CN110934380B - 一种祛湿抗菌健足平衡鞋垫的生产工艺 - Google Patents

一种祛湿抗菌健足平衡鞋垫的生产工艺 Download PDF

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CN110934380B
CN110934380B CN201911100154.7A CN201911100154A CN110934380B CN 110934380 B CN110934380 B CN 110934380B CN 201911100154 A CN201911100154 A CN 201911100154A CN 110934380 B CN110934380 B CN 110934380B
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徐社维
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Zhejiang Shoemaker Footwear Industry Co ltd
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Abstract

本发明公开了一种祛湿抗菌健足平衡鞋垫及其生产工艺,涉及鞋垫领域,平衡鞋垫包括鞋垫层,所述鞋垫层分为前掌区、足弓区和脚跟区,所述足弓区和脚跟区处设置有定型片,所述定型片呈弧形且中部拱起处相对两侧上翻;所述鞋垫层于前掌区处平整、受定型片作用而于足弓区和脚跟区处呈弧形,所述鞋垫层最高处位于足弓区和脚跟区的交界处且该处两侧拱起形成支撑部;所述鞋垫层包括外表皮层和海绵内层。本发明具有可平衡足底压力、透气散热、祛湿排寒、抗菌抑菌、调和气血等作用,健足效果好。

Description

一种祛湿抗菌健足平衡鞋垫的生产工艺
技术领域
本发明涉及鞋垫,特别涉及一种祛湿抗菌健足平衡鞋垫的生产工艺。
背景技术
鞋垫用于放置在鞋内,可起到抗菌、除臭、增高等作用。市面上大部分的鞋垫外形平坦,与人体脚部的贴合性差,穿着时不能够对足弓处形成有效的支撑。长期穿着该类平坦的鞋垫,人体脚部的舒适感差,甚至感到疼痛,因此需要一款符合人体工学设计,可平衡足底压力的鞋垫,满足人们对足底舒适健康的需求。
公告号为CN206252570U的中国专利公开了一种平衡足压矫正鞋垫,其包括定型支撑结构、后跟内置减震垫、穴位凸点、足弓位置凸起和外包墙;所述定型支撑结构设置于鞋垫的足弓位置;所述后跟内置减震垫内置于所述定型支撑结构上的后跟镂空处;所述涌泉穴穴位凸点位于足前部凹陷处第2、3趾趾缝纹头端与足跟连线的前三分之一处;所述足弓位置凸起为设置于足弓凹陷位置的加厚材料;所述外包墙沿足弓两侧并向上延伸至后跟处,呈U型包裹足部。
上述鞋垫的定型支撑结构使得鞋垫足弓处、脚跟处外沿上翻而贴合脚掌,形成外包墙,进而起到平衡足底压力的作用。然而鞋垫脚跟处大面积、包围式的接触脚掌,人脚抬起时,空气会不易进入鞋垫人脚的间隙中,进而容易导致人脚闷热,鞋垫的散热、透气性差。
发明内容
针对上述技术缺陷,本发明的目的是提供一种祛湿抗菌健足平衡鞋垫,能够平衡足底压力,且具有良好的散热透气性能。
为实现上述目的,本发明提供了如下技术方案:
一种祛湿抗菌健足平衡鞋垫,包括鞋垫层,所述鞋垫层分为前掌区、足弓区和脚跟区,所述足弓区和脚跟区处设置有定型片,所述定型片呈弧形且中部拱起处相对两侧上翻;所述鞋垫层于前掌区处平整、受定型片作用而于足弓区和脚跟区处呈弧形,所述鞋垫层最高处位于足弓区和脚跟区的交界处且该处两侧拱起形成支撑部;所述鞋垫层包括外表皮层和海绵内层;所述鞋垫层于足弓区和脚跟区外沿设置有一圈弓跟透气孔、与内侧支撑部处设置有多个足弓吸汗孔。
