CN106700215A - 一种低熔点包装膜和低熔点包装袋 - Google Patents

一种低熔点包装膜和低熔点包装袋 Download PDF

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CN106700215A
CN106700215A CN201611016879.4A CN201611016879A CN106700215A CN 106700215 A CN106700215 A CN 106700215A CN 201611016879 A CN201611016879 A CN 201611016879A CN 106700215 A CN106700215 A CN 106700215A
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周中华
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Weifang Zhong Xin Platinum Materials Co Ltd
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Abstract

本发明公开了一种低熔点包装膜和低熔点包装袋。按质量百分数计,该低熔点包装膜的配方为:乙烯醋酸乙烯共聚物90%;二氧化硅2%;复合开口母料8%。本发明在配方中添加成核剂二氧化硅,使得包装膜具有良好的透明度;并且熔点控制在73±1℃,熔点稳定,不易破损。该低熔点包装膜特别适用于生产袋宽≤400mm的低熔点包装袋,获得的包装袋尺寸稳定,纵横向物性一致,封合强度高,不易产生形变,不易破损;透明度高,无皱褶,外观优良。

Description

一种低熔点包装膜和低熔点包装袋
技术领域
本发明涉及一种包装材料,具体涉及一种低熔点包装膜和低熔点包装袋。
背景技术
随着环保要求的提高,各行各业都在为达到环保标准而努力地工作着。橡胶行业由原来的开放式投料转为封闭式投料来减少物料对环境的污染,由此而产生了行业专用的低熔点塑料包装袋。目前我国在低熔点包装袋上虽已起步,但问题还很多,主要表现为以下几方面的问题:
(1)包装袋的外观有明显的缺欠,皱褶、透明度低、包装袋的尺寸稳定性差、封合强度低,易破损;
(2)物性指标低,强度纵横向差异大,导致经常出现强度低的方向破损(特别是小规格的袋子更为严重),由于各向的异性,包装物的伸长率发生极大的变化,装入物料后极易产生形变,造成破漏;
(3)熔点分布不均匀,温度差较大,影响后续应用,也直接影响到下游客户的产品质量;
(4)受目前国内设备的限制,导致低熔点包装袋的制作工艺方案不合理,导致包装袋品质达不到使用要求。
发明内容
本发明提供了一种低熔点包装膜,该低熔点包装膜熔点稳定,纵横向物性一致,不易破损,外观优良,产品质量高。
一种低熔点包装膜,按质量百分数计,配方为:
本发明在配方中添加成核剂二氧化硅,使得包装膜具有良好的透明度;并且熔点控制在80±1℃,熔点稳定,不易破损。
本发明还提供了采用所述低熔点包装膜制成的低熔点包装袋。
作为优选,所述低熔点包装袋的袋宽≤400mm,所述低熔点包装袋的袋长为膜折径的一半。
本发明还提供了一种低熔点包装袋的制作方法,该制作方法包括以下步骤:
(1)拌粒:按预设的质量百分数,将所述低熔点包装膜的原料混合均匀,获得混料;
(2)吹膜:使用吹膜机将混料加热融化并加工成原料薄膜,原料薄膜经冷却后获得低熔点包装膜;
(3)制袋:按预设的规格对低熔点包装膜进行裁切并封口,获得所述低熔点包装袋。
作为优选,步骤(2)中,所述吹膜的吹胀比为3~5:1。通过提高吹胀比实现包装袋的纵横向同性,使低熔点包装膜的纵横向物性一致,厚度均匀。
作为进一步优选,步骤(2)中,所述吹膜的吹胀比为4:1。
作为优选,步骤(2)中,所述冷却采用膜泡内外冷却方式。采用这种冷却方式能够进一步提高低熔点包装膜的透明度。
作为优选,步骤(2)中,所述冷却的温度小于20℃。将冷却温度控制在20℃以下,能够降低低熔点包装膜各部位之间的厚度差,
保证低熔点包装膜厚度均匀,消除皱褶,改良外观。
作为优选,步骤(3)中,所述制袋包括:
1)沿低熔点包装膜的长度延伸方向,按预设的袋宽对低熔点包装膜进行裁切,获得多个小规格低熔点包装膜;
2)对各小规格低熔点包装膜进行双边热封,并沿热封线的中垂线将小规格低熔点包装膜剖开,获得袋长为二分之一膜折径的低熔点包装袋。
通过上述制袋方式获得的低熔点包装袋,尺寸稳定,纵横向物性一致,封合强度高,不易产生形变,不易破损。
与现有技术相比,本发明的有益效果为:
(1)本发明在配方中添加成核剂二氧化硅,使得低熔点包装膜具有良好的透明度;并且熔点控制在80±1℃,熔点稳定,不易破损;
(2)本发明通过提高吹胀比实现包装袋的纵横向同性,使低熔点包装膜的纵横向物性一致,厚度均匀;
(3)本发明采用膜泡内外冷却方式进行冷却,并将冷却温度控制在20℃以下,从而降低低熔点包装膜各部位之间的厚度差,保证低熔点包装膜厚度均匀,消除皱褶,改良外观;
(4)本发明通过改进制袋方式,使得获得的低熔点包装袋,尺寸稳定,纵横向物性一致,封合强度高,不易产生形变,不易破损;尤其适用于生产袋宽≤400mm的低熔点包装袋。
附图说明
图1为本发明的制袋方式示意图;其中,1为热封线,2为中垂线,W为袋宽,L1为膜折径,L2为袋长;
图2为现有技术中的制袋方式示意图;其中,101为热封线,L为膜折径。
具体实施方式
下面结合附图和具体实施方式对本发明的技术方案作进一步详细说明。
实施例1
一种低熔点包装袋的制作方法,该制作方法包括以下步骤:
(1)拌粒:按预设的质量百分数,将下列原料混合均匀,获得混料:
乙烯醋酸乙烯共聚物75%,硫酸钡2%,低密度聚乙烯15%,复合开口母料8%;
(2)吹膜:使用吹膜机将混料加热融化并加工成原料薄膜,吹胀比为3:1;
然后,采用膜泡内外冷却方式,在20℃下对原料薄膜进行冷却处理,获得低熔点包装膜;
(3)制袋(如图1所示):
1)沿低熔点包装膜的长度延伸方向,按预设的袋宽W(400mm)对低熔点包装膜进行裁切,获得多个小规格低熔点包装膜;
2)对各小规格低熔点包装膜进行双边热封,并沿热封线1的中垂线2将小规格低熔点包装膜剖开,获得袋长L2为二分之一膜折径L1的低熔点包装袋(熔点80℃)。
实施例2
一种低熔点包装袋的制作方法,该制作方法包括以下步骤:
(1)拌粒:按预设的质量百分数,将下列原料混合均匀,获得混料:
乙烯醋酸乙烯共聚物75%,硫酸钡2%,低密度聚乙烯15%,复合开口母料8%;
(2)吹膜:使用吹膜机将混料加热融化并加工成原料薄膜,吹胀比为5:1;
然后,采用膜泡内外冷却方式,在10℃下对原料薄膜进行冷却处理,获得低熔点包装膜;
(3)制袋(如图1所示):
1)沿低熔点包装膜的长度延伸方向,按预设的袋宽W(300mm)对低熔点包装膜进行裁切,获得多个小规格低熔点包装膜;
2)对各小规格低熔点包装膜进行双边热封,并沿热封线1的中垂线2将小规格低熔点包装膜剖开,获得袋长L2为二分之一膜折径L1的低熔点包装袋(熔点81℃)。
实施例3
一种低熔点包装袋的制作方法,该制作方法包括以下步骤:
(1)拌粒:按预设的质量百分数,将下列原料混合均匀,获得混料:
乙烯醋酸乙烯共聚物75%,硫酸钡2%,低密度聚乙烯15%,复合开口母料8%;
(2)吹膜:使用吹膜机将混料加热融化并加工成原料薄膜,吹胀比为4:1;
然后,采用膜泡内外冷却方式,在15℃下对原料薄膜进行冷却处理,获得低熔点包装膜;
(3)制袋(如图1所示):
1)沿低熔点包装膜的长度延伸方向,按预设的袋宽W(250mm)对低熔点包装膜进行裁切,获得多个小规格低熔点包装膜;
2)对各小规格低熔点包装膜进行双边热封,并沿热封线1的中垂线2将小规格低熔点包装膜剖开,获得袋长L2为二分之一膜折径L1的低熔点包装袋(熔点79℃)。

