CN106495742B - 抗蜡块粘结釉料、抗蜡块粘结陶瓷及其制备工艺 - Google Patents

抗蜡块粘结釉料、抗蜡块粘结陶瓷及其制备工艺 Download PDF

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CN106495742B
CN106495742B CN201610975455.4A CN201610975455A CN106495742B CN 106495742 B CN106495742 B CN 106495742B CN 201610975455 A CN201610975455 A CN 201610975455A CN 106495742 B CN106495742 B CN 106495742B
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吴养成
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Abstract

本发明公开了一种抗蜡块粘结釉料、抗蜡块粘结陶瓷及其制备工艺,以解决现有的技术缺陷,公开的一种抗蜡块粘结釉料,其组分由钾长石、锂长石、碳酸钙、滑石、高岭土、矽灰石、石英、氧化铝与纳米粉组成,各组分按重量份数计为:钾长石30、锂长石8、碳酸钙10、滑石6、高岭土10、矽灰石10、石英26、氧化铝1、纳米粉20。本发明所需的原料来源丰富,价格低廉,生产成本低,生产出来的抗蜡块粘结陶瓷其表面形成一层具有抗蜡块粘结的釉面层,很好的解决了蜡烛燃烧蜡水滴落凝结在陶瓷表面不易去除的问题。

Description

抗蜡块粘结釉料、抗蜡块粘结陶瓷及其制备工艺
技术领域
本发明涉及陶瓷加工工艺的技术领域,特别是抗蜡块粘结釉料、抗蜡块粘结陶瓷及其制备工艺的技术领域。
背景技术
陶瓷是人们生活中不可缺少的消费品,也是我国重要的传统产业。陶瓷产品主要包括:建筑陶瓷、日用陶瓷、卫生陶瓷、技术陶瓷以及特种陶瓷等陶瓷制品。随着社会经济发展,市场需求量也迅速增加,种类越来越广泛,陶瓷具有的经济、实用、美观等方面的优点深受消费者的喜爱。
随着经济的发展,以及人们生活水平的提高,人们对陶瓷的需求越来越多,品味也越来越高外,对使用性的要求也不断追求更贴近生活,方便生活。目前市场上陶瓷带电加热融香薰炉与蜡烛香薰炉,蜡水凝结后与陶瓷紧密粘连在一起,不方便取出,不方便更换,这一问题一直困扰着消费者。
发明内容
本发明的内容在于提供一种抗蜡块粘结釉料、抗蜡块粘结陶瓷及其制备工艺,以解决现有的技术缺陷。
本发明的技术方案一如下:一种抗蜡块粘结釉料,其组分由钾长石、锂长石、碳酸钙、滑石、高岭土、矽灰石、石英、氧化铝与纳米粉组成,各组分按重量份数计为:钾长石30、锂长石8、碳酸钙10、滑石6、高岭土10、矽灰石10、石英26、氧化铝1、纳米粉20。
优选的,所述纳米粉由以下组分组成:Al2O3、CaCO3、ZnO、BaCO3、TiO2、SiO2、MgO2
更为优选的,所述纳米粉各组分按重量份数计为:
Al2O3 3份
CaCO3 1.3份
ZnO 1.2份
BaCO3 0.4份
TiO2 1.1份
SiO2 0.1份
MgO2 0.8份
本发明的技术方案二如下:一种含有所述抗蜡块粘结釉料的抗蜡块粘结陶瓷。
本发明的技术方案三如下:一种抗蜡块粘结陶瓷的制备工艺,包括如下步骤:
S1、按所述抗蜡块粘结釉料的原料组分量选取品质稳定、无杂质的原料,进行混合;
S2、将步骤S1混合后的原料,按照质量比原料:水为1:60的比例投球磨缸研磨10~12小时,形成混合液;
S3、将步骤S2所述混合液置入釉桶,然后用除铁机除铁,用180目筛过筛后待用;
S4、通过陶瓷坯料制备坯体,并将坯体进行干燥处理、整修、素烧形成生坯;
S5、将步骤S2所述混合液浓度调至38-42波美度,使用该混合液对步骤S4所述生坯进行上釉处理;
S6、将步骤S5处理过后的生坯放入窑炉中,以1230-1250℃的高温烧制,烧制时间为11~14 h,制成抗蜡块粘结陶瓷。
本发明的有益效果为:
1)方法简单,所需的原料来源丰富,价格低廉,生产成本低,生产出来的抗蜡块粘结陶瓷其表面形成一层具有抗蜡块粘结的釉面层,很好的解决了蜡烛燃烧蜡水滴落凝结在陶瓷表面不易去除的问题。
具体实施例
实施例1:
一种抗蜡块粘结釉料,其组分由钾长石、锂长石、碳酸钙、滑石、高岭土、矽灰石、石英、氧化铝与纳米粉组成,各组分按重量份数计为:钾长石30、锂长石8、碳酸钙10、滑石6、高岭土10、矽灰石10、石英26、氧化铝1、纳米粉20。所述纳米粉各组分按重量份数计为:
Al2O3 3份
CaCO3 1.3份
ZnO 1.2份
BaCO3 0.4份
TiO2 1.1份
SiO2 0.1份
MgO2 0.8份
一种含有所述抗蜡块粘结釉料的抗蜡块粘结陶瓷。
一种抗蜡块粘结陶瓷的制备工艺,包括如下步骤:
S1、按所述抗蜡块粘结釉料的原料组分量选取品质稳定、无杂质的原料,进行混合;
S2、将步骤S1混合后的原料,按照质量比原料:水为1:60的比例投球磨缸研磨10~12小时,形成混合液;
S3、将步骤S2所述混合液置入釉桶,然后用除铁机除铁,用180目筛过筛后待用;
S4、通过陶瓷坯料制备坯体,并将坯体进行干燥处理、整修、素烧形成生坯;
S5、将步骤S2所述混合液浓度调至38-42波美度,使用该混合液对步骤S4所述生坯进行上釉处理;
S6、将步骤S5处理过后的生坯放入窑炉中,以1230-1250℃的高温烧制,烧制时间为11~14 h,制成抗蜡块粘结陶瓷。
实施例2:抗蜡块粘结性能测试
选取片状的且大小相同实施例1形成的抗蜡块粘结陶瓷共100块作为A组,选取市面上片状的且大小相同普通陶瓷共100块作为B组,在室温下,将A与B组各个陶瓷平放,然后分别使用燃烧蜡烛将滴落凝结在A与B组各个陶瓷表面,蜡水凝结后静置30分钟,再将A与B组各个陶瓷垂直放置4个小时,做记录。
记录结果:A组出现一半以上的蜡块自然脱落,剩下的采用简单外力如用手轻擦拭均可以轻松全部脱落下来;而B组并未出现蜡块自然脱落现象,剩下的采用简单外力如用手轻擦拭不能轻松去除,还需借助热水进行擦拭才能去除干净。
上述结果表明,本发明生产出来的抗蜡块粘结陶瓷其表面形成一层具有抗蜡块粘结的釉面层,很好的解决了蜡烛燃烧蜡水滴落凝结在陶瓷表面不易去除的问题。
以上对本发明的特定实施例进行了说明,但本发明的保护内容不仅仅限定于以上实施例,在本发明的所属技术领域中,只要掌握通常知识,就可以在其技术要旨范围内进行多种多样的变更。

