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Optimisation of steep carbonate coating formulations with ultra fine platy kaolin

机译:用超细板状高岭土优化陡峭碳酸盐涂料配方

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Maintaining high paper gloss without compromising light scattering potential in steep particle-size-distribution carbonate coating recipes is non-trivial. While the use of fine blocky kaolin is accepted practice for gloss generation with standard carbonates, there is doubt over its compatibility with steeper pigment blends. This is because the enhanced light scattering potential of such coating systems is a result of large, clearly defined pores. As these become larger, there is a chance that the fine kaolin will partially fill them, thereby reducing the system's light scattering potential. Additionally, the partial filling of these pores would further increase the ink setting rate of he system. It is proposed that the use of ultra fine, but platy, kaolin may overcome these shortcomings. This assumes that the aspect ratio of the kaolin plates can be engineered to be sufficiently fine to aid gloss development, but concurrently have a large enough plate diameter to stop it from filling the voids created by the steep partner carbonate. he performance of coatings formulated with such a kaolin, a new product development, is reported here for the first time and is contrasted against that obtained from a fine blocky kaolin.
机译:在陡峭的粒度分布碳酸盐涂料配方中,保持较高的纸张光泽而不损害光散射的潜力并非易事。虽然使用标准碳酸酯产生细腻的块状高岭土是公认的惯例,但人们仍怀疑它与较陡峭的颜料混合物的相容性。这是因为这种涂层系统增强的光散射潜能是大的,清晰界定的孔的结果。随着它们变大,精细的高岭土有可能部分填充它们,从而降低了系统的光散射潜力。另外,这些孔的部分填充将进一步增加系统的油墨凝固速率。提出使用超细但片状高岭土可以克服这些缺点。假定高岭土板的长宽比可以设计得足够细,以有助于光泽的形成,但同时具有足够大的板直径以阻止其填充由陡峭的伴侣碳酸盐形成的空隙。首次报道了用这种高岭土配制的涂料的性能,这是一项新产品开发,并与从细块状高岭土获得的涂料形成对比。

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