CN114105613B - 一种大颗粒斑点全通透陶瓷岩板及其制造工艺 - Google Patents
一种大颗粒斑点全通透陶瓷岩板及其制造工艺 Download PDFInfo
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Abstract
本发明实施方式公开了一种大颗粒斑点全通透陶瓷岩板的制造工艺,采用了如天然大理石色调,将色料及其组合搭配,通过喷粉冲击实现颜色的渗入,从而形成大颗粒斑点结构,同色料渗入、渗透性强、颜色融合的全通透效果。包括以下步骤:(1)选取原料、配料、球磨、放浆,过筛,得到基料浆料;(2)冲色工艺,调配不同颜色的色料A、B、C:(3)喷粉、送料;(4)干混得到深棕大颗粒基料;(5)布料,将D深棕大颗粒粉料分布在容器内,设计图案并采用打印喷粉对D深棕大颗粒粉料喷A、B、C;(6)压制成型、切割,干燥,施透明干粒,烧制、磨抛,制得大颗粒斑点全通透陶瓷岩板。
Description
技术领域
本发明涉及陶瓷岩板领域,尤其涉及一种大颗粒斑点全通透陶瓷岩板及其制造工艺。
背景技术
陶瓷岩板,即岩板,又称烧结的石头,是采用原料经压机压制、在1200℃以上高温烧制而成。陶瓷在我国的历史悠久,岩板属于新生代,也是现代陶瓷发展的一个方向。陶瓷岩板应用范围广,如家具面板、地板砖、墙砖等。
瓷砖、岩板和天然大理石的用途相近,均有其自身的优缺点,如瓷砖坚硬、样式多、技术成熟、尺寸有限制,又如岩板尺寸制作范围大、可雕刻、技术不成熟,再如天然大理石观赏性高、质脆、而且资源会耗尽。
如何将这三种产品综合并发扬其优点,去掉其缺点,是本领域技术人员急需研发的方向之一。
发明内容
本发明实施方式提供了一种大颗粒斑点全通透陶瓷岩板及其制造工艺,采用了如天然大理石的色调,控制色料的颜色组成,以及其组合调配后搭配,通过喷粉冲击实现颜色的渗入,从而形成大颗粒斑点结构,同色料渗入、渗透性强、颜色融合的全通透效果。
为解决上述问题,本发明提供的一种大颗粒斑点全通透陶瓷岩板的制造工艺,包括以下步骤:
(1)选取原料、配料、球磨、放浆,过筛,得到基料浆料;
(2)冲色工艺,调配不同颜色的色料A、B、C:
A浅棕料,包括组分:重量份为100的基料浆料、重量份为0.4-0.6的桔黄色料、重量份为0.1的特黑色料、重量份为0.7-0.9的沙漠红色料;
B灰棕料,包括组分:重量份为100的基料浆料、重量份为1-1.2的桔黄色料、重量份为0.35的特黑色料、重量份为1.4-1.5的沙漠红色料;
C深棕料,包括组分:重量份为100的基料浆料、重量份为1.5-1.6的桔黄色料、重量份为0.9-1的沙漠红色料;
(3)喷粉、送料;
(4)干混,按重量比为10:55:35=A浅棕料:B灰棕料:C深棕料进行配比,得到深棕大颗粒基料;
按重量比为100:1.5:1.5:0.5-1=深棕大颗粒基料:浅啡颗粒:浅棕颗粒:灰颗粒进行配料,得到的深棕大颗粒配置成流速<23秒、容重>0.9-0.92%、水分=9.5-10%的D深棕大颗粒粉料;
(5)布料,将D深棕大颗粒粉料分布在容器内,设计图案并采用打印喷粉对D深棕大颗粒粉料喷洒A、B、C;
(6)压制成型、切割,干燥,施透明干粒,烧制、磨抛,制得大颗粒斑点全通透陶瓷岩板。
优选地,所述步骤(5)喷洒A、B、C的压力为20-25bar。
优选地,所述喷洒的喷头直径为0.2-0.5cm。
优选地,所述基料浆料的组分为:
水磨料22-25重量份、钾石粉10重量份、高白钾砂5重量份、水磨石粉8-9重量份、钾钠砂9重量份、膨润土3-5重量份、滑石粒3-5重量份,白球土30重量份、黑坭6重量份、超白坭粉8重量份;
其化学成份为:SiO2为64.98%、Al2O3为20.41%、Fe2O3为0.48%、TiO2为0.19%、CaO为0.62%、MgO为1.57%、K2O为3.06%、Na2O为2.21%、L.O.I为5.70%,其余为杂质。
