CN109504554A - 一种玻璃清洗剂及其制备方法 - Google Patents
一种玻璃清洗剂及其制备方法 Download PDFInfo
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- CN109504554A CN109504554A CN201910005344.4A CN201910005344A CN109504554A CN 109504554 A CN109504554 A CN 109504554A CN 201910005344 A CN201910005344 A CN 201910005344A CN 109504554 A CN109504554 A CN 109504554A
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- sodium
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- glass cleaner
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- 239000003599 detergent Substances 0.000 claims abstract description 39
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- 239000004721 Polyphenylene oxide Substances 0.000 claims abstract description 24
- 239000002518 antifoaming agent Substances 0.000 claims abstract description 24
- LYCAIKOWRPUZTN-UHFFFAOYSA-N Ethylene glycol Chemical compound OCCO LYCAIKOWRPUZTN-UHFFFAOYSA-N 0.000 claims abstract description 18
- 239000003921 oil Substances 0.000 claims abstract description 16
- 235000010216 calcium carbonate Nutrition 0.000 claims abstract description 15
- 239000002270 dispersing agent Substances 0.000 claims abstract description 15
- 239000002738 chelating agent Substances 0.000 claims abstract description 14
- CDBYLPFSWZWCQE-UHFFFAOYSA-L Sodium Carbonate Chemical compound [Na+].[Na+].[O-]C([O-])=O CDBYLPFSWZWCQE-UHFFFAOYSA-L 0.000 claims abstract description 12
- 239000003755 preservative agent Substances 0.000 claims abstract description 12
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- 229920001027 sodium carboxymethylcellulose Polymers 0.000 claims abstract description 7
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- DPXJVFZANSGRMM-UHFFFAOYSA-N acetic acid;2,3,4,5,6-pentahydroxyhexanal;sodium Chemical compound [Na].CC(O)=O.OCC(O)C(O)C(O)C(O)C=O DPXJVFZANSGRMM-UHFFFAOYSA-N 0.000 claims description 5
