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A New Solution for the Compression of a Two-Layer Strip and Its Application to Analysis of Bonding by Rolling

机译:压缩双层条带的新解决方案及其应用于轧制分析

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摘要

The paper presents a theoretical study on the compression of a two-layer strip of strain-hardening rigid-plastic materials between rigid platens. Semianalytical solutions are obtained for stress and velocity fields in each layer. Special attention is devoted to the conditions corresponding to the beginning of cold bond formation between the layers. Depending on input parameters various general deformation patterns are possible. In particular, there exists such a range of process parameters that the soft metal layer yields while the hard metal layer is rigid at the beginning of the process. As the deformation proceeds, yielding also starts in the hard metal layer and the entire strip becomes plastic. This is a typical deformation pattern adopted in describing the process of joining by rolling. However, at a certain range of input parameters plastic deformation of the entire strip begins at the initial instant. Moreover, it is possible that only the hard metal layer yields while the soft metal layer does not. This deformation pattern takes place when the thickness of the soft metal layer is much smaller than that of the hard metal layer.
机译:本文介绍了刚性压板之间的双层硬化刚性塑料材料压缩的理论研究。获得每层中的应力和速度场的半角质解。专注于对应于层之间的冷粘合形成开始的条件。根据输入参数,各种变形模式是可能的。特别地,存在这样的过程参数,使得软金属层产生的,而硬质金属层在该过程开始时刚性。随着变形所需的,屈服也从硬金属层开始,并且整个条带变塑料。这是描述通过轧制连接的过程中采用的典型变形模式。然而,在一定范围的输入参数下,整个条带的塑性变形在初始瞬间开始。此外,在软金属层不具有时,可以仅产生硬质金属层产生。当软金属层的厚度远小于硬金属层的厚度时,发生这种变形模式。

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