CN109024089A - 一种耐污防褪色墙纸 - Google Patents

一种耐污防褪色墙纸 Download PDF

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CN109024089A
CN109024089A CN201810946010.2A CN201810946010A CN109024089A CN 109024089 A CN109024089 A CN 109024089A CN 201810946010 A CN201810946010 A CN 201810946010A CN 109024089 A CN109024089 A CN 109024089A
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李维光
杨永志
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BENGBU WEIGUANG PLASTIC PRODUCTS Co Ltd
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Abstract

本发明公开了一种耐污防褪色墙纸,由下列物质制成:纸浆、改性玻璃纤维、改性纳米氧化锌、松香、琥珀、木质纤维、漂白粉、亚油酸、绵羊油、玉米油、磷酸三丁酯。本发明合理搭配了多种原料成分,最终制得的墙纸能有效的改善墙纸的品质,提高墙纸的柔韧性,增强墙纸抗污、耐老化、防褪色的性能,延长墙纸的使用寿命,极具推广使用价值。

Description

一种耐污防褪色墙纸
技术领域
本发明属于墙纸技术领域,具体涉及一种耐污防褪色墙纸。
背景技术
墙纸也称为壁纸,是一种用于裱糊墙面的室内装修材料,广泛用于住宅、办公室、宾馆、酒店的室内装修等。材质不局限于纸,也包含其他材料。因为具有色彩多样、图案丰富、豪华气派、安全环保、施工方便、价格适宜等多种其它室内装饰材料所无法比拟的特点,故在欧美、日本等发达国家和地区得到相当程度的普及。现在对于墙纸的研究主要集中在墙纸的装饰效果方面,如墙纸的花纹、颜色等,而并没有去过多的考虑提升墙纸的性能,现在很多墙纸不抗脏,长期使用会褪色,严重影响整个装修的品质。
发明内容
本发明的目的是针对现有的问题,提供了一种耐污防褪色墙纸,其能有效的改善墙纸的品质,提高墙纸的柔韧性,增强墙纸抗污、耐老化、防褪色的性能。
本发明是通过以下技术方案实现的:
一种耐污防褪色墙纸的制备方法,由如下重量份的物质制成:
纸浆92~96份、改性玻璃纤维20~24份、改性纳米氧化锌8~12份、松香3~5份、琥珀2~4份、木质纤维4~8份、漂白粉6~10份、亚油酸3~5份、绵羊油2~4份、玉米油4~6份、磷酸三丁酯5~6份。
优选的,由如下重量份的物质制成:
纸浆94份、改性玻璃纤维22份、改性纳米氧化锌10份、松香4份、琥珀3份、木质纤维6份、漂白粉8份、亚油酸4份、绵羊油3份、玉米油5份、磷酸三丁酯5.5份。
进一步的,所述改性玻璃纤维的制备方法包括如下步骤:
(1)将玻璃纤维放入到摩尔浓度为2~4mol/L的盐酸溶液中浸泡处理14~18min,完成后取出玻璃纤维,用去离子水冲洗一遍后备用;
(2)将步骤(1)中浸泡处理后的玻璃纤维和改性液A共同置于超高压设备中,利用高静水压进行处理,超高压设备中的压力控制为500~600MPa,高静水压处理的时间为22~26min;
(3)将步骤(2)中改性液A处理后的玻璃纤维取出放入到干燥箱内进行干燥处理,干燥至恒重即可。
进一步的,所述改性液A,由如下重量份的物质组成:稀土硫酸盐4~6份、香树烯2~4份、7-甲氧基香豆素3~4份、脂肪酸甘油酯4~5份,脂肪酸山梨坦3~4份、去离子水140~160份。
进一步的,所述改性纳米氧化锌的制备方法包括如下步骤:
(1)配制改性液B投入电解槽中,将待改性的纳米氧化锌用纱布裹好,固定在阳极端,进行电化学处理,电化学处理的时间为2~3h,直流电源为7~9V;
