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Effect of Inner Cavity's Gas Flow Rate on the Extrusion Forming of Plastic Micro-Pipe

机译:内腔气流速率对塑料微管挤出形成的影响

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During the manufacture of plastic micro-pipe, a certain volume of gas should be properly injected into the inner cavity to overcome the collapse and adhesion problems. In this work, the extrusion forming of plastic micro-tube under the role of inner cavity's gas were numerically studied. At the same time, the effect of inner cavity's gas flow rate on the extrusion deformation of plastic micro-pipe was also numerically investigated by using the finite element method. A kind of 2D two-phase fluid geometric model and finite element mesh were established and some reasonable boundary conditions and material parameters were imposed. Under a fixed volume flow rate of melt, different flow rates of inner cavity gas were imposed on the inlet of inner cavity's gas. The extrusion deformation profile and deformation ratio of plastic micro-pipe under different flow rates of gas were all obtained. To ascertain the mechanisms of effect of inner cavity's gas flow rate on the extrusion deformation of plastic micro-tube, the flow velocities, pressure, shear rate, normal stress, and the first normal stress difference of melt all obtained and analyzed. Numerical results show that with the increase of inner cavity's gas flow rate, the radial velocity, axial velocity, pressure, shear rate, normal stress, and the first normal stress difference of melt all increase, which makes the extrusion deformation become more and more serious. In practice, reasonable controlling of the inner cavity's gas flow rate is very important. In the other hand, it can adjust the size of extruded plastic micro-pipe.
机译:在制造塑料微管期间,应将一定体积的气体适当地注入内腔,以克服塌陷和粘附问题。在这项工作中,在数值研究了内腔气体作用下塑料微管的挤出形成。同时,通过使用有限元方法,还在数值上研究了内腔的气体流速对塑料微管的挤出变形的影响。建立了一种2D两相流体几何模型和有限元网,并施加了一些合理的边界条件和材料参数。在固定体积流量的熔体下,在内腔气体的入口上施加内腔气体的不同流速。挤出变形曲线和塑料微管在不同流量下的塑料微管的变形曲线均得到。确定内腔气体流速对塑料微管挤出变形的影响机制,流速,压力,剪切速率,正常应力和熔体的第一正常应力差,并分析。数值结果表明,随着内腔的气体流速的增加,径向速度,轴向速度,压力,剪切速率,正常应力和熔体的第一正常应力差异,这使得挤出变形变得越来越严重。在实践中,合理控制内腔的气体流速非常重要。另一方面,它可以调节挤出塑料微管的尺寸。

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