CN108822762A - 一种阻燃淀粉接嘴胶及其制备方法 - Google Patents
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Abstract
本发明公开了一种阻燃淀粉接嘴胶及其制备方法,涉及胶粘剂技术领域,基于现有的接嘴胶不具有快速自熄功能的问题而提出的。本发明由以下重量份数的原料制成:发芽糙米淀粉50‑55份、氧化剂3‑5份、阻燃剂5‑6份、糊化剂4‑6份、防腐剂0.2‑0.4份、消泡剂0.4‑0.6份、水145‑155份。本发明的有益效果在于:具有高粘性、且接嘴胶烟蒂具有自熄功能。
Description
技术领域
本发明涉及胶粘剂技术领域,具体涉及一种阻燃淀粉接嘴胶及其制备方法。
背景技术
随着经济社会的快速发展,大型火灾事故越发频繁。火灾给人民带来无尽的灾难的同时也给社会敲响了警钟,而我国是世界上最大的香烟生产国,由吸烟引起的火灾次数众多,燃着的烟头表面温度为200-300℃,中心温度为700-800℃,明显高于其他可燃物品的燃点。如纸张的燃点为130-250℃,木炭的燃点为320-400℃。一支香烟延烧时间为4-15分钟,吸剩的烟头一般能继续燃着1-4分钟,在这个时间段内,许多易燃性物品均能被点燃。有时烟头被扔进棉被、木屑或草丛中,不容易被人注意,会带来很大的危险。
发明内容
本发明解决的技术问题在于如何使接嘴胶烟蒂具有快速自熄功能。
本发明是采用以下技术方案解决上述技术问题的:
一种阻燃淀粉接嘴胶,由以下重量份数的原料制成:发芽糙米淀粉50-55份、氧化剂3-5份、阻燃剂5-6份、糊化剂4-6份、防腐剂0.2-0.4份、消泡剂0.4-0.6份、水145-155份。
优选的,所述氧化剂为高锰酸钾。
优选的,所述阻燃剂为纳米无机阻燃剂。
优选的,所述纳米无机阻燃剂为纳米氢氧化镁或纳米氢氧化铝。
优选的,所述糊化剂为氢氧化钠。
优选的,所述防腐剂为苯甲酸钠和/或山梨酸钾。
优选的,所述消泡剂为聚乙烯醇或正辛醇。
优选的,所述阻燃淀粉接嘴胶的制备过程如下:
(1)将水加热至50-55℃后,加入发芽糙米淀粉并搅拌5-10min;
(2)加入氧化剂,继续保温搅拌20-30min;
(3)加入糊化剂,搅拌,升温至70-80℃,搅拌15-25min;
(4)加入防腐剂和消泡剂,搅拌10-15min;
(5)待温度冷却至20℃时,加入阻燃剂,搅拌均匀后出料。
本发明还提供一种阻燃淀粉接嘴胶的制备方法,包括以下制备步骤:
(1)将145-155份水加热至50-55℃后,加入50-55份发芽糙米淀粉并搅拌5-10min;
(2)加入3-5份氧化剂,继续保温搅拌20-30min;
(3)加入4-6份糊化剂,搅拌,升温至70-80℃,搅拌15-25min;
(4)加入0.2-0.4份防腐剂和0.4-0.6份消泡剂,搅拌10-15min;
(5)待温度冷却至20℃时,加入5-6份阻燃剂,搅拌均匀后出料。
优选的,所述阻燃淀粉接嘴胶的制备方法,包括以下制备步骤:
(1)将145份水加热至50℃后,加入50份发芽糙米淀粉并搅拌5min;
(2)加入3份氧化剂,继续保温搅拌20min;
(3)加入4份糊化剂,搅拌,升温至70℃,搅拌15min;
(4)加入0.2份防腐剂和0.4份消泡剂,搅拌10min;
(5)待温度冷却至20℃时,加入5份阻燃剂,搅拌均匀后出料。
本发明的有益效果在于:
(1)本发明的接嘴胶以发芽糙米淀粉为主要原料,糙米发芽后,其淀粉的膨胀度增大,透明度增加,且直链淀粉含量降低,淀粉粘性增加,获得的接嘴胶具有高粘性;
(2)在接嘴胶中加入阻燃剂,接嘴胶烟蒂具有快速自熄功能;
(3)纳米阻燃剂尺寸细小,粒子在胶体材料中分散均匀,可均匀释放其阻燃性;纳米氢氧化镁和纳米氢氧化铝在受热分解时释放出水分,同时可吸收大量的热,可以降低材料表面的温度,纳米氢氧化镁和纳米氢氧化铝在使用和废气过程中无有害物质排放,且能中和燃烧过程中产生的腐蚀性气体,为环保阻燃剂;
(4)由阻燃接嘴胶卷制的香烟能保持卷烟原有的抽吸品质和口味,烟气化学指标基本无变化。
具体实施方式
为使对本发明的结构特征及所达成的功效有更进一步的了解与认识,用以较佳的实施例对本发明进行详细的说明。
本发明中,所涉及的组分和原料均为常规市售产品,或可通过本领域的常规技术手段获得。
实施例1
一种阻燃淀粉接嘴胶的制备方法,包括以下制备步骤:
(1)将145份水加热至50℃后,加入50份发芽糙米淀粉,并搅拌5min;
(2)加入3份高锰酸钾,继续保温搅拌20min;
(3)加入4份氢氧化钠,搅拌,升温至70℃,搅拌15min;
(4)加入0.2份苯甲酸钠和0.4份聚乙烯醇,搅拌10min;
(5)待温度冷却至20℃时,加入5份纳米氢氧化镁,搅拌均匀后出料。
实施例2
一种阻燃淀粉接嘴胶的制备方法,包括以下制备步骤:
(1)将150份水加热至52℃后,加入52份发芽糙米淀粉,并搅拌7min;
(2)加入4份高锰酸钾,继续保温搅拌25min;
(3)加入5份氢氧化钠,搅拌,升温至75℃,搅拌20min;
(4)加入0.3份山梨酸钾和0.5份正辛醇,搅拌10min;
(5)待温度冷却至20℃时,加入6份纳米氢氧化铝,搅拌均匀后出料。
实施例3
一种阻燃淀粉接嘴胶的制备方法,包括以下制备步骤:
