CN103922813A - 一种解决瓷板磨光后上釉烧成时缩釉和釉面起孔的方法 - Google Patents

一种解决瓷板磨光后上釉烧成时缩釉和釉面起孔的方法 Download PDF

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CN103922813A
CN103922813A CN201410169771.3A CN201410169771A CN103922813A CN 103922813 A CN103922813 A CN 103922813A CN 201410169771 A CN201410169771 A CN 201410169771A CN 103922813 A CN103922813 A CN 103922813A
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glaze
porcelain plate
polishing
resintering
glazing
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CN103922813B (zh
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尹彦征
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Changsha Great Red Ceramic Development Co., Ltd.
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Abstract

一种解决瓷板磨光后上釉烧成时缩釉和釉面起孔的方法,该方法是将瓷板表面用机械打磨磨光后,放入窑炉中进行复烧,复烧温度为600~1300℃,保温10~60分钟后冷却,再往复烧后的瓷板上釉,入窑,釉烧,釉烧温度为1100~1350℃,保温10~60分钟,冷却,即成。经本发明处理的瓷板不仅表面平整光亮,无凹凸现象,而且上釉烧成后,釉面不缩釉不起孔。

Description

一种解决瓷板磨光后上釉烧成时缩釉和釉面起孔的方法
技术领域
本发明涉及一种解决瓷板磨光后上釉烧成时缩釉和釉面起孔的方法。
背景技术
目前,为了提高瓷板表面的平整度,消除瓷板表面的轻微凹凸现象,往往采用在泥瓷板高温烧成瓷后,将其表面进行机械打磨,磨光后,再上釉,二次烧成的方法,特别是手工成型的泥瓷板,多采用这种方法,但是,经该方法处理的瓷板易出现缩釉和釉面起孔的问题,而长期以来,一直没有找到有效的解决办法。
发明内容
本发明所要解决的技术问题是,提供一种解决瓷板磨光后上釉烧成时缩釉和釉面起孔的方法。
本发明解决其技术问题所采用的技术方案是:一种解决瓷板磨光后上釉烧成时缩釉和釉面起孔的方法是:将瓷板表面用机械打磨磨光后,放入窑炉中进行复烧,复烧温度为600~1300℃,保温10~60分钟后冷却,再往复烧后的瓷板上釉,入窑,釉烧,釉烧温度为1100~1350℃,保温10~60分钟,冷却,即成。
进一步,复烧温度为700~1200℃,保温15~30分钟。
进一步,复烧温度为800~1100℃。
进一步,复烧温度为850~1000℃。
经本发明处理的瓷板不仅表面平整光亮,无凹凸现象,而且上釉烧成后,釉面不缩釉不起孔,能有效解决现有技术存在的缩釉和釉面起孔的问题。
具体实施方式
以下结合实施例对本发明作进一步说明。
实施例1
将一块长1000mm、宽600mm、厚6mm的长方形瓷板表面用机械打磨磨光后,放入电窑中进行复烧,复烧温度为850℃,保温15分钟后冷却,往其表面喷上镉红色釉,放入电窑中,升温至1200℃,保温10分钟,冷却后,即烧成一块长方形大红色瓷板。
本实施例所得瓷板的釉面平整光亮,无凹凸现象,釉面不缩釉不起孔。
实施例2
将一块长1000mm、宽600mm、厚6mm的长方形瓷板表面用机械打磨磨光后,放入电窑中进行复烧,复烧温度为1000℃,保温30分钟后冷却,往其表面喷上镉红色釉,放入电窑中,升温至1300℃,保温20分钟,冷却后,即烧成一块长方形大红色瓷板。
本实施例所得瓷板的釉面平整光亮,无凹凸现象,釉面不缩釉不起孔。
实施例3
将一块φ1000mm、厚6mm的圆形瓷板表面用机械打磨磨光后,放入电窑中复烧,复烧温度为850℃,保温15分钟后冷却,往其表面喷上镉红色釉,放入电窑中,升温至1200℃,保温10分钟,冷却后,即烧成一块圆形大红色瓷板。
本实施例所得瓷板的釉面平整光亮,无凹凸现象,釉面不缩釉不起孔。
实施例4
将一块φ1000mm、厚6mm的圆形瓷板表面用机械打磨磨光后,放入电窑中进行复烧,复烧温度为1200℃,保温25分钟后冷却,往其表面喷上镉红色釉,放入电窑中,升温至1250℃,保温15分钟,冷却后,即烧成一块圆形大红色瓷板。
本实施例所得瓷板的釉面平整光亮,无凹凸现象,釉面不缩釉不起孔。

Claims (4)

1. 一种解决瓷板磨光后上釉烧成时缩釉和釉面起孔的方法,其特征在于:将瓷板表面用机械打磨磨光后,放入窑炉中进行复烧,复烧温度为600~1300℃,保温10~60分钟后冷却,再往复烧后的瓷板上釉,入窑,釉烧,釉烧温度为1100~1350℃,保温10~60分钟,冷却,即成。
2.根据权利要求1所述的解决瓷板磨光后上釉烧成时缩釉和釉面起孔的方法,其特征在于:复烧温度为700~1200℃,保温15~30分钟。
3.根据权利要求2所述的解决瓷板磨光后上釉烧成时缩釉和釉面起孔的方法,其特征在于:复烧温度为800~1100℃。
4.根据权利要求3所述的解决瓷板磨光后上釉烧成时缩釉和釉面起孔的方法,其特征在于:复烧温度为850~1000℃。
CN201410169771.3A 2014-04-25 2014-04-25 一种解决瓷板磨光后上釉烧成时缩釉和釉面起孔的方法 Active CN103922813B (zh)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108997027A (zh) * 2018-08-20 2018-12-14 合肥汉甲陶瓷科技有限公司 一种避免釉缩的瓷砖表面施釉方法

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1074429A (zh) * 1992-01-25 1993-07-21 景德镇市艺术瓷厂 薄胎瓷板的制造方法
US7175924B2 (en) * 2002-07-06 2007-02-13 Noritake Co., Limited Fine feldspathic earthenware and process of manufacturing the same
CN101456755A (zh) * 2009-01-06 2009-06-17 湖南大学 电磁炉陶瓷板及其制备方法
CN102058258A (zh) * 2009-11-17 2011-05-18 刘峻辰 瓷板的制造方法
CN103467141A (zh) * 2013-09-03 2013-12-25 张次绪 一种瓷器的高温釉面颜料装饰方法

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1074429A (zh) * 1992-01-25 1993-07-21 景德镇市艺术瓷厂 薄胎瓷板的制造方法
US7175924B2 (en) * 2002-07-06 2007-02-13 Noritake Co., Limited Fine feldspathic earthenware and process of manufacturing the same
CN101456755A (zh) * 2009-01-06 2009-06-17 湖南大学 电磁炉陶瓷板及其制备方法
CN102058258A (zh) * 2009-11-17 2011-05-18 刘峻辰 瓷板的制造方法
CN103467141A (zh) * 2013-09-03 2013-12-25 张次绪 一种瓷器的高温釉面颜料装饰方法

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108997027A (zh) * 2018-08-20 2018-12-14 合肥汉甲陶瓷科技有限公司 一种避免釉缩的瓷砖表面施釉方法
CN108997027B (zh) * 2018-08-20 2020-12-08 阜阳市鑫源建材有限公司 一种避免釉缩的瓷砖表面施釉方法

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Patentee before: Yin Yanzheng