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Processability and Mechanical Properties of Polyoxymethylene in Powder Injection Molding

机译:聚甲醛在粉末注射成型中的加工性和力学性能

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摘要

Polyoxymethylene (POM) is considered a high performance engineering polymer with many applications primarily in the automotive industry. Currently, POM has also found uses in powder injection molding (PIM) technology, where it acts as a carrier medium for metal or ceramic powders during the injection molding process, it is later removed and a metallic or ceramic piece is obtained after sintering. The main advantage of using POM in PIM technology is the faster debinding process compare to polyolefin-based feedstock, since POM sublimates into its monomer directly when exposed to an acid vapor. During the process of PIM, the binder has two contradictory requirements: viscosity should be as low as possible when in the molten state, but mechanical properties in the solid state, like toughness, should be as high as possible. One way to lower the viscosity is to use POM with lower molecular weights. In this work it has been observed that the viscosity follows a power law function as with other linear polymers, while the fracture toughness follows an exponential function of the average molecular weight. Therefore, a molecular weight can be chosen in a way that a compromise between low enough viscosity and sufficient fracture toughness can be reached.
机译:聚甲醛(POM)被认为是一种高性能的工程聚合物,主要是在汽车工业中的许多应用。目前,POM还发现了在粉末注射成型(PIM)技术中的用途,其中在注射成型过程中作为金属或陶瓷粉末的载体介质作用,稍后将在烧结后获得金属或陶瓷件。在PIM技术中使用POM的主要优点是与基于聚烯烃的原料相比的更快的脱脂过程,因为POM在暴露于酸蒸气时直接升华到其单体中。在PIM过程中,粘合剂具有两个矛盾的要求:在熔融状态下,粘度应尽可能低,但固态的机械性能如韧性,应尽可能高。降低粘度的一种方法是使用具有较低分子量的POM。在这项工作中,已经观察到粘度跟随电力法用作其他线性聚合物的功率法,而断裂韧性遵循平均分子量的指数函数。因此,可以以足够低的粘度和足够的断裂韧性之间的折衷方式选择分子量。

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