CN107266022A - 裂纹陶瓷花瓶 - Google Patents

裂纹陶瓷花瓶 Download PDF

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CN107266022A
CN107266022A CN201710404609.9A CN201710404609A CN107266022A CN 107266022 A CN107266022 A CN 107266022A CN 201710404609 A CN201710404609 A CN 201710404609A CN 107266022 A CN107266022 A CN 107266022A
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郑敏
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Abstract

本发明涉及一种裂纹陶瓷花瓶,制作方法包括以下步骤:(1)制备坯体:按重量份数取坯体原材料,混合后经碾碎、沉淀,陈腐24小时后过250目筛成坯泥备用;(2)制备釉料:按重量份数取釉料原材料,混合均匀,湿磨4h,过300目筛筛余0.05%成釉浆备用;(3)将坯泥注浆成型为花瓶坯体,干燥后880~1020℃素烧6~7h,保温20min后,自然冷却至室温,备用;(4)坯体上采用浸釉法施釉,釉层厚度1.2~1.6mm,干燥后入窑烧制,烧制条件为:以20℃/min的速率升温至600℃,保温2.5h,再以15℃/min的速率升温至1000℃,保温3h,再以8℃/min的速率升温至1300℃,保温1.5h,自然冷却,得到裂纹陶瓷花瓶。所制得裂纹陶瓷花瓶装饰效果极强,且烧成率达95%以上。

Description

裂纹陶瓷花瓶
技术领域
本发明涉及陶瓷领域,更具体地,涉及一种裂纹陶瓷花瓶。
背景技术
瓷器釉面布满许多小裂纹,有疏有密,有粗有细,有长有短,有曲有直,形似龟裂、蟹爪或冰裂的纹路,称为裂纹釉。本是制瓷工艺中的一种缺陷,之后被利用来装饰瓷器。裂纹釉产生的原因,在于釉的膨胀系数大于坯的膨胀系数,在加热过程中,釉面产生较大的张应力,使釉面形成许多裂纹。但由于生产技术难度大,失败率较高,因此具有局限性。
发明内容
本发明的目的是提供一种裂纹陶瓷花瓶,其釉面布满大小较为均匀的龟裂纹,纹路细深入骨,装饰效果极强。
本发明目的通过以下技术方案予以实现:
提供一种裂纹陶瓷花瓶坯料,其重量份数组成:煅烧陶土25~29份,建设土22~35份,硬硅钙石2~16份,纳米蒙脱土14~19份,氧化锌2~3份,埃洛石18~27份,刚玉12~16份,崇光石2~5份,红柱石5~10份,田黄石3~6份。
提供一种裂纹陶瓷花瓶釉料,其重量份数组成:滑石12~17份,釉土19~26份,膨胀珍珠岩9~15份,白垩粉12~20份,苏州土8~14份,查罗石7~11份,海泥4~7份,黄砂1~3份。
提供一种裂纹陶瓷花瓶,制作方法包括以下步骤:
(1)制备坯体:按重量份数取煅烧陶土25~29份,建设土22~35份,硬硅钙石2~16份,纳米蒙脱土14~19份,氧化锌2~3份,埃洛石18~27份,刚玉12~16份,崇光石2~5份,红柱石5~10份,田黄石3~6份,混合后经碾碎、沉淀,陈腐24小时后过250目筛成坯泥备用;
(2)制备釉料:按重量份数取滑石12~17份,釉土19~26份,膨胀珍珠岩9~15份,白垩粉12~20份,苏州土8~14份,查罗石7~11份,海泥4~7份,黄砂1~3份,混合均匀,湿磨4h,过300目筛筛余0.05%成釉浆备用;
(3)将坯泥注浆成型为花瓶坯体,干燥后880~1020℃素烧6~7h,保温20min后,自然冷却至室温,备用;
(4)坯体上采用浸釉法施釉,釉层厚度1.2~1.6mm,干燥后入窑烧制,烧制条件为:以20℃/min的速率升温至600℃,保温2.5h,再以15℃/min的速率升温至1000℃,保温3h,再以8℃/min的速率升温至1300℃,保温1.5h,自然冷却,得到裂纹陶瓷花瓶。
与现有技术相比,本发明具有以下有益效果:
本发明提供了一种裂纹陶瓷花瓶,其釉面布满大小较为均匀的龟裂纹,纹路细深入骨,装饰效果极强,且烧成率达95%以上。
具体实施方式
下面结合具体实施例对本发明作进一步的说明。
实施例1
本实施例公开了一种裂纹陶瓷花瓶坯料,其重量份数组成:煅烧陶土25份,建设土22份,硬硅钙石2份,纳米蒙脱土14份,氧化锌2份,埃洛石18份,刚玉12份,崇光石2份,红柱石5份,田黄石3份。
实施例2
本实施例公开了一种裂纹陶瓷花瓶坯料,其重量份数组成:煅烧陶土29份,建设土35份,硬硅钙石16份,纳米蒙脱土19份,氧化锌3份,埃洛石27份,刚玉16份,崇光石5份,红柱石10份,田黄石6份。
实施例3
本实施例公开了一种裂纹陶瓷花瓶坯料,其重量份数组成:煅烧陶土27份,建设土30份,硬硅钙石8份,纳米蒙脱土16份,氧化锌2.5份,埃洛石22份,刚玉14份,崇光石4份,红柱石7份,田黄石5份。
实施例4
本实施例公开了一种裂纹陶瓷花瓶釉料,其重量份数组成:滑石12份,釉土19份,膨胀珍珠岩9份,白垩粉12份,苏州土8份,查罗石7份,海泥4份,黄砂1份。
实施例5
本实施例公开了一种裂纹陶瓷花瓶釉料,其重量份数组成:滑石17份,釉土26份,膨胀珍珠岩15份,白垩粉20份,苏州土14份,查罗石11份,海泥7份,黄砂3份。
实施例6
本实施例公开了一种裂纹陶瓷花瓶釉料,其重量份数组成:滑石15份,釉土23份,膨胀珍珠岩12份,白垩粉16份,苏州土12份,查罗石9份,海泥6份,黄砂2份。
实施例7
本实施例公开了一种裂纹陶瓷花瓶,制作方法包括以下步骤:
(1)制备坯体:按重量份数取实施例1~3的坯料,混合后经碾碎、沉淀,陈腐24小时后过250目筛成坯泥备用;
(2)制备釉料:按重量份数取实施例4~6的釉料,混合均匀,湿磨4h,过300目筛筛余0.05%成釉浆备用;
(3)将坯泥注浆成型为花瓶坯体,干燥后880℃素烧7h,保温20min后,自然冷却至室温,备用;
(4)坯体上采用浸釉法施釉,釉层厚度1.2mm,干燥后入窑烧制,烧制条件为:以20℃/min的速率升温至600℃,保温2.5h,再以15℃/min的速率升温至1000℃,保温3h,再以8℃/min的速率升温至1300℃,保温1.5h,自然冷却,得到釉面布满大小较为均匀龟裂纹的陶瓷花瓶,纹路细深入骨,装饰效果极强。且烧成率达95%。
实施例8
本实施例公开了一种裂纹陶瓷花瓶,制作方法包括以下步骤:
(1)制备坯体:按重量份数取实施例1~3的坯料,混合后经碾碎、沉淀,陈腐24小时后过250目筛成坯泥备用;
(2)制备釉料:按重量份数取实施例4~6的釉料,混合均匀,湿磨4h,过300目筛筛余0.05%成釉浆备用;
(3)将坯泥注浆成型为花瓶坯体,干燥后1020℃素烧7h,保温20min后,自然冷却至室温,备用;
(4)坯体上采用浸釉法施釉,釉层厚度1.6mm,干燥后入窑烧制,烧制条件为:以20℃/min的速率升温至600℃,保温2.5h,再以15℃/min的速率升温至1000℃,保温3h,再以8℃/min的速率升温至1300℃,保温1.5h,自然冷却,得到釉面布满大小较为均匀龟裂纹的陶瓷花瓶,纹路细深入骨,装饰效果极强。且烧成率达95.5%。
实施例9
本实施例公开了一种裂纹陶瓷花瓶,制作方法包括以下步骤:
(1)制备坯体:按重量份数取实施例1~3的坯料,混合后经碾碎、沉淀,陈腐24小时后过250目筛成坯泥备用;
(2)制备釉料:按重量份数取实施例4~6的釉料,混合均匀,湿磨4h,过300目筛筛余0.05%成釉浆备用;
(3)将坯泥注浆成型为花瓶坯体,干燥后980℃素烧6.5h,保温20min后,自然冷却至室温,备用;
(4)坯体上采用浸釉法施釉,釉层厚度1.4mm,干燥后入窑烧制,烧制条件为:以20℃/min的速率升温至600℃,保温2.5h,再以15℃/min的速率升温至1000℃,保温3h,再以8℃/min的速率升温至1300℃,保温1.5h,自然冷却,得到釉面布满大小较为均匀龟裂纹的陶瓷花瓶,纹路细深入骨,装饰效果极强。且烧成率达95.2%。