通过采用上述技术方案,与传统平板型的鞋垫不同,受定型片作用,鞋垫层呈现特殊形状,符合人体工学设计。人脚足弓处受到支撑部的贴合支撑,进而使得人脚各区域均能受到支撑,起到平衡足底压力的作用。
人脚踩下时,鞋垫层最高处被压下,脚跟区压平,定型片因其具有一定的回弹性能而对人脚具有反作用力,使得人脚受到一定推顶作用力,起到按摩足底穴位的保健作用。人脚抬起时,定型片回弹,脚跟区恢复倾斜,人脚与脚跟区之间便形成间隙,便于空气进入而带走热量,透气散热性能良好。
鞋垫层合理分为亲肤舒适感强、透气性好的外表皮层以及缓震性好、吸湿性强的海绵内层。人脚产生的汗液透过弓跟透气孔和足弓吸汗孔而能够被海绵内层及时吸收,营造干爽舒适的内环境,且不易滋生细菌、发臭。
本发明进一步设置为:所述鞋垫层于脚跟区处和定型片之间设置有缓震垫,所述定型片设置有正对缓震垫的通孔。
通过采用上述技术方案,人脚落地时往往是脚跟处先着地,该处受到的冲击力最大。因此在脚跟区设置缓震垫,有助于减轻震感,提高行走的舒适感。通孔一方面便于形成透气通路,提高透气性能;另一方面避免硬质的定型片影响缓震效果。
本发明进一步设置为:所述定型片边沿与鞋垫层边沿之间具有距离。
通过采用上述技术方案,保证人脚不易接触到定型片。
本发明进一步设置为:所述鞋垫层于足弓区处和定型片之间设置有按摩垫,所述鞋垫层于按摩垫处鼓起。
通过采用上述技术方案,鼓起处起到按摩足弓穴位的作用。
本发明进一步设置为:所述按摩垫包括外套及内填充物,所述内填充物包括如下重量份的组分:
电气石粉 15-20份;
石墨烯粉 15-20份;
冰片粉 6-8份;
甘草粉 10-13份;
丁香粉 10-13份;
川芎粉 6-8份;
当归粉 2-3份;
乳香粉 2-3份;
栀子粉 6-8份。
通过采用上述技术方案,电气石粉能够使空气发生电离,产生对人体有益的负离子。负离子具有良好的生物活性,易于透过皮肤,进入人体发挥其生物效应,可改善神经衰弱、失眠,提高人体免疫力。石墨烯粉具有远红外功效,可改善血液循环并缓解疼痛。
中药粉可释放出芳香族及其他类化学物成分的香气,透过鞋垫层孔眼,柔和的刺激人脚皮肤,中医上认为还能刺激足底穴位,起到疏通经络、调和气血、活血化瘀、祛湿排寒等作用。部分中药成分则能被透皮吸收。
冰片粉、甘草粉、丁香粉、川芎粉、当归粉、乳香粉、栀子粉均具有温和宜人的特有香气,混合后可在鞋内营造芳香环境,起到防臭、抗菌以及保健作用。
本发明进一步设置为:所述鞋垫层设置有多个正对按摩垫的按摩透气孔。
通过采用上述技术方案,便于空气流通,进而便于汗液吸收以及释放负离子。
本发明进一步设置为:所述鞋垫层于前掌区靠近足弓区的一侧设置有多排前掌吸汗孔、另一侧设置有一圈前掌透气孔。
通过采用上述技术方案,孔眼设置合理,密集排布在人脚易出汗的部位,提高海绵内层对汗液吸收的效率。
本发明的另一目的是提供一种祛湿抗菌健足平衡鞋垫的生产工艺。
一种祛湿抗菌健足平衡鞋垫的生产工艺,包括如下步骤:
S1外表皮层:将合成革裁剪成指定形状和大小的外表皮层;
S2海绵内层:将PVA发泡海绵裁剪成指定形状和大小的海绵内层;
S3定型片:通过注塑成型制得定型片;
S4组合生产:先将外表皮层和海绵内层粘合在一起,形成鞋垫层,再进行冲孔工序,最后将鞋垫层和定型片贴紧并粘合在一起,得到平衡鞋垫。
通过采用上述技术方案,天然皮革虽然具有优良的强度、耐湿热等性能,但是资源有限,因此利用高性能的合成革去作为替代。
本发明进一步设置为:所述S1外表皮层的具体制作方法如下:
S11基布预处理:将超细纤维基布浸入酸液中,温度40-50℃,处理15-20min,轧液后水洗、再于100-105℃下烘干;
S12基布改性:将基布浸入改性液中,温度55-60℃,处理1.5-2h,轧液后水洗、再于100-105℃下烘干;
