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   内啮合 在 金属学及金属工艺 分类中 的翻译结果: 查询用时:0.344秒
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The design of an internal toothing gear shaping cutter can be summed up to a multi—target optimization problem. A mathematic model for optimization is established. Meanwhile a knowledge system including knowledge base, data base and equation base, etc. and ratiocination device for designing the cutter are set up by using the expert system theory. In this paper the optimum design of internal toothing gear shaping cutters by the aid of expert system is discussed.

把内齿轮插齿刀的设计归结为一个多目标的优化问题,建立了优化的数学模型。利用专家系统理论,建立了内插齿刀设计的知识系统(包括知识库、数据库、公式库等)和推理机等,探讨了用专家系统技术解决内啮合插齿刀的优化设计问题。

According to the measurement results of involute planet gear decelerator made by Japan, the influences of gear knife modifieation eodffieient to planet gear transirnission in built—in point processing, especially transition curve interference in internal engage pair, and tip circle diameter cut are analysed. The resuits indicate that if modification coefficient of a gear knife is controlled properly, and even though tooth depth of internal gear is decreased, "transition curve interference" between internal gear...

According to the measurement results of involute planet gear decelerator made by Japan, the influences of gear knife modifieation eodffieient to planet gear transirnission in built—in point processing, especially transition curve interference in internal engage pair, and tip circle diameter cut are analysed. The resuits indicate that if modification coefficient of a gear knife is controlled properly, and even though tooth depth of internal gear is decreased, "transition curve interference" between internal gear tip and planet gear root will not take place in involute planet gear transimission with standard gear transimission, and modification coefficient of a gear knife will only a little influence gear tip circle diameter cut.

根据对日本渐开线行星齿轮减速机的测绘结果,分析、计算了插齿加工中插齿刀的变位系数对行星齿轮传动,特别是内啮合副中的“过渡曲线干涉”的影响,以及对被切齿轮齿顶圆直径的影响。结果表明,在渐开线行星齿轮传动中采用标准齿轮传动时,只要适当控制插齿刀的变位系数,即使不减小内齿轮的齿高,也不会发生内齿轮齿顶与行星轮齿根的“过渡曲线干涉”;插齿刀的变位系数对被切齿轮的齿顶圆直径影响也不大。

It introduces the state-of-the-art of inner meshed gear bonning technology and application future.Development of the technology is brought out by outer meshed technology.The successfully developed gear type diamond roller is the key that a breakthrough is been made at the inner meshed gear bonning.With help of the roller,the machining accuracy and productivity of gears are greatly improved. In the article,principle,technical features and application in production of the technology are introduced.The technology...

It introduces the state-of-the-art of inner meshed gear bonning technology and application future.Development of the technology is brought out by outer meshed technology.The successfully developed gear type diamond roller is the key that a breakthrough is been made at the inner meshed gear bonning.With help of the roller,the machining accuracy and productivity of gears are greatly improved. In the article,principle,technical features and application in production of the technology are introduced.The technology has well improved the economic production of gears with middle module and accuracy as high as 7 grade as well as steped gear.

内啮合珩齿工艺是在外啮合技术的带动下发展起来的。该技术取得突破性进展的关键是由于齿轮式金刚石滚轮的研制成功,这有利于大幅度提高了齿轮加工精度和生产率。文章详细介绍了内啮合珩齿的原理,技术特点和生产应用。该项工艺能较好地解决中等模数、7级精度和双联齿轮的经济批量生产。

 
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