(2)将步骤(1)中改性液B处理后的氧化性置于红外干燥器内进行干干燥处理,红外的波长为70~80μm,红外干燥至恒重即可。
进一步的,所述改性液B,由如下重量份的物质组成:硝酸镧1~3份、氯化钬2~3份、苯丙酸0.7~0.9份、吐温20 2.3~2.7份、硝酸钾1.1~1.5份、去离子水120~140份。
现有的墙纸耐污抗老化性能非常差,长期使用,容易受到外界环境,如光照、霉菌、水等影响而氧化褪色,甚至脱落的现象发生,严重影响装潢的品质。本发明提供了一种耐污防褪色墙纸,合理搭配了多种原料组分,玻璃纤维比有机纤维耐温高,不燃,抗腐,隔热、隔音性好,抗拉强度高,电绝缘性好,玻璃纤维是一种无机非金属材料,在墙纸的制备过程中,玻璃纤维之间的黏度下降,性能减弱,通过改性,提高玻璃纤维的抗腐蚀性、抗菌性并且提高玻璃纤维的表面相容性,使得其与本发明其他成分之间协同性更高,从而进一步提高墙纸的性能,防冻、防热、比表面积降低,拥有了更高的耐污性能。纳米级氧化锌与传统氧化锌产品相比,其比表面积大、化学活性高,并且具有光化学效应和较好的遮蔽紫外线性能,其紫外线遮蔽率高达98%,同时,它还具有抗菌抑菌、祛味防酶等一系列独特性能,通过改性,降低纳米氧化锌的表面张力,提高于本发明其他组分之间的协同作用,进一步提高墙纸的抗热、保温、抗紫外线、抗菌、防水性能。松香和琥珀相互搭配增强墙纸的柔韧性和强度。木质纤维与玻璃纤维相互协同作用,有效的避免了玻璃纤维耐磨性差的问题。亚油酸、绵羊油、玉米油添加到原料组分中,提高原料组分之间的流变性,增强组分的分散性,有助于形成致密、均匀、性能稳定的墙纸,并且绵羊油与玉米油搭配使用,可以提高墙纸的拉伸强度和断裂伸长率。磷酸三丁酯是一种高碳醇、玉米油是天然油脂,都具有消泡的作用,将它们进行合理搭配,消泡性能比单一消泡剂更为显著,可以减少消泡剂的使用,极大地节约了消泡剂的成本。
本发明相比现有技术具有以下优点:
本发明合理搭配了多种原料成分,最终制得的墙纸能有效的改善墙纸的品质,提高墙纸的柔韧性,增强墙纸抗污、耐老化、防褪色的性能,延长墙纸的使用寿命,极具推广使用价值。
具体实施方式
实施例1
一种耐污防褪色墙纸的制备方法,由如下重量份的物质制成:
纸浆92份、改性玻璃纤维20份、改性纳米氧化锌8份、松香3份、琥珀2份、木质纤维4份、漂白粉6份、亚油酸3份、绵羊油2份、玉米油4份、磷酸三丁酯5份。
进一步的,所述改性玻璃纤维的制备方法包括如下步骤:
(1)将玻璃纤维放入到摩尔浓度为2mol/L的盐酸溶液中浸泡处理14min,完成后取出玻璃纤维,用去离子水冲洗一遍后备用;
(2)将步骤(1)中浸泡处理后的玻璃纤维和改性液A共同置于超高压设备中,利用高静水压进行处理,超高压设备中的压力控制为500MPa,高静水压处理的时间为22min;
(3)将步骤(2)中改性液A处理后的玻璃纤维取出放入到干燥箱内进行干燥处理,干燥至恒重即可。
进一步的,所述改性液A,由如下重量份的物质组成:稀土硫酸盐4份、香树烯2份、7-甲氧基香豆素3份、脂肪酸甘油酯4份,脂肪酸山梨坦3份、去离子水140份。
进一步的,所述改性纳米氧化锌的制备方法包括如下步骤:
(1)配制改性液B投入电解槽中,将待改性的纳米氧化锌用纱布裹好,固定在阳极端,进行电化学处理,电化学处理的时间为2h,直流电源为7V;
(2)将步骤(1)中改性液B处理后的氧化性置于红外干燥器内进行干干燥处理,红外的波长为70μm,红外干燥至恒重即可。
进一步的,所述改性液B,由如下重量份的物质组成:硝酸镧1份、氯化钬2份、苯丙酸0.7份、吐温20 2.3份、硝酸钾1.1份、去离子水120份。
实施例2
一种耐污防褪色墙纸的制备方法,由如下重量份的物质制成:
纸浆94份、改性玻璃纤维22份、改性纳米氧化锌10份、松香4份、琥珀3份、木质纤维6份、漂白粉8份、亚油酸4份、绵羊油3份、玉米油5份、磷酸三丁酯5.5份。
进一步的,所述改性玻璃纤维的制备方法包括如下步骤:
(1)将玻璃纤维放入到摩尔浓度为3mol/L的盐酸溶液中浸泡处理16min,完成后取出玻璃纤维,用去离子水冲洗一遍后备用;
