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首页> 外文期刊>Construction and Building Materials >Evaluation of the mechanical properties of Douglas-fir and Japanese cedar lumber and its structural glulam by nondestructive techniques
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Evaluation of the mechanical properties of Douglas-fir and Japanese cedar lumber and its structural glulam by nondestructive techniques

机译:用无损技术评估花旗松和日本雪松木材的力学性能及其结构胶合层

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The objectives of this study were to investigate the effects of the configuration of the lamina on the bending properties of glulam made from Douglas-fir and Japanese cedar lumber. By using a visual grading method according to CNS 14631 and nondestructive evaluation techniques (including the ultrasonic wave technique, transverse vibration test and static bending test), lamina having both higher dynamic MOE and static MOE were chosen for the outside layers, in order to manufacture homogeneous and heterogeneous grade structural glulam lamina, with higher strength properties. The degrees of correlation, obtained from the different nondestructive testing methods, were then analyzed. The results indicated that the DMOEv, DMOEt and MOE values for both Douglas-fir and Japanese cedar lumber showed a decreasing order as follows: construction grade > standard grade > utility grade. It was also found that the transverse vibration test is a better nondestructive method of evaluating sawn lumber. The different configurations of the lamina within glulam can be used to fabricate glulams with different grades of bending strengths. The predicted values of glulam E_(b(sp)), were higher than those of the experimental values E_(b(sc)). Moreover, the value of E_(b(sc)) increased linearly with an increasing MOE of the outside layers of lamina (e_3).
机译:这项研究的目的是调查叶片结构对花旗松和日本雪松木材制成的胶合层弯曲性能的影响。通过使用根据CNS 14631的视觉分级方法和无损评估技术(包括超声波技术,横向振动测试和静态弯曲测试),为外层选择具有较高动态MOE和静态MOE的薄片,以进行制造具有较高强度特性的均质和非均质等级结构胶合层。然后分析了从不同的非破坏性测试方法获得的相关度。结果表明,道格拉斯冷杉和日本雪松木材的DMOEv,DMOEt和MOE值均呈降序排列:建筑等级>标准等级>实用等级。还发现,横向振动测试是评估锯材的一种更好的非破坏性方法。胶合层中的薄片的不同构造可用于制造具有不同等级的弯曲强度的胶合层。胶质树胶E_(b(sp))的预测值高于实验值E_(b(sc))。此外,E_(b(sc))的值随着层板(e_3)的外层MOE的增加而线性增加。

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