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- NLJMYIDDQXHKNR-UHFFFAOYSA-K sodium citrate Chemical compound O.O.[Na+].[Na+].[Na+].[O-]C(=O)CC(O)(CC([O-])=O)C([O-])=O NLJMYIDDQXHKNR-UHFFFAOYSA-K 0.000 claims description 5
- AEQDJSLRWYMAQI-UHFFFAOYSA-N 2,3,9,10-tetramethoxy-6,8,13,13a-tetrahydro-5H-isoquinolino[2,1-b]isoquinoline Chemical group C1CN2CC(C(=C(OC)C=C3)OC)=C3CC2C2=C1C=C(OC)C(OC)=C2 AEQDJSLRWYMAQI-UHFFFAOYSA-N 0.000 claims description 4
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- HELHAJAZNSDZJO-OLXYHTOASA-L sodium L-tartrate Chemical compound [Na+].[Na+].[O-]C(=O)[C@H](O)[C@@H](O)C([O-])=O HELHAJAZNSDZJO-OLXYHTOASA-L 0.000 claims description 4
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- LFQSCWFLJHTTHZ-UHFFFAOYSA-N Ethanol Chemical compound CCO LFQSCWFLJHTTHZ-UHFFFAOYSA-N 0.000 claims description 3
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- BEGBSFPALGFMJI-UHFFFAOYSA-N ethene;sodium Chemical group [Na].C=C BEGBSFPALGFMJI-UHFFFAOYSA-N 0.000 claims description 3
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- JCGNDDUYTRNOFT-UHFFFAOYSA-N oxolane-2,4-dione Chemical compound O=C1COC(=O)C1 JCGNDDUYTRNOFT-UHFFFAOYSA-N 0.000 claims description 3
- DZCAZXAJPZCSCU-UHFFFAOYSA-K sodium nitrilotriacetate Chemical compound [Na+].[Na+].[Na+].[O-]C(=O)CN(CC([O-])=O)CC([O-])=O DZCAZXAJPZCSCU-UHFFFAOYSA-K 0.000 claims description 3
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Abstract
本发明公开了一种玻璃清洗剂及其制备方法。玻璃清洗剂包含以下重量份的组分:50‑64份去离子水、3‑6份表面活性剂、5‑10份乙二醇、3‑6份二乙二醇单丁醚、8‑12份碳酸钠、13‑18份无水硅酸钠、3‑7份羧甲基纤维素钠、10‑15份聚醚改性硅油、0.8‑1.2份改性纳米碳酸钙、10‑15份去污剂、5‑10份螯合剂、1‑3份消泡剂、3‑5份分散剂、1‑3份香精、3‑6份防腐剂。本发明的玻璃清洗剂具有有效除去油污和粉尘,对玻璃无腐蚀,提高产品良率的优点。
Description
技术领域