S13刮涂PU:将水性PU刮涂液刮涂在基布上;
S14成型:加热至100-105℃烘干,再经裁剪制得外表皮层;
所述改性液的制备过程如下:按重量份计,在冰水浴条件下先将20-25份二乙烯三胺和100-130份水混合稀释,得到二乙烯三胺溶液,再将28-35份N,N-亚甲基双丙烯酰胺和二乙烯三胺溶液混合,搅拌均匀后加热至60-65℃,反应12-16h,接着于70-80℃下真空脱水20-25min,得到改性液。
本发明进一步设置为:所述水性PU刮涂液的制备过程如下:
第一步,将30-35份亚麻油和5-8份二乙醇胺混合,再加入0.15-0.2份乙醇钠,加热至90-100℃,反应110-130min后出料,与22-26份PCDL-1000混合,加热至100-105℃,持续1-2h后降温至50-60℃;
第二步,接着加入15-20份IPDI、0.1-0.14份二月桂酸二丁基锡,混合均匀升温至75-78℃,反应1-2h后降温至50-60℃;
第三步,然后加入2-2.5份DMPA、4-5份1,4-丁二醇,加热至72-78℃,反应1.5-2h后降温至40-45℃;
第四步,最后加入2.5-3份二乙胺,搅拌15-20min后加入70-80份水、0.5-0.7份AEO-9,剪切乳化20-30min,得到水性PU刮涂液。
通过采用上述技术方案,湿法合成革即在纤维基布表面涂布PU树脂,再经固化成型。大部分的合成革都存在基布和PU材料的亲水基团少,吸湿性能差的缺点,限制其应用。人脚产生的汗液无法及时被鞋垫所吸收,湿热难忍。
本发明的合成革一方面对基布进行改性,引入亲水基团,另一方面使用水性PU取代传统的溶剂型PU,并以亚麻油氨解物作为多元醇原料,使得所制得的PU合成革透气透湿能力大大提高,并且更加亲肤环保,避免传统合成革中DMF溶剂产生的危害。
综上所述,本发明具有以下有益效果:
1.定型片两侧上翻,使得鞋垫层两侧拱起而形成支撑部,呈现特殊形状,符合人体工学设计,人脚足弓处受到支撑部的贴合支撑,起到平衡足底压力的作用;
2.定型片呈弧形,使得人脚抬起时与鞋垫层之间可形成透气间隙,提高散热透气性能;
3.通过按摩垫的设置,提高鞋垫的保健性能,起到疏通经络、调和气血、活血化瘀、祛湿排寒、抗菌抑菌等作用;
4.通过鞋垫层多个孔眼合理的分区排布、针对性的密集排布,便于人脚汗液吸收,提高穿着的舒适性;
5.合成革生产工艺经过优化改进,具有优良的透气透湿能力。
附图说明
图1是实施例一的结构示意图;
图2是实施例一的侧视示意图;
图3是实施例一的正视示意图;
图4是实施例一的背视示意图,虚线指代缓震垫、按摩垫所处区域;
图5是实施例一中按摩垫的结构示意图。
附图标记说明:1、鞋垫层;11、外表皮层;12、海绵内层;13、弓跟透气孔;14、足弓吸汗孔;15、按摩透气孔;16、前掌吸汗孔;17、前掌透气孔;2、定型片;21、通孔;3、前掌区;4、足弓区;5、脚跟区;6、支撑部;7、缓震垫;8、按摩垫;81、外套;82、内填充物。
具体实施方式
以下结合附图对本发明作进一步详细说明。
实施例一:
一种祛湿抗菌健足平衡鞋垫,如图1所示,包括鞋垫层1和定型片2。鞋垫层1包括与人脚掌接触的外表皮层11、与外表皮层11粘接的海绵内层12。海绵内层12由PVA发泡海绵制成,起到缓震、吸汗的作用。鞋垫层1沿其长度方向依次分为前掌区3、足弓区4和脚跟区5,定型片2位于足弓区4和脚跟区5且其边沿处与海绵内层12粘接,进而对鞋垫层1具有定型作用,使鞋垫符合人体工学设计。
