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Thermal stability and degradation kinetics of feedstocks for powder injection moulding - A new way to determine optimal solid loading?

机译:粉末注射成型原料的热稳定性和降解动力学-确定最佳固含量的新方法吗?

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摘要

Degradation kinetics and the thermal stability of zircon powder injection moulding feedstocks (PIM) based on cellulose acetate butyrate (CAB) and polyethylene glycol (PEG) binders were investigated using simultaneous thermogravimetric analysis (STA).The initial decomposition temperature (IDT) and the integral procedure decomposition temperature (IPDT) were used to analyse the thermal stability of the binder system as a function of the solid loading content.The degradation kinetics was studied,and the degradation activation energy was assessed for varying zircon powder contents using isoconversional methods.All the methodologies revealed changes in the thermal degradation behaviours of the feedstocks for solid loadings that were previously determined to correspond to optimal solid loadings using other experimental procedures.These results may promote the proposal of thermodynamic degradation studies of feedstocks as an alternative or complementary technique to determine optimal solid loading contents in powder injection moulding (P1M).The studies in this paper also examined PIM process operation temperatures for zircon feedstocks.
机译:使用同时热重分析(STA)研究了基于乙酸丁酸纤维素(CAB)和聚乙二醇(PEG)粘合剂的锆石粉末注射成型原料(PIM)的降解动力学和热稳定性。初始分解温度(IDT)和积分程序分解温度(IPDT)用于分析粘合剂体系的热稳定性与固含量的函数关系。研究了降解动力学,并使用等转换方法评估了不同锆石粉含量下的降解活化能。方法学揭示了固体负载的原料热降解行为的变化,该变化先前使用其他实验程序确定为与最佳固体负载相对应。这些结果可能会推动对原料进行热力学降解研究的提议,作为确定最佳负载的替代或补充技术固体低根据粉末注射成型(P1M)中的含量。本文的研究还检查了锆石原料的PIM工艺操作温度。

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