The present invention relates to the use of at least one mixed mineral organic clay rheological additive consisting of mineral clay mixture treated with quaternary alkyl and ammonium salts in liquid compositions containing at least one unsaturated polyester. The rheological additive of mixed mineral organic clay is prepared as follows: forming water-borne fibroclastic clay slurry (a), forming water-borne chlorite clay slurry (b), and merging. Water-borne fibrous bar stone clay slurry (a) and water-borne green clay slurry (b) are used to form a combined clay slurry (c). The combined clay slurry (c) is treated with one or more quaternary alkyl ammonium salts, and the mineral clay mixture treated with quaternary alkyl ammonium salts is separated from the water-borne medium. The water-borne fibrous bar stone clay slurry (a) is formed as follows: (i.1) Sepiolite will be selected from the sepiolite. One or more fibroclastic clay components of palygorskite and palygorskite are dispersed in an aqueous medium to form a dispersion, and the water-borne green clay slurry (b) is formed as follows: (ii.1) one or more green clay components are dispersed in an aqueous medium to form a dispersion, which is characterized by the fact that the weight of fibroclastic clay content in the combined clay slurry (c) exceeds that of green clay content. Weight; and before and/or after step I I i, high-speed fluid shear is applied to the dispersions formed in (i.1) and (i i.1); and the integral width B of Miller index (110) of one or more fibrous clay components used to form the water-borne fibroclastic clay slurry (a) in the X-ray powder pattern is less than 0.800 scanning units, in which the integral width B is less than 0.800 scanning units. Degree B is defined according to formula (I): B= (net reflective area)/(net reflective height), and the X-ray powder pattern is recorded on the oriented glycolized sample of the fibroclastic clay component using the radiation of copper K_1. The invention also relates to a method for producing mixed mineral organic clay rheological additives and the use of the additives made therefrom as thickeners in liquid compositions.
【技术实现步骤摘要】
【国外来华专利技术】制造增稠剂的方法和由此制成的增稠剂在含不饱和聚酯的高粘度制剂中的用途本专利技术涉及制造专用增稠剂的方法和由此制成的增稠剂在含不饱和聚酯的高粘度制剂中的用途。本专利技术特别涉及由此制成的增稠剂在改变非水制剂如含不饱和聚酯的制剂的流变性中的用途。技术背景特别在胶粘剂、密封剂、涂布剂和模制配混物以及非水基石油钻井液等的领域中,必须定制这些体系的流变性质,主要通过借助粘合剂、溶剂的选择和颜料和/或填料的浓度调节稠度。但是,在许多情况下,借助上述组分不足以调节到所需稠度。在这样的情况下,需要加入所谓的流变添加剂(即流变学添加剂)。其作用可以是为了更好的可加工性而降低粘度或提高粘度,这在本专利技术中被称作“增稠”。为所述目的描述了许多不同的有机或无机增稠剂。纤维素醚、淀粉、天然水胶体、合成生物聚合物、聚丙烯酸酯增稠剂、基于疏水改性聚合物如聚醚、醚氨酯、聚丙烯酰胺和碱性活化丙烯酸酯乳状液的缔合增稠剂或水溶胀性无机增稠剂常用于水性体系。用于非水体系的典型流变添加剂除有机增稠剂,如蜡和触变树脂外还包括无机增稠剂,例如氧化镁和氢氧化镁或非晶二氧化硅和层状硅酸盐。在层状硅酸盐中,常使用粘 ...
【技术保护点】
1.包含季烃基‑铵盐处理的矿物粘土混合物或由季烃基‑铵盐处理的矿物粘土混合物构成的至少一种混合矿物有机粘土流变添加剂在包含至少一种不饱和聚酯的液体组合物中的用途,所述混合矿物有机粘土流变添加剂如下制备:i.形成水性纤维棒石粘土浆料(a)ii.形成水性绿土粘土浆料(b)iii.合并水性纤维棒石粘土浆料(a)与水性绿土粘土浆料(b)以形成合并的粘土浆料(c)iv.用一种或多种季烃基‑铵盐处理所述合并的粘土浆料(c)v.从水性介质中分离由此制成的季烃基‑铵盐处理的矿物粘土混合物,其中所述水性纤维棒石粘土浆料(a)如下形成:(i.1)将选自海泡石和坡缕石的一种或多种纤维棒石粘土组分 ...
