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首页> 外文期刊>Archives of Metallurgy and Materials >An Analysis of Rheological Properties of Inconel 625 Superalloy Feedstocks Formulated with Backbone Binder Polypropylene System for Powder Injection Molding
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An Analysis of Rheological Properties of Inconel 625 Superalloy Feedstocks Formulated with Backbone Binder Polypropylene System for Powder Injection Molding

机译:骨料聚丙烯体系配制的Inconel 625高温合金粉末的流变性能分析。

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摘要

Binder formula is one of the most significant factors which has a considerable influence on powder injection molding (PIM) processes. In the study, rheological behaviors and properties of different binder systems containing PIM feedstocks, Inconel 625 powder commonly used in space industry, were investigated. The feedstocks were prepared 59%-69% (volume) powder loading ratios with three diversified binder systems by use of Polypropylene as backbone binder. The average particle size of the Inconel 625 powder used was 12.86 microns. Components used in the binder were mixed for 30 minutes as dry in three dimensional mixing to prepare binder systems. Rheological features of the feedstock were characterized by using a capillary rheometer. Viscosities of the feedstocks were calculated within the range of 37.996-1900 Pa.s based on the shear rate, shear stress, binder formula and temperature. “n” parameters for PIM feedstocks were determined to be less than 1. Influences of temperature on the viscosities of the feedstocks were also studied and “Ea” under various shear stresses were determined within the range of 24.41-70.89 kJ/mol.
机译:粘合剂配方是影响粉末注射成型(PIM)工艺的最重要因素之一。在这项研究中,研究了含PIM原料的不同粘合剂体系(航天工业中常用的Inconel 625粉末)的流变行为和性能。通过使用聚丙烯作为主链粘合剂,用三种多样化的粘合剂体系制备了59%-69%(体积)粉末装载量的原料。使用的Inconel 625粉末的平均粒度为12.86微米。在三维混合中将用于粘合剂的组分干燥干燥30分钟,以制备粘合剂体系。通过使用毛细管流变仪表征原料的流变学特征。基于剪切速率,剪切应力,粘合剂配方和温度,在37.996-1900Pa.s的范围内计算原料的粘度。确定PIM原料的“ n”参数小于1。还研究了温度对原料粘度的影响,并确定了在24.41-70.89 kJ / mol范围内各种剪切应力下的“ Ea”。

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