CN106279608A - 一种艾叶聚氨酯复合家居发泡海绵 - Google Patents

一种艾叶聚氨酯复合家居发泡海绵 Download PDF

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CN106279608A
CN106279608A CN201610648217.2A CN201610648217A CN106279608A CN 106279608 A CN106279608 A CN 106279608A CN 201610648217 A CN201610648217 A CN 201610648217A CN 106279608 A CN106279608 A CN 106279608A
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Abstract

本发明公开了一种艾叶聚氨酯复合家居发泡海绵,由下列重量份的原料制备制成:微晶纤维素35‑45、大豆油140‑180、二甘醇160‑200、氢氧化钾0.13‑0.27、聚醚多元醇90‑110、发泡剂8‑12、泡沫稳定剂1.3‑1.6、催化剂0.4‑0.6、甲苯二异氰酸酯56‑68、蒸馏水4‑6、正硅酸乙酯3‑4、艾叶5‑6、硅油2‑3;本发明制备的发泡海绵垫具有良好的舒适性、环保性、回弹能力好、抗拉强度高,并且还具有良好的杀菌、除蚊、提神醒脑等功能,使用寿命长,制备方法简单,值得推广。

Description

一种艾叶聚氨酯复合家居发泡海绵
技术领域
本发明涉及发泡海绵技术领域,尤其涉及一种艾叶聚氨酯复合家居发泡海绵。
背景技术
聚氨酯慢回弹泡沫由于其优异的舒适性能,已被广泛应用于家居用品、汽车、鞋材、医疗器械等领域,聚氨酯回弹泡沫由于其独特的分子结构,具有较高的舒适性能,当受到一定压力时,聚氨酯回弹泡沫会随着压力而改变形状,使压力平均分布,减少局部受力点,压力释去后,其形状又缓慢恢复到原状。但是由于其自身的闭孔结构,聚氨酯慢回弹泡沫的透气性能和阻尼吸声性能较差。《大豆油多元醇的合成及聚氨酯慢回弹泡沫性能的研究》一文中作者通过马来酸酐与大豆油反应合成了改性大豆油,然后用二甘醇与改性大豆油在氢氧化钾的催化下反应,合成了大豆油多元醇。再利用合成的大豆油多元醇制备了大豆油多元醇基聚氨酯慢回弹泡沫,文章中对大豆油多元醇基聚氨酯慢回弹泡沫的拉伸强度、断裂伸长率及40%压缩度等力学性能进行研究,发现大豆油多元醇的使用会改善聚氨酯慢回弹泡沫的透气性能阻尼性能及吸声性能,但是会导致力学性能的下降,提出增加发泡剂水用量或者提高异氰酸酯指数,可以在大豆油多元醇基聚氨酯慢回弹泡沫具有较高透气性能、阻尼性能及吸声性能的前提下,提高其力学性能。
虽然作者通过对大豆油改性从而合成大豆油多元醇基聚氨酯回弹泡沫,改善了慢回弹海绵的透气性能、阻尼性能及吸声性能,但是其机械强度差、韧性不好的缺点降低了材料的使用寿命和人们的舒适度,影响产品的质量,推动不了经济的发展,并且其制备的慢回弹海绵还不能完全满足现如今人们对海绵垫的各种需求,所以需要进一步的改进,提高其力学性能、热稳定性、疏水性等其他性能,扩大应用领域并且延长使用寿命。
发明内容
本发明目的就是为了弥补已有技术的缺陷,提供一种艾叶聚氨酯复合家居发泡海绵。
本发明是通过以下技术方案实现的:
一种艾叶聚氨酯复合家居发泡海绵,由下列重量份的原料制备制成:微晶纤维素35-45、大豆油140-180、二甘醇160-200、氢氧化钾0.13-0.27、聚醚多元醇90-110、发泡剂8-12、泡沫稳定剂1.3-1.6、催化剂0.4-0.6、甲苯二异氰酸酯56-68、蒸馏水4-6、正硅酸乙酯3-4、艾叶5-6、硅油2-3。
所述一种艾叶聚氨酯复合家居发泡海绵,由以下具体步骤制备制成:
(1)将微晶纤维素用6-8倍量的无水甲苯分散,分散均匀后加到三口烧瓶中,用氮气作为保护气体,水浴加热升高温度至80-90℃,滴加十八烷基异氰酸酯,其中十八烷基异氰酸酯和微晶纤维素按照质量比1:5混合,机械搅拌反应2-4h,反应结束后用丙酮索式回流萃取24-30h,取出后烘干至恒重备用;
(2)在四口烧瓶中加入大豆油及步骤(1)制备的产物,用氮气作为保护气体,之后在160-180℃将两者充分搅拌混合均匀,再将四口烧瓶置于加热套中,加入二甘醇和氢氧化钾,升高温度至200-220℃反应3-4h,水洗提纯、分液除去未反应杂质,烘干后备用;
