首页> 外文会议>ASME international mechanical engineering congress and exposition >IMPROVEMENT OF LOADING CAPACITY OF INTERNAL SPUR GEAR WITH USING ASYMMETRIC TROCHOID PROFILE
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IMPROVEMENT OF LOADING CAPACITY OF INTERNAL SPUR GEAR WITH USING ASYMMETRIC TROCHOID PROFILE

机译:利用不对称的摆线齿廓改善内部毛刺齿轮的承载能力

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Today, with numerous advantages such as reduced sliding velocity and wear, higher transmission ratio, higher running efficiency etc., internal spur gears are used in several industrial applications. An internal gear is generated by pinion cutters towards inside of gear blank opposite of external gear. In this study, bending stress of internal spur gear with the asymmetric trochoid profile is investigated. Asymmetry is ensured by using pinion cutter has different tip radius value on its right and left side. This situation is allowed to use larger tip radius on one side. The limit value of tip radius is defined with taking into account cutter addendum height and interference possibility for the given pinion gear parameters. On the other side, asymmetry on the involute region is also examined. Firstly, a mathematical equation of pinion cutter is derived then points of internal gear are obtained by using coordinate transformation, differential geometry and gearing theory in MATLAB. Points of internal gear are exported to CATIA to realize the 3D design. Case studies are conducted for determining the relation between tip radius and pressure angle on bending stress separately with ANSYS program. According to preliminary results, using asymmetric trochoid profile reduces approximately 16% bending stress of internal spur gear.
机译:如今,内部正齿轮具有许多优势,例如降低的滑动速度和磨损,更高的传动比,更高的运行效率等,已在多种工业应用中使用。小齿轮刀具朝着与外齿轮相反的齿轮毛坯内部产生一个内齿轮。在这项研究中,研究了具有不对称次摆线轮廓的内部正齿轮的弯曲应力。通过使用在其左侧和右侧具有不同的尖端半径值的小齿轮切刀来确保不对称。这种情况允许在一侧使用较大的尖端半径。尖端半径的极限值是在考虑了小刀齿顶高度和给定小齿轮参数的干扰可能性的情况下定义的。另一方面,还检查了渐开线区域的不对称性。首先,推导了小齿轮刀具的数学方程,然后利用MATLAB中的坐标变换,微分几何和齿轮理论,获得了内齿轮的点。内齿轮的点导出到CATIA以实现3D设计。通过ANSYS程序分别进行案例研究,以确定尖端半径和压力角与弯曲应力之间的关系。根据初步结果,使用不对称次摆线轮廓可减少内部正齿轮的弯曲应力约16%。

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