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Testing Device For Tensile Test Based on Arduino

机译:基于Arduino的拉伸试验测试装置

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摘要

An experimental device was proposed to determine the elastic tensile and compressive modulus E_t and E_c of materials simultaneously through the deformation and displacement measurement in the split test, which is based on study of disk loaded by a pair of radial opposing forces. The electronics controlling experimental device used Arduino platform. Based on the proposed test theory, there is method based on comparison of Finite element model and data obtained from modified Brazilian test. The modification of Brazilian test is based on use curved jaw. Curved jaws are necessary for fulfillment requirement of sample breaking in the middle. These condition is a necessary condition for determining traverse tensile strength. The exact description of jaws curvature is necessary for calculation of elastic modulus, because the deformation of jaws and stone sample affects results of determination of elastic modulus. The big problem description deformation in the area of contact is probably a caused that the change in shape of a cylinder in contact, is due not only elastic deformation but straight graining and loss of material. Three groups of experimental data are used to validate the proposed test theory. The analysis indicates that the estimated E_t and E_c of materials have high reliability when measured vertical displacement of jaws and rock sample i.e changes in diameter of sample simultaneously. The measurement error of displacement results in that the estimated E_t and E_c of materials follow the changes in the radius of the cylindrical contact. The validation works indicate that the proposed test method is feasible and liable and is convenient to determine the E_t and E_c of materials simultaneously through the simple indirect tension test. This device was developed as part of Master Thesis.
机译:提出了一种实验装置,以通过在分流试验中同时通过变形和位移测量来确定材料的弹性拉伸和压缩模量E_T和E_C,这是基于由一对径向相对的力加载的盘的研究。电子控制实验装置使用的Arduino平台。基于所提出的测试理论,存在基于有限元模型的比较和从改进的巴西测试获得的数据的方法。巴西试验的修改是基于使用弯曲的钳口。弯曲的钳口是在中间突破样品的满足要求所必需的。这些条件是用于确定横向拉伸强度的必要条件。钳口曲率的确切描述对于计算弹性模量是必需的,因为钳口和石样的变形会影响弹性模量的测定结果。大问题描述接触区域中的变形可能是一个导致圆柱形的变化在接触时,是由于弹性变形而是由于弹性变形而是直接磨碎和材料损失。三组实验数据用于验证所提出的测试理论。分析表明,当钳口和岩样的垂直位移时,材料的估计E_T和E_C具有高可靠性。同时样品的直径变化。位移的测量误差导致材料的估计E_T和E_C遵循圆柱形接触半径的变化。验证工作表明,所提出的测试方法是可行和责任的,方便通过简单的间接张力测试同时测定材料的E_T和E_C。该设备是作为硕研讨会的一部分开发的。

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