首页> 外文会议>ASME Pressure Vessels and Piping conference >MODELING AND SIMULATION OF OPTIMAL BLANK DESIGN AND HOT PRESSING PROCESS FOR MANUFACTURING LARGE FRANCIS TURBINES BLADES FROM VERY THICK PLATES
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MODELING AND SIMULATION OF OPTIMAL BLANK DESIGN AND HOT PRESSING PROCESS FOR MANUFACTURING LARGE FRANCIS TURBINES BLADES FROM VERY THICK PLATES

机译:从非常厚的板材制造大型弗朗西斯涡轮叶片的最佳坯料设计和热压过程的建模和仿真

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摘要

Hot pressing process is widely used in automotive, shipbuilding, energy production and civil engineering. However, the trial and error technique that is intensive time and energy consuming is still used. Particularly, the design of Francis turbines of hydropower plants is not standard, but variable from site to site due to hydraulic conditions and cost of energy. As a result, the blade hydraulic profile of each Francis turbine is different. The blades, one of the key components of Francis turbine runners, are produced in small batches and the setup of the dedicated punch and die increases significantly the unit production costs. In this paper, the blade unfolding process for optimal blank design will be firstly presented, and then a hot pressing process for very thick plates is proposed. The pressing process of high strength steel at hot temperature is characterized by thermo-mechanical behaviors, three-dimensional unsteady deformation, high nonlinearity, continuous local forming. The analyses of residual stress distribution and applied forces are carried out.
机译:热压工艺广泛用于汽车,造船,能源生产和土木工程。但是,仍然使用费时费力的反复试验技术。特别地,水力发电厂的弗朗西斯水轮机的设计不是标准的,但由于水力条件和能源成本的不同,其设计因地而异。结果,每个弗朗西斯涡轮的叶片液压轮廓是不同的。叶片是混流式水轮机转轮的关键部件之一,小批量生产,而专用冲头和冲模的安装大大增加了单位生产成本。在本文中,将首先介绍用于最佳毛坯设计的刀片展开过程,然后提出用于非常厚的板的热压过程。高强度钢在高温下的压制过程具有热力学行为,三维非定常变形,高非线性,连续局部成形的特点。进行了残余应力分布和作用力的分析。

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