CN106431362A - 铝矾土复合硅酸铝纤维砖的生产方法 - Google Patents

铝矾土复合硅酸铝纤维砖的生产方法 Download PDF

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CN106431362A
CN106431362A CN201610765740.3A CN201610765740A CN106431362A CN 106431362 A CN106431362 A CN 106431362A CN 201610765740 A CN201610765740 A CN 201610765740A CN 106431362 A CN106431362 A CN 106431362A
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王光强
刘学燕
杨前进
韩雍雍
高延峰
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Shandong Lei Baogao Industry Science And Technology Co Ltd
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Abstract

本发明属于耐火保温材料技术领域,具体涉及一种铝矾土复合硅酸铝纤维砖的生产方法。所述的生产方法是以铝矾土粉料和硅酸铝纤维为原料,以初始强度粘结剂和高温烧结强度粘结剂为复合结合剂,以水为分散介质,形成混合料浆,经真空吸滤、高压成型、干燥、高温烧结制得纤维砖。本发明工艺简单,不需要复杂的生产设备,成本低,对环境无污染;通过原料的优选以及粘结剂的复配使得生产的铝矾土复合硅酸铝纤维砖强度高、耐高温、保温效果好,能够直接作为窑炉内衬使用。

Description

铝矾土复合硅酸铝纤维砖的生产方法
技术领域
本发明属于耐火保温材料技术领域,具体涉及一种铝矾土复合硅酸铝纤维砖的生产方法。
背景技术
随着我国工业的发展,能量消耗总量越来越高,选择和应用技术性能优良的绝热保温材料,可以降低窑炉辐射热损失、提高窑炉热效率,是实现工业热工设备优质高产、低消耗和节能减排最有效的技术手段。
目前耐火保温材料主要有轻质粘土砖、聚轻球砖、轻质莫来石砖、氧化铝空心球砖等,尺寸以标准砖为主,一般为230mm*114mm*65mm,其缺点是比重大、生产工艺复杂、有粉尘污染、不能现场加工、导热系数大、强度低、使用温度低、保温效果差、不能直接作为窑炉内衬使用等等。
发明内容
本发明的目的是提供一种生产工艺简单、无环境污染的铝矾土复合硅酸铝纤维砖的生产方法,生产的铝矾土复合硅酸铝纤维砖强度高、耐高温,能够直接作为窑炉内衬使用。
本发明所述的铝矾土复合硅酸铝纤维砖的生产方法,是以铝矾土粉料和硅酸铝纤维为原料,以初始强度粘结剂和高温烧结强度粘结剂为复合结合剂,以水为分散介质,形成混合料浆,经真空吸滤、高压成型、干燥、高温烧结制得纤维砖。
其中:
所述铝矾土粉料和硅酸铝纤维的质量比为3-5:2-4。
所述初始强度粘结剂为纤维素、聚乙烯醇、淀粉、糊精按照质量比2:0.1:3:2的混合物。
所述高温烧结强度粘结剂为铝溶胶与硅溶胶按照质量比1-2:1-2的混合物。
所述铝溶胶为pH为2-3的盐酸法高碱度铝溶胶。
所述初始强度粘结剂与高温烧结强度粘结剂的质量比为1:1。
所述初始强度粘结剂和高温烧结强度粘结剂的总质量占铝矾土粉料和硅酸铝纤维总质量的1.5-2.5%。
所述的生产方法包括以下步骤:
(1)配制初始强度粘结剂水溶液:
按照纤维素、水质量比2:6-8,聚乙烯醇、水质量比0.1:100-150,淀粉、水质量比3:5-8,糊精、水质量比2:6-8,分别配制溶液后再混合得到初始强度粘结剂水溶液;
(2)配制高温烧结强度粘结剂:
将铝溶胶与硅溶胶按照质量比1-2:1-2混合,得到高温烧结强度粘结剂;
(3)配制混合料浆:
室温条件下,将铝矾土粉料和硅酸铝纤维加入到水中搅拌均匀,再加入初始强度粘结剂水溶液、高温烧结强度粘结剂,混合均匀得到混合料浆;
(4)后处理:
混合料浆进入模具,经真空吸滤、高压成型、干燥、高温烧结制得铝矾土复合硅酸铝纤维砖。
步骤(4)干燥温度为100-300℃,干燥时间16-24h。
步骤(4)高温烧结温度为1000-1700℃,高温烧结时间3-8h。
本发明具有以下有益效果:
本发明工艺简单,不需要复杂的生产设备,成本低,对环境无污染;通过原料的优选以及粘结剂的复配使得生产的铝矾土复合硅酸铝纤维砖强度高、耐高温、保温效果好,能够直接作为窑炉内衬使用。
具体实施方式
以下结合实施例对本发明做进一步描述。
实施例1
铝矾土复合硅酸铝纤维砖的生产方法如下:
(1)配制初始强度粘结剂水溶液:
按照纤维素、水质量比2:6.5,聚乙烯醇、水质量比0.1:110,淀粉、水质量比3:7,糊精、水质量比2:8,分别配制溶液后再混合得到初始强度粘结剂水溶液;
(2)配制高温烧结强度粘结剂:
将铝溶胶与硅溶胶按照质量比1:1混合,得到高温烧结强度粘结剂;
(3)配制混合料浆:
室温条件下,将铝矾土粉料和硅酸铝纤维按照质量比4:3加入到水中搅拌均匀,再加入初始强度粘结剂水溶液、高温烧结强度粘结剂,混合均匀得到混合料浆;
纤维素、聚乙烯醇、淀粉、糊精、铝溶胶与硅溶胶总质量占铝矾土粉料和硅酸铝纤维总质量的2.0%;
(4)后处理:
混合料浆进入模具,经真空吸滤、高压成型、100℃干燥24h、1500℃烧结5h制得。
实施例2
铝矾土复合硅酸铝纤维砖的生产方法如下:
(1)配制初始强度粘结剂水溶液:
按照纤维素、水质量比2:8,聚乙烯醇、水质量比0.1:100,淀粉、水质量比3:6.5,糊精、水质量比2:7,分别配制溶液后再混合得到初始强度粘结剂水溶液;
(2)配制高温烧结强度粘结剂:
将铝溶胶与硅溶胶按照质量比2:1混合,得到高温烧结强度粘结剂;
(3)配制混合料浆:
室温条件下,将铝矾土粉料和硅酸铝纤维按照质量比3:4加入到水中搅拌均匀,再加入初始强度粘结剂水溶液、高温烧结强度粘结剂,混合均匀得到混合料浆;
纤维素、聚乙烯醇、淀粉、糊精、铝溶胶与硅溶胶总质量占铝矾土粉料和硅酸铝纤维总质量的1.5%;
(4)后处理:
混合料浆进入模具,经真空吸滤、高压成型、100℃干燥24h、1500℃烧结5h制得。
实施例3
铝矾土复合硅酸铝纤维砖的生产方法如下:
(1)配制初始强度粘结剂水溶液:
按照纤维素、水质量比2:7,聚乙烯醇、水质量比0.1:140,淀粉、水质量比3:6,糊精、水质量比2:6,分别配制溶液后再混合得到初始强度粘结剂水溶液;
(2)配制高温烧结强度粘结剂:
将铝溶胶与硅溶胶按照质量比1:2混合,得到高温烧结强度粘结剂;
(3)配制混合料浆:
室温条件下,将铝矾土粉料和硅酸铝纤维按照质量比4:3加入到水中搅拌均匀,再加入初始强度粘结剂水溶液、高温烧结强度粘结剂,混合均匀得到混合料浆;
纤维素、聚乙烯醇、淀粉、糊精、铝溶胶与硅溶胶总质量占铝矾土粉料和硅酸铝纤维总质量的2.5%;
(4)后处理:
混合料浆进入模具,经真空吸滤、高压成型、100℃干燥24h、1500℃烧结5h制得。

