Effect of Pro-Ecological Cooling and Lubrication Methods on the Sharpening Process of Planar Blades Used in Food Processing.

Bartosz Zieliński, Krzysztof Nadolny, Wojciech Zawadka, Tomasz Chaciński, Wojciech Stachurski, Gilmar Ferreira Batalha
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引用次数: 2

Abstract

This work presents the results of an experimental study of the sharpening of planar technical blades used in the fish processing industry. Sharpening was carried out in the grinding process using several environmentally friendly methods of cooling and lubricating the machining zone (MQL method, CAG nozzle, hybrid method that is a combination of MQL and CAG methods, as well as WET flooding method as reference). The purpose of the research was to determine the possibility of reducing the negative environmental impact of the sharpening process of technical blades by minimizing the expenditure of coolant. The application of the MQL method and the hybrid MQL + CAG method provided a very good realization of the lubricating function so that the share of friction of dulled cutting vertices against the workpiece surface is reduced, which manifests itself in the reduction of the grinding force and the correlated grinding power. In the case of grinding under cooled compressed air delivery conditions, the average cutting force was as much as 91.6% higher (F = 22.63 N) compared to the result obtained for the most favorable flooding method, demonstrating the insufficient quality of the blade shaped under such conditions. A comprehensive comparison of test results on grinding power gain, cutting force and surface texture suggests that the most favorable sharpening results were obtained using the environmentally friendly MQL method of cooling and lubricating the grinding zone.

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亲生态冷却润滑方式对食品加工用平面刀片刃磨过程的影响
这项工作提出了在鱼类加工工业中使用的平面技术刀片的刃磨实验研究的结果。在磨削过程中,使用几种环保的冷却和润滑加工区域的方法(MQL方法,CAG喷嘴,MQL和CAG方法相结合的混合方法,以及参考湿浸法)进行锐化。这项研究的目的是确定通过减少冷却剂的消耗来减少技术刀片锐化过程对环境的负面影响的可能性。MQL方法和混合MQL + CAG方法的应用很好地实现了润滑功能,从而减小了钝化切削顶点对工件表面的摩擦份额,表现为磨削力和相关磨削功率的降低。在冷却压缩空气输送条件下进行磨削时,平均切削力比最有利的驱油方法高出91.6% (F = 22.63 N),说明在这种条件下成形的叶片质量不足。综合比较磨削功率增益、切削力和表面纹理的试验结果表明,采用对磨削区进行冷却和润滑的环保型MQL方法获得了最有利的锐化效果。
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