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Overmoulding of Additively Manufactured Titanium Inserts Using Polyoxymethylene (POM)—Evaluation of Bond Quality as a Function of Process Parameters

机译:使用聚氧亚甲基(POM) - 作为工艺参数的函数的粘合质量的替代制造的钛插入物

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Due to their process-induced porous surfaces, additively manufactured structures are not optimized for applications in which friction is a key factor. To improve the frictional properties of additively manufactured titanium inserts of various thicknesses, two tribologically optimized POM materials, which differ in terms of filler composition and contents, were used to overmould the inserts. The titanium inserts were manufactured in two different building directions, resulting in a variation in surface roughness. The main challenge with respect to overmoulding is to maintain an even, thin plastic layer on the titanium insert. In order to evaluate the adhesion between plastic and metal, the interface is examined by optical microscopy and assessment of the peeling resistance. The peeling test shows that the overmoulded titanium inserts with a higher surface roughness are characterized by a higher peeling resistance. It is further revealed that the POM material with a special filler concept shows superior peeling resistance.
机译:由于它们的过程诱导的多孔表面,没有针对摩擦是关键因素的应用的应用没有优化制造的结构。为了提高各种厚度的含有粘度制造的钛插入件的摩擦性能,两种摩擦优化的POM材料在填充物组合物和内容物方面不同,用于将插入物覆盖。钛插入件以两种不同的建筑方向制造,导致表面粗糙度的变化。相对于包覆成型的主要挑战是在钛插入件上保持均匀薄的塑料层。为了评估塑料和金属之间的粘附,通过光学显微镜检查界面并评估剥离抗性。剥离试验表明,具有较高表面粗糙度的超模钛插入物的特征在于较高的剥离抗性。进一步揭示了具有特殊填充概念的POM材料显示出优异的剥离抗性。

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