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首页> 外文期刊>Journal of Materials Processing Technology >Thermo-physical characterization of binder and feedstock for single and multiphase flow of PIM 316L feedstock
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Thermo-physical characterization of binder and feedstock for single and multiphase flow of PIM 316L feedstock

机译:PIM 316L原料的单相和多相流动的粘合剂和原料的热物理特性

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A thorough knowledge of the material properties of the feedstock and binder system is essential for successful powder injection moulding (PIM) as well as for numerical simulation. In view of the above, characterization of a developed binder system and feedstock has been reported in this paper for processing of 316L stainless steel powder through PIM route. The binder system consists of paraffin wax, stearic acid and low-density polyethylene. The feedstock comprises of 316L stainless steel powder and the above binder system. The thermal, physical and rheological characteristics of the binder system and feedstock have been investigated separately along with binder removal technique from the injection-moulded green compact. The thermal characterization revealed the semi-crystalline nature having distinct melting and solidification range for both the binder and feedstock. Data from DSC and TGA show that injection of the feedstock should be carried out above 102℃ (i.e. the upper melting temperature) but below 154℃ as beyond which the binder components paraffin wax and stearic acid start degrading and mould temperature should be below 57℃. The binder and feedstock are found as shear-thinning fluid as viscosity decreases with the increase in shear strain rate and temperature. However, the viscosity of the binder is more sensitive to shear strain rate and temperature compared to that of the feedstock.
机译:对原料和粘合剂系统的材料特性的透彻了解对于成功的粉末注射成型(PIM)以及数值模拟至关重要。有鉴于此,本文报道了一种通过PIM途径加工316L不锈钢粉末的粘合剂系统和原料的特性。粘合剂体系由石蜡,硬脂酸和低密度聚乙烯组成。原料由316L不锈钢粉末和上述粘合剂体系组成。粘合剂体系和原料的热,物理和流变特性以及注塑成型生坯中的粘合剂去除技术已经分别进行了研究。热表征表明,对于粘合剂和原料而言,半结晶性质具有独特的熔融和固化范围。 DSC和TGA的数据表明,原料的注入应在高于102℃(即最高熔化温度)但低于154℃的温度下进行,否则粘合剂组分的石蜡和硬脂酸开始降解,模具温度应低于57℃。 。随着粘度随着剪切应变速率和温度的增加而降低,发现粘合剂和原料为剪切稀化流体。然而,与原料相比,粘合剂的粘度对剪切应变速率和温度更敏感。

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