CN110642612A - 一种能量天目陶瓷杯及其制备工艺 - Google Patents
一种能量天目陶瓷杯及其制备工艺 Download PDFInfo
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Abstract
本发明提供一种能量天目陶瓷杯及其制备工艺,所述能量天目陶瓷杯由以下重量份的原料制备而成,包括以下重量份的原料:钾长石、钠长石、碳酸钡、氧化锌、石英、高岭土、滑石、石灰石、氧化铁、氧化锰、氧化钴、托玛琳石、六环石、珊瑚石、贝壳粉、稀土材料。本发明烧成的陶瓷杯中具有托玛琳和六环石,可以产生负离子,负离子浓度超过2500个/cm3,放射远红外线促进血液循环,活化水、净化水质,过滤水中的各种有害元素,并且金黄色葡萄球菌抗菌率达到98%,抗菌率较高。
Description
技术领域
本发明涉及一种陶瓷杯技术领域,具体地说,涉及一种能量天目陶瓷杯及其制备工艺。
背景技术
水是生命三要素之一,人体的三分之二是由水构成的。近年来,随着科学的进步和生活水平的提高,为了使人体更加健康,减少疾病,市场上出现了很多种类的能产生活化水或抗菌的水杯,但功能比较单一,抗菌性能比较低。
发明内容
为了解决上述现有技术的不足之处,本发明的目的在于提供一种能量天目陶瓷杯及其制备工艺,以克服现有技术中的缺陷。
根据本发明的第一方面,本发明提供了一种能量天目陶瓷杯,所述能量天目陶瓷杯包括以下重量份的原料:钾长石9份、钠长石70份、碳酸钡1.1份、氧化锌0.9份、石英6份、高岭土0.9份、滑石11份、石灰石1.1份、氧化铁6份、氧化锰1.5份、氧化钴0.8份、托玛琳石10份、六环石8份、珊瑚石1.5份、贝壳粉5份、稀土材料3.2份。
根据本发明的第二方面,本发明还提供了上述能量天目陶瓷杯的制备工艺,所述制备工艺包括以下步骤:(1)按重量配比准备原料,包括粒度为120目以上的钾长石、钠长石、碳酸钡、氧化锌、石英、高岭土、滑石、石灰石、氧化铁、氧化锰、氧化钴、托玛琳石、六环石、珊瑚石、贝壳粉、稀土材料;(2)将步骤(1)准备好的原料一起混合研磨,制得粒度为200目的成型泥料;(3)将步骤(2)得到的成型泥料修坯成杯子形状,进行第一次素烧,得到陶瓷杯生坯;(4)将步骤(3)得到的陶瓷杯生坯进行第二次釉烧;(5)将步骤(4)得到的陶瓷杯生坯进行第三次烧成,制得能量天目陶瓷杯。
作为对本发明所述的能量天目陶瓷杯的制备工艺的进一步说明,优选地,所述能量天目陶瓷杯包括钾长石9份、钠长石70份、碳酸钡1.1份、氧化锌0.9份、石英6份、高岭土0.9份、滑石11份、石灰石1.1份、氧化铁6份、氧化锰1.5份、氧化钴0.8份、托玛琳石10份、六环石8份、珊瑚石1.5份、贝壳粉5份、稀土材料3.2份。
作为对本发明所述的能量天目陶瓷杯的制备工艺的进一步说明,优选地,在步骤(3)中,所述第一次素烧的温度为800-900度。更优选地,所述第一次素烧的时间为8小时。
作为对本发明所述的能量天目陶瓷杯的制备工艺的进一步说明,优选地,在步骤(4)中,所述第二次釉烧采用氧化焰烧成。更优选地,第二次釉烧温度为1300-1320度。更优选地,所述第二次釉烧的时间为12小时。
作为对本发明所述的能量天目陶瓷杯的制备工艺的进一步说明,优选地,在步骤(5)中,所述第二次釉烧采用还原焰烧成,第二次釉烧温度为1350-1360度。更优选地,所述第三次釉烧的时间为15小时。