本发明涉及玻璃清洗剂技术领域,更具体地说,它涉及一种玻璃清洗剂及其制备方法。
背景技术
手机现已成为当代人们生活中必不可少的工具之一。随着技术的发展,越来越多的手机走向智能化,科技感也不断增强,纵观现有的多数智能手机,玻璃板材是手机生产材料中的重中之重,越来越多的外部盖板由玻璃板材制成。
自从2.5D和3.0D玻璃盖板推行后,为了加强玻璃盖板CNC工艺的润滑效果,很多厂家选用很难清洗的油性切削液,而传统的手机屏清洗剂有溶剂型和水基型。溶剂型主要含四氯乙烯、一氟二氯乙烷、异丙醇等成分,可以有效溶解切削液、油污等污物,但挥发后会残留粉尘点;水基型清洗剂主要是NaOH和KOH的水溶液,对水基型的切削液具有非常好的清洗效果,对油性切削液的清洗效果较差,且水基型清洗剂的碱性太强,清洗后损伤玻璃表面,易导致前工序清理玻璃表面发蒙发蓝,降低产品良率。
发明内容
针对现有技术存在的不足,本发明的第一个目的在于提供一种玻璃清洗剂,其具有能有效除去油污和粉尘,对玻璃无腐蚀,提高产品良率的优点。
本发明的第二个目的在于提供一种玻璃清洗剂的制备方法,其具有制备工艺简单,制备出的清洗剂除油效果显著的优点。
为实现上述第一个目的,本发明提供了如下技术方案:一种玻璃清洗剂,包含以下重量份的组分:50-64份去离子水、3-6份表面活性剂、5-10份乙二醇、3-6份二乙二醇单丁醚、8-12份碳酸钠、13-18份无水硅酸钠、3-7份羧甲基纤维素钠、10-15份聚醚改性硅油、0.8-1.2份改性纳米碳酸钙、10-15份去污剂、5-10份螯合剂、1-3份消泡剂、3-5份分散剂、1-3份香精、3-6份防腐剂。
通过采用上述技术方案,由于碳酸钠和无水硅酸钠的碱性弱,润湿性强,通过与二乙二醇单丁醚等组分的相互配合,使玻璃清洗后表面光滑,清除顽固的油污,减少不良返工工序,分散剂能够增强各物质分散的均匀性和稳定性,螯合剂能够与油污中的重金属离子形成络合物,从而使重金属离子从玻璃上脱离下来,经水冲洗后,使玻璃表面洁净,羧甲基纤维素钠具有良好的乳化作用,可使油污乳化并溶解,改性纳米碳酸钙具有良好的表面活性,作为摩擦剂,不仅能够增加对玻璃的摩擦作用,且可消除清洗擦拭时产生的静电,降低灰尘的二次吸附率,同时又能协同去污剂的去污效果,进一步改善整体的性能,聚醚改性硅油是油污的良好乳化剂和清洁剂,不仅能够分散在水中,也能够溶于油类物质中,对清洗剂的去油污起到增强作用,在各物质成分的共同配合作用下,本发明制备的玻璃清洗剂对玻璃具有很好的去污效果,并且不会损伤玻璃,减少玻璃表面细划,使玻璃表面不会发蒙发蓝,并能快速冲洗干净,表面无残留,减少漂洗次数,消除摩擦产生的静电,防止灰尘再吸附,使用方便,去污剂具有增溶、增稠、乳化、稳泡、柔软、保湿、抗静电,对人体皮肤无刺激性,生理毒性小,易生物降解,去污效果明显的效果,且对玻璃无腐蚀,玻璃表面不会发蒙发蓝,提高产品良率。
进一步地,所述去污剂包含以下重量份的组分:5-10份氧化淀粉、10-20份质量分数为5-10%的聚乙烯醇溶液、1-3份乙二胺四乙酸二钠、5-8份邻苯二甲酸二辛脂、1-3份十二烷基苯磺酸钠、5-10份酵母、1-4份陈皮粉、5-10份乙酸、2-4份盐、15-30份水。
通过采用上述技术方案,氧化淀粉能络合钙、镁等金属离子,具有能吸附、分散、悬浮污垢的性能,氧化淀粉与十二烷基苯磺酸钠、乙二胺四乙酸二钠等混合后,增强了氧化淀粉上羧基络合钙离子的能力和悬浮污垢的能力,增强淀粉的去污效率,酵母细胞壁内的葡萄糖甘露聚糖具有亲和性,具有比肥皂更好的去油污效果,其酵母能够增加物理摩擦,提高无油污功能,陈皮粉中含有甲基丙烯基环己烯,与乙酸混合,去污效果显著,且盐能够增加对玻璃的摩擦作用,提高去污效果,且对玻璃表面没有腐蚀作用,避免玻璃发蒙发蓝,原料均较为环保,不会对环境造成污染,且不会伤害皮肤。
进一步地,所述去污剂由以下方法制成:(1)将聚乙烯醇溶液在80-90℃下水浴加热1-5min,边搅拌边加入氧化淀粉,在1000-1500r/min的转速下搅拌1-2h,然后依次加入乙二胺四乙酸二钠、邻苯二甲酸二辛脂和十二烷基苯磺酸钠,在500-800r/min的转速下搅拌1-2h;(2)将乙酸溶解在水中,形成乙酸溶液,将盐溶解乙酸溶液中,将陈皮粉和酵母放入乙酸中,混合均匀后,加入步骤(1)所得物中,混合均匀,即制得去污剂。
