A kind of logarithmic profile roller and manufacturing method
A roller and logarithmic technology, applied in the field of logarithmic profile rollers and manufacturing, can solve the problems of inconvenient processing, complex calculation, and large inspection workload, and achieve the effects of avoiding early failure, simple calculation, and convenient inspection.
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Embodiment 1
[0056] Example 1, please refer to image 3 , taking a bearing as an example, the effective length of the roller L we =47mm, the calculated Lundberg logarithmic equation is:
[0057]
[0058] Set convergence accuracy eps=1X10 -10 mm, the entire iterative process takes less than 1 second, and the fitted curve is as follows image 3 shown. After calculation, the optimal result is
[0059] m=0.86, c=20.21mm, R 1 =57160mm, R 2 =9276mm, f=2.963X10 -5 mm
Embodiment 2
[0060] Example 2, please refer to Figure 4 , in order to verify its versatility, taking another bearing as an example, the effective length of the roller Lwe=39mm, the calculated Lundberg logarithmic equation is:
[0061]
[0062] The fitted curve is as Figure 4 shown. After calculation, the optimal result is
[0063] m=0.88, c=17.16mm, R1=48685mm, R2=6684mm, f=1.656X10-5mm
[0064] from image 3 and Figure 4 It can be seen that the arc curve and the logarithmic curve are highly consistent. The fitted curve has the characteristics of a logarithmic curve, which is beneficial to the uniform stress distribution of the roller during the working process. In the two cases, the proportion m of the lengths of the two arcs after fitting is different, which is obviously different from the traditional design method. In the design of the modified line profile, the proportion of the end arc length of the bearing products produced by a specific manufacturer is generally is fixe...
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