Spina Roberto, Cavalcante Bruno
Dipartimento di Meccanica, Matematica e Management, Politecnico di Bari, 70125 Bari, Italy.
Istituto Nazionale di Fisica Nucleare (INFN)-Sezione di Bari, 70125 Bari, Italy.
Polymers (Basel). 2020 Oct 6;12(10):2288. doi: 10.3390/polym12102288.
This paper investigates the grinding process on unreinforced (PA66) and reinforced glass-fiber polyamide 6,6 (PA66 GF30) with AlO and SiC abrasive wheels. Both materials were ground by varying rotations, workpiece infeed speed, depth of cuts for sequential roughing/finishing steps. Dry and liquid coolant conditions were also considered during the grinding process to evaluate the effects on part quality. The surface roughness was used to assess the quality of the final products with several parameter combinations, identifying the induced process trends. The results show that at the end of the finishing step, the surface roughness was lower than 4 μm, attaining the lowest value of 1.34 μm for PA66 specimens. The analysis also suggested the choice of the AlO grinding wheel to reach the lowest values for both materials.
本文研究了使用氧化铝(AlO)和碳化硅(SiC)砂轮对未增强(PA66)和增强玻璃纤维聚酰胺6,6(PA66 GF30)进行磨削加工的过程。通过改变转速、工件进给速度以及顺序粗加工/精加工步骤的切削深度来对这两种材料进行磨削。在磨削过程中还考虑了干式和液体冷却剂条件,以评估其对零件质量的影响。使用表面粗糙度通过几种参数组合来评估最终产品的质量,确定所引发的加工趋势。结果表明,在精加工步骤结束时,表面粗糙度低于4μm,PA66试样达到了最低值1.34μm。分析还表明,选择氧化铝砂轮可使两种材料都达到最低值。