如图1、图2所示,定型片2由塑料制成,因而具有一定硬度和回弹性。定型片2呈弧形且中部朝向鞋垫层1拱起,其拱起处相对两侧朝向鞋垫层1上翻。鞋垫层1于前掌区3处平整。定型片2边沿与鞋垫层1边沿之间具有距离。定型片2于其拱起处以及上翻处均与海绵内层12紧密粘接,因而鞋垫层1受到具有一定硬度的定型片2定型作用,使其于足弓区4和脚跟区5处呈弧形。鞋垫层1最高处位于足弓区4和脚跟区5的交界处且该处两侧拱起形成支撑部6。人脚足弓处受到支撑部6的贴合支撑,鞋垫进而起到平衡足底压力的作用。
人脚踩下时,鞋垫层1最高处被压下,脚跟区5压平,定型片2因其具有一定的回弹性能而对人脚具有反作用力,使得人脚受到一定推顶作用力,起到按摩足底穴位的保健作用。人脚抬起时,定型片2回弹,脚跟区5恢复倾斜,人脚与脚跟区5之间便形成间隙,便于空气进入而带走热量,透气散热性能良好。
如图3、图4所示,鞋垫层1于脚跟区5处和定型片2之间设置有由海绵制成且呈片状的缓震垫7,缓震垫7与海绵内层12粘接且位于定型片2和鞋垫层1之间的区域内。缓震垫7有助于减轻震感,提高行走的舒适感。定型片2设置有正对缓震垫7的圆形通孔21,避免硬质的定型片2影响缓震效果。鞋垫层1于足弓区4处和定型片2之间设置有按摩垫8,按摩垫8呈馒头状,按摩垫8与海绵内层12粘接且位于定型片2和鞋垫层1之间的区域内。鞋垫层1于按摩垫8处鼓起,鼓起处起到按摩足弓穴位的作用。
如图3、图4所示,鞋垫层1于前掌区3靠近足弓区4的一侧设置有三排前掌吸汗孔16,每排至少10个。鞋垫层1于前掌区3远离足弓区4的一侧设置有一圈靠近边沿的前掌透气孔17,至少20个。鞋垫层1于足弓区4和脚跟区5外沿设置有一圈弓跟透气孔13,至少30个。鞋垫层1于内侧的支撑部6处密集设置有多个足弓吸汗孔14,至少15个。鞋垫层1于按摩垫8处设置有多个按摩透气孔15,至少20个。
根据人体足部易出汗部位的分析,合理设置及排布孔眼,使得人脚产生的汗液能够迅速快速通过孔眼而被海绵内层12吸收,营造干爽舒适的内环境。未出汗时,大量孔眼也能起到透气散热的作用。
如图5所示,按摩垫8由外套81以及位于外套81内部的内填充物82组成。外套81由棉制成,内填充物包括如下重量份的组分:电气石粉 18份;石墨烯粉 18份;冰片粉 7份;甘草粉 12份;丁香粉 12份;川芎粉 7份;当归粉 2.5份;乳香粉 2.5份;栀子粉 7份。
实施例二:
与实施例一的区别在于,内填充物包括如下重量份的组分:电气石粉 15份;石墨烯粉 15份;冰片粉 6份;甘草粉 10份;丁香粉 10份;川芎粉 6份;当归粉 2份;乳香粉 2份;栀子粉6份。
实施例三:
与实施例一的区别在于,如下重量份的组分:电气石粉 20份;石墨烯粉 20份;冰片粉 8份;甘草粉 13份;丁香粉 13份;川芎粉 8份;当归粉 3份;乳香粉 3份;栀子粉8份。
实施例四:
实施例一至三的平衡鞋垫采用如下工艺制得:
S1外表皮层:按照鞋垫图纸的设计,将合成革裁剪成指定形状和大小的外表皮层;
S2海绵内层:将PVA发泡海绵裁剪成指定形状和大小的海绵内层;
S3定型片:通过注塑成型制得定型片,冲裁出通孔,热压成型;
S4组合生产:先将外表皮层和海绵内层粘合在一起,形成鞋垫层,再进行冲孔工序,形成弓跟透气孔、足弓吸汗孔、按摩透气孔、前掌吸汗孔、前掌透气孔,接着将缓震垫和按摩垫粘在鞋垫层上,最后将鞋垫层和定型片贴紧并粘合在一起,得到平衡鞋垫。
实施例五:
实施例四中的S1外表皮层的具体制作方法如下:
S11基布预处理:将PA6超细纤维基布浸入酸液中,温度40℃,处理15min,轧液后水洗、再于100℃下烘干,酸液为5wt%硫酸溶液;
S12基布改性:将基布浸入改性液中,温度55℃,处理1.5h,轧液后水洗、再于100℃下烘干;
S13刮涂PU:将水性PU刮涂液刮涂在基布上;
S14成型:加热至100℃烘干,再经裁剪制得外表皮层。
改性液的制备过程如下:按重量份计,在冰水浴条件下先将20份二乙烯三胺和100份水混合稀释,得到二乙烯三胺溶液,再将28份N,N-亚甲基双丙烯酰胺和上述所得的二乙烯三胺溶液混合,搅拌均匀后加热至60℃,反应12h,接着于70℃下真空脱水20min,得到改性液。
