Adin Mehmet Şükrü, Adin Hamit
Besiri OSB Vocational School, Batman University, Batman 72060, Turkey.
Faculty of Engineering and Architecture, Batman University, Batman 72100, Turkey.
Polymers (Basel). 2024 Nov 27;16(23):3329. doi: 10.3390/polym16233329.
In recent years, consumers have become increasingly interested in natural, biodegradable and eco-friendly composites. Eco-friendly composites manufactured using natural reinforcing filling materials stand out with properties such as cost effectiveness and easy accessibility. For these reasons, in this research, a composite workpiece was specially manufactured using eco-friendly jute fibers. Two cost-effective cutting tools were specially produced to ensure high-quality machining of this composite workpiece. One of these specially manufactured cutting tools was subjected to DC&T (deep cryogenic treatment and tempering) processes to improve its performance. At the end of the research, when the lowest and highest Fd (delamination factor) values obtained with DC&T-T1 and T1 cutting tools were compared, it was observed that 5.49% and 6.23% better results were obtained with the DC&T-T1 cutting tool, respectively. From the analysis of the S/N (signal-to-noise) ratios obtained using Fd values, it was found that the most appropriate machining parameters for the composite workpiece used in this investigation were the DC&T-T1 cutting tool, a 2000 rev/min spindle speed and a 100 mm/min feed rate. Through ANOVAs (analyses of variance), it was discovered that the most significant parameter having an impact on the Fd values was the spindle speed, with a rate of 53.01%. Considering the lowest and highest Ra (average surface roughness) values obtained using DC&T-T1 and T1 cutting tools, it was seen that 19.42% and 16.91% better results were obtained using the DC&T-T1 cutting tool, respectively. In the S/N ratio analysis results obtained using Ra values, it was revealed that the most appropriate machining parameters for the composite workpiece used in this investigation were the DC&T-T1 cutting tool, a 2000 rev/min spindle speed and a 100 mm/min feed rate. In the ANOVAs, it was revealed that the most significant parameter having an effect on the Ra values was the feed rate at 37.86%.
近年来,消费者对天然、可生物降解和环保型复合材料越来越感兴趣。使用天然增强填充材料制造的环保型复合材料因其成本效益和易于获取等特性而脱颖而出。基于这些原因,在本研究中,专门使用环保型黄麻纤维制造了一个复合工件。特别生产了两种具有成本效益的切削刀具,以确保对该复合工件进行高质量加工。其中一种专门制造的切削刀具经过了深冷处理和回火(DC&T)工艺以提高其性能。在研究结束时,将使用DC&T-T1和T1切削刀具获得的最低和最高分层因子(Fd)值进行比较时,发现使用DC&T-T1切削刀具分别获得了5.49%和6.23%的更好结果。通过对使用Fd值获得的信噪比(S/N)进行分析,发现本研究中使用的复合工件最合适的加工参数是DC&T-T1切削刀具、2000转/分钟的主轴转速和100毫米/分钟的进给速度。通过方差分析(ANOVAs)发现,对Fd值影响最大的参数是主轴转速,占比53.01%。考虑使用DC&T-T1和T1切削刀具获得的最低和最高平均表面粗糙度(Ra)值,发现使用DC&T-T1切削刀具分别获得了19.42%和16.91%的更好结果。在使用Ra值获得的信噪比分析结果中,表明本研究中使用的复合工件最合适的加工参数是DC&T-T1切削刀具、2000转/分钟的主轴转速和100毫米/分钟的进给速度。在方差分析中发现,对Ra值有影响的最显著参数是进给速度,占37.86%。