优选地,所述水磨料22-25重量份为水磨料1号17重量份和水磨料2号7重量份。
优选地,所述放浆的参数为流速35-70秒、水份32-35%、细度0.8-1%。
优选地,所述压制成型在20000吨重力下采用滚压连续压制成型;
所述切割为根据图案切割。
优选地,所述干燥后使得干坯体强度在3.5-4.5MPa、水份为0.7-1.1%、抗折强度为36-52MPa、吸水率<0.05%、白度>60°。
优选地,所述透明干粒的比重为1.2-1.35%、施干粒量为30g/m2、采用高压喷油柜喷洒,喷嘴直径为0.30-0.36mm。
优选地,所述步骤(4),每10秒的标称份量为:深棕大颗粒11-12.5Kg。
从以上技术方案可以看出,本实施方式具有以下优点:本发明采用冲色工艺调配相似色调的棕色料,A浅棕料、B灰棕料、C深棕料分别由桔黄色料、沙漠红色料和/或特黑色料控制颜色而成,因此组成了同色系的相似色,并利用A、B、C三个色料、继而采用浅啡颗粒、浅棕颗粒、灰颗粒调配成深棕大颗粒,最后控制参数调配横D深棕大颗粒粉料。
将该D深棕大颗粒粉料铺设在容器内,在通过喷的方式将A浅棕料、B灰棕料、C深棕料通入D深棕大颗粒粉料的表面及其内部。
由于A、B、C、D的色系相同,而且颜色与天然大理石颜色相仿,在A、B、C按照图案要求打入D中时,能形成大颗粒斑点结构,而且A、B、C的渗入效果和颜色关系,使得陶瓷岩板呈现全通透效果。
附图说明
图1为本发明一种大颗粒斑点全通透陶瓷岩板的制造工艺的结构示意图;
图2为全通透的石块结构样式。
其中,图中标记如下:
坯体1、A浅棕料或B灰棕料或C深棕料2、D深棕大颗粒粉料3。
具体实施方式
本发明实施方式提供了一种大颗粒斑点全通透陶瓷岩板及其制造工艺,采用了如天然大理石的色调,控制色料的颜色组成,先置一层D深棕大颗粒粉料,再将A浅棕料、B灰棕料、C深棕料按照图案打入D中,这种喷粉冲击实现颜色的渗入,从而形成大颗粒斑点结构,相似色料渗入、渗透性强、颜色融合的全通透效果。
请参考图1,图1为本发明一种大颗粒斑点全通透陶瓷岩板的制造工艺的结构示意图。
本发明提供的一种大颗粒斑点全通透陶瓷岩板的制造工艺,包括以下步骤:
(1)选取原料、配料、球磨、放浆,过筛,得到基料浆料;
(2)冲色工艺,调配不同颜色的色料A、B、C:
A浅棕料,包括组分:重量份为100的基料浆料、重量份为0.4-0.6的桔黄色料、重量份为0.1的特黑色料、重量份为0.7-0.9的沙漠红色料;
B灰棕料,包括组分:重量份为100的基料浆料、重量份为1-1.2的桔黄色料、重量份为0.35的特黑色料、重量份为1.4-1.5的沙漠红色料;
C深棕料,包括组分:重量份为100的基料浆料、重量份为1.5-1.6的桔黄色料、重量份为0.9-1的沙漠红色料;
(3)喷粉、送料;
(4)干混,按重量比为10:55:35=A浅棕料:B灰棕料:C深棕料进行配比,得到深棕大颗粒基料;
按重量比为100:1.5:1.5:0.5-1=深棕大颗粒基料:浅啡颗粒:浅棕颗粒:灰颗粒进行配料,得到的深棕大颗粒配置成流速<23秒、容重>0.9-0.92%、水分=9.5-10%的D深棕大颗粒粉料;
(5)布料,将D深棕大颗粒粉料分布在容器内,设计图案并采用打印喷粉对D深棕大颗粒粉料喷A、B、C;
(6)压制成型、切割,干燥,施透明干粒,烧制、磨抛,制得大颗粒斑点全通透陶瓷岩板。
优选地,所述步骤(5)喷洒A、B、C的压力为20-25bar。
优选地,所述喷洒的喷头直径为0.2-0.5cm。
优选地,所述基料浆料的组分为:
水磨料22-25重量份、钾石粉10重量份、高白钾砂5重量份、水磨石粉8-9重量份、钾钠砂9重量份、膨润土3-5重量份、滑石粒3-5重量份,白球土30重量份、黑坭6重量份、超白坭粉8重量份;
