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Curing Behavior and Reaction Kinetics of Binder Resins for 3D-Printing Investigated by Dielectric Analysis (DEA)

机译:介电分析(DEA)研究了3D印刷粘合剂树脂的固化行为和反应动力学

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3D-Printing is an efficient method in the field of additive manufacturing. In order to optimize the properties of manufactured parts it is essential to adapt the curing behavior of the resin systems with respect to the requirements. Thus, effects of resin composition, e.g. due to different additives such as thickener and curing agents, on the curing behavior have to be known. As the resin transfers from a liquid to a solid glass the time dependent ion viscosity was measured using DEA with flat IDEX sensors. This allows for a sensitive measurement of resin changes as the ion viscosity changes two to four decades. The investigated resin systems are based on the monomers styrene and HEMA. To account for the effects of copolymerization in the calculation of the reaction kinetics it was assumed that the reaction can be considered as a homo-polymerization having a reaction order n≠l . Then the measured ion viscosity curves are fitted with the solution of the reactions kinetics - the time dependent degree of conversion (DC-function) - for times exceeding the initiation phase representing the primary curing. The measured ion viscosity curves can nicely be fitted with the DC-function and the determined fit parameters distinguish distinctly between the investigated resin compositions.
机译:3D印刷是添加剂制造领域的一种有效方法。为了优化制造部件的性能,必须适应树脂系统的固化行为,了解要求的要求。因此,树脂组合物的作用,例如树脂组合物的影响。由于不同的添加剂如增稠剂和固化剂,必须知道固化行为。当树脂从液体转移到固体玻璃上时,使用具有扁平IDEX传感器的DEA测量时间依赖性离子粘度。这允许在离子粘度发生两到四十年的情况下,对树脂变化的敏感测量。研究的树脂体系基于单体苯乙烯和HEMA。为了考虑共聚在反应动力学计算中的效果,假设反应可以被认为是具有反应顺序N≥L的均聚合。然后,测量的离子粘度曲线配有反应动力学的溶液 - 时间依赖性转化程度(DC函数) - 超过表示主要固化的起始阶段。测量的离子粘度曲线可以很好地配合DC功能,并且所确定的配合参数在研究的树脂组合物之间明显区分。

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