CN108046741A - 一种通体大理石瓷砖的坯料 - Google Patents

一种通体大理石瓷砖的坯料 Download PDF

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CN108046741A
CN108046741A CN201711048012.1A CN201711048012A CN108046741A CN 108046741 A CN108046741 A CN 108046741A CN 201711048012 A CN201711048012 A CN 201711048012A CN 108046741 A CN108046741 A CN 108046741A
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ceramic tile
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陆文杰
陈明
胡军
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Jiajiang Shengshi Oriental Ceramic Co Ltd
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Abstract

本发明涉及建筑材料技术领域,提供了一种通体大理石瓷砖的坯料;该通体大理石瓷砖的坯料按质量百分数计包括:铝24‑26%,硅67‑69%,铁0.8‑1%以及钛0.4‑0.45%。该通体大理石瓷砖的坯料的质量稳定,其干坯的强度高,制得到的通体大理石瓷砖的瓷化程度高,表里如一,更加美观。

Description

一种通体大理石瓷砖的坯料
技术领域
本发明属于建筑材料技术领域,具体地说,涉及一种通体大理石瓷砖的坯料。
背景技术
为了达到更好的观赏和实用效果,近年来,通体大理石瓷砖成为了研究的热点。
相比于普通瓷砖,通体大理石瓷砖具有以下优点:通体大理石瓷砖在瓷砖坯体、颜色、肌理以及功能上都无限地逼近天然石材岩层质变效果,纹理质感通透更强;全立体布料与混色着色工艺相结合,使通体大理石瓷砖坯体底层到面釉做到表里如一,整个瓷砖从任何角度及任何切割方法都能达到完美的纹理呈现效果,做到真正的纹理通体;通体大理石瓷砖产品经过高吨位压机压制成型及高温烧制,成品砖坯色泽更加细腻,性能和品质更高;通体大理石瓷砖逼真还原天然珍贵石材;瓷砖坯体充满变化纹理,产品与空间充满灵魂,更能够满足消费者需求。
然而,尽管通体大理石未来前景向好,但目前工艺上还较为复杂,生产成本较高,在终端市场上认知度也有限,总体来说仍旧处于产品的萌芽期。
发明内容
针对现有技术中上述的不足,本发明的目的在于提供一种通体大理石瓷砖的坯料,该坯料的质量稳定,其干坯的强度高,制得到的通体大理石瓷砖的瓷化程度高,表里如一,更加美观。
为了达到上述目的,本发明采用的优选的解决方案是:
一种通体大理石瓷砖的坯料,按质量百分数计,包括:铝24-26%,硅67-69%,铁0.8-1%以及钛0.4-0.45%。
本发明提供的一种通体大理石瓷砖的坯料的有益效果是:
本发明实施例提供的通体大理石瓷砖的坯料,其铝、硅含量高于普通瓷砖,且同时其铁、钛含量低于普通瓷砖;铝、硅含量以及铁、钛含量的限定,能够使各元素之间起到更好的协同配合的作用,从而提高坯料的质量稳定性,且提高其干坯的强度,且制得到的通体大理石瓷砖的瓷化程度更高。
具体实施方式
为使本发明实施例的目的、技术方案和优点更加清楚,下面将对本发明实施例中的技术方案进行清楚、完整地描述。实施例中未注明具体条件者,按照常规条件或制造商建议的条件进行。所用试剂或仪器未注明生产厂商者,均为可以通过市售购买获得的常规产品。
下面对本发明实施例提供的一种通体大理石瓷砖的坯料进行具体说明。
本发明实施例提供的通体大理石瓷砖的坯料,按质量百分数计,包括:铝24-26%,硅67-69%,铁0.8-1%以及钛0.4-0.45%;且为了进一步提高坯料的质量稳定性,使得其干坯的强度更高,且提高制得的瓷砖的瓷化程度,优选地,按质量百分数计,铝为25%,硅68%,铁0.9%以及钛0.42%。
需要说明的是,在本实施例中,该通体大理石瓷砖的坯料按重量份数计,其原料包括:泥28-34份,铝矿20-24份,钾长石7-9份,砂28-34份,白钠长石5-7份,白云石1-3份,水玻璃0.8-0.9份,纯碱0.1-0.2份以及腐钠0.05-0.07份;该原料以及原料的配比范围由发明人创造性试验所得,各原料之间能够相互配合,提高坯料的稳定性,采用上述重量份数,各原料之间进一步协同配合,提高原料中的铝和硅的含量,降低铁和钛的含量,平衡各元素之间的配比,从而能够进一步提高其干坯的强度,提高瓷砖的瓷化程度;作为优选地,泥为31份,铝矿为22份,钾长石为8份,砂为31份,白钠长石为6份,白云石为2份,水玻璃为0.8125份,纯碱为0.1875份以及腐钠0.0625份时,上述性能更加优异。
