Gołębski Rafał, Boral Piotr
Department Technology and Automation, Czestochowa University of Technology, Al. Armii Krajowej 21, 42-200 Częstochowa, Poland.
Materials (Basel). 2021 May 28;14(11):2913. doi: 10.3390/ma14112913.
Classic methods of machining cylindrical gears, such as hobbing or circumferential chiseling, require the use of expensive special machine tools and dedicated tools, which makes production unprofitable, especially in small and medium series. Today, special attention is paid to the technology of making gears using universal CNC (computer numerical control) machine tools with standard cheap tools. On the basis of the presented mathematical model, a software was developed to generate a code that controls a machine tool for machining cylindrical gears with straight and modified tooth line using the multipass method. Made of steel 16MnCr5, gear wheels with a straight tooth line and with a longitudinally modified convex-convex tooth line were machined on a five-axis CNC milling machine DMG MORI CMX50U, using solid carbide milling cutters (cylindrical and ball end) for processing. The manufactured gears were inspected on a ZEISS coordinate measuring machine, using the software Gear Pro Involute. The conformity of the outline, the tooth line, and the gear pitch were assessed. The side surfaces of the teeth after machining according to the planned strategy were also assessed; the tests were carried out using the optical microscope Alicona Infinite Focus G5 and the contact profilographometer Taylor Hobson, Talysurf 120. The presented method is able to provide a very good quality of machined gears in relation to competing methods. The great advantage of this method is the use of a tool that is not geometrically related to the shape of the machined gear profile, which allows the production of cylindrical gears with a tooth and profile line other than the standard.
加工圆柱齿轮的传统方法,如滚齿或圆周凿削,需要使用昂贵的专用机床和专用刀具,这使得生产无利可图,尤其是在中小批量生产中。如今,人们特别关注使用配备标准廉价刀具的通用数控(计算机数控)机床制造齿轮的技术。基于所提出的数学模型,开发了一种软件,用于生成控制机床的代码,以便使用多道次加工方法加工具有直齿和修正齿线的圆柱齿轮。在一台五轴数控铣床DMG MORI CMX50U上,使用整体硬质合金铣刀(圆柱形和球头铣刀)加工了由16MnCr5钢制成的、具有直齿线和纵向修正凸-凸齿线的齿轮。在蔡司坐标测量机上,使用Gear Pro Involute软件对制造的齿轮进行检测。评估了轮廓、齿线和齿轮节距的一致性。还对按计划策略加工后的齿侧面进行了评估;测试使用了光学显微镜Alicona Infinite Focus G5和接触轮廓仪泰勒·霍普森Talysurf 120进行。与竞争方法相比,所提出的方法能够提供质量非常好的加工齿轮。该方法的一大优点是使用了一种在几何形状上与加工齿轮轮廓形状无关的刀具,这使得能够生产出具有非标准齿形和轮廓线的圆柱齿轮。