首页> 外文会议>International Conference on Web Handling; 20050605-08; Stillwater,OK(US) >IN-ROLL STRESS ANALYSIS CONSIDERING AIR-ENTRAINMENT AT THE ROLL-INLET WITH THE EFFECT OF GROOVES ON NIP ROLL SURFACE
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IN-ROLL STRESS ANALYSIS CONSIDERING AIR-ENTRAINMENT AT THE ROLL-INLET WITH THE EFFECT OF GROOVES ON NIP ROLL SURFACE

机译:考虑压槽入口进气的压槽应力分析,以及沟槽对NIP滚压表面的影响

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High-speed winding of paper web sometimes leads the winding system into unstable states, interlayer slippage of wound roll, paper breakage and so on, due to the excessive air-entrainment at the roll-inlet of nip contact region. These phenomena are more frequently observed on coated paper or plastic film comparing with newspaper, because the former allows little permeation of air and their surface roughness is small. Therefore, it is of vital importance to clarify the in-roll stress of wound roll considering the effect of air-entrainment.Generally, it is known that the amount of air-entrainment is affected by grooving shape of nip roll surface. In this paper, we focused on the grooving shape and investigated the relationship with the air-entrainment into two rolls being pressed each other and the grooving shape in order to achieve stable winding at high speed. We conducted experiments using small sized test machine. Entrained air-film thickness was evaluated applying the solution of the elasto-hydrodynamic lubrication for foil bearing with the consideration of nip profile at the grooved area. Air film thickness was measured to ensure the applicability of the above theory. Consequently, we found that the air film thickness can be estimated considering the effect of grooves on the nip roll surface, and that the validity of the above estimations was ensured from experimental investigations. Furthermore, it became to be able to propose the optimal shape of grooves on nip roll surface to maintain the stable winding at high speed and at large-diameter in reel.
机译:纸幅的高速卷绕有时会导致卷绕系统进入不稳定状态,卷筒的层间打滑,纸张断裂等,这是由于在压区接触区域的卷筒入口处夹带了过多的空气。与报纸相比,在涂布纸或塑料薄膜上更经常观察到这些现象,因为前者几乎不渗透空气并且其表面粗糙度很小。因此,考虑到空气夹带的影响,弄清卷绕辊的辊内应力是至关重要的。通常,已知空气夹带的量受压辊表面的开槽形状影响。在本文中,我们着眼于切槽形状,研究了夹带空气到两个相互挤压的辊子之间以及切槽形状的关系,从而实现了高速稳定的卷绕。我们使用小型测试机进行了实验。考虑到开槽区域的辊隙轮廓,采用箔膜轴承的弹性流体动力润滑解决方案评估了夹带的气膜厚度。测量空气膜厚度以确保上述理论的适用性。因此,我们发现可以考虑压辊表面上沟槽的影响来估计气膜厚度,并且通过实验研究确保了上述估计的有效性。此外,变得能够提出压料辊表面上的凹槽的最佳形状,以在卷筒中以高速度和大直径维持稳定的卷绕。

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