Investigation of Stresses Occurring in Rotating Cylinders Made of Cylinders Carbon-Epoxy-Glass Materials
摘要
In this study, the distribution of elastic stress in rotating cylinders made of E-glass, carbon and epoxy materials was investigated analytically. The study examines the correlation between the temperature distribution and the stresses of rotating disks. In the study, the Von Mises yield criterion was taken as a reference with the plane strain reference. Elastic stress was determined and modeling of three different material cylinders was performed. The mathematical data obtained as a result of numerical analysis were shared with graphs. At the end of the study, it was determined that the stresses occurring in the carbon material cylinder were higher than those of the E-glass and epoxy material cylinders. It has been found that the stresses arising in the epoxy material cylinder are quite low. It has also been observed that the pressures are inversely proportional to the change in the rating parameter in the cylinders. In general, the use of rotating cylinders is the reason for their use in a fairly wide range of areas thanks to the mechanical advantages they provide and their precise control capabilities on various materials. Each application has special requirements for rotating cylinders in terms of size, material and surface properties. It is inevitable that the works that can be done with rotating cylinders in today's technology will contribute to the technology.