通过采用上述技术方案,将聚乙烯醇溶液与氧化淀粉混合均匀,之后加入乙二胺四乙酸二胺、邻苯二甲酸二辛脂和十二烷基苯磺酸钠,使聚乙烯醇溶液和氧化淀粉分散充分,将盐溶解在乙酸溶液中,最后将酵母和陈皮粉混合,制成的去污剂具有良好的去油污效果,且无毒环保。
进一步地,所述表面活性剂为烷基糖苷、二甲基苯磺酸钠、聚乙二醇、C6-C7短链烷基磺酸钠、异辛酸钠、异构醇聚氧乙烯醚、脂肪醇聚氧乙烯醚、脂肪酸聚氧乙烯酯、烷基酚聚氧乙烯醚中的至少两种。
通过采用上述技术方案,烷基糖苷能够与各种离子型、非离子型表面活性剂复配产生增效作用,且其溶解性好,具有良好的增稠能力,温和、无毒、无刺激、易生物降解,表面张力低,润湿力和去污力强,与其他表面活性剂的复配,协同效应明显,异构醇聚氧乙烯醚具有优良的乳化、净洗性能,具有高效的润湿、分散和乳化能力,脂肪醇聚氧乙烯醚与其他表面活性剂的配伍性好,起到乳化、发泡、去污作用,脂肪酸聚氧乙烯酯属于非离子型表面活性剂,具有良好的乳化、增溶、润湿、分散和抗静电作用,可作为香精的增溶剂,烷基酚聚氧乙烯醚具有良好的润湿、渗透、乳化、分散、增溶和洗涤作用,可提高清洗剂的去污作用。
进一步地,所述分散剂为聚丙烯酰胺、海藻酸钠、柠檬酸钠中的一种或几种的组合物。
通过采用上述技术方案,聚丙烯酰胺、海藻酸钠、柠檬酸钠能够使各组分分散均匀,降低液体表面的张力并改变溶液体系界面状态,且聚丙烯酸胺的阻垢性能好,能够吸附杂质,具有良好的胶体特性和分散作用,柠檬酸钠具有螯合作用,对钙离子、镁离子等金属离子具有良好的络合能力,且其安全无毒。
进一步地,所述螯合剂为葡萄糖酸钠、乙二胺四乙酸、乙二胺四乙酸钠、酒石酸钠、氮川三乙酸钠、二乙烯三胺五乙酸五钠中的一种或多种。
通过采用上述技术方案,葡萄糖酸钠、乙二胺四乙酸、乙二胺四乙酸钠、酒石酸钠、氮川三乙酸钠、二乙烯三胺五乙酸五钠对钙、镁、锰、铁盐等具有很强的络合能力,可去除玻璃表面的重金属离子,提高去污效果,且螯合剂能够增加分散剂的稳定性。
进一步地,所述消泡剂为有机硅消泡剂、聚醚消泡剂、聚醚改性有机硅消泡剂中的一种或几种的组合物。
通过采用上述技术方案,有机硅消泡剂、聚醚消泡剂、聚醚改性有机硅消泡剂水溶性好,不残留,不漂油,抑泡长,耐高剪切,具有快速消泡和长久抑泡的功效。
进一步地,所述防腐剂由1,2-苯并异噻唑啉-3-酮、聚六亚甲基胍和苯甲酸钠按照质量比为2:5-6:1-3混合组成。
通过采用上述技术方案,1,2-苯并异噻唑啉-3-酮具有突出的抑制霉菌、藻类等微生物在有机介质中滋生的作用,避免清洗剂发霉、发酵、变质、破乳、发臭等,聚六亚甲基胍具有杀菌广谱,速度快,性质稳定的性能,且其无毒环保,1,2-苯并异噻唑啉-3-酮、聚六亚甲基胍和与苯甲酸钠配合使用,可提高苯甲酸钠的抗菌作用。
为实现上述第二个目的,本发明提供了如下技术方案:一种玻璃清洗剂的制备方法,包括以下步骤:
S1、向反应器中加入表面活性剂、碳酸钠、无水硅酸钠、乙二醇、二乙二醇单丁醚和去离子水,在70-75℃下搅拌20-28min,得到混合物一;
S2、向混合物一中加入羧甲基纤维素钠、聚醚改性硅油、分散剂和消泡剂,在30-50℃下以300-500r/min的转速搅拌1-1.5h,再加入去污剂,继续搅拌10-15min,得到混合物二;
S3、向混合物二中加入防腐剂、螯合剂和香精,混合搅拌均匀,最后加入改性纳米碳酸钙,在40-45kHz的频率下超声分散5-10min。
通过采用上述技术方案,将羧甲基纤维素钠、聚醚改性硅油、分散剂和消泡剂加入混合物一中,分散均匀后再加入去污剂,可使去污剂混合均匀,并采用超声波分散改性纳米碳酸钙,有利于各原料之间的混合,提高混合效率,制得的玻璃清洗剂清洁效果好,并且不会损伤玻璃,消除了摩擦产生的静电,不会对环境造成污染。
综上所述,本发明具有以下有益效果:
第一、由于本发明采用改性纳米碳酸钙作为摩擦剂和静电消除剂,由于改性纳米碳酸钙具有良好的表面活性,可对玻璃表面起到较好的摩擦作用,使玻璃清洗干净,并消除清洗擦拭时产生的静电,降低灰尘二次吸附量,与聚醚改性硅油协同使用,可提高清洗剂的去污效果,通过螯合剂、分散剂、消泡剂等成分的相互协同,本发明呢的清洗剂对玻璃的去污效果好,并且不会损伤玻璃,避免玻璃发蒙发蓝,消除摩擦产生的静电,降低灰尘再吸附,并且减少漂洗次数,对环境无污染,对人体皮肤无刺激性。
