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Browsing by Author "F., Inel2"

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    INFLUENCE OF COEFFICIENT OF FRICTION ON THE PERFORMANCE OF PARALLEL GEARS
    (university of eloued جامعة الوادي, 2019-06-01) M., Aroudj1,; F., Inel2
    Gears performance is a very essential value that concluded the success of our system so researchers have worked hard to find mathematical relationships to calculate performance. Between these relationships we have the J.F. Debongnie method and the f.VILLE and VELEX method. In this work the yield of the parallel gears was calculated with the change of the modulus and the number of teeth using the J.F. Debongnie method and comparing them with the f.VILLE and VELEX method and associating them with the experimental results to be studied which is more close to the experimental results and the effect of the parameters selected in each method. After the comparison we found that the coefficient of friction the greatest impact on the performance whenever the lack of friction coefficient the greater the performance and the values of the J.F. Debongnie method higher than the values of the f.VILLE and VELEX method of the effect of the loss factor because it also affects the performance the greater the coefficient of loss whenever the performance.
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    STUDY AND DETERMINATION OF RATIONAL OPERATING RATIO FOR STUDY AND DETERMINATION OF RATIONAL OPERATING RATIO FOR STUDY AND DETERMINATION OF RATIONAL OPERATING RATIO FOR STUDY AND DETERMINATION OF RATIONAL OPERATING RATIO FOR STUDY AND DETERMINATION OF RATIONAL OPERATING RATIO FOR STUDY AND DETERMINATION OF RATIONAL OPERATING RATIO FOR STUDY AND DETERMINATION OF RATIONAL OPERATING RATIO FOR STUDY AND DETERMINATION OF RATIONAL OPERATING RATIO FOR STUDY AND DETERMINATION OF RATIONAL OPERATING RATIO FOR STUDY AND DETERMINATION OF RATIONAL OPERATING RATIO FOR STUDY AND DETERMINATION OF RATIONAL OPERATING RATIO FOR STUDY AND DETERMINATION OF RATIONAL OPERATING RATIO FOR STUDY AND DETERMINATION OF RATIONAL OPERATING RATIO FOR STUDY AND DETERMINATION OF RATIONAL OPERATING RATIO FOR STUDY AND DETERMINATION OF RATIONAL OPERATING RATIO FOR STUDY AND DETERMINATION OF RATIONAL OPERATING RATIO FOR STUDY AND DETERMINATION OF RATIONAL OPERATING RATIO FOR
    (university of eloued جامعة الوادي, 2020-05-01) M., Benmoussa1,; F., Inel2
    this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by In this paper, we have the percussive rotational drilling regime that is determined by combination of the rotational speed tool, combination of the rotational speed tool, combination of the rotational speed tool, combination of the rotational speed tool, combination of the rotational speed tool, combination of the rotational speed tool, combination of the rotational speed tool, combination of the rotational speed tool, combination of the rotational speed tool, combination of the rotational speed tool, combination of the rotational speed tool, combination of the rotational speed tool, combination of the rotational speed tool, combination of the rotational speed tool, the the axial forceaxial force axial force axial forceaxial force applied on the rockapplied on the rock applied on the rockapplied on the rock applied on the rock applied on the rock applied on the rock; the optimal the optimal the optimal

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