Structural Analysis of Automotive Chassis, Design Modification and
Structural Analysis of Automotive Chassis, Design Modification and Optimization Rohan Y Garud M.Tech. CAD-CAM Department, Symbiosis Institute of Technology, Symbiosis International
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Structural Analysis of Automotive Chassis, Design Modification and Optimization Rohan Y Garud M.Tech. CAD-CAM Department, Symbiosis Institute of Technology, Symbiosis International
In this paper, structure topology optimization of the spindle box of a type of machining center was carried out based on the software of OptiStruct of HyperWorks.
The structure of the stiffener layout is bulky due to empirical design, leading to higher material consumption and impacting mechanical performance. There are challenges in effectively identifying
Abstract rength, and the rationality of the structural design is verified. Used the finite element analysis software, optimizing t e supporting column section of the box structure is also studied. The results
A method for optimizing the layout of internal stiffened plates of large box structures based on load paths is proposed in this paper. Initially, based on the load conditions acting on the structure, the 3D box
In this paper, a layout design method of stiffened plates for the large-scale box structures under moving loads based on multiworking-condition topology optimization is proposed.
Topology optimization is concerned with determining the main features and the general shape of a component or of a mechanical structure at the beginning of engineering projects. Current
Abstract The study is aimed at developing a universal topological optimization algorithm based on fundamental principles of elasticity theory and continuum mechanics. The objective of the
The structure optimization design under thermo-mechanical coupling is a difficult problem in the topology optimization field. An adaptive growth algorithm has become a more effective
Through the proportional distribution of layers at each angle and the optimization of the laying sequence of the composite design area structure, the optimal structure
Heggemann and Hirschberg et al. explained the major role of a fluid distributor as a device distributing fluid uniformly above structured packings and compared the impacts of central-feeding
AMGA and NSGA-II algorithms are used to execute multi-objective optimization design. In order to improve the crashworthiness and energy absorption performance, this paper introduces the
An adaptive growth algorithm has become a more effective approach for structural topology optimization. This paper proposed a topology optimization method by an adaptive growth
Numerical studies for square shells clearly show the effectiveness of the proposed method for stiffener layout optimization under thermo-mechanical coupling. Finally, the method is
Optimization in structural mechanics plays a critical role in the design of lightweight, cost-efficient, and crash-resistant structures. In specific contexts such as vehicle crashworthiness, where
The design opti-mization of the crash box to achieve the planned crashworthiness performance is studied in this article. The optimization process of such components is computationally expensive
Finally, the static and dynamic analysis on the optimized spindle box structure is performed again to verify whether the mechanical structural rigidity is strengthened.
This paper presents a novel and effective design method to improve the structural dynamic performance of 3D box structures subjected to harmonic excitations by combining the
Distribution network is an important infrastructure of economic society. It is necessary to optimize the ring network structure reasonably and effectively. In the past, the distribution network optimization did