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Flexural Strength Properties of Teak Wood Filled Rectangular Hollow Sectioned Thin Steel Tube and its Application in Automobile

机译:柚木木材填充矩形中空薄钢管的弯曲强度特性及其在汽车中的应用

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Wood structures have played an important role in construction. The strengthening of wooden beams using composite materials is designed to enhance both capacity and as well as flexural stiffness. Composite wood-steel structural members have potential to combine the advantages of ready availability, easy working, and simple joining along with strength and stiffness. The paper presents the results of the work carried out to study and analyze flexural strength properties of rectangular teak wood beam (RTWB), rectangular hollow sectioned thin walled steel tube (RHSTWST), and rectangular teak wood filled in rectangular hollow sectioned thin walled steel tube. A wood filled steel tube (WFT) is developed for the purpose of investigation of flexural properties. Desired flexural properties of teak wood, carbon steel have been obtained experimentally and compared with already researched and presented data. The flexural properties of wood filled thin steel tube (WFT) have been determined theoretically and experimentally. The WFT specimens are modeled in ANSYS and the analysis is done to verify the experimental data. Percentage error of these two methods is well within the acceptable limit. From the work carried out it can be concluded that the stiffness and strength of WFT is more compared to standalone rectangular teak wood beam or Rectangular hollow sectioned thin steel tube. An application for automobile hood is developed using the developed material. The WFT composite shows lower deflection compared to steel.
机译:木结构在施工中发挥了重要作用。使用复合材料加强木梁,设计成增强容量和弯曲刚度。复合木材 - 钢结构结构构件有可能结合现成可用性,轻松工作,简单的连接以及强度和刚度的优点。本文提出了研究和分析矩形柚木梁(RTWB)的弯曲强度特性的工作结果,矩形中空切片薄壁钢管(RHSTWST),矩形柚木木材填充矩形中空薄壁薄钢管。用于调查弯曲性能的木材填充钢管(WFT)。目前获得柚木木材,碳钢的所需弯曲性能,并与已经研究和呈现的数据进行比较。理论上和实验已经确定了木材填充薄钢管(WFT)的弯曲性能。 WFT样本在ANSYS中建模,进行分析以验证实验数据。这两种方法的百分比误差在可接受的限制内很好。从开展的工作中,可以得出结论,与独立矩形柚木木梁或矩形中空切片薄钢管相比,WFT的刚度和强度更加比较。使用开发材料开发了汽车罩的应用。与钢相比,WFT复合材料显示出较低的偏转。

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