(2)将步骤(1)中浸泡处理后的玻璃纤维和改性液A共同置于超高压设备中,利用高静水压进行处理,超高压设备中的压力控制为550MPa,高静水压处理的时间为24min;
(3)将步骤(2)中改性液A处理后的玻璃纤维取出放入到干燥箱内进行干燥处理,干燥至恒重即可。
进一步的,所述改性液A,由如下重量份的物质组成:稀土硫酸盐5份、香树烯3份、7-甲氧基香豆素3.5份、脂肪酸甘油酯4.5份,脂肪酸山梨坦3.5份、去离子水150份。
进一步的,所述改性纳米氧化锌的制备方法包括如下步骤:
(1)配制改性液B投入电解槽中,将待改性的纳米氧化锌用纱布裹好,固定在阳极端,进行电化学处理,电化学处理的时间为2.5h,直流电源为8V;
(2)将步骤(1)中改性液B处理后的氧化性置于红外干燥器内进行干干燥处理,红外的波长为75μm,红外干燥至恒重即可。
进一步的,所述改性液B,由如下重量份的物质组成:硝酸镧2份、氯化钬2.5份、苯丙酸0.8份、吐温20 2.5份、硝酸钾1.3份、去离子水130份。
实施例3
一种耐污防褪色墙纸的制备方法,由如下重量份的物质制成:
纸浆96份、改性玻璃纤维24份、改性纳米氧化锌12份、松香5份、琥珀4份、木质纤维8份、漂白粉10份、亚油酸5份、绵羊油4份、玉米油6份、磷酸三丁酯6份。
进一步的,所述改性玻璃纤维的制备方法包括如下步骤:
(1)将玻璃纤维放入到摩尔浓度为4mol/L的盐酸溶液中浸泡处理18min,完成后取出玻璃纤维,用去离子水冲洗一遍后备用;
(2)将步骤(1)中浸泡处理后的玻璃纤维和改性液A共同置于超高压设备中,利用高静水压进行处理,超高压设备中的压力控制为600MPa,高静水压处理的时间为26min;
(3)将步骤(2)中改性液A处理后的玻璃纤维取出放入到干燥箱内进行干燥处理,干燥至恒重即可。
进一步的,所述改性液A,由如下重量份的物质组成:稀土硫酸盐6份、香树烯4份、7-甲氧基香豆素4份、脂肪酸甘油酯5份,脂肪酸山梨坦4份、去离子水160份。
进一步的,所述改性纳米氧化锌的制备方法包括如下步骤:
(1)配制改性液B投入电解槽中,将待改性的纳米氧化锌用纱布裹好,固定在阳极端,进行电化学处理,电化学处理的时间为3h,直流电源为9V;
(2)将步骤(1)中改性液B处理后的氧化性置于红外干燥器内进行干干燥处理,红外的波长为80μm,红外干燥至恒重即可。
进一步的,所述改性液B,由如下重量份的物质组成:硝酸镧3份、氯化钬3份、苯丙酸0.9份、吐温20 2.7份、硝酸钾1.5份、去离子水140份。
对比实施例1
本对比实施例1与实施例2相比,用等质量份的市售玻璃纤维取代改性玻璃纤维,除此外的方法步骤均相同。
对比实施例2
本对比实施例2与实施例2相比,省去改性玻璃纤维的添加,除此外的方法步骤均相同。
对比实施例3
本对比实施例3与实施例2相比,用等质量份的市售纳米氧化锌取代改性纳米氧化锌,除此外的方法步骤均相同。
对比实施例4
本对比实施例4与实施例2相比,省去改性纳米氧化锌的添加,除此外的方法步骤均相同。
对照组
现有的常规的市售的墙纸。
为了对比本发明效果,分别对实施例2、对比实施例1、对比实施例2、对比实施例3、对比实施例4、对照组的墙纸进行性能测定。
具体实验对比数据如下表1所示:
表1
耐候性 防霉等级 霉菌状态
实施例2 600h无变化 0级 在50倍放大镜下物无明显长霉
对比实施例1 600h无变化 0级 在50倍放大镜下物无明显长霉
对比实施例2 轻微粉化、未开裂、轻微褪色 1级 显微镜下能观察到,目视未看到
对比实施例3 表面粉化、轻微开裂、褪色 0级 在50倍放大镜下物无明显长霉
对比实施例4 表面粉化、开裂、褪色 1级 显微镜下能观察到,目视未看到
对照组 表面粉化、开裂、褪色 1级 显微镜下能观察到,目视未看到
注:上表1中所述耐候性按照GB/T1865-1997《人工气候老化和人工辐射暴露》方法进行检测,所述防霉防潮按照GB/T2423.16-1999《长霉试验》方法测定。
由上表1可以看出,本发明合理搭配了多种原料成分,最终制得的墙纸能有效的改善墙纸的品质,提高墙纸的柔韧性,增强墙纸抗污、耐老化、防褪色的性能,延长墙纸的使用寿命,极具推广使用价值。

