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首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >Concurrent engineering solution for the design of ship and offshore bracket parts and fabrication process
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Concurrent engineering solution for the design of ship and offshore bracket parts and fabrication process

机译:船舶和海上支架零件设计和制造过程的并行工程解决方案

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摘要

ABSTRACT Brackets in ships and offshore structures are added structures that can endure stress concentrations. In this study, a concurrent engineering solution was proposed, and a high strength low carbon cast steel alloy applicable to offshore structures was designed and developed. The yield strength and ultimate tensile strength of the designed steel were 480 and 600 MPa, respectively. The carbon equivalent of the steel was 0.446 with a weld crack susceptibility index of 0.219. The optimal structural design of the brackets for offshore structures was evaluated using ANSYS commercial software. The possibility of replacing an assembly of conventional built-up brackets with a single casting bulb bracket was verified. The casting process was simulated using MAGMAsoft commercial software, and a casting fabrication process was designed. For the proposed bulb bracket, it was possible to reduce the size and weight by approximately 30% and 50%, respectively, compared to the conventional type of bracket.
机译:摘要船舶和近海结构中的托架是可以承受应力集中的附加结构。在这项研究中,提出了并行工程解决方案,并设计和开发了适用于海上结构的高强度低碳铸钢合金。设计钢的屈服强度和极限抗拉强度分别为480和600 MPa。该钢的碳当量为0.446,焊接裂纹敏感性指数为0.219。使用ANSYS商业软件评估了海上结构支架的最佳结构设计。验证了用单个铸灯泡支架代替传统组合支架的可能性。使用MAGMAsoft商业软件模拟铸造过程,并设计了铸造制造过程。对于提出的灯泡支架,与传统类型的支架相比,可以分别将尺寸和重量减少约30%和50%。

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