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Technology enabled learning of metal forming processes for engineering graduates using virtual simulation lab

机译:利用虚拟仿真实验室,技术使工程毕业生能够学习金属成型工艺

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Metal forming process is a widely used manufacturing process mainly for its economy, dimensional precision, and improved mechanical properties of the formed product. Real-time laboratory experiments are key to mechanical engineering course of metal forming. Lack of available capital in small engineering institutions constraints huge investments over machinery and necessary technologies. An interactive metal forming simulation lab is developed (ⅰ) having web-based global access to everyone (ⅱ) with user friendly interface to move seamlessly and find topics (ⅲ) enhancing learning by CAD simulations of metal forming processes (ⅳ) to explore what-if situations experimenting over interactive simulation benches and (ⅴ) automatically scored e-quizzes for testing knowledge. This work helps amateur mechanical engineers and mechanical engineering undergraduate students of second, third, fourth, and fifth semesters, respectively, in learning and understanding of metal forming processes and concepts, allowing analysis and visualization of temperature changes, microstructure change, etc.Each module is supported by adequate theory to reduce time and effort needed to understand different metal forming setups, various process parameters, materials, and equipments involved in the processes and provides interactive learning environment.
机译:金属成型工艺是一种广泛使用的制造工艺,主要是因为其经济,尺寸精度高以及成型产品的机械性能提高。实时实验室实验是金属成型机械工程过程的关键。小型工程机构中缺乏可用资金限制了对机械和必要技术的巨额投资。开发了一个交互式金属成型模拟实验室(ⅰ),该平台具有基于Web的全局访问权限(所有人),并具有用户友好的界面,可以无缝移动并找到主题(ⅲ),从而通过金属成型过程的CAD模拟(ⅳ)增强学习,从而探索什么-如果情况是在交互式模拟平台上进行试验,并且(ⅴ)自动打分电子测验以测试知识。这项工作分别帮助第二,第三,第四和第五学期的业余机械工程师和机械工程专业的学生学习和理解金属成形过程和概念,从而可以分析和可视化温度变化,微观结构变化等。适当的理论支持,以减少了解过程中涉及的不同金属成型设置,各种工艺参数,材料和设备所需的时间和精力,并提供交互式学习环境。

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