【技术特征摘要】
【国外来华专利技术】2016.06.22 US 15/189,5841.包含季烃基-铵盐处理的矿物粘土混合物或由季烃基-铵盐处理的矿物粘土混合物构成的至少一种混合矿物有机粘土流变添加剂在包含至少一种不饱和聚酯的液体组合物中的用途,所述混合矿物有机粘土流变添加剂如下制备:i.形成水性纤维棒石粘土浆料(a)ii.形成水性绿土粘土浆料(b)iii.合并水性纤维棒石粘土浆料(a)与水性绿土粘土浆料(b)以形成合并的粘土浆料(c)iv.用一种或多种季烃基-铵盐处理所述合并的粘土浆料(c)v.从水性介质中分离由此制成的季烃基-铵盐处理的矿物粘土混合物,其中所述水性纤维棒石粘土浆料(a)如下形成:(i.1)将选自海泡石和坡缕石的一种或多种纤维棒石粘土组分分散在水性介质中以形成分散体,且所述水性绿土粘土浆料(b)如下形成:(ii.1)将一种或多种绿土粘土组分分散在水性介质中以形成分散体,且特征在于所述合并的粘土浆料(c)中的纤维棒石粘土含量的重量超过绿土粘土含量的重量;且在进行步骤iii之前和/或在进行步骤iii之后对(i.1)和(ii.1)中形成的分散体施以高速流体剪切;且其中用于形成所述水性纤维棒石粘土浆料(a)的一种或多种纤维棒石粘土组分在X-射线粉末图样中的密勒指数(110)的反射的积分宽度B小于0.800扫描单位,其中积分宽度B根据式(I)定义:B=(净反射面积)/(净反射高度)(I),所述X-射线粉末图样使用Cu-Kα1-辐射在所述纤维棒石粘土组分的取向甘醇化样品上记录。2.根据权利要求1的用途,所述液体组合物进一步包含至少一种烯属不饱和单体。3.根据权利要求2的用途,所述至少一种烯属不饱和单体选自苯乙烯、α-甲基苯乙烯、丙烯酸甲酯、甲基丙烯酸甲酯、乙酸乙烯酯、二乙烯基苯、邻苯二甲酸二烯丙酯、氰尿酸三烯丙酯和磷酸三烯丙酯及其混合物。4.一种生产包含季烃基-铵盐处理的矿物粘土混合物或由季烃基-铵盐处理的矿物粘土混合物构成的混合矿物有机粘土流变添加剂的方法,所述方法的特征在于:i.形成水性纤维棒石粘土浆料(a)ii.形成水性绿土粘土浆料(b)iii.合并水性纤维棒石粘土浆料(a)与水性绿土粘土浆料(b)以形成合并的粘土浆料(c)iv.用一种或多种季烃基-铵盐处理所述合并的粘土浆料(c),和v.任选从水性介质中分离由此制成的季烃基-铵盐处理的矿物粘土混合物,其中所述水性纤维棒石粘土浆料(a)如下形成:(i.1)将选自海泡石和坡缕石的一种或多种纤维棒石粘土组分分散在水性介质中以形成分散体,且所述水性绿土粘土浆料(b)如下形成:(ii.1)将一种或多种绿土粘土组分分散在水性介质中以形成分散体,且特征在于所述合并的粘土浆料(c)中的纤维棒石粘土含量的重量超过绿土粘土含量的重量;且在进...
【专利技术属性】
技术研发人员:K·德沃克,T·纳什,R·布雷尔,H·考特勒,
申请(专利权)人:毕克化学有限公司,毕克美国公司,
类型:发明
国别省市:德国,DE
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