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Dynamic Transverse Deflection of a Free Mild-Steel Plate

机译:自由低碳钢板的动态横向挠度

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The problem analytically investigated is that a thin free plate of mild-steel struck at normal incidence by a flat ended rigid rod moving at high velocity. As in quasi-static deformation by extended slip, the strain-rate tensor is solenoidal and under dynamic loading conditions the Tresca yield criterion is modified so that the solenoidal property replaces the hypothesis of a viscoplastic overstress. Overstress then arises from inertial body forces and the high magnitudes found, in the following,?for these forces are due to the influence of the propagating boundary. Two new theorems are proven. These theorems show that the deflection in the plate is entirely transverse, even in the case of indefinitely large punch deflections, and that the lines of equal transverse deflection in the plate are also principal lines of stress and strain-rate, as are the lines of steepest descent. A formula is obtained giving the inertial force opposing the punch as a function of the time and the theoretical deflection profile on a plate deformed by a flat-ended punch of circular section is presented. The stresses in the plate are then analyzed and it is shown that the stress inside the boundary in the direction of propagation, equals ρc2where ρ is the mass density of the plate material and the boundary wave propagates at speed c which, it is shown, is equal to one-half of the velocity of elastic waves of rotation in the solid concerned.
机译:经过分析研究的问题是,低碳钢薄自由板在垂直方向被高速运动的平端刚性杆撞击。像在扩展滑动引起的准静态变形中一样,应变率张量是螺线管的,并且在动态载荷条件下,修改了Tresca屈服准则,以使螺线管性能取代了粘塑性过应力的假设。然后,过大的应力由惯性体力引起,随后发现高强度,因为这些力是由于传播边界的影响所致。证明了两个新定理。这些定理表明,即使在无限大的冲头挠度的情况下,板中的挠度也完全是横向的,并且板中相等的横向挠度的线也是应力和应变率的主要线,最陡的下降。得到一个公式,给出与冲头相对的惯性力随时间的变化,并给出了由圆形截面的平头冲头变形的板上的理论挠曲轮廓。然后分析了板中的应力,结果表明边界内沿传播方向的应力等于ρc2,其中ρ是板材料的质量密度,边界波以速度c传播,如图所示,为等于相关固体中旋转弹性波速度的一半。

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