与现有技术相比,本发明具有如下优点:本发明烧成的陶瓷杯中具有托玛琳和六环石,可以产生负离子,负离子浓度超过2500个/cm3,放射远红外线促进血液循环,活化水、净化水质,过滤水中的各种有害元素,并且金黄色葡萄球菌抗菌率达到98%,抗菌率较高。
具体实施方式
为了能够进一步了解本发明的技术方案,以下将结合实施例对本发明作进一步说明,本发明的实施例仅用于说明本发明的技术方案,并非限定本发明。
实施例1:能量天目陶瓷杯的制备
准备钾长石9g、钠长石70g、碳酸钡1.1g、氧化锌0.9g、石英6g、高岭土0.9g、滑石11g、石灰石1.1g、氧化铁6g、氧化锰1.5g、氧化钴0.8g、托玛琳石10g(购自于灵寿县鹏显矿产品加工厂,型号002)、六环石8g(购自于灵寿县鹏显矿产品加工厂,型号HL--Ⅰhs32)、珊瑚石1.5g(购自于灵寿县峰联矿产品加工厂)、贝壳粉5g(购自于济南润美特化工有限公司,型号02)、稀土材料3.2g(稀土材料也叫稀土独居石粉,添加镧、铈、钇等稀土元素,购自于灵寿县熠轩矿产品加工厂)。然后将上述原料一起混合研磨,制得粒度为200目的成型泥料;将成型泥料修坯成杯子形状,进行第一次素烧,温度为800度,时间为8小时,得到陶瓷杯生坯;再进行第二次釉烧,采用氧化焰烧成,第二次釉烧温度为1300度,时间为12小时;进行第三次烧成,采用还原焰烧成,第三次烧成温度为1350度,时间为15小时,制得能量天目陶瓷杯。
经检测:烧成的陶瓷杯负离子浓度超过2567个/cm3,金黄色葡萄球菌抗菌率达到98.45%。
实施例2:能量天目陶瓷杯的制备
准备钾长石9g、钠长石70g、碳酸钡1.1g、氧化锌0.9g、石英6g、高岭土0.9g、滑石11g、石灰石1.1g、氧化铁6g、氧化锰1.5g、氧化钴0.8g、托玛琳石10g(购自于灵寿县鹏显矿产品加工厂,型号002)、六环石8g(购自于灵寿县鹏显矿产品加工厂,型号HL--Ⅰhs32)、珊瑚石1.5g(购自于灵寿县峰联矿产品加工厂)、贝壳粉5g(购自于济南润美特化工有限公司,型号02)、稀土材料3.2g(稀土材料也叫稀土独居石粉,添加镧、铈、钇等稀土元素,购自于灵寿县熠轩矿产品加工厂)。然后将上述原料一起混合研磨,制得粒度为200目的成型泥料;将成型泥料修坯成杯子形状,进行第一次素烧,温度为900度,时间为8小时,得到陶瓷杯生坯;再进行第二次釉烧,采用氧化焰烧成,第二次釉烧温度为1320度,时间为12小时;进行第三次烧成,采用还原焰烧成,第三次烧成温度为1360度,时间为15小时,制得能量天目陶瓷杯。
经检测:烧成的陶瓷杯负离子浓度超过2567个/cm3,金黄色葡萄球菌抗菌率达到98.45%。
实施例3:能量天目陶瓷杯的制备
准备钾长石9g、钠长石70g、碳酸钡1.1g、氧化锌0.9g、石英6g、高岭土0.9g、滑石11g、石灰石1.1g、氧化铁6g、氧化锰1.5g、氧化钴0.8g、托玛琳石10g(购自于灵寿县鹏显矿产品加工厂,型号002)、六环石8g(购自于灵寿县鹏显矿产品加工厂,型号HL--Ⅰhs32)、珊瑚石1.5g(购自于灵寿县峰联矿产品加工厂)、贝壳粉5g(购自于济南润美特化工有限公司,型号02)、稀土材料3.2g(稀土材料也叫稀土独居石粉,添加镧、铈、钇等稀土元素,购自于灵寿县熠轩矿产品加工厂)。然后将上述原料一起混合研磨,制得粒度为200目的成型泥料;将成型泥料修坯成杯子形状,进行第一次素烧,温度为850度,时间为8小时,得到陶瓷杯生坯;再进行第二次釉烧,采用氧化焰烧成,第二次釉烧温度为1310度,时间为12小时;进行第三次烧成,采用还原焰烧成,第三次烧成温度为1355度,时间为15小时,制得能量天目陶瓷杯。
