Kuo Chil-Chyuan, Li Ding-Yang, Lin Zhe-Chi, Kang Zhong-Fu
Department of Mechanical Engineering, Ming Chi University of Technology, No. 84, Gungjuan Road, New Taipei City 243, Taiwan.
Research Center for Intelligent Medical Devices, Ming Chi University of Technology, No. 84, Gungjuan Road, New Taipei City 243, Taiwan.
Polymers (Basel). 2021 Nov 26;13(23):4126. doi: 10.3390/polym13234126.
In recent years, polymer gears have gradually become more widely employed in medium or heavy-duty conditions based on weight reduction in transmission systems because of low costs and low noise compared to metal gears. In the current industry, proposing a cost-effective approach to the manufacture of polymer gears is an important research issue. This paper investigates the wear performance of polymer gears fabricated with eight different kinds of materials using differential pressure vacuum casting and additive manufacturing techniques. It was found that both additive manufacturing and differential pressure vacuum casting seem to be an effective and cost-effective method for low-volume production of polymer gears for industrial applications. The gate number of one is the optimal design to manufacture a silicone rubber mold for differential pressure vacuum casting since the weld line of the polymer is only one. Polyurethane resin, 10 wt.% glass fiber-reinforced polylatic acid (PLA), or 10 wt.% carbon fiber-reinforced PLA are suggested for manufacturing gears for small quantity demand based on the deformation and abrasion weight percentage under process conditions of 3000 rpm for 120 min; epoxy resin is not suitable for making gears because part of the teeth will be broken during abrasion testing.
近年来,由于与金属齿轮相比成本低、噪音小,基于传动系统的减重需求,聚合物齿轮在中重型工况下的应用逐渐增多。在当前行业中,提出一种经济高效的聚合物齿轮制造方法是一个重要的研究课题。本文采用差压真空铸造和增材制造技术,研究了用八种不同材料制造的聚合物齿轮的磨损性能。结果表明,增材制造和差压真空铸造似乎都是工业应用中聚合物齿轮小批量生产的有效且经济高效的方法。对于差压真空铸造用的硅橡胶模具制造,单浇口数量是最优设计,因为聚合物的熔接线只有一条。基于3000转/分钟、120分钟工艺条件下的变形和磨损重量百分比,建议使用聚氨酯树脂、10重量%玻璃纤维增强聚乳酸(PLA)或10重量%碳纤维增强PLA来制造小批量需求的齿轮;环氧树脂不适合制造齿轮,因为在磨损测试过程中部分齿会断裂。