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首页> 外文期刊>Journal of Composite Materials >Abrasive waterjet machining of Ti/CFRP/Ti laminate and multi-objective optimization of the process parameters using response surface methodology
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Abrasive waterjet machining of Ti/CFRP/Ti laminate and multi-objective optimization of the process parameters using response surface methodology

机译:使用响应表面方法的Ti / CFRP / TI层压材料加工Ti / CFRP / TI层压板的多目标优化

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摘要

In present work, abrasive waterjet machining has been used to machine adhesively bonded titanium-carbon fiber-reinforced plastics-titanium hybrid laminate with varying traverse speed, jet pressure, and stand-off distance. The effect of varying abrasive waterjet machining parameters on cut quality has been quantified by material removal rate, metal composite interface damage factor, taper ratio (T-r), and surface roughness (R-a). Response surface methodology along with central composite design has been used to analyze the influence of process parameters on output responses. Additionally, analysis of variance was performed to identify the significant parameters on the output responses. For better abrasive waterjet cut quality, the optimal values of process parameters obtained were 200 MPa jet pressure, 237.693 mm/min traverse speed, and 1 mm stand-off distance. The corresponding material removal rate, metal composite interface damage factor, taper ratio, and surface roughness are 5.388 mm(3)/s, 1.41, 1.16, and 3.827 mu m, respectively. Furthermore, validation tests have been performed with obtained optimal parameters that deliver satisfactory outcomes with an error of 5.35%, 3.07%, 2.29%, and 0.39% for material removal rate, metal composite interface damage factor, taper ratio, and surface roughness, respectively.
机译:在目前的工作中,磨料水射流加工已被用于机器粘接粘合的钛 - 碳纤维增强塑料 - 钛杂交层压板,具有不同的横向速度,喷射压力和脱扣距离。通过材料去除率,金属复合界面损伤因子,锥度(T-R)和表面粗糙度(R-A),改变磨料水射流加工参数的影响。响应面方法以及中央复合设计已被用于分析过程参数对输出响应的影响。另外,进行方差分析以识别输出响应的重要参数。为了更好的磨料水射流切割质量,获得的工艺参数的最佳值为200MPa喷射压力,237.693mm / min横向速度,1毫米脱扣距离。相应的材料去除率,金属复合界面损伤因子,锥度和表面粗糙度分别为5.388毫米(3)/ s,1.41,1.16和3.827 mu m。此外,已经使用获得的最佳参数进行了验证测试,其误差的误差为5.35%,3.07%,2.29%和0.39%,分别为材料去除率,金属复合界面损伤因子,锥度和表面粗糙度。

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