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面向自动嫁接成型装置的油茶苗木力学特性

杨春梅 张卫国 单重阳 吴晓峰 周建波 张北航 李全罡 羿宏雷 李芝茹 谭志域

林业科学2026,Vol.62Issue(6):224-235,12.
林业科学2026,Vol.62Issue(6):224-235,12.DOI:10.11707/j.1001-7488.LYKX20250413

面向自动嫁接成型装置的油茶苗木力学特性

Mechanical Properties of Camellia oleifera Seedlings Matched to Automated Grafting Devices

杨春梅 1张卫国 2单重阳 1吴晓峰 2周建波 2张北航 2李全罡 2羿宏雷 2李芝茹 2谭志域2

作者信息

  • 1. 东北林业大学木本油料资源利用全国重点实验室 哈尔滨 150040||东北林业大学机电工程学院 哈尔滨 150040
  • 2. 国家林业和草原局哈尔滨林业机械研究所 哈尔滨 150086
  • 折叠

摘要

Abstract

[Objective]This study aims to investigate the mechanical characteristics of Camellia oleifera(oil tea)seedlings to address issues such as excessive clamping force leading to seedling damage and excessive cutting force causing scion seedlings to slip during the mechanized grafting process,providing references for the design and optimization of automated grafting equipment for oil tea.[Method]The"Changlin Series No.53"oil tea seedlings were used as the research object,the main physical characteristics of rootstock seedlings were obtained by measuring physical parameters and performing statistical data analysis.Based on grafting technology standards,two types of seedlings(rootstock and scion)were divided into three groups for radial compression test and three-point bending test.Shear tests on both rootstock and scion seedlings were performed using the Box-Behnken experimental design method,and the influence of tool edge angle,loading speed,and seedling diameter on shear strength was analyzed using response surface methodology.[Result]The diameter range of rootstock seedlings was 2.72-4.48 mm,with an average diameter of 3.16 mm,an average mass of 2.34 g,and an average moisture content of 80.12%.The diameter range of scion seedlings was 2.03-3.50 mm,with an average diameter of 2.75 mm,an average mass of 1.84 g,and an average moisture content of 81.34%.The average peak compressive force and maximum compression of rootstock seedlings were 139.4 N and 0.78 mm,respectively.For scion seedlings,these values were 198.1 N and 0.70 mm.The average peak bending force,bending elasticity modulus,and bending strength of rootstock seedlings were 8.24 N,29.007 MPa,and 8.168 MPa,respectively.The average peak bending force,bending elasticity modulus,and bending strength of scion seedlings were 8.20 N,23.346 MPa,and 18.497 MPa,respectively.The average shear strength of rootstock and scion seedlings was 1.445 MPa and 3.025 MPa,respectively,with their maximum shear forces of 24.65 N and 24.83 N.Seedling diameter and tool edge angle significantly affected shear strength,while loading speed had no significant impact.[Conclusion]The results of the radial compression test indicate that the peak compressive force,maximum compression,and compressive strength of both rootstock and scion seedlings increase with the diameter,with the compressive strength of scion seedlings being higher than that of rootstock seedlings.The results of the three-point bending test show that the peak bending force of both rootstock and scion seedlings increases with diameter,but the bending strength of rootstock samples is generally lower than that of scion samples,and the brittleness of rootstock samples is greater than that of scion samples.The shear test results indicate that the shear strength of rootstock decreases as the tool edge angle decreases,while it increases with the diameter of the rootstock.The shear strength of scion seedlings gradually decreases as the tool edge angle decreases,and shows a trend of first slight decrease followed by rapid increase with increasing scion diameter.The shear strength of both types of seedlings initially decreases and then increases as the loading speed increases.Additionally,the clamping force applied to scion seedlings should range between 100 and 150 N,while the clamping force on rootstock seedlings should not exceed 90 N.

关键词

油茶苗嫁接/力学特性/剪切强度

Key words

Camellia oleifera grafting/mechanical properties/shear strength

分类

农业科技

引用本文复制引用

杨春梅,张卫国,单重阳,吴晓峰,周建波,张北航,李全罡,羿宏雷,李芝茹,谭志域..面向自动嫁接成型装置的油茶苗木力学特性[J].林业科学,2026,62(6):224-235,12.

基金项目

"十四五"国家重点研发计划"油茶等木本油料轻简栽培和高效采收装备"项目(2022YFD2202100). (2022YFD2202100)

林业科学

1001-7488

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