需要说明的是,铝矿包括贵州铝矿和峨边铝矿,贵州和峨边的铝矿丰富,且相互配合能够使得铝矿成分相互补充;优选地按重量份数计,贵州铝矿为11-13份,峨边铝矿为9-11份。
砂包括钾砂,威远砂以及红瓷砂;钾砂,威远砂以及红瓷砂的营养成分能够得到相互补充;优选地按重量分数计,钾砂为15-17份,威远砂为7-9份以及红瓷砂为6-8份。
泥包括白泥,混合泥以及抛光泥,白泥,混合泥以及抛光泥的营养成分能够得到相互补充;优选地按重量分数计,白泥为14-16份,混合泥为7-9份以及抛光泥为7-9份。在本实施例中,优选地白泥产于贵州,且混合泥产于洪雅。
以下结合实施例对本发明的特征和性能作进一步的详细描述。
实施例1
本实施例提供了一种通体大理石瓷砖的坯料的原料按重量份数计包括:
贵州白泥14份,洪雅泥7份,抛光泥7份,贵州铝矿11份,峨边铝矿9份,钾长石7份,钾砂15份,威远砂为7份,红瓷砂6份,白钠长石5份,白云石1份,水玻璃0.8份,纯碱0.1份以及腐钠0.05份。
将上述原料按照常规工艺步骤制成坯料,再将制成的坯料按照常规工艺步骤制成干坯。
实施例2
本实施例提供了一种通体大理石瓷砖的坯料的原料按重量份数计包括:
贵州白泥16份,洪雅泥9份,抛光泥9份,贵州铝矿13份,峨边铝矿11份,钾长石9份,钾砂17份,威远砂为9份,红瓷砂8份,白钠长石7份,白云石3份,水玻璃0.9份,纯碱0.2份以及腐钠0.07份。
将上述原料按照常规工艺步骤制成坯料,再将制成的坯料按照常规工艺步骤制成干坯。
实施例3
本实施例提供了一种通体大理石瓷砖的坯料的原料按重量份数计包括:
贵州白泥15份,洪雅泥8份,抛光泥8份,贵州铝矿12份,峨边铝矿10份,钾长石8份,钾砂16份,威远砂为8份,红瓷砂7份,白钠长石6份,白云石2份,水玻璃0.8125份,纯碱0.1875份以及腐钠0.0625份。
将上述原料按照常规工艺步骤制成坯料,再将制成的坯料按照常规工艺步骤制成干坯。
对比例1
本对比例提供了一种通体大理石瓷砖的坯料的原料按重量份数计包括:
贵州白泥13份,洪雅泥6份,抛光泥6份,贵州铝矿10份,峨边铝矿8份,钾长石6份,钾砂14份,威远砂为6份,红瓷砂5份,白钠长石4份,白云石0.8份,水玻璃0.7份,纯碱0.08份以及腐钠0.04份。
将上述原料按照常规工艺步骤制成坯料,再将制成的坯料按照常规工艺步骤制成干坯。
对比例2
本对比例提供了一种通体大理石瓷砖的坯料的原料按重量份数计包括:
贵州白泥17份,洪雅泥10份,抛光泥10份,贵州铝矿14份,峨边铝矿12份,钾长石10份,钾砂18份,威远砂为10份,红瓷砂9份,白钠长石8份,白云石4份,水玻璃1份,纯碱0.3份以及腐钠0.08份。
将上述原料按照常规工艺步骤制成坯料,再将制成的坯料按照常规工艺步骤制成干坯。
实验例1
将实施例1-3和对比例1-2制备得到的坯料设置为实验组1-5,将市售的普通坯料设置为实验组6;
分别对实验组1-6的等量样品进行铝、硅、铁、钛元素检测(萃取-火焰原子吸收法测定),检测结果如表1所示:
表1实验组1-6的铝、硅、铁、钛元素含量
实验组组号 铝(%) 硅(%) 铁(%) 钛(%)
1 24 69 1 0.45
2 26 67 0.8 0.4
3 25 68 0.9 0.42
4 22 66 0.7 0.3
5 28 70 1.2 0.48
6 18 65 1.5 0.5
由表1数据可知,相比于市售的普通坯料,本发明提供的坯料的铝和硅的含量得以提高,而铁和钛的含量得以降低,得益于本发明提供的坯料的各原料之间配合,采用本发明实施例提供的各原料的之间的配比能够协同配合,进一步起到调整上述元素含量的作用。
实验例2
将实施例1-3和对比例1-2制备得到的坯料设置为实验组1-5,将市售的普通坯料设置为实验组6;将实验组1-6提供的坯料在11-10MPa下压制成型,干燥后,得到干坯,测试干坯的强度,结果见表2所述:
表2实验组1-6的干坯强度
实验组 1 2 3 4 5 6
干坯强度(MPa) 6 7 6.5 5.5 5.0 4.5
由表2数据可知,实验组1-5的干坯强度高于实验组6,该结果表明,采用本发明提供的坯料原料制得到的干坯,由于铝和硅含量得以提高,铁和钛含量得以降低,各原料之间配合造成各元素之间的配比不同从而影响干坯的强度,在本发明提供的范围内能够明显提高干坯的强度。
实验组1-3的干坯强度高于实验组4和5,该结果表明,采用本发明实施例提供共的各原料配比范围内制备得到的干坯,其由于由于铝、硅、铁和钛含量分布更加合理,从而干坯的强度更为优异。
综上所述,本发明实施例提供的通体大理石瓷砖的坯料,该坯料的质量稳定,力学性能好,其干坯的强度高,制得到的通体大理石瓷砖的瓷化程度高,表里如一,更加美观。
以上所描述的实施例是本发明一部分实施例,而不是全部的实施例。本发明的实施例的详细描述并非旨在限制要求保护的本发明的范围,而是仅仅表示本发明的选定实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。

