Study on the Relationship between Crack Initiation and Crack Bifurcation in Walnut Shells Based on Energy

Author:

Man Xiaolan1,Li Long1,Zhang Hong123,Lan Haipeng123,Fan Xiuwen123,Tang Yurong123ORCID,Zhang Yongcheng123

Affiliation:

1. College of Mechanical Electrification Engineering, Tarim University, Alaer 843300, China

2. Key Laboratory of Modern Agricultural Engineering, Tarim University, Alaer 843300, China

3. Key Laboratory of Tarim Oasis Agriculture, Tarim University, Ministry of Education, Alaer 843300, China

Abstract

Clarifying the dissipated energy required for crack expansion is an effective way to control material crushing. Therefore, based on the material fracture probability model and fractal theory, the energy range required for crack extension was determined, and the morphology of the cracks was quantified. This study investigates the influence of walnut size on crack propagation characteristics; this includes its effects on the crack initiation threshold energy, representing resistance to crack initiation, and the crack bifurcation threshold energy, representing resistance to crack bifurcation. The results show that crack extension has a well-defined threshold energy below which cracks do not initiate or bifurcate. The size of walnuts significantly impacts crack propagation characteristics, showing that both crack initiation threshold energy and crack bifurcation threshold energy decrease with increasing walnut sizes. In addition, there is a positive correlation function between the crack initiation threshold energy and the crack bifurcation threshold energy. The experimental results can offer fresh insights into material fracture prediction and serve as a reference for numerical simulations.

Funder

Shishi Science and Technology Program

Bingtuan Science and Technology Program

Modern Agricultural Engineering Key Laboratory at the Universities of Education Department of Xinjiang Uygur Autonomous Region

Publisher

MDPI AG

Subject

Plant Science,Agronomy and Crop Science,Food Science

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