第二、本发明中优选采用质量比为2:5-6:1-3的1,2-苯并异噻唑啉-3-酮、聚六亚甲基胍和苯甲酸钠组成防腐剂,三者混合,相互协同,使清洗剂的保存时间长,避免清洗剂储存过程中滋生细菌,影响品质。
第三、本发明中采用氧化淀粉、盐、乙酸、酵母和陈皮粉等制作而成的去污剂,具有优异的增溶、增稠、乳化、起泡、稳泡、抗静电作用,且对人体皮肤无刺激性,渗透性、扩散性和润湿性优良,具有良好的去污能力。
具体实施方式
以下结合实施例对本发明作进一步详细说明。
去污剂的制备例1-3
制备例1-3中乙二胺四乙酸二钠选自广州东歌化工科技有限公司出售的DG-73434型乙二胺四乙酸二钠,邻苯二甲酸二辛脂选自荣贝(上海)化工科技有限公司出售的DOP型邻苯二甲酸二辛脂,十二烷基苯磺酸钠选自津南耀辉化工有限公司出售的型号为60的十二烷基苯磺酸钠,陈皮粉选自亳州市华保药业有限公司出售的货号为CP的陈皮粉,酵母选自山东康勤生物科技有线公司出售的货号为284的酵母,盐选自湖北贵合正商贸有限公司出售的货号为02的工业盐,乙酸选自货号选自郑州莱凯生物科技有限公司出售的101405的乙酸。
制备例1:(1)按照表1中的配比,将10kg聚乙烯醇溶液在80℃下水浴加热1min,边搅拌边加入5kg氧化淀粉,在1000r/min的转速下搅拌1h,然后依次加入1kg乙二胺四乙酸二钠、5kg邻苯二甲酸二辛脂和1kg十二烷基苯磺酸钠,在500r/min的转速下搅拌1h;
(2)将5kg乙酸溶解在15kg水中,形成乙酸溶液,将2kg盐溶解乙酸溶液中,将1kg陈皮粉和5kg酵母放入乙酸中,混合均匀后,加入步骤(1)所得物中,混合均匀,即制得去污剂。
表1制备例1-3中去污剂的原料配比
制备例2:按照表1中的配比,将15kg聚乙烯醇溶液在85℃下水浴加热3min,边搅拌边加入8kg氧化淀粉,在1250r/min的转速下搅拌1.5h,然后依次加入2kg乙二胺四乙酸二钠、6.5kg邻苯二甲酸二辛脂和2kg十二烷基苯磺酸钠,在650r/min的转速下搅拌1.5h;
(2)将8kg乙酸溶解在24kg水中,形成乙酸溶液,将3kg盐溶解乙酸溶液中,将2.5kg陈皮粉和8kg酵母放入乙酸中,混合均匀后,加入步骤(1)所得物中,混合均匀,即制得去污剂。
制备例3:按照表1中的配比,将15kg聚乙烯醇溶液在85℃下水浴加热3min,边搅拌边加入8kg氧化淀粉,在1250r/min的转速下搅拌1.5h,然后依次加入2kg乙二胺四乙酸二钠、6.5kg邻苯二甲酸二辛脂和2kg十二烷基苯磺酸钠,在650r/min的转速下搅拌1.5h;(2)将10kg乙酸溶解在30kg水中,形成乙酸溶液,将4kg盐溶解乙酸溶液中,将4kg陈皮粉和10kg酵母放入乙酸中,混合均匀后,加入步骤(1)所得物中,混合均匀,即制得去污剂。
实施例
以下实施例中香精选自东莞万特化工有限公司出售的货号为WT的香精,有机硅消泡剂选自天津中和盛泰化工有限公司出售的FE-3168型有机硅消泡剂,聚醚消泡剂选自广东南辉新材料有限公司出售的CI-1062型聚醚消泡剂,聚醚改性有机硅消泡剂选自广州冠志新材料科技有限公司出售的OS-1400型聚醚改性有机硅消泡剂、烷基糖苷选自广州昌彧化工有限公司出售的APG1214型烷基糖苷,二甲基苯磺酸钠选自南京汇哲贸易有限公司出售的SX93型二甲基苯磺酸钠,烯丙基聚氧乙烯醚选自桑达化工(南通)有限公司出售的TPEG型甲基烯丙基聚氧乙烯醚,1,2-苯并异噻唑啉-3-酮选自济南翱翔化工有限公司出售的AOX68型1,2-苯并异噻唑啉-3-酮,聚六亚甲基胍选自山东登诺新材料科技有限公司出售的DN-Y483型聚六亚甲基胍,硅烷偶联剂选自济南翱翔化工有限公司出售的KH-570型硅烷偶联剂。
实施例1:一种玻璃清洗剂的制备方法,包括以下步骤:
S1、按照表2中的原料配比,向反应器中加入3kg表面活性剂、8kg碳酸钠、13kg无水硅酸钠、5kg乙二醇、3kg二乙二醇单丁醚和50kg去离子水,在70℃下搅拌20min,得到混合物一,其中表面活性剂为质量比为3:5的二甲基苯磺酸钠和烷基糖苷;