水性PU刮涂液的制备过程如下:
第一步,将30份亚麻油和5份二乙醇胺混合,再加入0.15份乙醇钠,加热至90℃,反应110min后出料,与22份PCDL-1000混合,加热至100℃,持续1h后降温至50℃;
第二步,接着加入15份IPDI、0.1份二月桂酸二丁基锡,混合均匀升温至75℃,反应1h后降温至50℃;
第三步,然后加入2份DMPA、4份1,4-丁二醇,加热至72℃,反应1.5h后降温至40℃;
第四步,最后加入2.5份二乙胺,搅拌15min后加入70份水、0.5份AEO-9,剪切乳化20min,得到水性PU刮涂液。
实施例六:
实施例四中的S1外表皮层的具体制作方法如下:
S11基布预处理:将PA6超细纤维基布浸入酸液中,温度50℃,处理20min,轧液后水洗、再于105℃下烘干,酸液为5wt%硫酸溶液;
S12基布改性:将基布浸入改性液中,温度60℃,处理2h,轧液后水洗、再于105℃下烘干;
S13刮涂PU:将水性PU刮涂液刮涂在基布上;
S14成型:加热至105℃烘干,再经裁剪制得外表皮层。
改性液的制备过程如下:按重量份计,在冰水浴条件下先将25份二乙烯三胺和130份水混合稀释,得到二乙烯三胺溶液,再将35份N,N-亚甲基双丙烯酰胺和上述所得的二乙烯三胺溶液混合,搅拌均匀后加热至65℃,反应16h,接着于80℃下真空脱水25min,得到改性液。
水性PU刮涂液的制备过程如下:
第一步,将35份亚麻油和8份二乙醇胺混合,再加入0.2份乙醇钠,加热至100℃,反应130min后出料,与26份PCDL-1000混合,加热至105℃,持续2h后降温至60℃;
第二步,接着加入20份IPDI、0.14份二月桂酸二丁基锡,混合均匀升温至78℃,反应2h后降温至60℃;
第三步,然后加入2.5份DMPA、5份1,4-丁二醇,加热至78℃,反应2h后降温至45℃;
第四步,最后加入3份二乙胺,搅拌20min后加入80份水、0.7份AEO-9,剪切乳化30min,得到水性PU刮涂液。
实施例七:
实施例四中的S1外表皮层的具体制作方法如下:
S11基布预处理:将PA6超细纤维基布浸入酸液中,温度45℃,处理18min,轧液后水洗、再于103℃下烘干,酸液为5wt%硫酸溶液;
S12基布改性:将基布浸入改性液中,温度58℃,处理1.8h,轧液后水洗、再于102℃下烘干;
S13刮涂PU:将水性PU刮涂液刮涂在基布上;
S14成型:加热至102℃烘干,再经裁剪制得外表皮层。
改性液的制备过程如下:按重量份计,在冰水浴条件下先将22份二乙烯三胺和120份水混合稀释,得到二乙烯三胺溶液,再将32份N,N-亚甲基双丙烯酰胺和上述所得的二乙烯三胺溶液混合,搅拌均匀后加热至62℃,反应14h,接着于75℃下真空脱水22min,得到改性液。
水性PU刮涂液的制备过程如下:
第一步,将33份亚麻油和7份二乙醇胺混合,再加入0.18份乙醇钠,加热至95℃,反应120min后出料,与24份PCDL-1000混合,加热至103℃,持续1.5h后降温至55℃;
第二步,接着加入18份IPDI、0.12份二月桂酸二丁基锡,混合均匀升温至76℃,反应1.5h后降温至55℃;
第三步,然后加入2.3份DMPA、4.5份1,4-丁二醇,加热至75℃,反应1.8h后降温至42℃;
第四步,最后加入2.8份二乙胺,搅拌18min后加入75份水、0.6份AEO-9,剪切乳化25min,得到水性PU刮涂液。
实施例八:
与实施例七的区别在于,基布未进行改性。
实施例九:
与实施例七的区别在于,亚麻油氨解物换成等重量的PTMG-1000,与PCDL-1000混合而作为多元醇原料。
