不同成熟度莲蓬组织力学特性试验
作者单位:

华中农业大学工学院

基金项目:

湖北省农机装备补短板核心技术应用攻关项目;国家特色蔬菜产业技术体系专项资助项目


Experiments on the mechanical properties of lotus seedpods tissues at different maturity
Author:
Affiliation:

College of Engineering, Huazhong Agricultural University

Fund Project:

Hubei Province Agricultural Machinery Equipment repair Board core technology application Research Project; Special Funding Project of National Characteristic Vegetable Industry Technology System

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    摘要:

    为了探究鲜莲蓬破蓬脱粒方式,以实现高效低损机械化莲籽脱蓬,该研究以太空莲为研究对象,对不同成熟度莲蓬开展了含水率、外观特性及力学特性试验研究,重点探究了剪切、拉伸以及穿刺三种加载方式下莲蓬组织的破坏规律。结果表明,莲蓬中莲籽含水率最高,莲蓬表皮含水率最低,且随着莲蓬含水率降低,莲蓬表皮含水率下降最明显;莲蓬表皮剪切与拉伸表现为明显各向异性,加载方式对剪切及拉伸破裂力影响较大;随着成熟度的增加,莲蓬表皮横剪破裂力与轴向拉伸破裂力逐渐增大,纵剪破裂力与横向拉伸破裂力无明显变化;加载速度对莲蓬表皮剪切及拉伸破裂力无显著影响;纤维组织完熟期平均拉伸破裂力较大,乳熟期与蜡熟期平均拉伸破裂力相差不大,加载速度对纤维组织拉伸破裂力无显著影响;莲蓬蓬面与表皮穿刺破坏不受各向异性的影响,随着成熟度的增加,蓬面穿刺破裂力逐渐减小,表皮穿刺破裂力逐渐增大;随着探头直径的增大,蓬面穿刺破裂力与表皮穿刺破裂力均增大;表皮加载破裂力影响为加载方式>成熟度>加载速度;综合上述力学特性分析结果可知,可先施加穿刺载荷,再施加拉伸破裂力实现撕扯式破蓬。上述研究将为鲜食莲籽剥蓬脱粒机具的设计提供理论依据。

    Abstract:

    In order to explore the appropriate method of breaking and threshing of fresh lotus seedpods, and achieve high efficiency and low damage mechanical lotus seed dewatering. The space lotus was taken as the research object in this study. The moisture content, appearance characteristics and mechanical properties of lotus seedpods with different maturity were carried out, especially focusing on the mechanical properties under shear, tensile and puncture loading method. The damage law of lotus seedpod tissue under different loading conditions were compared and analyzed. The results showed that the moisture content of lotus seeds was the highest in the lotus seed tissue, while the moisture content of the lotus seed epidermis was the lowest. Moreover, as the moisture content decreased, the moisture content of the lotus seed epidermis decreased the most significantly. Comparing the milk ripening period and wax ripening period, the appearance of lotus pods and seeds are fuller during the fully ripe period, with gaps appearing between the seeds and tissues. The shear and tensile properties of the lotus seedpods epidermis were obviously anisotropic, and the external loading mode had a significant impact on the shear and tensile rupture force. With the increase of maturity, the transverse shear rupture force and axial tensile rupture force of the epidermis increased gradually, while the longitudinal shear rupture force and transverse tensile rupture force of the epidermis had no obvious change. The loading speed had no significant effect on the shear and tensile rupture force of the epidermis. The average tensile rupture force of fiber tissues was larger at ripening stage, and there was no significant difference between milk ripening stage and wax ripening stage, and the loading speed had no significant effect on the tensile rupture force. Epidermal puncture damage of lotus seedpod was not affected by epidermal anisotropy. With the increase of maturity, the puncture rupture force of lotus seedpod decreased gradually, while the rupture force of epidermal puncture increased gradually. With the increase of the diameter of the probe, the rupture force of surface puncture and epidermal puncture increased. The loading method had the greatest influence on the loading rupture force of the epidermis, followed by maturity, and the least was loading speed. Different maturity of lotus seed epidermis could achieve less damage under external load under longitudinal shear or transverse stretching, but its anisotropic characteristics make it not universal when designing the machine. After comprehensive analysis of the three loading method, the universal mode of breaking the lotus seedpod was determined, that was, the puncture loading was applied first to destroy the lotus seed, the damage was achieved with less destructive power, and then the tensile cracking force was applied to achieve the efficient tearing of the lotus seed. The above research will provide theoretical basis for the design of fresh lotus seed peeling and threshing machine.

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  • 收稿日期:2024-12-11
  • 最后修改日期:2025-03-06
  • 录用日期:2025-03-11
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