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Experimental investigation to produce thin-walled sand casting using combination of casting simulation and additive manufacturing techniques

机译:采用铸造仿真和添加剂制造技术的组合生产薄壁砂铸造的实验研究

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摘要

Sand casting process is used by man from olden days to manufacture metallic components. Due to various problems of sand, mold and filling, the process is considered not suitable to produce small intricate castings having thin geometries. Only huge castings are preferred and sophisticated components are completely ruled out of the process. However, the cost-effectiveness of the process is very attractive. The present work is taken up to investigate the possibility of sand mold casting process to produce intricate components having thin sections like automobile cylinder head castings. The project uses additive layer manufacturing technique for pattern development and computer-aided casting simulation technique to analyze mold filling and solidification aspects. Simulations are performed by varying pouring temperature and gating system design which also reduces shop floor trials and lead time. Based on simulation results, experiments are design and conducted using three types of sand, namely air-set sand, dry sand, and sodium-silicate sand. The produced castings are tested for various parameters and found successful. Results obtained from simulation are validated experimentally proving the methodology adopted is very helpful in producing intricate castings economically.
机译:旧天数用于制造金属部件的人使用砂铸造工艺。由于砂,模具和填充的各种问题,该过程被认为不适合生产具有薄几何形状的小复杂铸件。只有巨大的铸件是优选的,并且完全统治了复杂的组分。然而,该过程的成本效益非常有吸引力。本作采用本作的砂模铸造工艺的可能性,以产生具有薄截面的复杂部件,如汽车缸盖铸件。该项目采用添加层制造技术进行图案开发和计算机辅助铸造仿真技术来分析模具灌装和凝固方面。通过不同的浇注温度和门控系统设计进行模拟,这也减少了车间试验和延长时间。基于仿真结果,实验是使用三种类型的沙子,即空置砂,干砂和硅酸钠沙子进行设计和进行。产生的铸件用于各种参数,并找到成功。从模拟获得的结果经过实验证明所采用的方法非常有助于经济地生产复杂的铸件。

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