Events1st International Online Conference on Agriculture - Advances in Agricultural Science and Technology
Published
with-doi10.3390/IOCAG2022-12339 (registering DOI)
This submission belongs to the session 6. Agricultural Technology: State of the Art and Future Prospects of the event 1st International Online Conference on Agriculture - Advances in Agricultural Science and Technology
Published date
03 Mar, 2022
Academic Editor
author-avatarMassimo Cecchini
Citation
Biyu Chen, Xiulan Bao, Peng Dai, Yishu Li, Jincheng Mao, Crack Initiation Mechanism and Crack Analysis of Walnut, in Proceedings of 1st International Online Conference on Agriculture - Advances in Agricultural Science and Technology, 10 February–25 February 2022, MDPI: Basel, Switzerland, doi: 10.3390/IOCAG2022-12339
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Crack Initiation Mechanism and Crack Analysis of Walnut

Peng Dai 2
Yishu Li 2
1. College of Engineering, Huazhong Agricultural University, Wuhan 430070, China Key Laboratory of Agricultural Equipment in Mid-Lower Yangtze River, Wuhan 430070, China
2. College of Engineering, Huazhong Agricultural University, Wuhan 430070, China; Key Laboratory of Agricultural Equipment in Mid-Lower Yangtze River, Wuhan 430070, China
3. School of Mechanical and Electrical Engineering, Wuhan Institute of Technology, Wuhan 430073, China
Abstract

In order to achieve the complete separation of walnut shell and kernel, this paper aims to study the mechanical properties and cracking state of the shell surface of the Qingxiang walnut under unidirectional load. The goodness of fit (within 5%) of the spherical thin shell model was verified by the texture meter shell breaking experiment; A gradient decreasing distribution of shell stresses within the domain of load concentration forces was found by moment free theory and finite element simulation, and the internal forces are equal in all directions away from this domain; The fracture law of the shell surface along the grain was found by strength theory and solid fracture mechanics analysis; Finally, a walnut shell grasped by three-finger dexterous hand breaking experiment was designed to verify that the theoretical model in this paper is consistent with the actual walnut shell breaking state under unidirectional load, and the walnut cracks in the experiment are obvious, which is conducive to shell-kernel separation. The research results can provide a theoretical basis for the research and development of shell breaking machinery, and provide reference for the structural design and optimization of key components.

Keywords
walnut
broken shell
physical properties
crack
mechanical claws
Manuscript
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