考虑车架设计和材料选择的便携式通勤自行车结构仿真

IF 0.9 Q3 ENGINEERING, MULTIDISCIPLINARY
B. Iskandriawan
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引用次数: 0

摘要

便携式通勤自行车(PCBs)是通勤者、居住在城市郊区、活动在城市中心或城市中心的人所需要的,即使是长途的人。为了用户安全,必须检查自行车车架结构的强度。多氯联苯不仅被通勤者骑着,还可以折叠起来带到公共交通工具上。PCB设计还包括一个凳子,供通勤者在等待公共汽车或火车时使用。采用基于静载荷的数值模拟方法对PCB结构的强度进行了研究。使用各种PCB框架设计和材料来控制位移和应力。该自行车结构检测的结果可以指导未来PCB设计的改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structure Simulation on Portable Commuter Bike Considering Frame Design and Materials Alternatives
Portable commuter bikes (PCBs) are needed by commuters, people who live in the suburbs of a city and whose activities are in the middle of the city or vice versa, even for longer distances. For user safety, it is mandatory to check the strength aspect of the bicycle frame structure. PCBs are not only ridden by the commuter but can also be folded to bring them along on public transportation. The PCB design also included a stool to be used by the commuter while waiting for the bus or train. The strength of the PCB structure was investigated using numerical simulations based on static load. The displacements and stresses were controlled using a variety of PCB frame designs and materials. The results of this bicycle structural inspection can guide the improvement of PCB designs in the future.
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来源期刊
Journal of Engineering and Technological Sciences
Journal of Engineering and Technological Sciences ENGINEERING, MULTIDISCIPLINARY-
CiteScore
2.30
自引率
11.10%
发文量
77
审稿时长
24 weeks
期刊介绍: Journal of Engineering and Technological Sciences welcomes full research articles in the area of Engineering Sciences from the following subject areas: Aerospace Engineering, Biotechnology, Chemical Engineering, Civil Engineering, Electrical Engineering, Engineering Physics, Environmental Engineering, Industrial Engineering, Information Engineering, Mechanical Engineering, Material Science and Engineering, Manufacturing Processes, Microelectronics, Mining Engineering, Petroleum Engineering, and other application of physical, biological, chemical and mathematical sciences in engineering. Authors are invited to submit articles that have not been published previously and are not under consideration elsewhere.
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