Claims (6)

1.一种耐污防褪色墙纸,其特征在于,由如下重量份的物质制成:
纸浆92~96份、改性玻璃纤维粉末20~24份、改性纳米氧化锌8~12份、松香3~5份、琥珀2~4份、木质纤维4~8份、漂白粉6~10份、亚油酸3~5份、绵羊油2~4份、玉米油4~6份、磷酸三丁酯5~6份。
2.根据权利要求1所述一种耐污防褪色墙纸,其特征在于,由如下重量份的物质制成:
纸浆94份、改性玻璃纤维22份、改性纳米氧化锌10份、松香4份、琥珀3份、木质纤维6份、漂白粉8份、亚油酸4份、绵羊油3份、玉米油5份、磷酸三丁酯5.5份。
3.根据权利要求1或2所述一种耐污防褪色墙纸,其特征在于,所述改性玻璃纤维的制备方法包括如下步骤:
(1)将玻璃纤维放入到摩尔浓度为2~4mol/L的盐酸溶液中浸泡处理14~18min,完成后取出玻璃纤维,用去离子水冲洗一遍后备用;
(2)将步骤(1)中浸泡处理后的玻璃纤维和改性液A共同置于超高压设备中,利用高静水压进行处理,超高压设备中的压力控制为500~600MPa,高静水压处理的时间为22~26min;
(3)将步骤(2)中改性液A处理后的玻璃纤维取出放入到干燥箱内进行干燥处理,干燥至恒重即可。
4.根据权利要求3所述一种耐污防褪色墙纸,其特征在于,所述改性液A,由如下重量份的物质组成:稀土硫酸盐4~6份、香树烯2~4份、7-甲氧基香豆素3~4份、脂肪酸甘油酯4~5份,脂肪酸山梨坦3~4份、去离子水140~160份。
5.根据权利要求1或2所述一种耐污防褪色墙纸,其特征在于,所述改性纳米氧化锌的制备方法包括如下步骤:
(1)配制改性液B投入电解槽中,将待改性的纳米氧化锌用纱布裹好,固定在阳极端,进行电化学处理,电化学处理的时间为2~3h,直流电源为7~9V;
(2)将步骤(1)中改性液B处理后的氧化性置于红外干燥器内进行干干燥处理,红外的波长为70~80μm,红外干燥至恒重即可。
6.根据权利要求5所述一种耐污防褪色墙纸,其特征在于,所述改性液B,由如下重量份的物质组成:硝酸镧1~3份、氯化钬2~3份、苯丙酸0.7~0.9份、吐温20 2.3~2.7份、硝酸钾1.1~1.5份、去离子水120~140份。
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Publication number Priority date Publication date Assignee Title
CN202936669U (zh) * 2012-10-31 2013-05-15 浙江宏健纺织有限公司 一种防污型墙纸
CN105178110A (zh) * 2015-06-17 2015-12-23 山东香山装饰工程有限公司 一种墙纸及其制备方法
CN106638113A (zh) * 2016-11-29 2017-05-10 安徽索亚装饰材料有限公司 一种保温墙纸
CN106867327A (zh) * 2016-12-22 2017-06-20 安徽易有墙纸有限公司 一种耐污耐油墙纸及其制备方法

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN202936669U (zh) * 2012-10-31 2013-05-15 浙江宏健纺织有限公司 一种防污型墙纸
CN105178110A (zh) * 2015-06-17 2015-12-23 山东香山装饰工程有限公司 一种墙纸及其制备方法
CN106638113A (zh) * 2016-11-29 2017-05-10 安徽索亚装饰材料有限公司 一种保温墙纸
CN106867327A (zh) * 2016-12-22 2017-06-20 安徽易有墙纸有限公司 一种耐污耐油墙纸及其制备方法

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