CN106316450A - 碳化钨改性陶瓷竹材复合装饰板及其制造方法 - Google Patents
碳化钨改性陶瓷竹材复合装饰板及其制造方法 Download PDFInfo
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Abstract
本发明涉及一种碳化钨改性陶瓷竹材复合装饰板,包括如下重量份的原料:竹粉24‑38份,碳化钨3‑5份,氧化硅粉28‑34份,粘土9‑15份,水23‑28份。所述竹粉为80‑90目。所述的一种碳化钨改性陶瓷竹材复合装饰板的制造方法步骤为:一、将除竹粉外的原料,去除其它无用杂质和粗颗粒,进行球磨,搅拌均匀后,投入泥浆池中制浆;二、泥浆经高压雾化,再以热风干燥后输送到料仓进行陈腐6‑8小时;三、将制备好的粉料送入成型机中,再对粉料施加压力制成板坯,压力达到14MPa时,保压一段时间后卸压制得板坯,厚度为2‑4cm;四、将板坯置于98℃干燥箱中,干燥七成干;五、将板坯送入烧结窑中进行高温煅烧,惰性气体保护下,烧结温度830‑870℃,升温速度2‑5℃/min,每升温一次保持8‑15min。
Description
技术领域
本发明涉及一种碳化钨改性陶瓷竹材复合装饰板及其制造方法,属建筑材料领域。
背景技术
现有技术中公开的陶瓷竹材复合装饰板,耐腐蚀性不够好,烧结温度高,成品率低。
发明内容
为解决现有技术中存在的问题,本发明提供一种碳化钨改性陶瓷竹材复合装饰板及其制造方法。本发明的技术方案为:
一种碳化钨改性陶瓷竹材复合装饰板,包括如下重量份的原料:竹粉24-38份,碳化钨3-5份,氧化硅粉28-34份,粘土9-15份, 水23-28份。
所述竹粉为80-90目。
所述的一种碳化钨改性陶瓷竹材复合装饰板的制造方法步骤为:
一、将除竹粉外的原料,去除其它无用杂质和粗颗粒,进行球磨,搅拌均匀后,投入泥浆池中制浆;二、泥浆经高压雾化,再以热风干燥后输送到料仓进行陈腐6-8小时;三、将制备好的粉料送入成型机中,再对粉料施加压力制成板坯,压力达到14MPa时,保压一段时间后卸压制得板坯,厚度为2-4cm;四、将板坯置于98℃干燥箱中,干燥七成干;五、将板坯送入烧结窑中进行高温煅烧,惰性气体保护下,烧结温度830-870℃,升温速度2-5℃/min,每升温一次保持8-15min。
本发明的有益效果至少为: 本发明的碳化钨改性陶瓷竹材复合装饰板,采用碳化钨改性,成品率高,复合装饰板耐腐蚀性显著增强。
具体实施方式
下面结合具体实施方式对本发明作进一步详细描述。
实施例1
一种碳化钨改性陶瓷竹材复合装饰板,包括如下重量份的原料:竹粉32份,碳化钨4.5份,氧化硅粉29份,粘土13份,水25份。所述竹粉为80-90目。
所述的一种碳化钨改性陶瓷竹材复合装饰板的制造方法步骤为:
一、将除竹粉外的原料,去除其它无用杂质和粗颗粒,进行球磨,搅拌均匀后,投入泥浆池中制浆;二、泥浆经高压雾化,再以热风干燥后输送到料仓进行陈腐7小时;三、将制备好的粉料送入成型机中,再对粉料施加压力制成板坯,压力达到14MPa时,保压一段时间后卸压制得板坯,厚度为3cm;四、将板坯置于98℃干燥箱中,干燥七成干;五、将板坯送入烧结窑中进行高温煅烧,惰性气体保护下,烧结温度830-870℃,升温速度4℃/min,每升温一次保持15min。
本实施例依GBT 3810.13-2006 中4.3.1部分测定为ULA级,4.3.2为UHB级,成品率为97.9%
对比例1
本对比例中原料无碳化钨,其他同实施例1。
本实施例依GBT 3810.13-2006 中4.3.1部分测定为ULB级,4.3.2为UHC级,成品率为96.9%
上述实施方式仅为说明本发明的技术构思及特点,并不能以此限制本发明的保护范围,凡根据本发明精神实质所作的修改和替换,都涵盖在本发明的保护范围之内。
Claims (3)
1.一种碳化钨改性陶瓷竹材复合装饰板,其特征在于,包括如下重量份的原料:竹粉24-38份,碳化钨3-5份,氧化硅粉28-34份,粘土9-15份, 水23-28份。
2.根据权利要求1所述碳化钨改性陶瓷竹材复合装饰板,其特征在于,所述竹粉为80-90目。
3.根据权利要求1或2所述的一种碳化钨改性陶瓷竹材复合装饰板的制造方法,其特征在于,步骤为:
一、将除竹粉外的原料,去除其它无用杂质和粗颗粒,进行球磨,搅拌均匀后,投入泥浆池中制浆;二、泥浆经高压雾化,再以热风干燥后输送到料仓进行陈腐6-8小时;三、将制备好的粉料送入成型机中,再对粉料施加压力制成板坯,压力达到14MPa时,保压一段时间后卸压制得板坯,厚度为2-4cm;四、将板坯置于98℃干燥箱中,干燥七成干;五、将板坯送入烧结窑中进行高温煅烧,惰性气体保护下,烧结温度830-870℃,升温速度2-5℃/min,每升温一次保持8-15min。
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