델링을 수행 한 후, 유한요소 모델을 구성하고 역학적인 해석 기법인 유한 요소법을 이용하여 동적 해석을 수행하였다. 7.93톤급의 소형어선과 39톤급의 대형어선을사용하고 두 가지의 충돌각도($90^{\circ},\;135^{\circ}$)와 세 가지의 충돌속력(5, 10, 15 노트)의 조건을 조합하여 해석을 수행하였으며 각각의 경우에 대하여 응력분포와 변형상태를 살펴보았다. 전체적으로 $90^{\circ}$ 충돌 각도에서 $135^{\circ}$ 경우보다 응력이 컸으며, 두 선박이 모두 운항 중에 발생하는 충돌에서 더 큰 최대 응력이 발생하였다. $90^{\circ}$ 충돌각도의 경우 소형어선 간 충돌이나 소형 어선과 대형 어선간의 충돌에서도 충돌하는 전체의 선수부보다 충돌당하는 선체의 측면 부위에서 큰 응력이 발생하였다. $135^{\circ}$ 충돌각도로 정지된 소형 어선과 대형어선이 충돌하는 경우에는 대형 어선에서 치대 응력이 발생하였다. 150 ms의 해석시간인 경우 $90^{\circ}$ 충돌각도에서는 10knot, 15knot 모두 충돌하는 선체나 층돌 당하는 선체에서 파단이 발생하는 것으로 나타났다. 해석 결과는 추후에 부분 별 강도를 고려한 선체의 설계나 충돌사고재구성을 위한 기초 데이터로 사용될 수 있다.

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