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Information Journal Paper

Title

In-transit vibration damage to olive fruit

Pages

  31-39

Abstract

 The in-transit vibrations caused by uneven roads have a significant effect on mechanical damage of agricultural products. Olive (Olea europaea L. ) fruit is one of the sensitive fruits to mechanical bruising. In this study, the effects of frequency and acceleration of simulated in-transit-vibration using a vibrating table were investigated on mechanical damage of two olive cultivars. The experiments were conducted using a factorial experiment in a completely randomized design with 3 replications. The factors included vibration accelerations (0. 3g, 0. 5g and 0. 7g), vibration frequencies (5, 7. 5 and 10 Hz) and cultivars (Conservolea and Roghani). The effects of frequency and acceleration on the mechanical damage of olive fruit were significant at probability level of 1%. Increasing vibration frequency and acceleration led to first increase and then decrease in mechanical damage. The effect of cultivar on mechanical damage was not significant. The frequency of 7. 5 Hz had the most mechanical damage for both cultivars; therefore, it should be controlled during transportation. The combination of 7. 5 Hz and 0. 5g for Roghani and 7. 5 Hz and 0. 7g for Conservolea caused the most mechanical damage to the fruit.

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  • Cite

    APA: Copy

    Kargarpour, hoda, Tavakoli hashjin, Taymor, HEMMAT, ABBAS, & GHOBADIAN, BARAT. (2019). In-transit vibration damage to olive fruit. JOURNAL OF RESEARCHES IN MECHANICS OF AGRICULTURAL MACHINERY, 7(2 (13) ), 31-39. SID. https://sid.ir/paper/270439/en

    Vancouver: Copy

    Kargarpour hoda, Tavakoli hashjin Taymor, HEMMAT ABBAS, GHOBADIAN BARAT. In-transit vibration damage to olive fruit. JOURNAL OF RESEARCHES IN MECHANICS OF AGRICULTURAL MACHINERY[Internet]. 2019;7(2 (13) ):31-39. Available from: https://sid.ir/paper/270439/en

    IEEE: Copy

    hoda Kargarpour, Taymor Tavakoli hashjin, ABBAS HEMMAT, and BARAT GHOBADIAN, “In-transit vibration damage to olive fruit,” JOURNAL OF RESEARCHES IN MECHANICS OF AGRICULTURAL MACHINERY, vol. 7, no. 2 (13) , pp. 31–39, 2019, [Online]. Available: https://sid.ir/paper/270439/en

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