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Experimental investigation of the factors influencing the polymer-polymer bond strength during two-component injection moulding

机译:二组分注射成型过程中影响聚合物-聚合物结合强度的因素的实验研究

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摘要

Two-component injection moulding is a commercially important manufacturing process and a key technology for combining different material properties in a single plastic product. It is also one of most industrially adaptive process chain for manufacturing so-called moulded interconnect devices (MIDs). Many fascinating applications of two-component or multi-component polymer parts are restricted due to the weak interfacial adhesion of the polymers. A thorough understanding of the factors that influence the bond strength of polymers is necessary for multi-component polymer processing. This paper investigates the effects of the process conditions and geometrical factors on the bond strength of two-component polymer parts and identifies the factors which can effectively control the adhesion between two polymers. The effects of environmental conditions on the bond strength are also investigated. Investigation shows that melt and mould temperatures are vital process parameters that influence the bond strength. Besides this, surface roughness of the first-shot part and environmental factors like moisture have profound influence on the bonding of the two materials. The selections of materials and environmental conditions were done based on the suitability of MID production, but the results could be useful for two-component polymer processing for a wide range of industrial applications. The results and discussion presented in this paper are only valid for the two-component plastic parts moulded by over moulding in cavity-transfer process.
机译:两组分注射成型是商业上重要的制造工艺,也是在单个塑料产品中组合不同材料特性的关键技术。它也是用于制造所谓的模制互连设备(MID)的最具工业适应性的工艺链之一。由于聚合物的弱界面粘合性,限制了两组分或多组分聚合物零件的许多引人入胜的应用。对于多组分聚合物的加工,必须全面了解影响聚合物粘结强度的因素。本文研究了工艺条件和几何因素对两组分聚合物部件粘合强度的影响,并确定了可以有效控制两种聚合物之间粘合的因素。还研究了环境条件对粘结强度的影响。研究表明,熔体和模具温度是影响粘结强度的重要工艺参数。除此之外,初射部分的表面粗糙度和诸如湿气的环境因素对两种材料的粘合有深远的影响。材料和环境条件的选择是根据MID生产的适用性来进行的,但结果对于在广泛的工业应用中进行双组分聚合物加工可能是有用的。本文提出的结果和讨论仅适用于在腔体传递过程中通过包覆成型法成型的两组分塑料部件。

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