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Influencing Factors of Void closure in Skew-Rolled Steel Balls Based on the Floating-Pressure Method

机译:基于浮压法的斜轧钢球空隙闭合的影响因素

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摘要

Due to the instable conditions caused by the wear of rollers, macro voids inevitably occur in skew rolling steel balls. Macro voids in rolled balls greatly weakens the mechanical properties, resulting in the scrapping of about 23% of all skew rolling balls. This paper adopts the floating-pressure method (FPM) to eliminate macro voids in rolled steel balls, and mainly focuses on the investigation of the influencing factor void closure in skew-rolled balls. The research contents are listed as follows: Firstly, the mechanical model of FPM eliminating void in rolled steel balls is established, and the theoretical relationship between influencing factors of void closure is obtained. Then, the metal flow behaviors, the stress distribution and the effect of process parameters on void closure are revealed by numerical analysis. Subsequently, based on the uniform design method, the prediction equation of the required temperature and air pressure for compacting various inferior rolled balls with different diameter by FPM is deduced. Finally, the FPM experiment is carried out to verify the results of numerical analysis. The research results provide theoretical guidance for eliminating macro voids in skew-rolled steel balls.
机译:由于滚子的磨损引起的不稳定状况,在倾斜的滚动钢球中不可避免地会出现大量空隙。轧制球中的宏观空隙大大削弱了机械性能,导致报废了约23%的所有倾斜轧制球。本文采用浮压法(FPM)消除了轧制钢球中的大孔,主要研究了斜轧球中空孔封闭的影响因素。主要研究内容如下:首先,建立了FPM消除轧钢球中空洞的力学模型,并得出了影响空洞闭塞影响因素的理论关系。然后,通过数值分析揭示了金属的流动行为,应力分布和工艺参数对空隙封闭的影响。随后,基于均匀设计方法,推导了通过FPM压实不同直径的各种劣质滚珠所需的温度和气压的预测方程。最后,进行了FPM实验,以验证数值分析的结果。研究结果为消除斜轧钢球中的宏观空隙提供了理论指导。

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