Static and Dynamic Friction Coefficients for Nonpareil Almond Variety on Various Surfaces

Yazarlar

Elçin Yeşiloğlu Cevher
Hüseyin Sauk
Gürkan Alp Kağan Gürdil

Referanslar

Ajay A, KR Reddy & AA Kumar. 2021. Study of Physical Properties of Zea mays in the Development of Seed Metering Unit. International Journal of Agri¬culture, Environment and Biotechnology, 14(2), 159-163.

Bilgin NA & A Mısırlı.2022 Nonpareil Badem Çeşidinde Bazı Özelliklerin İliş¬kilendirilmesi: Demirci İlçesi Örneği. Bahçe, 51(1), 21-27.

Coscuner Y & A Gokbudak. 2016. Dimensional specific physical properties of fan palm fruits, seeds and seed coats (Washingtonia robusta). International Agrophysics, 30(3).

Chukwu M, CS Nwakodo & M O Iwuagwu. 2018. Some physical properties of groundnut (Arachis hypogaea Linn) seeds: A review. Available at SSRN 3517529.

Dhurve P & VK Arora. 2022. Investigation of geometric and gravimetric pro¬perties of pumpkin seeds (Cucurbita maxima) under tray drying. Materials Today: Proceedings, 59, 437-441.

Gharibzahedi SMT, SM Mousavi, M Hamedi, & F Khodaiya,. 2013. Enginee¬ring characterization of Persian walnut and its kernel (Juglans regia L.) for obtaining high quality produce. Quality Assurance and Safety of Crops & Foods, 5(2), 145-156

Esgici R, FG Pekitkan, E Güzel & A Sessiz. 2018. Friction Coefficients For Gun¬delia Tournefortii Seed on Various Surfaces. XIX. In World Congress of CIGR (Commission Internationale du Génie Rural)“Sustainable Life for Children (Vol. 22, p. 25).

FAO, 2020. Crop production statistics. www.fao.gov. Accessed 01.09.2022.

Fos’hat M, V Etemad, SMT Gharibzahedi & M Ghahderijani. 2011. Physical, Mechanical and Aerodynamic Properties of Acorn (‘Quercus suber’L.) as Potentials for Development of Processing Machines. Australian Journal of Crop Science, 5(4), 473-478.

Kaliniewicz Z, P Markowski, A Anders & K Jadwisieńczak. 2015. Frictional properties of selected seeds. Technical Sciences/University of Warmia and Mazury in Olsztyn.

Karaj S, RM Huaitalla & J Müller. 2008. Physical, mechanical and chemical properties of Jatropha curcas L. seeds and kernels. In Proceedings of the Conference on International Agricultural Research for Development. Stuttgrant, Germany (pp. 7-9).

Karatay H, A Şahin & A Aslan. 2014. Determining seed storage proteins of some almond (Prunus dulcis (Mill.) DA Webb.) genotypes distributed in East and Southeast of Turkey. PROGRESS IN NUTRITION, 16(2).

Massantini R & MT Frangipane. 2022. Progress in Almond Quality and Sensory Assessment: An Overview. Agriculture, 12(5), 710.

Mohsenin NN. 1980. Physical properties of plant and animal materials. Gordon and Breach Science Publishers. Vol 1.New York, USA

Obi OF, CE Ijere & ME Okechukwu. 2018. Determination of physical and ae¬rodynamic characteristics of African olive (Canarium Schweinfurthii) nut. Agricultural Engineering International: CIGR Journal, 20(3), 172-179.

Pliestic S, N Dobricevic, D Filipovic & Z Gospodaric. 2006. Physical properties of filbert nut and kernel. Biosystems engineering, 93(2), 173-178.

Sangamithra A, JS Gabriela, RS Prema, K Nandini, K Kannan, S Sasikala& P Suganya. 2016. Moisture dependent physical properties of maize kernels. International Food Research Journal, 23(1), 109.

Shafaei, S. M., & Kamgar, S. (2017). A comprehensive investigation on static and dynamic friction coefficients of wheat grain with the adoption of statistical analysis. Journal of Advanced Research, 8(4), 351-361.

Visvanathan R, PT Palanisamy, L Gothandapani & VV Sreenarayanan. 1996. Physical properties of neem nut. Journal of Agricultural Engineering Re¬search, 63(1), 19-25.

Yıldız T & EY Cevher. 2022. Some Mechanical Properties of Chestnut in Re¬lation to Product Processing and Equipment Design. Turkish Journal of Agriculture-Food Science and Technology, 10(8), 1565-1570.

Gelecek

23 Ocak 2023

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