Claims (9)

1.一种通体大理石瓷砖的坯料,其特征在于,按质量百分数计,包括:铝24-26%,硅67-69%,铁0.8-1%以及钛0.4-0.45%。
2.根据权利要求1所述的通体大理石瓷砖的坯料,其特征在于,按质量百分数计,所述铝为25%,所述硅68%,所述铁0.9%以及所述钛0.42%。
3.根据权利要求1所述的通体大理石瓷砖的坯料,其特征在于,按重量份数计,其原料包括:泥28-34份,铝矿20-24份,钾长石7-9份,砂28-34份,白钠长石5-7份,白云石1-3份,水玻璃0.8-0.9份,纯碱0.1-0.2份以及腐钠0.05-0.07份。
4.根据权利要求3所述的通体大理石瓷砖的坯料,其特征在于,按重量份数计,所述泥为31份,所述铝矿为22份,所述钾长石为8份,所述砂为31份,所述白钠长石为6份,所述白云石为2份,所述水玻璃为0.8125份,所述纯碱为0.1875份以及所述腐钠0.0625份。
5.根据权利要求3所述的通体大理石瓷砖的坯料,其特征在于,所述铝矿包括贵州铝矿和峨边铝矿,按重量份数计,所述贵州铝矿为11-13份,所述峨边铝矿为9-11份。
6.根据权利要求3所述的通体大理石瓷砖的坯料,其特征在于,所述砂包括钾砂,威远砂以及红瓷砂,按重量分数计,所述钾砂为15-17份,所述威远砂为7-9份以及所述红瓷砂为6-8份。
7.根据权利要求3所述的通体大理石瓷砖的坯料,其特征在于,所述泥包括白泥,混合泥以及抛光泥,按重量分数计,所述白泥为14-16份,所述混合泥为7-9份以及所述抛光泥为7-9份。
8.根据权利要求7所述的通体大理石瓷砖的坯料,其特征在于,所述白泥产于贵州。
9.根据权利要求7所述的通体大理石瓷砖的坯料,其特征在于,所述混合泥产于洪雅。
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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101289307A (zh) * 2008-06-13 2008-10-22 唐山隆达骨质瓷有限公司 高耐热震性骨质瓷及其生产方法
CN103880400A (zh) * 2014-02-20 2014-06-25 沈阳五洲震耀陶瓷有限公司 一种超白耐磨瓷砖及其生产工艺
CN105984017A (zh) * 2015-03-03 2016-10-05 佛山市东鹏陶瓷有限公司 一种仿天然石材抛光砖的生产方法
CN106518029A (zh) * 2016-09-26 2017-03-22 广东协进陶瓷有限公司 一种具有金属光泽凹陷纹理的大理石陶瓷砖制备方法
CN106587982A (zh) * 2016-12-31 2017-04-26 胡雪妍 高强度珍珠骨质瓷坯料及其制备方法
CN106747672A (zh) * 2016-12-21 2017-05-31 广东博华陶瓷有限公司 一种应用纳米技术与可溶性金属盐喷墨渗透发色制备的全瓷大理石生产工艺

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101289307A (zh) * 2008-06-13 2008-10-22 唐山隆达骨质瓷有限公司 高耐热震性骨质瓷及其生产方法
CN103880400A (zh) * 2014-02-20 2014-06-25 沈阳五洲震耀陶瓷有限公司 一种超白耐磨瓷砖及其生产工艺
CN105984017A (zh) * 2015-03-03 2016-10-05 佛山市东鹏陶瓷有限公司 一种仿天然石材抛光砖的生产方法
CN106518029A (zh) * 2016-09-26 2017-03-22 广东协进陶瓷有限公司 一种具有金属光泽凹陷纹理的大理石陶瓷砖制备方法
CN106747672A (zh) * 2016-12-21 2017-05-31 广东博华陶瓷有限公司 一种应用纳米技术与可溶性金属盐喷墨渗透发色制备的全瓷大理石生产工艺
CN106587982A (zh) * 2016-12-31 2017-04-26 胡雪妍 高强度珍珠骨质瓷坯料及其制备方法

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
陆小荣等: "《陶瓷工艺学》", 31 January 2005, 湖南大学出版社 *

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