Claims (4)

1.一种抗蜡块粘结釉料,其特征在于:其组分由钾长石、锂长石、碳酸钙、滑石、高岭土、矽灰石、石英、氧化铝与纳米粉组成,各组分按重量份数计为:钾长石30、锂长石8、碳酸钙10、滑石6、高岭土10、矽灰石10、石英26、氧化铝1、纳米粉20,其中所述纳米粉由以下组分组成:Al2O3、CaCO3、ZnO、BaCO3、TiO2、SiO2和MgO2
2.根据权利要求1所述的一种抗蜡块粘结釉料,其特征在于:所述纳米粉各组分按重量份数计为:
3.一种含有权利要求1~2任一项所述抗蜡块粘结釉料的抗蜡块粘结陶瓷。
4.一种权利要求3所述抗蜡块粘结陶瓷的制备工艺,其特征在于:包括如下步骤:
S1、按所述抗蜡块粘结釉料的原料组分量选取品质稳定、无杂质的原料,进行混合;
S2、将步骤S1混合后的原料,按照质量比原料:水为1:60的比例投球磨缸研磨10~12小时,形成混合液;
S3、将步骤S2所述混合液置入釉桶,然后用除铁机除铁,用180目筛过筛后待用;
S4、通过陶瓷坯料制备坯体,并将坯体进行干燥处理、整修、素烧形成生坯;
S5、将步骤S2所述混合液浓度调至38-42波美度,使用该混合液对步骤S4所述生坯进行上釉处理;
S6、将步骤S5处理过后的生坯放入窑炉中,以1230-1250℃的高温烧制,烧制时间为11~14h,制成抗蜡块粘结陶瓷。
CN201610975455.4A 2016-11-07 2016-11-07 抗蜡块粘结釉料、抗蜡块粘结陶瓷及其制备工艺 Active CN106495742B (zh)

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EP17199685.3A EP3318541B1 (en) 2016-11-07 2017-11-02 Glaze resistant to wax block bonding, ceramic resistant to wax block bonding and preparation process thereof
CA2984659A CA2984659C (en) 2016-11-07 2017-11-02 Glaze resistant to wax block bonding, ceramic resistant to wax block bonding and preparation process thereof
ES17199685T ES2726940T3 (es) 2016-11-07 2017-11-02 Esmalte resistente a unión de bloques de cera, cerámica resistente a unión de bloques de cera y procedimiento de preparación de los mismos
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TWI812835B (zh) * 2019-01-30 2023-08-21 德商夸茲沃克公司 結晶二氧化矽之隔離
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