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Holographic Interferometry Deformation Study of a Printer Type-piece

机译:打印机字体的全息干涉术变形研究

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Holographic interferometry with a pulsed ruby laser is used to determine printer type-piece deformation caused by impact of the print hammer. A variety of type-piece designs are examined. Effects of impact velocity and hammer-type-piece alignments are studied. Means of obtaining stress information from the holographic data are considered. Cubic spline methods are used to smooth the holographic data and to obtain continuous first and second derivatives. The stresses calculated from the holographic data agree well with those obtained by other means such as finite element analysis. Some limitations of the holographic technique as well as its advantages are discussed. Considerable type-piece twisting is observed; this was not expected or known previously. The most significant result is that a type-piece tends to twist when impacted by the hammer at any point other than the exact center. The twist angle is of the same magnitude as the angle of out-of-plane motion of the type. Hence the type may impact the platen on one corner or side edge. Also, the type bends greatly in the necked down region adjacent to the character and does not pivot by a large amount at its bearing point. Twisting motion is propagated from one end of the type to the other.
机译:带有脉冲红宝石激光的全息干涉仪用于确定由打印锤的撞击引起的打印机型号变形。检查了各种字体设计。研究了冲击速度和锤型对准的影响。考虑了从全息数据获得应力信息的手段。三次样条方法用于平滑全息数据并获得连续的一阶和二阶导数。从全息数据计算得出的应力与通过其他方法(例如有限元分析)获得的应力非常吻合。讨论了全息技术的一些局限性及其优点。观察到相当多的字体扭曲;这是以前没有预料到的。最显着的结果是,在受到锤子撞击时,在除精确中心以外的任何位置,字体都会扭曲。扭转角的大小与该类型的平面外运动的角度相同。因此,类型可能会影响压板的一个角或侧边缘。而且,该字体在与角色相邻的颈缩区域中大大弯曲,并且在其支承点处不会大量旋转。扭曲运动从该类型的一端传播到另一端。

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