Research on Stiffness Analysis and Technology of the Heavy Spidle Top

Yongkang Wang, Bing-Tuan Gao, Wenlong Han, Shilong Xue
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引用次数: 0

Abstract

The spindle top is an important component used to withstand the shaft workpiece on machine tools so that the spindle can meet high efficiency and high precision requirements. However, the selection principles under various load conditions are not stipulated in use. In addition, material selection, manufacturing, heat treatment technology, etc., are of practical significance for the production of high hardness, high wear resistance, and high precision spindle tops. The spindle top type, material selection principles, heat treatment, cold working, and other manufacturing processes are given. Provide a reference for highperformance and top-notch design and manufacturing. The model of the spindle top will be created in UG software, then using ANSYS finite element analysis software to analyze stiffness of spindle top whose height-to-diameter ratios are 1:4 and 1:7 types in a variety of different load cases. The design and manufacturing process of the spindle top is analyzed and expounded from the selection and performance comparison of metal materials, heat treatment of different materials, cold manufacturing technology, and other aspects. The deformation laws of different types of spindle tops are obtained. According to the deformation regular, find the selection principle of height to diameter ratio of spindle top. The defects that are easy to occur in the technology are obtained and the preventive and solution measures are put forward. According to the deformation regular, find the selection principle of height to diameter ratio of spindle top. The material selection, heat treatment technology, and other technical research on the spindle top provide the necessary basis for the production of the spindle top.
重型拉杆顶的刚度分析与技术研究
主轴顶盖是机床上用于承受轴工件的重要部件,可使主轴满足高效率和高精度的要求。但在使用过程中,各种载荷条件下的选择原则并无规定。此外,材料选择、制造、热处理工艺等对于生产高硬度、高耐磨、高精度的主轴顶尖具有重要的现实意义。在 UG 软件中建立主轴顶尖模型,然后使用ANSYS 有限元分析软件对高径比为 1:4 和 1:7 的主轴顶尖在各种不同载荷情况下的刚度进行分析。从金属材料的选择和性能比较、不同材料的热处理、冷加工工艺等方面对主轴顶盖的设计和制造工艺进行了分析和阐述,得到了不同类型主轴顶盖的变形规律。根据变形规律,找出锭顶高径比的选择原则。根据变形规律,找出锭顶高径比的选择原则。主轴顶尖的材料选择、热处理工艺等技术研究为主轴顶尖的生产提供了必要的依据。
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来源期刊
Current Materials Science
Current Materials Science Materials Science-Materials Science (all)
CiteScore
0.80
自引率
0.00%
发文量
38
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