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Thermal Stresses in Thick Walled Cylinders Due to a Periodic Moving Heat Source: Effect of Material Properties

机译:由于周期性的移动热源,厚壁圆柱体的热应力:材料性能的影响

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Internal heating of hollow cylinders with moving periodic heat source is examined in relation to surface treatment applications. This study includes three different cylinder materials, namely aluminum, nickel and titanium. Effective stresses in the cylinder wall are found to be mainly attributed to longitudinal temperature gradients. The aluminum cylinder shows sharper longitudinal temperature gradients as compared to the nickel and the titanium cylinders, which is due to the high value of the aluminum specific heat capacity. However, the larger Eα (elasticity modulus × thermal expansion coefficient) values for nickel cylinder result in higher levels of stress although nickel and titanium cylinders exhibit similar longitudinal temperature profiles. During dwelling time for the heating source at a certain spot, titanium cylinder exhibits lower levels of temperature increase as compared to aluminum and nickel cylinders, due to its lower value of thermal conductivity.
机译:在表面处理应用中检查具有移动周期热源的空心圆柱体的内部加热。该研究包括三种不同的汽缸材料,即铝,镍和钛。发现气缸壁中的有效应力主要归因于纵向温度梯度。与镍和钛缸相比,铝圆筒显示较强的纵向温度梯度,这是由于铝比热容量的高值。然而,镍缸的较大的Eα(弹性模量×热膨胀系数)值导致镍和钛缸的应力水平较高,尽管镍和钛缸具有相似的纵向温度曲线。在某个点的加热源的居住时间期间,由于其较低的导热性值,钛缸与铝和镍圆筒相比,钛缸具有较低的温度升高。

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