经检测:烧成的陶瓷杯负离子浓度超过2567个/cm3,金黄色葡萄球菌抗菌率达到98.45%。
实施例4:能量天目陶瓷杯的负离子浓度的检测
经广东省微生物分析检测中心对实施例1、2和3的能量天目陶瓷杯出具的分析检测报告可以看出,采用负离子直读仪贴近能量天目陶瓷杯样品表面测定,烧成的陶瓷杯负离子浓度为2567个/cm3。
实施例5:能量天目陶瓷杯的抗菌性能的检测
经广东省微生物分析检测中心对实施例1、2和3的能量天目陶瓷杯出具的分析检测报告,根据JC/T 897-2014抗菌陶瓷制品抗菌性能标准对能量天目陶瓷杯样品进行检测,金黄色葡萄球菌抗菌率达到98.45%,实验数据如表1所示:
表1
实施例6:能量天目陶瓷杯的半幅宽和PH测试
经上海复达检测技术集团有限公司对实施例1、2和3的能量天目陶瓷杯出具的测试报告,实验数据如表2所示:
表2
其中,a为自来水直接测试,b为自来水处理30min后测试。
需要声明的是,上述发明内容及具体实施方式意在证明本发明所提供技术方案的实际应用,不应解释为对本发明保护范围的限定。本领域技术人员在本发明的精神和原理内,当可作各种修改、等同替换或改进。本发明的保护范围以所附权利要求书为准。
Claims (9)
1.一种能量天目陶瓷杯,其特征在于,所述能量天目陶瓷杯包括以下重量份的原料:钾长石9份、钠长石70份、碳酸钡1.1份、氧化锌0.9份、石英6份、高岭土0.9份、滑石11份、石灰石1.1份、氧化铁6份、氧化锰1.5份、氧化钴0.8份、托玛琳石10份、六环石8份、珊瑚石1.5份、贝壳粉5份、稀土材料3.2份。
2.一种如权利要求1所述的能量天目陶瓷杯的制备工艺,其特征在于,所述制备工艺包括以下步骤:
(1)按重量配比准备原料,包括粒度为120目以上的钾长石、钠长石、碳酸钡、氧化锌、石英、高岭土、滑石、石灰石、氧化铁、氧化锰、氧化钴、托玛琳石、六环石、珊瑚石、贝壳粉、稀土材料;
(2)将步骤(1)准备好的原料一起混合研磨,制得粒度为200目的成型泥料;
(3)将步骤(2)得到的成型泥料修坯成杯子形状,进行第一次素烧,以得到陶瓷杯生坯;
(4)将步骤(3)得到的陶瓷杯生坯进行第二次釉烧;
(5)将步骤(4)得到的陶瓷杯生坯进行第三次釉烧,以制得能量天目陶瓷杯。
3.根据权利要求2所述的制备工艺,其特征在于,所述能量天目陶瓷杯包括钾长石9份、钠长石70份、碳酸钡1.1份、氧化锌0.9份、石英6份、高岭土0.9份、滑石11份、石灰石1.1份、氧化铁6份、氧化锰1.5份、氧化钴0.8份、托玛琳石10份、六环石8份、珊瑚石1.5份、贝壳粉5份、稀土材料3.2份。
4.根据权利要求2或3所述的制备工艺,其特征在于,在步骤(3)中,所述第一次素烧的温度为800-900度。
5.根据权利要求4所述的制备工艺,其特征在于,在步骤(3)中,所述第一次素烧的时间为8小时。
6.根据权利要求2或3所述的制备工艺,其特征在于,在步骤(4)中,所述第二次釉烧采用氧化焰烧成,第二次釉烧温度为1300-1320度。
7.根据权利要求6所述的制备工艺,其特征在于,在步骤(4)中,所述第二次釉烧的时间为12小时。
8.根据权利要求2或3所述的制备工艺,其特征在于,在步骤(5)中,所述第三次釉烧采用还原焰釉烧,第三次釉烧温度为1350-1360度。
9.根据权利要求8所述的制备工艺,其特征在于,在步骤(5)中,所述第三次釉烧的时间为15小时。
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