Chaubey Sujeet Kumar, Jain Neelesh Kumar, Gupta Kapil
Department of Mechanical and Industrial Engineering Technology, University of Johannesburg, Johannesburg 2028, South Africa.
Discipline of Mechanical Engineering, Indian Institute of Technology Indore, Indore 453 552, India.
Micromachines (Basel). 2021 Oct 9;12(10):1230. doi: 10.3390/mi12101230.
Nowadays, size, weight, and durability are crucial factors in product development that draw the attention of many researchers and engineers towards research and innovation in the micromanufacturing area. This paper reports on the development of a lightweight aluminium gear of miniature size with a bore and hub using wire-assisted thermoelectric erosion machining (WTEM). The external spur gear was cut from 7075 aluminium alloy round stepped gear blank by WTEM using 0.25 mm brass wire. Further, the miniature gear was tested for various manufacturing quality parameters such as microgeometry, surface roughness, and microstructure, along with evaluating process productivity in terms of volumetric gear cutting speed To understand the mechanism of development of aluminium miniature gear, an investigation on the influence of WTEM parameters namely servo-voltage, pulse-on time, pulse-off time, and wire speed on surface roughness was conducted. A total of 18 gears were fabricated following Taguchi L (3) orthogonal array approach of design of experiments considering the randomization and replication. A typical average surface roughness value of 1.58 μm and manufacturing quality of DIN standard number 7 based on gear microgeometry were successfully achieved. Microscopic investigation revealed uniform and accurate tooth profiles, flank surfaces free from burrs and contaminants, and uniform microstructure that confirm the good performance characteristics of the developed lightweight miniature gear of aluminium. This investigation will add new results in the field as regards the development of lightweight microparts.
如今,尺寸、重量和耐用性是产品开发中的关键因素,吸引了许多研究人员和工程师关注微制造领域的研究与创新。本文报道了一种采用线辅助热电侵蚀加工(WTEM)工艺制造的、带有孔和轮毂的微型轻质铝齿轮的开发情况。外圆柱直齿轮由7075铝合金圆形阶梯齿轮坯料通过WTEM使用0.25毫米黄铜线切割而成。此外,对该微型齿轮进行了各种制造质量参数测试,如微观几何形状、表面粗糙度和微观结构,并从体积齿轮切削速度方面评估了加工生产率。为了解铝制微型齿轮的加工机理,研究了WTEM参数(即伺服电压、脉冲导通时间、脉冲关断时间和线速度)对表面粗糙度的影响。按照田口L(3)正交试验设计方法,考虑随机化和重复,共制造了18个齿轮。成功获得了典型平均表面粗糙度值1.58μm以及基于齿轮微观几何形状的DIN标准7级制造质量。微观观察显示齿形均匀且精确,齿侧面无毛刺和污染物,微观结构均匀,证实了所开发的轻质铝制微型齿轮具有良好的性能特性。这项研究将在轻质微零件开发领域增添新的成果。