(1)将155份水加热至55℃后,加入55份发芽糙米淀粉,并搅拌10min;
(2)加入5份高锰酸钾,继续保温搅拌30min;
(3)加入6份氢氧化钠,搅拌,升温至80℃,搅拌25min;
(4)加入0.4份苯甲酸钠和0.6份正辛醇,搅拌15min;
(5)待温度冷却至20℃时,加入5份纳米氢氧化镁,搅拌均匀后出料。
以上仅是本发明的优选实施方式,本发明的保护范围并不仅限于上述实施例,与本发明构思无差异的各种工艺方案均在本发明的保护范围内。
Claims (10)
1.一种阻燃淀粉接嘴胶,其特征在于:由以下重量份数的原料制成:发芽糙米淀粉50-55份、氧化剂3-5份、阻燃剂5-6份、糊化剂4-6份、防腐剂0.2-0.4份、消泡剂0.4-0.6份、水145-155份。
2.根据权利要求1所述的阻燃淀粉接嘴胶,其特征在于:所述氧化剂为高锰酸钾。
3.根据权利要求1所述的阻燃淀粉接嘴胶,其特征在于:所述阻燃剂为纳米无机阻燃剂。
4.根据权利要求3所述的阻燃淀粉接嘴胶,其特征在于:所述纳米无机阻燃剂为纳米氢氧化镁或纳米氢氧化铝。
5.根据权利要求1所述的阻燃淀粉接嘴胶,其特征在于:所述糊化剂为氢氧化钠。
6.根据权利要求1所述的阻燃淀粉接嘴胶,其特征在于:所述防腐剂为苯甲酸钠和/或山梨酸钾。
7.根据权利要求1所述的阻燃淀粉接嘴胶,其特征在于:所述消泡剂为聚乙烯醇或正辛醇。
8.根据权利要求1所述的阻燃淀粉接嘴胶,其特征在于:所述阻燃淀粉接嘴胶的制备过程如下:
(1)将水加热至50-55℃后,加入发芽糙米淀粉并搅拌5-10min;
(2)加入氧化剂,继续保温搅拌20-30min;
(3)加入糊化剂,搅拌,升温至70-80℃,搅拌15-25min;
(4)加入防腐剂和消泡剂,搅拌10-15min;
(5)待温度冷却至20℃时,加入阻燃剂,搅拌均匀后出料。
9.一种阻燃淀粉接嘴胶的制备方法,其特征在于:包括以下制备步骤:
(1)将145-155份水加热至50-55℃后,加入50-55份发芽糙米淀粉,并搅拌5-10min;
(2)加入3-5份氧化剂,继续保温搅拌20-30min;
(3)加入4-6份糊化剂,搅拌,升温至70-80℃,搅拌15-25min;
(4)加入0.2-0.4份防腐剂和0.4-0.6份消泡剂,搅拌10-15min;
(5)待温度冷却至20℃时,加入5-6份阻燃剂,搅拌均匀后出料。
10.根据权利要求9所述的阻燃淀粉接嘴胶的制备方法,其特征在于:包括以下制备步骤:
(1)将145份水加热至50℃后,加入50份发芽糙米淀粉并搅拌5min;
(2)加入3份氧化剂,继续保温搅拌20min;
(3)加入4份糊化剂,搅拌,升温至70℃,搅拌15min;
(4)加入0.2份防腐剂和0.4份消泡剂,搅拌10min;
(5)待温度冷却至20℃时,加入5份阻燃剂,搅拌均匀后出料。
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CN115873311A (zh) * | 2022-12-23 | 2023-03-31 | 江西广源新材料有限公司 | 一种淀粉基镁盐粉体及其制备方法和应用以及能源线缆复合材料及其制备方法 |
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CN103173162A (zh) * | 2013-04-03 | 2013-06-26 | 湖南中烟工业有限责任公司 | 一种烟用酸性阻燃接嘴胶 |
CN103773267A (zh) * | 2012-10-20 | 2014-05-07 | 中国烟草总公司郑州烟草研究院 | 一种基于降解类-糊化淀粉和醚化类-糊化淀粉的淀粉质卷烟胶 |
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GB697648A (en) * | 1950-01-28 | 1953-09-30 | Ardath Tobacco Company Ltd | Improvements in cigarettes with filter plugs or other internal mouthpieces, and methods and machinery used in their production |
CN102321438A (zh) * | 2011-08-04 | 2012-01-18 | 湖南中烟工业有限责任公司 | 一种阻燃胶添加剂、阻燃胶及其应用方法 |
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CN115873311A (zh) * | 2022-12-23 | 2023-03-31 | 江西广源新材料有限公司 | 一种淀粉基镁盐粉体及其制备方法和应用以及能源线缆复合材料及其制备方法 |
CN115873311B (zh) * | 2022-12-23 | 2024-05-24 | 江西广源新材料有限公司 | 一种淀粉基镁盐粉体及其制备方法和应用以及能源线缆复合材料及其制备方法 |
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