S2、向混合物一中加入3kg羧甲基纤维素钠、10kg聚醚改性硅油、3kg分散剂和1kg消泡剂,在30℃下以300r/min的转速搅拌1h,再加入10kg去污剂,继续搅拌10min,得到混合物二;其中分散剂为聚丙烯酰胺,消泡剂为有机硅消泡剂,去污剂由制备例1制备而成,聚醚改性硅油由以下方法制成:(1)向260kg异丙醇中加入0.5kg氯铂酸,混合均匀,制得催化溶液;(2)向10kg含氢量为0.18%的硅油中加入10kg烯丙基聚氧乙烯醚,在氮气保护下升温至80℃,加入步骤(1)制得的15μg/g催化溶液,升温至100℃,反应6h,冷却,出料;
S3、向混合物二中加入5kg防腐剂、5kg螯合剂和1kg香精,混合搅拌均匀,最后加入0.8kg改性纳米碳酸钙,在40kHz的频率下超声分散5min;
其中防腐剂由1,2-苯并异噻唑啉-3-酮、聚六亚甲基胍和苯甲酸钠按照质量比为2:5:1混合组成,螯合剂为葡萄酸钠,改性纳米碳酸钙由以下方法制成:将10kg碳酸钙置于400℃下煅烧1h,再将其置于含有3kg质量分数为1.5%的壳聚糖、2kg质量分数为2%的硅烷偶联剂的混合溶液中浸泡30min,取出干燥至含水量小于2%,并研磨制成平均粒径为15nm的粉末。
表2实施例1-5中玻璃清洗剂的原料配比
实施例2-5:一种玻璃清洗剂的制备方法,与实施例1的区别在于,玻璃清洗剂的原料配比如表2所示。
实施例6:一种玻璃清洗剂的制备方法,与实施例1的区别在于,步骤S1中,搅拌温度为73℃,搅拌时间为24min,表面活性剂为质量为4:5.5的烷基糖苷和聚乙二醇;
步骤S2中搅拌温度为40℃,搅拌转速为400r/min,搅拌1.3h,加入去污剂后再搅拌13min,分散剂为海藻酸钠,消泡剂为聚醚消泡剂,去污剂由制备例2制成,聚醚改性硅油由以下方法制成:(1)向390kg异丙醇中加入0.8kg氯铂酸,混合均匀,制得催化溶液;
(2)向13kg含氢量为0.19%的硅油中加入13kg烯丙基聚氧乙烯醚,在氮气保护下升温至85℃,加入步骤(1)制得的18μg/g催化溶液,升温至105℃,反应6.5h,冷却,出料;
步骤S3中防腐剂由1,2-苯并异噻唑啉-3-酮、聚六亚甲基胍和苯甲酸钠按照质量比为2:5.5:2混合组成,螯合剂为乙二胺四乙酸,改性纳米碳酸钙由以下方法制成:将13kg碳酸钙置于410℃下煅烧1.5h,再将其置于含有3kg质量分数为1.8%的壳聚糖、2.5kg质量分数为2.3%的硅烷偶联剂的混合溶液中浸泡40min,取出干燥至含水量小于2%,并研磨制成平均粒径为20nm的粉末。
实施例7:一种玻璃清洗剂的制备方法,与实施例1的区别在于,步骤S1中,搅拌温度为75℃,搅拌时间为28min,表面活性剂为质量为5:6的烷基糖苷和聚乙二醇;
步骤S2中搅拌温度为50℃,搅拌转速为500r/min,搅拌1.5h,加入去污剂后再搅拌15min,分散剂为柠檬酸钠,消泡剂为聚醚改性有机硅消泡剂,去污剂由制备例3制成,聚醚改性硅油由以下方法制成:(1)向520kg异丙醇中加入1.0kg氯铂酸,混合均匀,制得催化溶液;(2)向15kg含氢量为0.2%的硅油中加入15kg烯丙基聚氧乙烯醚,在氮气保护下升温至90℃,加入步骤(1)制得的20μg/g催化溶液,升温至110℃,反应7h,冷却,出料;
步骤S3中防腐剂由1,2-苯并异噻唑啉-3-酮、聚六亚甲基胍和苯甲酸钠按照质量比为2:6:3混合组成,螯合剂为酒石酸钠,改性纳米碳酸钙由以下方法制成:将15kg碳酸钙置于420℃下煅烧2.0h,再将其置于含有5kg质量分数为2.0%的壳聚糖、3.0kg质量分数为2.5%的硅烷偶联剂的混合溶液中浸泡50min,取出干燥至含水量小于2%,并研磨制成平均粒径为25nm的粉末。
对比例
对比例1:一种玻璃清洗剂的制备方法,与实施例1的区别在于,玻璃清洗剂中未添加聚醚改性硅油。
对比例2:一种玻璃清洗剂的制备方法,与实施例1的区别在于,玻璃清洗剂中未添加改性纳米碳酸钙。
对比例3:一种玻璃清洗剂的制备方法,与实施例1的区别在于,去污剂中未添加氧化淀粉。
对比例4:一种玻璃清洗剂的制备方法,与实施例1的区别在于,去污剂中未添加酵母。
对比例5:一种玻璃清洗剂的制备方法,与实施例1的区别在于,去污剂中未添加陈皮粉。
对比例6:一种玻璃清洗剂的制备方法,与实施例1的区别在于,去污剂中未添加盐。
