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基于Inventor葡萄酒开瓶器的三维建模与运动仿真
摘 要
众所周知饮用适量的葡萄酒对人身体有很大的帮助。比如:增进食欲;滋补作用;防衰老。并且,葡萄酒也渐渐走入我们的生活,随着人们物质文化生活水平的不断提高,我国的酒文化也在不断发扬光大,今天的人们在注意身体健康的前提下,饮用保健饮料已经成为生活的主旋律,因此宴会上饮用葡萄酿造的干红酒成为人们追逐时尚的酒文化。
葡萄酒虽好,但是由于葡萄酒瓶盖的原因给我们日常生活中饮用葡萄酒带来了极大的不便。在我们开启瓶盖的时候如果不一不小心的话有可能把木塞弄断,木塞掉进瓶里的话会极大影响葡萄酒的口味。本课题就是基于inventor 软件,做出一款比较实用的开瓶器的三维建模与运动仿真。通过此过程,我将加强对 inventor 软件的认识,并且使人们会更加了解开瓶器在开启瓶盖时的过程,使其更好的服务于我们的生活。
关键词:Inventor软件; 建模; 运动仿真
Abstract
As everyone knows drinking moderate amounts of wine on the human body has a great help. For example: stomachic tonic effect; aging. And, the wine has gradually into our lives, as people's material and cultural life level unceasing enhancement, our country wine culture continues to carry forward, today's people pay attention to the health of the premise, drinking health drink has become the theme of life, because the party drinking grape dry red wine become the people chasing the fashion of wine culture.
Wine is good, but because the cause of the JiuPingGai grapes to our daily life drinking wine with great inconvenience. In our open cap when if not carelessly words may change the wood plug broken, a cork fell into the bottle words will greatly influence the taste of the wine. This topic is based on the inventor software, make a practical bottle opener 3 d modeling in and movement simulation. Through this process, and I will strengthen the understanding of the inventor software, and to make people better understand the bottle opener in open cap of process to better service to our life.
Key words: Inventor software; modeling; motion simulation
目 录
1 前言......................................................................1
2 Inventor 软件介绍.........................................................1
2.1 零件设计.............................................................2
2.2草图绘制..............................................................2
2.3载荷定义..............................................................2
2.4可视化................................................................2
2.5应力分析..............................................................2
2.6易用性................................................................2
2.7运动仿真..............................................................3
2.8装配设计..............................................................3
3 模型的构建................................................................3
3.1木塞模型构建..........................................................3
3.2 开瓶器把手的模块构建.................................................4
3.2.1 轮齿的建模.....................................................4
3.2.2手柄的建模......................................................6
3.3 开瓶器转轴的模块构建..................................................9
3.3.1螺旋杆的建模.....................................................9
3.3.2 螺旋杆顶部顶板建模.............................................10
3.3.3 螺旋杆把手建模.................................................11
3.3.4螺旋杆底部针尖的建模............................................11
3.4 开瓶器中心杆的模块构建...............................................12
3.4.1 中心轴建模.....................................................12
3.4.2 中心轴孔建模...................................................13
3.5 开瓶器外壳的模块构建.................................................14
3.5.1 壳体建模.......................................................14
3.5.2 螺旋杆孔建模...................................................15
3.5.3 底座模型构建...................................................15
4 运动仿真..................................................................16
5 结论......................................................................18
6 致谢......................................................................19
7 参考文献..................................................................20





