首页> 外文会议>International Conference on Frontiers in Automobile and Mechanical Engineering >EXPERIMENTAL INVESTIGATION AND TAGUCHI OPTIMISATION OF DRILLING PROPERTIES ON TEAK WOOD REINFORCED EPOXY RESIN
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EXPERIMENTAL INVESTIGATION AND TAGUCHI OPTIMISATION OF DRILLING PROPERTIES ON TEAK WOOD REINFORCED EPOXY RESIN

机译:柚木加固环氧树脂钻井性能实验研究与Taguchi优化

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The drilling properties of teak reinforced epoxy resin composite are explored in this work. The thrust force and temperature during the drilling process was found and optimised. Nine holes were drilled in accordance with L9 orthogonal array on Medium Density Fibre board and Teak wood reinforced epoxy composite board and the thrust force and temperature induced during drilling is measured. Drilling experiments were conducted using CNC Vertical drilling machine and the thrust force was measured using dynamometer and temperature using infra-red thermometer. The experiments were conducted with varying levels of spindle speed and feed rate and optimised using Taguchi optimisation. It was observed that higher thrust and temperature were observed while drilling teak wood composite due to the high mechanical strength of teak wood. The hard and brittle properties of the resin seemed to be more pronounced in the composite. The experimental results were optimised to find the best combination of input parameters for reduced thrust and temperature. When speed increases, thrust force decreases and temperature increases. When feed increases, thrust force increases and temperature decreases. Experimental findings encouragesto use teak wood reinforced epoxy resin as a substitute for the traditionally used Medium Density Fibre Board. The percentage of mixing of teak dust can be increased with various resin combinations to arrive at the best suitable combination for obtaining optimal mechanical properties.
机译:在这项工作中探讨了柚木增强环氧树脂复合材料的钻孔性能。发现并优化了钻井过程中的推力和温度。根据中密度纤维板上的L9正交阵列钻出九个孔,并测量钻孔中的柚木木材增强环氧树脂复合板和钻孔期间引起的推力和温度。使用CNC垂直钻孔机进行钻井实验,并使用Infra-Red温度计使用测功机和温度测量推力。通过不同水平的主轴速度和进料速率进行实验,并使用Taguchi优化优化。观察到,由于柚木木材的高机械强度,观察到钻孔木质复合材料较高的推力和温度。树脂的硬质和脆性性质似乎在复合材料中更加明显。优化实验结果,以找到降低推力和温度的输入参数的最佳组合。当速度增加时,推力降低和温度升高。当进料增加时,推力力增加和温度降低。实验结果鼓励使用柚木木增强环氧树脂作为传统使用的中密度纤维板的替代品。通过各种树脂组合可以增加柚木灰尘的混合百分比,以获得最佳合适的组合,以获得最佳的机械性能。

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