对比例7:一种玻璃清洗剂的制备方法,与实施例1的区别在于,去污剂中未添加乙酸。
性能检测试验
一、去污力测试:选用相同规格的手机触摸屏140个作为清洗试件,每组10个,平均分为14组,记为试样组1-14,在80℃烘箱中烘干至恒重并称量,记为m0(精确至0.0001g),然后将配制的污垢液涂覆在玻璃样片上,涂污量控制在2-2.5g,然后放入85℃恒温箱中干燥1h,取出后称重,记为m1(精确至0.0001g),所用污垢液是将0.25g碳黑、20.0g糖浆、20.0g植物油、20.0g石蜡和20.0g酱油放在一个烧杯中搅拌,使之混合均匀而成的黏稠状液体。取140个400mL的烧杯中,并标号为烧杯1-140,在1-10号烧杯中倒入由实施例1制得的清洗剂,在11-20号烧杯中倒入由实施例2制得的清洗剂,以此类推,在131-140号烧杯中倒入由对比例7制得的清洗剂,每个烧杯中清洗剂均为300.0g,在25±2℃水浴条件下,将试样组1中的10个手机触摸屏放入烧杯1-10号,试样组2中的10个手机触摸屏放入烧杯11-20号中,以此类推,将试样组14中的10个手机触摸屏放入烧杯131-140号中,每个试样的表面垂直于水平摆动方向,使涂污部分充分浸于清洗剂中,浸泡1min,摆洗1.5min,摆洗速度为40r/min,然后在300mL的蒸馏水中摆洗30s,放入托盘,在85±2℃的恒温烘箱中烘干1.5h,室温冷却20min,称量,记为m2(精确至0.0001g),按下式计算去污力:f(%)=(m1-m2)/(m1-m0)×100%,每组手机触摸屏的去污力取平均值,测试结果如表3所示。
二、发蒙发蓝和细划伤比例测试:用实施例1-7和对比例1-7制得的玻璃清洗剂清洗光学玻璃产品,将清洗剂稀释20倍后,pH值为12.5-13,用手机触摸屏做清洗试件,放入超声波清洗机溶剂槽内清洗,温度设置为65℃,时间设定为110s,清洗后观察手机触摸屏的表面光滑,无划痕,清洗效果良好,测试结果如表3所示。
三、防雾性能测试:选取长宽高为20mm×10mm×2mm的玻璃样片14个,将实施例1-7和对比例1-7制得的清洗剂分别喷涂在14个玻璃样片上,用水冲洗干净,之后将玻璃样片分别盖在盛有相同体积废水的烧杯上,观察玻璃样片的防雾性能,具有数据如表3所示,表3中防雾性能的评分标准为:5分为没有雾,样片非常透明,4分表示没有雾,样片透明,3分表示一般,2分表示有雾,不透明,1分表示有白色雾,不透明。
表3实施例1-7和对比例1-7制得的清洗剂的效果测试结果
由表1中数据可以看出,按照实施例1-7制得的玻璃清洗剂,去污力强,清洗后玻璃产品的细划伤小,良率高,水滴角小,洁净度更好,玻璃表面光滑,不发蒙不发蓝,且防雾性能好。
对比例1因清洗剂中未添加聚醚改性硅油,清洗剂的去污力仅为96.54%,且清洗后玻璃发蒙发蓝的比例为0.36%,细划伤比例为5.18%,与实施例1相比增加较为显著,清洗后水滴角明显增大,防雾性能仅为3分,说明聚醚改性硅油能够提高清洗剂的去污能力,且使玻璃清洗后不发蒙不发蓝,表面光滑。
对比例2因清洗剂中未添加改性纳米碳酸钙,清洗剂的去污能力与实施例1相比降低了3.4%,清洗后玻璃的发蓝发蒙比例增加,细划伤比例增加,且良率仅为87.96%,防雾性能较差,说明改性纳米碳酸钙能够提高清洗剂的去污能力,使玻璃清洗后,表面光滑,不发蒙不发蓝,细划少,良率高。
对比例3因去污剂中未添加氧化淀粉,清洗剂的去污力仅为96.49%,与实施例1相比明显下降,发蒙发蓝比例增加,细划伤比例增加,良率降低,水滴角增大,防雾性能较差,说明氧化淀粉能够增加清洗剂的去污能力,提高玻璃清洗后的良率,使玻璃清洗后不发蒙不发蓝,细划少。
对比例4因去污剂中未添加酵母,清洗剂的去污力与实施例1相比明显降低,且清洗后产品良率仅为86.82%,发蒙和发蓝比例较高,细划伤比例较大,说明酵母能够提高清洗剂的去污力,降低清洗剂后玻璃发蒙和发蓝现象,减少细划伤。
对比例5因去污剂中未添加陈皮粉,清洗剂的去污能力仅为96.57%,且清洗后发蒙发蓝比例为0.43%,细划伤比例为5.03%,良品率低,防雾性能差,说明陈皮粉能够提高清洗剂的去污力,使玻璃清洗后表面光滑,细划伤少,不发蒙不发蓝,提高产品良率。
