聚合物混凝土车削过程中表面几何结构参数和刀具磨损的实验测定

N. Kepczak, R. Rosik
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引用次数: 0

摘要

本文介绍了聚合物混凝土车削过程中表面几何结构(SGS)参数和刀具磨损的实验测定结果。到目前为止,所有的文献报道都表明,矿物铸件表面的光滑度和粗糙度是直接从模具中获得的。然而,聚合物混凝土的新应用,甚至是机床的某些零件,迫使生产商进行机械加工,这将改善表面层的参数。陶瓷基复合材料的加工是机械加工领域的一个新篇章,迄今为止尚未得到充分的研究。本文介绍了聚合物混凝土纵向车削过程中切削参数与表面层和刀具磨损参数相关性的实验测定过程。车削是使用由立方氮化硼(CBN)制成的板进行的。加工后,测量了表面粗糙度和侧面磨损的最大宽度。在此基础上,定义了表面层和刀具磨损参数与切削参数的数学模型。作者还试图用可变的切削参数来解释加工区中发生的现象。还进行了加工后CBN板的显微镜照片。通过研究,得出了关于矿物铸造材料加工的最终结论。
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Experimental Determination of the Surface Geometrical Structure Parameters and Tool Wear During Turning the Polymer Concrete
Abstract The paper presents the results of experimental determination of the Surface Geometrical Structure (SGS) parameters and tool wear during turning the polymer concrete. Until now, all literature reports have shown that the smoothness and roughness of the mineral cast surface was obtained directly from the mold. However, new applications of polymer concrete, even for some parts of the machine tools, forced the producers to carry out machining, which would improve the parameters of the surface layer. The topic of machining ceramic-based composite materials is a new chapter in the field of machining, which has not been sufficiently researched so far. The article describes the process of experimental determination of dependence of surface layer and tools wear parameters from cutting parameters during longitudinal turning of polymer concrete. The turning was carried out using plates made of a cubic boron nitride (CBN). After machining, the surface roughness and the maximum width of the flank wear were measured. On this basis, the mathematical model of the surface layer and tools wear parameters versus cutting parameters were defined. The authors also attempted to explain the phenomena occurring in the machining zone using variable cutting parameters. Microscopic pictures of CBN plates after machining were also performed. After the study, the final conclusions about the machining of mineral cast material were formulated.
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Mechanics and Mechanical Engineering
Mechanics and Mechanical Engineering Engineering-Automotive Engineering
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