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Considerations on the interface between lignocellulosic materials and tannin-based and other thermosetting adhesives

机译:关于木质纤维素材料与单宁基和其他热固性粘合剂之间的界面的考虑

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The use of the equation f = km/αE, correlating number of degrees of freedom m of polymer segments between cross-linking nodes in polycondensation networks to the energy of interaction polymer segment/polymer segment, both within the same polymer and at different polymers interfaces, hence directly 'in situ' in a lignocellulosic joint, through measures of deflection in bending by dynamic thermomechanical analysis, yields a number of consequences of interest in the field of polycondensation hardened networks and of their process of hardening. From this equation, regression equations correlating only two parameters are obtained. The use of these equations allows the easier determination of the parameters which are more difficult or lengthy to obtain by experimental means. The process of networking, hence of the reaction of polycondensation between the gel point and complete hardening of the network, can be followed by the determination of the average number of degrees of freedom m of the polymer segments between cross-linking nodes obtained through these equations. This is all the more useful as it allows the following of the progress of networking of thermosetting adhesive and in particular of the more difficult to follow networking of oligomeric tannin adhesives 'in situ' in the wood joint.
机译:方程f = km /αE的使用,将相同缩合网络中交联节点之间的聚合物链段之间的聚合物链段的自由度m与同一聚合物内以及不同聚合物界面处的聚合物链段/聚合物链段的相互作用能相关联因此,通过动态热力学分析通过弯曲的挠度测量,直接在木质纤维素接头中“原位”产生了缩聚硬化网络及其硬化过程方面的许多令人感兴趣的结果。从该方程中,获得仅使两个参数相关的回归方程。这些方程式的使用允许更容易地确定参数,这些参数通过实验手段难以获得或冗长。网络化的过程,即凝胶点之间的缩聚反应和网络的完全硬化,可以通过确定由这些方程式获得的交联节点之间的聚合物链段的平均自由度m来确定。 。这一点更加有用,因为它允许跟踪热固性粘合剂的网络化进程,尤其是在木材接头中“原位”低聚单宁粘合剂的网络跟踪更困难。

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