4.7 Article

Numerical and experimental investigation on temperature field during belt grinding considering elastic contact

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出版社

ELSEVIER
DOI: 10.1016/j.csite.2022.102555

关键词

Belt grinding; Temperature field; Numerical thermal model; Elastic contact

资金

  1. National Natural Science Foundation of China [52205444]
  2. China Postdoctoral Science Foundation [2021M700586]
  3. National Science and Technology Major Project [2017 -VII -0002-0095]

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This study developed a numerical thermal model for belt grinding based on a moving parabolic heat source method, considering elastic contact, grinding zone shape, and nonuniformity of heat source. It was found that the maximum grinding temperature of a 40 HA contact wheel decreased by 33.1% compared to that of a 90 HA contact wheel, and the grinding temperature of curved surfaces was unevenly distributed in the elliptic-shape grinding zone. Furthermore, as the curvature radius of the workpiece increased, the grinding temperature decreased, and the maximum temperature of transverse grinding decreased by 39% compared to that of longitudinal grinding.
Belt grinding is an important method for precision machining of complex curved components own to its elastic contact characteristics. However, the grinding heat is easy to accumulate in workpieces and results in thermal damages when grinding narrow curved surfaces, such as air inlet and exhaust sides of aeroengine blade. This study developed a numerical thermal model during belt grinding based on a moving parabolic heat source method considering elastic contact, grinding zone shape and nonuniformity of heat source. It is revealed that the maximum grinding temperature of 40 HA contact wheel is decreased by 33.1% compared with that of 90 HA contact wheel, and grinding temperature of curved surfaces is unevenly distributed in the elliptic-shape grinding zone. Besides, as the curvature radius of workpiece increases, the grinding temperature is decreased, and the maximum temperature of transverse grinding is decreased by 39% compared with that of longitudinal grinding. Systematic temperature measurements of Inconel

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