Claims (9)

1.一种低熔点包装膜,其特征在于,按质量百分数计,配方为:
2.采用如权利要求1所述低熔点包装膜制成的低熔点包装袋。
3.如权利要求2所述的低熔点包装袋,其特征在于,袋宽≤400mm,袋长为膜折径的一半。
4.一种低熔点包装袋的制作方法,其特征在于,包括以下步骤:
(1)拌粒:按预设的质量百分数,将如权利要求1所述低熔点包装膜的原料混合均匀,获得混料;
(2)吹膜:使用吹膜机将混料加热融化并加工成原料薄膜,原料薄膜经冷却后获得低熔点包装膜;
(3)制袋:按预设的规格对低熔点包装膜进行裁切并封口,获得所述低熔点包装袋。
5.如权利要求4所述的制作方法,其特征在于,步骤(2)中,所述吹膜的吹胀比为3~5:1。
6.如权利要求4所述的制作方法,其特征在于,步骤(2)中,所述吹膜的吹胀比为4:1。
7.如权利要求4所述的制作方法,其特征在于,步骤(2)中,所述冷却采用膜泡内外冷却方式。
8.如权利要求4所述的制作方法,其特征在于,步骤(2)中,所述冷却的温度小于20℃。
9.如权利要求4所述的制作方法,其特征在于,步骤(3)中,所述制袋包括:
1)沿低熔点包装膜的长度延伸方向,按预设的袋宽对低熔点包装膜进行裁切,获得多个小规格低熔点包装膜;
2)对各小规格低熔点包装膜进行双边热封,并沿热封线的中垂线将小规格低熔点包装膜剖开,获得袋长为二分之一膜折径的低熔点包装袋。
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Cited By (1)

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CN111331980A (zh) * 2020-03-19 2020-06-26 青岛海益塑业有限责任公司 一种低熔点薄膜、制备方法及其应用

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