对比例6因去污剂中未添加盐,清洗剂的去污力较差,且玻璃发蒙发蓝比例较大,细划伤较多,产品良率较少,说明盐能够增加清洗剂的去污能力,避免玻璃清洗后发蓝发蒙,减少细划伤,提高产品良率。
对比例7因去污剂中未添加乙酸,清洗剂的去污力与实施例1相比,下降了5.18%,且发蒙发蓝比例增大,细划伤增多,产品良率降低,说明乙酸能够提高清洗剂的去污能力,使玻璃清洗后表面光滑,不发蒙不发蓝,细划伤少,提高产品良率。
本具体实施例仅仅是对本发明的解释,其并不是对本发明的限制,本领域技术人员在阅读完本说明书后可以根据需要对本实施例做出没有创造性贡献的修改,但只要在本发明的权利要求范围内都受到专利法的保护。
Claims (10)
1.一种玻璃清洗剂,其特征在于,包含以下重量份的组分:50-64份去离子水、3-6份表面活性剂、5-10份乙二醇、3-6份二乙二醇单丁醚、8-12份碳酸钠、13-18份无水硅酸钠、3-7份羧甲基纤维素钠、10-15份聚醚改性硅油、0.8-1.2份改性纳米碳酸钙、10-15份去污剂、5-10份螯合剂、1-3份消泡剂、3-5份分散剂、1-3份香精、3-6份防腐剂。
2.根据权利要求1所述的玻璃清洗剂,其特征在于,所述去污剂包含以下重量份的组分:5-10份氧化淀粉、10-20份质量分数为5-10%的聚乙烯醇溶液、1-3份乙二胺四乙酸二钠、5-8份邻苯二甲酸二辛脂、1-3份十二烷基苯磺酸钠、5-10份酵母、1-4份陈皮粉、5-10份乙酸、2-4份盐、15-30份水。
3.根据权利要求2所述的玻璃清洗剂,其特征在于,所述去污剂由以下方法制成:(1)将聚乙烯醇溶液在80-90℃下水浴加热1-5min,边搅拌边加入氧化淀粉,在1000-1500r/min的转速下搅拌1-2h,然后依次加入乙二胺四乙酸二钠、邻苯二甲酸二辛脂和十二烷基苯磺酸钠,在500-800r/min的转速下搅拌1-2h;
(2)将乙酸溶解在水中,形成乙酸溶液,将盐溶解乙酸溶液中,将陈皮粉和酵母放入乙酸中,混合均匀后,加入步骤(1)所得物中,混合均匀,即制得去污剂。
4.根据权利要求1所述的玻璃清洗剂,其特征在于,所述聚醚改性硅油由以下方法制成:(1)向260-520份异丙醇中加入0.5-1.0份氯铂酸,混合均匀,制得催化溶液;
(2)向10-15份含氢量为0.18-0.2%的硅油中加入10-15份烯丙基聚氧乙烯醚,在氮气保护下升温至80-90℃,加入步骤(1)制得的15-20μg/g催化溶液,升温至100-110℃,反应6-7h,冷却,出料。
5.根据权利要求1所述的玻璃清洗剂,其特征在于,所述表面活性剂为烷基糖苷、二甲基苯磺酸钠、聚乙二醇、C6-C7短链烷基磺酸钠、异辛酸钠、异构醇聚氧乙烯醚、脂肪醇聚氧乙烯醚、脂肪酸聚氧乙烯酯、烷基酚聚氧乙烯醚中的至少两种。
6.根据权利要求1所述的玻璃清洗剂,其特征在于,所述分散剂为聚丙烯酰胺、海藻酸钠、柠檬酸钠中的一种或几种的组合物。
7.根据权利要求1所述的玻璃清洗剂,其特征在于,所述螯合剂为葡萄糖酸钠、乙二胺四乙酸、乙二胺四乙酸钠、酒石酸钠、氮川三乙酸钠、二乙烯三胺五乙酸五钠中的一种或多种。
8.根据权利要求1所述的玻璃清洗剂,其特征在于,所述消泡剂为有机硅消泡剂、聚醚消泡剂、聚醚改性有机硅消泡剂中的一种或几种的组合物。
9.根据权利要求1所述的玻璃清洗剂,其特征在于,所述防腐剂由1,2-苯并异噻唑啉-3-酮、聚六亚甲基胍和苯甲酸钠按照质量比为2:5-6:1-3混合组成。
10.一种根据权利要求1-9任一所述的玻璃清洗剂的制备方法,其特征在于,包括以下步骤:
S1、向反应器中加入表面活性剂、碳酸钠、无水硅酸钠、乙二醇、二乙二醇单丁醚和去离子水,在70-75℃下搅拌20-28min,得到混合物一;
S2、向混合物一中加入羧甲基纤维素钠、聚醚改性硅油、分散剂和消泡剂,在30-50℃下以300-500r/min的转速搅拌1-1.5h,再加入去污剂,继续搅拌10-15min,得到混合物二;
S3、向混合物二中加入防腐剂、螯合剂和香精,混合搅拌均匀,最后加入改性纳米碳酸钙,在40-45kHz的频率下超声分散5-10min。
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