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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >The Influence of Cutting Fluid Concentration on Surface Integrity of VP80 Steel and the Influence of Cutting Fluid Flow Rate on Surface Roughness of VPATLAS Steel After Grinding
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The Influence of Cutting Fluid Concentration on Surface Integrity of VP80 Steel and the Influence of Cutting Fluid Flow Rate on Surface Roughness of VPATLAS Steel After Grinding

机译:切削液浓度对VP80钢表面完整性的影响及切削流体流速对磨削后VPatlas钢表面粗糙度的影响

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摘要

The application of cutting fluid in grinding operations is crucial to control temperature levels and prevent thermal damage to the workpiece. Water-based (emulsions and solutions) coolants are used in grinding operations owing to their excellent cooling capability and relatively lower cost compared to neat oils. However, the cutting fluid efficiency is not only dependent on its type, but also on other parameters including its concentration and flow rate. In this context, this work aims to analyze the influence of the coolant concentration and flow rate on the grinding process. Two different workpiece materials for the production of plastic injection moulds were machined: VP80 and VPATLAS steel grades. Six grinding conditions (combinations of depth of cut values of 5, 15, and 25 mu m with coolant concentration of 3% and 8%, respectively) were employed in the former, while two grinding conditions were used for the latter. The output parameter used to assess the influence of coolant concentration and flow rate on the grinding operation focused on the integrity of the workpiece materials (surface roughness and microhardness below the ground surface). The results showed that the surface integrity of VP80 after grinding was more sensitive to depth of cut than to cutting fluid concentration. Furthermore, the highest coolant concentration outperformed the lowest one when grinding under more severe conditions. With regard VPATLAS steel, no influence of the coolant flow rate on surface roughness was observed.
机译:切削液在研磨操作中的应用对于控制温度水平至关重要,并防止对工件的热损坏。由于其优异的冷却能力和与整洁的油相比,水基(乳液和溶液)冷却剂用于研磨操作和相对较低的成本。然而,切削液效率不仅取决于其类型,而且还依赖于其他参数,包括其浓度和流速。在这种情况下,该工作旨在分析冷却剂浓度和流速对研磨过程的影响。用于生产塑料注塑模具的两个不同的工件材料加工:VP80和VPatlas钢等级。在前六种研磨条件(分别为5,15和25μm,分别为3%和8%的冷却剂浓度为3%和8%)的组合,而后者使用两个研磨条件。用于评估冷却剂浓度和流速对磨削操作的影响的输出参数集中于工件材料的完整性(地面表面下方的表面粗糙度和显微硬度)。结果表明,研磨后VP80的表面完整性对切割深度比切割流体浓度更敏感。此外,在更严重的条件下研磨时,最高冷却剂浓度优于最低的冷却剂浓度。在VPATLAS钢方面,观察到对表面粗糙度的冷却剂流速没有影响。

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