首页> 外文期刊>Lasers in Manufacturing and Materials Processing >Multi-objective Optimization of Kerf-taper and Surface-roughness Quality Characteristics for Cutting-operation On Coir and Carbon Fibre Reinforced Epoxy Hybrid Polymeric Composites During CO_2-Pulsed Laser-cutting Using RSM
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Multi-objective Optimization of Kerf-taper and Surface-roughness Quality Characteristics for Cutting-operation On Coir and Carbon Fibre Reinforced Epoxy Hybrid Polymeric Composites During CO_2-Pulsed Laser-cutting Using RSM

机译:基于CO_2脉冲激光切割过程中COR和碳纤维增强环氧混合聚合物复合材料的CO_2脉冲激光切割过程中CORF锥度和表面粗糙度质量特征的多目标优化

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Current research focuses on optimizing various quality characteristics for kerf geometry generated through laser cutting of Coir fibre/carbon fibre/epoxy resin hybrid composite adjacent to straight cut profile employing pulsed CO2 laser system. The Kerf taper (KT) and the Surface roughness (SR) are the main quality parameters discussed. Dependent on significant process parameters, namely gas pressure, cutting speed, pulse frequency and pulse width predictive models were developed. In accordance with Taguchi's L9 orthogonal array (OA), the cutting trials are designed. Process-parametric optimization was performed using Response Surface Methodology (RSM). Furthermore, experiments were performed to obtain experimental data for the analysis of cut quality features. The impact of the input variables on the response characteristics is also explored. The morphological characterizations have been performed to analysis the effect of machining-variables and cut-quality for the top and bottom kerf widths with various laser cutting variables in the pulse laser-cutting of Coir-fibre/carbon-fibre/epoxy-resin hybrid composite. For SR and KT, the developed second order surface response model was found very successful. The optimal levels of cutting variables for KT are established at Gas pressure-6 N/mm2, pulse width-2.04 ms, cutting speed-8.01 mm/s, pulse frequency-15 Hz, for sample A1, Gas pressure-5.47 N/mm2, pulse width-2.5 ms, cutting speed-8.81 mm/s, pulse frequency-8.43 Hz, for sample A2, Gas pressure-3.85 N/mm2, pulse width-1.5 ms, cutting speed-9.06 mm/s, pulse frequency-5 Hz, for sample A3 additionally for SR Gas pressure-2 N/mm2, pulse width-1.5 ms, cutting speed-7 mm/s, pulse frequency-5 Hz, for sample A1, Gaspressure-2.36 N/mm2, pulse width-1.5 ms, cutting speed-7 mm/s, pulse frequency-15 Hz, for sample A2, Gaspressure-6 N/mm2, pulse width-1.5 ms, cutting speed-11 mm/s, pulse frequency-8.73 Hz, for sample A3. Regression results and linear and square impact of laser cutting variables have been revealed to be important to validate the model.
机译:目前的研究侧重于优化通过激光切割的基因纤维/碳纤维/环氧树脂树脂混合复合材料的激光切割而优化各种质量特性,该纤维/环氧树脂混合复合材料与采用脉冲CO2激光系统的直切轮廓相邻。 Kerf锥度(kt)和表面粗糙度(sr)是讨论的主要质量参数。依赖于显着的工艺参数,开发了气体压力,切割速度,脉冲频率和脉冲宽度预测模型。根据Taguchi的L9正交阵列(OA),设计了切割试验。使用响应表面方法(RSM)执行处理参数优化。此外,进行实验以获得用于分析切割质量特征的实验数据。还探讨了输入变量对响应特性的影响。已经进行了形态学表征,以分析加工变量和底部Kerf宽度的效果,在助长纤维/碳纤维/环氧树脂杂种复合材料的脉冲激光切割中使用各种激光切割变量。对于SR和KT,发现开发的二阶表面响应模型非常成功。 KT的最佳切割变量水平在气体压力-6N / mm2,脉冲宽度-2.04ms,切割速度-8.01mm / s,脉冲频率-15Hz,用于样品A1,气体压力-5.47N / mm2 ,脉冲宽度-2.5ms,切割速度-8.81mm / s,脉冲频率-8.43 Hz,用于样品A2,气体压力-3.85 n / mm2,脉冲宽度-1.5ms,切割速度-9.06 mm / s,脉冲频率 - 5 Hz,对于样品A3,用于SR气体压力-2N / mm2,脉冲宽度-1.5ms,切割速度-7mm / s,脉冲频率-5 Hz,用于样品A1,气压-2.36n / mm2,脉冲宽度-1.5 ms,切割速度-7mm / s,脉冲频率-15 Hz,样品A2,气压-6 n / mm2,脉冲宽度-1.5ms,切割速度-11mm / s,脉冲频率-8.73 hz,为样本A3。对激光切割变量的回归结果和线性和平方冲击据验证了验证模型很重要。

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