外表皮层性能测试:
根据QB/T 5156-2017《人造革合成革试验方法 透气性的测定》中记载的方法,对实施例五至九的外表皮层进行透气测试,所得结果记录在表1。
裁剪外表皮层至25cm直径的试样,选用瓶口内径为20mm的试剂瓶,倒入50ml水,将试样粘合封堵在试剂瓶瓶口,加热至35℃,使用差重法测试水蒸气透过量,所得结果记录在表1。
表1 外表皮层性能测试结果记录表
透气性(ml/cm<sup>2</sup>*h) 透水汽性(mg/cm<sup>2</sup>*h)
实施例五 2234 1.8
实施例六 2281 1.8
实施例七 2312 1.9
实施例八 1045 0.9
实施例九 582 0.4
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 (1)

1.一种祛湿抗菌健足平衡鞋垫的生产工艺,鞋垫包括鞋垫层(1),所述鞋垫层(1)分为前掌区(3)、足弓区(4)和脚跟区(5),所述足弓区(4)和脚跟区(5)处设置有定型片(2),所述定型片(2)呈弧形且中部拱起处相对两侧上翻;所述鞋垫层(1)于前掌区(3)处平整、受定型片(2)作用而于足弓区(4)和脚跟区(5)处呈弧形,所述鞋垫层(1)最高处位于足弓区(4)和脚跟区(5)的交界处且该处两侧拱起形成支撑部(6);所述鞋垫层(1)包括外表皮层(11)和海绵内层(12);所述鞋垫层(1)于足弓区(4)和脚跟区(5)外沿设置有一圈弓跟透气孔(13)、与内侧支撑部(6)处设置有多个足弓吸汗孔(14),其特征在于,包括如下步骤:
S1外表皮层:将合成革裁剪成指定形状和大小的外表皮层(11);
S2海绵内层:将PVA发泡海绵裁剪成指定形状和大小的海绵内层(12);
S3定型片:通过注塑成型制得定型片(2);
S4组合生产:先将外表皮层(11)和海绵内层(12)粘合在一起,形成鞋垫层(1),再进行冲孔工序,最后将鞋垫层(1)和定型片(2)贴紧并粘合在一起,得到平衡鞋垫;
所述S1外表皮层(11)的具体制作方法如下:
S11基布预处理:将超细纤维基布浸入酸液中,温度40-50℃,处理15-20min,轧液后水洗、再于100-105℃下烘干;
S12基布改性:将基布浸入改性液中,温度55-60℃,处理1.5-2h,轧液后水洗、再于100-105℃下烘干;
S13刮涂PU:将水性PU刮涂液刮涂在基布上;
S14成型:加热至100-105℃烘干,再经裁剪制得外表皮层(11);
所述改性液的制备过程如下:按重量份计,在冰水浴条件下先将20-25份二乙烯三胺和100-130份水混合稀释,得到二乙烯三胺溶液,再将28-35份N,N-亚甲基双丙烯酰胺和二乙烯三胺溶液混合,搅拌均匀后加热至60-65℃,反应12-16h,接着于70-80℃下真空脱水20-25min,得到改性液;
所述水性PU刮涂液的制备过程如下:
第一步,将30-35份亚麻油和5-8份二乙醇胺混合,再加入0.15-0.2份乙醇钠,加热至90-100℃,反应110-130min后出料,与22-26份PCDL-1000混合,加热至100-105℃,持续1-2h后降温至50-60℃;
第二步,接着加入15-20份IPDI、0.1-0.14份二月桂酸二丁基锡,混合均匀升温至75-78℃,反应1-2h后降温至50-60℃;
第三步,然后加入2-2.5份DMPA、4-5份1,4-丁二醇,加热至72-78℃,反应1.5-2h后降温至40-45℃;
第四步,最后加入2.5-3份二乙胺,搅拌15-20min后加入70-80份水、0.5-0.7份AEO-9,剪切乳化20-30min,得到水性PU刮涂液。
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