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High efficiency, high speed grinding of a composite material consisting of polymer concrete and steel structures

机译:高效率,高速研磨复合材料,包括聚合物混凝土和钢结构

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Polymer concrete (PC) displays superb vibration dampening qualities and is dimensionally and thermally stable, dense, rigid, resistant to water and chemicals and will not twist or bend in reaction to stress. Therefore PC has become the preferred base to ensure rigidity in a machine tool. Hybrid polymer concrete beds composed of steel structures and polymer concrete are challenging for the grinding process, due to the completely different material properties of steel and PC. Which complicates the selection of suitable grinding tool and limits the achievable material removal rates. A promising technique to overcome these technological constraints is the use of High Efficiency Deep Grinding (HEDG), where high cutting speeds and material removal rates are utilized. This paper presents the experimental investigation of HEDG of a hybrid material consisting of polymer concrete and integrated steel inserts. A vitrified bond CBN-grinding wheel was utilized and the grinding parameters are optimized in this study. The obtained results show that the application of HEDG can increase the material removal rates considerably. There was no evidence of thermal damages on the surface and subsurface of ground workpieces. The microscopic studies of the induced chips by the HEDG process showed, that both brittle and ductile grinding modes occur during the applied HEDG process.
机译:聚合物混凝土(PC)显示出精湛的振动阻尼品质,尺寸和热稳定,密集,刚性,耐水性和化学品,不会扭曲或弯曲反应对应力。因此,PC已成为确保机床中刚性的首选基座。由于钢和PC的完全不同的材料性能,由钢结构和聚合物混凝土组成的杂种聚合物混凝土是挑战的磨削过程。这使得选择合适的研磨工具并限制可实现的材料去除率。克服这些技术限制的有希望的技术是利用高效率的深磨(Hedg),其中利用了高切削速度和材料去除速率。本文介绍了由聚合物混凝土和集成钢插入物组成的混合材料HEDG的实验研究。利用玻璃化键CBN磨轮,并在本研究中优化研磨参数。得到的结果表明,Hedg的应用可以大大增加材料去除率。没有关于地面工件的表面和地下的热损坏的证据。通过HedG方法的诱导芯片的显微镜研究显示,在施加的Hedg方法期间发生脆性和延展性研磨模式。

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