Claims (10)

1.一种铝矾土复合硅酸铝纤维砖的生产方法,其特征在于:以铝矾土粉料和硅酸铝纤维为原料,以初始强度粘结剂和高温烧结强度粘结剂为复合结合剂,以水为分散介质,形成混合料浆,经真空吸滤、高压成型、干燥、高温烧结制得纤维砖。
2.根据权利要求1所述的生产方法,其特征在于:所述铝矾土粉料和硅酸铝纤维的质量比为3-5:2-4。
3.根据权利要求1所述的生产方法,其特征在于:所述初始强度粘结剂为纤维素、聚乙烯醇、淀粉、糊精按照质量比2:0.1:3:2的混合物。
4.根据权利要求1所述的生产方法,其特征在于:所述高温烧结强度粘结剂为铝溶胶与硅溶胶按照质量比1-2:1-2的混合物。
5.根据权利要求4所述的生产方法,其特征在于:所述铝溶胶为pH为2-3的盐酸法高碱度铝溶胶。
6.根据权利要求1所述的生产方法,其特征在于:所述初始强度粘结剂与高温烧结强度粘结剂的质量比为1:1。
7.根据权利要求1所述的生产方法,其特征在于:所述初始强度粘结剂和高温烧结强度粘结剂的总质量占铝矾土粉料和硅酸铝纤维总质量的1.5-2.5%。
8.根据权利要求1-7任一所述的生产方法,其特征在于包括以下步骤:
(1)配制初始强度粘结剂水溶液:
按照纤维素、水质量比2:6-8,聚乙烯醇、水质量比0.1:100-150,淀粉、水质量比3:5-8,糊精、水质量比2:6-8,分别配制溶液后再混合得到初始强度粘结剂水溶液;
(2)配制高温烧结强度粘结剂:
将铝溶胶与硅溶胶按照质量比1-2:1-2混合,得到高温烧结强度粘结剂;
(3)配制混合料浆:
室温条件下,将铝矾土粉料和硅酸铝纤维加入到水中搅拌均匀,再加入初始强度粘结剂水溶液、高温烧结强度粘结剂,混合均匀得到混合料浆;
(4)后处理:
混合料浆进入模具,经真空吸滤、高压成型、干燥、高温烧结制得铝矾土复合硅酸铝纤维砖。
9.根据权利要求8所述的生产方法,其特征在于:步骤(4)干燥温度为100-300℃,干燥时间为16-24h。
10.根据权利要求8所述的生产方法,其特征在于:步骤(4)高温烧结温度为1000-1700℃,高温烧结时间为3-8h。
CN201610765740.3A 2016-08-30 2016-08-30 铝矾土复合硅酸铝纤维砖的生产方法 Pending CN106431362A (zh)

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CN109020512A (zh) * 2018-08-15 2018-12-18 中材江西电瓷电气有限公司 干法生产特高压棒形支柱瓷绝缘子用坯体及其制备方法和应用

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Application publication date: 20170222