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基于偏心压辊机械应力分等法的规格材弹性模量检测 被引量:1

Testing the Specifications Material Elastic Modulus with Eccentric Roller Mechanical Stress Classification Method
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摘要 用自行设计的基于弯曲法连续式偏心压辊的规格材动态弹性模量检测设备(偏心压辊机械应力分等机)进行中点加载弯曲法检测实验、用万能力学试验机进行三点弯曲检测实验,获得同批次对应落叶松规格材试件动态弹性模量、静态弹性模量,对规格材试件的动态弹性模量与静态弹性模量建立线性回归方程。分析结果表明:动态弹性模量与静态弹性模量之间存在明显的相关性,相关系数达到0.86,且在0.01水平显著;验证了偏心压辊机械应力分等机检测,可以正确的反映规格材强度等级。 We used self-designed elastic modulus testing equipment for specification material( eccentric roller mechanical stress grading machine) based on bending continuous eccentric roller by the midpoint load bending method. Three points bending was tested by using universal mechanics testing machine. We obtained the corresponding dynamic elasticity modulus and static elasticity modulus of the same batch of larch specification material,and established linear regression equation for the dynamic and static elastic modulus of specification material. There was an obvious correlation between the dynamic elastic modulus and static elastic modulus with the correlation coefficient of 0.86 at 0.01 significant level. Therefore,the eccentric roller mechanical stress classification test can correctly reflect the strength grade of specification material.
出处 《东北林业大学学报》 CAS CSCD 北大核心 2015年第12期74-77,共4页 Journal of Northeast Forestry University
基金 林业公益性行业科研专项经费项目(201304514)
关键词 无损检测 偏心压辊 机械应力分等 规格材 弹性模量 Nondestructive testing Eccentric roller Mechanical stress classification Specification material Elastic modulus
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