(3)将步骤(2)制备的产物、聚醚多元醇、发泡剂、泡沫稳定剂、硅油及催化剂混合,在室温下以3000转/分的转速搅拌均匀,搅拌均匀后加入甲苯二异氰酸酯搅拌4-6S后迅速倒入发泡箱中,15-20min后从箱体中移出,自然冷却;
(4)将无水乙醇、浓氨水加到烧瓶中混合,以700-800r/min转速下搅拌均匀,然后在水浴温度60℃下恒温保持30-40min,再向混合液中加入正硅酸乙酯,其中无水乙醇、浓氨水、正硅酸乙酯按照体积比10:0.4-0.8:1-1.5比例混合,继续水浴搅拌反应90-110min,反应结束后静置陈化24h备用;
(5)将艾叶置于干燥箱中50-55℃干燥24h,粉碎至300-400目后加到步骤(4)制备的产物中,超声分散均匀后将其涂覆在步骤(3)制备的产物表面,然后置于真空干燥箱中于50℃下烘干即得。
所述一种艾叶聚氨酯复合家居发泡海绵,所述聚醚多元醇由聚醚多元醇1、聚醚多元醇2、聚醚多元醇3分别按百分比含量10%-30%、10%-20%、20%-50%混合而成,聚醚多元醇1为羟值在50-100的三官能团聚醚多元醇,聚醚多元醇2为羟值在35-80的二官能团聚醚多元醇,聚醚多元醇3为羟值在250-280的三官能团聚醚多元醇。
本发明的优点是:植物油基聚合物是一种潜在的可生物降解材料,与合成的高分子材料相比,可以在制品废弃后完全降解或者部分降解,有效的缓解环境污染问题,本发明利用纤维素密度小、可降解的优点改性高分子合成材料,但是纤维素材料的力学性能不高、力学性能差和热稳定不高等制约着应用领域,本发明采用十八烷基异氰酸酯接枝改性微晶纤维素提高其拉伸强度、热稳定性和耐磨性,再用其对大豆油改性,得到性能优异的大豆油多元醇,绿色环保,再通过大豆油多元醇和其他物料合成聚氨酯发泡海绵,具有优异的疏水、阻尼、透气等性能,还提高了海绵的强度和力学性能,还利用烘干的艾叶具有良好的除蚊、杀菌、提神醒脑等特性作为聚氨酯海绵的附加特性,因为直接加入艾叶不利于聚氨酯泡孔的形成且容易堵塞孔隙,所以本发明利用聚氨酯发泡海绵孔隙多、易渗透、吸附性高的特点将艾叶溶胶涂覆在其表面,在不影响海绵本身性能的情况下有效的提高了附加性能,扩大了使用范围,本发明制备的发泡海绵垫具有良好的舒适性、环保性、回弹能力好、抗拉强度高,并且还具有良好的杀菌、除蚊、提神醒脑等功能,使用寿命长,制备方法简单,值得推广。
具体实施方式
一种艾叶聚氨酯复合家居发泡海绵,由下列重量份(公斤)的原料制备制成:微晶纤维素35、大豆油140、二甘醇160、氢氧化钾0.13、聚醚多元醇90、发泡剂8、泡沫稳定剂1.3、催化剂0.4、甲苯二异氰酸酯56、蒸馏水4、正硅酸乙酯3、艾叶5、硅油2。
所述一种艾叶聚氨酯复合家居发泡海绵,由以下具体步骤制备制成:
(1)将微晶纤维素用6倍量的无水甲苯分散,分散均匀后加到三口烧瓶中,用氮气作为保护气体,水浴加热升高温度至80℃,滴加十八烷基异氰酸酯,其中十八烷基异氰酸酯和微晶纤维素按照质量比1:5混合,机械搅拌反应2h,反应结束后用丙酮索式回流萃取24h,取出后烘干至恒重备用;
(2)在四口烧瓶中加入大豆油及步骤(1)制备的产物,用氮气作为保护气体,之后在160℃将两者充分搅拌混合均匀,再将四口烧瓶置于加热套中,加入二甘醇和氢氧化钾,升高温度至200℃反应3h,水洗提纯、分液除去未反应杂质,烘干后备用;
(3)将步骤(2)制备的产物、聚醚多元醇、发泡剂、泡沫稳定剂、硅油及催化剂混合,在室温下以3000转/分的转速搅拌均匀,搅拌均匀后加入甲苯二异氰酸酯搅拌4S后迅速倒入发泡箱中,15min后从箱体中移出,自然冷却;
(4)将无水乙醇、浓氨水加到烧瓶中混合,以700r/min转速下搅拌均匀,然后在水浴温度60℃下恒温保持30min,再向混合液中加入正硅酸乙酯,其中无水乙醇、浓氨水、正硅酸乙酯按照体积比10:0.4:1比例混合,继续水浴搅拌反应90min,反应结束后静置陈化24h备用;
(5)将艾叶置于干燥箱中50℃干燥24h,粉碎至300目后加到步骤(4)制备的产物中,超声分散均匀后将其涂覆在步骤(3)制备的产物表面,然后置于真空干燥箱中于50℃下烘干即得。
所述一种艾叶聚氨酯复合家居发泡海绵,所述聚醚多元醇由聚醚多元醇1、聚醚多元醇2、聚醚多元醇3分别按百分比含量10%%、10%%、20%%混合而成,聚醚多元醇1为羟值在50的三官能团聚醚多元醇,聚醚多元醇2为羟值在35的二官能团聚醚多元醇,聚醚多元醇3为羟值在250的三官能团聚醚多元醇。
按照实施例的步骤制备出聚氨酯发泡海绵,并对其进行性能测试,结果如下:
拉伸强度(kPa):158;拉伸伸长率(%):110;撕裂强度(N/cm):12.2;回弹率(%):8.2;CLD40%(kPa):2.47。

