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Content available remote Analysis of the Pitch Circle Runout in Involute Splined Connections
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The paper presents measuring methods of the pitch circle runout of involute splines and determination of the roundness deviation of the pitch circle from its runout results. The analysis of the influence of the runout on the tooth thickness, pitch and profile deviations is also shown. It was pointed out that the most characteristic roundness deviation is a pitch circle ovality of internal involute spline. This type of deviation often occurs for the parts with high hardness of material. The ovality is the reason for unequal contact depth of teeth and irregularity of interference or backlash.
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Content available remote Analysis of the Pitch Deviation in Involute Splined Connections
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EN
The paper presents the measurement results of the pitch deviation for the selected involute splined connections applied in aircraft engines. The authors have stated that there is a lack of exact information on a load distribution in involute splined connections with this type of manufacturing error. Hence, the analysis of the influence of the pitch deviation in a two-dimensional model on the load distribution and stress state is presented. This model gives us an information on the load distribution coefficient in a cross-section of the involute splined connection which depends on torque, tooth pair stiffness and manufacturing accuracy of a part, ie. the pitch deviation.
3
Content available remote The Development of Axial Symmetrical Splined Connections Design
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In this article there are presented problems connected to shape and positioning deviations of involute splined connections. Basing on carried out researchers of roundness and cylindricity deviations of spline shafts there were made some simulations of different combinations of shape deviations. For a connection of ideal internal spline with external spline having simulated particular shape deviation there was carried out design analysis of the splined connections which pointed out the influence of shape deviations on the feature of that connection.
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