其化学成份为:SiO2为64.98%、Al2O3为20.41%、Fe2O3为0.48%、TiO2为0.19%、CaO为0.62%、MgO为1.57%、K2O为3.06%、Na2O为2.21%、L.O.I为5.70%,其余为杂质。
优选地,所述水磨料22-25重量份为水磨料1号17重量份和水磨料2号7重量份。
优选地,所述放浆的参数为流速35-70秒、水份32-35%、细度0.8-1%。
优选地,所述压制成型在20000吨重力下采用滚压连续成型;
所述切割为根据图案切割。
优选地,所述干燥后使得干坯体强度在3.5-4.5MPa、水份为0.7-1.1%、抗折强度为36-52MPa、吸水率<0.05%、白度>60°。
优选地,所述透明干粒的比重为1.2-1.35%、施干粒量为30g/m2、采用高压喷油柜喷洒,喷嘴直径为0.30-0.36mm。
优选地,所述步骤(4),每10秒的标称份量为:深棕大颗粒11-12.5Kg。
本发明采用冲色工艺调配相似色调的棕色料,A浅棕料、B灰棕料、C深棕料分别由桔黄色料、沙漠红色料和/或特黑色料控制颜色而成,因此组成了同色系的相似色,并利用A、B、C三个色料、继而采用浅啡颗粒、浅棕颗粒、灰颗粒调配成深棕大颗粒,最后控制参数调配横D深棕大颗粒粉料。
将该D深棕大颗粒粉料铺设在容器内,在通过冲喷的方式将A浅棕料、B灰棕料、C深棕料打入D深棕大颗粒粉料的表面及其内部,并按照设计的图案打入指定重量的色料,如图1可见,正如A、B或C冲击入D的粉料结构中,由于具有冲击力,A、B或C冲入D的内部,使得纹理形成深刻的渗入,为全通透的工艺提供良好条件。如图2所见,图2为大颗粒斑点全通透的石块样式。
由于A、B、C、D的色系相同,而且颜色与天然大理石颜色相仿,在A、B、C按照图案要求打入D中时,能形成大颗粒斑点结构,而且A、B、C的渗入效果和颜色关系,使得陶瓷岩板呈现全通透效果。
实施方式
本发明提供的一种大颗粒斑点全通透陶瓷岩板的制造工艺,包括以下步骤:
(1)选取原料、配料、球磨、放浆,过筛,得到基料浆料;
放浆的参数为流速35-70秒、水份32-35%、细度0.8-1%;
所述基料浆料的组分为:
水磨料1号17重量份、水磨料2号7重量份、钾石粉10重量份、高白钾砂5重量份、水磨石粉8-9重量份、钾钠砂9重量份、膨润土3-5重量份、滑石粒3-5重量份,白球土30重量份、黑坭6重量份、超白坭粉8重量份;
其化学成份为:SiO2为64.98%、Al2O3为20.41%、Fe2O3为0.48%、TiO2为0.19%、CaO为0.62%、MgO为1.57%、K2O为3.06%、Na2O为2.21%、L.O.I为5.70%,其余为杂质。
(2)冲色工艺,调配不同颜色的色料A、B、C:
A浅棕料,包括组分:重量份为100的基料浆料、重量份为0.4-0.6的桔黄色料、重量份为0.1的特黑色料、重量份为0.7-0.9的沙漠红色料;
B灰棕料,包括组分:重量份为100的基料浆料、重量份为1-1.2的桔黄色料、重量份为0.35的特黑色料、重量份为1.4-1.5的沙漠红色料;
C深棕料,包括组分:重量份为100的基料浆料、重量份为1.5-1.6的桔黄色料、重量份为0.9-1的沙漠红色料;
(3)喷粉、送料;
(4)干混,按重量比为10:55:35=A浅棕料:B灰棕料:C深棕料进行配比,得到深棕大颗粒基料;
按重量比为100:1.5:1.5:0.5-1=深棕大颗粒基料:浅啡颗粒:浅棕颗粒:灰颗粒进行配料,得到的深棕大颗粒配置成流速<23秒、容重>0.9-0.92%、水分=9.5-10%的D深棕大颗粒粉料;
每10秒的标称份量为:深棕大颗粒11-12.5Kg;
(5)布料,将D深棕大颗粒粉料分布在容器内,设计图案并采用打印喷粉对D深棕大颗粒粉料喷A、B、C,喷头直径为0.2-0.5cm,喷洒压力为20-25bar;
