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A study to ascertain the viability of ultrasonic nondestructive testing to determine the mechanical characteristics of wood/agricultural hardboards with soybean based adhesives.

机译:确定超声非破坏性测试的可行性的研究,以确定使用大豆基胶粘剂的木材/农业硬质纤维板的机械特性。

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There have been numerous studies with ultrasonic nondestructive testing and wood fiber composites. The problem of the study was to ascertain whether ultrasonic nondestructive testing can be used in place of destructive testing to obtain the modulus of elasticity (MOE) of the wood/agricultural material with comparable results. The uniqueness of this research is that it addressed the type of content (cornstalks and switchgrass) being used with the wood fibers and the type of adhesives (soybean-based) associated with the production of these composite materials.; Two research questions were addressed in the study. The major objective was to determine if one can predict the destructive test MOE value based on the nondestructive test MOE value. The population of the study was wood/agricultural fiberboards made from wood fibers, cornstalks, and switchgrass bonded together with soybean-based, urea-formaldehyde, and phenol-formaldehyde adhesives.; Correlational analysis was used to determine if there was a relationship between the two tests. Regression analysis was performed to determine a prediction equation for the destructive test MOE value. Data were collected on both procedures using ultrasonic nondestructing testing and 3-point destructive testing.; The results produced a simple linear regression model for this study which was adequate in the prediction of destructive MOE values if the nondestructive MOE value is known. An approximation very close to the entire error in the model equation was explained from the destructive test MOE values for the composites. The nondestructive MOE values used to produce a linear regression model explained 83% of the variability in the destructive test MOE values. The study also showed that, for the particular destructive test values obtained with the equipment used, the model associated with the study is as good as it could be due to the variability in the results from the destructive tests.; In this study, an ultrasonic signal was used to determine the MOE values on nondestructive tests. Future research studies could use the same or other hardboards to examine how the resins affect the ultrasonic signal.
机译:超声无损检测和木纤维复合材料已经有许多研究。该研究的问题是确定是否可以使用超声波非破坏性测试代替破坏性测试来获得具有可比结果的木材/农业材料的弹性模量(MOE)。这项研究的独特之处在于它解决了与木纤维一起使用的内容物类型(玉米杆和柳枝)以及与这些复合材料生产相关的胶粘剂类型(大豆基)的问题。该研究解决了两个研究问题。主要目的是确定是否可以基于非破坏性测试MOE值预测破坏性测试MOE值。研究的人群是由木纤维,玉米秸秆和柳枝switch与大豆基,脲醛和酚醛胶粘剂粘合在一起的木材/农业纤维板。相关分析用于确定两个测试之间是否存在关联。进行回归分析以确定破坏性测试MOE值的预测方程式。使用超声非破坏性测试和三点破坏性测试收集了这两种程序的数据。结果产生了用于该研究的简单线性回归模型,如果已知非破坏性MOE值,则该模型足以预测破坏性MOE值。从复合材料的破坏性测试MOE值可以得出非常接近模型方程中整个误差的近似值。用于产生线性回归模型的非破坏性MOE值解释了破坏性测试MOE值的83%变异性。研究还表明,对于使用所用设备获得的特定破坏性试验值,与研究相关的模型尽可能好,这是由于破坏性试验结果的可变性所致。在这项研究中,使用超声波信号确定无损检测的MOE值。未来的研究可能会使用相同或其他硬质纤维板来检查树脂如何影响超声信号。

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