Claims (3)

1.一种艾叶聚氨酯复合家居发泡海绵,其特征在于,由下列重量份的原料制备制成:微晶纤维素35-45、大豆油140-180、二甘醇160-200、氢氧化钾0.13-0.27、聚醚多元醇90-110、发泡剂8-12、泡沫稳定剂1.3-1.6、催化剂0.4-0.6、甲苯二异氰酸酯56-68、蒸馏水4-6、正硅酸乙酯3-4、艾叶5-6、硅油2-3。
2.根据权利要求1所述一种艾叶聚氨酯复合家居发泡海绵,其特征在于,由以下具体步骤制备制成:
(1)将微晶纤维素用6-8倍量的无水甲苯分散,分散均匀后加到三口烧瓶中,用氮气作为保护气体,水浴加热升高温度至80-90℃,滴加十八烷基异氰酸酯,其中十八烷基异氰酸酯和微晶纤维素按照质量比1:5混合,机械搅拌反应2-4h,反应结束后用丙酮索式回流萃取24-30h,取出后烘干至恒重备用;
(2)在四口烧瓶中加入大豆油及步骤(1)制备的产物,用氮气作为保护气体,之后在160-180℃将两者充分搅拌混合均匀,再将四口烧瓶置于加热套中,加入二甘醇和氢氧化钾,升高温度至200-220℃反应3-4h,水洗提纯、分液除去未反应杂质,烘干后备用;
(3)将步骤(2)制备的产物、聚醚多元醇、发泡剂、泡沫稳定剂、硅油及催化剂混合,在室温下以3000转/分的转速搅拌均匀,搅拌均匀后加入甲苯二异氰酸酯搅拌4-6S后迅速倒入发泡箱中,15-20min后从箱体中移出,自然冷却;
(4)将无水乙醇、浓氨水加到烧瓶中混合,以700-800r/min转速下搅拌均匀,然后在水浴温度60℃下恒温保持30-40min,再向混合液中加入正硅酸乙酯,其中无水乙醇、浓氨水、正硅酸乙酯按照体积比10:0.4-0.8:1-1.5比例混合,继续水浴搅拌反应90-110min,反应结束后静置陈化24h备用;
(5)将艾叶置于干燥箱中50-55℃干燥24h,粉碎至300-400目后加到步骤(4)制备的产物中,超声分散均匀后将其涂覆在步骤(3)制备的产物表面,然后置于真空干燥箱中于50℃下烘干即得。
3.根据权利要求1-2所述一种艾叶聚氨酯复合家居发泡海绵,其特征在于,所述聚醚多元醇由聚醚多元醇1、聚醚多元醇2、聚醚多元醇3分别按百分比含量10%-30%、10%-20%、20%-50%混合而成,聚醚多元醇1为羟值在50-100的三官能团聚醚多元醇,聚醚多元醇2为羟值在35-80的二官能团聚醚多元醇,聚醚多元醇3为羟值在250-280的三官能团聚醚多元醇。
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