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首页> 外文期刊>Journal of Manufacturing and Materials Processing >Discrete Element Simulation of Orthogonal Machining of Soda-Lime Glass with Seed Cracks
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Discrete Element Simulation of Orthogonal Machining of Soda-Lime Glass with Seed Cracks

机译:种子裂缝钠钙玻璃正交加工的离散元素模拟

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Demands for producing high quality glass components have been increasing due to their superior mechanical and optical properties. However, due to their high hardness and brittleness, they present great challenges to researchers when developing new machining processes. In this work, the discrete element method (DEM) is used to simulate orthogonal machining of synthetic soda-lime glass workpieces that are created using a bonded particle model and installed with four different types of seed cracks. The effects of these seed cracks on machining performance are studied and predicted through the DEM simulation. It is found that cutting force, random cracks, and surface roughness are reduced by up to 90%, 74%, and 47%, respectively, for the workpieces with seed cracks compared to the regular ones. The results show that high performance machining through DEM simulation can be achieved with optimal seed cracks.
机译:由于其优越的机械和光学性能,生产高质量玻璃成分的需求已经越来越大。然而,由于他们的高硬度和脆性,在开发新的加工过程时,它们对研究人员来说,对研究人员来说,他们对研究人员带来了巨大挑战。在这项工作中,离散元件方法(DEM)用于模拟使用粘合粒子模型产生的合成钠钙玻璃工件的正交加工,并安装有四种不同类型的种子裂缝。通过DEM仿真研究和预测这些种子裂缝对加工性能的影响。结果发现,与常规裂缝相比,切割力,随机裂缝和表面粗糙度分别降低了90%,74%和47%的工件。结果表明,通过DEM模拟的高性能加工可以通过最佳种子裂缝实现。

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