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A Study of Crystalline Mechanism of Penetration Sealer Materials

机译:渗透密封剂材料的结晶机理研究

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摘要

It is quite common to dispense a topping material like crystalline penetration sealer materials (CPSM) onto the surface of a plastic substance such as concrete to extend its service life span by surface protections from outside breakthrough. The CPSM can penetrate into the existing pores or possible cracks in such a way that it may form crystals to block the potential paths which provide breakthrough for any unknown materials. This study investigated the crystalline mechanism formed in the part of concrete penetrated by the CPSM. We analyzed the chemical composites, in order to identify the mechanism of CPSM and to evaluate the penetrated depth. As shown in the results, SEM observes the acicular-structured crystals filling capillary pores for mortar substrate of the internal microstructure beneath the concrete surface; meanwhile, XRD and FT-IR showed the main hydration products of CPSM to be C-S-H gel and CaCO3. Besides, MIP also shows CPSM with the ability to clog capillary pores of mortar substrate; thus, it reduces porosity, and appears to benefit in sealing pores or cracks. The depth of CPSM penetration capability indicated by TGA shows 0–10 mm of sealer layer beneath the concrete surface.
机译:通常将诸如结晶渗透密封剂材料(CPSM)之类的打顶材料分配到诸如混凝土之类的塑料物质的表面上,以通过免受外部破坏的表面保护来延长其使用寿命。 CPSM可以渗透到现有的孔或可能的裂缝中,从而可能形成晶体来阻塞潜在的路径,从而为任何未知材料提供突破。这项研究调查了CPSM渗透到混凝土中形成的结晶机理。我们分析了化学复合材料,以确定CPSM的机理并评估渗透深度。如结果所示,SEM观察到针状结构的晶体填充了混凝土表面下内部微观结构的砂浆基质的毛细孔。同时,XRD和FT-IR表明CPSM的主要水合产物为C-S-H凝胶和CaCO3。此外,MIP还显示CPSM具有堵塞砂浆基质毛细孔的能力;因此,它降低了孔隙率,并且似乎有利于密封孔或裂缝。 TGA指示的CPSM渗透能力深度显示混凝土表面下方的密封层为0–10 mm。

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