(6)在20000吨重力下采用滚压连续压制成型、根据图案切割,干燥,施透明干粒,烧制、磨抛,制得大颗粒斑点全通透陶瓷岩板;
干燥后使得干坯体强度在3.5-4.5MPa、水份为0.7-1.1%、抗折强度为36-52MPa、吸水率<0.05%、白度>60°;
透明干粒的比重为1.2-1.35%、施干粒量为30g/m2、采用高压喷油柜喷洒,喷嘴直径为0.30-0.36mm。
下面以实施例对本发明进行详细描述:
实施例1
本发明提供的一种大颗粒斑点全通透陶瓷岩板的制造工艺,包括以下步骤:
(1)选取原料、配料、球磨、放浆,过筛,得到基料浆料;
放浆的参数为流速60秒、水份35%、细度0.8%;
所述基料浆料的组分为:
水磨料1号17重量份、水磨料2号7重量份、钾石粉10重量份、高白钾砂5重量份、水磨石粉8重量份、钾钠砂9重量份、膨润土3.5重量份、滑石粒3.5重量份,白球土30重量份、黑坭6重量份、超白坭粉8重量份;
其化学成份为:SiO2为64.98%、Al2O3为20.41%、Fe2O3为0.48%、TiO2为0.19%、CaO为0.62%、MgO为1.57%、K2O为3.06%、Na2O为2.21%、L.O.I为5.70%,其余为杂质。
(2)冲色工艺,调配不同颜色的色料A、B、C:
A浅棕料,包括组分:重量份为100的基料浆料、重量份为0.4的桔黄色料、重量份为0.1的特黑色料、重量份为0.7的沙漠红色料;
B灰棕料,包括组分:重量份为100的基料浆料、重量份为1的桔黄色料、重量份为0.35的特黑色料、重量份为1.4的沙漠红色料;
C深棕料,包括组分:重量份为100的基料浆料、重量份为1.5的桔黄色料、重量份为0.9的沙漠红色料;
(3)喷粉、送料;
(4)干混,按重量比为10:55:35=A浅棕料:B灰棕料:C深棕料进行配比,得到深棕大颗粒基料;
按重量比为100:1.5:1.5:0.5=深棕大颗粒基料:浅啡颗粒:浅棕颗粒:灰颗粒进行配料,得到的深棕大颗粒配置成流速<23秒、容重>0.9-0.92%、水分=9.5-10%的D深棕大颗粒粉料;
每10秒的标称份量为:深棕大颗粒11.8Kg;
(5)布料,将D深棕大颗粒粉料分布在容器内,设计图案并采用打印喷粉对D深棕大颗粒粉料喷A、B、C,喷头直径为0.4cm,喷洒压力为22bar;
(6)在20000吨重力下采用滚压连续压制成型、根据图案切割,干燥,施透明干粒,烧制、磨抛,制得大颗粒斑点全通透陶瓷岩板;
干燥后使得干坯体强度在3.8MPa、水份为0.85%、抗折强度为40-52MPa、吸水率<0.05%、白度>60°;
透明干粒的比重为1.35%、施干粒量为30g/m2、采用高压喷油柜喷洒,喷嘴直径为0.30-0.36mm。
实施例2
本发明提供的一种大颗粒斑点全通透陶瓷岩板的制造工艺,包括以下步骤:
(1)选取原料、配料、球磨、放浆,过筛,得到基料浆料;
放浆的参数为流速60秒、水份35%、细度0.8%;
所述基料浆料的组分为:
水磨料1号17重量份、水磨料2号7重量份、钾石粉10重量份、高白钾砂5重量份、水磨石粉8重量份、钾钠砂9重量份、膨润土3.5重量份、滑石粒3.5重量份,白球土30重量份、黑坭6重量份、超白坭粉8重量份;
其化学成份为:SiO2为64.98%、Al2O3为20.41%、Fe2O3为0.48%、TiO2为0.19%、CaO为0.62%、MgO为1.57%、K2O为3.06%、Na2O为2.21%、L.O.I为5.70%,其余为杂质。
(2)冲色工艺,调配不同颜色的色料A、B、C:
A浅棕料,包括组分:重量份为100的基料浆料、重量份为0.5的桔黄色料、重量份为0.1的特黑色料、重量份为0.8的沙漠红色料;
B灰棕料,包括组分:重量份为100的基料浆料、重量份为1-1.2的桔黄色料、重量份为0.35的特黑色料、重量份为1.45的沙漠红色料;
