首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Active design and manufacture of face-milled spiral bevel gear by completing process method with fixed workpiece axis based on a free-form machine tool
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Active design and manufacture of face-milled spiral bevel gear by completing process method with fixed workpiece axis based on a free-form machine tool

机译:基于自由型机床的固定工件轴线完成工艺方法,主动设计与制造面部磨螺旋锥齿轮

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摘要

In the design and manufacture of face-milled spiral bevel gear, the completing process method has significant advantages, such as increased efficiency, cost reduction, machining accuracy improvement, and tooth strength enhancement. Since the intrinsic limitations of the cradle-type machine tool, we develop a mathematical model for the completing process method directly based on the free-form machine tool. It is applied directly to the free-form machine tool, eliminating the need for the equivalent conversion of machine settings from the cradle-type machine tool to the free-form machine tool, and taking advantage of the flexibility and freedom offered by the free-form machine tool. Thus, except the first-order and second-order parameters of the mean contact point of each pinion flank controlled by the existing methods, each point of the contact path on the frequently used drive-side flank of pinion can be guaranteed additionally simultaneously by this method. Furthermore, the workpiece axis linkage is dispensed with during the machining process, avoiding the error caused by poor motion accuracy of the workpiece shaft and the difficulty in its manufacture. The target tooth surface and tooth depth can be guaranteed simultaneously. Finally, the method is verified by tooth contact analysis (TCA), grinding test, and rolling test.
机译:在面铣螺旋锥齿轮的设计和制造中,精加工方法具有提高效率、降低成本、提高加工精度、提高齿面强度等显著优点。由于摇篮式机床固有的局限性,我们建立了一个直接基于自由形式机床的完成加工方法的数学模型。它直接应用于自由形式机床,无需将机床设置从摇篮式机床等效为自由形式机床,并利用自由形式机床提供的灵活性和自由度。因此,除了现有方法控制的每个小齿轮侧面的平均接触点的一阶和二阶参数外,该方法还可以同时保证小齿轮常用驱动侧侧面上的每个接触路径点。此外,在加工过程中省去了工件轴联动,避免了工件轴运动精度差造成的误差和制造难度。可以同时保证目标齿面和齿深。最后,通过齿面接触分析(TCA)、磨削试验和滚动试验对该方法进行了验证。

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