Claims (3)

1.一种裂纹陶瓷花瓶坯料,其特征在于,其重量百分比组成:煅烧陶土25~29份,建设土22~35份,硬硅钙石2~16份,纳米蒙脱土14~19份,氧化锌2~3份,埃洛石18~27份,刚玉12~16份,崇光石2~5份,红柱石5~10份,田黄石3~6份。
2.一种裂纹陶瓷花瓶釉料,其特征在于,其重量百分比组成:滑石12~17份,釉土19~26份,膨胀珍珠岩9~15份,白垩粉12~20份,苏州土8~14份,查罗石7~11份,海泥4~7份,黄砂1~3份。
3.一种裂纹陶瓷花瓶,其特征在于,所述裂纹陶瓷花瓶的制作方法包括以下步骤:
(1)制备坯体:按重量份数取煅烧陶土25~29份,建设土22~35份,硬硅钙石2~16份,纳米蒙脱土14~19份,氧化锌2~3份,埃洛石18~27份,刚玉12~16份,崇光石2~5份,红柱石5~10份,田黄石3~6份,混合后经碾碎、沉淀,陈腐24小时后过250目筛成坯泥备用;
(2)制备釉料:按重量份数取滑石12~17份,釉土19~26份,膨胀珍珠岩9~15份,白垩粉12~20份,苏州土8~14份,查罗石7~11份,海泥4~7份,黄砂1~3份,混合均匀,湿磨4h,过300目筛筛余0.05%成釉浆备用;
(3)将坯泥注浆成型为花瓶坯体,干燥后880~1020℃素烧6~7h,保温20min后,自然冷却至室温,备用;
(4)坯体上采用浸釉法施釉,釉层厚度1.2~1.6mm,干燥后入窑烧制,烧制条件为:以20℃/min的速率升温至600℃,保温2.5h,再以15℃/min的速率升温至1000℃,保温3h,再以8℃/min的速率升温至1300℃,保温1.5h,自然冷却,得到裂纹陶瓷花瓶。
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