C深棕料,包括组分:重量份为100的基料浆料、重量份为1.55的桔黄色料、重量份为0.95的沙漠红色料;
(3)喷粉、送料;
(4)干混,按重量比为10:55:35=A浅棕料:B灰棕料:C深棕料进行配比,得到深棕大颗粒基料;
按重量比为100:1.5:1.5:0.7=深棕大颗粒基料:浅啡颗粒:浅棕颗粒:灰颗粒进行配料,得到的深棕大颗粒配置成流速<23秒、容重>0.9-0.92%、水分=9.5-10%的D深棕大颗粒粉料;
每10秒的标称份量为:深棕大颗粒11.8Kg;
(5)布料,将D深棕大颗粒粉料分布在容器内,设计图案并采用打印喷粉对D深棕大颗粒粉料喷A、B、C,喷头直径为0.4cm,喷洒压力为22bar;
(6)在20000吨重力下采用滚压连续压制成型、根据图案切割,干燥,施透明干粒,烧制、磨抛,制得大颗粒斑点全通透陶瓷岩板;
干燥后使得干坯体强度在3.8MPa、水份为0.85%、抗折强度为40-52MPa、吸水率<0.05%、白度>60°;
透明干粒的比重为1.35%、施干粒量为30g/m2、采用高压喷油柜喷洒,喷嘴直径为0.30-0.36mm。
实施例3
本发明提供的一种大颗粒斑点全通透陶瓷岩板的制造工艺,包括以下步骤:
(1)选取原料、配料、球磨、放浆,过筛,得到基料浆料;
放浆的参数为流速60秒、水份35%、细度0.8%;
所述基料浆料的组分为:
水磨料1号17重量份、水磨料2号7重量份、钾石粉10重量份、高白钾砂5重量份、水磨石粉8重量份、钾钠砂9重量份、膨润土3.5重量份、滑石粒3.5重量份,白球土30重量份、黑坭6重量份、超白坭粉8重量份;
其化学成份为:SiO2为64.98%、Al2O3为20.41%、Fe2O3为0.48%、TiO2为0.19%、CaO为0.62%、MgO为1.57%、K2O为3.06%、Na2O为2.21%、L.O.I为5.70%,其余为杂质。
(2)冲色工艺,调配不同颜色的色料A、B、C:
A浅棕料,包括组分:重量份为100的基料浆料、重量份为0.6的桔黄色料、重量份为0.1的特黑色料、重量份为0.9的沙漠红色料;
B灰棕料,包括组分:重量份为100的基料浆料、重量份为1.2的桔黄色料、重量份为0.35的特黑色料、重量份为1.5的沙漠红色料;
C深棕料,包括组分:重量份为100的基料浆料、重量份为1.6的桔黄色料、重量份为1的沙漠红色料;
(3)喷粉、送料;
(4)干混,按重量比为10:55:35=A浅棕料:B灰棕料:C深棕料进行配比,得到深棕大颗粒基料;
按重量比为100:1.5:1.5:1=深棕大颗粒基料:浅啡颗粒:浅棕颗粒:灰颗粒进行配料,得到的深棕大颗粒配置成流速<23秒、容重>0.9-0.92%、水分=9.5-10%的D深棕大颗粒粉料;
每10秒的标称份量为:深棕大颗粒11.8Kg;
(5)布料,将D深棕大颗粒粉料分布在容器内,设计图案并采用打印喷粉对D深棕大颗粒粉料喷A、B、C,喷头直径为0.4cm,喷洒压力为22bar;
(6)在20000吨重力下采用滚压连续压制成型、根据图案切割,干燥,施透明干粒,烧制、磨抛,制得大颗粒斑点全通透陶瓷岩板;
干燥后使得干坯体强度在3.8MPa、水份为0.85%、抗折强度为40-52MPa、吸水率<0.05%、白度>60°;
透明干粒的比重为1.35%、施干粒量为30g/m2、采用高压喷油柜喷洒,喷嘴直径为0.30-0.36mm。
将上述实施例1-3制得的陶瓷岩板进行检测,抗折强度达标、吸水率达标、强度达标,观察各陶瓷岩板,肉眼可见的深度厚。
可见,本发明采用冲色工艺调配相似色调的棕色料,A浅棕料、B灰棕料、C深棕料分别由桔黄色料、沙漠红色料和/或特黑色料控制颜色而成,因此组成了同色系的相似色,并利用A、B、C三个色料、继而采用浅啡颗粒、浅棕颗粒、灰颗粒调配成深棕大颗粒,最后控制参数调配横D深棕大颗粒粉料。
