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Influence of Mold Surface Treatments on Flow of Polymer in Injection Moulding. Application to Weldlines

机译:模具表面处理对注射成型中聚合物流动的影响。应用于焊接线

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Due to increasing expectations from the market, the aspect of molded parts has to be improved constantly. Some of the defects observed on these parts such as weldlines are related to the filling stage. To limit this, we investigated the influence on weldlines using various surface deposits on the mold surface, mainly PVD and PACVD deposits : Chromium nitride (CrN), Titanium nitride (TiN), Diamond like Carbon (DLC), Chromium and polished steel (PG) on an instrumented plate mold. Injection campaign was led on three polymers which differ in terms of nature (amorphous, semi-crystalline, copolymers).We studied the evolution of the dimensions of weldlines appearing on the plate using the same injection parameters for a given polymer, but with various deposits and thicknesses. Another aspect that had been investigated is the morphology of the weldline through the thickness of the part, depending on polymer nature. Adhesion of polymer at the flow front with the mold surface proved to change. The modification of the initial contact in the filling stage and thus the thermal resistance at the mold implied a change in the process, increasing or reducing the pressure loss in the flow and differential shrinkage in the final part. The induced impact on dimensions of the weldlines allowed to distinguish which surface treatments were able to reduce the defect. A complementary study was led on both polymers in molten state and deposits in terms of wetting using a sessile drop method to confirm the adhesion at the polymer/mold interface.This study proved the influence of the use of surface treatments has clearly an impact on the filling stage of the injection molding process, and it is necessary to get a better knowledge of the interactions between physical adhesion, tribology of polymer/mold contact, and thermal properties of the coatings and their impact on solidification of the polymer.
机译:由于市场的增加,模塑部件的方面必须不断提高。在这些部件(如Weldlines)上观察到的一些缺陷与填充阶段有关。为了限制这一点,我们研究了模具表面上的各种表面沉积物对焊接线的影响,主要是PVD和PIPVD沉积物:氮化铬(CRN),氮化钛(锡),金刚石(DLC),铬和抛光钢(PG) )在仪表模具上。注射活动在三种聚合物上被引导,其三种聚合物(无定形,半晶,共聚物)不同。我们使用相同的注射参数对给定聚合物的相同注射参数研究了在板上出现的焊接线的尺寸的演变,但是用各种沉积物和厚度。已经研究的另一方面是焊接线的形态通过部分厚度,取决于聚合物性质。用模具表面在流动前面的聚合物的粘附被证明是改变的。改变填充阶段中的初始接触,从而改变模具的热阻暗示了该过程的变化,增加或减少了最后一部分中流动和差分收缩的压力损失。诱导对焊接线尺寸的影响使得区分哪些表面处理能够降低缺陷。在熔融状态和沉积物中的两种聚合物上LED互补研究在润湿方面,使用无柄液滴方法来证实聚合物/模具界面处的粘附性。本研究证明了表面处理的使用的影响显然对此产生了影响注塑工艺的填充阶段,有必要了解物理粘附,聚合物/模塑接触的摩擦学曲线之间的相互作用,以及涂层的热性能及其对聚合物凝固的影响。

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