Chemical Characterization of Calcium Aluminate-Phenol Resin Composite

Game Kankanamge Dinilprem Pushpalal , Toshio Kawano , Tadashi Kobayashi , Masaki Hasegawa
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引用次数: 12

Abstract

The chemical characteristics of a calcium aluminate-phenol resin composite with very high flexural strength are discussed. The flexural strength of the composite was found to be 120 to 220 MPa, which is greatly dependent on the fabrication method. The best system of these composites is made of calcium monoaluminate and the resole type of phenol resin. The evidence of possible cement-resin interaction has been found experimentally in roll milling, during heat curing, and in the final product. We discuss the evidence of interaction of phenol moiety and calcium aluminate based on the observations in processing, experimental data of differential scanning calorimetry, electron probe microanalysis, conduction calorimetry, and X-ray diffraction analysis. Based on our findings, we propose a cross-linking mechanism assumed to occur in processing and during curing.

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铝酸钙-酚醛树脂复合材料的化学性质
讨论了一种具有很高抗弯强度的铝酸钙-苯酚树脂复合材料的化学特性。复合材料的抗折强度为120 ~ 220 MPa,与制备方法有很大关系。这些复合材料的最佳体系是由单铝酸钙和溶解型苯酚树脂组成的。可能的水泥-树脂相互作用的证据已被发现在滚磨,在热固化,并在最终产品的实验。本文根据加工过程中的观察、差示扫描量热、电子探针量热、传导量热和x射线衍射等实验数据,讨论了苯酚部分与铝酸钙相互作用的证据。基于我们的发现,我们提出了一种交联机制,假设发生在加工和固化过程中。
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