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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >A numerical study of the thermally induced stress distribution in a rotating hollow disc heated by a moving heat source acting on one of the side surfaces
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A numerical study of the thermally induced stress distribution in a rotating hollow disc heated by a moving heat source acting on one of the side surfaces

机译:旋转中空盘中热应力分布的数值研究,该旋转中空盘由作用在侧面之一上的移动热源加热

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摘要

This study presents the effects of a moving heat source (MHS) on a rotating hollow steel disc heated from its one side surface under stagnant ambient conditions. As the disc rotates around the z-axis with a constant angular speed Ω, the heat source moves along from one radial segment to the next radial segment in the radial direction on the processed surface at the end of each revolution of the disc. Three-dimensional (3D) numerical calculations are performed individually for a wide range of thermal conductivity λ of steel and for different Ωs. In order to obtain the thermal stress per heat flux intensity q^sub 0^, it is assumed that the thermo-physical properties of the disc do not change with temperature. The maximum effective thermal stress ratio varies in the range of 22-134 ° C depending on λ and Ω. While the MHS passes from one radial segment to the next radial segment, it causes an additional steeping of the effective thermal stress. However, when the values of λ and Ω are increased, the maximum effective thermal stress ratio can be reduced by a considerable amount. [PUBLICATION ABSTRACT]
机译:这项研究提出了在停滞的环境条件下,移动热源(MHS)对从其一侧表面加热的旋转空心钢盘的影响。当圆盘以恒定的角速度Ω绕z轴旋转时,在圆盘每次旋转结束时,热源在加工表面上沿径向从一个径向段移动到下一个径向段。分别针对宽范围的钢的热导率λ和不同的Ωs分别进行三维(3D)数值计算。为了获得每热通量强度q ^ sub 0 ^的热应力,假定盘的热物理性质不随温度变化。最大有效热应力比在22-134°C范围内变化,具体取决于λ和Ω。当MHS从一个径向段传递到下一个径向段时,会引起有效热应力的额外倾斜。但是,当增加λ和Ω的值时,最大有效热应力比会大大降低。 [出版物摘要]

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