将该D深棕大颗粒粉料铺设在容器内,在通过喷的方式将A浅棕料、B灰棕料、C深棕料通入D深棕大颗粒粉料的表面及其内部。
由于A、B、C、D的色系相同,而且颜色与天然大理石颜色相仿,在A、B、C按照图案要求打入D中时,能形成大颗粒斑点结构,而且A、B、C的渗入效果和颜色关系,使得陶瓷岩板呈现全通透效果。
以上所述,以上实施方式和实施例仅用以说明本发明的技术方案,而非对其限制;尽管参照前述实施方式和实施例对本发明进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本发明各实施方式和实施例技术方案的精神和范围。
Claims (6)
1.一种大颗粒斑点全通透陶瓷岩板的制造工艺,其特征在于,包括以下步骤:
(1)选取原料、配料、球磨、放浆,过筛,得到基料浆料;
(2)冲色工艺,调配不同颜色的色料A、B、C:
A浅棕料,包括组分:重量份为100的基料浆料、重量份为0.4-0.6的桔黄色料、重量份为0.1的特黑色料、重量份为0.7-0.9的沙漠红色料;
B灰棕料,包括组分:重量份为100的基料浆料、重量份为1-1.2的桔黄色料、重量份为0.35的特黑色料、重量份为1.4-1.5的沙漠红色料;
C深棕料,包括组分:重量份为100的基料浆料、重量份为1.5-1.6的桔黄色料、重量份为0.9-1的沙漠红色料;
(3)喷粉、送料;
(4)干混,按重量比为10:55:35= A浅棕料:B灰棕料:C深棕料进行配比,得到深棕大颗粒基料;
按重量比为100:1.5:1.5:0.5-1=深棕大颗粒基料:浅啡颗粒:浅棕颗粒:灰颗粒进行配料,得到的深棕大颗粒配置成流速<23秒、容重>0.9-0.92%、水分=9.5-10%的D深棕大颗粒粉料;
(5)布料,将D深棕大颗粒粉料分布在容器内,设计图案并采用打印喷粉对D深棕大颗粒粉料喷A、B、C,喷洒压力为20-25bar,所述喷洒的喷头直径为0.2-0.5cm;
(6)压制成型、切割,干燥,施透明干粒,烧制、磨抛,制得大颗粒斑点全通透陶瓷岩板;
所述基料浆料的组分为:
水磨料22-25重量份、钾石粉10重量份、高白钾砂5重量份、水磨石粉8-9重量份、钾钠砂9重量份、膨润土3-5重量份、滑石粒3-5重量份,白球土30重量份、黑坭6重量份、超白坭粉8重量份;
所述水磨料22-25重量份为水磨料1号17重量份和水磨料2号7重量份;
所述压制成型在20000吨重力下采用滚压连续压制成型;
所述切割为根据图案切割;
所述透明干粒的比重为1.2-1.35%、施干粒量为30g/m2、采用高压喷油柜喷洒,喷嘴直径为0.30-0.36mm。
2.根据权利要求1所述的大颗粒斑点全通透陶瓷岩板的制造工艺,其特征在于,所述基料浆料的化学成份为:SiO2为64.98%、Al2O3为20.41%、Fe2O3为0.48%、TiO2为0.19%、CaO为0.62%、MgO为1.57%、K2O为3.06%、Na2O为2.21%、L.O.I为5.70%,其余为杂质。
3.根据权利要求1所述的大颗粒斑点全通透陶瓷岩板的制造工艺,其特征在于,所述放浆的参数为流速35-70秒、水份32-35%、细度0.8-1%。
4.根据权利要求1所述的大颗粒斑点全通透陶瓷岩板的制造工艺,其特征在于,所述干燥后使得干坯体强度在3.5-4.5MPa、水份为0.7-1.1%、抗折强度为36-52 MPa、吸水率<0.05%、白度>60°。
5.根据权利要求1~4中任意一项所述的大颗粒斑点全通透陶瓷岩板的制造工艺,其特征在于,所述步骤(4),每10秒的标称份量为:深棕大颗粒11-12.5Kg。
6.一种大颗粒斑点全通透陶瓷岩板,其特征在于,为由权利要求1-5中任意一项所述的大颗粒斑点全通透陶瓷岩板的制造工艺制成的陶瓷岩板。
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