Natal'ya Vorozhcova, V. Makarov, A. Gorbunov, E. Kolganova
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引用次数: 0
摘要
工作目的是基于蜗轮蜗杆的有效模态和特性,对齿轮连续磨合齿轮磨削方法进行技术能力更新。调查方法以数学建模和规划实验为基础。使用最新的测试设备,在现代数控机床、工作台和工厂上进行了飞机圆柱齿轮和特殊样品的加工。坐标检测机KIM R-100“Klingelnberg”,轮廓仪MarSurf M300S“Mahr”,光学显微镜Axiovert 400MAT“Zeiss”,电子扫描显微镜Tescan Mira3“Tescan”,显微硬度计Micro Met 5104“Buehler”,x射线衍射仪Xstress Robot“StresstechOY”,巴克豪森数字机头分析仪Rollscan 350“StresstechOY”,工厂APOON上知名和发展的技术。研究成果与新颖性。特殊的策略和切削模式,在所需的组合磨光蜗杆的特性允许确保齿形粗糙度Ra=0.089 mkm,保持高精度的环齿(齿形误差Fa=1.6mkm),而无需齿轮珩磨,从而提高生产率。齿轮表面层的质量研究为该方法在飞机齿轮表面的应用提供了依据。
TECHNOLOGICAL CAPACITY UPDATING OF CONTINUOUS RUN-IN GEAR GRINDING METHOD
The work purpose consists in the technological capacity updating of the method for cog-wheel continuous run-in gear grinding based on the purpose of efficient modes and characteristics of the worm disk.
The investigation methods are based on mathematical modeling and planning experiments. Machining aircraft cylindrical cog-wheels and special samples was carried out on modern NC machines, benches and plants with the use of up-to-date test equipment: coordinate inspection machine KIM R-100 “Klingelnberg”, profile meter MarSurf M300S “Mahr”, optical microscope Axiovert 400MAT “Zeiss”, electronic scanning microscope Tescan Mira3 “Tescan”, micro-hardness gage Micro Met 5104 “Buehler”, X-ray diffractometer Xstress Robot “Stresstech OY”, Barkhausen digital nose analyzer
Rollscan 350 “StresstechOY”, plant APOON on the well-known and developed techniques.
The research results and novelty. Special strategy and cutting modes at the required characteristics of the combined polish-grinding worm allow ensuring gear profile roughness Ra=0.089 mkm keeping high accuracy of a ring gear (gear profile error Fa=1.6mkm) without gear honing thereby increasing productivity. The quality researches of gear surface layer give grounds for the application of the method for aircraft cog wheels.