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A Rapid Manufacturing Method for Rectangular Splines Based on Laser Cutting and Welding

机译:基于激光切割和焊接的矩形花键快速制造方法

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In recent years, special-sized spline shafts and gears have been widely used in the trial production of new agricultural machinery in China. However, due to the high production cost and long development cycle of these common components, the development of new agricultural machinery has been affected. To solve these problems, this article proposes a method for rapid manufacturing of rectangular internal and external splines using a combination of laser cutting and welding. Through analysis of the weldshear strength of the internal splines, the extrusion strength of the spline tooth surfaces, and the extrusion and shear strength of the external spline pins, it was calculated that the threshold of the average diameter (dm) of the internal splines, commonly used in agricultural machinery, was dm ≥ 31.17 mm, and that of the external splines was dm ≥ 33.45 mm. The feasibility and reliability of the method were verified with two case studies using light and heavy load conditions. The light load case study was the splines of the power input shaft of the pickup platform of a peanut harvester, and the heavy load case study was the splines of the total power input shaft of a peanut no-till planter. The case studies indicated that under the light load conditions (average power of 1.13 kW, average torque of 64.1 N.m, average speed of 168.7 rpm, cumulative working time of 48 h, and harvested area of 46.4 ha) and heavy load conditions (average power of 89.36 kW, average torque of 1029.9 N.m, average speed of828.6 rpm, cumulative working time of 51.5 h, and planted area of 31.7 ha), no spline failure was observed, and the reliability was 100.0%. This article provides a technical reference for the rapid production of special-sized rectangular splines as single pieces or in small batches for trial production, which requires low processing accuracy, of new agricultural machinery products.
机译:近年来,特殊尺寸的花键轴和齿轮在我国新型农业机械的试制中得到了广泛应用。然而,由于这些常见部件的生产成本高、开发周期长,影响了新型农业机械的发展。为了解决这些问题,本文提出了一种结合激光切割和焊接快速制造矩形内外花键的方法。通过分析内花键的焊接剪切强度、花键齿面的挤压强度以及外花键销的挤压和剪切强度,计算出农业机械中常用的内花键平均直径(dm)的阈值为dm≥ 31.17 mm,外花键的直径为dm≥ 33.45毫米。通过两个轻载和重载情况下的实例研究,验证了该方法的可行性和可靠性。轻负载案例研究是花生收获机捡拾平台动力输入轴的花键,重负载案例研究是花生免耕播种机总动力输入轴的花键。案例研究表明,在轻载条件(平均功率1.13千瓦,平均扭矩64.1牛顿米,平均转速168.7转/分,累计工作时间48小时,收获面积46.4公顷)和重载条件(平均功率89.36千瓦,平均扭矩1029.9牛顿米,平均转速828.6转/分,累计工作时间51.5小时,种植面积31.7公顷)下,未观察到花键故障,可靠性为100.0%。本文为单件或小批量快速生产加工精度要求较低的新型农机产品专用矩形花键提供了技术参考。

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