Lu Yanjun, Chen Fumin, Wu Xiaoyu, Zhou Chaolan, Lou Yan, Li Liejun
Guangdong Provincial Key Laboratory of Micro/Nano Optomechatronics Engineering, College of Mechatronics and Control Engineering, Shenzhen University, Shenzhen 518060, China.
School of Mechanical and Automotive Engineering, South China University of Technology, Guangzhou 510640, China.
Micromachines (Basel). 2019 Apr 16;10(4):253. doi: 10.3390/mi10040253.
Precise micro-grinding machining was proposed to fabricate regular and controllable micro-grooved array structures on the surface of mold cores to realize the mass production and manufacturing of micro-structured polymer components by micro injection molding in this paper. First, the 3D topographies and section profiles of micro-ground mold cores and micro-formed polymers with different micro-structure parameters were presented. Then, the surface roughness of mold cores and polymers were compared. Next, the relationships between machining accuracy of mold core ground by micro-grinding and filling rates of micro-structured polymer formed by micro injection molding were investigated. Finally, the influences of micro injection molding parameters on the filling rate of micro-structures polymer were investigated. It is shown that the micro-structured polymer can be effectively and rapidly fabricated using the proposed method. The experimental results indicate the highest form accuracy of the micro-grooved mold core and the filling rate of micro-structured polymer can reach to 4.05 µm and 99.30%, respectively. It is found that the filling rate of the micro-structured polymer roughly increased with increasing machining accuracy of the mold core. The injection pressure had the greatest influence on the filling rate of the injection formed polymer, while the melt temperature had the least influence.
本文提出采用精密微磨削加工在型芯表面制备规则且可控的微槽阵列结构,以实现通过微注塑成型大规模生产和制造微结构聚合物部件。首先,给出了具有不同微结构参数的微磨削型芯和微成型聚合物的三维形貌和截面轮廓。然后,比较了型芯和聚合物的表面粗糙度。接下来,研究了微磨削加工型芯的加工精度与微注塑成型微结构聚合物填充率之间的关系。最后,研究了微注塑成型参数对微结构聚合物填充率的影响。结果表明,采用所提方法可有效且快速地制备微结构聚合物。实验结果表明,微槽型芯的最高形状精度和微结构聚合物的填充率分别可达4.05 µm和99.30%。研究发现,微结构聚合物的填充率大致随型芯加工精度的提高而增加。注射压力对注射成型聚合物的填充率影响最大,而熔体温度影响最小。